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[PATCH 1/5] sequential scan for dshash
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* [PATCH 1/7] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index b2b8fe60e1..af904c034e 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+		
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index 8c733bfe25..8ab1a21f3e 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Tue_Nov_27_17_59_49_2018_846)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v10-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v22 1/5] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 350f8c0a66..4f0c7ec840 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index fa2e28ff3e..79698a6ad6 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 						 const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Tue_Sep_10_17_58_58_2019_765)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
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 filename="v22-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v24 1/5] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 ++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 350f8c0a66..4f0c7ec840 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index fa2e28ff3e..79698a6ad6 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 						 const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.23.0


----Next_Part(Tue_Dec__3_17_27_59_2019_887)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v24-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/8] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index b2b8fe60e1..af904c034e 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+		
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index 8c733bfe25..8ab1a21f3e 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Thu_Nov_08_20_46_48_2018_519)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v7-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/8] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 138 +++++++++++++++++++++++++++++++++++++++++++++++
 src/include/lib/dshash.h |  23 +++++++-
 2 files changed, 160 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index b46f7c4cfd..5b133226ac 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -592,6 +592,144 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = ((size_t) 1) << hash_table->control->size_log2;
+	status->curitem = NULL;
+	status->curpartition = -1;
+	status->consistent = consistent;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i), LW_SHARED);
+		}
+	}
+	ensure_valid_bucket_pointers(hash_table);
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+		status->hash_table->find_locked = true;
+	}
+	else
+		next_item_pointer = status->curitem->next;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+		Assert(status->hash_table->find_locked);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+
+		/*
+		 * we need a lock on the scanning partition even if the caller don't
+		 * requested a consistent snapshot.
+		 */
+		if (!status->consistent && DsaPointerIsValid(next_item_pointer))
+		{
+			dshash_table_item  *item = dsa_get_address(status->hash_table->area,
+													   next_item_pointer);
+			int next_partition = PARTITION_FOR_HASH(item->hash);
+			if (status->curpartition != next_partition)
+			{
+				if (status->curpartition >= 0)
+					LWLockRelease(PARTITION_LOCK(status->hash_table,
+												 status->curpartition));
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  LW_SHARED);
+				status->curpartition = next_partition;
+			}
+		}
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->find_locked);
+	status->hash_table->find_locked = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+int
+dshash_get_num_entries(dshash_table *hash_table)
+{
+	/* a shotcut implement. should be improved  */
+	dshash_seq_status s;
+	void *p;
+	int n = 0;
+
+	dshash_seq_init(&s, hash_table, false);
+	while ((p = dshash_seq_next(&s)) != NULL)
+		n++;
+
+	return n;
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index 8c733bfe25..8598d9ed84 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -15,6 +15,7 @@
 #define DSHASH_H
 
 #include "utils/dsa.h"
+#include "utils/hsearch.h"
 
 /* The opaque type representing a hash table. */
 struct dshash_table;
@@ -59,6 +60,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	int					curpartition;
+	bool				consistent;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +86,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +95,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern int dshash_get_num_entries(dshash_table *hash_table);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Thu_Sep_27_22_00_49_2018_853)----





^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/5] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 350f8c0a66..4f0c7ec840 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index fa2e28ff3e..79698a6ad6 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 						 const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Thu_Jul_11_16_40_59_2019_397)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v21-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/5] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index f095196fb6..d1908a6137 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+		
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index e5dfd57f0a..b80f3af995 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Mon_Feb_18_21_35_31_2019_949)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v14-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/5] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 185 +++++++++++++++++++++++++++++++++++++--
 src/include/lib/dshash.h |  22 ++++-
 2 files changed, 201 insertions(+), 6 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index fbdd941325..7675370058 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,164 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called for incomplete scans and otherwise
+ * shoudln't. Finished scans are cleaned up automatically.
+ *
+ * Returned elements are locked as is the case with dshash_find.  However, the
+ * caller must not release the lock.
+ *
+ * Same as dynanash, the caller may delete returned elements midst of a scan.
+ *
+ * If consistent is set for dshash_seq_init, the all hash table partitions are
+ * locked in the requested mode (as determined by the exclusive flag) during
+ * the scan.  Otherwise partitions are locked in one-at-a-time way during the
+ * scan.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Lock the next partition then release the current, not in the
+				 * reverse order to to avoid concurrent resizing. Partitions
+				 * are locked in the same order with resize() so dead locks
+				 * won't happen.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
@@ -673,7 +849,6 @@ delete_item(dshash_table *hash_table, dshash_table_item *item)
 /*
  * Grow the hash table if necessary to the requested number of buckets.  The
  * requested size must be double some previously observed size.
- *
  * Must be called without any partition lock held.
  */
 static void
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..ad88f32cdd 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,22 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -70,7 +86,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 						 const void *key, bool exclusive);
@@ -80,6 +95,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.23.0


----Next_Part(Wed_Jan_22_17_24_04_2020_620)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/5] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index f095196fb6..d1908a6137 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+		
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index e5dfd57f0a..b80f3af995 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Fri_Feb_15_17_29_00_2019_199)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v13-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/6] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index f095196fb6..1e8c22f94f 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index e5dfd57f0a..b80f3af995 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Thu_Feb_21_16_05_55_2019_560)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v16-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/5] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index f095196fb6..1e8c22f94f 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index e5dfd57f0a..b80f3af995 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Fri_May_17_14_27_22_2019_078)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v19-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/9] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index b2b8fe60e1..af904c034e 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+		
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index 8c733bfe25..8ab1a21f3e 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Fri_Nov_09_17_33_15_2018_162)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v8-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/5] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index f095196fb6..d1908a6137 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+		
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index e5dfd57f0a..b80f3af995 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Tue_Feb_19_21_40_07_2019_247)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v15-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v23 1/5] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 350f8c0a66..4f0c7ec840 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index fa2e28ff3e..79698a6ad6 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 						 const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Fri_Sep_27_09_46_47_2019_292)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v23-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/5] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index f095196fb6..d1908a6137 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+		
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index e5dfd57f0a..b80f3af995 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Tue_Jan_22_15_48_02_2019_276)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v12-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/7] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index b2b8fe60e1..af904c034e 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+		
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index 8c733bfe25..8ab1a21f3e 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Mon_Nov_12_20_10_42_2018_878)----





