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[PATCH v3 4/7] Row pattern recognition patch (executor).
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* [PATCH v3 4/7] Row pattern recognition patch (executor).
@ 2023-07-26 10:49 Tatsuo Ishii <ishii@postgresql.org>
  0 siblings, 0 replies; 425+ messages in thread

From: Tatsuo Ishii @ 2023-07-26 10:49 UTC (permalink / raw)

---
 src/backend/executor/nodeWindowAgg.c | 701 ++++++++++++++++++++++++++-
 src/backend/utils/adt/windowfuncs.c  |  38 +-
 src/include/catalog/pg_proc.dat      |   6 +
 src/include/nodes/execnodes.h        |  18 +
 src/include/windowapi.h              |   8 +
 5 files changed, 758 insertions(+), 13 deletions(-)

diff --git a/src/backend/executor/nodeWindowAgg.c b/src/backend/executor/nodeWindowAgg.c
index 310ac23e3a..0586bf57d6 100644
--- a/src/backend/executor/nodeWindowAgg.c
+++ b/src/backend/executor/nodeWindowAgg.c
@@ -36,6 +36,7 @@
 #include "access/htup_details.h"
 #include "catalog/objectaccess.h"
 #include "catalog/pg_aggregate.h"
+#include "catalog/pg_collation_d.h"
 #include "catalog/pg_proc.h"
 #include "executor/executor.h"
 #include "executor/nodeWindowAgg.h"
@@ -48,6 +49,7 @@
 #include "utils/acl.h"
 #include "utils/builtins.h"
 #include "utils/datum.h"
+#include "utils/fmgroids.h"
 #include "utils/expandeddatum.h"
 #include "utils/lsyscache.h"
 #include "utils/memutils.h"
@@ -159,6 +161,14 @@ typedef struct WindowStatePerAggData
 	bool		restart;		/* need to restart this agg in this cycle? */
 } WindowStatePerAggData;
 
+/*
+ * Map between Var attno in a target list and the parsed attno.
+ */
+typedef struct AttnoMap {
+	List		*attno;			/* att number in target list (list of AttNumber) */
+	List		*attnosyn;		/* parsed att number (list of AttNumber) */
+} AttnoMap;
+
 static void initialize_windowaggregate(WindowAggState *winstate,
 									   WindowStatePerFunc perfuncstate,
 									   WindowStatePerAgg peraggstate);
@@ -182,8 +192,9 @@ static void begin_partition(WindowAggState *winstate);
 static void spool_tuples(WindowAggState *winstate, int64 pos);
 static void release_partition(WindowAggState *winstate);
 
-static int	row_is_in_frame(WindowAggState *winstate, int64 pos,
+static int  row_is_in_frame(WindowAggState *winstate, int64 pos,
 							TupleTableSlot *slot);
+
 static void update_frameheadpos(WindowAggState *winstate);
 static void update_frametailpos(WindowAggState *winstate);
 static void update_grouptailpos(WindowAggState *winstate);
@@ -195,9 +206,19 @@ static Datum GetAggInitVal(Datum textInitVal, Oid transtype);
 
 static bool are_peers(WindowAggState *winstate, TupleTableSlot *slot1,
 					  TupleTableSlot *slot2);
-static bool window_gettupleslot(WindowObject winobj, int64 pos,
-								TupleTableSlot *slot);
 
+static void attno_map(Node *node, AttnoMap *map);
+static bool attno_map_walker(Node *node, void *context);
+static int row_is_in_reduced_frame(WindowObject winobj, int64 pos);
+
+static int64 evaluate_pattern(WindowObject winobj, int64 current_pos, 
+							  char *vname, StringInfo encoded_str, bool *result);
+
+static bool get_slots(WindowObject winobj, int64 current_pos);
+
+static int search_str_set(char *pattern, StringInfo *str_set, int set_size);
+static void search_str_set_recurse(char *pattern, StringInfo *str_set, int set_size, int set_index,
+								   char *encoded_str, int *resultlen);
 
 /*
  * initialize_windowaggregate
@@ -673,6 +694,9 @@ eval_windowaggregates(WindowAggState *winstate)
 	WindowObject agg_winobj;
 	TupleTableSlot *agg_row_slot;
 	TupleTableSlot *temp_slot;
+	bool		reduced_frame_set;
+	bool		check_reduced_frame;
+	int			num_rows_in_reduced_frame;
 
 	numaggs = winstate->numaggs;
 	if (numaggs == 0)
@@ -790,6 +814,7 @@ eval_windowaggregates(WindowAggState *winstate)
 			(winstate->frameOptions & FRAMEOPTION_EXCLUSION) ||
 			winstate->aggregatedupto <= winstate->frameheadpos)
 		{
+			elog(DEBUG1, "peraggstate->restart  is set");
 			peraggstate->restart = true;
 			numaggs_restart++;
 		}
@@ -861,8 +886,10 @@ eval_windowaggregates(WindowAggState *winstate)
 	 * If we created a mark pointer for aggregates, keep it pushed up to frame
 	 * head, so that tuplestore can discard unnecessary rows.
 	 */
+#ifdef NOT_USED
 	if (agg_winobj->markptr >= 0)
 		WinSetMarkPosition(agg_winobj, winstate->frameheadpos);
+#endif
 
 	/*
 	 * Now restart the aggregates that require it.
@@ -919,6 +946,10 @@ eval_windowaggregates(WindowAggState *winstate)
 		ExecClearTuple(agg_row_slot);
 	}
 
+	reduced_frame_set = false;
+	check_reduced_frame = false;
+	num_rows_in_reduced_frame = 0;
+
 	/*
 	 * Advance until we reach a row not in frame (or end of partition).
 	 *
@@ -930,12 +961,18 @@ eval_windowaggregates(WindowAggState *winstate)
 	{
 		int			ret;
 
