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* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v1 4/5] Allow to resize shared memory without restart
@ 2024-10-16 18:24 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2024-10-16 18:24 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Size for every shared memory slot is recalculated based on the new
NBuffers, and extended using mremap. After allocating new space, new
shared structures (buffer blocks, descriptors, etc) are allocated as
needed. Here is how it looks like after raising shared_buffers from 128
MB to 512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v2 5/6] Allow to resize shared memory without restart
@ 2025-02-20 20:12 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-02-20 20:12 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a global
Barrier to coordinate backends that simultaneously change
shared_buffers, and pieces in shared memory to coordinate backends that
are too late to the party for some reason.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier. Afterwards it does shared memory
resize itself.
* All the backends, that participate in ProcSignal mechanism,
recalculate shared memory size based on the new NBuffers and extend it
using mremap.
* When finished, a backend waits on a global ShmemControl barrier,
untill all backends will be finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all backends are using new value, one backend will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f5a2bd04000-7f5a32e52000 /dev/zero (deleted)
7f5a39252000-7f5a4030e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d7ba000 /dev/zero (deleted)
7f5a53bba000-7f5a5ad26000 /dev/zero (deleted)
7f5a9ad26000-7f5aa9d94000 /dev/zero (deleted)
^ buffers mapping, ~240 MB
7f5d29d94000-7f5d30e00000 /dev/zero (deleted)
-- 512 MB
7f5a2bd04000-7f5a33274000 /dev/zero (deleted)
7f5a39252000-7f5a4057e000 /dev/zero (deleted)
7f5a4670e000-7f5a4d9fa000 /dev/zero (deleted)
7f5a53bba000-7f5a5b1a6000 /dev/zero (deleted)
7f5a9ad26000-7f5ac1f14000 /dev/zero (deleted)
^ buffers mapping, ~625 MB
7f5d29d94000-7f5d30f80000 /dev/zero (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v4 6/8] Allow to resize shared memory without restart
@ 2025-04-06 14:47 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-04-06 14:47 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers and extend it using mremap. One elected process signals the
postmaster to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f90cde00000-7f90d4fa6000 /dev/zero (deleted)
7f90d4fa6000-7f914de00000
7f914de00000-7f915cfa8000 /dev/zero (deleted)
^ buffers mapping, ~241 MB
7f915cfa8000-7f944de00000
7f944de00000-7f94550a8000 /dev/zero (deleted)
7f94550a8000-7f94cde00000
7f94cde00000-7f94d4fe8000 /dev/zero (deleted)
7f94d4fe8000-7f954de00000
7f954de00000-7f9554ff6000 /dev/zero (deleted)
7f9554ff6000-7f958de00000
7f958de00000-7f959508a000 /dev/zero (deleted)
7f959508a000-7f95cde00000
-- 512 MB
7f90cde00000-7f90d5126000 /dev/zero (deleted)
7f90d5126000-7f914de00000
7f914de00000-7f9175128000 /dev/zero (deleted)
^ buffers mapping, ~627 MB
7f9175128000-7f944de00000
7f944de00000-7f9455528000 /dev/zero (deleted)
7f9455528000-7f94cde00000
7f94cde00000-7f94d5228000 /dev/zero (deleted)
7f94d5228000-7f954de00000
7f954de00000-7f9555266000 /dev/zero (deleted)
7f9555266000-7f958de00000
7f958de00000-7f95954aa000 /dev/zero (deleted)
7f95954aa000-7f95cde00000
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH v5 07/10] Allow to resize shared memory without restart
@ 2025-06-17 12:16 Dmitrii Dolgov <9erthalion6@gmail.com>
0 siblings, 0 replies; 425+ messages in thread
From: Dmitrii Dolgov @ 2025-06-17 12:16 UTC (permalink / raw)
Add assing hook for shared_buffers to resize shared memory using space,
introduced in the previous commits without requiring PostgreSQL restart.
Essentially the implementation is based on two mechanisms: a
ProcSignalBarrier is used to make sure all processes are starting the
resize procedure simultaneously, and a global Barrier is used to
coordinate after that and make sure all finished processes are waiting
for others that are in progress.
The resize process looks like this:
* The GUC assign hook sets a flag to let the Postmaster know that resize
was requested.
* Postmaster verifies the flag in the event loop, and starts the resize
by emitting a ProcSignal barrier.
* All processes, that participate in ProcSignal mechanism, begin to
process ProcSignal barrier. First a process waits until all processes
have confirmed they received the message and can start simultaneously.
* Every process recalculates shared memory size based on the new
NBuffers, adjusts its size using ftruncate and adjust reservation
permissions with mprotect. One elected process signals the postmaster
to do the same.
