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Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
Uwe Zeisbergerf30c2262006-10-03 23:01:26 +02002 * mm/page-writeback.c
Linus Torvalds1da177e2005-04-16 15:20:36 -07003 *
4 * Copyright (C) 2002, Linus Torvalds.
Peter Zijlstra90eec102015-11-16 11:08:45 +01005 * Copyright (C) 2007 Red Hat, Inc., Peter Zijlstra
Linus Torvalds1da177e2005-04-16 15:20:36 -07006 *
7 * Contains functions related to writing back dirty pages at the
8 * address_space level.
9 *
Francois Camie1f8e872008-10-15 22:01:59 -070010 * 10Apr2002 Andrew Morton
Linus Torvalds1da177e2005-04-16 15:20:36 -070011 * Initial version
12 */
13
14#include <linux/kernel.h>
Paul Gortmakerb95f1b312011-10-16 02:01:52 -040015#include <linux/export.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070016#include <linux/spinlock.h>
17#include <linux/fs.h>
18#include <linux/mm.h>
19#include <linux/swap.h>
20#include <linux/slab.h>
21#include <linux/pagemap.h>
22#include <linux/writeback.h>
23#include <linux/init.h>
24#include <linux/backing-dev.h>
Andrew Morton55e829a2006-12-10 02:19:27 -080025#include <linux/task_io_accounting_ops.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070026#include <linux/blkdev.h>
27#include <linux/mpage.h>
Peter Zijlstrad08b3852006-09-25 23:30:57 -070028#include <linux/rmap.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070029#include <linux/percpu.h>
30#include <linux/notifier.h>
31#include <linux/smp.h>
32#include <linux/sysctl.h>
33#include <linux/cpu.h>
34#include <linux/syscalls.h>
Al Viroff01bb42011-09-16 02:31:11 -040035#include <linux/buffer_head.h> /* __set_page_dirty_buffers */
David Howells811d7362006-08-29 19:06:09 +010036#include <linux/pagevec.h>
Jan Karaeb608e32012-05-24 18:59:11 +020037#include <linux/timer.h>
Clark Williams8bd75c72013-02-07 09:47:07 -060038#include <linux/sched/rt.h>
Ingo Molnarf361bf42017-02-03 23:47:37 +010039#include <linux/sched/signal.h>
Lisa Du6e543d52013-09-11 14:22:36 -070040#include <linux/mm_inline.h>
Dave Chinner028c2dd2010-07-07 13:24:07 +100041#include <trace/events/writeback.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070042
Lisa Du6e543d52013-09-11 14:22:36 -070043#include "internal.h"
44
Linus Torvalds1da177e2005-04-16 15:20:36 -070045/*
Wu Fengguangffd1f602011-06-19 22:18:42 -060046 * Sleep at most 200ms at a time in balance_dirty_pages().
47 */
48#define MAX_PAUSE max(HZ/5, 1)
49
50/*
Wu Fengguang5b9b3572011-12-06 13:17:17 -060051 * Try to keep balance_dirty_pages() call intervals higher than this many pages
52 * by raising pause time to max_pause when falls below it.
53 */
54#define DIRTY_POLL_THRESH (128 >> (PAGE_SHIFT - 10))
55
56/*
Wu Fengguange98be2d2010-08-29 11:22:30 -060057 * Estimate write bandwidth at 200ms intervals.
58 */
59#define BANDWIDTH_INTERVAL max(HZ/5, 1)
60
Wu Fengguang6c14ae12011-03-02 16:04:18 -060061#define RATELIMIT_CALC_SHIFT 10
62
Wu Fengguange98be2d2010-08-29 11:22:30 -060063/*
Linus Torvalds1da177e2005-04-16 15:20:36 -070064 * After a CPU has dirtied this many pages, balance_dirty_pages_ratelimited
65 * will look to see if it needs to force writeback or throttling.
66 */
67static long ratelimit_pages = 32;
68
Linus Torvalds1da177e2005-04-16 15:20:36 -070069/* The following parameters are exported via /proc/sys/vm */
70
71/*
Jens Axboe5b0830c2009-09-23 19:37:09 +020072 * Start background writeback (via writeback threads) at this percentage
Linus Torvalds1da177e2005-04-16 15:20:36 -070073 */
Wu Fengguang1b5e62b2009-03-23 08:57:38 +080074int dirty_background_ratio = 10;
Linus Torvalds1da177e2005-04-16 15:20:36 -070075
76/*
David Rientjes2da02992009-01-06 14:39:31 -080077 * dirty_background_bytes starts at 0 (disabled) so that it is a function of
78 * dirty_background_ratio * the amount of dirtyable memory
79 */
80unsigned long dirty_background_bytes;
81
82/*
Bron Gondwana195cf4532008-02-04 22:29:20 -080083 * free highmem will not be subtracted from the total free memory
84 * for calculating free ratios if vm_highmem_is_dirtyable is true
85 */
86int vm_highmem_is_dirtyable;
87
88/*
Linus Torvalds1da177e2005-04-16 15:20:36 -070089 * The generator of dirty data starts writeback at this percentage
90 */
Wu Fengguang1b5e62b2009-03-23 08:57:38 +080091int vm_dirty_ratio = 20;
Linus Torvalds1da177e2005-04-16 15:20:36 -070092
93/*
David Rientjes2da02992009-01-06 14:39:31 -080094 * vm_dirty_bytes starts at 0 (disabled) so that it is a function of
95 * vm_dirty_ratio * the amount of dirtyable memory
96 */
97unsigned long vm_dirty_bytes;
98
99/*
Alexey Dobriyan704503d2009-03-31 15:23:18 -0700100 * The interval between `kupdate'-style writebacks
Linus Torvalds1da177e2005-04-16 15:20:36 -0700101 */
Toshiyuki Okajima22ef37e2009-05-16 22:56:28 -0700102unsigned int dirty_writeback_interval = 5 * 100; /* centiseconds */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700103
Artem Bityutskiy91913a22012-03-21 22:33:00 -0400104EXPORT_SYMBOL_GPL(dirty_writeback_interval);
105
Linus Torvalds1da177e2005-04-16 15:20:36 -0700106/*
Alexey Dobriyan704503d2009-03-31 15:23:18 -0700107 * The longest time for which data is allowed to remain dirty
Linus Torvalds1da177e2005-04-16 15:20:36 -0700108 */
Toshiyuki Okajima22ef37e2009-05-16 22:56:28 -0700109unsigned int dirty_expire_interval = 30 * 100; /* centiseconds */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700110
111/*
112 * Flag that makes the machine dump writes/reads and block dirtyings.
113 */
114int block_dump;
115
116/*
Bart Samweled5b43f2006-03-24 03:15:49 -0800117 * Flag that puts the machine in "laptop mode". Doubles as a timeout in jiffies:
118 * a full sync is triggered after this time elapses without any disk activity.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700119 */
120int laptop_mode;
121
122EXPORT_SYMBOL(laptop_mode);
123
124/* End of sysctl-exported parameters */
125
Tejun Heodcc25ae2015-05-22 18:23:22 -0400126struct wb_domain global_wb_domain;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700127
Tejun Heo2bc00ae2015-05-22 18:23:23 -0400128/* consolidated parameters for balance_dirty_pages() and its subroutines */
129struct dirty_throttle_control {
Tejun Heoe9f07df2015-05-22 18:23:28 -0400130#ifdef CONFIG_CGROUP_WRITEBACK
131 struct wb_domain *dom;
Tejun Heo9fc3a432015-05-22 18:23:30 -0400132 struct dirty_throttle_control *gdtc; /* only set in memcg dtc's */
Tejun Heoe9f07df2015-05-22 18:23:28 -0400133#endif
Tejun Heo2bc00ae2015-05-22 18:23:23 -0400134 struct bdi_writeback *wb;
Tejun Heoe9770b32015-05-22 18:23:27 -0400135 struct fprop_local_percpu *wb_completions;
Jan Karaeb608e32012-05-24 18:59:11 +0200136
Tejun Heo9fc3a432015-05-22 18:23:30 -0400137 unsigned long avail; /* dirtyable */
Tejun Heo2bc00ae2015-05-22 18:23:23 -0400138 unsigned long dirty; /* file_dirty + write + nfs */
139 unsigned long thresh; /* dirty threshold */
140 unsigned long bg_thresh; /* dirty background threshold */
141
142 unsigned long wb_dirty; /* per-wb counterparts */
143 unsigned long wb_thresh;
Tejun Heo970fb012015-05-22 18:23:24 -0400144 unsigned long wb_bg_thresh;
Tejun Heodaddfa32015-05-22 18:23:26 -0400145
146 unsigned long pos_ratio;
Tejun Heo2bc00ae2015-05-22 18:23:23 -0400147};
148
Jan Karaeb608e32012-05-24 18:59:11 +0200149/*
150 * Length of period for aging writeout fractions of bdis. This is an
151 * arbitrarily chosen number. The longer the period, the slower fractions will
152 * reflect changes in current writeout rate.
153 */
154#define VM_COMPLETIONS_PERIOD_LEN (3*HZ)
Peter Zijlstra04fbfdc2007-10-16 23:25:50 -0700155
Tejun Heo693108a2015-05-22 17:13:49 -0400156#ifdef CONFIG_CGROUP_WRITEBACK
157
Tejun Heod60d1bd2015-09-29 12:47:53 -0400158#define GDTC_INIT(__wb) .wb = (__wb), \
159 .dom = &global_wb_domain, \
160 .wb_completions = &(__wb)->completions
161
Tejun Heo9fc3a432015-05-22 18:23:30 -0400162#define GDTC_INIT_NO_WB .dom = &global_wb_domain
Tejun Heod60d1bd2015-09-29 12:47:53 -0400163
164#define MDTC_INIT(__wb, __gdtc) .wb = (__wb), \
165 .dom = mem_cgroup_wb_domain(__wb), \
166 .wb_completions = &(__wb)->memcg_completions, \
167 .gdtc = __gdtc
Tejun Heoc2aa7232015-05-22 18:23:35 -0400168
169static bool mdtc_valid(struct dirty_throttle_control *dtc)
170{
171 return dtc->dom;
172}
Tejun Heoe9f07df2015-05-22 18:23:28 -0400173
174static struct wb_domain *dtc_dom(struct dirty_throttle_control *dtc)
175{
176 return dtc->dom;
177}
178
Tejun Heo9fc3a432015-05-22 18:23:30 -0400179static struct dirty_throttle_control *mdtc_gdtc(struct dirty_throttle_control *mdtc)
180{
181 return mdtc->gdtc;
182}
183
Tejun Heo841710a2015-05-22 18:23:33 -0400184static struct fprop_local_percpu *wb_memcg_completions(struct bdi_writeback *wb)
185{
186 return &wb->memcg_completions;
187}
188
Tejun Heo693108a2015-05-22 17:13:49 -0400189static void wb_min_max_ratio(struct bdi_writeback *wb,
190 unsigned long *minp, unsigned long *maxp)
191{
192 unsigned long this_bw = wb->avg_write_bandwidth;
193 unsigned long tot_bw = atomic_long_read(&wb->bdi->tot_write_bandwidth);
194 unsigned long long min = wb->bdi->min_ratio;
195 unsigned long long max = wb->bdi->max_ratio;
196
197 /*
198 * @wb may already be clean by the time control reaches here and
199 * the total may not include its bw.
200 */
201 if (this_bw < tot_bw) {
202 if (min) {
203 min *= this_bw;
204 do_div(min, tot_bw);
205 }
206 if (max < 100) {
207 max *= this_bw;
208 do_div(max, tot_bw);
209 }
210 }
211
212 *minp = min;
213 *maxp = max;
214}
215
216#else /* CONFIG_CGROUP_WRITEBACK */
217
Tejun Heod60d1bd2015-09-29 12:47:53 -0400218#define GDTC_INIT(__wb) .wb = (__wb), \
219 .wb_completions = &(__wb)->completions
Tejun Heo9fc3a432015-05-22 18:23:30 -0400220#define GDTC_INIT_NO_WB
Tejun Heoc2aa7232015-05-22 18:23:35 -0400221#define MDTC_INIT(__wb, __gdtc)
222
223static bool mdtc_valid(struct dirty_throttle_control *dtc)
224{
225 return false;
226}
Tejun Heoe9f07df2015-05-22 18:23:28 -0400227
228static struct wb_domain *dtc_dom(struct dirty_throttle_control *dtc)
229{
230 return &global_wb_domain;
231}
232
Tejun Heo9fc3a432015-05-22 18:23:30 -0400233static struct dirty_throttle_control *mdtc_gdtc(struct dirty_throttle_control *mdtc)
234{
235 return NULL;
236}
237
Tejun Heo841710a2015-05-22 18:23:33 -0400238static struct fprop_local_percpu *wb_memcg_completions(struct bdi_writeback *wb)
239{
240 return NULL;
241}
242
Tejun Heo693108a2015-05-22 17:13:49 -0400243static void wb_min_max_ratio(struct bdi_writeback *wb,
244 unsigned long *minp, unsigned long *maxp)
245{
246 *minp = wb->bdi->min_ratio;
247 *maxp = wb->bdi->max_ratio;
248}
249
250#endif /* CONFIG_CGROUP_WRITEBACK */
251
Peter Zijlstra04fbfdc2007-10-16 23:25:50 -0700252/*
Johannes Weinera756cf52012-01-10 15:07:49 -0800253 * In a memory zone, there is a certain amount of pages we consider
254 * available for the page cache, which is essentially the number of
255 * free and reclaimable pages, minus some zone reserves to protect
256 * lowmem and the ability to uphold the zone's watermarks without
257 * requiring writeback.
258 *
259 * This number of dirtyable pages is the base value of which the
260 * user-configurable dirty ratio is the effictive number of pages that
261 * are allowed to be actually dirtied. Per individual zone, or
262 * globally by using the sum of dirtyable pages over all zones.
263 *
264 * Because the user is allowed to specify the dirty limit globally as
265 * absolute number of bytes, calculating the per-zone dirty limit can
266 * require translating the configured limit into a percentage of
267 * global dirtyable memory first.
268 */
269
Johannes Weinera8045522014-01-29 14:05:39 -0800270/**
Mel Gorman281e3722016-07-28 15:46:11 -0700271 * node_dirtyable_memory - number of dirtyable pages in a node
272 * @pgdat: the node
Johannes Weinera8045522014-01-29 14:05:39 -0800273 *
Mel Gorman281e3722016-07-28 15:46:11 -0700274 * Returns the node's number of pages potentially available for dirty
275 * page cache. This is the base value for the per-node dirty limits.
Johannes Weinera8045522014-01-29 14:05:39 -0800276 */
Mel Gorman281e3722016-07-28 15:46:11 -0700277static unsigned long node_dirtyable_memory(struct pglist_data *pgdat)
Johannes Weinera8045522014-01-29 14:05:39 -0800278{
Mel Gorman281e3722016-07-28 15:46:11 -0700279 unsigned long nr_pages = 0;
280 int z;
Johannes Weinera8045522014-01-29 14:05:39 -0800281
Mel Gorman281e3722016-07-28 15:46:11 -0700282 for (z = 0; z < MAX_NR_ZONES; z++) {
283 struct zone *zone = pgdat->node_zones + z;
284
285 if (!populated_zone(zone))
286 continue;
287
288 nr_pages += zone_page_state(zone, NR_FREE_PAGES);
289 }
290
Johannes Weinera8d01432016-01-14 15:20:15 -0800291 /*
292 * Pages reserved for the kernel should not be considered
293 * dirtyable, to prevent a situation where reclaim has to
294 * clean pages in order to balance the zones.
295 */
Mel Gorman281e3722016-07-28 15:46:11 -0700296 nr_pages -= min(nr_pages, pgdat->totalreserve_pages);
Johannes Weinera8045522014-01-29 14:05:39 -0800297
Mel Gorman281e3722016-07-28 15:46:11 -0700298 nr_pages += node_page_state(pgdat, NR_INACTIVE_FILE);
299 nr_pages += node_page_state(pgdat, NR_ACTIVE_FILE);
Johannes Weinera8045522014-01-29 14:05:39 -0800300
301 return nr_pages;
302}
303
Johannes Weiner1edf2232012-01-10 15:06:57 -0800304static unsigned long highmem_dirtyable_memory(unsigned long total)
305{
306#ifdef CONFIG_HIGHMEM
307 int node;
Mel Gormanbb4cc2b2016-07-28 15:47:29 -0700308 unsigned long x = 0;
Joonsoo Kim09b4ab32016-05-19 17:12:20 -0700309 int i;
Johannes Weiner1edf2232012-01-10 15:06:57 -0800310
311 for_each_node_state(node, N_HIGH_MEMORY) {
Mel Gorman281e3722016-07-28 15:46:11 -0700312 for (i = ZONE_NORMAL + 1; i < MAX_NR_ZONES; i++) {
313 struct zone *z;
Minchan Kim9cb937e2016-07-28 15:47:08 -0700314 unsigned long nr_pages;
Johannes Weiner1edf2232012-01-10 15:06:57 -0800315
Mel Gorman281e3722016-07-28 15:46:11 -0700316 if (!is_highmem_idx(i))
317 continue;
318
319 z = &NODE_DATA(node)->node_zones[i];
Minchan Kim9cb937e2016-07-28 15:47:08 -0700320 if (!populated_zone(z))
321 continue;
Mel Gorman281e3722016-07-28 15:46:11 -0700322
Minchan Kim9cb937e2016-07-28 15:47:08 -0700323 nr_pages = zone_page_state(z, NR_FREE_PAGES);
Mel Gorman281e3722016-07-28 15:46:11 -0700324 /* watch for underflows */
Minchan Kim9cb937e2016-07-28 15:47:08 -0700325 nr_pages -= min(nr_pages, high_wmark_pages(z));
Mel Gormanbb4cc2b2016-07-28 15:47:29 -0700326 nr_pages += zone_page_state(z, NR_ZONE_INACTIVE_FILE);
327 nr_pages += zone_page_state(z, NR_ZONE_ACTIVE_FILE);
328 x += nr_pages;
Joonsoo Kim09b4ab32016-05-19 17:12:20 -0700329 }
Johannes Weiner1edf2232012-01-10 15:06:57 -0800330 }
Mel Gorman281e3722016-07-28 15:46:11 -0700331
Johannes Weiner1edf2232012-01-10 15:06:57 -0800332 /*
Sonny Raoc8b74c2f2012-12-20 15:05:07 -0800333 * Unreclaimable memory (kernel memory or anonymous memory
334 * without swap) can bring down the dirtyable pages below
335 * the zone's dirty balance reserve and the above calculation
336 * will underflow. However we still want to add in nodes
337 * which are below threshold (negative values) to get a more
338 * accurate calculation but make sure that the total never
339 * underflows.
340 */
341 if ((long)x < 0)
342 x = 0;
343
344 /*
Johannes Weiner1edf2232012-01-10 15:06:57 -0800345 * Make sure that the number of highmem pages is never larger
346 * than the number of the total dirtyable memory. This can only
347 * occur in very strange VM situations but we want to make sure
348 * that this does not occur.
349 */
350 return min(x, total);
351#else
352 return 0;
353#endif
354}
355
356/**
Johannes Weinerccafa282012-01-10 15:07:44 -0800357 * global_dirtyable_memory - number of globally dirtyable pages
Johannes Weiner1edf2232012-01-10 15:06:57 -0800358 *
Johannes Weinerccafa282012-01-10 15:07:44 -0800359 * Returns the global number of pages potentially available for dirty
360 * page cache. This is the base value for the global dirty limits.
Johannes Weiner1edf2232012-01-10 15:06:57 -0800361 */
H Hartley Sweeten18cf8cf2012-04-12 13:44:20 -0700362static unsigned long global_dirtyable_memory(void)
Johannes Weiner1edf2232012-01-10 15:06:57 -0800363{
364 unsigned long x;
365
Michal Hockoc41f0122017-09-06 16:23:36 -0700366 x = global_zone_page_state(NR_FREE_PAGES);
Johannes Weinera8d01432016-01-14 15:20:15 -0800367 /*
368 * Pages reserved for the kernel should not be considered
369 * dirtyable, to prevent a situation where reclaim has to
370 * clean pages in order to balance the zones.
371 */
372 x -= min(x, totalreserve_pages);
Johannes Weiner1edf2232012-01-10 15:06:57 -0800373
Mel Gorman599d0c92016-07-28 15:45:31 -0700374 x += global_node_page_state(NR_INACTIVE_FILE);
375 x += global_node_page_state(NR_ACTIVE_FILE);
Johannes Weinera8045522014-01-29 14:05:39 -0800376
Johannes Weiner1edf2232012-01-10 15:06:57 -0800377 if (!vm_highmem_is_dirtyable)
378 x -= highmem_dirtyable_memory(x);
379
380 return x + 1; /* Ensure that we never return 0 */
381}
382
Tejun Heo9fc3a432015-05-22 18:23:30 -0400383/**
384 * domain_dirty_limits - calculate thresh and bg_thresh for a wb_domain
385 * @dtc: dirty_throttle_control of interest
Johannes Weinerccafa282012-01-10 15:07:44 -0800386 *
Tejun Heo9fc3a432015-05-22 18:23:30 -0400387 * Calculate @dtc->thresh and ->bg_thresh considering
388 * vm_dirty_{bytes|ratio} and dirty_background_{bytes|ratio}. The caller
389 * must ensure that @dtc->avail is set before calling this function. The
390 * dirty limits will be lifted by 1/4 for PF_LESS_THROTTLE (ie. nfsd) and
Johannes Weinerccafa282012-01-10 15:07:44 -0800391 * real-time tasks.
392 */
Tejun Heo9fc3a432015-05-22 18:23:30 -0400393static void domain_dirty_limits(struct dirty_throttle_control *dtc)
394{
395 const unsigned long available_memory = dtc->avail;
396 struct dirty_throttle_control *gdtc = mdtc_gdtc(dtc);
397 unsigned long bytes = vm_dirty_bytes;
398 unsigned long bg_bytes = dirty_background_bytes;
Tejun Heo62a584f2016-05-27 14:34:46 -0400399 /* convert ratios to per-PAGE_SIZE for higher precision */
400 unsigned long ratio = (vm_dirty_ratio * PAGE_SIZE) / 100;
401 unsigned long bg_ratio = (dirty_background_ratio * PAGE_SIZE) / 100;
Tejun Heo9fc3a432015-05-22 18:23:30 -0400402 unsigned long thresh;
403 unsigned long bg_thresh;
404 struct task_struct *tsk;
405
406 /* gdtc is !NULL iff @dtc is for memcg domain */
407 if (gdtc) {
408 unsigned long global_avail = gdtc->avail;
409
410 /*
411 * The byte settings can't be applied directly to memcg
412 * domains. Convert them to ratios by scaling against
Tejun Heo62a584f2016-05-27 14:34:46 -0400413 * globally available memory. As the ratios are in
414 * per-PAGE_SIZE, they can be obtained by dividing bytes by
415 * number of pages.
