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Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * fs/fs-writeback.c
3 *
4 * Copyright (C) 2002, Linus Torvalds.
5 *
6 * Contains all the functions related to writing back and waiting
7 * upon dirty inodes against superblocks, and writing back dirty
8 * pages against inodes. ie: data writeback. Writeout of the
9 * inode itself is not handled here.
10 *
Francois Camie1f8e872008-10-15 22:01:59 -070011 * 10Apr2002 Andrew Morton
Linus Torvalds1da177e2005-04-16 15:20:36 -070012 * Split out of fs/inode.c
13 * Additions for address_space-based writeback
14 */
15
16#include <linux/kernel.h>
Paul Gortmaker630d9c42011-11-16 23:57:37 -050017#include <linux/export.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070018#include <linux/spinlock.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090019#include <linux/slab.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070020#include <linux/sched.h>
21#include <linux/fs.h>
22#include <linux/mm.h>
Wu Fengguangbc31b862012-01-07 20:41:55 -060023#include <linux/pagemap.h>
Jens Axboe03ba3782009-09-09 09:08:54 +020024#include <linux/kthread.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070025#include <linux/writeback.h>
26#include <linux/blkdev.h>
27#include <linux/backing-dev.h>
Dave Chinner455b2862010-07-07 13:24:06 +100028#include <linux/tracepoint.h>
Al Viro719ea2f2013-09-29 11:24:49 -040029#include <linux/device.h>
Tejun Heo21c63212015-05-28 14:50:49 -040030#include <linux/memcontrol.h>
David Howells07f3f052006-09-30 20:52:18 +020031#include "internal.h"
Linus Torvalds1da177e2005-04-16 15:20:36 -070032
Jens Axboed0bceac2009-05-18 08:20:32 +020033/*
Wu Fengguangbc31b862012-01-07 20:41:55 -060034 * 4MB minimal write chunk size
35 */
36#define MIN_WRITEBACK_PAGES (4096UL >> (PAGE_CACHE_SHIFT - 10))
37
Tejun Heocc395d72015-05-22 17:13:58 -040038struct wb_completion {
39 atomic_t cnt;
40};
41
Wu Fengguangbc31b862012-01-07 20:41:55 -060042/*
Jens Axboec4a77a62009-09-16 15:18:25 +020043 * Passed into wb_writeback(), essentially a subset of writeback_control
44 */
Christoph Hellwig83ba7b02010-07-06 08:59:53 +020045struct wb_writeback_work {
Jens Axboec4a77a62009-09-16 15:18:25 +020046 long nr_pages;
47 struct super_block *sb;
Jan Kara0dc83bd2014-02-21 11:19:04 +010048 unsigned long *older_than_this;
Jens Axboec4a77a62009-09-16 15:18:25 +020049 enum writeback_sync_modes sync_mode;
Wu Fengguang6e6938b2010-06-06 10:38:15 -060050 unsigned int tagged_writepages:1;
H Hartley Sweeten52957fe2010-04-01 20:36:30 -050051 unsigned int for_kupdate:1;
52 unsigned int range_cyclic:1;
53 unsigned int for_background:1;
Dave Chinner7747bd42013-07-02 22:38:35 +100054 unsigned int for_sync:1; /* sync(2) WB_SYNC_ALL writeback */
Tejun Heoac7b19a2015-05-22 17:13:57 -040055 unsigned int auto_free:1; /* free on completion */
Curt Wohlgemuth0e175a12011-10-07 21:54:10 -060056 enum wb_reason reason; /* why was writeback initiated? */
Jens Axboec4a77a62009-09-16 15:18:25 +020057
Jens Axboe8010c3b2009-09-15 20:04:57 +020058 struct list_head list; /* pending work list */
Tejun Heocc395d72015-05-22 17:13:58 -040059 struct wb_completion *done; /* set if the caller waits */
Jens Axboe03ba3782009-09-09 09:08:54 +020060};
61
Theodore Ts'oa2f48702015-03-17 12:23:19 -040062/*
Tejun Heocc395d72015-05-22 17:13:58 -040063 * If one wants to wait for one or more wb_writeback_works, each work's
64 * ->done should be set to a wb_completion defined using the following
65 * macro. Once all work items are issued with wb_queue_work(), the caller
66 * can wait for the completion of all using wb_wait_for_completion(). Work
67 * items which are waited upon aren't freed automatically on completion.