* When finished, every process waits on a global ShmemControl barrier,
untill all others are finished as well. This way we ensure three
stages with clear boundaries: before the resize, when all processes
use old NBuffers; during the resize, when processes have mix of old
and new NBuffers, and wait until it's done; after the resize, when all
processes use new NBuffers.
* After all processes are using new value, one of them will initialize
new shared structures (buffer blocks, descriptors, etc) as needed and
broadcast new value of NBuffers via ShmemControl in shared memory.
Other backends are waiting for this operation to finish as well. Then
the barrier is lifted and everything goes as usual.
Since resizing takes time, we need to take into account that during that time:
- New backends can be spawned. They will check status of the barrier
early during the bootstrap, and wait until everything is over to work
with the new NBuffers value.
- Old backends can exit before attempting to resize. Synchronization
used between backends relies on ProcSignalBarrier and waits for all
participants received the message at the beginning to gather all
existing backends.
- Some backends might be blocked and not responsing either before or
after receiving the message. In the first case such backend still
have ProcSignalSlot and should be waited for, in the second case
shared barrier will make sure we still waiting for those backends. In
any case there is an unbounded wait.
- Backends might join barrier in disjoint groups with some time in
between. That means that relying only on the shared dynamic barrier is
not enough -- it will only synchronize resize procedure withing those
groups. That's why we wait first for all participants of ProcSignal
mechanism who received the message.
Here is how it looks like after raising shared_buffers from 128 MB to
512 MB and calling pg_reload_conf():
-- 128 MB
7f87909fc000-7f8798248000 rw-s /memfd:strategy (deleted)
7f8798248000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a4e84000 rw-s /memfd:checkpoint (deleted)
7f87a4e84000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1b42000 rw-s /memfd:iocv (deleted)
7f87b1b42000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cb59c000 rw-s /memfd:descriptors (deleted)
7f87cb59c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f87ece38000 rw-s /memfd:buffers (deleted)
^ buffers content, ~247 MB
7f87ece38000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~2210 MB
7f8877066000-7f887e7d0000 rw-s /memfd:main (deleted)
7f887e7d0000-7f8890a00000 ---s /memfd:main (deleted)
-- 512 MB
7f87909fc000-7f879866a000 rw-s /memfd:strategy (deleted)
7f879866a000-7f879d6ca000 ---s /memfd:strategy (deleted)
7f879d6ca000-7f87a50f4000 rw-s /memfd:checkpoint (deleted)
7f87a50f4000-7f87aa398000 ---s /memfd:checkpoint (deleted)
7f87aa398000-7f87b1d82000 rw-s /memfd:iocv (deleted)
7f87b1d82000-7f87c3d32000 ---s /memfd:iocv (deleted)
7f87c3d32000-7f87cba1c000 rw-s /memfd:descriptors (deleted)
7f87cba1c000-7f87dd6cc000 ---s /memfd:descriptors (deleted)
7f87dd6cc000-7f8804fb8000 rw-s /memfd:buffers (deleted)
^ buffers content, ~632 MB
7f8804fb8000-7f8877066000 ---s /memfd:buffers (deleted)
^ reserved space, ~1824 MB
7f8877066000-7f887e950000 rw-s /memfd:main (deleted)
7f887e950000-7f8890a00000 ---s /memfd:main (deleted)
The implementation supports only increasing of shared_buffers. For
decreasing the value a similar procedure is needed. But the buffer
blocks with data have to be drained first, so that the actual data set
fits into the new smaller space.
^ permalink raw reply [nested|flat] 425+ messages in thread
* [PATCH 5/7] Use BulkInsertState when copying data to the new heap.
@ 2026-03-11 14:20 Antonin Houska <ah@cybertec.at>
0 siblings, 0 replies; 425+ messages in thread
From: Antonin Houska @ 2026-03-11 14:20 UTC (permalink / raw)
It should make the copying more efficient. Besides that, buffer access
strategy is involved this way.
This diff reverts the changes done in previous parts of the series to
reform_and_rewrite_tuple() and introduces a separate function
heap_insert_for_repack().