Tejun Heo9fc3a432015-05-22 18:23:30 -0400416 */
417 if (bytes)
Tejun Heo62a584f2016-05-27 14:34:46 -0400418 ratio = min(DIV_ROUND_UP(bytes, global_avail),
419 PAGE_SIZE);
Tejun Heo9fc3a432015-05-22 18:23:30 -0400420 if (bg_bytes)
Tejun Heo62a584f2016-05-27 14:34:46 -0400421 bg_ratio = min(DIV_ROUND_UP(bg_bytes, global_avail),
422 PAGE_SIZE);
Tejun Heo9fc3a432015-05-22 18:23:30 -0400423 bytes = bg_bytes = 0;
424 }
425
426 if (bytes)
427 thresh = DIV_ROUND_UP(bytes, PAGE_SIZE);
428 else
Tejun Heo62a584f2016-05-27 14:34:46 -0400429 thresh = (ratio * available_memory) / PAGE_SIZE;
Tejun Heo9fc3a432015-05-22 18:23:30 -0400430
431 if (bg_bytes)
432 bg_thresh = DIV_ROUND_UP(bg_bytes, PAGE_SIZE);
433 else
Tejun Heo62a584f2016-05-27 14:34:46 -0400434 bg_thresh = (bg_ratio * available_memory) / PAGE_SIZE;
Tejun Heo9fc3a432015-05-22 18:23:30 -0400435
Yafang Shao0f6d24f2017-11-15 17:33:45 -0800436 if (unlikely(bg_thresh >= thresh)) {
437 pr_warn("vm direct limit must be set greater than background limit.\n");
Tejun Heo9fc3a432015-05-22 18:23:30 -0400438 bg_thresh = thresh / 2;
Yafang Shao0f6d24f2017-11-15 17:33:45 -0800439 }
440
Tejun Heo9fc3a432015-05-22 18:23:30 -0400441 tsk = current;
442 if (tsk->flags & PF_LESS_THROTTLE || rt_task(tsk)) {
NeilBrowna53eaff2016-05-20 16:58:53 -0700443 bg_thresh += bg_thresh / 4 + global_wb_domain.dirty_limit / 32;
444 thresh += thresh / 4 + global_wb_domain.dirty_limit / 32;
Tejun Heo9fc3a432015-05-22 18:23:30 -0400445 }
446 dtc->thresh = thresh;
447 dtc->bg_thresh = bg_thresh;
448
449 /* we should eventually report the domain in the TP */
450 if (!gdtc)
451 trace_global_dirty_state(bg_thresh, thresh);
452}
453
454/**
455 * global_dirty_limits - background-writeback and dirty-throttling thresholds
456 * @pbackground: out parameter for bg_thresh
457 * @pdirty: out parameter for thresh
458 *
459 * Calculate bg_thresh and thresh for global_wb_domain. See
460 * domain_dirty_limits() for details.
461 */
Johannes Weinerccafa282012-01-10 15:07:44 -0800462void global_dirty_limits(unsigned long *pbackground, unsigned long *pdirty)
463{
Tejun Heo9fc3a432015-05-22 18:23:30 -0400464 struct dirty_throttle_control gdtc = { GDTC_INIT_NO_WB };
Johannes Weinerccafa282012-01-10 15:07:44 -0800465
Tejun Heo9fc3a432015-05-22 18:23:30 -0400466 gdtc.avail = global_dirtyable_memory();
467 domain_dirty_limits(&gdtc);
Johannes Weinerccafa282012-01-10 15:07:44 -0800468
Tejun Heo9fc3a432015-05-22 18:23:30 -0400469 *pbackground = gdtc.bg_thresh;
470 *pdirty = gdtc.thresh;
Johannes Weinerccafa282012-01-10 15:07:44 -0800471}
472
Johannes Weinera756cf52012-01-10 15:07:49 -0800473/**
Mel Gorman281e3722016-07-28 15:46:11 -0700474 * node_dirty_limit - maximum number of dirty pages allowed in a node
475 * @pgdat: the node
Johannes Weinera756cf52012-01-10 15:07:49 -0800476 *
Mel Gorman281e3722016-07-28 15:46:11 -0700477 * Returns the maximum number of dirty pages allowed in a node, based
478 * on the node's dirtyable memory.
Johannes Weinera756cf52012-01-10 15:07:49 -0800479 */
Mel Gorman281e3722016-07-28 15:46:11 -0700480static unsigned long node_dirty_limit(struct pglist_data *pgdat)
Johannes Weinera756cf52012-01-10 15:07:49 -0800481{
Mel Gorman281e3722016-07-28 15:46:11 -0700482 unsigned long node_memory = node_dirtyable_memory(pgdat);
Johannes Weinera756cf52012-01-10 15:07:49 -0800483 struct task_struct *tsk = current;
484 unsigned long dirty;
485
486 if (vm_dirty_bytes)
487 dirty = DIV_ROUND_UP(vm_dirty_bytes, PAGE_SIZE) *
Mel Gorman281e3722016-07-28 15:46:11 -0700488 node_memory / global_dirtyable_memory();
Johannes Weinera756cf52012-01-10 15:07:49 -0800489 else
Mel Gorman281e3722016-07-28 15:46:11 -0700490 dirty = vm_dirty_ratio * node_memory / 100;
Johannes Weinera756cf52012-01-10 15:07:49 -0800491
492 if (tsk->flags & PF_LESS_THROTTLE || rt_task(tsk))
493 dirty += dirty / 4;
494
495 return dirty;
496}
497
498/**
Mel Gorman281e3722016-07-28 15:46:11 -0700499 * node_dirty_ok - tells whether a node is within its dirty limits
500 * @pgdat: the node to check
Johannes Weinera756cf52012-01-10 15:07:49 -0800501 *
Mel Gorman281e3722016-07-28 15:46:11 -0700502 * Returns %true when the dirty pages in @pgdat are within the node's
Johannes Weinera756cf52012-01-10 15:07:49 -0800503 * dirty limit, %false if the limit is exceeded.
504 */
Mel Gorman281e3722016-07-28 15:46:11 -0700505bool node_dirty_ok(struct pglist_data *pgdat)
Johannes Weinera756cf52012-01-10 15:07:49 -0800506{
Mel Gorman281e3722016-07-28 15:46:11 -0700507 unsigned long limit = node_dirty_limit(pgdat);
508 unsigned long nr_pages = 0;
Johannes Weinera756cf52012-01-10 15:07:49 -0800509
Mel Gorman11fb9982016-07-28 15:46:20 -0700510 nr_pages += node_page_state(pgdat, NR_FILE_DIRTY);
511 nr_pages += node_page_state(pgdat, NR_UNSTABLE_NFS);
512 nr_pages += node_page_state(pgdat, NR_WRITEBACK);
Mel Gorman281e3722016-07-28 15:46:11 -0700513
514 return nr_pages <= limit;
Johannes Weinera756cf52012-01-10 15:07:49 -0800515}
516
David Rientjes2da02992009-01-06 14:39:31 -0800517int dirty_background_ratio_handler(struct ctl_table *table, int write,
Alexey Dobriyan8d65af72009-09-23 15:57:19 -0700518 void __user *buffer, size_t *lenp,
David Rientjes2da02992009-01-06 14:39:31 -0800519 loff_t *ppos)
520{
521 int ret;
522
Alexey Dobriyan8d65af72009-09-23 15:57:19 -0700523 ret = proc_dointvec_minmax(table, write, buffer, lenp, ppos);
David Rientjes2da02992009-01-06 14:39:31 -0800524 if (ret == 0 && write)
525 dirty_background_bytes = 0;
526 return ret;
527}
528
529int dirty_background_bytes_handler(struct ctl_table *table, int write,
Alexey Dobriyan8d65af72009-09-23 15:57:19 -0700530 void __user *buffer, size_t *lenp,
David Rientjes2da02992009-01-06 14:39:31 -0800531 loff_t *ppos)
532{
533 int ret;
534
Alexey Dobriyan8d65af72009-09-23 15:57:19 -0700535 ret = proc_doulongvec_minmax(table, write, buffer, lenp, ppos);
David Rientjes2da02992009-01-06 14:39:31 -0800536 if (ret == 0 && write)
537 dirty_background_ratio = 0;
538 return ret;
539}
540
Peter Zijlstra04fbfdc2007-10-16 23:25:50 -0700541int dirty_ratio_handler(struct ctl_table *table, int write,
Alexey Dobriyan8d65af72009-09-23 15:57:19 -0700542 void __user *buffer, size_t *lenp,
Peter Zijlstra04fbfdc2007-10-16 23:25:50 -0700543 loff_t *ppos)
544{
545 int old_ratio = vm_dirty_ratio;
David Rientjes2da02992009-01-06 14:39:31 -0800546 int ret;
547
Alexey Dobriyan8d65af72009-09-23 15:57:19 -0700548 ret = proc_dointvec_minmax(table, write, buffer, lenp, ppos);
Peter Zijlstra04fbfdc2007-10-16 23:25:50 -0700549 if (ret == 0 && write && vm_dirty_ratio != old_ratio) {
Jan Karaeb608e32012-05-24 18:59:11 +0200550 writeback_set_ratelimit();
David Rientjes2da02992009-01-06 14:39:31 -0800551 vm_dirty_bytes = 0;
552 }
553 return ret;
554}
555
David Rientjes2da02992009-01-06 14:39:31 -0800556int dirty_bytes_handler(struct ctl_table *table, int write,
Alexey Dobriyan8d65af72009-09-23 15:57:19 -0700557 void __user *buffer, size_t *lenp,
David Rientjes2da02992009-01-06 14:39:31 -0800558 loff_t *ppos)
559{
Sven Wegenerfc3501d2009-02-11 13:04:23 -0800560 unsigned long old_bytes = vm_dirty_bytes;
David Rientjes2da02992009-01-06 14:39:31 -0800561 int ret;
562
Alexey Dobriyan8d65af72009-09-23 15:57:19 -0700563 ret = proc_doulongvec_minmax(table, write, buffer, lenp, ppos);
David Rientjes2da02992009-01-06 14:39:31 -0800564 if (ret == 0 && write && vm_dirty_bytes != old_bytes) {
Jan Karaeb608e32012-05-24 18:59:11 +0200565 writeback_set_ratelimit();
David Rientjes2da02992009-01-06 14:39:31 -0800566 vm_dirty_ratio = 0;
Peter Zijlstra04fbfdc2007-10-16 23:25:50 -0700567 }
568 return ret;
569}
570
Jan Karaeb608e32012-05-24 18:59:11 +0200571static unsigned long wp_next_time(unsigned long cur_time)
572{
573 cur_time += VM_COMPLETIONS_PERIOD_LEN;
574 /* 0 has a special meaning... */
575 if (!cur_time)
576 return 1;
577 return cur_time;
578}
579
Tejun Heoc7981432015-05-22 18:23:29 -0400580static void wb_domain_writeout_inc(struct wb_domain *dom,
581 struct fprop_local_percpu *completions,
582 unsigned int max_prop_frac)
Peter Zijlstra04fbfdc2007-10-16 23:25:50 -0700583{
Tejun Heoc7981432015-05-22 18:23:29 -0400584 __fprop_inc_percpu_max(&dom->completions, completions,
585 max_prop_frac);
Jan Karaeb608e32012-05-24 18:59:11 +0200586 /* First event after period switching was turned off? */
Steven Rostedt (VMware)517663e2017-02-24 14:59:24 -0800587 if (unlikely(!dom->period_time)) {
Jan Karaeb608e32012-05-24 18:59:11 +0200588 /*
589 * We can race with other __bdi_writeout_inc calls here but
590 * it does not cause any harm since the resulting time when
591 * timer will fire and what is in writeout_period_time will be
592 * roughly the same.
593 */
Tejun Heo380c27c2015-05-22 18:23:21 -0400594 dom->period_time = wp_next_time(jiffies);
595 mod_timer(&dom->period_timer, dom->period_time);
Jan Karaeb608e32012-05-24 18:59:11 +0200596 }
Peter Zijlstra04fbfdc2007-10-16 23:25:50 -0700597}
598
Tejun Heoc7981432015-05-22 18:23:29 -0400599/*
600 * Increment @wb's writeout completion count and the global writeout
601 * completion count. Called from test_clear_page_writeback().
602 */
603static inline void __wb_writeout_inc(struct bdi_writeback *wb)
604{
Tejun Heo841710a2015-05-22 18:23:33 -0400605 struct wb_domain *cgdom;
606
Nikolay Borisov3e8f3992017-07-12 14:37:51 -0700607 inc_wb_stat(wb, WB_WRITTEN);
Tejun Heoc7981432015-05-22 18:23:29 -0400608 wb_domain_writeout_inc(&global_wb_domain, &wb->completions,
609 wb->bdi->max_prop_frac);
Tejun Heo841710a2015-05-22 18:23:33 -0400610
611 cgdom = mem_cgroup_wb_domain(wb);
612 if (cgdom)
613 wb_domain_writeout_inc(cgdom, wb_memcg_completions(wb),
614 wb->bdi->max_prop_frac);
Tejun Heoc7981432015-05-22 18:23:29 -0400615}
616
Tejun Heo93f78d82015-05-22 17:13:27 -0400617void wb_writeout_inc(struct bdi_writeback *wb)
Miklos Szeredidd5656e2008-04-30 00:54:37 -0700618{
619 unsigned long flags;
620
621 local_irq_save(flags);
Tejun Heo93f78d82015-05-22 17:13:27 -0400622 __wb_writeout_inc(wb);
Miklos Szeredidd5656e2008-04-30 00:54:37 -0700623 local_irq_restore(flags);
624}
Tejun Heo93f78d82015-05-22 17:13:27 -0400625EXPORT_SYMBOL_GPL(wb_writeout_inc);
Peter Zijlstra04fbfdc2007-10-16 23:25:50 -0700626
Peter Zijlstra04fbfdc2007-10-16 23:25:50 -0700627/*
Jan Karaeb608e32012-05-24 18:59:11 +0200628 * On idle system, we can be called long after we scheduled because we use
629 * deferred timers so count with missed periods.
630 */
631static void writeout_period(unsigned long t)
632{
Tejun Heo380c27c2015-05-22 18:23:21 -0400633 struct wb_domain *dom = (void *)t;
634 int miss_periods = (jiffies - dom->period_time) /
Jan Karaeb608e32012-05-24 18:59:11 +0200635 VM_COMPLETIONS_PERIOD_LEN;
636
Tejun Heo380c27c2015-05-22 18:23:21 -0400637 if (fprop_new_period(&dom->completions, miss_periods + 1)) {
638 dom->period_time = wp_next_time(dom->period_time +
Jan Karaeb608e32012-05-24 18:59:11 +0200639 miss_periods * VM_COMPLETIONS_PERIOD_LEN);
Tejun Heo380c27c2015-05-22 18:23:21 -0400640 mod_timer(&dom->period_timer, dom->period_time);
Jan Karaeb608e32012-05-24 18:59:11 +0200641 } else {
642 /*
643 * Aging has zeroed all fractions. Stop wasting CPU on period
644 * updates.
645 */
Tejun Heo380c27c2015-05-22 18:23:21 -0400646 dom->period_time = 0;
Jan Karaeb608e32012-05-24 18:59:11 +0200647 }
648}
649
Tejun Heo380c27c2015-05-22 18:23:21 -0400650int wb_domain_init(struct wb_domain *dom, gfp_t gfp)
651{
652 memset(dom, 0, sizeof(*dom));
Tejun Heodcc25ae2015-05-22 18:23:22 -0400653
654 spin_lock_init(&dom->lock);
655
Geliang Tang0a372d02017-05-03 14:52:19 -0700656 setup_deferrable_timer(&dom->period_timer, writeout_period,
657 (unsigned long)dom);
Tejun Heodcc25ae2015-05-22 18:23:22 -0400658
659 dom->dirty_limit_tstamp = jiffies;
660
Tejun Heo380c27c2015-05-22 18:23:21 -0400661 return fprop_global_init(&dom->completions, gfp);
662}
663
Tejun Heo841710a2015-05-22 18:23:33 -0400664#ifdef CONFIG_CGROUP_WRITEBACK
665void wb_domain_exit(struct wb_domain *dom)
666{
667 del_timer_sync(&dom->period_timer);
668 fprop_global_destroy(&dom->completions);
669}
670#endif
671
Jan Karaeb608e32012-05-24 18:59:11 +0200672/*
Johannes Weinerd08c4292011-10-31 17:07:05 -0700673 * bdi_min_ratio keeps the sum of the minimum dirty shares of all
674 * registered backing devices, which, for obvious reasons, can not
675 * exceed 100%.
Peter Zijlstra189d3c42008-04-30 00:54:35 -0700676 */
Peter Zijlstra189d3c42008-04-30 00:54:35 -0700677static unsigned int bdi_min_ratio;
678
679int bdi_set_min_ratio(struct backing_dev_info *bdi, unsigned int min_ratio)
680{
681 int ret = 0;
Peter Zijlstra189d3c42008-04-30 00:54:35 -0700682
Jens Axboecfc4ba52009-09-14 13:12:40 +0200683 spin_lock_bh(&bdi_lock);
Peter Zijlstraa42dde02008-04-30 00:54:36 -0700684 if (min_ratio > bdi->max_ratio) {
Peter Zijlstra189d3c42008-04-30 00:54:35 -0700685 ret = -EINVAL;
Peter Zijlstraa42dde02008-04-30 00:54:36 -0700686 } else {
687 min_ratio -= bdi->min_ratio;
688 if (bdi_min_ratio + min_ratio < 100) {
689 bdi_min_ratio += min_ratio;
690 bdi->min_ratio += min_ratio;
691 } else {
692 ret = -EINVAL;
693 }
694 }
Jens Axboecfc4ba52009-09-14 13:12:40 +0200695 spin_unlock_bh(&bdi_lock);
Peter Zijlstra189d3c42008-04-30 00:54:35 -0700696
697 return ret;
698}
699
Peter Zijlstraa42dde02008-04-30 00:54:36 -0700700int bdi_set_max_ratio(struct backing_dev_info *bdi, unsigned max_ratio)
701{
Peter Zijlstraa42dde02008-04-30 00:54:36 -0700702 int ret = 0;
703
704 if (max_ratio > 100)
705 return -EINVAL;
706
Jens Axboecfc4ba52009-09-14 13:12:40 +0200707 spin_lock_bh(&bdi_lock);
Peter Zijlstraa42dde02008-04-30 00:54:36 -0700708 if (bdi->min_ratio > max_ratio) {
709 ret = -EINVAL;
710 } else {
711 bdi->max_ratio = max_ratio;
Jan Karaeb608e32012-05-24 18:59:11 +0200712 bdi->max_prop_frac = (FPROP_FRAC_BASE * max_ratio) / 100;
Peter Zijlstraa42dde02008-04-30 00:54:36 -0700713 }
Jens Axboecfc4ba52009-09-14 13:12:40 +0200714 spin_unlock_bh(&bdi_lock);
Peter Zijlstraa42dde02008-04-30 00:54:36 -0700715
716 return ret;
717}
718EXPORT_SYMBOL(bdi_set_max_ratio);
719
Wu Fengguang6c14ae12011-03-02 16:04:18 -0600720static unsigned long dirty_freerun_ceiling(unsigned long thresh,
721 unsigned long bg_thresh)
722{
723 return (thresh + bg_thresh) / 2;
724}
725
Tejun Heoc7981432015-05-22 18:23:29 -0400726static unsigned long hard_dirty_limit(struct wb_domain *dom,
727 unsigned long thresh)
Wu Fengguangffd1f602011-06-19 22:18:42 -0600728{
Tejun Heodcc25ae2015-05-22 18:23:22 -0400729 return max(thresh, dom->dirty_limit);
Wu Fengguangffd1f602011-06-19 22:18:42 -0600730}
731
Tejun Heoc5edf9c2015-09-29 13:04:26 -0400732/*
733 * Memory which can be further allocated to a memcg domain is capped by
734 * system-wide clean memory excluding the amount being used in the domain.
735 */
736static void mdtc_calc_avail(struct dirty_throttle_control *mdtc,
737 unsigned long filepages, unsigned long headroom)
Tejun Heoc2aa7232015-05-22 18:23:35 -0400738{
739 struct dirty_throttle_control *gdtc = mdtc_gdtc(mdtc);
Tejun Heoc5edf9c2015-09-29 13:04:26 -0400740 unsigned long clean = filepages - min(filepages, mdtc->dirty);
741 unsigned long global_clean = gdtc->avail - min(gdtc->avail, gdtc->dirty);
742 unsigned long other_clean = global_clean - min(global_clean, clean);
Tejun Heoc2aa7232015-05-22 18:23:35 -0400743
Tejun Heoc5edf9c2015-09-29 13:04:26 -0400744 mdtc->avail = filepages + min(headroom, other_clean);
Christoph Lameter1b424462007-05-06 14:48:59 -0700745}
746
Wu Fengguang6f718652011-03-02 17:14:34 -0600747/**
Tejun Heob1cbc6d2015-05-22 18:23:25 -0400748 * __wb_calc_thresh - @wb's share of dirty throttling threshold
749 * @dtc: dirty_throttle_context of interest
Wu Fengguang1babe182010-08-11 14:17:40 -0700750 *
Tejun Heoa88a3412015-05-22 17:13:28 -0400751 * Returns @wb's dirty limit in pages. The term "dirty" in the context of
Wu Fengguang6f718652011-03-02 17:14:34 -0600752 * dirty balancing includes all PG_dirty, PG_writeback and NFS unstable pages.
Wu Fengguangaed21ad2011-11-23 11:44:41 -0600753 *
754 * Note that balance_dirty_pages() will only seriously take it as a hard limit
755 * when sleeping max_pause per page is not enough to keep the dirty pages under
756 * control. For example, when the device is completely stalled due to some error
757 * conditions, or when there are 1000 dd tasks writing to a slow 10MB/s USB key.
