From mboxrd@z Thu Jan 1 00:00:00 1970 Return-Path: X-Spam-Checker-Version: SpamAssassin 3.4.0 (2014-02-07) on aws-us-west-2-korg-lkml-1.web.codeaurora.org Received: from aws-us-west-2-korg-lkml-1.web.codeaurora.org (localhost.localdomain [127.0.0.1]) by smtp.lore.kernel.org (Postfix) with ESMTP id 302DBC4332F for ; Mon, 19 Dec 2022 19:49:38 +0000 (UTC) Received: from qs51p00im-qukt01072301.me.com (qs51p00im-qukt01072301.me.com [17.57.155.12]) by mx.groups.io with SMTP id smtpd.web11.32227.1671479369114854563 for ; Mon, 19 Dec 2022 11:49:29 -0800 Authentication-Results: mx.groups.io; dkim=pass header.i=@zhengqiu.net header.s=sig1 header.b=ZQqg353t; spf=pass (domain: zhengqiu.net, ip: 17.57.155.12, mailfrom: contrib@zhengqiu.net) DKIM-Signature: v=1; a=rsa-sha256; c=relaxed/relaxed; d=zhengqiu.net; s=sig1; t=1671479368; bh=vwmZQVrlDdXrSuDFK4MO9Sr8+iCxhtH4+izAEwhAIjk=; h=From:Message-Id:Content-Type:Mime-Version:Subject:Date:To; b=ZQqg353tgHfoidrcUCPrAAKAi9x3JLCJIZ/pcPRYeH5oxjr4RgWPMUVctn/iaOUXe s7VuXs0proKDKZLlRIB8nXZ+Tb2ZZl30TTg/AW3TixaRegWroNvbaZlS2cM00/LX/G 0GbE7L+K/t21ttLpPfYGiAE7IMA8/9hxPeuOBvpZoX+HK/IK8yaNoXpPpQjKxuL6ce gMyEsljfnC0KpyJYZJuEpCDQybpzIrDFZn4gt4vS9gNbLKv9qVjR3LL/uG6Ym/JiH3 z0tQQ9os9TwBd/7mu9vhqmdKhM5waZmi10hhnlXuVoudHC2GTmlSngqS0SUoidYF1a T0UaLeUfWO9mw== Received: from smtpclient.apple (qs51p00im-dlb-asmtp-mailmevip.me.com [17.57.155.28]) by qs51p00im-qukt01072301.me.com (Postfix) with ESMTPSA id 0070325401E0; Mon, 19 Dec 2022 19:49:26 +0000 (UTC) From: contrib@zhengqiu.net Message-Id: Content-Type: multipart/alternative; boundary="Apple-Mail=_C8D55845-B9BC-47C0-BEF4-CCF4360F5D53" Mime-Version: 1.0 (Mac OS X Mail 16.0 \(3731.300.101.1.3\)) Subject: Re: [bitbake-devel] Bitbake PSI checker Date: Mon, 19 Dec 2022 14:49:15 -0500 In-Reply-To: Cc: Randy MacLeod , Richard Purdie , bitbake-devel@lists.openembedded.org To: Ola x Nilsson References: <49ffc1db-9b43-e570-d726-dba12d560a30@windriver.com> X-Mailer: Apple Mail (2.3731.300.101.1.3) X-Proofpoint-GUID: USzpf9F55MGHtAUDjgHZtwBPoj8WtLpz X-Proofpoint-ORIG-GUID: USzpf9F55MGHtAUDjgHZtwBPoj8WtLpz X-Proofpoint-Virus-Version: =?UTF-8?Q?vendor=3Dfsecure_engine=3D1.1.170-22c6f66c430a71ce266a39bfe25bc?= =?UTF-8?Q?2903e8d5c8f:6.0.138,18.0.790,17.11.62.513.0000000_definitions?= =?UTF-8?Q?=3D2022-01-12=5F02:2020-02-14=5F02,2022-01-12=5F02,2021-12-02?= =?UTF-8?Q?=5F01_signatures=3D0?= X-Proofpoint-Spam-Details: rule=notspam policy=default score=0 mlxscore=0 adultscore=0 clxscore=1030 suspectscore=0 spamscore=0 bulkscore=0 mlxlogscore=999 malwarescore=0 phishscore=0 classifier=spam adjust=0 reason=mlx scancount=1 engine=8.12.0-2209130000 definitions=main-2212190175 List-Id: X-Webhook-Received: from li982-79.members.linode.com [45.33.32.79] by aws-us-west-2-korg-lkml-1.web.codeaurora.org with HTTPS for ; Mon, 19 Dec 2022 19:49:38 -0000 X-Groupsio-URL: https://lists.openembedded.org/g/bitbake-devel/message/14206 --Apple-Mail=_C8D55845-B9BC-47C0-BEF4-CCF4360F5D53 Content-Transfer-Encoding: quoted-printable Content-Type: text/plain; charset=utf-8 > On Dec 19, 2022, at 7:50 AM, Ola x Nilsson = wrote: >=20 >=20 > On Mon, Dec 12 2022, Randy MacLeod wrote: >=20 >> CCing Richard >>=20 >> On 2022-12-12 05:07, Ola x Nilsson via lists.openembedded.org wrote: >>> Hi, >>>=20 >>> I've been looking into using the pressure stall information = awareness of >>> bitbake >> That's good to hear Ola. >>> but I have some problems getting it to work. Actually I think >>> it just doesn't work at all. >>=20 >> Doesn't work at all? >>=20 >> Well that would be surprising. See below. >=20 > OK, it will occasionally block a task. But since the next attempt will > always be a very short time interval it will almost always start a new > task even if the pressure is high. > At least this