68 */
69#define DEFINE_WB_COMPLETION_ONSTACK(cmpl) \
70 struct wb_completion cmpl = { \
71 .cnt = ATOMIC_INIT(1), \
72 }
73
74
75/*
Theodore Ts'oa2f48702015-03-17 12:23:19 -040076 * If an inode is constantly having its pages dirtied, but then the
77 * updates stop dirtytime_expire_interval seconds in the past, it's
78 * possible for the worst case time between when an inode has its
79 * timestamps updated and when they finally get written out to be two
80 * dirtytime_expire_intervals. We set the default to 12 hours (in
81 * seconds), which means most of the time inodes will have their
82 * timestamps written to disk after 12 hours, but in the worst case a
83 * few inodes might not their timestamps updated for 24 hours.
84 */
85unsigned int dirtytime_expire_interval = 12 * 60 * 60;
86
Nick Piggin7ccf19a2010-10-21 11:49:30 +110087static inline struct inode *wb_inode(struct list_head *head)
88{
Dave Chinnerc7f54082015-03-04 14:07:22 -050089 return list_entry(head, struct inode, i_io_list);
Nick Piggin7ccf19a2010-10-21 11:49:30 +110090}
91
Wu Fengguang15eb77a2012-01-17 11:18:56 -060092/*
93 * Include the creation of the trace points after defining the
94 * wb_writeback_work structure and inline functions so that the definition
95 * remains local to this file.
96 */
97#define CREATE_TRACE_POINTS
98#include <trace/events/writeback.h>
99
Steven Whitehouse774016b2014-02-06 15:47:47 +0000100EXPORT_TRACEPOINT_SYMBOL_GPL(wbc_writepage);
101
Tejun Heod6c10f12015-05-22 17:13:45 -0400102static bool wb_io_lists_populated(struct bdi_writeback *wb)
103{
104 if (wb_has_dirty_io(wb)) {
105 return false;
106 } else {
107 set_bit(WB_has_dirty_io, &wb->state);
Tejun Heo95a46c62015-05-22 17:13:47 -0400108 WARN_ON_ONCE(!wb->avg_write_bandwidth);
Tejun Heo766a9d62015-05-22 17:13:46 -0400109 atomic_long_add(wb->avg_write_bandwidth,
110 &wb->bdi->tot_write_bandwidth);
Tejun Heod6c10f12015-05-22 17:13:45 -0400111 return true;
112 }
113}
114
115static void wb_io_lists_depopulated(struct bdi_writeback *wb)
116{
117 if (wb_has_dirty_io(wb) && list_empty(&wb->b_dirty) &&
Tejun Heo766a9d62015-05-22 17:13:46 -0400118 list_empty(&wb->b_io) && list_empty(&wb->b_more_io)) {
Tejun Heod6c10f12015-05-22 17:13:45 -0400119 clear_bit(WB_has_dirty_io, &wb->state);
Tejun Heo95a46c62015-05-22 17:13:47 -0400120 WARN_ON_ONCE(atomic_long_sub_return(wb->avg_write_bandwidth,
121 &wb->bdi->tot_write_bandwidth) < 0);
Tejun Heo766a9d62015-05-22 17:13:46 -0400122 }
Tejun Heod6c10f12015-05-22 17:13:45 -0400123}
124
125/**
Dave Chinnerc7f54082015-03-04 14:07:22 -0500126 * inode_io_list_move_locked - move an inode onto a bdi_writeback IO list
Tejun Heod6c10f12015-05-22 17:13:45 -0400127 * @inode: inode to be moved
128 * @wb: target bdi_writeback
129 * @head: one of @wb->b_{dirty|io|more_io}
130 *
Dave Chinnerc7f54082015-03-04 14:07:22 -0500131 * Move @inode->i_io_list to @list of @wb and set %WB_has_dirty_io.
Tejun Heod6c10f12015-05-22 17:13:45 -0400132 * Returns %true if @inode is the first occupant of the !dirty_time IO
133 * lists; otherwise, %false.