^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/6] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index f095196fb6..1e8c22f94f 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index e5dfd57f0a..b80f3af995 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Mon_Feb_25_13_52_14_2019_191)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v17-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/6] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 138 +++++++++++++++++++++++++++++++++++++++++++++++
 src/include/lib/dshash.h |  23 +++++++-
 2 files changed, 160 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index b46f7c4cfd..5b133226ac 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -592,6 +592,144 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = ((size_t) 1) << hash_table->control->size_log2;
+	status->curitem = NULL;
+	status->curpartition = -1;
+	status->consistent = consistent;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i), LW_SHARED);
+		}
+	}
+	ensure_valid_bucket_pointers(hash_table);
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+		status->hash_table->find_locked = true;
+	}
+	else
+		next_item_pointer = status->curitem->next;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+		Assert(status->hash_table->find_locked);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+
+		/*
+		 * we need a lock on the scanning partition even if the caller don't
+		 * requested a consistent snapshot.
+		 */
+		if (!status->consistent && DsaPointerIsValid(next_item_pointer))
+		{
+			dshash_table_item  *item = dsa_get_address(status->hash_table->area,
+													   next_item_pointer);
+			int next_partition = PARTITION_FOR_HASH(item->hash);
+			if (status->curpartition != next_partition)
+			{
+				if (status->curpartition >= 0)
+					LWLockRelease(PARTITION_LOCK(status->hash_table,
+												 status->curpartition));
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  LW_SHARED);
+				status->curpartition = next_partition;
+			}
+		}
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->find_locked);
+	status->hash_table->find_locked = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+int
+dshash_get_num_entries(dshash_table *hash_table)
+{
+	/* a shotcut implement. should be improved  */
+	dshash_seq_status s;
+	void *p;
+	int n = 0;
+
+	dshash_seq_init(&s, hash_table, false);
+	while ((p = dshash_seq_next(&s)) != NULL)
+		n++;
+
+	return n;
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index 8c733bfe25..8598d9ed84 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -15,6 +15,7 @@
 #define DSHASH_H
 
 #include "utils/dsa.h"
+#include "utils/hsearch.h"
 
 /* The opaque type representing a hash table. */
 struct dshash_table;
@@ -59,6 +60,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	int					curpartition;
+	bool				consistent;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +86,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +95,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern int dshash_get_num_entries(dshash_table *hash_table);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Tue_Jul_10_21_07_40_2018_417)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v4-0002-Change-stats-collector-to-an-axiliary-process.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/7] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index f095196fb6..d1908a6137 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+		
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index e5dfd57f0a..b80f3af995 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Mon_Jan_21_21_19_07_2019_726)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v11-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/5] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index f095196fb6..1e8c22f94f 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index e5dfd57f0a..b80f3af995 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Wed_Mar_27_16_36_25_2019_836)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v18-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/5] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 24dd372252..a0ccd7ee7c 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index fa2e28ff3e..79698a6ad6 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 						 const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Thu_Jul_04_19_27_54_2019_888)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/3] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 122 +++++++++++++++++++++++++++++++++++++++++++++++
 src/include/lib/dshash.h |  20 +++++++-
 2 files changed, 141 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index b46f7c4cfd..e6c1ef44f1 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -592,6 +592,128 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * Initialize a sequential scan on the hash_table. Allows no modifications
+ * during a scan if consistent = true.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = ((size_t) 1) << hash_table->control->size_log2;
+	status->curitem = NULL;
+	status->curpartition = -1;
+	status->consistent = consistent;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i), LW_SHARED);
+		}
+	}
+	ensure_valid_bucket_pointers(hash_table);
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+		status->hash_table->find_locked = true;
+	}
+	else
+		next_item_pointer = status->curitem->next;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_release(status);
+			return NULL;
+		}
+		Assert(status->hash_table->find_locked);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+
+		/*
+		 * we need a lock on the scanning partition even if the caller don't
+		 * requested a consistent snapshot.
+		 */
+		if (!status->consistent && DsaPointerIsValid(next_item_pointer))
+		{
+			dshash_table_item  *item = dsa_get_address(status->hash_table->area,
+													   next_item_pointer);
+			int next_partition = PARTITION_FOR_HASH(item->hash);
+			if (status->curpartition != next_partition)
+			{
+				if (status->curpartition >= 0)
+					LWLockRelease(PARTITION_LOCK(status->hash_table,
+												 status->curpartition));
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  LW_SHARED);
+				status->curpartition = next_partition;
+			}
+		}
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_release(dshash_seq_status *status)
+{
+	Assert(status->hash_table->find_locked);
+	status->hash_table->find_locked = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+int
+dshash_get_num_entries(dshash_table *hash_table)
+{
+	/* a shotcut implement. should be improved  */
+	dshash_seq_status s;
+	void *p;
+	int n = 0;
+
+	dshash_seq_init(&s, hash_table, false);
+	while ((p = dshash_seq_next(&s)) != NULL)
+		n++;
+
+	return n;
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index 8c733bfe25..a4565d3219 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -15,6 +15,7 @@
 #define DSHASH_H
 
 #include "utils/dsa.h"
+#include "utils/hsearch.h"
 
 /* The opaque type representing a hash table. */
 struct dshash_table;
@@ -59,6 +60,18 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	int					curpartition;
+	bool				consistent;
+};
+
+typedef struct dshash_seq_status dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +83,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +92,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_release(dshash_seq_status *status);
+extern int dshash_get_num_entries(dshash_table *hash_table);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Tue_Jul_03_19_01_44_2018_430)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v2-0002-Change-stats-collector-to-an-axiliary-process.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/5] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 188 ++++++++++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  23 +++++-
 2 files changed, 206 insertions(+), 5 deletions(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index f095196fb6..1e8c22f94f 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -549,9 +560,14 @@ dshash_delete_entry(dshash_table *hash_table, void *entry)
 								LW_EXCLUSIVE));
 
 	delete_item(hash_table, item);
-	hash_table->find_locked = false;
-	hash_table->find_exclusively_locked = false;
-	LWLockRelease(PARTITION_LOCK(hash_table, partition));
+
+	/* We need to keep partition lock while sequential scan */
+	if (!hash_table->seqscan_running)
+	{
+		hash_table->find_locked = false;
+		hash_table->find_exclusively_locked = false;
+		LWLockRelease(PARTITION_LOCK(hash_table, partition));
+	}
 }
 
 /*
@@ -568,6 +584,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +610,168 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent, bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->consistent = consistent;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i),
+						  exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		}
+		ensure_valid_bucket_pointers(hash_table);
+	}
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		if (!status->consistent)
+		{
+			partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+			LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			status->curpartition = partition;
+
+			/* resize doesn't happen from now until seq scan ends */
+			status->nbuckets =
+				NUM_BUCKETS(status->hash_table->control->size_log2);
+			ensure_valid_bucket_pointers(status->hash_table);
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		if (!status->consistent)
+		{
+			int next_partition =
+				PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+										   status->hash_table->size_log2);
+
+			/* Move lock along with partition for the bucket */
+			if (status->curpartition != next_partition)
+			{
+				/*
+				 * Take lock on the next partition then release the current,
+				 * not in the reverse order. This is required to avoid
+				 * resizing from happening during a sequential scan. Locks are
+				 * taken in partition order so no dead lock happen with other
+				 * seq scans or resizing.
+				 */
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+				LWLockRelease(PARTITION_LOCK(status->hash_table,
+											 status->curpartition));
+				status->curpartition = next_partition;
+			}
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * This item can be deleted by the caller. Store the next item for the
+	 * next iteration for the occasion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index e5dfd57f0a..b80f3af995 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,23 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				consistent;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +87,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +96,11 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool consistent, bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Fri_May_17_15_47_20_2019_554)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v20-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH 1/6] sequential scan for dshash
@ 2018-06-29 07:41 Kyotaro Horiguchi <horiguchi.kyotaro@lab.ntt.co.jp>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2018-06-29 07:41 UTC (permalink / raw)