+		elog(DEBUG1, "===== loop in frame starts: " INT64_FORMAT, winstate->aggregatedupto);
+
 		/* Fetch next row if we didn't already */
 		if (TupIsNull(agg_row_slot))
 		{
 			if (!window_gettupleslot(agg_winobj, winstate->aggregatedupto,
 									 agg_row_slot))
+			{
+				if (check_reduced_frame)
+					winstate->aggregatedupto--;
 				break;			/* must be end of partition */
+			}
 		}
 
 		/*
@@ -944,10 +981,47 @@ eval_windowaggregates(WindowAggState *winstate)
 		 */
 		ret = row_is_in_frame(winstate, winstate->aggregatedupto, agg_row_slot);
 		if (ret < 0)
+		{
+			if (winstate->patternVariableList != NIL && check_reduced_frame)
+				winstate->aggregatedupto--;
 			break;
+		}
 		if (ret == 0)
 			goto next_tuple;
 
+		if (winstate->patternVariableList != NIL)
+		{
+			if (!reduced_frame_set)
+			{
+				num_rows_in_reduced_frame = row_is_in_reduced_frame(winstate->agg_winobj, winstate->aggregatedupto);
+				reduced_frame_set = true;
+				elog(DEBUG1, "set num_rows_in_reduced_frame: %d pos: " INT64_FORMAT,
+					 num_rows_in_reduced_frame, winstate->aggregatedupto);
+
+				if (num_rows_in_reduced_frame <= 0)
+					break;
+
+				else if (num_rows_in_reduced_frame > 0)
+					check_reduced_frame = true;
+			}
+
+			if (check_reduced_frame)
+			{
+				elog(DEBUG1, "decrease num_rows_in_reduced_frame: %d pos: " INT64_FORMAT,
+					 num_rows_in_reduced_frame, winstate->aggregatedupto);
+				num_rows_in_reduced_frame--;
+				if (num_rows_in_reduced_frame < 0)
+				{
+					/*
+					 * No more rows remain in the reduced frame. Finish
+					 * accumulating row into the aggregates.
+					 */
+					winstate->aggregatedupto--;
+					break;
+				}
+			}
+		}
+
 		/* Set tuple context for evaluation of aggregate arguments */
 		winstate->tmpcontext->ecxt_outertuple = agg_row_slot;
 
@@ -976,6 +1050,8 @@ next_tuple:
 		ExecClearTuple(agg_row_slot);
 	}
 
+	elog(DEBUG1, "===== break loop in frame starts: " INT64_FORMAT, winstate->aggregatedupto);
+
 	/* The frame's end is not supposed to move backwards, ever */
 	Assert(aggregatedupto_nonrestarted <= winstate->aggregatedupto);
 
@@ -2053,6 +2129,8 @@ ExecWindowAgg(PlanState *pstate)
 
 	CHECK_FOR_INTERRUPTS();
 
+	elog(DEBUG1, "ExecWindowAgg called. pos: " INT64_FORMAT , winstate->currentpos);
+
 	if (winstate->status == WINDOWAGG_DONE)
 		return NULL;
 
@@ -2388,6 +2466,12 @@ ExecInitWindowAgg(WindowAgg *node, EState *estate, int eflags)
 	TupleDesc	scanDesc;
 	ListCell   *l;
 
+	TargetEntry	*te;
+	Expr		*expr;
+	Var			*var;
+	int			nargs;
+	AttnoMap	attnomap;
+
 	/* check for unsupported flags */
 	Assert(!(eflags & (EXEC_FLAG_BACKWARD | EXEC_FLAG_MARK)));
 
@@ -2483,6 +2567,16 @@ ExecInitWindowAgg(WindowAgg *node, EState *estate, int eflags)
 	winstate->temp_slot_2 = ExecInitExtraTupleSlot(estate, scanDesc,
 												   &TTSOpsMinimalTuple);
 
+	winstate->prev_slot = ExecInitExtraTupleSlot(estate, scanDesc,
+												 &TTSOpsMinimalTuple);
+
+	winstate->next_slot = ExecInitExtraTupleSlot(estate, scanDesc,
+												 &TTSOpsMinimalTuple);
+
+	winstate->null_slot = ExecInitExtraTupleSlot(estate, scanDesc,
+												 &TTSOpsMinimalTuple);
+	winstate->null_slot = ExecStoreAllNullTuple(winstate->null_slot);
+
 	/*
 	 * create frame head and tail slots only if needed (must create slots in
 	 * exactly the same cases that update_frameheadpos and update_frametailpos
@@ -2667,6 +2761,69 @@ ExecInitWindowAgg(WindowAgg *node, EState *estate, int eflags)
 	winstate->inRangeAsc = node->inRangeAsc;
 	winstate->inRangeNullsFirst = node->inRangeNullsFirst;
 