758 * In the other normal situations, it acts more gently by throttling the tasks
Tejun Heoa88a3412015-05-22 17:13:28 -0400759 * more (rather than completely block them) when the wb dirty pages go high.
Wu Fengguang6f718652011-03-02 17:14:34 -0600760 *
761 * It allocates high/low dirty limits to fast/slow devices, in order to prevent
Wu Fengguang1babe182010-08-11 14:17:40 -0700762 * - starving fast devices
763 * - piling up dirty pages (that will take long time to sync) on slow devices
764 *
Tejun Heoa88a3412015-05-22 17:13:28 -0400765 * The wb's share of dirty limit will be adapting to its throughput and
Wu Fengguang1babe182010-08-11 14:17:40 -0700766 * bounded by the bdi->min_ratio and/or bdi->max_ratio parameters, if set.
767 */
Tejun Heob1cbc6d2015-05-22 18:23:25 -0400768static unsigned long __wb_calc_thresh(struct dirty_throttle_control *dtc)
Wu Fengguang16c40422010-08-11 14:17:39 -0700769{
Tejun Heoe9f07df2015-05-22 18:23:28 -0400770 struct wb_domain *dom = dtc_dom(dtc);
Tejun Heob1cbc6d2015-05-22 18:23:25 -0400771 unsigned long thresh = dtc->thresh;
Tejun Heo0d960a32015-05-22 18:23:19 -0400772 u64 wb_thresh;
Wu Fengguang16c40422010-08-11 14:17:39 -0700773 long numerator, denominator;
Tejun Heo693108a2015-05-22 17:13:49 -0400774 unsigned long wb_min_ratio, wb_max_ratio;
Peter Zijlstra04fbfdc2007-10-16 23:25:50 -0700775
Wu Fengguang16c40422010-08-11 14:17:39 -0700776 /*
Tejun Heo0d960a32015-05-22 18:23:19 -0400777 * Calculate this BDI's share of the thresh ratio.
Wu Fengguang16c40422010-08-11 14:17:39 -0700778 */
Tejun Heoe9770b32015-05-22 18:23:27 -0400779 fprop_fraction_percpu(&dom->completions, dtc->wb_completions,
Tejun Heo380c27c2015-05-22 18:23:21 -0400780 &numerator, &denominator);
Peter Zijlstra04fbfdc2007-10-16 23:25:50 -0700781
Tejun Heo0d960a32015-05-22 18:23:19 -0400782 wb_thresh = (thresh * (100 - bdi_min_ratio)) / 100;
783 wb_thresh *= numerator;
784 do_div(wb_thresh, denominator);
Peter Zijlstra04fbfdc2007-10-16 23:25:50 -0700785
Tejun Heob1cbc6d2015-05-22 18:23:25 -0400786 wb_min_max_ratio(dtc->wb, &wb_min_ratio, &wb_max_ratio);
Wu Fengguang16c40422010-08-11 14:17:39 -0700787
Tejun Heo0d960a32015-05-22 18:23:19 -0400788 wb_thresh += (thresh * wb_min_ratio) / 100;
789 if (wb_thresh > (thresh * wb_max_ratio) / 100)
790 wb_thresh = thresh * wb_max_ratio / 100;
Wu Fengguang16c40422010-08-11 14:17:39 -0700791
Tejun Heo0d960a32015-05-22 18:23:19 -0400792 return wb_thresh;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700793}
794
Tejun Heob1cbc6d2015-05-22 18:23:25 -0400795unsigned long wb_calc_thresh(struct bdi_writeback *wb, unsigned long thresh)
796{
797 struct dirty_throttle_control gdtc = { GDTC_INIT(wb),
798 .thresh = thresh };
799 return __wb_calc_thresh(&gdtc);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700800}
801
Wu Fengguang6c14ae12011-03-02 16:04:18 -0600802/*
Maxim Patlasov5a537482013-09-11 14:22:46 -0700803 * setpoint - dirty 3
804 * f(dirty) := 1.0 + (----------------)
805 * limit - setpoint
806 *
807 * it's a 3rd order polynomial that subjects to
808 *
809 * (1) f(freerun) = 2.0 => rampup dirty_ratelimit reasonably fast
810 * (2) f(setpoint) = 1.0 => the balance point
811 * (3) f(limit) = 0 => the hard limit
812 * (4) df/dx <= 0 => negative feedback control
813 * (5) the closer to setpoint, the smaller |df/dx| (and the reverse)
814 * => fast response on large errors; small oscillation near setpoint
815 */
Rik van Rield5c9fde2014-05-06 12:50:01 -0700816static long long pos_ratio_polynom(unsigned long setpoint,
Maxim Patlasov5a537482013-09-11 14:22:46 -0700817 unsigned long dirty,
818 unsigned long limit)
819{
820 long long pos_ratio;
821 long x;
822
Rik van Rield5c9fde2014-05-06 12:50:01 -0700823 x = div64_s64(((s64)setpoint - (s64)dirty) << RATELIMIT_CALC_SHIFT,
Tejun Heo464d1382015-04-21 16:49:13 -0400824 (limit - setpoint) | 1);
Maxim Patlasov5a537482013-09-11 14:22:46 -0700825 pos_ratio = x;
826 pos_ratio = pos_ratio * x >> RATELIMIT_CALC_SHIFT;
827 pos_ratio = pos_ratio * x >> RATELIMIT_CALC_SHIFT;
828 pos_ratio += 1 << RATELIMIT_CALC_SHIFT;
829
830 return clamp(pos_ratio, 0LL, 2LL << RATELIMIT_CALC_SHIFT);
831}
832
833/*
Wu Fengguang6c14ae12011-03-02 16:04:18 -0600834 * Dirty position control.
835 *
836 * (o) global/bdi setpoints
837 *
Tejun Heode1fff32015-05-22 17:13:29 -0400838 * We want the dirty pages be balanced around the global/wb setpoints.
Wu Fengguang6c14ae12011-03-02 16:04:18 -0600839 * When the number of dirty pages is higher/lower than the setpoint, the
840 * dirty position control ratio (and hence task dirty ratelimit) will be
841 * decreased/increased to bring the dirty pages back to the setpoint.
842 *
843 * pos_ratio = 1 << RATELIMIT_CALC_SHIFT
844 *
845 * if (dirty < setpoint) scale up pos_ratio
846 * if (dirty > setpoint) scale down pos_ratio
847 *
Tejun Heode1fff32015-05-22 17:13:29 -0400848 * if (wb_dirty < wb_setpoint) scale up pos_ratio
849 * if (wb_dirty > wb_setpoint) scale down pos_ratio
Wu Fengguang6c14ae12011-03-02 16:04:18 -0600850 *
851 * task_ratelimit = dirty_ratelimit * pos_ratio >> RATELIMIT_CALC_SHIFT
852 *
853 * (o) global control line
854 *
855 * ^ pos_ratio
856 * |
857 * | |<===== global dirty control scope ======>|
858 * 2.0 .............*
859 * | .*
860 * | . *
861 * | . *
862 * | . *
863 * | . *
864 * | . *
865 * 1.0 ................................*
866 * | . . *
867 * | . . *
868 * | . . *
869 * | . . *
870 * | . . *
871 * 0 +------------.------------------.----------------------*------------->
872 * freerun^ setpoint^ limit^ dirty pages
873 *
Tejun Heode1fff32015-05-22 17:13:29 -0400874 * (o) wb control line
Wu Fengguang6c14ae12011-03-02 16:04:18 -0600875 *
876 * ^ pos_ratio
877 * |
878 * | *
879 * | *
880 * | *
881 * | *
882 * | * |<=========== span ============>|
883 * 1.0 .......................*
884 * | . *
885 * | . *
886 * | . *
887 * | . *
888 * | . *
889 * | . *
890 * | . *
891 * | . *
892 * | . *
893 * | . *
894 * | . *
895 * 1/4 ...............................................* * * * * * * * * * * *
896 * | . .
897 * | . .
898 * | . .
899 * 0 +----------------------.-------------------------------.------------->
Tejun Heode1fff32015-05-22 17:13:29 -0400900 * wb_setpoint^ x_intercept^
Wu Fengguang6c14ae12011-03-02 16:04:18 -0600901 *
Tejun Heode1fff32015-05-22 17:13:29 -0400902 * The wb control line won't drop below pos_ratio=1/4, so that wb_dirty can
Wu Fengguang6c14ae12011-03-02 16:04:18 -0600903 * be smoothly throttled down to normal if it starts high in situations like
904 * - start writing to a slow SD card and a fast disk at the same time. The SD
Tejun Heode1fff32015-05-22 17:13:29 -0400905 * card's wb_dirty may rush to many times higher than wb_setpoint.
906 * - the wb dirty thresh drops quickly due to change of JBOD workload
Wu Fengguang6c14ae12011-03-02 16:04:18 -0600907 */
Tejun Heodaddfa32015-05-22 18:23:26 -0400908static void wb_position_ratio(struct dirty_throttle_control *dtc)
Wu Fengguang6c14ae12011-03-02 16:04:18 -0600909{
Tejun Heo2bc00ae2015-05-22 18:23:23 -0400910 struct bdi_writeback *wb = dtc->wb;
Tejun Heoa88a3412015-05-22 17:13:28 -0400911 unsigned long write_bw = wb->avg_write_bandwidth;
Tejun Heo2bc00ae2015-05-22 18:23:23 -0400912 unsigned long freerun = dirty_freerun_ceiling(dtc->thresh, dtc->bg_thresh);
Tejun Heoc7981432015-05-22 18:23:29 -0400913 unsigned long limit = hard_dirty_limit(dtc_dom(dtc), dtc->thresh);
Tejun Heo2bc00ae2015-05-22 18:23:23 -0400914 unsigned long wb_thresh = dtc->wb_thresh;
Wu Fengguang6c14ae12011-03-02 16:04:18 -0600915 unsigned long x_intercept;
916 unsigned long setpoint; /* dirty pages' target balance point */
Tejun Heode1fff32015-05-22 17:13:29 -0400917 unsigned long wb_setpoint;
Wu Fengguang6c14ae12011-03-02 16:04:18 -0600918 unsigned long span;
919 long long pos_ratio; /* for scaling up/down the rate limit */
920 long x;
921
Tejun Heodaddfa32015-05-22 18:23:26 -0400922 dtc->pos_ratio = 0;
923
Tejun Heo2bc00ae2015-05-22 18:23:23 -0400924 if (unlikely(dtc->dirty >= limit))
Tejun Heodaddfa32015-05-22 18:23:26 -0400925 return;
Wu Fengguang6c14ae12011-03-02 16:04:18 -0600926
927 /*
928 * global setpoint
929 *
Maxim Patlasov5a537482013-09-11 14:22:46 -0700930 * See comment for pos_ratio_polynom().
Wu Fengguang6c14ae12011-03-02 16:04:18 -0600931 */
932 setpoint = (freerun + limit) / 2;
Tejun Heo2bc00ae2015-05-22 18:23:23 -0400933 pos_ratio = pos_ratio_polynom(setpoint, dtc->dirty, limit);
Maxim Patlasov5a537482013-09-11 14:22:46 -0700934
935 /*
936 * The strictlimit feature is a tool preventing mistrusted filesystems
937 * from growing a large number of dirty pages before throttling. For
Tejun Heode1fff32015-05-22 17:13:29 -0400938 * such filesystems balance_dirty_pages always checks wb counters
939 * against wb limits. Even if global "nr_dirty" is under "freerun".
Maxim Patlasov5a537482013-09-11 14:22:46 -0700940 * This is especially important for fuse which sets bdi->max_ratio to
941 * 1% by default. Without strictlimit feature, fuse writeback may
942 * consume arbitrary amount of RAM because it is accounted in
943 * NR_WRITEBACK_TEMP which is not involved in calculating "nr_dirty".
944 *
Tejun Heoa88a3412015-05-22 17:13:28 -0400945 * Here, in wb_position_ratio(), we calculate pos_ratio based on
Tejun Heode1fff32015-05-22 17:13:29 -0400946 * two values: wb_dirty and wb_thresh. Let's consider an example:
Maxim Patlasov5a537482013-09-11 14:22:46 -0700947 * total amount of RAM is 16GB, bdi->max_ratio is equal to 1%, global
948 * limits are set by default to 10% and 20% (background and throttle).
Tejun Heode1fff32015-05-22 17:13:29 -0400949 * Then wb_thresh is 1% of 20% of 16GB. This amounts to ~8K pages.
Tejun Heo0d960a32015-05-22 18:23:19 -0400950 * wb_calc_thresh(wb, bg_thresh) is about ~4K pages. wb_setpoint is
Tejun Heode1fff32015-05-22 17:13:29 -0400951 * about ~6K pages (as the average of background and throttle wb
Maxim Patlasov5a537482013-09-11 14:22:46 -0700952 * limits). The 3rd order polynomial will provide positive feedback if
Tejun Heode1fff32015-05-22 17:13:29 -0400953 * wb_dirty is under wb_setpoint and vice versa.
Maxim Patlasov5a537482013-09-11 14:22:46 -0700954 *
955 * Note, that we cannot use global counters in these calculations
Tejun Heode1fff32015-05-22 17:13:29 -0400956 * because we want to throttle process writing to a strictlimit wb
Maxim Patlasov5a537482013-09-11 14:22:46 -0700957 * much earlier than global "freerun" is reached (~23MB vs. ~2.3GB
958 * in the example above).
959 */
Tejun Heoa88a3412015-05-22 17:13:28 -0400960 if (unlikely(wb->bdi->capabilities & BDI_CAP_STRICTLIMIT)) {
Tejun Heode1fff32015-05-22 17:13:29 -0400961 long long wb_pos_ratio;
Maxim Patlasov5a537482013-09-11 14:22:46 -0700962
Tejun Heodaddfa32015-05-22 18:23:26 -0400963 if (dtc->wb_dirty < 8) {
964 dtc->pos_ratio = min_t(long long, pos_ratio * 2,
965 2 << RATELIMIT_CALC_SHIFT);
966 return;
967 }
Maxim Patlasov5a537482013-09-11 14:22:46 -0700968
Tejun Heo2bc00ae2015-05-22 18:23:23 -0400969 if (dtc->wb_dirty >= wb_thresh)
Tejun Heodaddfa32015-05-22 18:23:26 -0400970 return;
Maxim Patlasov5a537482013-09-11 14:22:46 -0700971
Tejun Heo970fb012015-05-22 18:23:24 -0400972 wb_setpoint = dirty_freerun_ceiling(wb_thresh,
973 dtc->wb_bg_thresh);
Maxim Patlasov5a537482013-09-11 14:22:46 -0700974
Tejun Heode1fff32015-05-22 17:13:29 -0400975 if (wb_setpoint == 0 || wb_setpoint == wb_thresh)
Tejun Heodaddfa32015-05-22 18:23:26 -0400976 return;
Maxim Patlasov5a537482013-09-11 14:22:46 -0700977
Tejun Heo2bc00ae2015-05-22 18:23:23 -0400978 wb_pos_ratio = pos_ratio_polynom(wb_setpoint, dtc->wb_dirty,
Tejun Heode1fff32015-05-22 17:13:29 -0400979 wb_thresh);
Maxim Patlasov5a537482013-09-11 14:22:46 -0700980
981 /*
Tejun Heode1fff32015-05-22 17:13:29 -0400982 * Typically, for strictlimit case, wb_setpoint << setpoint
983 * and pos_ratio >> wb_pos_ratio. In the other words global
Maxim Patlasov5a537482013-09-11 14:22:46 -0700984 * state ("dirty") is not limiting factor and we have to
Tejun Heode1fff32015-05-22 17:13:29 -0400985 * make decision based on wb counters. But there is an
Maxim Patlasov5a537482013-09-11 14:22:46 -0700986 * important case when global pos_ratio should get precedence:
987 * global limits are exceeded (e.g. due to activities on other
Tejun Heode1fff32015-05-22 17:13:29 -0400988 * wb's) while given strictlimit wb is below limit.
Maxim Patlasov5a537482013-09-11 14:22:46 -0700989 *
Tejun Heode1fff32015-05-22 17:13:29 -0400990 * "pos_ratio * wb_pos_ratio" would work for the case above,
Maxim Patlasov5a537482013-09-11 14:22:46 -0700991 * but it would look too non-natural for the case of all
Tejun Heode1fff32015-05-22 17:13:29 -0400992 * activity in the system coming from a single strictlimit wb
Maxim Patlasov5a537482013-09-11 14:22:46 -0700993 * with bdi->max_ratio == 100%.
994 *
995 * Note that min() below somewhat changes the dynamics of the
996 * control system. Normally, pos_ratio value can be well over 3
Tejun Heode1fff32015-05-22 17:13:29 -0400997 * (when globally we are at freerun and wb is well below wb
Maxim Patlasov5a537482013-09-11 14:22:46 -0700998 * setpoint). Now the maximum pos_ratio in the same situation
999 * is 2. We might want to tweak this if we observe the control
1000 * system is too slow to adapt.
1001 */
Tejun Heodaddfa32015-05-22 18:23:26 -04001002 dtc->pos_ratio = min(pos_ratio, wb_pos_ratio);
1003 return;
Maxim Patlasov5a537482013-09-11 14:22:46 -07001004 }
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001005
1006 /*
1007 * We have computed basic pos_ratio above based on global situation. If
Tejun Heode1fff32015-05-22 17:13:29 -04001008 * the wb is over/under its share of dirty pages, we want to scale
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001009 * pos_ratio further down/up. That is done by the following mechanism.
1010 */
1011
1012 /*
Tejun Heode1fff32015-05-22 17:13:29 -04001013 * wb setpoint
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001014 *
Tejun Heode1fff32015-05-22 17:13:29 -04001015 * f(wb_dirty) := 1.0 + k * (wb_dirty - wb_setpoint)
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001016 *
Tejun Heode1fff32015-05-22 17:13:29 -04001017 * x_intercept - wb_dirty
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001018 * := --------------------------
Tejun Heode1fff32015-05-22 17:13:29 -04001019 * x_intercept - wb_setpoint
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001020 *
Tejun Heode1fff32015-05-22 17:13:29 -04001021 * The main wb control line is a linear function that subjects to
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001022 *
Tejun Heode1fff32015-05-22 17:13:29 -04001023 * (1) f(wb_setpoint) = 1.0
1024 * (2) k = - 1 / (8 * write_bw) (in single wb case)
1025 * or equally: x_intercept = wb_setpoint + 8 * write_bw
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001026 *
Tejun Heode1fff32015-05-22 17:13:29 -04001027 * For single wb case, the dirty pages are observed to fluctuate
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001028 * regularly within range
Tejun Heode1fff32015-05-22 17:13:29 -04001029 * [wb_setpoint - write_bw/2, wb_setpoint + write_bw/2]
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001030 * for various filesystems, where (2) can yield in a reasonable 12.5%
1031 * fluctuation range for pos_ratio.
1032 *
Tejun Heode1fff32015-05-22 17:13:29 -04001033 * For JBOD case, wb_thresh (not wb_dirty!) could fluctuate up to its
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001034 * own size, so move the slope over accordingly and choose a slope that
Tejun Heode1fff32015-05-22 17:13:29 -04001035 * yields 100% pos_ratio fluctuation on suddenly doubled wb_thresh.
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001036 */
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001037 if (unlikely(wb_thresh > dtc->thresh))
1038 wb_thresh = dtc->thresh;
Wu Fengguangaed21ad2011-11-23 11:44:41 -06001039 /*
Tejun Heode1fff32015-05-22 17:13:29 -04001040 * It's very possible that wb_thresh is close to 0 not because the
Wu Fengguangaed21ad2011-11-23 11:44:41 -06001041 * device is slow, but that it has remained inactive for long time.
1042 * Honour such devices a reasonable good (hopefully IO efficient)
1043 * threshold, so that the occasional writes won't be blocked and active
1044 * writes can rampup the threshold quickly.
1045 */
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001046 wb_thresh = max(wb_thresh, (limit - dtc->dirty) / 8);
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001047 /*
Tejun Heode1fff32015-05-22 17:13:29 -04001048 * scale global setpoint to wb's:
1049 * wb_setpoint = setpoint * wb_thresh / thresh
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001050 */
Linus Torvaldse4bc13a2015-06-25 16:00:17 -07001051 x = div_u64((u64)wb_thresh << 16, dtc->thresh | 1);
Tejun Heode1fff32015-05-22 17:13:29 -04001052 wb_setpoint = setpoint * (u64)x >> 16;
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001053 /*
Tejun Heode1fff32015-05-22 17:13:29 -04001054 * Use span=(8*write_bw) in single wb case as indicated by
1055 * (thresh - wb_thresh ~= 0) and transit to wb_thresh in JBOD case.
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001056 *
Tejun Heode1fff32015-05-22 17:13:29 -04001057 * wb_thresh thresh - wb_thresh
1058 * span = --------- * (8 * write_bw) + ------------------ * wb_thresh
1059 * thresh thresh
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001060 */
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001061 span = (dtc->thresh - wb_thresh + 8 * write_bw) * (u64)x >> 16;
Tejun Heode1fff32015-05-22 17:13:29 -04001062 x_intercept = wb_setpoint + span;
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001063
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001064 if (dtc->wb_dirty < x_intercept - span / 4) {
1065 pos_ratio = div64_u64(pos_ratio * (x_intercept - dtc->wb_dirty),
Linus Torvaldse4bc13a2015-06-25 16:00:17 -07001066 (x_intercept - wb_setpoint) | 1);
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001067 } else
1068 pos_ratio /= 4;
1069
Wu Fengguang8927f662011-08-04 22:16:46 -06001070 /*
Tejun Heode1fff32015-05-22 17:13:29 -04001071 * wb reserve area, safeguard against dirty pool underrun and disk idle
Wu Fengguang8927f662011-08-04 22:16:46 -06001072 * It may push the desired control point of global dirty pages higher
1073 * than setpoint.