134 */
Dave Chinnerc7f54082015-03-04 14:07:22 -0500135static bool inode_io_list_move_locked(struct inode *inode,
Tejun Heod6c10f12015-05-22 17:13:45 -0400136 struct bdi_writeback *wb,
137 struct list_head *head)
138{
139 assert_spin_locked(&wb->list_lock);
140
Dave Chinnerc7f54082015-03-04 14:07:22 -0500141 list_move(&inode->i_io_list, head);
Tejun Heod6c10f12015-05-22 17:13:45 -0400142
143 /* dirty_time doesn't count as dirty_io until expiration */
144 if (head != &wb->b_dirty_time)
145 return wb_io_lists_populated(wb);
146
147 wb_io_lists_depopulated(wb);
148 return false;
149}
150
151/**
Dave Chinnerc7f54082015-03-04 14:07:22 -0500152 * inode_io_list_del_locked - remove an inode from its bdi_writeback IO list
Tejun Heod6c10f12015-05-22 17:13:45 -0400153 * @inode: inode to be removed
154 * @wb: bdi_writeback @inode is being removed from
155 *
156 * Remove @inode which may be on one of @wb->b_{dirty|io|more_io} lists and
157 * clear %WB_has_dirty_io if all are empty afterwards.
158 */
Dave Chinnerc7f54082015-03-04 14:07:22 -0500159static void inode_io_list_del_locked(struct inode *inode,
Tejun Heod6c10f12015-05-22 17:13:45 -0400160 struct bdi_writeback *wb)
161{
162 assert_spin_locked(&wb->list_lock);
163
Dave Chinnerc7f54082015-03-04 14:07:22 -0500164 list_del_init(&inode->i_io_list);
Tejun Heod6c10f12015-05-22 17:13:45 -0400165 wb_io_lists_depopulated(wb);
166}
167
Tejun Heof0054bb2015-05-22 17:13:30 -0400168static void wb_wakeup(struct bdi_writeback *wb)
Jan Kara5acda9d2014-04-03 14:46:23 -0700169{
Tejun Heof0054bb2015-05-22 17:13:30 -0400170 spin_lock_bh(&wb->work_lock);
171 if (test_bit(WB_registered, &wb->state))
172 mod_delayed_work(bdi_wq, &wb->dwork, 0);
173 spin_unlock_bh(&wb->work_lock);
Jan Kara5acda9d2014-04-03 14:46:23 -0700174}
175
Tejun Heof0054bb2015-05-22 17:13:30 -0400176static void wb_queue_work(struct bdi_writeback *wb,
177 struct wb_writeback_work *work)
Jan Kara65850272011-01-13 15:45:44 -0800178{
Tejun Heo5634cc22015-08-18 14:54:56 -0700179 trace_writeback_queue(wb, work);
Jan Kara65850272011-01-13 15:45:44 -0800180
Tejun Heof0054bb2015-05-22 17:13:30 -0400181 spin_lock_bh(&wb->work_lock);
Tejun Heo8a1270c2015-08-18 14:54:53 -0700182 if (!test_bit(WB_registered, &wb->state))
Jan Kara5acda9d2014-04-03 14:46:23 -0700183 goto out_unlock;
Tejun Heocc395d72015-05-22 17:13:58 -0400184 if (work->done)
185 atomic_inc(&work->done->cnt);
Tejun Heof0054bb2015-05-22 17:13:30 -0400186 list_add_tail(&work->list, &wb->work_list);
187 mod_delayed_work(bdi_wq, &wb->dwork, 0);
Jan Kara5acda9d2014-04-03 14:46:23 -0700188out_unlock:
Tejun Heof0054bb2015-05-22 17:13:30 -0400189 spin_unlock_bh(&wb->work_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700190}
191
Tejun Heocc395d72015-05-22 17:13:58 -0400192/**
193 * wb_wait_for_completion - wait for completion of bdi_writeback_works
194 * @bdi: bdi work items were issued to
195 * @done: target wb_completion
196 *
197 * Wait for one or more work items issued to @bdi with their ->done field
198 * set to @done, which should have been defined with
199 * DEFINE_WB_COMPLETION_ONSTACK(). This function returns after all such
200 * work items are completed. Work items which are waited upon aren't freed
201 * automatically on completion.