+	/* Set up SKIP TO type */
+	winstate->rpSkipTo = node->rpSkipTo;
+	/* Set up row pattern recognition PATTERN clause */
+	winstate->patternVariableList = node->patternVariable;
+	winstate->patternRegexpList = node->patternRegexp;
+
+	/* Set up row pattern recognition DEFINE clause */
+
+	/*
+	 * Collect mapping between varattno and varattnosyn in the targetlist.
+	 * XXX: For now we only check RPR's argument. Eventually we have to
+	 * recurse the targetlist to find out all mappings in Var nodes.
+	 */
+	attnomap.attno = NIL;
+	attnomap.attnosyn = NIL;
+
+	foreach (l, node->plan.targetlist)
+	{
+		te = lfirst(l);
+		if (IsA(te->expr, WindowFunc))
+		{
+			WindowFunc	*func = (WindowFunc *)te->expr;
+
+			/* sanity check */
+			nargs = list_length(func->args);
+			if (nargs != 1)
+				continue;
+
+			expr = (Expr *) lfirst(list_head(func->args));
+			if (!IsA(expr, Var))
+				continue;
+
+			var = (Var *)expr;
+			elog(DEBUG1, "resname: %s varattno: %d varattnosyn: %d",
+				 te->resname, var->varattno, var->varattnosyn);
+			attnomap.attno = lappend_int(attnomap.attno, var->varattno);
+			attnomap.attnosyn = lappend_int(attnomap.attnosyn, var->varattnosyn);
+		}
+	}
+
+	winstate->defineVariableList = NIL;
+	winstate->defineClauseList = NIL;
+	if (node->defineClause != NIL)
+	{
+		foreach(l, node->defineClause)
+		{
+			char		*name;
+			ExprState	*exps;
+
+			te = lfirst(l);
+			name = te->resname;
+			expr = te->expr;
+
+			elog(DEBUG1, "defineVariable name: %s", name);
+			winstate->defineVariableList = lappend(winstate->defineVariableList,
+												   makeString(pstrdup(name)));
+			/* tweak expr so that it referes to outer slot */
+			attno_map((Node *)expr, &attnomap);
+			exps = ExecInitExpr(expr, (PlanState *) winstate);
+			winstate->defineClauseList = lappend(winstate->defineClauseList, exps);
+		}
+	}
+
 	winstate->all_first = true;
 	winstate->partition_spooled = false;
 	winstate->more_partitions = false;
@@ -2674,6 +2831,77 @@ ExecInitWindowAgg(WindowAgg *node, EState *estate, int eflags)
 	return winstate;
 }
 
+/*
+ * Rewrite Var node's varattno to the varattno which is used in the target
+ * list using AttnoMap.  We also rewrite varno so that it sees outer tuple
+ * (PREV) or inner tuple (NEXT).
+ */
+static void
+attno_map(Node *node, AttnoMap *map)
+{
+	(void) expression_tree_walker(node, attno_map_walker, (void *) map);
+}
+
+static bool
+attno_map_walker(Node *node, void *context)
+{
+	FuncExpr	*func;
+	int			nargs;
+	Expr		*expr;
+	Var			*var;
+	AttnoMap	*attnomap;
+	ListCell	*lc1, *lc2;
+	
+	if (node == NULL)
+		return false;
+
+	attnomap = (AttnoMap *) context;
+
+	if (IsA(node, FuncExpr))
+	{
+		func = (FuncExpr *)node;
+
+		if (func->funcid == F_PREV || func->funcid == F_NEXT)
+		{
+			/* sanity check */
+			nargs = list_length(func->args);
+			if (list_length(func->args) != 1)
+				elog(ERROR, "PREV/NEXT must have 1 argument but function %d has %d args", func->funcid, nargs);
+
+			expr = (Expr *) lfirst(list_head(func->args));
+			if (!IsA(expr, Var))
+				elog(ERROR, "PREV/NEXT's arg is not Var");	/* XXX: is it possible that arg type is Const? */
+			var = (Var *)expr;
+
+			if (func->funcid == F_PREV)
+				var->varno = OUTER_VAR;
+			else
+				var->varno = INNER_VAR;
+		}
+		return expression_tree_walker(node, attno_map_walker, (void *) context);
+	}
+	else if (IsA(node, Var))
+	{
+		var = (Var *)node;	 
+
+		elog(DEBUG1, "original varno: %d varattno: %d", var->varno, var->varattno);
+
+		forboth(lc1, attnomap->attno, lc2, attnomap->attnosyn)
+		{
+			int	attno = lfirst_int(lc1);
+			int	attnosyn = lfirst_int(lc2);
+
+			elog(DEBUG1, "walker: varattno: %d varattnosyn: %d",attno, attnosyn);
+			if (var->varattno == attnosyn)
+			{
+				elog(DEBUG1, "loc: %d rewrite varattno from: %d to %d", var->location, attnosyn, attno);
+				var->varattno = attno;
+			}
+		}
+	}
+	return expression_tree_walker(node, attno_map_walker, (void *) context);
+}
+
 /* -----------------
  * ExecEndWindowAgg
  * -----------------
@@ -2691,6 +2919,8 @@ ExecEndWindowAgg(WindowAggState *node)
 	ExecClearTuple(node->agg_row_slot);
 	ExecClearTuple(node->temp_slot_1);
 	ExecClearTuple(node->temp_slot_2);
+	ExecClearTuple(node->prev_slot);
+	ExecClearTuple(node->next_slot);
 	if (node->framehead_slot)
 		ExecClearTuple(node->framehead_slot);
 	if (node->frametail_slot)
@@ -2740,6 +2970,8 @@ ExecReScanWindowAgg(WindowAggState *node)
 	ExecClearTuple(node->agg_row_slot);
 	ExecClearTuple(node->temp_slot_1);
 	ExecClearTuple(node->temp_slot_2);
+	ExecClearTuple(node->prev_slot);
+	ExecClearTuple(node->next_slot);
 	if (node->framehead_slot)
 		ExecClearTuple(node->framehead_slot);
 	if (node->frametail_slot)
@@ -3080,7 +3312,7 @@ are_peers(WindowAggState *winstate, TupleTableSlot *slot1,
  *
  * Returns true if successful, false if no such row
  */
-static bool
+bool
 window_gettupleslot(WindowObject winobj, int64 pos, TupleTableSlot *slot)
 {
 	WindowAggState *winstate = winobj->winstate;
@@ -3100,7 +3332,7 @@ window_gettupleslot(WindowObject winobj, int64 pos, TupleTableSlot *slot)
 		return false;
 
 	if (pos < winobj->markpos)
-		elog(ERROR, "cannot fetch row before WindowObject's mark position");
+		elog(ERROR, "cannot fetch row: " INT64_FORMAT " before WindowObject's mark position: " INT64_FORMAT,  pos, winobj->markpos );
 
 	oldcontext = MemoryContextSwitchTo(winstate->ss.ps.ps_ExprContext->ecxt_per_query_memory);
 