---
src/backend/access/heap/heapam_handler.c | 110 +++++++++++++++--------
1 file changed, 72 insertions(+), 38 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index ae0b011f6c1..ee763c995f0 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -50,6 +50,11 @@
static void reform_and_rewrite_tuple(HeapTuple tuple,
Relation OldHeap, Relation NewHeap,
Datum *values, bool *isnull, RewriteState rwstate);
+static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
+ Relation NewHeap, Datum *values, bool *isnull,
+ BulkInsertState bistate);
+static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
+ Relation NewHeap, Datum *values, bool *isnull);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -703,6 +708,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
double *tups_recently_dead)
{
RewriteState rwstate = NULL;
+ BulkInsertState bistate = NULL;
IndexScanDesc indexScan;
TableScanDesc tableScan;
HeapScanDesc heapScan;
@@ -738,6 +744,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (!concurrent)
rwstate = begin_heap_rewrite(OldHeap, NewHeap, OldestXmin,
*xid_cutoff, *multi_cutoff);
+ else
+ bistate = GetBulkInsertState();
/* Set up sorting if wanted */
@@ -967,8 +975,12 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
};
int64 ct_val[2];
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ if (!concurrent)
+ reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
+ values, isnull, rwstate);
+ else
+ heap_insert_for_repack(tuple, OldHeap, NewHeap,
+ values, isnull, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -1016,10 +1028,15 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
break;
n_tuples += 1;
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ if (!concurrent)
+ reform_and_rewrite_tuple(tuple,
+ OldHeap, NewHeap,
+ values, isnull,
+ rwstate);
+ else
+ heap_insert_for_repack(tuple, OldHeap, NewHeap,
+ values, isnull, bistate);
+
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
@@ -1031,6 +1048,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
+ if (bistate)
+ FreeBulkInsertState(bistate);
/* Clean up */
pfree(values);
@@ -2423,56 +2442,71 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* SET WITHOUT OIDS.
*
* So, we must reconstruct the tuple from component Datums.
- *
- * If rwstate=NULL, use simple_heap_insert() instead of rewriting - in that
- * case we still need to deform/form the tuple. TODO Shouldn't we rename the
- * function, as might not do any rewrite?
*/
static void
reform_and_rewrite_tuple(HeapTuple tuple,
Relation OldHeap, Relation NewHeap,
Datum *values, bool *isnull, RewriteState rwstate)
+{
+ HeapTuple copiedTuple;
+
+ copiedTuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+
+ /* The heap rewrite module does the rest */
+ rewrite_heap_tuple(rwstate, tuple, copiedTuple);
+
+ heap_freetuple(copiedTuple);
+}
+
+/*
+ * Insert tuple when processing REPACK CONCURRENTLY.
+ *
+ * rewriteheap.c is not used in the CONCURRENTLY case because it'd be
+ * difficult to do the same in the catch-up phase (as the logical
+ * decoding does not provide us with sufficient visibility
+ * information). Thus we must use heap_insert() both during the
+ * catch-up and here.
+ *
+ * We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
+ * decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
+ * this relation, so no logical replication subscription should need the data.
+ *
+ * BulkInsertState is used because many tuples are inserted in the typical
+ * case.
+ */
+static void
+heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
+ Datum *values, bool *isnull, BulkInsertState bistate)
+{
+ tuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+
+ heap_insert(NewHeap, tuple, GetCurrentCommandId(true),
+ HEAP_INSERT_NO_LOGICAL, bistate);
+
+ heap_freetuple(tuple);
+}
+
+/*
+ * Deform tuple, set values of dropped columns to NULL, form a new tuple and
+ * return it.
+ */
+static HeapTuple
+reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
+ Datum *values, bool *isnull)
{
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- HeapTuple copiedTuple;
int i;
heap_deform_tuple(tuple, oldTupDesc, values, isnull);
- /* Be sure to null out any dropped columns */
for (i = 0; i < newTupDesc->natts; i++)
{
if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
isnull[i] = true;
}
- copiedTuple = heap_form_tuple(newTupDesc, values, isnull);
-
- if (rwstate)
- /* The heap rewrite module does the rest */
- rewrite_heap_tuple(rwstate, tuple, copiedTuple);
- else
- {
- /*
- * Insert tuple when processing REPACK CONCURRENTLY.
- *
- * rewriteheap.c is not used in the CONCURRENTLY case because it'd be
- * difficult to do the same in the catch-up phase (as the logical
- * decoding does not provide us with sufficient visibility
- * information). Thus we must use heap_insert() both during the
- * catch-up and here.
- *
- * The following is like simple_heap_insert() except that we pass the
- * flag to skip logical decoding: as soon as REPACK CONCURRENTLY swaps
- * the relation files, it drops this relation, so no logical
- * replication subscription should need the data.
- */
- heap_insert(NewHeap, copiedTuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, NULL);
- }
-
- heap_freetuple(copiedTuple);
+ return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.47.3
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v42-0006-Fix-a-few-problems-in-index-build-progress-reporting.patch
^ permalink raw reply [nested|flat] 425+ messages in thread
end of thread, other threads:[~2026-03-11 14:20 UTC | newest]
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2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
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2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-04-06 14:47 [PATCH v4 6/8] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
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2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
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2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
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2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
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2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2025-06-17 12:16 [PATCH v5 07/10] Allow to resize shared memory without restart Dmitrii Dolgov <9erthalion6@gmail.com>
2026-03-11 14:20 [PATCH 5/7] Use BulkInsertState when copying data to the new heap. Antonin Houska <ah@cybertec.at>
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