Received: by 2002:a25:e74b:0:0:0:0:0 with SMTP id e72csp814745ybh; Mon, 13 Jul 2020 01:47:10 -0700 (PDT) X-Google-Smtp-Source: ABdhPJwTorWJ9KCvPksfKB5rd8BhXULEqLlYngQ8foPG/1cFC9xtorzH6Qf+OIVMdaA8+p3RWXU+ X-Received: by 2002:aa7:d458:: with SMTP id q24mr36740317edr.25.1594630030133; Mon, 13 Jul 2020 01:47:10 -0700 (PDT) ARC-Seal: i=1; a=rsa-sha256; t=1594630030; cv=none; d=google.com; s=arc-20160816; b=CflWaB35Et8rpPWAm/ZUPb5FUlcpzaHccCtvNsWGC1z/Ok0iuODf3wqt80LbpyZOPR JRGIRV363cQE2TBRwP2bKMhqeDZXtuzdFxIC3Plpe7AbTrv/mmStO5AsFGUjAvLx22Sa yielj24afYJPWFVlLKwkkm6tTQZdzf4aII3M749a3cxUhVQZY+QM27gwaN3r139l76Vw sTZVeXIi+z6stJIR/hcmRmB+2oCIknxR2p6fQnLYTaxmdBtle1VtpDx4paIz+m9QTQB1 dkEgegohjgyh4RNbNoqf8hKLWwaW8jSPuDiheuaTqWIhiiWKyIanT1nfl+gpiMppHq4k 0etA== ARC-Message-Signature: i=1; a=rsa-sha256; c=relaxed/relaxed; d=google.com; s=arc-20160816; h=list-id:precedence:sender:mime-version:references:in-reply-to :message-id:date:subject:cc:to:from:ironport-sdr:dkim-signature; bh=SvamKsw02ss9En7rAetK7A9oOuKWWE6KwkjlpCG1t+U=; b=DICLy/b/uESCnRijoLXlVzesca19E6JsX3k6gcbd24G+htKyIMsBBJWFw/jGKxv9uY 9lI4p++EU9R/DsBgdJ/PKrB+k3H+u4hNkopWC5pPaN0IdMPamtubyUzE/29+R5lV/4tL 9crYOp5QRnTzvH20x1jTAF5iIx3kBn8GMKSJntUI2bzoMVpV96W3x+bkRB5umhAIfJC5 aak7m2NKHpP8Zqhor/qhK49QiItWT9DOfzZZZYuXOUsbVAZtOo0hSV33cLwfRdWFNRa7 8W53M5d2TSYWKIp9IRpWTpkOz1yF2yeiJFy0gkGq5qFPcBdAY7eEWMKope14mxWg3/jN 9ICA== ARC-Authentication-Results: i=1; mx.google.com; dkim=pass header.i=@amazon.com header.s=amazon201209 header.b=c4b7GmpT; spf=pass (google.com: domain of linux-kernel-owner@vger.kernel.org designates 23.128.96.18 as permitted sender) smtp.mailfrom=linux-kernel-owner@vger.kernel.org; dmarc=pass (p=QUARANTINE sp=QUARANTINE dis=NONE) header.from=amazon.com Return-Path: Received: from vger.kernel.org (vger.kernel.org. [23.128.96.18]) by mx.google.com with ESMTP id m25si8446613edr.11.2020.07.13.01.46.47; Mon, 13 Jul 2020 01:47:10 -0700 (PDT) Received-SPF: pass (google.com: domain of linux-kernel-owner@vger.kernel.org designates 23.128.96.18 as permitted sender) client-ip=23.128.96.18; Authentication-Results: mx.google.com; dkim=pass header.i=@amazon.com header.s=amazon201209 header.b=c4b7GmpT; spf=pass (google.com: domain of linux-kernel-owner@vger.kernel.org designates 23.128.96.18 as permitted sender) smtp.mailfrom=linux-kernel-owner@vger.kernel.org; dmarc=pass (p=QUARANTINE sp=QUARANTINE dis=NONE) header.from=amazon.com Received: (majordomo@vger.kernel.org) by vger.kernel.org via listexpand id S1729362AbgGMIoC (ORCPT + 99 others); Mon, 13 Jul 2020 04:44:02 -0400 Received: from smtp-fw-33001.amazon.com ([207.171.190.10]:41044 "EHLO smtp-fw-33001.amazon.com" rhost-flags-OK-OK-OK-OK) by vger.kernel.org with ESMTP id S1725830AbgGMIoC (ORCPT ); Mon, 13 Jul 2020 04:44:02 -0400 DKIM-Signature: v=1; a=rsa-sha256; c=relaxed/relaxed; d=amazon.com; i=@amazon.com; q=dns/txt; s=amazon201209; t=1594629839; x=1626165839; h=from:to:cc:subject:date:message-id:in-reply-to: references:mime-version; bh=SvamKsw02ss9En7rAetK7A9oOuKWWE6KwkjlpCG1t+U=; b=c4b7GmpTRmwINMOseC7VpKJbWT6atus3JPAEqCPF0FfrxpAnEi/tbNpt Ok2hzz+kLfLTtoa1kEaFEqsPLLIo9w5Coi5OVpkN/dGDCl5x2RBQDXBZZ YJQuYzvQhnqxxabydbwAtvFycxdLdV/IJQAx9an9SxHrBXLY4FcTn0HDZ Y=; IronPort-SDR: v6AEZsyuzxQmcblaODvjkTsNDiYrqlnI4Y1W/oXW0vx5cGHY2Bz3AjgloijjhfEDxA+gWoCJzA nJo8k4ZyJYgw== X-IronPort-AV: E=Sophos;i="5.75,346,1589241600"; d="scan'208";a="58026168" Received: from sea32-co-svc-lb4-vlan3.sea.corp.amazon.com (HELO email-inbound-relay-2a-538b0bfb.us-west-2.amazon.com) ([10.47.23.38]) by smtp-border-fw-out-33001.sea14.amazon.com with ESMTP; 13 Jul 2020 08:43:52 +0000 Received: from