Add sequential scan feature to dshash.
---
 src/backend/lib/dshash.c | 138 +++++++++++++++++++++++++++++++++++++++++++++++
 src/include/lib/dshash.h |  23 +++++++-
 2 files changed, 160 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index b46f7c4cfd..5b133226ac 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -592,6 +592,144 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan trhough dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should be called if and only if the scan is abandoned
+ * before completion; if dshash_seq_next returns NULL then it has already done
+ * the end-of-scan cleanup.
+ *
+ * On returning element, it is locked as is the case with dshash_find.
+ * However, the caller must not release the lock. The lock is released as
+ * necessary in continued scan.
+ *
+ * As opposed to the equivalent for dynanash, the caller is not supposed to
+ * delete the returned element before continuing the scan.
+ *
+ * If consistent is set for dshash_seq_init, the whole hash table is
+ * non-exclusively locked. Otherwise a part of the hash table is locked in the
+ * same mode (partition lock).
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool consistent)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = ((size_t) 1) << hash_table->control->size_log2;
+	status->curitem = NULL;
+	status->curpartition = -1;
+	status->consistent = consistent;
+
+	/*
+	 * Protect all partitions from modification if the caller wants a
+	 * consistent result.
+	 */
+	if (consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+		{
+			Assert(!LWLockHeldByMe(PARTITION_LOCK(hash_table, i)));
+
+			LWLockAcquire(PARTITION_LOCK(hash_table, i), LW_SHARED);
+		}
+	}
+	ensure_valid_bucket_pointers(hash_table);
+}
+
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+		status->hash_table->find_locked = true;
+	}
+	else
+		next_item_pointer = status->curitem->next;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finsih. */
+			dshash_seq_term(status);
+			return NULL;
+		}
+		Assert(status->hash_table->find_locked);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+
+		/*
+		 * we need a lock on the scanning partition even if the caller don't
+		 * requested a consistent snapshot.
+		 */
+		if (!status->consistent && DsaPointerIsValid(next_item_pointer))
+		{
+			dshash_table_item  *item = dsa_get_address(status->hash_table->area,
+													   next_item_pointer);
+			int next_partition = PARTITION_FOR_HASH(item->hash);
+			if (status->curpartition != next_partition)
+			{
+				if (status->curpartition >= 0)
+					LWLockRelease(PARTITION_LOCK(status->hash_table,
+												 status->curpartition));
+				LWLockAcquire(PARTITION_LOCK(status->hash_table,
+											 next_partition),
+							  LW_SHARED);
+				status->curpartition = next_partition;
+			}
+		}
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->find_locked);
+	status->hash_table->find_locked = false;
+
+	if (status->consistent)
+	{
+		int i;
+
+		for (i = 0; i < DSHASH_NUM_PARTITIONS; ++i)
+			LWLockRelease(PARTITION_LOCK(status->hash_table, i));
+	}
+	else if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+int
+dshash_get_num_entries(dshash_table *hash_table)
+{
+	/* a shotcut implement. should be improved  */
+	dshash_seq_status s;
+	void *p;
+	int n = 0;
+
+	dshash_seq_init(&s, hash_table, false);
+	while ((p = dshash_seq_next(&s)) != NULL)
+		n++;
+
+	return n;
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index 8c733bfe25..8598d9ed84 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -15,6 +15,7 @@
 #define DSHASH_H
 
 #include "utils/dsa.h"
+#include "utils/hsearch.h"
 
 /* The opaque type representing a hash table. */
 struct dshash_table;
@@ -59,6 +60,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state of dshash. The detail is exposed since the storage
+ * size should be known to users but it should be considered as an opaque
+ * type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	int					curpartition;
+	bool				consistent;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 			  const dshash_parameters *params,
@@ -70,7 +86,6 @@ extern dshash_table *dshash_attach(dsa_area *area,
 extern void dshash_detach(dshash_table *hash_table);
 extern dshash_table_handle dshash_get_hash_table_handle(dshash_table *hash_table);
 extern void dshash_destroy(dshash_table *hash_table);
-
 /* Finding, creating, deleting entries. */
 extern void *dshash_find(dshash_table *hash_table,
 			const void *key, bool exclusive);
@@ -80,6 +95,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern int dshash_get_num_entries(dshash_table *hash_table);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.16.3


----Next_Part(Wed_Jul_04_17_29_11_2018_498)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v3-0002-Change-stats-collector-to-an-axiliary-process.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v41 1/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 160 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  22 ++++++
 2 files changed, 181 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..b829167872 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,156 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..c337099061 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.4


----Next_Part(Fri_Nov__6_09_27_56_2020_738)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v41-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v56 1/6] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This commit
adds the functionality.  The interface is similar but a bit different
both from that of dynahash and simple dshash search functions.  One of
the most significant differences is the sequential scan interface of
dshash always needs a call to dshash_seq_term when scan ends. Another
is locking.  Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a scan.
The seqscan interface allows entry deletion while a scan is in
progress. The in-scan deletion should be performed by
dshash_delete_current().
---
 src/backend/lib/dshash.c         | 161 ++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h         |  22 +++++
 src/tools/pgindent/typedefs.list |   1 +
 3 files changed, 183 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index e0c763be32..29ad767618 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,157 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition PG_USED_FOR_ASSERTS_ONLY
+		= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index c069ec9de7..a6ea377173 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
diff --git a/src/tools/pgindent/typedefs.list b/src/tools/pgindent/typedefs.list
index 61cf4eae1f..78e852569e 100644
--- a/src/tools/pgindent/typedefs.list
+++ b/src/tools/pgindent/typedefs.list
@@ -2958,6 +2958,7 @@ dshash_hash
 dshash_hash_function
 dshash_parameters
 dshash_partition
+dshash_seq_status
 dshash_table
 dshash_table_control
 dshash_table_handle
-- 
2.27.0


----Next_Part(Tue_Mar_16_10_27_55_2021_500)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v56-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v46 1/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 160 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  22 ++++++
 2 files changed, 181 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index e0c763be32..520bfa0979 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,156 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index c069ec9de7..a6ea377173 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.27.0


