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Until now BufferDesc.state was not allowed to be modified while the buffer header spinlock was held. This meant that operations like unpinning buffers needed to use a CAS loop, waiting for the buffer header spinlock to be released before updating. The benefit of that restriction is that it allowed us to unlock the buffer header spinlock with just a write barrier and an unlocked write (instead of a full atomic operation). That was important to avoid regressions in48354581a4. However, since then the hottest buffer header spinlock uses have been replaced with atomic operations (in particular, the most common use of PinBuffer_Locked(), in GetVictimBuffer() (formerly in BufferAlloc()), has been removed in5e89985928). This change will allow, in a subsequent commit, to release buffer pins with a single atomic-sub operation. This previously was not possible while such operations were not allowed while the buffer header spinlock was held, as an atomic-sub would not have allowed a race-free check for the buffer header lock being held. Using atomic-sub to unpin buffers is a nice scalability win, however it is not the primary motivation for this change (although it would be sufficient). The primary motivation is that we would like to merge the buffer content lock into BufferDesc.state, which will result in more frequent changes of the state variable, which in some situations can cause a performance regression, due to an increased CAS failure rate when unpinning buffers. The regression entirely vanishes when using atomic-sub. Naively implementing this would require putting CAS loops in every place modifying the buffer state while holding the buffer header lock. To avoid that, introduce UnlockBufHdrExt(), which can set/add flags as well as the refcount, together with releasing the lock. Reviewed-by: Robert Haas <robertmhaas@gmail.com> Reviewed-by: Matthias van de Meent <boekewurm+postgres@gmail.com> Discussion: https://postgr.es/m/fvfmkr5kk4nyex56ejgxj3uzi63isfxovp2biecb4bspbjrze7@az2pljabhnff
The PostgreSQL contrib tree
---------------------------
This subtree contains porting tools, analysis utilities, and plug-in
features that are not part of the core PostgreSQL system, mainly
because they address a limited audience or are too experimental to be
part of the main source tree. This does not preclude their
usefulness.
User documentation for each module appears in the main SGML
documentation.
When building from the source distribution, these modules are not
built automatically, unless you build the "world" target. You can
also build and install them all by running "make all" and "make
install" in this directory; or to build and install just one selected
module, do the same in that module's subdirectory.
Some directories supply new user-defined functions, operators, or
types. To make use of one of these modules, after you have installed
the code you need to register the new SQL objects in the database
system by executing a CREATE EXTENSION command. In a fresh database,
you can simply do
CREATE EXTENSION module_name;
See the PostgreSQL documentation for more information about this
procedure.