Re: Changing WAL Header to reduce contention duringReserveXLogInsertLocation()

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От Andres Freund
Тема Re: Changing WAL Header to reduce contention duringReserveXLogInsertLocation()
Дата
Msg-id 20180112225839.cklawtd76ej4dxml@alap3.anarazel.de
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Ответ на Re: Changing WAL Header to reduce contention during ReserveXLogInsertLocation()  (Tom Lane <tgl@sss.pgh.pa.us>)
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On 2018-01-12 17:43:00 -0500, Tom Lane wrote:
> Andres Freund <andres@anarazel.de> writes:
> > On 2018-01-12 17:24:54 -0500, Tom Lane wrote:
> >> Andres Freund <andres@anarazel.de> writes:
> >>> Right. I wonder if it be reasonable to move that to a page's header
> >>> instead of individual records?  To avoid torn page issues we'd have to
> >>> reduce the page size to a sector size, but I'm not sure that's that bad?
> 
> >> Giving up a dozen or two bytes out of every 512 sounds like quite an
> >> overhead.
> 
> > It's not nothing, that's true. But if it avoids 8 bytes in every record,
> > that'd probably at least as much in most usecases.
> 
> Fair point.  I don't have a very good handle on what "typical" WAL record
> sizes are, but we might be fine with that --- some quick counting on the
> fingers says we'd break even with an average record size of ~160 bytes,
> and be ahead below that.

This is far from a definitive answer, but here's some data:

pgbench -i -s 100 -q:
Type                                           N      (%)          Record size      (%)             FPI size      (%)
    Combined size      (%)
 
----                                           -      ---          -----------      ---             --------      ---
    -------------      ---
 
Total                                     308958                    1077269060 [84.19%]            202269468 [15.81%]
       1279538528 [100%]
 

So here records are really large, which makes sense, given it's
largelyinitialization of data. With wal_compression that'd probably look
different, but still commonly spanning multiple pages.


pgbench -M prepared -c 16 -j 16 -T 100
Type                                           N      (%)          Record size      (%)             FPI size      (%)
    Combined size      (%)
 
----                                           -      ---          -----------      ---             --------      ---
    -------------      ---
 
Total                                   14228881                     947824170 [100.00%]                8192 [0.00%]
        947832362 [100%]
 

Here we're at 66 bytes...


> We'd need to investigate the page-crossing overhead carefully though.

agreed.

Greetings,

Andres Freund


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