----Next_Part(Thu_Jan_14_15_14_25_2021_903)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v46-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v49 1/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c         | 160 ++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h         |  22 +++++
 src/tools/pgindent/typedefs.list |   1 +
 3 files changed, 182 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index e0c763be32..520bfa0979 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,156 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index c069ec9de7..a6ea377173 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
diff --git a/src/tools/pgindent/typedefs.list b/src/tools/pgindent/typedefs.list
index 8bd95aefa1..2b591e94e6 100644
--- a/src/tools/pgindent/typedefs.list
+++ b/src/tools/pgindent/typedefs.list
@@ -2954,6 +2954,7 @@ dshash_hash
 dshash_hash_function
 dshash_parameters
 dshash_partition
+dshash_seq_status
 dshash_table
 dshash_table_control
 dshash_table_handle
-- 
2.27.0


----Next_Part(Tue_Mar__9_16_53_11_2021_575)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v49-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v30 2/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 149 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  21 ++++++
 2 files changed, 169 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..1ef093e2e9 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,145 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..0ca9514021 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.2


----Next_Part(Wed_Apr__1_17_37_23_2020_570)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v30-0003-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v40 1/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 160 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  22 ++++++
 2 files changed, 181 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..b829167872 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,156 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..c337099061 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.4


----Next_Part(Wed_Nov__4_17_39_10_2020_208)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v40-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v35 2/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 149 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  21 ++++++
 2 files changed, 169 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..1ef093e2e9 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,145 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..0ca9514021 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.2


----Next_Part(Mon_Jun__8_17_32_04_2020_489)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v35-0003-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v39 1/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 160 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  22 ++++++
 2 files changed, 181 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..b829167872 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,156 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..c337099061 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.4


----Next_Part(Tue_Oct__6_10_06_44_2020_382)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v39-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v33 2/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 149 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  21 ++++++
 2 files changed, 169 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..1ef093e2e9 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,145 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..0ca9514021 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.2


----Next_Part(Thu_Apr_30_13_22_05_2020_409)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v33-0003-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v27 2/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 150 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  21 ++++++
 2 files changed, 170 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..fb7e23c4cb 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,146 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		/* Move lock along with partition for the bucket */
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Lock the next partition then release the current, not in the
+			 * reverse order to avoid concurrent resizing. Partitions are
+			 * locked in the same order with resize() so dead locks won't
+			 * happen.
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..81a929b8d9 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.2


----Next_Part(Fri_Mar_27_16_31_15_2020_716)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v27-0003-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v32 2/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 149 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  21 ++++++
 2 files changed, 169 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..1ef093e2e9 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,145 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..0ca9514021 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.2


----Next_Part(Tue_Apr__7_16_38_17_2020_299)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v32-0003-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v51 1/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c         | 160 ++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h         |  22 +++++
 src/tools/pgindent/typedefs.list |   1 +
 3 files changed, 182 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index e0c763be32..520bfa0979 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,156 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index c069ec9de7..a6ea377173 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
diff --git a/src/tools/pgindent/typedefs.list b/src/tools/pgindent/typedefs.list
index 8bd95aefa1..2b591e94e6 100644
--- a/src/tools/pgindent/typedefs.list
+++ b/src/tools/pgindent/typedefs.list
@@ -2954,6 +2954,7 @@ dshash_hash
 dshash_hash_function
 dshash_parameters
 dshash_partition
+dshash_seq_status
 dshash_table
 dshash_table_control
 dshash_table_handle
-- 
2.27.0


----Next_Part(Wed_Mar_10_12_10_39_2021_432)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v51-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v52 1/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c         | 160 ++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h         |  22 +++++
 src/tools/pgindent/typedefs.list |   1 +
 3 files changed, 182 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index e0c763be32..520bfa0979 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,156 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index c069ec9de7..a6ea377173 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
diff --git a/src/tools/pgindent/typedefs.list b/src/tools/pgindent/typedefs.list
index e4d2debb3c..21fd98af66 100644
--- a/src/tools/pgindent/typedefs.list
+++ b/src/tools/pgindent/typedefs.list
@@ -2954,6 +2954,7 @@ dshash_hash
 dshash_hash_function
 dshash_parameters
 dshash_partition
+dshash_seq_status
 dshash_table
 dshash_table_control
 dshash_table_handle
-- 
2.27.0


----Next_Part(Wed_Mar_10_17_51_37_2021_192)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v52-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v37 1/6] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 149 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  21 ++++++
 2 files changed, 169 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..1ef093e2e9 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,145 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..0ca9514021 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.4


----Next_Part(Fri_Sep_25_09_27_26_2020_419)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v37-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v57 1/6] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This commit
adds the functionality.  The interface is similar but a bit different
both from that of dynahash and simple dshash search functions.  One of
the most significant differences is the sequential scan interface of
dshash always needs a call to dshash_seq_term when scan ends. Another
is locking.  Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a scan.
The seqscan interface allows entry deletion while a scan is in
progress. The in-scan deletion should be performed by
dshash_delete_current().
---
 src/backend/lib/dshash.c         | 161 ++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h         |  22 +++++
 src/tools/pgindent/typedefs.list |   1 +
 3 files changed, 183 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index e0c763be32..29ad767618 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,157 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition PG_USED_FOR_ASSERTS_ONLY
+		= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index c069ec9de7..a6ea377173 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
diff --git a/src/tools/pgindent/typedefs.list b/src/tools/pgindent/typedefs.list
index 1d1d5d2f0e..58ad2991a7 100644
--- a/src/tools/pgindent/typedefs.list
+++ b/src/tools/pgindent/typedefs.list
@@ -2961,6 +2961,7 @@ dshash_hash
 dshash_hash_function
 dshash_parameters
 dshash_partition
+dshash_seq_status
 dshash_table
 dshash_table_control
 dshash_table_handle
-- 
2.27.0


----Next_Part(Thu_Mar_18_16_56_02_2021_947)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v57-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v48 1/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c         | 160 ++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h         |  22 +++++
 src/tools/pgindent/typedefs.list |   1 +
 3 files changed, 182 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index e0c763be32..520bfa0979 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,156 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index c069ec9de7..a6ea377173 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
diff --git a/src/tools/pgindent/typedefs.list b/src/tools/pgindent/typedefs.list
index 8bd95aefa1..2b591e94e6 100644
--- a/src/tools/pgindent/typedefs.list
+++ b/src/tools/pgindent/typedefs.list
@@ -2954,6 +2954,7 @@ dshash_hash
 dshash_hash_function
 dshash_parameters
 dshash_partition
+dshash_seq_status
 dshash_table
 dshash_table_control
 dshash_table_handle
-- 
2.27.0


