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Date:	Fri, 15 Feb 2008 14:30:44 +0800
From:	"Zhang, Yanmin" <yanmin_zhang@...ux.intel.com>
To:	Eric Dumazet <dada1@...mosbay.com>
Cc:	herbert@...dor.apana.org.au, LKML <linux-kernel@...r.kernel.org>,
	netdev@...r.kernel.org
Subject: Re: tbench regression in 2.6.25-rc1

On Fri, 2008-02-15 at 07:05 +0100, Eric Dumazet wrote:
> Zhang, Yanmin a écrit :
> > Comparing with kernel 2.6.24, tbench result has regression with
> > 2.6.25-rc1.
> > 
> > 1) On 2 quad-core processor stoakley: 4%.
> > 2) On 4 quad-core processor tigerton: more than 30%.
> > 
> > bisect located below patch.
> > 
> > b4ce92775c2e7ff9cf79cca4e0a19c8c5fd6287b is first bad commit
> > commit b4ce92775c2e7ff9cf79cca4e0a19c8c5fd6287b
> > Author: Herbert Xu <herbert@...dor.apana.org.au>
> > Date:   Tue Nov 13 21:33:32 2007 -0800
> > 
> >     [IPV6]: Move nfheader_len into rt6_info
> >     
> >     The dst member nfheader_len is only used by IPv6.  It's also currently
> >     creating a rather ugly alignment hole in struct dst.  Therefore this patch
> >     moves it from there into struct rt6_info.
> > 
> > 
> > As tbench uses ipv4, so the patch's real impact on ipv4 is it deletes
> > nfheader_len in dst_entry. It might change cache line alignment.
> > 
> > To verify my finding, I just added nfheader_len back to dst_entry in 2.6.25-rc1
> > and reran tbench on the 2 machines. Performance could be recovered completely.
> > 
> > I started cpu_number*2 tbench processes. On my 16-core tigerton:
> > #./tbench_srv &
> > #./tbench 32 127.0.0.1
> > 
> > -yanmin
> 
> Yup. struct dst is sensitive to alignements, especially for benches.
> 
> In the real world, we need to make sure that next pointer start at a cache 
> line bondary (or a litle bit after), so that RT cache lookups use one cache 
> line per entry instead of two. This permits better behavior in DDOS attacks.
> 
> (check commit 1e19e02ca0c5e33ea73a25127dbe6c3b8fcaac4b for reference)
> 
> Are you using a 64 or a 32 bit kernel ?
64bit x86-64 machine. On another 4-way Madison Itanium machine, tbench has the
similiar regression.

-yanmin


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