is what I observe on my system. >=20 > >=20 >> 1. Rather than just keep track of the previous pressure values >> seen more than 1 second ago as done currently: >>=20 >> if now - self.prev_pressure_time > 1.0: >>=20 >> and always using that as a reference, we can >> store say 10 values per second and use that as a reference. >>=20 >> There are some challenges in that approach in that we don't control >> how often the function is called. Averaging over the last 10 calls >> is tempting but likely has some edge cases such as when there are >> lots of tasks starting/ending. >>=20 >>=20 >> 2. If there has been a long delay since the function was last called, >> we could check the pressure, sleep for a short period of time and = check it >> again. Some people would not like this since it will needlessly delay=20= >> the build >> so we'd have to keep the delay to < 1 second. Too short a delay will = reduce >> the accuracy of the result but I suspect that 0.1 seconds is = sufficient=20 >> for most >> users. We could also look at the avg10 value in this case or even = some=20 >> combination of >> both the current contention and avg10. >>=20 >>=20 >> 3. Just calculate the pressure per second by: >>=20 >> ( current pressure - last pressure ) / (now - last_time) >>=20 >> This could handle short time differences such os milliseconds >> as would be a 'cheap' way to deal with long delays. In your case, >> the pressure would be: >>=20 >> 978077.0 io_pressure 1353882.0 mem_pressure 20922.0 >>=20 >> divided by ~19 since the initial values were close to zero. >>=20 >> Then for the next time, just 0.1 seconds later: >>=20 >> 1670840042.384582 cpu_pressure 8978077.0 io_pressure 1353882.0 = mem_pressure 20922.0 >> 1670840042.384582 cpu io pressure exceeded over 18.677629 seconds >> 1670840042.486946 cpu_pressure 466.0 io_pressure 30792.0 mem_pressure = 0.0 >>=20 >> Multiplying by 10 or easy calculation, the would be a pressure: >>=20 >> cpu: 4660, io: 307920, mem: 0. >>=20 >>=20 >> Do you have another idea or a preference as to which approach we = take? >=20 > I think 3 is a good first step. Using multiple samples could improve > our calculated "avg1", but lets do that later if needed. I agree; Randy and I have been working on patching make and have taken a = similar approach: https://github.com/ZhengQ2/make/tree/cpu-pressure=EF=BF=BC ZhengQ2/make at cpu-pressure github.com Additionally, we found that when the pressure read is too frequent, we = may get the same cpu pressure as an result,=20 even if the pressure have actually changed. This is likely due to the = per cpu variables used in the kernel. So, in addition to the algorithm Randy talked above, we also compares if = the cpu pressure has been changed, if not, we will return the last result that has been produced. I will CC you when I have a patch, and you can try it out before the = commit gets merged if you like. ZQ >=20 > /Ola >=20 >>=20 >> ../Randy >>=20 >>=20 >>>=20 >>> /Ola Nilsson >>>=20 >>>=20 >>>=20 >=20 >=20 > -=3D-=3D-=3D-=3D-=3D-=3D-=3D-=3D-=3D-=3D-=3D- > Links: You receive all messages sent to this group. > View/Reply Online (#14199): = https://lists.openembedded.org/g/bitbake-devel/message/14199 > Mute This Topic: https://lists.openembedded.org/mt/95618299/7355053 > Group Owner: bitbake-devel+owner@lists.openembedded.org = > Unsubscribe: https://lists.openembedded.org/g/bitbake-devel/unsub = [contrib@zhengqiu.net ] > -=3D-=3D-=3D-=3D-=3D-=3D-=3D-=3D-=3D-=3D-=3D- --Apple-Mail=_C8D55845-B9BC-47C0-BEF4-CCF4360F5D53 Content-Type: multipart/related; type="text/html"; boundary="Apple-Mail=_43B26442-3036-4393-823A-F09127E3556A" --Apple-Mail=_43B26442-3036-4393-823A-F09127E3556A Content-Transfer-Encoding: quoted-printable Content-Type: text/html; charset=us-ascii