----Next_Part(Fri_Mar__5_17_18_56_2021_497)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v48-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v29 2/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 150 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  21 ++++++
 2 files changed, 170 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..fb7e23c4cb 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,146 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		/* Move lock along with partition for the bucket */
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Lock the next partition then release the current, not in the
+			 * reverse order to avoid concurrent resizing. Partitions are
+			 * locked in the same order with resize() so dead locks won't
+			 * happen.
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..81a929b8d9 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.2


----Next_Part(Wed_Apr__1_15_15_11_2020_923)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v29-0003-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v25 2/8] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 162 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  21 +++++
 2 files changed, 182 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..2086bdbea9 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -112,6 +112,7 @@ struct dshash_table
 	size_t		size_log2;		/* log2(number of buckets) */
 	bool		find_locked;	/* Is any partition lock held by 'find'? */
 	bool		find_exclusively_locked;	/* ... exclusively? */
+	bool		seqscan_running;/* now under sequential scan */
 };
 
 /* Given a pointer to an item, find the entry (user data) it holds. */
@@ -127,6 +128,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +158,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -228,6 +237,7 @@ dshash_create(dsa_area *area, const dshash_parameters *params, void *arg)
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 
 	/*
 	 * Set up the initial array of buckets.  Our initial size is the same as
@@ -279,6 +289,7 @@ dshash_attach(dsa_area *area, const dshash_parameters *params,
 	hash_table->control = dsa_get_address(area, control);
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
+	hash_table->seqscan_running = false;
 	Assert(hash_table->control->magic == DSHASH_MAGIC);
 
 	/*
@@ -324,7 +335,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -568,6 +579,8 @@ dshash_release_lock(dshash_table *hash_table, void *entry)
 	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition_index),
 								hash_table->find_exclusively_locked
 								? LW_EXCLUSIVE : LW_SHARED));
+	/* lock is under control of sequential scan */
+	Assert(!hash_table->seqscan_running);
 
 	hash_table->find_locked = false;
 	hash_table->find_exclusively_locked = false;
@@ -592,6 +605,153 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	/* allowed at most one scan at once */
+	Assert(!hash_table->seqscan_running);
+
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+	hash_table->seqscan_running = true;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	Assert(status->hash_table->seqscan_running);
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		/* Move lock along with partition for the bucket */
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Lock the next partition then release the current, not in the
+			 * reverse order to avoid concurrent resizing. Partitions are
+			 * locked in the same order with resize() so dead locks won't
+			 * happen.
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	Assert(status->hash_table->seqscan_running);
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+	status->hash_table->seqscan_running = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..81a929b8d9 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.2


----Next_Part(Thu_Mar_19_20_30_04_2020_284)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v25-0003-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v45 1/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 160 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  22 ++++++
 2 files changed, 181 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index e0c763be32..520bfa0979 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,156 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index c069ec9de7..a6ea377173 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.27.0


----Next_Part(Fri_Jan__8_10_24_34_2021_185)--
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Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v45-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v44 1/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 160 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  22 ++++++
 2 files changed, 181 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..b829167872 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,156 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..c337099061 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.27.0


----Next_Part(Mon_Dec_21_17_16_20_2020_608)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
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 filename="v44-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v50 1/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c         | 160 ++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h         |  22 +++++
 src/tools/pgindent/typedefs.list |   1 +
 3 files changed, 182 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index e0c763be32..520bfa0979 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,156 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index c069ec9de7..a6ea377173 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
diff --git a/src/tools/pgindent/typedefs.list b/src/tools/pgindent/typedefs.list
index 8bd95aefa1..2b591e94e6 100644
--- a/src/tools/pgindent/typedefs.list
+++ b/src/tools/pgindent/typedefs.list
@@ -2954,6 +2954,7 @@ dshash_hash
 dshash_hash_function
 dshash_parameters
 dshash_partition
+dshash_seq_status
 dshash_table
 dshash_table_control
 dshash_table_handle
-- 
2.27.0


----Next_Part(Tue_Mar__9_18_29_34_2021_806)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v50-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v38 1/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 160 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  22 ++++++
 2 files changed, 181 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..b829167872 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,156 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..c337099061 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.4


----Next_Part(Thu_Oct__1_09_07_22_2020_252)--
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Content-Transfer-Encoding: 7bit
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 filename="v38-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v43 1/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 160 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  22 ++++++
 2 files changed, 181 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..b829167872 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,156 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..c337099061 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.27.0


----Next_Part(Fri_Dec_11_16_50_03_2020_915)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v43-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v28 2/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 150 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  21 ++++++
 2 files changed, 170 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..fb7e23c4cb 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,146 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert (status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Also move parititon lock if needed */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		/* Move lock along with partition for the bucket */
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Lock the next partition then release the current, not in the
+			 * reverse order to avoid concurrent resizing. Partitions are
+			 * locked in the same order with resize() so dead locks won't
+			 * happen.
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..81a929b8d9 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;
+	int					curbucket;
+	int					nbuckets;
+	dshash_table_item  *curitem;
+	dsa_pointer			pnextitem;
+	int					curpartition;
+	bool				exclusive;
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.2


----Next_Part(Mon_Mar_30_09_29_45_2020_582)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v28-0003-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v47 1/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 160 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  22 ++++++
 2 files changed, 181 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index e0c763be32..520bfa0979 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,156 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index c069ec9de7..a6ea377173 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.27.0


----Next_Part(Thu_Jan_21_12_03_48_2021_284)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v47-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v33 2/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 149 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  21 ++++++
 2 files changed, 169 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..1ef093e2e9 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,145 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..0ca9514021 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.2


----Next_Part(Fri_May_15_17_30_36_2020_111)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v33-0003-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v42 1/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 160 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  22 ++++++
 2 files changed, 181 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..b829167872 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,156 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(status->hash_table,
+											   status->curpartition),
+								status->exclusive ? LW_EXCLUSIVE : LW_SHARED));
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
+/* Get the current entry while a seq scan. */
+void *
+dshash_get_current(dshash_seq_status *status)
+{
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..c337099061 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,13 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
+extern void *dshash_get_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.4


----Next_Part(Wed_Nov_11_10_07_22_2020_796)--
Content-Type: Text/X-Patch; charset=us-ascii
Content-Transfer-Encoding: 7bit
Content-Disposition: inline;
 filename="v42-0002-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v34 2/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 149 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  21 ++++++
 2 files changed, 169 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..1ef093e2e9 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,145 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..0ca9514021 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.2


----Next_Part(Mon_Jun__1_18_00_01_2020_089)--
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Content-Transfer-Encoding: 7bit
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 filename="v34-0003-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v31 2/7] sequential scan for dshash
@ 2020-03-13 07:58 Kyotaro Horiguchi <horikyoga.ntt@gmail.com>
  0 siblings, 0 replies; 54+ messages in thread

From: Kyotaro Horiguchi @ 2020-03-13 07:58 UTC (permalink / raw)