1074 */
Tejun Heode1fff32015-05-22 17:13:29 -04001075 x_intercept = wb_thresh / 2;
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001076 if (dtc->wb_dirty < x_intercept) {
1077 if (dtc->wb_dirty > x_intercept / 8)
1078 pos_ratio = div_u64(pos_ratio * x_intercept,
1079 dtc->wb_dirty);
Wu Fengguang50657fc2011-10-11 17:06:33 -06001080 else
Wu Fengguang8927f662011-08-04 22:16:46 -06001081 pos_ratio *= 8;
1082 }
1083
Tejun Heodaddfa32015-05-22 18:23:26 -04001084 dtc->pos_ratio = pos_ratio;
Wu Fengguang6c14ae12011-03-02 16:04:18 -06001085}
1086
Tejun Heoa88a3412015-05-22 17:13:28 -04001087static void wb_update_write_bandwidth(struct bdi_writeback *wb,
1088 unsigned long elapsed,
1089 unsigned long written)
Wu Fengguange98be2d2010-08-29 11:22:30 -06001090{
1091 const unsigned long period = roundup_pow_of_two(3 * HZ);
Tejun Heoa88a3412015-05-22 17:13:28 -04001092 unsigned long avg = wb->avg_write_bandwidth;
1093 unsigned long old = wb->write_bandwidth;
Wu Fengguange98be2d2010-08-29 11:22:30 -06001094 u64 bw;
1095
1096 /*
1097 * bw = written * HZ / elapsed
1098 *
1099 * bw * elapsed + write_bandwidth * (period - elapsed)
1100 * write_bandwidth = ---------------------------------------------------
1101 * period
Tejun Heoc72efb62015-03-23 00:18:48 -04001102 *
1103 * @written may have decreased due to account_page_redirty().
1104 * Avoid underflowing @bw calculation.
Wu Fengguange98be2d2010-08-29 11:22:30 -06001105 */
Tejun Heoa88a3412015-05-22 17:13:28 -04001106 bw = written - min(written, wb->written_stamp);
Wu Fengguange98be2d2010-08-29 11:22:30 -06001107 bw *= HZ;
1108 if (unlikely(elapsed > period)) {
1109 do_div(bw, elapsed);
1110 avg = bw;
1111 goto out;
1112 }
Tejun Heoa88a3412015-05-22 17:13:28 -04001113 bw += (u64)wb->write_bandwidth * (period - elapsed);
Wu Fengguange98be2d2010-08-29 11:22:30 -06001114 bw >>= ilog2(period);
1115
1116 /*
1117 * one more level of smoothing, for filtering out sudden spikes
1118 */
1119 if (avg > old && old >= (unsigned long)bw)
1120 avg -= (avg - old) >> 3;
1121
1122 if (avg < old && old <= (unsigned long)bw)
1123 avg += (old - avg) >> 3;
1124
1125out:
Tejun Heo95a46c62015-05-22 17:13:47 -04001126 /* keep avg > 0 to guarantee that tot > 0 if there are dirty wbs */
1127 avg = max(avg, 1LU);
1128 if (wb_has_dirty_io(wb)) {
1129 long delta = avg - wb->avg_write_bandwidth;
1130 WARN_ON_ONCE(atomic_long_add_return(delta,
1131 &wb->bdi->tot_write_bandwidth) <= 0);
1132 }
Tejun Heoa88a3412015-05-22 17:13:28 -04001133 wb->write_bandwidth = bw;
1134 wb->avg_write_bandwidth = avg;
Wu Fengguange98be2d2010-08-29 11:22:30 -06001135}
1136
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001137static void update_dirty_limit(struct dirty_throttle_control *dtc)
Wu Fengguangc42843f2011-03-02 15:54:09 -06001138{
Tejun Heoe9f07df2015-05-22 18:23:28 -04001139 struct wb_domain *dom = dtc_dom(dtc);
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001140 unsigned long thresh = dtc->thresh;
Tejun Heodcc25ae2015-05-22 18:23:22 -04001141 unsigned long limit = dom->dirty_limit;
Wu Fengguangc42843f2011-03-02 15:54:09 -06001142
1143 /*
1144 * Follow up in one step.
1145 */
1146 if (limit < thresh) {
1147 limit = thresh;
1148 goto update;
1149 }
1150
1151 /*
1152 * Follow down slowly. Use the higher one as the target, because thresh
1153 * may drop below dirty. This is exactly the reason to introduce
Tejun Heodcc25ae2015-05-22 18:23:22 -04001154 * dom->dirty_limit which is guaranteed to lie above the dirty pages.
Wu Fengguangc42843f2011-03-02 15:54:09 -06001155 */
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001156 thresh = max(thresh, dtc->dirty);
Wu Fengguangc42843f2011-03-02 15:54:09 -06001157 if (limit > thresh) {
1158 limit -= (limit - thresh) >> 5;
1159 goto update;
1160 }
1161 return;
1162update:
Tejun Heodcc25ae2015-05-22 18:23:22 -04001163 dom->dirty_limit = limit;
Wu Fengguangc42843f2011-03-02 15:54:09 -06001164}
1165
Tejun Heoe9f07df2015-05-22 18:23:28 -04001166static void domain_update_bandwidth(struct dirty_throttle_control *dtc,
Wu Fengguangc42843f2011-03-02 15:54:09 -06001167 unsigned long now)
1168{
Tejun Heoe9f07df2015-05-22 18:23:28 -04001169 struct wb_domain *dom = dtc_dom(dtc);
Wu Fengguangc42843f2011-03-02 15:54:09 -06001170
1171 /*
1172 * check locklessly first to optimize away locking for the most time
1173 */
Tejun Heodcc25ae2015-05-22 18:23:22 -04001174 if (time_before(now, dom->dirty_limit_tstamp + BANDWIDTH_INTERVAL))
Wu Fengguangc42843f2011-03-02 15:54:09 -06001175 return;
1176
Tejun Heodcc25ae2015-05-22 18:23:22 -04001177 spin_lock(&dom->lock);
1178 if (time_after_eq(now, dom->dirty_limit_tstamp + BANDWIDTH_INTERVAL)) {
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001179 update_dirty_limit(dtc);
Tejun Heodcc25ae2015-05-22 18:23:22 -04001180 dom->dirty_limit_tstamp = now;
Wu Fengguangc42843f2011-03-02 15:54:09 -06001181 }
Tejun Heodcc25ae2015-05-22 18:23:22 -04001182 spin_unlock(&dom->lock);
Wu Fengguangc42843f2011-03-02 15:54:09 -06001183}
1184
Wu Fengguangbe3ffa22011-06-12 10:51:31 -06001185/*
Tejun Heode1fff32015-05-22 17:13:29 -04001186 * Maintain wb->dirty_ratelimit, the base dirty throttle rate.
Wu Fengguangbe3ffa22011-06-12 10:51:31 -06001187 *
Tejun Heode1fff32015-05-22 17:13:29 -04001188 * Normal wb tasks will be curbed at or below it in long term.
Wu Fengguangbe3ffa22011-06-12 10:51:31 -06001189 * Obviously it should be around (write_bw / N) when there are N dd tasks.
1190 */
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001191static void wb_update_dirty_ratelimit(struct dirty_throttle_control *dtc,
Tejun Heoa88a3412015-05-22 17:13:28 -04001192 unsigned long dirtied,
1193 unsigned long elapsed)
Wu Fengguangbe3ffa22011-06-12 10:51:31 -06001194{
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001195 struct bdi_writeback *wb = dtc->wb;
1196 unsigned long dirty = dtc->dirty;
1197 unsigned long freerun = dirty_freerun_ceiling(dtc->thresh, dtc->bg_thresh);
Tejun Heoc7981432015-05-22 18:23:29 -04001198 unsigned long limit = hard_dirty_limit(dtc_dom(dtc), dtc->thresh);
Wu Fengguang73811312011-08-26 15:53:24 -06001199 unsigned long setpoint = (freerun + limit) / 2;
Tejun Heoa88a3412015-05-22 17:13:28 -04001200 unsigned long write_bw = wb->avg_write_bandwidth;
1201 unsigned long dirty_ratelimit = wb->dirty_ratelimit;
Wu Fengguangbe3ffa22011-06-12 10:51:31 -06001202 unsigned long dirty_rate;
1203 unsigned long task_ratelimit;
1204 unsigned long balanced_dirty_ratelimit;
Wu Fengguang73811312011-08-26 15:53:24 -06001205 unsigned long step;
1206 unsigned long x;
Andrey Ryabinind59b1082016-03-15 14:55:27 -07001207 unsigned long shift;
Wu Fengguangbe3ffa22011-06-12 10:51:31 -06001208
1209 /*
1210 * The dirty rate will match the writeout rate in long term, except
1211 * when dirty pages are truncated by userspace or re-dirtied by FS.
1212 */
Tejun Heoa88a3412015-05-22 17:13:28 -04001213 dirty_rate = (dirtied - wb->dirtied_stamp) * HZ / elapsed;
Wu Fengguangbe3ffa22011-06-12 10:51:31 -06001214
Wu Fengguangbe3ffa22011-06-12 10:51:31 -06001215 /*
1216 * task_ratelimit reflects each dd's dirty rate for the past 200ms.
1217 */
1218 task_ratelimit = (u64)dirty_ratelimit *
Tejun Heodaddfa32015-05-22 18:23:26 -04001219 dtc->pos_ratio >> RATELIMIT_CALC_SHIFT;
Wu Fengguangbe3ffa22011-06-12 10:51:31 -06001220 task_ratelimit++; /* it helps rampup dirty_ratelimit from tiny values */
1221
1222 /*
1223 * A linear estimation of the "balanced" throttle rate. The theory is,
Tejun Heode1fff32015-05-22 17:13:29 -04001224 * if there are N dd tasks, each throttled at task_ratelimit, the wb's
Wu Fengguangbe3ffa22011-06-12 10:51:31 -06001225 * dirty_rate will be measured to be (N * task_ratelimit). So the below
1226 * formula will yield the balanced rate limit (write_bw / N).
1227 *
1228 * Note that the expanded form is not a pure rate feedback:
1229 * rate_(i+1) = rate_(i) * (write_bw / dirty_rate) (1)
1230 * but also takes pos_ratio into account:
1231 * rate_(i+1) = rate_(i) * (write_bw / dirty_rate) * pos_ratio (2)
1232 *
1233 * (1) is not realistic because pos_ratio also takes part in balancing
1234 * the dirty rate. Consider the state
1235 * pos_ratio = 0.5 (3)
1236 * rate = 2 * (write_bw / N) (4)
1237 * If (1) is used, it will stuck in that state! Because each dd will
1238 * be throttled at
1239 * task_ratelimit = pos_ratio * rate = (write_bw / N) (5)
1240 * yielding
1241 * dirty_rate = N * task_ratelimit = write_bw (6)
1242 * put (6) into (1) we get
1243 * rate_(i+1) = rate_(i) (7)
1244 *
1245 * So we end up using (2) to always keep
1246 * rate_(i+1) ~= (write_bw / N) (8)
1247 * regardless of the value of pos_ratio. As long as (8) is satisfied,
1248 * pos_ratio is able to drive itself to 1.0, which is not only where
1249 * the dirty count meet the setpoint, but also where the slope of
1250 * pos_ratio is most flat and hence task_ratelimit is least fluctuated.
1251 */
1252 balanced_dirty_ratelimit = div_u64((u64)task_ratelimit * write_bw,
1253 dirty_rate | 1);
Wu Fengguangbdaac492011-08-03 14:30:36 -06001254 /*
1255 * balanced_dirty_ratelimit ~= (write_bw / N) <= write_bw
1256 */
1257 if (unlikely(balanced_dirty_ratelimit > write_bw))
1258 balanced_dirty_ratelimit = write_bw;
Wu Fengguangbe3ffa22011-06-12 10:51:31 -06001259
Wu Fengguang73811312011-08-26 15:53:24 -06001260 /*
1261 * We could safely do this and return immediately:
1262 *
Tejun Heode1fff32015-05-22 17:13:29 -04001263 * wb->dirty_ratelimit = balanced_dirty_ratelimit;
Wu Fengguang73811312011-08-26 15:53:24 -06001264 *
1265 * However to get a more stable dirty_ratelimit, the below elaborated
Wanpeng Li331cbde2012-06-09 11:10:55 +08001266 * code makes use of task_ratelimit to filter out singular points and
Wu Fengguang73811312011-08-26 15:53:24 -06001267 * limit the step size.
1268 *
1269 * The below code essentially only uses the relative value of
1270 *
1271 * task_ratelimit - dirty_ratelimit
1272 * = (pos_ratio - 1) * dirty_ratelimit
1273 *
1274 * which reflects the direction and size of dirty position error.
1275 */
1276
1277 /*
1278 * dirty_ratelimit will follow balanced_dirty_ratelimit iff
1279 * task_ratelimit is on the same side of dirty_ratelimit, too.
1280 * For example, when
1281 * - dirty_ratelimit > balanced_dirty_ratelimit
1282 * - dirty_ratelimit > task_ratelimit (dirty pages are above setpoint)
1283 * lowering dirty_ratelimit will help meet both the position and rate
1284 * control targets. Otherwise, don't update dirty_ratelimit if it will
1285 * only help meet the rate target. After all, what the users ultimately
1286 * feel and care are stable dirty rate and small position error.
1287 *
1288 * |task_ratelimit - dirty_ratelimit| is used to limit the step size
Wanpeng Li331cbde2012-06-09 11:10:55 +08001289 * and filter out the singular points of balanced_dirty_ratelimit. Which
Wu Fengguang73811312011-08-26 15:53:24 -06001290 * keeps jumping around randomly and can even leap far away at times
1291 * due to the small 200ms estimation period of dirty_rate (we want to
1292 * keep that period small to reduce time lags).
1293 */
1294 step = 0;
Maxim Patlasov5a537482013-09-11 14:22:46 -07001295
1296 /*
Tejun Heode1fff32015-05-22 17:13:29 -04001297 * For strictlimit case, calculations above were based on wb counters
Tejun Heoa88a3412015-05-22 17:13:28 -04001298 * and limits (starting from pos_ratio = wb_position_ratio() and up to
Maxim Patlasov5a537482013-09-11 14:22:46 -07001299 * balanced_dirty_ratelimit = task_ratelimit * write_bw / dirty_rate).
Tejun Heode1fff32015-05-22 17:13:29 -04001300 * Hence, to calculate "step" properly, we have to use wb_dirty as
1301 * "dirty" and wb_setpoint as "setpoint".
Maxim Patlasov5a537482013-09-11 14:22:46 -07001302 *
Tejun Heode1fff32015-05-22 17:13:29 -04001303 * We rampup dirty_ratelimit forcibly if wb_dirty is low because
1304 * it's possible that wb_thresh is close to zero due to inactivity
Tejun Heo970fb012015-05-22 18:23:24 -04001305 * of backing device.
Maxim Patlasov5a537482013-09-11 14:22:46 -07001306 */
Tejun Heoa88a3412015-05-22 17:13:28 -04001307 if (unlikely(wb->bdi->capabilities & BDI_CAP_STRICTLIMIT)) {
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001308 dirty = dtc->wb_dirty;
1309 if (dtc->wb_dirty < 8)
1310 setpoint = dtc->wb_dirty + 1;
Maxim Patlasov5a537482013-09-11 14:22:46 -07001311 else
Tejun Heo970fb012015-05-22 18:23:24 -04001312 setpoint = (dtc->wb_thresh + dtc->wb_bg_thresh) / 2;
Maxim Patlasov5a537482013-09-11 14:22:46 -07001313 }
1314
Wu Fengguang73811312011-08-26 15:53:24 -06001315 if (dirty < setpoint) {
Tejun Heoa88a3412015-05-22 17:13:28 -04001316 x = min3(wb->balanced_dirty_ratelimit,
Mark Rustad7c809962014-10-09 15:28:15 -07001317 balanced_dirty_ratelimit, task_ratelimit);
Wu Fengguang73811312011-08-26 15:53:24 -06001318 if (dirty_ratelimit < x)
1319 step = x - dirty_ratelimit;
1320 } else {
Tejun Heoa88a3412015-05-22 17:13:28 -04001321 x = max3(wb->balanced_dirty_ratelimit,
Mark Rustad7c809962014-10-09 15:28:15 -07001322 balanced_dirty_ratelimit, task_ratelimit);
Wu Fengguang73811312011-08-26 15:53:24 -06001323 if (dirty_ratelimit > x)
1324 step = dirty_ratelimit - x;
1325 }
1326
1327 /*
1328 * Don't pursue 100% rate matching. It's impossible since the balanced
1329 * rate itself is constantly fluctuating. So decrease the track speed
1330 * when it gets close to the target. Helps eliminate pointless tremors.
1331 */
Andrey Ryabinind59b1082016-03-15 14:55:27 -07001332 shift = dirty_ratelimit / (2 * step + 1);
1333 if (shift < BITS_PER_LONG)
1334 step = DIV_ROUND_UP(step >> shift, 8);
1335 else
1336 step = 0;
Wu Fengguang73811312011-08-26 15:53:24 -06001337
1338 if (dirty_ratelimit < balanced_dirty_ratelimit)
1339 dirty_ratelimit += step;
1340 else
1341 dirty_ratelimit -= step;
1342
Tejun Heoa88a3412015-05-22 17:13:28 -04001343 wb->dirty_ratelimit = max(dirty_ratelimit, 1UL);
1344 wb->balanced_dirty_ratelimit = balanced_dirty_ratelimit;
Wu Fengguangb48c1042011-03-02 17:22:49 -06001345
Tejun Heo5634cc22015-08-18 14:54:56 -07001346 trace_bdi_dirty_ratelimit(wb, dirty_rate, task_ratelimit);
Wu Fengguangbe3ffa22011-06-12 10:51:31 -06001347}
1348
Tejun Heoc2aa7232015-05-22 18:23:35 -04001349static void __wb_update_bandwidth(struct dirty_throttle_control *gdtc,
1350 struct dirty_throttle_control *mdtc,
Tejun Heo8a731792015-05-22 18:23:20 -04001351 unsigned long start_time,
1352 bool update_ratelimit)
Wu Fengguange98be2d2010-08-29 11:22:30 -06001353{
Tejun Heoc2aa7232015-05-22 18:23:35 -04001354 struct bdi_writeback *wb = gdtc->wb;
Wu Fengguange98be2d2010-08-29 11:22:30 -06001355 unsigned long now = jiffies;
Tejun Heoa88a3412015-05-22 17:13:28 -04001356 unsigned long elapsed = now - wb->bw_time_stamp;
Wu Fengguangbe3ffa22011-06-12 10:51:31 -06001357 unsigned long dirtied;
Wu Fengguange98be2d2010-08-29 11:22:30 -06001358 unsigned long written;
1359
Tejun Heo8a731792015-05-22 18:23:20 -04001360 lockdep_assert_held(&wb->list_lock);
1361
Wu Fengguange98be2d2010-08-29 11:22:30 -06001362 /*
1363 * rate-limit, only update once every 200ms.
1364 */
1365 if (elapsed < BANDWIDTH_INTERVAL)
1366 return;
1367
Tejun Heoa88a3412015-05-22 17:13:28 -04001368 dirtied = percpu_counter_read(&wb->stat[WB_DIRTIED]);
1369 written = percpu_counter_read(&wb->stat[WB_WRITTEN]);
Wu Fengguange98be2d2010-08-29 11:22:30 -06001370
1371 /*
1372 * Skip quiet periods when disk bandwidth is under-utilized.
1373 * (at least 1s idle time between two flusher runs)
1374 */
Tejun Heoa88a3412015-05-22 17:13:28 -04001375 if (elapsed > HZ && time_before(wb->bw_time_stamp, start_time))
Wu Fengguange98be2d2010-08-29 11:22:30 -06001376 goto snapshot;
1377
Tejun Heo8a731792015-05-22 18:23:20 -04001378 if (update_ratelimit) {
Tejun Heoc2aa7232015-05-22 18:23:35 -04001379 domain_update_bandwidth(gdtc, now);
1380 wb_update_dirty_ratelimit(gdtc, dirtied, elapsed);
1381
1382 /*
1383 * @mdtc is always NULL if !CGROUP_WRITEBACK but the
1384 * compiler has no way to figure that out. Help it.
1385 */
1386 if (IS_ENABLED(CONFIG_CGROUP_WRITEBACK) && mdtc) {
1387 domain_update_bandwidth(mdtc, now);
1388 wb_update_dirty_ratelimit(mdtc, dirtied, elapsed);
1389 }
Wu Fengguangbe3ffa22011-06-12 10:51:31 -06001390 }
Tejun Heoa88a3412015-05-22 17:13:28 -04001391 wb_update_write_bandwidth(wb, elapsed, written);
Wu Fengguange98be2d2010-08-29 11:22:30 -06001392
1393snapshot:
Tejun Heoa88a3412015-05-22 17:13:28 -04001394 wb->dirtied_stamp = dirtied;
1395 wb->written_stamp = written;
1396 wb->bw_time_stamp = now;
Wu Fengguange98be2d2010-08-29 11:22:30 -06001397}
1398
Tejun Heo8a731792015-05-22 18:23:20 -04001399void wb_update_bandwidth(struct bdi_writeback *wb, unsigned long start_time)
Wu Fengguange98be2d2010-08-29 11:22:30 -06001400{
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001401 struct dirty_throttle_control gdtc = { GDTC_INIT(wb) };
1402
Tejun Heoc2aa7232015-05-22 18:23:35 -04001403 __wb_update_bandwidth(&gdtc, NULL, start_time, false);
Wu Fengguange98be2d2010-08-29 11:22:30 -06001404}
1405
Linus Torvalds1da177e2005-04-16 15:20:36 -07001406/*
Namjae Jeond0e1d662012-12-11 16:00:21 -08001407 * After a task dirtied this many pages, balance_dirty_pages_ratelimited()
Wu Fengguang9d823e82011-06-11 18:10:12 -06001408 * will look to see if it needs to start dirty throttling.
1409 *
1410 * If dirty_poll_interval is too low, big NUMA machines will call the expensive
Michal Hockoc41f0122017-09-06 16:23:36 -07001411 * global_zone_page_state() too often. So scale it near-sqrt to the safety margin
Wu Fengguang9d823e82011-06-11 18:10:12 -06001412 * (the number of pages we may dirty without exceeding the dirty limits).