@@ -3420,14 +3652,54 @@ WinGetFuncArgInFrame(WindowObject winobj, int argno,
 	WindowAggState *winstate;
 	ExprContext *econtext;
 	TupleTableSlot *slot;
-	int64		abs_pos;
-	int64		mark_pos;
 
 	Assert(WindowObjectIsValid(winobj));
 	winstate = winobj->winstate;
 	econtext = winstate->ss.ps.ps_ExprContext;
 	slot = winstate->temp_slot_1;
 
+	if (WinGetSlotInFrame(winobj, slot,
+						  relpos, seektype, set_mark,
+						  isnull, isout) == 0)
+	{
+		econtext->ecxt_outertuple = slot;
+		return ExecEvalExpr((ExprState *) list_nth(winobj->argstates, argno),
+							econtext, isnull);
+	}
+
+	if (isout)
+		*isout = true;
+	*isnull = true;
+	return (Datum) 0;
+}
+
+/*
+ * WinGetSlotInFrame
+ * slot: TupleTableSlot to store the result
+ * relpos: signed rowcount offset from the seek position
+ * seektype: WINDOW_SEEK_HEAD or WINDOW_SEEK_TAIL
+ * set_mark: If the row is found/in frame and set_mark is true, the mark is
+ *		moved to the row as a side-effect.
+ * isnull: output argument, receives isnull status of result
+ * isout: output argument, set to indicate whether target row position
+ *		is out of frame (can pass NULL if caller doesn't care about this)
+ *
+ * Returns 0 if we successfullt got the slot. false if out of frame.
+ * (also isout is set)
+ */
+int
+WinGetSlotInFrame(WindowObject winobj, TupleTableSlot *slot,
+					 int relpos, int seektype, bool set_mark,
+					 bool *isnull, bool *isout)
+{
+	WindowAggState *winstate;
+	int64		abs_pos;
+	int64		mark_pos;
+	int			num_reduced_frame;
+
+	Assert(WindowObjectIsValid(winobj));
+	winstate = winobj->winstate;
+
 	switch (seektype)
 	{
 		case WINDOW_SEEK_CURRENT:
@@ -3494,6 +3766,12 @@ WinGetFuncArgInFrame(WindowObject winobj, int argno,
 						 winstate->frameOptions);
 					break;
 			}
+			num_reduced_frame = row_is_in_reduced_frame(winobj, winstate->frameheadpos);
+			if (num_reduced_frame < 0)
+				goto out_of_frame;
+			else if (num_reduced_frame > 0)
+				if (relpos >= num_reduced_frame)
+					goto out_of_frame;
 			break;
 		case WINDOW_SEEK_TAIL:
 			/* rejecting relpos > 0 is easy and simplifies code below */
@@ -3565,6 +3843,12 @@ WinGetFuncArgInFrame(WindowObject winobj, int argno,
 					mark_pos = 0;	/* keep compiler quiet */
 					break;
 			}
+
+			num_reduced_frame = row_is_in_reduced_frame(winobj, winstate->frameheadpos + relpos);
+			if (num_reduced_frame < 0)
+				goto out_of_frame;
+			else if (num_reduced_frame > 0)
+				abs_pos = winstate->frameheadpos + relpos + num_reduced_frame - 1;
 			break;
 		default:
 			elog(ERROR, "unrecognized window seek type: %d", seektype);
@@ -3583,15 +3867,13 @@ WinGetFuncArgInFrame(WindowObject winobj, int argno,
 		*isout = false;
 	if (set_mark)
 		WinSetMarkPosition(winobj, mark_pos);
-	econtext->ecxt_outertuple = slot;
-	return ExecEvalExpr((ExprState *) list_nth(winobj->argstates, argno),
-						econtext, isnull);
+	return 0;
 
 out_of_frame:
 	if (isout)
 		*isout = true;
 	*isnull = true;
-	return (Datum) 0;
+	return -1;
 }
 
