From mboxrd@z Thu Jan 1 00:00:00 1970 Return-Path: Received: (majordomo@vger.kernel.org) by vger.kernel.org via listexpand id S1753199Ab1FEGUR (ORCPT ); Sun, 5 Jun 2011 02:20:17 -0400 Received: from home.kolivas.org ([59.167.196.135]:52433 "EHLO home.kolivas.org" rhost-flags-OK-OK-OK-OK) by vger.kernel.org with ESMTP id S1751431Ab1FEGUP (ORCPT ); Sun, 5 Jun 2011 02:20:15 -0400 From: Con Kolivas To: linux-kernel@vger.kernel.org Subject: [ANNOUNCE] BFS CPU scheduler v0.406 for 2.6.39 Date: Sun, 5 Jun 2011 16:20:07 +1000 User-Agent: KMail/1.13.6 (Linux/2.6.39-ck1; KDE/4.6.2; x86_64; ; ) MIME-Version: 1.0 X-Length: 53067 Content-Type: Multipart/Mixed; boundary="Boundary-00=_XAy6NlhMXvM69so" Message-Id: <201106051620.07758.kernel@kolivas.org> Sender: linux-kernel-owner@vger.kernel.org List-ID: X-Mailing-List: linux-kernel@vger.kernel.org --Boundary-00=_XAy6NlhMXvM69so Content-Type: text/plain; charset="us-ascii" Content-Transfer-Encoding: 7bit People have requested an official BFS announcement separate from the -ck announcement, so this is to officially announce the first stable BFS CPU scheduler for 2.6.39. http://www.kernel.org/pub/linux/kernel/people/ck/patches/bfs/ The major changes going into the 0.4x BFS version are a complete rework of busy CPU balancing to be even further simplified. Now it just flags a task as "sticky" if it is descheduled while still seeking further CPU time. Only one sticky task per CPU exists. If it is found to be sticky, it is heavily biased against moving to a different CPU. If a scaling CPU frequency governor is in use, sticky tasks will actually not move to a throttled CPU at all, instead preferring to wait till the CPU they came from is available again. As CPU frequency scaling is per-cpu, and BFS is a global CPU scheduler, BFS was previously unable to make the most of dynamic scaling and the turbo modes of newer CPUs. This change substantially improves BFS for both of those. A long- standing bug which made low HZ configurations have poor latency behaviour was also found and addressed. With this change, throughput was found to further improve, so latency targets for BFS were improved to be the same baseline default 6ms regardless of the number of CPUs. A few of the highlights where BFS performs particularly well came out in benchmarking on a 6x AMD machine. (This is not meant to be a claim that BFS is better on all workloads and all hardware, but demonstrates it has advantages in certain workloads up to reasonably powerful commodity hardware). Full results are here: http://ck.kolivas.org/patches/bfs/bfs404-cfs/ (desktop = 1000Hz + preempt, server = 100Hz + no preempt): The highlight graphs on AMDx6 (obviously cherry-picked!) follow: Throughput with make -j6 is: thoroughput-j6 [sic] Throughput with x264 ultrafast is: thoroughput-ultrafast Latency in the presence of x264 ultrafast is: latency-ultrafast-log Thanks to Serge Belyshev for 6x results, statistical analysis and graphs. -- -ck --Boundary-00=_XAy6NlhMXvM69so Content-Type: image/png; name="thoroughput-j6.png" Content-Transfer-Encoding: base64 Content-Disposition: inline; filename="thoroughput-j6.png" iVBORw0KGgoAAAANSUhEUgAABAAAAAMACAMAAACNZOU/AAABMlBMVEX///8AAACgoKD/AAAAwAAA gP/AAP8A7u7AQADIyABBaeH/wCAAgEDAgP8wYICLAABAgAD/gP9//9SlKir//wBA4NAAAAAaGhoz MzNNTU1mZmZ/f3+ZmZmzs7PAwMDMzMzl5eX////wMjKQ7pCt2ObwVfDg///u3YL/tsGv7u7/1wAA /wAAZAAA/38iiyIui1cAAP8AAIsZGXAAAIAAAM2HzusA////AP8AztH/FJP/f1DwgID/RQD6gHLp 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