1413 */
1414static unsigned long dirty_poll_interval(unsigned long dirty,
1415 unsigned long thresh)
1416{
1417 if (thresh > dirty)
1418 return 1UL << (ilog2(thresh - dirty) >> 1);
1419
1420 return 1;
1421}
1422
Tejun Heoa88a3412015-05-22 17:13:28 -04001423static unsigned long wb_max_pause(struct bdi_writeback *wb,
Tejun Heode1fff32015-05-22 17:13:29 -04001424 unsigned long wb_dirty)
Wu Fengguangc8462cc2011-06-11 19:21:43 -06001425{
Tejun Heoa88a3412015-05-22 17:13:28 -04001426 unsigned long bw = wb->avg_write_bandwidth;
Fengguang Wue3b6c652013-10-16 13:47:03 -07001427 unsigned long t;
Wu Fengguangc8462cc2011-06-11 19:21:43 -06001428
1429 /*
1430 * Limit pause time for small memory systems. If sleeping for too long
1431 * time, a small pool of dirty/writeback pages may go empty and disk go
1432 * idle.
1433 *
1434 * 8 serves as the safety ratio.
1435 */
Tejun Heode1fff32015-05-22 17:13:29 -04001436 t = wb_dirty / (1 + bw / roundup_pow_of_two(1 + HZ / 8));
Wu Fengguang7ccb9ad2011-11-30 11:08:55 -06001437 t++;
1438
Fengguang Wue3b6c652013-10-16 13:47:03 -07001439 return min_t(unsigned long, t, MAX_PAUSE);
Wu Fengguang7ccb9ad2011-11-30 11:08:55 -06001440}
1441
Tejun Heoa88a3412015-05-22 17:13:28 -04001442static long wb_min_pause(struct bdi_writeback *wb,
1443 long max_pause,
1444 unsigned long task_ratelimit,
1445 unsigned long dirty_ratelimit,
1446 int *nr_dirtied_pause)
Wu Fengguang7ccb9ad2011-11-30 11:08:55 -06001447{
Tejun Heoa88a3412015-05-22 17:13:28 -04001448 long hi = ilog2(wb->avg_write_bandwidth);
1449 long lo = ilog2(wb->dirty_ratelimit);
Wu Fengguang7ccb9ad2011-11-30 11:08:55 -06001450 long t; /* target pause */
1451 long pause; /* estimated next pause */
1452 int pages; /* target nr_dirtied_pause */
1453
1454 /* target for 10ms pause on 1-dd case */
1455 t = max(1, HZ / 100);
Wu Fengguangc8462cc2011-06-11 19:21:43 -06001456
1457 /*
Wu Fengguang7ccb9ad2011-11-30 11:08:55 -06001458 * Scale up pause time for concurrent dirtiers in order to reduce CPU
1459 * overheads.
1460 *
1461 * (N * 10ms) on 2^N concurrent tasks.
Wu Fengguangc8462cc2011-06-11 19:21:43 -06001462 */
Wu Fengguang7ccb9ad2011-11-30 11:08:55 -06001463 if (hi > lo)
1464 t += (hi - lo) * (10 * HZ) / 1024;
1465
1466 /*
1467 * This is a bit convoluted. We try to base the next nr_dirtied_pause
1468 * on the much more stable dirty_ratelimit. However the next pause time
1469 * will be computed based on task_ratelimit and the two rate limits may
1470 * depart considerably at some time. Especially if task_ratelimit goes
1471 * below dirty_ratelimit/2 and the target pause is max_pause, the next
1472 * pause time will be max_pause*2 _trimmed down_ to max_pause. As a
1473 * result task_ratelimit won't be executed faithfully, which could
1474 * eventually bring down dirty_ratelimit.
1475 *
1476 * We apply two rules to fix it up:
1477 * 1) try to estimate the next pause time and if necessary, use a lower
1478 * nr_dirtied_pause so as not to exceed max_pause. When this happens,
1479 * nr_dirtied_pause will be "dancing" with task_ratelimit.
1480 * 2) limit the target pause time to max_pause/2, so that the normal
1481 * small fluctuations of task_ratelimit won't trigger rule (1) and
1482 * nr_dirtied_pause will remain as stable as dirty_ratelimit.
1483 */
1484 t = min(t, 1 + max_pause / 2);
1485 pages = dirty_ratelimit * t / roundup_pow_of_two(HZ);
1486
Wu Fengguang5b9b3572011-12-06 13:17:17 -06001487 /*
1488 * Tiny nr_dirtied_pause is found to hurt I/O performance in the test
1489 * case fio-mmap-randwrite-64k, which does 16*{sync read, async write}.
1490 * When the 16 consecutive reads are often interrupted by some dirty
1491 * throttling pause during the async writes, cfq will go into idles
1492 * (deadline is fine). So push nr_dirtied_pause as high as possible
1493 * until reaches DIRTY_POLL_THRESH=32 pages.
1494 */
1495 if (pages < DIRTY_POLL_THRESH) {
1496 t = max_pause;
1497 pages = dirty_ratelimit * t / roundup_pow_of_two(HZ);
1498 if (pages > DIRTY_POLL_THRESH) {
1499 pages = DIRTY_POLL_THRESH;
1500 t = HZ * DIRTY_POLL_THRESH / dirty_ratelimit;
1501 }
1502 }
1503
Wu Fengguang7ccb9ad2011-11-30 11:08:55 -06001504 pause = HZ * pages / (task_ratelimit + 1);
1505 if (pause > max_pause) {
1506 t = max_pause;
1507 pages = task_ratelimit * t / roundup_pow_of_two(HZ);
1508 }
1509
1510 *nr_dirtied_pause = pages;
1511 /*
1512 * The minimal pause time will normally be half the target pause time.
1513 */
Wu Fengguang5b9b3572011-12-06 13:17:17 -06001514 return pages >= DIRTY_POLL_THRESH ? 1 + t / 2 : t;
Wu Fengguangc8462cc2011-06-11 19:21:43 -06001515}
1516
Tejun Heo970fb012015-05-22 18:23:24 -04001517static inline void wb_dirty_limits(struct dirty_throttle_control *dtc)
Maxim Patlasov5a537482013-09-11 14:22:46 -07001518{
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001519 struct bdi_writeback *wb = dtc->wb;
Tejun Heo93f78d82015-05-22 17:13:27 -04001520 unsigned long wb_reclaimable;
Maxim Patlasov5a537482013-09-11 14:22:46 -07001521
1522 /*
Tejun Heode1fff32015-05-22 17:13:29 -04001523 * wb_thresh is not treated as some limiting factor as
Maxim Patlasov5a537482013-09-11 14:22:46 -07001524 * dirty_thresh, due to reasons
Tejun Heode1fff32015-05-22 17:13:29 -04001525 * - in JBOD setup, wb_thresh can fluctuate a lot
Maxim Patlasov5a537482013-09-11 14:22:46 -07001526 * - in a system with HDD and USB key, the USB key may somehow
Tejun Heode1fff32015-05-22 17:13:29 -04001527 * go into state (wb_dirty >> wb_thresh) either because
1528 * wb_dirty starts high, or because wb_thresh drops low.
Maxim Patlasov5a537482013-09-11 14:22:46 -07001529 * In this case we don't want to hard throttle the USB key
Tejun Heode1fff32015-05-22 17:13:29 -04001530 * dirtiers for 100 seconds until wb_dirty drops under
1531 * wb_thresh. Instead the auxiliary wb control line in
Tejun Heoa88a3412015-05-22 17:13:28 -04001532 * wb_position_ratio() will let the dirtier task progress
Tejun Heode1fff32015-05-22 17:13:29 -04001533 * at some rate <= (write_bw / 2) for bringing down wb_dirty.
Maxim Patlasov5a537482013-09-11 14:22:46 -07001534 */
Tejun Heob1cbc6d2015-05-22 18:23:25 -04001535 dtc->wb_thresh = __wb_calc_thresh(dtc);
Tejun Heo970fb012015-05-22 18:23:24 -04001536 dtc->wb_bg_thresh = dtc->thresh ?
1537 div_u64((u64)dtc->wb_thresh * dtc->bg_thresh, dtc->thresh) : 0;
Maxim Patlasov5a537482013-09-11 14:22:46 -07001538
1539 /*
1540 * In order to avoid the stacked BDI deadlock we need
1541 * to ensure we accurately count the 'dirty' pages when
1542 * the threshold is low.
1543 *
1544 * Otherwise it would be possible to get thresh+n pages
1545 * reported dirty, even though there are thresh-m pages
1546 * actually dirty; with m+n sitting in the percpu
1547 * deltas.
1548 */
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001549 if (dtc->wb_thresh < 2 * wb_stat_error(wb)) {
Tejun Heo93f78d82015-05-22 17:13:27 -04001550 wb_reclaimable = wb_stat_sum(wb, WB_RECLAIMABLE);
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001551 dtc->wb_dirty = wb_reclaimable + wb_stat_sum(wb, WB_WRITEBACK);
Maxim Patlasov5a537482013-09-11 14:22:46 -07001552 } else {
Tejun Heo93f78d82015-05-22 17:13:27 -04001553 wb_reclaimable = wb_stat(wb, WB_RECLAIMABLE);
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001554 dtc->wb_dirty = wb_reclaimable + wb_stat(wb, WB_WRITEBACK);
Maxim Patlasov5a537482013-09-11 14:22:46 -07001555 }
1556}
1557
Wu Fengguang9d823e82011-06-11 18:10:12 -06001558/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07001559 * balance_dirty_pages() must be called by processes which are generating dirty
1560 * data. It looks at the number of dirty pages in the machine and will force
Wu Fengguang143dfe82010-08-27 18:45:12 -06001561 * the caller to wait once crossing the (background_thresh + dirty_thresh) / 2.
Jens Axboe5b0830c2009-09-23 19:37:09 +02001562 * If we're over `background_thresh' then the writeback threads are woken to
1563 * perform some writeout.
Linus Torvalds1da177e2005-04-16 15:20:36 -07001564 */
Tahsin Erdogan4c578dc2017-11-15 17:33:19 -08001565static void balance_dirty_pages(struct bdi_writeback *wb,
Wu Fengguang143dfe82010-08-27 18:45:12 -06001566 unsigned long pages_dirtied)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001567{
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001568 struct dirty_throttle_control gdtc_stor = { GDTC_INIT(wb) };
Tejun Heoc2aa7232015-05-22 18:23:35 -04001569 struct dirty_throttle_control mdtc_stor = { MDTC_INIT(wb, &gdtc_stor) };
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001570 struct dirty_throttle_control * const gdtc = &gdtc_stor;
Tejun Heoc2aa7232015-05-22 18:23:35 -04001571 struct dirty_throttle_control * const mdtc = mdtc_valid(&mdtc_stor) ?
1572 &mdtc_stor : NULL;
1573 struct dirty_throttle_control *sdtc;
Wu Fengguang143dfe82010-08-27 18:45:12 -06001574 unsigned long nr_reclaimable; /* = file_dirty + unstable_nfs */
Wu Fengguang83712352011-06-11 19:25:42 -06001575 long period;
Wu Fengguang7ccb9ad2011-11-30 11:08:55 -06001576 long pause;
1577 long max_pause;
1578 long min_pause;
1579 int nr_dirtied_pause;
Wu Fengguange50e3722010-08-11 14:17:37 -07001580 bool dirty_exceeded = false;
Wu Fengguang143dfe82010-08-27 18:45:12 -06001581 unsigned long task_ratelimit;
Wu Fengguang7ccb9ad2011-11-30 11:08:55 -06001582 unsigned long dirty_ratelimit;
Tejun Heodfb8ae52015-05-22 17:13:40 -04001583 struct backing_dev_info *bdi = wb->bdi;
Maxim Patlasov5a537482013-09-11 14:22:46 -07001584 bool strictlimit = bdi->capabilities & BDI_CAP_STRICTLIMIT;
Wu Fengguange98be2d2010-08-29 11:22:30 -06001585 unsigned long start_time = jiffies;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001586
1587 for (;;) {
Wu Fengguang83712352011-06-11 19:25:42 -06001588 unsigned long now = jiffies;
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001589 unsigned long dirty, thresh, bg_thresh;
Yang Shi50e55bf2015-11-20 15:57:10 -08001590 unsigned long m_dirty = 0; /* stop bogus uninit warnings */
1591 unsigned long m_thresh = 0;
1592 unsigned long m_bg_thresh = 0;
Wu Fengguang83712352011-06-11 19:25:42 -06001593
Wu Fengguang143dfe82010-08-27 18:45:12 -06001594 /*
1595 * Unstable writes are a feature of certain networked
1596 * filesystems (i.e. NFS) in which data may have been
1597 * written to the server's write cache, but has not yet
1598 * been flushed to permanent storage.
1599 */
Mel Gorman11fb9982016-07-28 15:46:20 -07001600 nr_reclaimable = global_node_page_state(NR_FILE_DIRTY) +
1601 global_node_page_state(NR_UNSTABLE_NFS);
Tejun Heo9fc3a432015-05-22 18:23:30 -04001602 gdtc->avail = global_dirtyable_memory();
Mel Gorman11fb9982016-07-28 15:46:20 -07001603 gdtc->dirty = nr_reclaimable + global_node_page_state(NR_WRITEBACK);
Peter Zijlstra5fce25a2007-11-14 16:59:15 -08001604
Tejun Heo9fc3a432015-05-22 18:23:30 -04001605 domain_dirty_limits(gdtc);
Wu Fengguang16c40422010-08-11 14:17:39 -07001606
Maxim Patlasov5a537482013-09-11 14:22:46 -07001607 if (unlikely(strictlimit)) {
Tejun Heo970fb012015-05-22 18:23:24 -04001608 wb_dirty_limits(gdtc);
Maxim Patlasov5a537482013-09-11 14:22:46 -07001609
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001610 dirty = gdtc->wb_dirty;
1611 thresh = gdtc->wb_thresh;
Tejun Heo970fb012015-05-22 18:23:24 -04001612 bg_thresh = gdtc->wb_bg_thresh;
Maxim Patlasov5a537482013-09-11 14:22:46 -07001613 } else {
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001614 dirty = gdtc->dirty;
1615 thresh = gdtc->thresh;
1616 bg_thresh = gdtc->bg_thresh;
Maxim Patlasov5a537482013-09-11 14:22:46 -07001617 }
1618
Tejun Heoc2aa7232015-05-22 18:23:35 -04001619 if (mdtc) {
Tejun Heoc5edf9c2015-09-29 13:04:26 -04001620 unsigned long filepages, headroom, writeback;
Tejun Heoc2aa7232015-05-22 18:23:35 -04001621
1622 /*
1623 * If @wb belongs to !root memcg, repeat the same
1624 * basic calculations for the memcg domain.
1625 */
Tejun Heoc5edf9c2015-09-29 13:04:26 -04001626 mem_cgroup_wb_stats(wb, &filepages, &headroom,
1627 &mdtc->dirty, &writeback);
Tejun Heoc2aa7232015-05-22 18:23:35 -04001628 mdtc->dirty += writeback;
Tejun Heoc5edf9c2015-09-29 13:04:26 -04001629 mdtc_calc_avail(mdtc, filepages, headroom);
Tejun Heoc2aa7232015-05-22 18:23:35 -04001630
1631 domain_dirty_limits(mdtc);
1632
1633 if (unlikely(strictlimit)) {
1634 wb_dirty_limits(mdtc);
1635 m_dirty = mdtc->wb_dirty;
1636 m_thresh = mdtc->wb_thresh;
1637 m_bg_thresh = mdtc->wb_bg_thresh;
1638 } else {
1639 m_dirty = mdtc->dirty;
1640 m_thresh = mdtc->thresh;
1641 m_bg_thresh = mdtc->bg_thresh;
1642 }
Wu Fengguang16c40422010-08-11 14:17:39 -07001643 }
1644
1645 /*
1646 * Throttle it only when the background writeback cannot
1647 * catch-up. This avoids (excessively) small writeouts
Tejun Heode1fff32015-05-22 17:13:29 -04001648 * when the wb limits are ramping up in case of !strictlimit.
Maxim Patlasov5a537482013-09-11 14:22:46 -07001649 *
Tejun Heode1fff32015-05-22 17:13:29 -04001650 * In strictlimit case make decision based on the wb counters
1651 * and limits. Small writeouts when the wb limits are ramping
Maxim Patlasov5a537482013-09-11 14:22:46 -07001652 * up are the price we consciously pay for strictlimit-ing.
Tejun Heoc2aa7232015-05-22 18:23:35 -04001653 *
1654 * If memcg domain is in effect, @dirty should be under
1655 * both global and memcg freerun ceilings.
Wu Fengguang16c40422010-08-11 14:17:39 -07001656 */
Tejun Heoc2aa7232015-05-22 18:23:35 -04001657 if (dirty <= dirty_freerun_ceiling(thresh, bg_thresh) &&
1658 (!mdtc ||
1659 m_dirty <= dirty_freerun_ceiling(m_thresh, m_bg_thresh))) {
1660 unsigned long intv = dirty_poll_interval(dirty, thresh);
1661 unsigned long m_intv = ULONG_MAX;
1662
Wu Fengguang83712352011-06-11 19:25:42 -06001663 current->dirty_paused_when = now;
1664 current->nr_dirtied = 0;
Tejun Heoc2aa7232015-05-22 18:23:35 -04001665 if (mdtc)
1666 m_intv = dirty_poll_interval(m_dirty, m_thresh);
1667 current->nr_dirtied_pause = min(intv, m_intv);
Wu Fengguang16c40422010-08-11 14:17:39 -07001668 break;
Wu Fengguang83712352011-06-11 19:25:42 -06001669 }
Wu Fengguang16c40422010-08-11 14:17:39 -07001670
Tejun Heobc058732015-05-22 17:13:53 -04001671 if (unlikely(!writeback_in_progress(wb)))
Tejun Heo9ecf48662015-05-22 17:13:54 -04001672 wb_start_background_writeback(wb);
Wu Fengguang143dfe82010-08-27 18:45:12 -06001673
Tejun Heoc2aa7232015-05-22 18:23:35 -04001674 /*
1675 * Calculate global domain's pos_ratio and select the
1676 * global dtc by default.
1677 */
Maxim Patlasov5a537482013-09-11 14:22:46 -07001678 if (!strictlimit)
Tejun Heo970fb012015-05-22 18:23:24 -04001679 wb_dirty_limits(gdtc);
Peter Zijlstra5fce25a2007-11-14 16:59:15 -08001680
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001681 dirty_exceeded = (gdtc->wb_dirty > gdtc->wb_thresh) &&
1682 ((gdtc->dirty > gdtc->thresh) || strictlimit);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001683
Tejun Heodaddfa32015-05-22 18:23:26 -04001684 wb_position_ratio(gdtc);
Tejun Heoc2aa7232015-05-22 18:23:35 -04001685 sdtc = gdtc;
Wu Fengguange98be2d2010-08-29 11:22:30 -06001686
Tejun Heoc2aa7232015-05-22 18:23:35 -04001687 if (mdtc) {
1688 /*
1689 * If memcg domain is in effect, calculate its
1690 * pos_ratio. @wb should satisfy constraints from
1691 * both global and memcg domains. Choose the one
1692 * w/ lower pos_ratio.
1693 */
1694 if (!strictlimit)
1695 wb_dirty_limits(mdtc);
1696
1697 dirty_exceeded |= (mdtc->wb_dirty > mdtc->wb_thresh) &&
1698 ((mdtc->dirty > mdtc->thresh) || strictlimit);
1699
1700 wb_position_ratio(mdtc);
1701 if (mdtc->pos_ratio < gdtc->pos_ratio)
1702 sdtc = mdtc;
1703 }
Tejun Heodaddfa32015-05-22 18:23:26 -04001704
Tejun Heoa88a3412015-05-22 17:13:28 -04001705 if (dirty_exceeded && !wb->dirty_exceeded)
1706 wb->dirty_exceeded = 1;
Peter Zijlstra04fbfdc2007-10-16 23:25:50 -07001707
Tejun Heo8a731792015-05-22 18:23:20 -04001708 if (time_is_before_jiffies(wb->bw_time_stamp +
1709 BANDWIDTH_INTERVAL)) {
1710 spin_lock(&wb->list_lock);
Tejun Heoc2aa7232015-05-22 18:23:35 -04001711 __wb_update_bandwidth(gdtc, mdtc, start_time, true);
Tejun Heo8a731792015-05-22 18:23:20 -04001712 spin_unlock(&wb->list_lock);
1713 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001714
Tejun Heoc2aa7232015-05-22 18:23:35 -04001715 /* throttle according to the chosen dtc */
Tejun Heoa88a3412015-05-22 17:13:28 -04001716 dirty_ratelimit = wb->dirty_ratelimit;
Tejun Heoc2aa7232015-05-22 18:23:35 -04001717 task_ratelimit = ((u64)dirty_ratelimit * sdtc->pos_ratio) >>
Wu Fengguang3a73dbb2011-11-07 19:19:28 +08001718 RATELIMIT_CALC_SHIFT;
Tejun Heoc2aa7232015-05-22 18:23:35 -04001719 max_pause = wb_max_pause(wb, sdtc->wb_dirty);
Tejun Heoa88a3412015-05-22 17:13:28 -04001720 min_pause = wb_min_pause(wb, max_pause,
1721 task_ratelimit, dirty_ratelimit,
1722 &nr_dirtied_pause);
Wu Fengguang7ccb9ad2011-11-30 11:08:55 -06001723
Wu Fengguang3a73dbb2011-11-07 19:19:28 +08001724 if (unlikely(task_ratelimit == 0)) {
Wu Fengguang83712352011-06-11 19:25:42 -06001725 period = max_pause;
Wu Fengguangc8462cc2011-06-11 19:21:43 -06001726 pause = max_pause;
Wu Fengguang143dfe82010-08-27 18:45:12 -06001727 goto pause;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001728 }
Wu Fengguang83712352011-06-11 19:25:42 -06001729 period = HZ * pages_dirtied / task_ratelimit;
1730 pause = period;
1731 if (current->dirty_paused_when)
1732 pause -= now - current->dirty_paused_when;
1733 /*
1734 * For less than 1s think time (ext3/4 may block the dirtier
1735 * for up to 800ms from time to time on 1-HDD; so does xfs,
1736 * however at much less frequency), try to compensate it in
1737 * future periods by updating the virtual time; otherwise just
1738 * do a reset, as it may be a light dirtier.