EX13MTAUEA002.ant.amazon.com (pdx4-ws-svc-p6-lb7-vlan3.pdx.amazon.com [10.170.41.166]) by email-inbound-relay-2a-538b0bfb.us-west-2.amazon.com (Postfix) with ESMTPS id 12FAAA1C52; Mon, 13 Jul 2020 08:43:49 +0000 (UTC) Received: from EX13D31EUA004.ant.amazon.com (10.43.165.161) by EX13MTAUEA002.ant.amazon.com (10.43.61.77) with Microsoft SMTP Server (TLS) id 15.0.1497.2; Mon, 13 Jul 2020 08:43:48 +0000 Received: from u886c93fd17d25d.ant.amazon.com (10.43.161.146) by EX13D31EUA004.ant.amazon.com (10.43.165.161) with Microsoft SMTP Server (TLS) id 15.0.1497.2; Mon, 13 Jul 2020 08:43:32 +0000 From: SeongJae Park To: CC: SeongJae Park , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Subject: [PATCH v18 04/14] mm/damon: Adaptively adjust regions Date: Mon, 13 Jul 2020 10:41:34 +0200 Message-ID: <20200713084144.4430-5-sjpark@amazon.com> X-Mailer: git-send-email 2.17.1 In-Reply-To: <20200713084144.4430-1-sjpark@amazon.com> References: <20200713084144.4430-1-sjpark@amazon.com> MIME-Version: 1.0 Content-Type: text/plain X-Originating-IP: [10.43.161.146] X-ClientProxiedBy: EX13P01UWA002.ant.amazon.com (10.43.160.46) To EX13D31EUA004.ant.amazon.com (10.43.165.161) Sender: linux-kernel-owner@vger.kernel.org Precedence: bulk List-ID: X-Mailing-List: linux-kernel@vger.kernel.org From: SeongJae Park Even somehow the initial monitoring target regions are well constructed to fulfill the assumption (pages in same region have similar access frequencies), the data access pattern can be dynamically changed. This will result in low monitoring quality. To keep the assumption as much as possible, DAMON adaptively merges and splits each region based on their access frequency. For each ``aggregation interval``, it compares the access frequencies of adjacent regions and merges those if the frequency difference is small. Then, after it reports and clears the aggregated access frequency of each region, it splits each region into two or three regions if the total number of regions will not exceed the user-specified maximum number of regions after the split. In this way, DAMON provides its best-effort quality and minimal overhead while keeping the upper-bound overhead that users set. Signed-off-by: SeongJae Park Reviewed-by: Leonard Foerster --- include/linux/damon.h | 11 ++- mm/damon.c | 191 ++++++++++++++++++++++++++++++++++++++++-- 2 files changed, 189 insertions(+), 13 deletions(-) diff --git a/include/linux/damon.h b/include/linux/damon.h index 7adc7b6b3507..97ddc74e207f 100644 --- a/include/linux/damon.h +++ b/include/linux/damon.h @@ -61,7 +61,8 @@ struct damon_task { * * @sample_interval: The time between access samplings. * @aggr_interval: The time between monitor results aggregations. - * @nr_regions: The number of monitoring regions. + * @min_nr_regions: The minimum number of monitoring regions. + * @max_nr_regions: The maximum number of monitoring regions. * * For each @sample_interval, DAMON checks whether each region is accessed or * not. It aggregates and keeps the access information (number of accesses to @@ -114,7 +115,8 @@ struct damon_task { struct damon_ctx { unsigned long sample_interval; unsigned long aggr_interval; - unsigned long nr_regions; + unsigned long min_nr_regions; + unsigned long max_nr_regions; struct timespec64 last_aggregation; @@ -133,8 +135,9 @@ struct damon_ctx { }; int damon_set_pids(struct damon_ctx *ctx, int *pids, ssize_t nr_pids); -int damon_set_attrs(struct damon_ctx *ctx, unsigned long sample_int, - unsigned long aggr_int, unsigned long min_nr_reg); +int damon_set_attrs(struct damon_ctx *ctx, + unsigned long sample_int, unsigned long aggr_int, + unsigned long