Dshash did not allow scan the all entries sequentially. This adds the
functionality. The interface is similar but a bit different both from
that of dynahash and simple dshash search functions. One of the most
significant differences is the sequential scan interface of dshash
always needs a call to dshash_seq_term when scan ends. Another is
locking. Dshash holds partition lock when returning an entry,
dshash_seq_next() also holds lock when returning an entry but callers
shouldn't release it, since the lock is essential to continue a
scan. The seqscan interface allows entry deletion while a scan. The
in-scan deletion should be performed by dshash_delete_current().
---
 src/backend/lib/dshash.c | 149 ++++++++++++++++++++++++++++++++++++++-
 src/include/lib/dshash.h |  21 ++++++
 2 files changed, 169 insertions(+), 1 deletion(-)

diff --git a/src/backend/lib/dshash.c b/src/backend/lib/dshash.c
index 78ccf03217..1ef093e2e9 100644
--- a/src/backend/lib/dshash.c
+++ b/src/backend/lib/dshash.c
@@ -127,6 +127,10 @@ struct dshash_table
 #define NUM_SPLITS(size_log2)					\
 	(size_log2 - DSHASH_NUM_PARTITIONS_LOG2)
 
+/* How many buckets are there in a given size? */
+#define NUM_BUCKETS(size_log2)		\
+	(((size_t) 1) << (size_log2))
+
 /* How many buckets are there in each partition at a given size? */
 #define BUCKETS_PER_PARTITION(size_log2)		\
 	(((size_t) 1) << NUM_SPLITS(size_log2))
@@ -153,6 +157,10 @@ struct dshash_table
 #define BUCKET_INDEX_FOR_PARTITION(partition, size_log2)	\
 	((partition) << NUM_SPLITS(size_log2))
 
+/* Choose partition based on bucket index. */
+#define PARTITION_FOR_BUCKET_INDEX(bucket_idx, size_log2)				\
+	((bucket_idx) >> NUM_SPLITS(size_log2))
+
 /* The head of the active bucket for a given hash value (lvalue). */
 #define BUCKET_FOR_HASH(hash_table, hash)								\
 	(hash_table->buckets[												\
@@ -324,7 +332,7 @@ dshash_destroy(dshash_table *hash_table)
 	ensure_valid_bucket_pointers(hash_table);
 
 	/* Free all the entries. */
-	size = ((size_t) 1) << hash_table->size_log2;
+	size = NUM_BUCKETS(hash_table->size_log2);
 	for (i = 0; i < size; ++i)
 	{
 		dsa_pointer item_pointer = hash_table->buckets[i];
@@ -592,6 +600,145 @@ dshash_memhash(const void *v, size_t size, void *arg)
 	return tag_hash(v, size);
 }
 
+/*
+ * dshash_seq_init/_next/_term
+ *           Sequentially scan through dshash table and return all the
+ *           elements one by one, return NULL when no more.
+ *
+ * dshash_seq_term should always be called when a scan finished.
+ * The caller may delete returned elements midst of a scan by using
+ * dshash_delete_current(). exclusive must be true to delete elements.
+ */
+void
+dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+				bool exclusive)
+{
+	status->hash_table = hash_table;
+	status->curbucket = 0;
+	status->nbuckets = 0;
+	status->curitem = NULL;
+	status->pnextitem = InvalidDsaPointer;
+	status->curpartition = -1;
+	status->exclusive = exclusive;
+}
+
+/*
+ * Returns the next element.
+ *
+ * Returned elements are locked and the caller must not explicitly release
+ * it. It is released at the next call to dshash_next().
+ */
+void *
+dshash_seq_next(dshash_seq_status *status)
+{
+	dsa_pointer next_item_pointer;
+
+	if (status->curitem == NULL)
+	{
+		int partition;
+
+		Assert(status->curbucket == 0);
+		Assert(!status->hash_table->find_locked);
+
+		/* first shot. grab the first item. */
+		partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+		LWLockAcquire(PARTITION_LOCK(status->hash_table, partition),
+					  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+		status->curpartition = partition;
+
+		/* resize doesn't happen from now until seq scan ends */
+		status->nbuckets =
+			NUM_BUCKETS(status->hash_table->control->size_log2);
+		ensure_valid_bucket_pointers(status->hash_table);
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+	else
+		next_item_pointer = status->pnextitem;
+
+	/* Move to the next bucket if we finished the current bucket */
+	while (!DsaPointerIsValid(next_item_pointer))
+	{
+		int next_partition;
+
+		if (++status->curbucket >= status->nbuckets)
+		{
+			/* all buckets have been scanned. finish. */
+			return NULL;
+		}
+
+		/* Check if move to the next partition */
+		next_partition =
+			PARTITION_FOR_BUCKET_INDEX(status->curbucket,
+									   status->hash_table->size_log2);
+
+		if (status->curpartition != next_partition)
+		{
+			/*
+			 * Move to the next partition. Lock the next partition then release
+			 * the current, not in the reverse order to avoid concurrent
+			 * resizing.  Avoid dead lock by taking lock in the same order
+			 * with resize().
+			 */
+			LWLockAcquire(PARTITION_LOCK(status->hash_table,
+										 next_partition),
+						  status->exclusive ? LW_EXCLUSIVE : LW_SHARED);
+			LWLockRelease(PARTITION_LOCK(status->hash_table,
+										 status->curpartition));
+			status->curpartition = next_partition;
+		}
+
+		next_item_pointer = status->hash_table->buckets[status->curbucket];
+	}
+
+	status->curitem =
+		dsa_get_address(status->hash_table->area, next_item_pointer);
+	status->hash_table->find_locked = true;
+	status->hash_table->find_exclusively_locked = status->exclusive;
+
+	/*
+	 * The caller may delete the item. Store the next item in case of deletion.
+	 */
+	status->pnextitem = status->curitem->next;
+
+	return ENTRY_FROM_ITEM(status->curitem);
+}
+
+/*
+ * Terminates the seqscan and release all locks.
+ *
+ * Should be always called when finishing or exiting a seqscan.
+ */
+void
+dshash_seq_term(dshash_seq_status *status)
+{
+	status->hash_table->find_locked = false;
+	status->hash_table->find_exclusively_locked = false;
+
+	if (status->curpartition >= 0)
+		LWLockRelease(PARTITION_LOCK(status->hash_table, status->curpartition));
+}
+
+/* Remove the current entry while a seq scan. */
+void
+dshash_delete_current(dshash_seq_status *status)
+{
+	dshash_table	   *hash_table	= status->hash_table;
+	dshash_table_item  *item		= status->curitem;
+	size_t				partition	= PARTITION_FOR_HASH(item->hash);
+
+	Assert(status->exclusive);
+	Assert(hash_table->control->magic == DSHASH_MAGIC);
+	Assert(hash_table->find_locked);
+	Assert(hash_table->find_exclusively_locked);
+	Assert(LWLockHeldByMeInMode(PARTITION_LOCK(hash_table, partition),
+								LW_EXCLUSIVE));
+
+	delete_item(hash_table, item);
+}
+
 /*
  * Print debugging information about the internal state of the hash table to
  * stderr.  The caller must hold no partition locks.
diff --git a/src/include/lib/dshash.h b/src/include/lib/dshash.h
index b86df68e77..0ca9514021 100644
--- a/src/include/lib/dshash.h
+++ b/src/include/lib/dshash.h
@@ -59,6 +59,21 @@ typedef struct dshash_parameters
 struct dshash_table_item;
 typedef struct dshash_table_item dshash_table_item;
 