1739 */
Wu Fengguang7ccb9ad2011-11-30 11:08:55 -06001740 if (pause < min_pause) {
Tejun Heo5634cc22015-08-18 14:54:56 -07001741 trace_balance_dirty_pages(wb,
Tejun Heoc2aa7232015-05-22 18:23:35 -04001742 sdtc->thresh,
1743 sdtc->bg_thresh,
1744 sdtc->dirty,
1745 sdtc->wb_thresh,
1746 sdtc->wb_dirty,
Wu Fengguangece13ac2010-08-29 23:33:20 -06001747 dirty_ratelimit,
1748 task_ratelimit,
1749 pages_dirtied,
Wu Fengguang83712352011-06-11 19:25:42 -06001750 period,
Wu Fengguang7ccb9ad2011-11-30 11:08:55 -06001751 min(pause, 0L),
Wu Fengguangece13ac2010-08-29 23:33:20 -06001752 start_time);
Wu Fengguang83712352011-06-11 19:25:42 -06001753 if (pause < -HZ) {
1754 current->dirty_paused_when = now;
1755 current->nr_dirtied = 0;
1756 } else if (period) {
1757 current->dirty_paused_when += period;
1758 current->nr_dirtied = 0;
Wu Fengguang7ccb9ad2011-11-30 11:08:55 -06001759 } else if (current->nr_dirtied_pause <= pages_dirtied)
1760 current->nr_dirtied_pause += pages_dirtied;
Wu Fengguang57fc9782011-06-11 19:32:32 -06001761 break;
1762 }
Wu Fengguang7ccb9ad2011-11-30 11:08:55 -06001763 if (unlikely(pause > max_pause)) {
1764 /* for occasional dropped task_ratelimit */
1765 now += min(pause - max_pause, max_pause);
1766 pause = max_pause;
1767 }
Wu Fengguang143dfe82010-08-27 18:45:12 -06001768
1769pause:
Tejun Heo5634cc22015-08-18 14:54:56 -07001770 trace_balance_dirty_pages(wb,
Tejun Heoc2aa7232015-05-22 18:23:35 -04001771 sdtc->thresh,
1772 sdtc->bg_thresh,
1773 sdtc->dirty,
1774 sdtc->wb_thresh,
1775 sdtc->wb_dirty,
Wu Fengguangece13ac2010-08-29 23:33:20 -06001776 dirty_ratelimit,
1777 task_ratelimit,
1778 pages_dirtied,
Wu Fengguang83712352011-06-11 19:25:42 -06001779 period,
Wu Fengguangece13ac2010-08-29 23:33:20 -06001780 pause,
1781 start_time);
Jan Kara499d05e2011-11-16 19:34:48 +08001782 __set_current_state(TASK_KILLABLE);
Jens Axboeb57d74a2016-09-01 10:20:33 -06001783 wb->dirty_sleep = now;
Wu Fengguangd25105e2009-10-09 12:40:42 +02001784 io_schedule_timeout(pause);
Jens Axboe87c6a9b2009-09-17 19:59:14 +02001785
Wu Fengguang83712352011-06-11 19:25:42 -06001786 current->dirty_paused_when = now + pause;
1787 current->nr_dirtied = 0;
Wu Fengguang7ccb9ad2011-11-30 11:08:55 -06001788 current->nr_dirtied_pause = nr_dirtied_pause;
Wu Fengguang83712352011-06-11 19:25:42 -06001789
Wu Fengguangffd1f602011-06-19 22:18:42 -06001790 /*
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001791 * This is typically equal to (dirty < thresh) and can also
1792 * keep "1000+ dd on a slow USB stick" under control.
Wu Fengguangffd1f602011-06-19 22:18:42 -06001793 */
Wu Fengguang1df64712011-11-13 19:47:32 -06001794 if (task_ratelimit)
Wu Fengguangffd1f602011-06-19 22:18:42 -06001795 break;
Jan Kara499d05e2011-11-16 19:34:48 +08001796
Wu Fengguangc5c63432011-12-02 10:21:33 -06001797 /*
1798 * In the case of an unresponding NFS server and the NFS dirty
Tejun Heode1fff32015-05-22 17:13:29 -04001799 * pages exceeds dirty_thresh, give the other good wb's a pipe
Wu Fengguangc5c63432011-12-02 10:21:33 -06001800 * to go through, so that tasks on them still remain responsive.
1801 *
Masahiro Yamada3f8b6fb2017-02-27 14:29:25 -08001802 * In theory 1 page is enough to keep the consumer-producer
Wu Fengguangc5c63432011-12-02 10:21:33 -06001803 * pipe going: the flusher cleans 1 page => the task dirties 1
Tejun Heode1fff32015-05-22 17:13:29 -04001804 * more page. However wb_dirty has accounting errors. So use
Tejun Heo93f78d82015-05-22 17:13:27 -04001805 * the larger and more IO friendly wb_stat_error.
Wu Fengguangc5c63432011-12-02 10:21:33 -06001806 */
Tejun Heoc2aa7232015-05-22 18:23:35 -04001807 if (sdtc->wb_dirty <= wb_stat_error(wb))
Wu Fengguangc5c63432011-12-02 10:21:33 -06001808 break;
1809
Jan Kara499d05e2011-11-16 19:34:48 +08001810 if (fatal_signal_pending(current))
1811 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001812 }
1813
Tejun Heoa88a3412015-05-22 17:13:28 -04001814 if (!dirty_exceeded && wb->dirty_exceeded)
1815 wb->dirty_exceeded = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001816
Tejun Heobc058732015-05-22 17:13:53 -04001817 if (writeback_in_progress(wb))
Jens Axboe5b0830c2009-09-23 19:37:09 +02001818 return;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001819
1820 /*
1821 * In laptop mode, we wait until hitting the higher threshold before
1822 * starting background writeout, and then write out all the way down
1823 * to the lower threshold. So slow writers cause minimal disk activity.
1824 *
1825 * In normal mode, we start background writeout at the lower
1826 * background_thresh, to keep the amount of dirty memory low.
1827 */
Wu Fengguang143dfe82010-08-27 18:45:12 -06001828 if (laptop_mode)
1829 return;
1830
Tejun Heo2bc00ae2015-05-22 18:23:23 -04001831 if (nr_reclaimable > gdtc->bg_thresh)
Tejun Heo9ecf48662015-05-22 17:13:54 -04001832 wb_start_background_writeback(wb);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001833}
1834
Wu Fengguang9d823e82011-06-11 18:10:12 -06001835static DEFINE_PER_CPU(int, bdp_ratelimits);
Tejun Heo245b2e72009-06-24 15:13:48 +09001836
Wu Fengguang54848d72011-04-05 13:21:19 -06001837/*
1838 * Normal tasks are throttled by
1839 * loop {
1840 * dirty tsk->nr_dirtied_pause pages;
1841 * take a snap in balance_dirty_pages();
1842 * }
1843 * However there is a worst case. If every task exit immediately when dirtied
1844 * (tsk->nr_dirtied_pause - 1) pages, balance_dirty_pages() will never be
1845 * called to throttle the page dirties. The solution is to save the not yet
1846 * throttled page dirties in dirty_throttle_leaks on task exit and charge them
1847 * randomly into the running tasks. This works well for the above worst case,
1848 * as the new task will pick up and accumulate the old task's leaked dirty
1849 * count and eventually get throttled.
1850 */
1851DEFINE_PER_CPU(int, dirty_throttle_leaks) = 0;
1852
Linus Torvalds1da177e2005-04-16 15:20:36 -07001853/**
Namjae Jeond0e1d662012-12-11 16:00:21 -08001854 * balance_dirty_pages_ratelimited - balance dirty memory state
Martin Waitz67be2dd2005-05-01 08:59:26 -07001855 * @mapping: address_space which was dirtied
Linus Torvalds1da177e2005-04-16 15:20:36 -07001856 *
1857 * Processes which are dirtying memory should call in here once for each page
1858 * which was newly dirtied. The function will periodically check the system's
1859 * dirty state and will initiate writeback if needed.
1860 *
1861 * On really big machines, get_writeback_state is expensive, so try to avoid
1862 * calling it too often (ratelimiting). But once we're over the dirty memory
1863 * limit we decrease the ratelimiting by a lot, to prevent individual processes
1864 * from overshooting the limit by (ratelimit_pages) each.
1865 */
Namjae Jeond0e1d662012-12-11 16:00:21 -08001866void balance_dirty_pages_ratelimited(struct address_space *mapping)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001867{
Tejun Heodfb8ae52015-05-22 17:13:40 -04001868 struct inode *inode = mapping->host;
1869 struct backing_dev_info *bdi = inode_to_bdi(inode);
1870 struct bdi_writeback *wb = NULL;
Wu Fengguang9d823e82011-06-11 18:10:12 -06001871 int ratelimit;
1872 int *p;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001873
Wu Fengguang36715ce2011-06-11 17:53:57 -06001874 if (!bdi_cap_account_dirty(bdi))
1875 return;
1876
Tejun Heodfb8ae52015-05-22 17:13:40 -04001877 if (inode_cgwb_enabled(inode))
1878 wb = wb_get_create_current(bdi, GFP_KERNEL);
1879 if (!wb)
1880 wb = &bdi->wb;
1881
Wu Fengguang9d823e82011-06-11 18:10:12 -06001882 ratelimit = current->nr_dirtied_pause;
Tejun Heoa88a3412015-05-22 17:13:28 -04001883 if (wb->dirty_exceeded)
Wu Fengguang9d823e82011-06-11 18:10:12 -06001884 ratelimit = min(ratelimit, 32 >> (PAGE_SHIFT - 10));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001885
Andrew Mortonfa5a7342006-03-24 03:18:10 -08001886 preempt_disable();
Wu Fengguang9d823e82011-06-11 18:10:12 -06001887 /*
1888 * This prevents one CPU to accumulate too many dirtied pages without
1889 * calling into balance_dirty_pages(), which can happen when there are
1890 * 1000+ tasks, all of them start dirtying pages at exactly the same
1891 * time, hence all honoured too large initial task->nr_dirtied_pause.
1892 */
Christoph Lameter7c8e0182014-06-04 16:07:56 -07001893 p = this_cpu_ptr(&bdp_ratelimits);
Wu Fengguang9d823e82011-06-11 18:10:12 -06001894 if (unlikely(current->nr_dirtied >= ratelimit))
Andrew Mortonfa5a7342006-03-24 03:18:10 -08001895 *p = 0;
Wu Fengguangd3bc1fe2011-04-14 07:52:37 -06001896 else if (unlikely(*p >= ratelimit_pages)) {
1897 *p = 0;
1898 ratelimit = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001899 }
Wu Fengguang54848d72011-04-05 13:21:19 -06001900 /*
1901 * Pick up the dirtied pages by the exited tasks. This avoids lots of
1902 * short-lived tasks (eg. gcc invocations in a kernel build) escaping
1903 * the dirty throttling and livelock other long-run dirtiers.
1904 */
Christoph Lameter7c8e0182014-06-04 16:07:56 -07001905 p = this_cpu_ptr(&dirty_throttle_leaks);
Wu Fengguang54848d72011-04-05 13:21:19 -06001906 if (*p > 0 && current->nr_dirtied < ratelimit) {
Namjae Jeond0e1d662012-12-11 16:00:21 -08001907 unsigned long nr_pages_dirtied;
Wu Fengguang54848d72011-04-05 13:21:19 -06001908 nr_pages_dirtied = min(*p, ratelimit - current->nr_dirtied);
1909 *p -= nr_pages_dirtied;
1910 current->nr_dirtied += nr_pages_dirtied;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001911 }
Andrew Mortonfa5a7342006-03-24 03:18:10 -08001912 preempt_enable();
Wu Fengguang9d823e82011-06-11 18:10:12 -06001913
1914 if (unlikely(current->nr_dirtied >= ratelimit))
Tahsin Erdogan4c578dc2017-11-15 17:33:19 -08001915 balance_dirty_pages(wb, current->nr_dirtied);
Tejun Heodfb8ae52015-05-22 17:13:40 -04001916
1917 wb_put(wb);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001918}
Namjae Jeond0e1d662012-12-11 16:00:21 -08001919EXPORT_SYMBOL(balance_dirty_pages_ratelimited);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001920
Tejun Heoaa661bb2015-05-22 18:23:31 -04001921/**
1922 * wb_over_bg_thresh - does @wb need to be written back?
1923 * @wb: bdi_writeback of interest
1924 *
1925 * Determines whether background writeback should keep writing @wb or it's
1926 * clean enough. Returns %true if writeback should continue.
1927 */
1928bool wb_over_bg_thresh(struct bdi_writeback *wb)
1929{
Tejun Heo947e9762015-05-22 18:23:32 -04001930 struct dirty_throttle_control gdtc_stor = { GDTC_INIT(wb) };
Tejun Heoc2aa7232015-05-22 18:23:35 -04001931 struct dirty_throttle_control mdtc_stor = { MDTC_INIT(wb, &gdtc_stor) };
Tejun Heo947e9762015-05-22 18:23:32 -04001932 struct dirty_throttle_control * const gdtc = &gdtc_stor;
Tejun Heoc2aa7232015-05-22 18:23:35 -04001933 struct dirty_throttle_control * const mdtc = mdtc_valid(&mdtc_stor) ?
1934 &mdtc_stor : NULL;
Tejun Heoaa661bb2015-05-22 18:23:31 -04001935
Tejun Heo947e9762015-05-22 18:23:32 -04001936 /*
1937 * Similar to balance_dirty_pages() but ignores pages being written
1938 * as we're trying to decide whether to put more under writeback.
1939 */
1940 gdtc->avail = global_dirtyable_memory();
Mel Gorman11fb9982016-07-28 15:46:20 -07001941 gdtc->dirty = global_node_page_state(NR_FILE_DIRTY) +
1942 global_node_page_state(NR_UNSTABLE_NFS);
Tejun Heo947e9762015-05-22 18:23:32 -04001943 domain_dirty_limits(gdtc);
Tejun Heoaa661bb2015-05-22 18:23:31 -04001944
Tejun Heo947e9762015-05-22 18:23:32 -04001945 if (gdtc->dirty > gdtc->bg_thresh)
Tejun Heoaa661bb2015-05-22 18:23:31 -04001946 return true;
1947
Howard Cochran74d36942016-03-10 01:12:39 -05001948 if (wb_stat(wb, WB_RECLAIMABLE) >
1949 wb_calc_thresh(gdtc->wb, gdtc->bg_thresh))
Tejun Heoaa661bb2015-05-22 18:23:31 -04001950 return true;
1951
Tejun Heoc2aa7232015-05-22 18:23:35 -04001952 if (mdtc) {
Tejun Heoc5edf9c2015-09-29 13:04:26 -04001953 unsigned long filepages, headroom, writeback;
Tejun Heoc2aa7232015-05-22 18:23:35 -04001954
Tejun Heoc5edf9c2015-09-29 13:04:26 -04001955 mem_cgroup_wb_stats(wb, &filepages, &headroom, &mdtc->dirty,
1956 &writeback);
1957 mdtc_calc_avail(mdtc, filepages, headroom);
Tejun Heoc2aa7232015-05-22 18:23:35 -04001958 domain_dirty_limits(mdtc); /* ditto, ignore writeback */
1959
1960 if (mdtc->dirty > mdtc->bg_thresh)
1961 return true;
1962
Howard Cochran74d36942016-03-10 01:12:39 -05001963 if (wb_stat(wb, WB_RECLAIMABLE) >
1964 wb_calc_thresh(mdtc->wb, mdtc->bg_thresh))
Tejun Heoc2aa7232015-05-22 18:23:35 -04001965 return true;
1966 }
1967
Tejun Heoaa661bb2015-05-22 18:23:31 -04001968 return false;
1969}
1970
Linus Torvalds1da177e2005-04-16 15:20:36 -07001971/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07001972 * sysctl handler for /proc/sys/vm/dirty_writeback_centisecs
1973 */
Joe Perchescccad5b2014-06-06 14:38:09 -07001974int dirty_writeback_centisecs_handler(struct ctl_table *table, int write,
Alexey Dobriyan8d65af72009-09-23 15:57:19 -07001975 void __user *buffer, size_t *length, loff_t *ppos)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001976{
Yafang Shao94af5842017-10-10 05:44:13 +08001977 unsigned int old_interval = dirty_writeback_interval;
1978 int ret;
1979
1980 ret = proc_dointvec(table, write, buffer, length, ppos);
Yafang Shao515c24c2017-10-14 16:38:27 +08001981
1982 /*
1983 * Writing 0 to dirty_writeback_interval will disable periodic writeback
1984 * and a different non-zero value will wakeup the writeback threads.
1985 * wb_wakeup_delayed() would be more appropriate, but it's a pain to
1986 * iterate over all bdis and wbs.
1987 * The reason we do this is to make the change take effect immediately.
1988 */
1989 if (!ret && write && dirty_writeback_interval &&
1990 dirty_writeback_interval != old_interval)
Yafang Shao94af5842017-10-10 05:44:13 +08001991 wakeup_flusher_threads(WB_REASON_PERIODIC);
1992
1993 return ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001994}
1995
Jens Axboec2c49862010-05-20 09:18:47 +02001996#ifdef CONFIG_BLOCK
Matthew Garrett31373d02010-04-06 14:25:14 +02001997void laptop_mode_timer_fn(unsigned long data)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001998{
Matthew Garrett31373d02010-04-06 14:25:14 +02001999 struct request_queue *q = (struct request_queue *)data;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002000
Jens Axboe0ab29fd2017-09-28 11:28:02 -06002001 wakeup_flusher_threads_bdi(q->backing_dev_info, WB_REASON_LAPTOP_TIMER);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002002}
2003
2004/*
2005 * We've spun up the disk and we're in laptop mode: schedule writeback
2006 * of all dirty data a few seconds from now. If the flush is already scheduled
2007 * then push it back - the user is still using the disk.
2008 */
Matthew Garrett31373d02010-04-06 14:25:14 +02002009void laptop_io_completion(struct backing_dev_info *info)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002010{
Matthew Garrett31373d02010-04-06 14:25:14 +02002011 mod_timer(&info->laptop_mode_wb_timer, jiffies + laptop_mode);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002012}
2013
2014/*
2015 * We're in laptop mode and we've just synced. The sync's writes will have
2016 * caused another writeback to be scheduled by laptop_io_completion.
2017 * Nothing needs to be written back anymore, so we unschedule the writeback.
2018 */
2019void laptop_sync_completion(void)
2020{
Matthew Garrett31373d02010-04-06 14:25:14 +02002021 struct backing_dev_info *bdi;
2022
2023 rcu_read_lock();
2024
2025 list_for_each_entry_rcu(bdi, &bdi_list, bdi_list)
2026 del_timer(&bdi->laptop_mode_wb_timer);
2027
2028 rcu_read_unlock();
Linus Torvalds1da177e2005-04-16 15:20:36 -07002029}
Jens Axboec2c49862010-05-20 09:18:47 +02002030#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -07002031
2032/*
2033 * If ratelimit_pages is too high then we can get into dirty-data overload
2034 * if a large number of processes all perform writes at the same time.
2035 * If it is too low then SMP machines will call the (expensive)
2036 * get_writeback_state too often.
2037 *
2038 * Here we set ratelimit_pages to a level which ensures that when all CPUs are
2039 * dirtying in parallel, we cannot go more than 3% (1/32) over the dirty memory
Wu Fengguang9d823e82011-06-11 18:10:12 -06002040 * thresholds.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002041 */
2042
Chandra Seetharaman2d1d43f2006-09-29 02:01:25 -07002043void writeback_set_ratelimit(void)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002044{
Tejun Heodcc25ae2015-05-22 18:23:22 -04002045 struct wb_domain *dom = &global_wb_domain;
Wu Fengguang9d823e82011-06-11 18:10:12 -06002046 unsigned long background_thresh;
2047 unsigned long dirty_thresh;
Tejun Heodcc25ae2015-05-22 18:23:22 -04002048
Wu Fengguang9d823e82011-06-11 18:10:12 -06002049 global_dirty_limits(&background_thresh, &dirty_thresh);
Tejun Heodcc25ae2015-05-22 18:23:22 -04002050 dom->dirty_limit = dirty_thresh;
Wu Fengguang9d823e82011-06-11 18:10:12 -06002051 ratelimit_pages = dirty_thresh / (num_online_cpus() * 32);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002052 if (ratelimit_pages < 16)
2053 ratelimit_pages = 16;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002054}
2055
Sebastian Andrzej Siewior1d7ac6a2016-08-18 14:57:20 +02002056static int page_writeback_cpu_online(unsigned int cpu)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002057{
Sebastian Andrzej Siewior1d7ac6a2016-08-18 14:57:20 +02002058 writeback_set_ratelimit();
2059 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002060}
2061
Linus Torvalds1da177e2005-04-16 15:20:36 -07002062/*
Linus Torvaldsdc6e29d2007-01-29 16:37:38 -08002063 * Called early on to tune the page writeback dirty limits.
2064 *
2065 * We used to scale dirty pages according to how total memory
2066 * related to pages that could be allocated for buffers (by
2067 * comparing nr_free_buffer_pages() to vm_total_pages.
2068 *
2069 * However, that was when we used "dirty_ratio" to scale with
2070 * all memory, and we don't do that any more. "dirty_ratio"
2071 * is now applied to total non-HIGHPAGE memory (by subtracting
2072 * totalhigh_pages from vm_total_pages), and as such we can't
2073 * get into the old insane situation any more where we had
2074 * large amounts of dirty pages compared to a small amount of
2075 * non-HIGHMEM memory.
2076 *
2077 * But we might still want to scale the dirty_ratio by how
2078 * much memory the box has..
Linus Torvalds1da177e2005-04-16 15:20:36 -07002079 */
2080void __init page_writeback_init(void)
2081{
Rabin Vincenta50fcb52015-08-06 15:47:14 -07002082 BUG_ON(wb_domain_init(&global_wb_domain, GFP_KERNEL));
2083
Sebastian Andrzej Siewior1d7ac6a2016-08-18 14:57:20 +02002084 cpuhp_setup_state(CPUHP_AP_ONLINE_DYN, "mm/writeback:online",
2085 page_writeback_cpu_online, NULL);
2086 cpuhp_setup_state(CPUHP_MM_WRITEBACK_DEAD, "mm/writeback:dead", NULL,
2087 page_writeback_cpu_online);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002088}
2089
David Howells811d7362006-08-29 19:06:09 +01002090/**
Jan Karaf446daae2010-08-09 17:19:12 -07002091 * tag_pages_for_writeback - tag pages to be written by write_cache_pages
2092 * @mapping: address space structure to write
2093 * @start: starting page index
2094 * @end: ending page index (inclusive)
2095 *
2096 * This function scans the page range from @start to @end (inclusive) and tags
2097 * all pages that have DIRTY tag set with a special TOWRITE tag. The idea is
2098 * that write_cache_pages (or whoever calls this function) will then use
2099 * TOWRITE tag to identify pages eligible for writeback. This mechanism is
2100 * used to avoid livelocking of writeback by a process steadily creating new
2101 * dirty pages in the file (thus it is important for this function to be quick
2102 * so that it can tag pages faster than a dirtying process can create them).