On Dec = 19, 2022, at 7:50 AM, Ola x Nilsson <ola.x.nilsson@axis.com> = wrote:


On Mon, Dec 12 2022, = Randy MacLeod wrote:

CCing = Richard

On 2022-12-12 05:07, Ola x Nilsson via = lists.openembedded.org wrote:
Hi,

I've= been looking into using the pressure stall information awareness = of
bitbake
That's good to hear Ola.
 but I have some problems getting it to work. =  Actually I think
it just doesn't work at = all.

Doesn't work at all?

Well that would be = surprising. See below.

OK, it = will occasionally block a task. But since the next attempt = will
always be a very short = time interval it will almost always start a new
task even if the pressure is = high.
At least this is what I = observe on my system.

<snip>

1. Rather than = just keep track of the previous pressure values
seen more than 1 = second ago as done currently:

      if now - = self.prev_pressure_time > 1.0:

and always using that as a = reference, we can
store say 10 values per second and use that as a = reference.

There are some challenges in that approach in that we = don't control
how often the function is called. Averaging over the = last 10 calls
is tempting but likely has some edge cases such as when = there are
lots of tasks starting/ending.


2. If there has = been a long delay since the function was last called,
we could check = the pressure, sleep for a short period of time and check it
again. = Some people would not like this since it will needlessly delay 
the build
so we'd = have to keep the delay to < 1 second. Too short a delay will = reduce
the accuracy of the result but I suspect that 0.1 seconds is = sufficient 
for = most
users. We could also look at the avg10 value in this case or = even some 
combination of
both = the current contention and avg10.


3. Just calculate the = pressure per second by:

   ( current pressure - last = pressure ) / (now - last_time)

This could handle  short time = differences such os milliseconds
as would be a 'cheap' way to deal = with long delays. In your case,
the pressure would be:

  = 978077.0 io_pressure 1353882.0 mem_pressure 20922.0

divided by = ~19 since the initial values were close to zero.

Then for the = next time, just 0.1 seconds later:

1670840042.384582 cpu_pressure = 8978077.0 io_pressure 1353882.0 mem_pressure = 20922.0
1670840042.384582 cpu io  pressure exceeded over = 18.677629 seconds
1670840042.486946 cpu_pressure 466.0 io_pressure = 30792.0 mem_pressure 0.0

Multiplying by 10 or easy calculation, = the would be a pressure:

cpu: 4660, io: 307920, mem: = 0.


Do you have another idea or a preference as to which = approach we take?

I think = 3 is a good first step.  Using multiple samples could = improve
our calculated "avg1", = but lets do that later if needed.

I agree; = Randy and I have been working on patching make and have taken a similar = approach:
Additionally, we found that when the pressure read is too = frequent, we may get the same cpu pressure as an result, 
even if the pressure have actually changed. = This is likely due to the per cpu variables used in the = kernel.
So, in addition to the = algorithm Randy talked above, we also compares if the cpu pressure has = been changed, if not,
we will return = the last result that has been produced.

I will CC you when I = have a patch, and you can try it out before the commit gets merged if = you like.

ZQ


/Ola


../Randy



/Ola = Nilsson





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