+/*
+ * Sequential scan state. The detail is exposed to let users know the storage
+ * size but it should be considered as an opaque type by callers.
+ */
+typedef struct dshash_seq_status
+{
+	dshash_table	   *hash_table;	/* dshash table working on */
+	int					curbucket;	/* bucket number we are at */
+	int					nbuckets;	/* total number of buckets in the dshash */
+	dshash_table_item  *curitem;	/* item we are currently at */
+	dsa_pointer			pnextitem;	/* dsa-pointer to the next item */
+	int					curpartition;	/* partition number we are at */
+	bool				exclusive;	/* locking mode */
+} dshash_seq_status;
+
 /* Creating, sharing and destroying from hash tables. */
 extern dshash_table *dshash_create(dsa_area *area,
 								   const dshash_parameters *params,
@@ -80,6 +95,12 @@ extern bool dshash_delete_key(dshash_table *hash_table, const void *key);
 extern void dshash_delete_entry(dshash_table *hash_table, void *entry);
 extern void dshash_release_lock(dshash_table *hash_table, void *entry);
 
+/* seq scan support */
+extern void dshash_seq_init(dshash_seq_status *status, dshash_table *hash_table,
+							bool exclusive);
+extern void *dshash_seq_next(dshash_seq_status *status);
+extern void dshash_seq_term(dshash_seq_status *status);
+extern void dshash_delete_current(dshash_seq_status *status);
 /* Convenience hash and compare functions wrapping memcmp and tag_hash. */
 extern int	dshash_memcmp(const void *a, const void *b, size_t size, void *arg);
 extern dshash_hash dshash_memhash(const void *v, size_t size, void *arg);
-- 
2.18.2


----Next_Part(Fri_Apr__3_17_31_17_2020_104)--
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Content-Transfer-Encoding: 7bit
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 filename="v31-0003-Add-conditional-lock-feature-to-dshash.patch"



^ permalink  raw  reply  [nested|flat] 54+ messages in thread

* [PATCH v14 6/8] Row pattern recognition patch (docs).
@ 2024-02-28 13:59 Tatsuo Ishii <ishii@postgresql.org>
  0 siblings, 0 replies; 54+ messages in thread

From: Tatsuo Ishii @ 2024-02-28 13:59 UTC (permalink / raw)

---
 doc/src/sgml/advanced.sgml   | 80 ++++++++++++++++++++++++++++++++++++
 doc/src/sgml/func.sgml       | 54 ++++++++++++++++++++++++
 doc/src/sgml/ref/select.sgml | 38 ++++++++++++++++-
 3 files changed, 170 insertions(+), 2 deletions(-)

diff --git a/doc/src/sgml/advanced.sgml b/doc/src/sgml/advanced.sgml
index 755c9f1485..cf18dd887e 100644
--- a/doc/src/sgml/advanced.sgml
+++ b/doc/src/sgml/advanced.sgml
@@ -537,6 +537,86 @@ WHERE pos &lt; 3;
     <literal>rank</literal> less than 3.
    </para>
 
+   <para>
+    Row pattern common syntax can be used to perform row pattern recognition
+    in a query. Row pattern common syntax includes two sub
+    clauses: <literal>DEFINE</literal>
+    and <literal>PATTERN</literal>. <literal>DEFINE</literal> defines
+    definition variables along with an expression. The expression must be a
+    logical expression, which means it must
+    return <literal>TRUE</literal>, <literal>FALSE</literal>
+    or <literal>NULL</literal>. The expression may comprise column references
+    and functions. Window functions, aggregate functions and subqueries are
+    not allowed. An example of <literal>DEFINE</literal> is as follows.
+
+<programlisting>
+DEFINE
+ LOWPRICE AS price &lt;= 100,
+ UP AS price &gt; PREV(price),
+ DOWN AS price &lt; PREV(price)
+</programlisting>
+
+    Note that <function>PREV</function> returns the price column in the
+    previous row if it's called in a context of row pattern recognition. So in
+    the second line the definition variable "UP" is <literal>TRUE</literal>
+    when the price column in the current row is greater than the price column
+    in the previous row. Likewise, "DOWN" is <literal>TRUE</literal> when when
+    the price column in the current row is lower than the price column in the
+    previous row.
+   </para>
+   <para>
+    Once <literal>DEFINE</literal> exists, <literal>PATTERN</literal> can be
+    used. <literal>PATTERN</literal> defines a sequence of rows that satisfies
+    certain conditions.  For example following <literal>PATTERN</literal>
+    defines that a row starts with the condition "LOWPRICE", then one or more
+    rows satisfy "UP" and finally one or more rows satisfy "DOWN". Note that
+    "+" means one or more matches. Also you can use "*", which means zero or
+    more matches. If a sequence of rows which satisfies the PATTERN is found,
+    in the starting row of the sequence of rows all window functions and
+    aggregates are shown in the target list. Note that aggregations only look
+    into the matched rows, rather than whole frame. In the second or
+    subsequent rows all window functions and aggregates are NULL. For rows
+    that do not match the PATTERN, all window functions and aggregates are
+    shown AS NULL too, except count which shows 0. This is because the
+    unmatched rows are in an empty frame. Example of
+    a <literal>SELECT</literal> using the <literal>DEFINE</literal>
+    and <literal>PATTERN</literal> clause is as follows.
+
+<programlisting>
+SELECT company, tdate, price,
+ first_value(price) OVER w,
+ max(price) OVER w,
+ count(price) OVER w
+FROM stock,
+ WINDOW w AS (
+ PARTITION BY company
+ ORDER BY tdate
+ ROWS BETWEEN CURRENT ROW AND UNBOUNDED FOLLOWING
+ AFTER MATCH SKIP PAST LAST ROW
+ INITIAL
+ PATTERN (LOWPRICE UP+ DOWN+)
+ DEFINE
+  LOWPRICE AS price &lt;= 100,
+  UP AS price &gt; PREV(price),
+  DOWN AS price &lt; PREV(price)
+);
+</programlisting>
+<screen>
+ company  |   tdate    | price | first_value | max | count 
+----------+------------+-------+-------------+-----+-------
+ company1 | 2023-07-01 |   100 |         100 | 200 |     4
+ company1 | 2023-07-02 |   200 |             |     |      
+ company1 | 2023-07-03 |   150 |             |     |      
+ company1 | 2023-07-04 |   140 |             |     |      
+ company1 | 2023-07-05 |   150 |             |     |     0
+ company1 | 2023-07-06 |    90 |          90 | 130 |     4
+ company1 | 2023-07-07 |   110 |             |     |      
+ company1 | 2023-07-08 |   130 |             |     |      
+ company1 | 2023-07-09 |   120 |             |     |      
+ company1 | 2023-07-10 |   130 |             |     |     0
+</screen>
+   </para>
+
    <para>
     When a query involves multiple window functions, it is possible to write
     out each one with a separate <literal>OVER</literal> clause, but this is
diff --git a/doc/src/sgml/func.sgml b/doc/src/sgml/func.sgml
index e5fa82c161..8dd97501a7 100644
--- a/doc/src/sgml/func.sgml
+++ b/doc/src/sgml/func.sgml
@@ -22364,6 +22364,7 @@ SELECT count(*) FROM sometable;
         returns <literal>NULL</literal> if there is no such row.
        </para></entry>
       </row>
+
      </tbody>
     </tgroup>
    </table>
@@ -22403,6 +22404,59 @@ SELECT count(*) FROM sometable;
    Other frame specifications can be used to obtain other effects.
   </para>
 