 /*
@@ -3622,3 +3904,400 @@ WinGetFuncArgCurrent(WindowObject winobj, int argno, bool *isnull)
 	return ExecEvalExpr((ExprState *) list_nth(winobj->argstates, argno),
 						econtext, isnull);
 }
+
+WindowAggState *
+WinGetAggState(WindowObject winobj)
+{
+	return winobj->winstate;
+}
+
+/*
+ * row_is_in_reduced_frame
+ * Determine whether a row is in the current row's reduced window frame according
+ * to row pattern matching
+ *
+ * The row must has been already determined that it is in a full window frame
+ * and fetched it into slot.
+ *
+ * Returns:
+ * = 0, RPR is not defined.
+ * >0, if the row is the first in the reduced frame. Return the number of rows in the reduced frame.
+ * -1, if the row is unmatched row
+ * -2, if the row is in the reduced frame but needed to be skipped because of
+ * AFTER MATCH SKIP PAST LAST ROW
+ */
+static
+int row_is_in_reduced_frame(WindowObject winobj, int64 pos)
+{
+	WindowAggState *winstate = winobj->winstate;
+	ListCell	*lc1, *lc2;
+	bool		expression_result;
+	int			num_matched_rows;
+	int64		original_pos;
+	bool		anymatch;
+	StringInfo	encoded_str;
+	StringInfo	pattern_str = makeStringInfo();
+
+	/*
+	 * Array of pattern variables evaluted to true.
+	 * Each character corresponds to pattern variable.
+	 * Example:
+	 * str_set[0] = "AB";
+	 * str_set[1] = "AC";
+	 * In this case at row 0 A and B are true, and A and C are true in row 1.
+	 */
+	#define ENCODED_STR_ARRAY_ALLOC_SIZE	128
+	StringInfo	*str_set = NULL;
+	int		str_set_index;
+	int		str_set_size;
+
+	if (winstate->patternVariableList == NIL)
+	{
+		/*
+		 * RPR is not defined. Assume that we are always in the the reduced
+		 * window frame.
+		 */
+		return 0;
+	}
+
+	/* save original pos */
+	original_pos = pos;
+
+	/*
+	 * Check whether the row speicied by pos is in the reduced frame. The
+	 * second and subsequent rows need to be recognized as "unmatched" rows if
+	 * AFTER MATCH SKIP PAST LAST ROW is defined.
+	 */
+	if (winstate->rpSkipTo == ST_PAST_LAST_ROW &&
+		pos > winstate->headpos_in_reduced_frame &&
+		pos < (winstate->headpos_in_reduced_frame + winstate->num_rows_in_reduced_frame))
+		return -2;
+		
+	/*
+	 * Loop over until none of pattern matches or encounters end of frame.
+	 */
+	for (;;)
+	{
+		int64	result_pos = -1;
+
+		/*
+		 * Loop over each PATTERN variable.
+		 */
+		anymatch = false;
+		encoded_str = makeStringInfo();
+
+		forboth(lc1, winstate->patternVariableList, lc2, winstate->patternRegexpList)
+		{
+			char	*vname = strVal(lfirst(lc1));
+			char	*quantifier = strVal(lfirst(lc2));
+
+			elog(DEBUG1, "pos: " INT64_FORMAT " pattern vname: %s quantifier: %s", pos, vname, quantifier);
+
+			expression_result = false;
+
+			/* evaluate row pattern against current row */
+			result_pos = evaluate_pattern(winobj, pos, vname, encoded_str, &expression_result);
+			if (expression_result)
+			{
+				elog(DEBUG1, "expression result is true");
+				anymatch = true;
+			}
+
+			/*
+			 * If out of frame, we are done.
+			 */
+			 if (result_pos < 0)
+				 break;
+		}
+
+		if (!anymatch)
+		{
+			/* none of patterns matched. */
+			break;
+		}
+
+		/* build encoded string array */
+		if (str_set == NULL)
+		{
+			str_set_index = 0;
+			str_set_size = ENCODED_STR_ARRAY_ALLOC_SIZE * sizeof(StringInfo);
+			str_set = palloc(str_set_size);
+		}
+
+		str_set[str_set_index++] = encoded_str;
+
+		elog(DEBUG1, "pos: " INT64_FORMAT " str_set_index: %d encoded_str: %s", pos, str_set_index, encoded_str->data);
+
+		if (str_set_index >= str_set_size)
+		{
+			str_set_size *= 2;
+			str_set = repalloc(str_set, str_set_size);
+		}
+
+		/* move to next row */
+		pos++;
+
+		if (result_pos < 0)
+		{
+			/* out of frame */
+			break;
+		}
+	}
+
+	if (str_set == NULL)
+	{
+		/* no matches found in the first row */
+		return -1;
+	}
+
+	elog(DEBUG1, "pos: " INT64_FORMAT " encoded_str: %s", pos, encoded_str->data);
+
+	/* build regular expression */
+	pattern_str = makeStringInfo();
+	appendStringInfoChar(pattern_str, '^');
+	forboth(lc1, winstate->patternVariableList, lc2, winstate->patternRegexpList)
+	{
+		char	*vname = strVal(lfirst(lc1));
+		char	*quantifier = strVal(lfirst(lc2));
+
+		appendStringInfoChar(pattern_str, vname[0]);
+		if (quantifier[0])
+			appendStringInfoChar(pattern_str, quantifier[0]);
+		elog(DEBUG1, "vname: %s quantifier: %s", vname, quantifier);
+	}
+
+	elog(DEBUG1, "pos: " INT64_FORMAT " pattern: %s", pos, pattern_str->data);
+
+	/* look for matching pattern variable sequence */
+	num_matched_rows = search_str_set(pattern_str->data, str_set, str_set_index);
+	if (num_matched_rows <= 0)
+		return -1;
+
+	/*
+	 * We are at the first row in the reduced frame.  Save the number of
+	 * matched rows as the number of rows in the reduced frame.
+	 */
+	winstate->headpos_in_reduced_frame = original_pos;
+	winstate->num_rows_in_reduced_frame = num_matched_rows;
+
+	return num_matched_rows;
+}
+
+/*
+ * search set of encode_str.
+ * set_size: size of set_str array.
+ */
+static
+int search_str_set(char *pattern, StringInfo *str_set, int set_size)
+{
+	char		*encoded_str = palloc0(set_size+1);
+	int			resultlen = 0;
+
+	search_str_set_recurse(pattern, str_set, set_size, 0, encoded_str, &resultlen);
+	elog(DEBUG1, "search_str_set returns %d", resultlen);
+	return resultlen;
+}
+
+static
+void search_str_set_recurse(char *pattern, StringInfo *str_set, int set_size, int set_index, char *encoded_str, int *resultlen)
+{
+	char	*p;
+
+	if (set_index >= set_size)