2103 */
2104/*
2105 * We tag pages in batches of WRITEBACK_TAG_BATCH to reduce tree_lock latency.
2106 */
Jan Karaf446daae2010-08-09 17:19:12 -07002107void tag_pages_for_writeback(struct address_space *mapping,
2108 pgoff_t start, pgoff_t end)
2109{
Randy Dunlap3c111a02010-08-11 14:17:30 -07002110#define WRITEBACK_TAG_BATCH 4096
Matthew Wilcox268f42d2016-12-14 15:08:55 -08002111 unsigned long tagged = 0;
2112 struct radix_tree_iter iter;
2113 void **slot;
Jan Karaf446daae2010-08-09 17:19:12 -07002114
Matthew Wilcox268f42d2016-12-14 15:08:55 -08002115 spin_lock_irq(&mapping->tree_lock);
2116 radix_tree_for_each_tagged(slot, &mapping->page_tree, &iter, start,
2117 PAGECACHE_TAG_DIRTY) {
2118 if (iter.index > end)
2119 break;
2120 radix_tree_iter_tag_set(&mapping->page_tree, &iter,
2121 PAGECACHE_TAG_TOWRITE);
2122 tagged++;
2123 if ((tagged % WRITEBACK_TAG_BATCH) != 0)
2124 continue;
2125 slot = radix_tree_iter_resume(slot, &iter);
Jan Karaf446daae2010-08-09 17:19:12 -07002126 spin_unlock_irq(&mapping->tree_lock);
Jan Karaf446daae2010-08-09 17:19:12 -07002127 cond_resched();
Matthew Wilcox268f42d2016-12-14 15:08:55 -08002128 spin_lock_irq(&mapping->tree_lock);
2129 }
2130 spin_unlock_irq(&mapping->tree_lock);
Jan Karaf446daae2010-08-09 17:19:12 -07002131}
2132EXPORT_SYMBOL(tag_pages_for_writeback);
2133
2134/**
Miklos Szeredi0ea97182007-05-10 22:22:51 -07002135 * write_cache_pages - walk the list of dirty pages of the given address space and write all of them.
David Howells811d7362006-08-29 19:06:09 +01002136 * @mapping: address space structure to write
2137 * @wbc: subtract the number of written pages from *@wbc->nr_to_write
Miklos Szeredi0ea97182007-05-10 22:22:51 -07002138 * @writepage: function called for each page
2139 * @data: data passed to writepage function
David Howells811d7362006-08-29 19:06:09 +01002140 *
Miklos Szeredi0ea97182007-05-10 22:22:51 -07002141 * If a page is already under I/O, write_cache_pages() skips it, even
David Howells811d7362006-08-29 19:06:09 +01002142 * if it's dirty. This is desirable behaviour for memory-cleaning writeback,
2143 * but it is INCORRECT for data-integrity system calls such as fsync(). fsync()
2144 * and msync() need to guarantee that all the data which was dirty at the time
2145 * the call was made get new I/O started against them. If wbc->sync_mode is
2146 * WB_SYNC_ALL then we were called for data integrity and we must wait for
2147 * existing IO to complete.
Jan Karaf446daae2010-08-09 17:19:12 -07002148 *
2149 * To avoid livelocks (when other process dirties new pages), we first tag
2150 * pages which should be written back with TOWRITE tag and only then start
2151 * writing them. For data-integrity sync we have to be careful so that we do
2152 * not miss some pages (e.g., because some other process has cleared TOWRITE
2153 * tag we set). The rule we follow is that TOWRITE tag can be cleared only
2154 * by the process clearing the DIRTY tag (and submitting the page for IO).
David Howells811d7362006-08-29 19:06:09 +01002155 */
Miklos Szeredi0ea97182007-05-10 22:22:51 -07002156int write_cache_pages(struct address_space *mapping,
2157 struct writeback_control *wbc, writepage_t writepage,
2158 void *data)
David Howells811d7362006-08-29 19:06:09 +01002159{
David Howells811d7362006-08-29 19:06:09 +01002160 int ret = 0;
2161 int done = 0;
David Howells811d7362006-08-29 19:06:09 +01002162 struct pagevec pvec;
2163 int nr_pages;
Nick Piggin31a12662009-01-06 14:39:04 -08002164 pgoff_t uninitialized_var(writeback_index);
David Howells811d7362006-08-29 19:06:09 +01002165 pgoff_t index;
2166 pgoff_t end; /* Inclusive */
Nick Pigginbd19e012009-01-06 14:39:06 -08002167 pgoff_t done_index;
Nick Piggin31a12662009-01-06 14:39:04 -08002168 int cycled;
David Howells811d7362006-08-29 19:06:09 +01002169 int range_whole = 0;
Jan Karaf446daae2010-08-09 17:19:12 -07002170 int tag;
David Howells811d7362006-08-29 19:06:09 +01002171
David Howells811d7362006-08-29 19:06:09 +01002172 pagevec_init(&pvec, 0);
2173 if (wbc->range_cyclic) {
Nick Piggin31a12662009-01-06 14:39:04 -08002174 writeback_index = mapping->writeback_index; /* prev offset */
2175 index = writeback_index;
2176 if (index == 0)
2177 cycled = 1;
2178 else
2179 cycled = 0;
David Howells811d7362006-08-29 19:06:09 +01002180 end = -1;
2181 } else {
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +03002182 index = wbc->range_start >> PAGE_SHIFT;
2183 end = wbc->range_end >> PAGE_SHIFT;
David Howells811d7362006-08-29 19:06:09 +01002184 if (wbc->range_start == 0 && wbc->range_end == LLONG_MAX)
2185 range_whole = 1;
Nick Piggin31a12662009-01-06 14:39:04 -08002186 cycled = 1; /* ignore range_cyclic tests */
David Howells811d7362006-08-29 19:06:09 +01002187 }
Wu Fengguang6e6938b2010-06-06 10:38:15 -06002188 if (wbc->sync_mode == WB_SYNC_ALL || wbc->tagged_writepages)
Jan Karaf446daae2010-08-09 17:19:12 -07002189 tag = PAGECACHE_TAG_TOWRITE;
2190 else
2191 tag = PAGECACHE_TAG_DIRTY;
David Howells811d7362006-08-29 19:06:09 +01002192retry:
Wu Fengguang6e6938b2010-06-06 10:38:15 -06002193 if (wbc->sync_mode == WB_SYNC_ALL || wbc->tagged_writepages)
Jan Karaf446daae2010-08-09 17:19:12 -07002194 tag_pages_for_writeback(mapping, index, end);
Nick Pigginbd19e012009-01-06 14:39:06 -08002195 done_index = index;
Nick Piggin5a3d5c92009-01-06 14:39:09 -08002196 while (!done && (index <= end)) {
2197 int i;
2198
Jan Kara2b9775a2017-11-15 17:35:09 -08002199 nr_pages = pagevec_lookup_range_tag(&pvec, mapping, &index, end,
Jan Kara67fd7072017-11-15 17:35:19 -08002200 tag);
Nick Piggin5a3d5c92009-01-06 14:39:09 -08002201 if (nr_pages == 0)
2202 break;
David Howells811d7362006-08-29 19:06:09 +01002203
David Howells811d7362006-08-29 19:06:09 +01002204 for (i = 0; i < nr_pages; i++) {
2205 struct page *page = pvec.pages[i];
2206
Jun'ichi Nomuracf15b072011-03-22 16:33:40 -07002207 done_index = page->index;
Nick Pigginbd19e012009-01-06 14:39:06 -08002208
David Howells811d7362006-08-29 19:06:09 +01002209 lock_page(page);
2210
Nick Piggin5a3d5c92009-01-06 14:39:09 -08002211 /*
2212 * Page truncated or invalidated. We can freely skip it
2213 * then, even for data integrity operations: the page
2214 * has disappeared concurrently, so there could be no
2215 * real expectation of this data interity operation
2216 * even if there is now a new, dirty page at the same
2217 * pagecache address.
2218 */
David Howells811d7362006-08-29 19:06:09 +01002219 if (unlikely(page->mapping != mapping)) {
Nick Piggin5a3d5c92009-01-06 14:39:09 -08002220continue_unlock:
David Howells811d7362006-08-29 19:06:09 +01002221 unlock_page(page);
2222 continue;
2223 }
2224
Nick Piggin515f4a02009-01-06 14:39:10 -08002225 if (!PageDirty(page)) {
2226 /* someone wrote it for us */
2227 goto continue_unlock;
2228 }
David Howells811d7362006-08-29 19:06:09 +01002229
Nick Piggin515f4a02009-01-06 14:39:10 -08002230 if (PageWriteback(page)) {
2231 if (wbc->sync_mode != WB_SYNC_NONE)
2232 wait_on_page_writeback(page);
2233 else
2234 goto continue_unlock;
2235 }
2236
2237 BUG_ON(PageWriteback(page));
2238 if (!clear_page_dirty_for_io(page))
Nick Piggin5a3d5c92009-01-06 14:39:09 -08002239 goto continue_unlock;
David Howells811d7362006-08-29 19:06:09 +01002240
Christoph Hellwigde1414a2015-01-14 10:42:36 +01002241 trace_wbc_writepage(wbc, inode_to_bdi(mapping->host));
Miklos Szeredi0ea97182007-05-10 22:22:51 -07002242 ret = (*writepage)(page, wbc, data);
Nick Piggin00266772009-01-06 14:39:06 -08002243 if (unlikely(ret)) {
2244 if (ret == AOP_WRITEPAGE_ACTIVATE) {
2245 unlock_page(page);
2246 ret = 0;
2247 } else {
2248 /*
2249 * done_index is set past this page,
2250 * so media errors will not choke
2251 * background writeout for the entire
2252 * file. This has consequences for
2253 * range_cyclic semantics (ie. it may
2254 * not be suitable for data integrity
2255 * writeout).
2256 */
Jun'ichi Nomuracf15b072011-03-22 16:33:40 -07002257 done_index = page->index + 1;
Nick Piggin00266772009-01-06 14:39:06 -08002258 done = 1;
2259 break;
2260 }
Dave Chinner0b564922010-06-09 10:37:18 +10002261 }
David Howells811d7362006-08-29 19:06:09 +01002262
Dave Chinner546a1922010-08-24 11:44:34 +10002263 /*
2264 * We stop writing back only if we are not doing
2265 * integrity sync. In case of integrity sync we have to
2266 * keep going until we have written all the pages
2267 * we tagged for writeback prior to entering this loop.
2268 */
2269 if (--wbc->nr_to_write <= 0 &&
2270 wbc->sync_mode == WB_SYNC_NONE) {
2271 done = 1;
2272 break;
Nick Piggin05fe4782009-01-06 14:39:08 -08002273 }
David Howells811d7362006-08-29 19:06:09 +01002274 }
2275 pagevec_release(&pvec);
2276 cond_resched();
2277 }
Nick Piggin3a4c6802009-02-12 04:34:23 +01002278 if (!cycled && !done) {
David Howells811d7362006-08-29 19:06:09 +01002279 /*
Nick Piggin31a12662009-01-06 14:39:04 -08002280 * range_cyclic:
David Howells811d7362006-08-29 19:06:09 +01002281 * We hit the last page and there is more work to be done: wrap
2282 * back to the start of the file
2283 */
Nick Piggin31a12662009-01-06 14:39:04 -08002284 cycled = 1;
David Howells811d7362006-08-29 19:06:09 +01002285 index = 0;
Nick Piggin31a12662009-01-06 14:39:04 -08002286 end = writeback_index - 1;
David Howells811d7362006-08-29 19:06:09 +01002287 goto retry;
2288 }
Dave Chinner0b564922010-06-09 10:37:18 +10002289 if (wbc->range_cyclic || (range_whole && wbc->nr_to_write > 0))
2290 mapping->writeback_index = done_index;
Aneesh Kumar K.V06d6cf62008-07-11 19:27:31 -04002291
David Howells811d7362006-08-29 19:06:09 +01002292 return ret;
2293}
Miklos Szeredi0ea97182007-05-10 22:22:51 -07002294EXPORT_SYMBOL(write_cache_pages);
2295
2296/*
2297 * Function used by generic_writepages to call the real writepage
2298 * function and set the mapping flags on error
2299 */
2300static int __writepage(struct page *page, struct writeback_control *wbc,
2301 void *data)
2302{
2303 struct address_space *mapping = data;
2304 int ret = mapping->a_ops->writepage(page, wbc);
2305 mapping_set_error(mapping, ret);
2306 return ret;
2307}
2308
2309/**
2310 * generic_writepages - walk the list of dirty pages of the given address space and writepage() all of them.
2311 * @mapping: address space structure to write
2312 * @wbc: subtract the number of written pages from *@wbc->nr_to_write
2313 *
2314 * This is a library function, which implements the writepages()
2315 * address_space_operation.
2316 */
2317int generic_writepages(struct address_space *mapping,
2318 struct writeback_control *wbc)
2319{
Shaohua Li9b6096a2011-03-17 10:47:06 +01002320 struct blk_plug plug;
2321 int ret;
2322
Miklos Szeredi0ea97182007-05-10 22:22:51 -07002323 /* deal with chardevs and other special file */
2324 if (!mapping->a_ops->writepage)
2325 return 0;
2326
Shaohua Li9b6096a2011-03-17 10:47:06 +01002327 blk_start_plug(&plug);
2328 ret = write_cache_pages(mapping, wbc, __writepage, mapping);
2329 blk_finish_plug(&plug);
2330 return ret;
Miklos Szeredi0ea97182007-05-10 22:22:51 -07002331}
David Howells811d7362006-08-29 19:06:09 +01002332
2333EXPORT_SYMBOL(generic_writepages);
2334
Linus Torvalds1da177e2005-04-16 15:20:36 -07002335int do_writepages(struct address_space *mapping, struct writeback_control *wbc)
2336{
Andrew Morton22905f72005-11-16 15:07:01 -08002337 int ret;
2338
Linus Torvalds1da177e2005-04-16 15:20:36 -07002339 if (wbc->nr_to_write <= 0)
2340 return 0;
Theodore Ts'o80a2ea92017-04-28 09:51:54 -04002341 while (1) {
2342 if (mapping->a_ops->writepages)
2343 ret = mapping->a_ops->writepages(mapping, wbc);
2344 else
2345 ret = generic_writepages(mapping, wbc);
2346 if ((ret != -ENOMEM) || (wbc->sync_mode != WB_SYNC_ALL))
2347 break;
2348 cond_resched();
2349 congestion_wait(BLK_RW_ASYNC, HZ/50);
2350 }
Andrew Morton22905f72005-11-16 15:07:01 -08002351 return ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002352}
2353
2354/**
Jeff Layton2b69c822017-07-05 15:26:48 -04002355 * write_one_page - write out a single page and wait on I/O
Martin Waitz67be2dd2005-05-01 08:59:26 -07002356 * @page: the page to write
Linus Torvalds1da177e2005-04-16 15:20:36 -07002357 *
2358 * The page must be locked by the caller and will be unlocked upon return.
2359 *
Jeff Layton37e51a72017-07-05 15:17:19 -04002360 * Note that the mapping's AS_EIO/AS_ENOSPC flags will be cleared when this
2361 * function returns.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002362 */
Jeff Layton2b69c822017-07-05 15:26:48 -04002363int write_one_page(struct page *page)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002364{
2365 struct address_space *mapping = page->mapping;
2366 int ret = 0;
2367 struct writeback_control wbc = {
2368 .sync_mode = WB_SYNC_ALL,
2369 .nr_to_write = 1,
2370 };
2371
2372 BUG_ON(!PageLocked(page));
2373
Jeff Layton2b69c822017-07-05 15:26:48 -04002374 wait_on_page_writeback(page);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002375
2376 if (clear_page_dirty_for_io(page)) {
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +03002377 get_page(page);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002378 ret = mapping->a_ops->writepage(page, &wbc);
Jeff Layton37e51a72017-07-05 15:17:19 -04002379 if (ret == 0)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002380 wait_on_page_writeback(page);
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +03002381 put_page(page);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002382 } else {
2383 unlock_page(page);
2384 }
Jeff Layton37e51a72017-07-05 15:17:19 -04002385
2386 if (!ret)
2387 ret = filemap_check_errors(mapping);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002388 return ret;
2389}
2390EXPORT_SYMBOL(write_one_page);
2391
2392/*
Ken Chen76719322007-02-10 01:43:15 -08002393 * For address_spaces which do not use buffers nor write back.
2394 */
2395int __set_page_dirty_no_writeback(struct page *page)
2396{
2397 if (!PageDirty(page))
Bob Liuc3f0da62011-01-13 15:45:49 -08002398 return !TestSetPageDirty(page);
Ken Chen76719322007-02-10 01:43:15 -08002399 return 0;
2400}
2401
2402/*
Edward Shishkine3a7cca2009-03-31 15:19:39 -07002403 * Helper function for set_page_dirty family.
Greg Thelenc4843a72015-05-22 17:13:16 -04002404 *
Johannes Weiner81f8c3a2016-03-15 14:57:04 -07002405 * Caller must hold lock_page_memcg().
Greg Thelenc4843a72015-05-22 17:13:16 -04002406 *
Edward Shishkine3a7cca2009-03-31 15:19:39 -07002407 * NOTE: This relies on being atomic wrt interrupts.
2408 */
Johannes Weiner62cccb82016-03-15 14:57:22 -07002409void account_page_dirtied(struct page *page, struct address_space *mapping)
Edward Shishkine3a7cca2009-03-31 15:19:39 -07002410{
Tejun Heo52ebea72015-05-22 17:13:37 -04002411 struct inode *inode = mapping->host;
2412
Tejun Heo9fb0a7d2013-01-11 13:06:37 -08002413 trace_writeback_dirty_page(page, mapping);
2414
Edward Shishkine3a7cca2009-03-31 15:19:39 -07002415 if (mapping_cap_account_dirty(mapping)) {
Tejun Heo52ebea72015-05-22 17:13:37 -04002416 struct bdi_writeback *wb;
Christoph Hellwigde1414a2015-01-14 10:42:36 +01002417
Tejun Heo52ebea72015-05-22 17:13:37 -04002418 inode_attach_wb(inode, page);
2419 wb = inode_to_wb(inode);
Edward Shishkine3a7cca2009-03-31 15:19:39 -07002420
Johannes Weiner00f3ca22017-07-06 15:40:52 -07002421 __inc_lruvec_page_state(page, NR_FILE_DIRTY);
Mel Gorman5a1c84b2016-07-28 15:47:31 -07002422 __inc_zone_page_state(page, NR_ZONE_WRITE_PENDING);
Mel Gormanc4a25632016-07-28 15:46:23 -07002423 __inc_node_page_state(page, NR_DIRTIED);
Nikolay Borisov3e8f3992017-07-12 14:37:51 -07002424 inc_wb_stat(wb, WB_RECLAIMABLE);
2425 inc_wb_stat(wb, WB_DIRTIED);
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +03002426 task_io_account_write(PAGE_SIZE);
Wu Fengguangd3bc1fe2011-04-14 07:52:37 -06002427 current->nr_dirtied++;
2428 this_cpu_inc(bdp_ratelimits);
Edward Shishkine3a7cca2009-03-31 15:19:39 -07002429 }
2430}
Michael Rubin679ceac2010-08-20 02:31:26 -07002431EXPORT_SYMBOL(account_page_dirtied);
Edward Shishkine3a7cca2009-03-31 15:19:39 -07002432
2433/*
Konstantin Khlebnikovb9ea2512015-04-14 15:45:27 -07002434 * Helper function for deaccounting dirty page without writeback.
2435 *
Johannes Weiner81f8c3a2016-03-15 14:57:04 -07002436 * Caller must hold lock_page_memcg().
Konstantin Khlebnikovb9ea2512015-04-14 15:45:27 -07002437 */
Greg Thelenc4843a72015-05-22 17:13:16 -04002438void account_page_cleaned(struct page *page, struct address_space *mapping,
Johannes Weiner62cccb82016-03-15 14:57:22 -07002439 struct bdi_writeback *wb)
Konstantin Khlebnikovb9ea2512015-04-14 15:45:27 -07002440{
2441 if (mapping_cap_account_dirty(mapping)) {
Johannes Weiner00f3ca22017-07-06 15:40:52 -07002442 dec_lruvec_page_state(page, NR_FILE_DIRTY);
Mel Gorman5a1c84b2016-07-28 15:47:31 -07002443 dec_zone_page_state(page, NR_ZONE_WRITE_PENDING);
Tejun Heo682aa8e2015-05-28 14:50:53 -04002444 dec_wb_stat(wb, WB_RECLAIMABLE);
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +03002445 task_io_account_cancelled_write(PAGE_SIZE);
Konstantin Khlebnikovb9ea2512015-04-14 15:45:27 -07002446 }
2447}
Konstantin Khlebnikovb9ea2512015-04-14 15:45:27 -07002448
2449/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07002450 * For address_spaces which do not use buffers. Just tag the page as dirty in
2451 * its radix tree.
2452 *
2453 * This is also used when a single buffer is being dirtied: we want to set the
2454 * page dirty in that case, but not all the buffers. This is a "bottom-up"
2455 * dirtying, whereas __set_page_dirty_buffers() is a "top-down" dirtying.