+  <para>
+   Row pattern recognition navigation functions are listed in
+   <xref linkend="functions-rpr-navigation-table"/>.  These functions
+   can be used to describe DEFINE clause of Row pattern recognition.
+  </para>
+
+   <table id="functions-rpr-navigation-table">
+    <title>Row Pattern Navigation Functions</title>
+    <tgroup cols="1">
+     <thead>
+      <row>
+       <entry role="func_table_entry"><para role="func_signature">
+        Function
+       </para>
+       <para>
+        Description
+       </para></entry>
+      </row>
+     </thead>
+
+     <tbody>
+      <row>
+       <entry role="func_table_entry"><para role="func_signature">
+        <indexterm>
+         <primary>prev</primary>
+        </indexterm>
+        <function>prev</function> ( <parameter>value</parameter> <type>anyelement</type> )
+        <returnvalue>anyelement</returnvalue>
+       </para>
+       <para>
+        Returns the column value at the previous row;
+        returns NULL if there is no previous row in the window frame.
+       </para></entry>
+      </row>
+
+      <row>
+       <entry role="func_table_entry"><para role="func_signature">
+        <indexterm>
+         <primary>next</primary>
+        </indexterm>
+        <function>next</function> ( <parameter>value</parameter> <type>anyelement</type> )
+        <returnvalue>anyelement</returnvalue>
+       </para>
+       <para>
+        Returns the column value at the next row;
+        returns NULL if there is no next row in the window frame.
+       </para></entry>
+      </row>
+
+     </tbody>
+    </tgroup>
+   </table>
+
   <note>
    <para>
     The SQL standard defines a <literal>RESPECT NULLS</literal> or
diff --git a/doc/src/sgml/ref/select.sgml b/doc/src/sgml/ref/select.sgml
index 9917df7839..1575fc2167 100644
--- a/doc/src/sgml/ref/select.sgml
+++ b/doc/src/sgml/ref/select.sgml
@@ -969,8 +969,8 @@ WINDOW <replaceable class="parameter">window_name</replaceable> AS ( <replaceabl
     The <replaceable class="parameter">frame_clause</replaceable> can be one of
 
 <synopsis>
-{ RANGE | ROWS | GROUPS } <replaceable>frame_start</replaceable> [ <replaceable>frame_exclusion</replaceable> ]
-{ RANGE | ROWS | GROUPS } BETWEEN <replaceable>frame_start</replaceable> AND <replaceable>frame_end</replaceable> [ <replaceable>frame_exclusion</replaceable> ]
+{ RANGE | ROWS | GROUPS } <replaceable>frame_start</replaceable> [ <replaceable>frame_exclusion</replaceable> ] [row_pattern_common_syntax]
+{ RANGE | ROWS | GROUPS } BETWEEN <replaceable>frame_start</replaceable> AND <replaceable>frame_end</replaceable> [ <replaceable>frame_exclusion</replaceable> ] [row_pattern_common_syntax]
 </synopsis>
 
     where <replaceable>frame_start</replaceable>
@@ -1077,6 +1077,40 @@ EXCLUDE NO OTHERS
     a given peer group will be in the frame or excluded from it.
    </para>
 
+   <para>
+    The
+    optional <replaceable class="parameter">row_pattern_common_syntax</replaceable>
+    defines the <firstterm>row pattern recognition condition</firstterm> for
+    this
+    window. <replaceable class="parameter">row_pattern_common_syntax</replaceable>
+    includes following subclauses. <literal>AFTER MATCH SKIP PAST LAST
+    ROW</literal> or <literal>AFTER MATCH SKIP TO NEXT ROW</literal> controls
+    how to proceed to next row position after a match
+    found. With <literal>AFTER MATCH SKIP PAST LAST ROW</literal> (the
+    default) next row position is next to the last row of previous match. On
+    the other hand, with <literal>AFTER MATCH SKIP TO NEXT ROW</literal> next
+    row position is always next to the last row of previous
+    match. <literal>DEFINE</literal> defines definition variables along with a
+    boolean expression. <literal>PATTERN</literal> defines a sequence of rows
+    that satisfies certain conditions using variables defined
+    in <literal>DEFINE</literal> clause. If the variable is not defined in
+    the <literal>DEFINE</literal> clause, it is implicitly assumed
+    following is defined in the <literal>DEFINE</literal> clause.
+
+<synopsis>
+<literal>variable_name</literal> AS TRUE
+</synopsis>
+
+    Note that the maximu number of variables defined
+    in <literal>DEFINE</literal> clause is 26.
+
+<synopsis>
+[ AFTER MATCH SKIP PAST LAST ROW | AFTER MATCH SKIP TO NEXT ROW ]
+PATTERN <replaceable class="parameter">pattern_variable_name</replaceable>[+] [, ...]
+DEFINE <replaceable class="parameter">definition_varible_name</replaceable> AS <replaceable class="parameter">expression</replaceable> [, ...]
+</synopsis>
+   </para>
+
    <para>
     The purpose of a <literal>WINDOW</literal> clause is to specify the
     behavior of <firstterm>window functions</firstterm> appearing in the query's
-- 
2.25.1


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Content-Type: Text/X-Patch; charset=us-ascii
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Content-Disposition: inline;
 filename="v14-0007-Row-pattern-recognition-patch-tests.patch"



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