+	{
+		Datum	d;
+		text	*res;
+		char	*substr;
+
+		/*
+		 * We first perform pattern matching using regexp_instr, then call
+		 * textregexsubstr to get matched substring to know how log the
+		 * matched string is. That is the number of rows in the reduced window
+		 * frame.  The reason why we can't call textregexsubstr is, it error
+		 * out if pattern is not match.
+		 */
+		if (DatumGetInt32(DirectFunctionCall2Coll(regexp_instr, DEFAULT_COLLATION_OID,
+												  PointerGetDatum(cstring_to_text(encoded_str)),
+												  PointerGetDatum(cstring_to_text(pattern)))) > 0)
+		{
+			d = DirectFunctionCall2Coll(textregexsubstr,
+										DEFAULT_COLLATION_OID,
+										PointerGetDatum(cstring_to_text(encoded_str)),
+										PointerGetDatum(cstring_to_text(pattern)));
+			if (d != 0)
+			{
+				int		len;
+
+				res = DatumGetTextPP(d);
+				substr = text_to_cstring(res);
+				len = strlen(substr);
+				if (len > *resultlen)
+					/* remember the longest match */
+					*resultlen = len;
+			}
+		}
+		return;
+	}
+
+	p = str_set[set_index]->data;
+	while (*p)
+	{
+		encoded_str[set_index] = *p;
+		p++;
+		search_str_set_recurse(pattern, str_set, set_size, set_index + 1, encoded_str, resultlen);
+	}
+}
+
+
+/*
+ * Evaluate expression associated with PATTERN variable vname.
+ * relpos is relative row position in a frame (starting from 0).
+ * "quantifier" is the quatifier part of the PATTERN regular expression.
+ * Currently only '+' is allowed.
+ * result is out paramater representing the expression evaluation result
+ * is true of false.
+ * Return values are:
+ * >=0: the last match absolute row position
+ * other wise out of frame.
+ */
+static
+int64 evaluate_pattern(WindowObject winobj, int64 current_pos, 
+						char *vname, StringInfo encoded_str, bool *result)
+{
+	WindowAggState	*winstate = winobj->winstate;
+	ExprContext		*econtext = winstate->ss.ps.ps_ExprContext;
+	ListCell		*lc1, *lc2;
+	ExprState		*pat;
+	Datum			eval_result;
+	bool			out_of_frame = false;
+	bool			isnull;
+
+	forboth (lc1, winstate->defineVariableList, lc2, winstate->defineClauseList)
+	{
+		char	*name = strVal(lfirst(lc1));
+
+		if (strcmp(vname, name))
+			continue;
+
+		/* set expression to evaluate */
+		pat = lfirst(lc2);
+
+		/* get current, previous and next tuples */
+		if (!get_slots(winobj, current_pos))
+		{
+			out_of_frame = true;
+		}
+		else
+		{
+			/* evaluate the expression */
+			eval_result = ExecEvalExpr(pat, econtext, &isnull);
+			if (isnull)
+			{
+				/* expression is NULL */
+				elog(DEBUG1, "expression for %s is NULL at row: " INT64_FORMAT, vname, current_pos);
+				*result = false;
+			}
+			else
+			{
+				if (!DatumGetBool(eval_result))
+				{
+					/* expression is false */
+					elog(DEBUG1, "expression for %s is false at row: " INT64_FORMAT, vname, current_pos);
+					*result = false;
+				}
+				else
+				{
+					/* expression is true */
+					elog(DEBUG1, "expression for %s is true at row: " INT64_FORMAT, vname, current_pos);
+					appendStringInfoChar(encoded_str, vname[0]);
+					*result = true;
+				}
+			}
+			break;
+		}
+
+		if (out_of_frame)
+		{
+			*result = false;
+			return -1;
+		}
+	}
+	return current_pos;
+}
+
+/*
+ * Get current, previous and next tuples.
+ * Returns false if current row is out of partition/full frame.
+ */
+static
+bool get_slots(WindowObject winobj, int64 current_pos)
+{
+	WindowAggState *winstate = winobj->winstate;
+	TupleTableSlot *slot;
+	int		ret;
+	ExprContext *econtext;
+
+	econtext = winstate->ss.ps.ps_ExprContext;
+
+	/* set up current row tuple slot */
+	slot = winstate->temp_slot_1;
+	if (!window_gettupleslot(winobj, current_pos, slot))
+	{
+		elog(DEBUG1, "current row is out of partition at:" INT64_FORMAT, current_pos);
+		return false;
+
+		ret = row_is_in_frame(winstate, current_pos, slot);
+		if (ret <= 0)
+		{
+			elog(DEBUG1, "current row is out of frame at: " INT64_FORMAT, current_pos);
+			return false;
+		}
+	}
+	econtext->ecxt_scantuple = slot;
+
+	/* for PREV */
+	if (current_pos > 0)
+	{
+		slot = winstate->prev_slot;
+		if (!window_gettupleslot(winobj, current_pos - 1, slot))
+		{
+			elog(DEBUG1, "previous row is out of partition at: " INT64_FORMAT, current_pos - 1);
+			econtext->ecxt_outertuple = winstate->null_slot;
+		}
+		else
+		{
+			ret = row_is_in_frame(winstate, current_pos - 1, slot);
+			if (ret <= 0)
+			{
+				elog(DEBUG1, "previous row is out of frame at: " INT64_FORMAT, current_pos - 1);
+				econtext->ecxt_outertuple = winstate->null_slot;
+			}
+			else
+			{
+				econtext->ecxt_outertuple = slot;
+			}
+		}
+	}
+	else
+		econtext->ecxt_outertuple = winstate->null_slot;
+
+	/* for NEXT */
+	slot = winstate->next_slot;
+	if (!window_gettupleslot(winobj, current_pos + 1, slot))
+	{
+		elog(DEBUG1, "next row is out of partiton at: " INT64_FORMAT, current_pos + 1);
+		econtext->ecxt_innertuple = winstate->null_slot;
+	}
+	else
+	{
+		ret = row_is_in_frame(winstate, current_pos + 1, slot);
+		if (ret <= 0)
+		{
+			elog(DEBUG1, "next row is out of frame at: " INT64_FORMAT, current_pos + 1);
+			econtext->ecxt_innertuple = winstate->null_slot;
+		}
+		else
+			econtext->ecxt_innertuple = slot;
+	}
+	return true;
+}
diff --git a/src/backend/utils/adt/windowfuncs.c b/src/backend/utils/adt/windowfuncs.c
index b87a624fb2..e4cab36ec9 100644
--- a/src/backend/utils/adt/windowfuncs.c
+++ b/src/backend/utils/adt/windowfuncs.c
@@ -13,6 +13,9 @@
  */
 #include "postgres.h"
 