2456 *
Johannes Weiner2d6d7f92015-01-08 14:32:18 -08002457 * The caller must ensure this doesn't race with truncation. Most will simply
2458 * hold the page lock, but e.g. zap_pte_range() calls with the page mapped and
2459 * the pte lock held, which also locks out truncation.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002460 */
2461int __set_page_dirty_nobuffers(struct page *page)
2462{
Johannes Weiner62cccb82016-03-15 14:57:22 -07002463 lock_page_memcg(page);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002464 if (!TestSetPageDirty(page)) {
2465 struct address_space *mapping = page_mapping(page);
KOSAKI Motohiroa85d9df2014-02-06 12:04:24 -08002466 unsigned long flags;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002467
Greg Thelenc4843a72015-05-22 17:13:16 -04002468 if (!mapping) {
Johannes Weiner62cccb82016-03-15 14:57:22 -07002469 unlock_page_memcg(page);
Andrew Morton8c085402006-12-10 02:19:24 -08002470 return 1;
Greg Thelenc4843a72015-05-22 17:13:16 -04002471 }
Andrew Morton8c085402006-12-10 02:19:24 -08002472
KOSAKI Motohiroa85d9df2014-02-06 12:04:24 -08002473 spin_lock_irqsave(&mapping->tree_lock, flags);
Johannes Weiner2d6d7f92015-01-08 14:32:18 -08002474 BUG_ON(page_mapping(page) != mapping);
2475 WARN_ON_ONCE(!PagePrivate(page) && !PageUptodate(page));
Johannes Weiner62cccb82016-03-15 14:57:22 -07002476 account_page_dirtied(page, mapping);
Johannes Weiner2d6d7f92015-01-08 14:32:18 -08002477 radix_tree_tag_set(&mapping->page_tree, page_index(page),
2478 PAGECACHE_TAG_DIRTY);
KOSAKI Motohiroa85d9df2014-02-06 12:04:24 -08002479 spin_unlock_irqrestore(&mapping->tree_lock, flags);
Johannes Weiner62cccb82016-03-15 14:57:22 -07002480 unlock_page_memcg(page);
Greg Thelenc4843a72015-05-22 17:13:16 -04002481
Andrew Morton8c085402006-12-10 02:19:24 -08002482 if (mapping->host) {
2483 /* !PageAnon && !swapper_space */
2484 __mark_inode_dirty(mapping->host, I_DIRTY_PAGES);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002485 }
Andrew Morton4741c9f2006-03-24 03:18:11 -08002486 return 1;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002487 }
Johannes Weiner62cccb82016-03-15 14:57:22 -07002488 unlock_page_memcg(page);
Andrew Morton4741c9f2006-03-24 03:18:11 -08002489 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002490}
2491EXPORT_SYMBOL(__set_page_dirty_nobuffers);
2492
2493/*
Wu Fengguang2f800fb2011-08-08 15:22:00 -06002494 * Call this whenever redirtying a page, to de-account the dirty counters
2495 * (NR_DIRTIED, BDI_DIRTIED, tsk->nr_dirtied), so that they match the written
2496 * counters (NR_WRITTEN, BDI_WRITTEN) in long term. The mismatches will lead to
2497 * systematic errors in balanced_dirty_ratelimit and the dirty pages position
2498 * control.
2499 */
2500void account_page_redirty(struct page *page)
2501{
2502 struct address_space *mapping = page->mapping;
Tejun Heo91018132015-05-22 17:13:39 -04002503
Wu Fengguang2f800fb2011-08-08 15:22:00 -06002504 if (mapping && mapping_cap_account_dirty(mapping)) {
Tejun Heo682aa8e2015-05-28 14:50:53 -04002505 struct inode *inode = mapping->host;
2506 struct bdi_writeback *wb;
2507 bool locked;
Tejun Heo91018132015-05-22 17:13:39 -04002508
Tejun Heo682aa8e2015-05-28 14:50:53 -04002509 wb = unlocked_inode_to_wb_begin(inode, &locked);
Wu Fengguang2f800fb2011-08-08 15:22:00 -06002510 current->nr_dirtied--;
Mel Gormanc4a25632016-07-28 15:46:23 -07002511 dec_node_page_state(page, NR_DIRTIED);
Tejun Heo91018132015-05-22 17:13:39 -04002512 dec_wb_stat(wb, WB_DIRTIED);
Tejun Heo682aa8e2015-05-28 14:50:53 -04002513 unlocked_inode_to_wb_end(inode, locked);
Wu Fengguang2f800fb2011-08-08 15:22:00 -06002514 }
2515}
2516EXPORT_SYMBOL(account_page_redirty);
2517
2518/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07002519 * When a writepage implementation decides that it doesn't want to write this
2520 * page for some reason, it should redirty the locked page via
2521 * redirty_page_for_writepage() and it should then unlock the page and return 0
2522 */
2523int redirty_page_for_writepage(struct writeback_control *wbc, struct page *page)
2524{
Konstantin Khebnikov8d386332015-02-11 15:26:55 -08002525 int ret;
2526
Linus Torvalds1da177e2005-04-16 15:20:36 -07002527 wbc->pages_skipped++;
Konstantin Khebnikov8d386332015-02-11 15:26:55 -08002528 ret = __set_page_dirty_nobuffers(page);
Wu Fengguang2f800fb2011-08-08 15:22:00 -06002529 account_page_redirty(page);
Konstantin Khebnikov8d386332015-02-11 15:26:55 -08002530 return ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002531}
2532EXPORT_SYMBOL(redirty_page_for_writepage);
2533
2534/*
Wu Fengguang6746aff2009-09-16 11:50:14 +02002535 * Dirty a page.
2536 *
2537 * For pages with a mapping this should be done under the page lock
2538 * for the benefit of asynchronous memory errors who prefer a consistent
2539 * dirty state. This rule can be broken in some special cases,
2540 * but should be better not to.
2541 *
Linus Torvalds1da177e2005-04-16 15:20:36 -07002542 * If the mapping doesn't provide a set_page_dirty a_op, then
2543 * just fall through and assume that it wants buffer_heads.
2544 */
Nick Piggin1cf6e7d2009-02-18 14:48:18 -08002545int set_page_dirty(struct page *page)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002546{
2547 struct address_space *mapping = page_mapping(page);
2548
Kirill A. Shutemov800d8c62016-07-26 15:26:18 -07002549 page = compound_head(page);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002550 if (likely(mapping)) {
2551 int (*spd)(struct page *) = mapping->a_ops->set_page_dirty;
Minchan Kim278df9f2011-03-22 16:32:54 -07002552 /*
2553 * readahead/lru_deactivate_page could remain
2554 * PG_readahead/PG_reclaim due to race with end_page_writeback
2555 * About readahead, if the page is written, the flags would be
2556 * reset. So no problem.
2557 * About lru_deactivate_page, if the page is redirty, the flag
2558 * will be reset. So no problem. but if the page is used by readahead
2559 * it will confuse readahead and make it restart the size rampup
2560 * process. But it's a trivial problem.
2561 */
Naoya Horiguchia4bb3ec2015-04-15 16:13:17 -07002562 if (PageReclaim(page))
2563 ClearPageReclaim(page);
David Howells93614012006-09-30 20:45:40 +02002564#ifdef CONFIG_BLOCK
2565 if (!spd)
2566 spd = __set_page_dirty_buffers;
2567#endif
2568 return (*spd)(page);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002569 }
Andrew Morton4741c9f2006-03-24 03:18:11 -08002570 if (!PageDirty(page)) {
2571 if (!TestSetPageDirty(page))
2572 return 1;
2573 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002574 return 0;
2575}
2576EXPORT_SYMBOL(set_page_dirty);
2577
2578/*
2579 * set_page_dirty() is racy if the caller has no reference against
2580 * page->mapping->host, and if the page is unlocked. This is because another
2581 * CPU could truncate the page off the mapping and then free the mapping.
2582 *
2583 * Usually, the page _is_ locked, or the caller is a user-space process which
2584 * holds a reference on the inode by having an open file.
2585 *
2586 * In other cases, the page should be locked before running set_page_dirty().
2587 */
2588int set_page_dirty_lock(struct page *page)
2589{
2590 int ret;
2591
Jens Axboe7eaceac2011-03-10 08:52:07 +01002592 lock_page(page);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002593 ret = set_page_dirty(page);
2594 unlock_page(page);
2595 return ret;
2596}
2597EXPORT_SYMBOL(set_page_dirty_lock);
2598
2599/*
Tejun Heo11f81be2015-05-22 17:13:15 -04002600 * This cancels just the dirty bit on the kernel page itself, it does NOT
2601 * actually remove dirty bits on any mmap's that may be around. It also
2602 * leaves the page tagged dirty, so any sync activity will still find it on
2603 * the dirty lists, and in particular, clear_page_dirty_for_io() will still
2604 * look at the dirty bits in the VM.
2605 *
2606 * Doing this should *normally* only ever be done when a page is truncated,
2607 * and is not actually mapped anywhere at all. However, fs/buffer.c does
2608 * this when it notices that somebody has cleaned out all the buffers on a
2609 * page without actually doing it through the VM. Can you say "ext3 is
2610 * horribly ugly"? Thought you could.
2611 */
2612void cancel_dirty_page(struct page *page)
2613{
Greg Thelenc4843a72015-05-22 17:13:16 -04002614 struct address_space *mapping = page_mapping(page);
2615
2616 if (mapping_cap_account_dirty(mapping)) {
Tejun Heo682aa8e2015-05-28 14:50:53 -04002617 struct inode *inode = mapping->host;
2618 struct bdi_writeback *wb;
Tejun Heo682aa8e2015-05-28 14:50:53 -04002619 bool locked;
Greg Thelenc4843a72015-05-22 17:13:16 -04002620
Johannes Weiner62cccb82016-03-15 14:57:22 -07002621 lock_page_memcg(page);
Tejun Heo682aa8e2015-05-28 14:50:53 -04002622 wb = unlocked_inode_to_wb_begin(inode, &locked);
Greg Thelenc4843a72015-05-22 17:13:16 -04002623
2624 if (TestClearPageDirty(page))
Johannes Weiner62cccb82016-03-15 14:57:22 -07002625 account_page_cleaned(page, mapping, wb);
Greg Thelenc4843a72015-05-22 17:13:16 -04002626
Tejun Heo682aa8e2015-05-28 14:50:53 -04002627 unlocked_inode_to_wb_end(inode, locked);
Johannes Weiner62cccb82016-03-15 14:57:22 -07002628 unlock_page_memcg(page);
Greg Thelenc4843a72015-05-22 17:13:16 -04002629 } else {
2630 ClearPageDirty(page);
2631 }
Tejun Heo11f81be2015-05-22 17:13:15 -04002632}
2633EXPORT_SYMBOL(cancel_dirty_page);
2634
2635/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07002636 * Clear a page's dirty flag, while caring for dirty memory accounting.
2637 * Returns true if the page was previously dirty.
2638 *
2639 * This is for preparing to put the page under writeout. We leave the page
2640 * tagged as dirty in the radix tree so that a concurrent write-for-sync
2641 * can discover it via a PAGECACHE_TAG_DIRTY walk. The ->writepage
2642 * implementation will run either set_page_writeback() or set_page_dirty(),
2643 * at which stage we bring the page's dirty flag and radix-tree dirty tag
2644 * back into sync.
2645 *
2646 * This incoherency between the page's dirty flag and radix-tree tag is
2647 * unfortunate, but it only exists while the page is locked.
2648 */
2649int clear_page_dirty_for_io(struct page *page)
2650{
2651 struct address_space *mapping = page_mapping(page);
Greg Thelenc4843a72015-05-22 17:13:16 -04002652 int ret = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002653
Nick Piggin79352892007-07-19 01:47:22 -07002654 BUG_ON(!PageLocked(page));
2655
Linus Torvalds7658cc22006-12-29 10:00:58 -08002656 if (mapping && mapping_cap_account_dirty(mapping)) {
Tejun Heo682aa8e2015-05-28 14:50:53 -04002657 struct inode *inode = mapping->host;
2658 struct bdi_writeback *wb;
Tejun Heo682aa8e2015-05-28 14:50:53 -04002659 bool locked;
2660
Linus Torvalds7658cc22006-12-29 10:00:58 -08002661 /*
2662 * Yes, Virginia, this is indeed insane.
2663 *
2664 * We use this sequence to make sure that
2665 * (a) we account for dirty stats properly
2666 * (b) we tell the low-level filesystem to
2667 * mark the whole page dirty if it was
2668 * dirty in a pagetable. Only to then
2669 * (c) clean the page again and return 1 to
2670 * cause the writeback.
2671 *
2672 * This way we avoid all nasty races with the
2673 * dirty bit in multiple places and clearing
2674 * them concurrently from different threads.
2675 *
2676 * Note! Normally the "set_page_dirty(page)"
2677 * has no effect on the actual dirty bit - since
2678 * that will already usually be set. But we
2679 * need the side effects, and it can help us
2680 * avoid races.
2681 *
2682 * We basically use the page "master dirty bit"
2683 * as a serialization point for all the different
2684 * threads doing their things.
Linus Torvalds7658cc22006-12-29 10:00:58 -08002685 */
2686 if (page_mkclean(page))
2687 set_page_dirty(page);
Nick Piggin79352892007-07-19 01:47:22 -07002688 /*
2689 * We carefully synchronise fault handlers against
2690 * installing a dirty pte and marking the page dirty
Johannes Weiner2d6d7f92015-01-08 14:32:18 -08002691 * at this point. We do this by having them hold the
2692 * page lock while dirtying the page, and pages are
2693 * always locked coming in here, so we get the desired
2694 * exclusion.
Nick Piggin79352892007-07-19 01:47:22 -07002695 */
Tejun Heo682aa8e2015-05-28 14:50:53 -04002696 wb = unlocked_inode_to_wb_begin(inode, &locked);
Linus Torvalds7658cc22006-12-29 10:00:58 -08002697 if (TestClearPageDirty(page)) {
Johannes Weiner00f3ca22017-07-06 15:40:52 -07002698 dec_lruvec_page_state(page, NR_FILE_DIRTY);
Mel Gorman5a1c84b2016-07-28 15:47:31 -07002699 dec_zone_page_state(page, NR_ZONE_WRITE_PENDING);
Tejun Heo682aa8e2015-05-28 14:50:53 -04002700 dec_wb_stat(wb, WB_RECLAIMABLE);
Greg Thelenc4843a72015-05-22 17:13:16 -04002701 ret = 1;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002702 }
Tejun Heo682aa8e2015-05-28 14:50:53 -04002703 unlocked_inode_to_wb_end(inode, locked);
Greg Thelenc4843a72015-05-22 17:13:16 -04002704 return ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002705 }
Linus Torvalds7658cc22006-12-29 10:00:58 -08002706 return TestClearPageDirty(page);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002707}
Hans Reiser58bb01a2005-11-18 01:10:53 -08002708EXPORT_SYMBOL(clear_page_dirty_for_io);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002709
2710int test_clear_page_writeback(struct page *page)
2711{
2712 struct address_space *mapping = page_mapping(page);
Johannes Weiner739f79f2017-08-18 15:15:48 -07002713 struct mem_cgroup *memcg;
2714 struct lruvec *lruvec;
Johannes Weinerd7365e72014-10-29 14:50:48 -07002715 int ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002716
Johannes Weiner739f79f2017-08-18 15:15:48 -07002717 memcg = lock_page_memcg(page);
2718 lruvec = mem_cgroup_page_lruvec(page, page_pgdat(page));
Huang Ying371a0962016-10-07 16:59:30 -07002719 if (mapping && mapping_use_writeback_tags(mapping)) {
Tejun Heo91018132015-05-22 17:13:39 -04002720 struct inode *inode = mapping->host;
2721 struct backing_dev_info *bdi = inode_to_bdi(inode);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002722 unsigned long flags;
2723
Nick Piggin19fd6232008-07-25 19:45:32 -07002724 spin_lock_irqsave(&mapping->tree_lock, flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002725 ret = TestClearPageWriteback(page);
Peter Zijlstra69cb51d2007-10-16 23:25:48 -07002726 if (ret) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07002727 radix_tree_tag_clear(&mapping->page_tree,
2728 page_index(page),
2729 PAGECACHE_TAG_WRITEBACK);
Miklos Szeredie4ad08f2008-04-30 00:54:37 -07002730 if (bdi_cap_account_writeback(bdi)) {
Tejun Heo91018132015-05-22 17:13:39 -04002731 struct bdi_writeback *wb = inode_to_wb(inode);
2732
Nikolay Borisov3e8f3992017-07-12 14:37:51 -07002733 dec_wb_stat(wb, WB_WRITEBACK);
Tejun Heo91018132015-05-22 17:13:39 -04002734 __wb_writeout_inc(wb);
Peter Zijlstra04fbfdc2007-10-16 23:25:50 -07002735 }
Peter Zijlstra69cb51d2007-10-16 23:25:48 -07002736 }
Dave Chinner6c60d2b2016-07-26 15:21:50 -07002737
2738 if (mapping->host && !mapping_tagged(mapping,
2739 PAGECACHE_TAG_WRITEBACK))
2740 sb_clear_inode_writeback(mapping->host);
2741
Nick Piggin19fd6232008-07-25 19:45:32 -07002742 spin_unlock_irqrestore(&mapping->tree_lock, flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002743 } else {
2744 ret = TestClearPageWriteback(page);
2745 }
Johannes Weiner739f79f2017-08-18 15:15:48 -07002746 /*
2747 * NOTE: Page might be free now! Writeback doesn't hold a page
2748 * reference on its own, it relies on truncation to wait for
2749 * the clearing of PG_writeback. The below can only access
2750 * page state that is static across allocation cycles.
2751 */
Wu Fengguang99b12e32011-07-25 17:12:37 -07002752 if (ret) {
Johannes Weiner739f79f2017-08-18 15:15:48 -07002753 dec_lruvec_state(lruvec, NR_WRITEBACK);
Mel Gorman5a1c84b2016-07-28 15:47:31 -07002754 dec_zone_page_state(page, NR_ZONE_WRITE_PENDING);
Mel Gormanc4a25632016-07-28 15:46:23 -07002755 inc_node_page_state(page, NR_WRITTEN);
Wu Fengguang99b12e32011-07-25 17:12:37 -07002756 }
Johannes Weiner739f79f2017-08-18 15:15:48 -07002757 __unlock_page_memcg(memcg);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002758 return ret;
2759}
2760
Namjae Jeon1c8349a2014-05-12 08:12:25 -04002761int __test_set_page_writeback(struct page *page, bool keep_write)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002762{
2763 struct address_space *mapping = page_mapping(page);
Johannes Weinerd7365e72014-10-29 14:50:48 -07002764 int ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002765
Johannes Weiner62cccb82016-03-15 14:57:22 -07002766 lock_page_memcg(page);
Huang Ying371a0962016-10-07 16:59:30 -07002767 if (mapping && mapping_use_writeback_tags(mapping)) {
Tejun Heo91018132015-05-22 17:13:39 -04002768 struct inode *inode = mapping->host;
2769 struct backing_dev_info *bdi = inode_to_bdi(inode);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002770 unsigned long flags;
2771
Nick Piggin19fd6232008-07-25 19:45:32 -07002772 spin_lock_irqsave(&mapping->tree_lock, flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002773 ret = TestSetPageWriteback(page);
Peter Zijlstra69cb51d2007-10-16 23:25:48 -07002774 if (!ret) {
Dave Chinner6c60d2b2016-07-26 15:21:50 -07002775 bool on_wblist;
2776
2777 on_wblist = mapping_tagged(mapping,
2778 PAGECACHE_TAG_WRITEBACK);
2779
Linus Torvalds1da177e2005-04-16 15:20:36 -07002780 radix_tree_tag_set(&mapping->page_tree,
2781 page_index(page),
2782 PAGECACHE_TAG_WRITEBACK);
Miklos Szeredie4ad08f2008-04-30 00:54:37 -07002783 if (bdi_cap_account_writeback(bdi))
Nikolay Borisov3e8f3992017-07-12 14:37:51 -07002784 inc_wb_stat(inode_to_wb(inode), WB_WRITEBACK);
Dave Chinner6c60d2b2016-07-26 15:21:50 -07002785
2786 /*
2787 * We can come through here when swapping anonymous
2788 * pages, so we don't necessarily have an inode to track
2789 * for sync.
2790 */
2791 if (mapping->host && !on_wblist)
2792 sb_mark_inode_writeback(mapping->host);
Peter Zijlstra69cb51d2007-10-16 23:25:48 -07002793 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002794 if (!PageDirty(page))
2795 radix_tree_tag_clear(&mapping->page_tree,
2796 page_index(page),
2797 PAGECACHE_TAG_DIRTY);
Namjae Jeon1c8349a2014-05-12 08:12:25 -04002798 if (!keep_write)
2799 radix_tree_tag_clear(&mapping->page_tree,
2800 page_index(page),
2801 PAGECACHE_TAG_TOWRITE);
Nick Piggin19fd6232008-07-25 19:45:32 -07002802 spin_unlock_irqrestore(&mapping->tree_lock, flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002803 } else {
2804 ret = TestSetPageWriteback(page);
2805 }
Johannes Weiner3a3c02e2014-10-29 14:50:46 -07002806 if (!ret) {
Johannes Weiner00f3ca22017-07-06 15:40:52 -07002807 inc_lruvec_page_state(page, NR_WRITEBACK);
Mel Gorman5a1c84b2016-07-28 15:47:31 -07002808 inc_zone_page_state(page, NR_ZONE_WRITE_PENDING);
Johannes Weiner3a3c02e2014-10-29 14:50:46 -07002809 }
Johannes Weiner62cccb82016-03-15 14:57:22 -07002810 unlock_page_memcg(page);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002811 return ret;
2812
2813}
Namjae Jeon1c8349a2014-05-12 08:12:25 -04002814EXPORT_SYMBOL(__test_set_page_writeback);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002815
2816/*
Nick Piggin00128182007-10-16 01:24:40 -07002817 * Return true if any of the pages in the mapping are marked with the
Linus Torvalds1da177e2005-04-16 15:20:36 -07002818 * passed tag.
2819 */
2820int mapping_tagged(struct address_space *mapping, int tag)
2821{
Konstantin Khlebnikov72c47832011-07-25 17:12:31 -07002822 return radix_tree_tagged(&mapping->page_tree, tag);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002823}
2824EXPORT_SYMBOL(mapping_tagged);
Darrick J. Wong1d1d1a72013-02-21 16:42:51 -08002825
2826/**
2827 * wait_for_stable_page() - wait for writeback to finish, if necessary.
2828 * @page: The page to wait on.
2829 *
2830 * This function determines if the given page is related to a backing device
2831 * that requires page contents to be held stable during writeback. If so, then
2832 * it will wait for any pending writeback to complete.
2833 */
2834void wait_for_stable_page(struct page *page)
2835{
Christoph Hellwigde1414a2015-01-14 10:42:36 +01002836 if (bdi_cap_stable_pages_required(inode_to_bdi(page->mapping->host)))
2837 wait_on_page_writeback(page);
Darrick J. Wong1d1d1a72013-02-21 16:42:51 -08002838}
2839EXPORT_SYMBOL_GPL(wait_for_stable_page);