min_nr_reg, unsigned long max_nr_reg); int damon_start(struct damon_ctx *ctx); int damon_stop(struct damon_ctx *ctx); diff --git a/mm/damon.c b/mm/damon.c index 29d82c2d65be..02bc7542a76f 100644 --- a/mm/damon.c +++ b/mm/damon.c @@ -176,6 +176,26 @@ static unsigned int nr_damon_regions(struct damon_task *t) return nr_regions; } +/* Returns the size upper limit for each monitoring region */ +static unsigned long damon_region_sz_limit(struct damon_ctx *ctx) +{ + struct damon_task *t; + struct damon_region *r; + unsigned long sz = 0; + + damon_for_each_task(t, ctx) { + damon_for_each_region(r, t) + sz += r->ar.end - r->ar.start; + } + + if (ctx->min_nr_regions) + sz /= ctx->min_nr_regions; + if (sz < MIN_REGION) + sz = MIN_REGION; + + return sz; +} + /* * Functions for DAMON core logics and features */ @@ -226,6 +246,145 @@ static void kdamond_reset_aggregated(struct damon_ctx *c) } } +#define sz_damon_region(r) (r->ar.end - r->ar.start) + +/* + * Merge two adjacent regions into one region + */ +static void damon_merge_two_regions(struct damon_region *l, + struct damon_region *r) +{ + l->nr_accesses = (l->nr_accesses * sz_damon_region(l) + + r->nr_accesses * sz_damon_region(r)) / + (sz_damon_region(l) + sz_damon_region(r)); + l->ar.end = r->ar.end; + damon_destroy_region(r); +} + +#define diff_of(a, b) (a > b ? a - b : b - a) + +/* + * Merge adjacent regions having similar access frequencies + * + * t task affected by merge operation + * thres '->nr_accesses' diff threshold for the merge + * sz_limit size upper limit of each region + */ +static void damon_merge_regions_of(struct damon_task *t, unsigned int thres, + unsigned long sz_limit) +{ + struct damon_region *r, *prev = NULL, *next; + + damon_for_each_region_safe(r, next, t) { + if (prev && prev->ar.end == r->ar.start && + diff_of(prev->nr_accesses, r->nr_accesses) <= thres && + sz_damon_region(prev) + sz_damon_region(r) <= sz_limit) + damon_merge_two_regions(prev, r); + else + prev = r; + } +} + +/* + * Merge adjacent regions having similar access frequencies + * + * threshold '->nr_accesses' diff threshold for the merge + * sz_limit size upper limit of each region + * + * This function merges monitoring target regions which are adjacent and their + * access frequencies are similar. This is for minimizing the monitoring + * overhead under the dynamically changeable access pattern. If a merge was + * unnecessarily made, later 'kdamond_split_regions()' will revert it. + */ +static void kdamond_merge_regions(struct damon_ctx *c, unsigned int threshold, + unsigned long sz_limit) +{ + struct damon_task *t; + + damon_for_each_task(t, c) + damon_merge_regions_of(t, threshold, sz_limit); +} + +/* + * Split a region in two + * + * r the region to be split + * sz_r size of the first sub-region that will be made + */ +static void damon_split_region_at(struct damon_ctx *ctx, + struct damon_region *r, unsigned long sz_r) +{ + struct damon_region *new; + + new = damon_new_region(r->ar.start + sz_r, r->ar.end); + r->ar.end = new->ar.start; + + damon_insert_region(new, r, damon_next_region(r)); +} + +/* Split every region in the given task into 'nr_subs' regions */ +static void damon_split_regions_of(struct damon_ctx *ctx, + struct damon_task *t, int nr_subs) +{ + struct damon_region *r, *next; + unsigned long sz_region, sz_sub = 0; + int i; + + damon_for_each_region_safe(r, next, t) { + sz_region = r->ar.end - r->ar.start; + + for (i = 0; i < nr_subs - 1 && + sz_region > 2 * MIN_REGION; i++) { + /* + * Randomly select size of left sub-region to be at + * least 10 percent and at most 90% of original region + */ + sz_sub = ALIGN_DOWN(damon_rand(1, 10) * + sz_region / 10, MIN_REGION); + /* Do not allow blank region */ + if (sz_sub == 0 || sz_sub >= sz_region) + continue; + + damon_split_region_at(ctx, r, sz_sub); + sz_region = sz_sub; + } + } +} + +/* + * Split every target region into randomly-sized small regions + * + * This function splits every target region into random-sized small regions if + * current total number of the regions is equal or smaller than half of the + * user-specified maximum number of regions. This is for maximizing the + * monitoring accuracy under the dynamically changeable access patterns. If a + * split was unnecessarily made, later 'kdamond_merge_regions()' will revert + * it. + */ +static void kdamond_split_regions(struct damon_ctx *ctx) +{ + struct damon_task *t; + unsigned int nr_regions = 0; + static unsigned int last_nr_regions; + int nr_subregions = 2; + + damon_for_each_task(t, ctx) + nr_regions += nr_damon_regions(t); + + if (nr_regions > ctx->max_nr_regions / 2) + return; + + /* Maybe the middle of the region has different access frequency */ + if (last_nr_regions == nr_regions && + nr_regions < ctx->max_nr_regions / 3) + nr_subregions = 3; + + damon_for_each_task(t, ctx) + damon_split_regions_of(ctx, t, nr_subregions); + + last_nr_regions = nr_regions; +} + /* * Check whether current monitoring should be stopped * @@ -269,10 +428,14 @@ static int kdamond_fn(void *data) struct damon_ctx *ctx = (struct damon_ctx *)data; struct damon_task *t; struct damon_region *r, *next; + unsigned int max_nr_accesses = 0; + unsigned long sz_limit = 0; pr_info("kdamond (%d) starts\n", ctx->kdamond->pid); if (ctx->init_target_regions) ctx->init_target_regions(ctx); + sz_limit = damon_region_sz_limit(ctx); + while (!kdamond_need_stop(ctx)) { if (ctx->prepare_access_checks) ctx->prepare_access_checks(ctx); @@ -282,14 +445,16 @@ static int kdamond_fn(void *data) usleep_range(ctx->sample_interval, ctx->sample_interval + 1); if (ctx->check_accesses) - ctx->check_accesses(ctx); + max_nr_accesses = ctx->check_accesses(ctx); if (kdamond_aggregate_interval_passed(ctx)) { if (ctx->aggregate_cb) ctx->aggregate_cb(ctx); + kdamond_merge_regions(ctx, max_nr_accesses / 10, + sz_limit); kdamond_reset_aggregated(ctx); + kdamond_split_regions(ctx); } - } damon_for_each_task(t, ctx) { damon_for_each_region_safe(r, next, t) @@ -400,25 +565,33 @@ int damon_set_pids(struct damon_ctx *ctx, int *pids, ssize_t nr_pids) * @ctx: monitoring context * @sample_int: time interval between samplings * @aggr_int: time interval between aggregations - * @nr_reg: number of regions + * @min_nr_reg: minimal number of regions + * @max_nr_reg: maximum number of regions * * This function should not be called while the kdamond is running. * Every time interval is in micro-seconds. * * Return: 0 on success, negative error code otherwise. */ -int damon_set_attrs(struct damon_ctx *ctx, unsigned long sample_int, - unsigned long aggr_int, unsigned long nr_reg) +int damon_set_attrs(struct damon_ctx *ctx, + unsigned long sample_int, unsigned long aggr_int, + unsigned long min_nr_reg, unsigned long max_nr_reg) { - if (nr_reg < 3) { - pr_err("nr_regions (%lu) must be at least 3\n", - nr_reg); + if (min_nr_reg < 3) { + pr_err("min_nr_regions (%lu) must be at least 3\n", + min_nr_reg); + return -EINVAL; + } + if (min_nr_reg > max_nr_reg) { + pr_err("invalid nr_regions. min (%lu) > max (%lu)\n", + min_nr_reg, max_nr_reg); return -EINVAL; } ctx->sample_interval = sample_int; ctx->aggr_interval = aggr_int; - ctx->nr_regions = nr_reg; + ctx->min_nr_regions = min_nr_reg; + ctx->max_nr_regions = max_nr_reg; return 0; } -- 2.17.1