+#include "catalog/pg_collation_d.h"
+#include "executor/executor.h"
+#include "nodes/execnodes.h"
 #include "nodes/supportnodes.h"
 #include "utils/builtins.h"
 #include "windowapi.h"
@@ -36,11 +39,19 @@ typedef struct
 	int64		remainder;		/* (total rows) % (bucket num) */
 } ntile_context;
 
+/*
+ * rpr process information.
+ * Used for AFTER MATCH SKIP PAST LAST ROW
+ */
+typedef struct SkipContext
+{
+	int64		pos;	/* last row absolute position */
+} SkipContext;
+
 static bool rank_up(WindowObject winobj);
 static Datum leadlag_common(FunctionCallInfo fcinfo,
 							bool forward, bool withoffset, bool withdefault);
 
-
 /*
  * utility routine for *_rank functions.
  */
@@ -673,7 +684,7 @@ window_last_value(PG_FUNCTION_ARGS)
 	bool		isnull;
 
 	result = WinGetFuncArgInFrame(winobj, 0,
-								  0, WINDOW_SEEK_TAIL, true,
+								  0, WINDOW_SEEK_TAIL, false,
 								  &isnull, NULL);
 	if (isnull)
 		PG_RETURN_NULL();
@@ -713,3 +724,26 @@ window_nth_value(PG_FUNCTION_ARGS)
 
 	PG_RETURN_DATUM(result);
 }
+
+/*
+ * prev
+ * Dummy function to invoke RPR's navigation operator "PREV".
+ * This is *not* a window function.
+ */
+Datum
+window_prev(PG_FUNCTION_ARGS)
+{
+	PG_RETURN_DATUM(PG_GETARG_DATUM(0));
+}
+
+/*
+ * next
+ * Dummy function to invoke RPR's navigation operation "NEXT".
+ * This is *not* a window function.
+ */
+Datum
+window_next(PG_FUNCTION_ARGS)
+{
+	PG_RETURN_DATUM(PG_GETARG_DATUM(0));
+}
+
diff --git a/src/include/catalog/pg_proc.dat b/src/include/catalog/pg_proc.dat
index 6996073989..fa100b2665 100644
--- a/src/include/catalog/pg_proc.dat
+++ b/src/include/catalog/pg_proc.dat
@@ -10397,6 +10397,12 @@
 { oid => '3114', descr => 'fetch the Nth row value',
   proname => 'nth_value', prokind => 'w', prorettype => 'anyelement',
   proargtypes => 'anyelement int4', prosrc => 'window_nth_value' },
+{ oid => '6122', descr => 'previous value',
+  proname => 'prev', provolatile => 's', prorettype => 'anyelement',
+  proargtypes => 'anyelement', prosrc => 'window_prev' },
+{ oid => '6123', descr => 'next value',
+  proname => 'next', provolatile => 's', prorettype => 'anyelement',
+  proargtypes => 'anyelement', prosrc => 'window_next' },
 
 # functions for range types
 { oid => '3832', descr => 'I/O',
diff --git a/src/include/nodes/execnodes.h b/src/include/nodes/execnodes.h
index cb714f4a19..4fd3bd1a93 100644
--- a/src/include/nodes/execnodes.h
+++ b/src/include/nodes/execnodes.h
@@ -2519,6 +2519,14 @@ typedef struct WindowAggState
 	int64		groupheadpos;	/* current row's peer group head position */
 	int64		grouptailpos;	/* " " " " tail position (group end+1) */
 
+	/* these fields are used in Row pattern recognition: */
+	RPSkipTo	rpSkipTo;		/* Row Pattern Skip To type */	
+	List	   *patternVariableList;	/* list of row pattern variables names (list of String) */
+	List	   *patternRegexpList;	/* list of row pattern regular expressions ('+' or ''. list of String) */
+	List	   *defineVariableList;	/* list of row pattern definition variables (list of String) */
+	List	   *defineClauseList;	/* expression for row pattern definition
+									 * search conditions ExprState list */
+
 	MemoryContext partcontext;	/* context for partition-lifespan data */
 	MemoryContext aggcontext;	/* shared context for aggregate working data */
 	MemoryContext curaggcontext;	/* current aggregate's working data */
@@ -2555,6 +2563,16 @@ typedef struct WindowAggState
 	TupleTableSlot *agg_row_slot;
 	TupleTableSlot *temp_slot_1;
 	TupleTableSlot *temp_slot_2;
+
+	/* temporary slots for RPR */
+	TupleTableSlot *prev_slot;	/* PREV row navigation operator */
+	TupleTableSlot *next_slot;	/* NEXT row navigation operator */
+	TupleTableSlot *null_slot;	/* all NULL slot */
+
+	/* head of the reduced window frame */
+	int64		headpos_in_reduced_frame;
+	/* number of rows in the reduced window frame */
+	int64		num_rows_in_reduced_frame;
 } WindowAggState;
 
 /* ----------------
diff --git a/src/include/windowapi.h b/src/include/windowapi.h
index b8c2c565d1..1e292648e9 100644
--- a/src/include/windowapi.h
+++ b/src/include/windowapi.h
@@ -58,7 +58,15 @@ extern Datum WinGetFuncArgInFrame(WindowObject winobj, int argno,
 								  int relpos, int seektype, bool set_mark,
 								  bool *isnull, bool *isout);
 
+extern int WinGetSlotInFrame(WindowObject winobj, TupleTableSlot *slot,
+							 int relpos, int seektype, bool set_mark,
+							 bool *isnull, bool *isout);
+
 extern Datum WinGetFuncArgCurrent(WindowObject winobj, int argno,
 								  bool *isnull);
 
+extern WindowAggState *WinGetAggState(WindowObject winobj);
+
+extern bool window_gettupleslot(WindowObject winobj, int64 pos, TupleTableSlot *slot);
+
 #endif							/* WINDOWAPI_H */
-- 
2.25.1


----Next_Part(Wed_Jul_26_21_21_34_2023_317)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v3-0005-Row-pattern-recognition-patch-docs.patch"



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier. Afterwards it does shared memory
  resize itself.

