From owner-svn-src-all@freebsd.org Thu Apr 11 13:19:27 2019 Return-Path: Delivered-To: svn-src-all@mailman.ysv.freebsd.org Received: from mx1.freebsd.org (mx1.freebsd.org [IPv6:2610:1c1:1:606c::19:1]) by mailman.ysv.freebsd.org (Postfix) with ESMTP id 08EAE158499C; Thu, 11 Apr 2019 13:19:27 +0000 (UTC) (envelope-from mav@FreeBSD.org) Received: from mxrelay.nyi.freebsd.org (mxrelay.nyi.freebsd.org [IPv6:2610:1c1:1:606c::19:3]) (using TLSv1.3 with cipher TLS_AES_256_GCM_SHA384 (256/256 bits) server-signature RSA-PSS (4096 bits) client-signature RSA-PSS (4096 bits) client-digest SHA256) (Client CN "mxrelay.nyi.freebsd.org", Issuer "Let's Encrypt Authority X3" (verified OK)) by mx1.freebsd.org (Postfix) with ESMTPS id A12B38E444; Thu, 11 Apr 2019 13:19:26 +0000 (UTC) (envelope-from mav@FreeBSD.org) Received: from repo.freebsd.org (repo.freebsd.org [IPv6:2610:1c1:1:6068::e6a:0]) (using TLSv1.2 with cipher ECDHE-RSA-AES256-GCM-SHA384 (256/256 bits)) (Client did not present a certificate) by mxrelay.nyi.freebsd.org (Postfix) with ESMTPS id 6F797AA02; Thu, 11 Apr 2019 13:19:26 +0000 (UTC) (envelope-from mav@FreeBSD.org) Received: from repo.freebsd.org ([127.0.1.37]) by repo.freebsd.org (8.15.2/8.15.2) with ESMTP id x3BDJQaA081507; Thu, 11 Apr 2019 13:19:26 GMT (envelope-from mav@FreeBSD.org) Received: (from mav@localhost) by repo.freebsd.org (8.15.2/8.15.2/Submit) id x3BDJQIT081506; Thu, 11 Apr 2019 13:19:26 GMT (envelope-from mav@FreeBSD.org) Message-Id: <201904111319.x3BDJQIT081506@repo.freebsd.org> X-Authentication-Warning: repo.freebsd.org: mav set sender to mav@FreeBSD.org using -f From: Alexander Motin Date: Thu, 11 Apr 2019 13:19:26 +0000 (UTC) To: src-committers@freebsd.org, svn-src-all@freebsd.org, svn-src-stable@freebsd.org, svn-src-stable-12@freebsd.org Subject: svn commit: r346128 - stable/12/sys/cddl/contrib/opensolaris/uts/common/fs/zfs X-SVN-Group: stable-12 X-SVN-Commit-Author: mav X-SVN-Commit-Paths: stable/12/sys/cddl/contrib/opensolaris/uts/common/fs/zfs X-SVN-Commit-Revision: 346128 X-SVN-Commit-Repository: base MIME-Version: 1.0 Content-Type: text/plain; charset=UTF-8 Content-Transfer-Encoding: 8bit X-Rspamd-Queue-Id: A12B38E444 X-Spamd-Bar: -- Authentication-Results: mx1.freebsd.org X-Spamd-Result: default: False [-2.97 / 15.00]; local_wl_from(0.00)[FreeBSD.org]; NEURAL_HAM_MEDIUM(-1.00)[-0.998,0]; NEURAL_HAM_SHORT(-0.98)[-0.976,0]; NEURAL_HAM_LONG(-1.00)[-1.000,0]; ASN(0.00)[asn:11403, ipnet:2610:1c1:1::/48, country:US] X-BeenThere: svn-src-all@freebsd.org X-Mailman-Version: 2.1.29 Precedence: list List-Id: "SVN commit messages for the entire src tree \(except for " user" and " projects" \)" List-Unsubscribe: , List-Archive: List-Post: List-Help: List-Subscribe: , X-List-Received-Date: Thu, 11 Apr 2019 13:19:27 -0000 Author: mav Date: Thu Apr 11 13:19:26 2019 New Revision: 346128 URL: https://svnweb.freebsd.org/changeset/base/346128 Log: MFC r344934, r345014: Add separate aggregation limit for non-rotating media. Before sequential scrub patches ZFS never aggregated I/Os above 128KB. Sequential scrub bumped that to 1MB, which motivation I understand for spinning disks, since it should reduce number of head seeks. But for SSDs it makes much less sense to me, especially on FreeBSD, where due to MAXPHYS limitation device will likely still see bunch of 128KB I/Os instead of one large. Having more strict aggregation limit allows to avoid allocation of large memory buffer and memcpy to/from it, that is a serious problem when bandwidth reaches few GB/s. Sponsored by: iXsystems, Inc. Modified: stable/12/sys/cddl/contrib/opensolaris/uts/common/fs/zfs/vdev_queue.c Directory Properties: stable/12/ (props changed) Modified: stable/12/sys/cddl/contrib/opensolaris/uts/common/fs/zfs/vdev_queue.c ============================================================================== --- stable/12/sys/cddl/contrib/opensolaris/uts/common/fs/zfs/vdev_queue.c Thu Apr 11 13:18:09 2019 (r346127) +++ stable/12/sys/cddl/contrib/opensolaris/uts/common/fs/zfs/vdev_queue.c Thu Apr 11 13:19:26 2019 (r346128) @@ -178,6 +178,7 @@ int zfs_vdev_async_write_active_max_dirty_percent = 60 * they aren't able to help us aggregate at this level. */ int zfs_vdev_aggregation_limit = 1 << 20; +int zfs_vdev_aggregation_limit_non_rotating = SPA_OLD_MAXBLOCKSIZE; int zfs_vdev_read_gap_limit = 32 << 10; int zfs_vdev_write_gap_limit = 4 << 10; @@ -262,6 +263,9 @@ ZFS_VDEV_QUEUE_KNOB_MAX(initializing); SYSCTL_INT(_vfs_zfs_vdev, OID_AUTO, aggregation_limit, CTLFLAG_RWTUN, &zfs_vdev_aggregation_limit, 0, "I/O requests are aggregated up to this size"); +SYSCTL_INT(_vfs_zfs_vdev, OID_AUTO, aggregation_limit_non_rotating, CTLFLAG_RWTUN, + &zfs_vdev_aggregation_limit_non_rotating, 0, + "I/O requests are aggregated up to this size for non-rotating media"); SYSCTL_INT(_vfs_zfs_vdev, OID_AUTO, read_gap_limit, CTLFLAG_RWTUN, &zfs_vdev_read_gap_limit, 0, "Acceptable gap between two reads being aggregated"); @@ -682,7 +686,11 @@ vdev_queue_aggregate(vdev_queue_t *vq, zio_t *zio) ASSERT(MUTEX_HELD(&vq->vq_lock)); maxblocksize = spa_maxblocksize(vq->vq_vdev->vdev_spa); - limit = MAX(MIN(zfs_vdev_aggregation_limit, maxblocksize), 0); + if (vq->vq_vdev->vdev_rotation_rate == VDEV_RATE_NON_ROTATING) + limit = zfs_vdev_aggregation_limit_non_rotating; + else + limit = zfs_vdev_aggregation_limit; + limit = MAX(MIN(limit, maxblocksize), 0); if (zio->io_flags & ZIO_FLAG_DONT_AGGREGATE || limit == 0) return (NULL);