* All the backends, that participate in ProcSignal mechanism,
  recalculate shared memory size based on the new NBuffers and extend it
  using mremap.

* When finished, a backend waits on a global ShmemControl barrier,
  untill all backends will be finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all backends are using new value, one backend will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f5a2bd04000-7f5a32e52000  /dev/zero (deleted)
    7f5a39252000-7f5a4030e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d7ba000  /dev/zero (deleted)
    7f5a53bba000-7f5a5ad26000  /dev/zero (deleted)
    7f5a9ad26000-7f5aa9d94000  /dev/zero (deleted)
    ^ buffers mapping, ~240 MB
    7f5d29d94000-7f5d30e00000  /dev/zero (deleted)

    -- 512 MB
    7f5a2bd04000-7f5a33274000  /dev/zero (deleted)
    7f5a39252000-7f5a4057e000  /dev/zero (deleted)
    7f5a4670e000-7f5a4d9fa000  /dev/zero (deleted)
    7f5a53bba000-7f5a5b1a6000  /dev/zero (deleted)
    7f5a9ad26000-7f5ac1f14000  /dev/zero (deleted)
    ^ buffers mapping, ~625 MB
    7f5d29d94000-7f5d30f80000  /dev/zero (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers and extend it using mremap. One elected process signals the
  postmaster to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f90cde00000-7f90d4fa6000  /dev/zero (deleted)
    7f90d4fa6000-7f914de00000
    7f914de00000-7f915cfa8000  /dev/zero (deleted)
    ^ buffers mapping, ~241 MB
    7f915cfa8000-7f944de00000
    7f944de00000-7f94550a8000  /dev/zero (deleted)
    7f94550a8000-7f94cde00000
    7f94cde00000-7f94d4fe8000  /dev/zero (deleted)
    7f94d4fe8000-7f954de00000
    7f954de00000-7f9554ff6000  /dev/zero (deleted)
    7f9554ff6000-7f958de00000
    7f958de00000-7f959508a000  /dev/zero (deleted)
    7f959508a000-7f95cde00000

    -- 512 MB
    7f90cde00000-7f90d5126000  /dev/zero (deleted)
    7f90d5126000-7f914de00000
    7f914de00000-7f9175128000  /dev/zero (deleted)
    ^ buffers mapping, ~627 MB
    7f9175128000-7f944de00000
    7f944de00000-7f9455528000  /dev/zero (deleted)
    7f9455528000-7f94cde00000
    7f94cde00000-7f94d5228000  /dev/zero (deleted)
    7f94d5228000-7f954de00000
    7f954de00000-7f9555266000  /dev/zero (deleted)
    7f9555266000-7f958de00000
    7f958de00000-7f95954aa000  /dev/zero (deleted)
    7f95954aa000-7f95cde00000

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread

* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
  0 siblings, 0 replies; 425+ messages in thread

From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)

Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.

The resize process looks like this:

* The GUC assign hook sets a flag to let the Postmaster know that resize
  was requested.

* Postmaster verifies the flag in the event loop, and starts the resize
  by emitting a ProcSignal barrier.

* All processes, that participate in ProcSignal mechanism, begin to
  process ProcSignal barrier. First a process waits until all processes
  have confirmed they received the message and can start simultaneously.

* Every process recalculates shared memory size based on the new
  NBuffers, adjusts its size using ftruncate and adjust reservation
  permissions with mprotect. One elected process signals the postmaster
  to do the same.

* When finished, every process waits on a global ShmemControl barrier,
  untill all others are finished as well. This way we ensure three
  stages with clear boundaries: before the resize, when all processes
  use old NBuffers; during the resize, when processes have mix of old
  and new NBuffers, and wait until it's done; after the resize, when all
  processes use new NBuffers.

* After all processes are using new value, one of them will initialize
  new shared structures (buffer blocks, descriptors, etc) as needed and
  broadcast new value of NBuffers via ShmemControl in shared memory.
  Other backends are waiting for this operation to finish as well. Then
  the barrier is lifted and everything goes as usual.

Since resizing takes time, we need to take into account that during that time:

- New backends can be spawned. They will check status of the barrier
  early during the bootstrap, and wait until everything is over to work
  with the new NBuffers value.

- Old backends can exit before attempting to resize. Synchronization
  used between backends relies on ProcSignalBarrier and waits for all
  participants received the message at the beginning to gather all
  existing backends.

- Some backends might be blocked and not responsing either before or
  after receiving the message. In the first case such backend still
  have ProcSignalSlot and should be waited for, in the second case
  shared barrier will make sure we still waiting for those backends. In
  any case there is an unbounded wait.

- Backends might join barrier in disjoint groups with some time in
  between. That means that relying only on the shared dynamic barrier is
  not enough -- it will only synchronize resize procedure withing those
  groups. That's why we wait first for all participants of ProcSignal
  mechanism who received the message.

Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():

    -- 128 MB
    7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
    7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
    7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
    7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
    7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~247 MB
    7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~2210 MB
    7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
    7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)

    -- 512 MB
    7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
    7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
    7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
    7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
    7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
    7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
    7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
    7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
    7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
    ^ buffers content, ~632 MB
    7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
    ^ reserved space, ~1824 MB
    7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
    7f887e950000-7f8890a00000 ---s /memfd:main (deleted)

The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.



^ permalink  raw  reply  [nested|flat] 425+ messages in thread


end of thread, other threads:[~2025-06-17 12:16 UTC | newest]

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2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
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2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
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2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2024-10-16 18:24 [PATCH v1 4/5] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
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2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
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