202 */
203static void wb_wait_for_completion(struct backing_dev_info *bdi,
204 struct wb_completion *done)
205{
206 atomic_dec(&done->cnt); /* put down the initial count */
207 wait_event(bdi->wb_waitq, !atomic_read(&done->cnt));
208}
209
Tejun Heo703c2702015-05-22 17:13:44 -0400210#ifdef CONFIG_CGROUP_WRITEBACK
211
Tejun Heo2a814902015-05-28 14:50:51 -0400212/* parameters for foreign inode detection, see wb_detach_inode() */
213#define WB_FRN_TIME_SHIFT 13 /* 1s = 2^13, upto 8 secs w/ 16bit */
214#define WB_FRN_TIME_AVG_SHIFT 3 /* avg = avg * 7/8 + new * 1/8 */
215#define WB_FRN_TIME_CUT_DIV 2 /* ignore rounds < avg / 2 */
216#define WB_FRN_TIME_PERIOD (2 * (1 << WB_FRN_TIME_SHIFT)) /* 2s */
217
218#define WB_FRN_HIST_SLOTS 16 /* inode->i_wb_frn_history is 16bit */
219#define WB_FRN_HIST_UNIT (WB_FRN_TIME_PERIOD / WB_FRN_HIST_SLOTS)
220 /* each slot's duration is 2s / 16 */
221#define WB_FRN_HIST_THR_SLOTS (WB_FRN_HIST_SLOTS / 2)
222 /* if foreign slots >= 8, switch */
223#define WB_FRN_HIST_MAX_SLOTS (WB_FRN_HIST_THR_SLOTS / 2 + 1)
224 /* one round can affect upto 5 slots */
225
Tejun Heoc5cbbec2016-02-29 18:28:53 -0500226static atomic_t isw_nr_in_flight = ATOMIC_INIT(0);
227static struct workqueue_struct *isw_wq;
228
Tejun Heo21c63212015-05-28 14:50:49 -0400229void __inode_attach_wb(struct inode *inode, struct page *page)
230{
231 struct backing_dev_info *bdi = inode_to_bdi(inode);
232 struct bdi_writeback *wb = NULL;
233
234 if (inode_cgwb_enabled(inode)) {
235 struct cgroup_subsys_state *memcg_css;
236
237 if (page) {
238 memcg_css = mem_cgroup_css_from_page(page);
239 wb = wb_get_create(bdi, memcg_css, GFP_ATOMIC);
240 } else {
241 /* must pin memcg_css, see wb_get_create() */
242 memcg_css = task_get_css(current, memory_cgrp_id);
243 wb = wb_get_create(bdi, memcg_css, GFP_ATOMIC);
244 css_put(memcg_css);
245 }
246 }
247
248 if (!wb)
249 wb = &bdi->wb;
250
251 /*
252 * There may be multiple instances of this function racing to
253 * update the same inode. Use cmpxchg() to tell the winner.
254 */
255 if (unlikely(cmpxchg(&inode->i_wb, NULL, wb)))
256 wb_put(wb);
257}
258
Tejun Heo703c2702015-05-22 17:13:44 -0400259/**
Tejun Heo87e1d782015-05-28 14:50:52 -0400260 * locked_inode_to_wb_and_lock_list - determine a locked inode's wb and lock it
261 * @inode: inode of interest with i_lock held
262 *
263 * Returns @inode's wb with its list_lock held. @inode->i_lock must be
264 * held on entry and is released on return. The returned wb is guaranteed
265 * to stay @inode's associated wb until its list_lock is released.
266 */
267static struct bdi_writeback *
268locked_inode_to_wb_and_lock_list(struct inode *inode)
269 __releases(&inode->i_lock)
270 __acquires(&wb->list_lock)
271{
272 while (true) {
273 struct bdi_writeback *wb = inode_to_wb(inode);
274
275 /*
276 * inode_to_wb() association is protected by both
277 * @inode->i_lock and @wb->list_lock but list_lock nests
278 * outside i_lock. Drop i_lock and verify that the
279 * association hasn't changed after acquiring list_lock.
280 */
281 wb_get(wb);
282 spin_unlock(&inode->i_lock);
283 spin_lock(&wb->list_lock);
Tejun Heo87e1d782015-05-28 14:50:52 -0400284
Tejun Heoaaa2cac2015-05-28 14:50:55 -0400285 /* i_wb may have changed inbetween, can't use inode_to_wb() */
Tejun Heod78ddcf2016-03-18 13:50:03 -0400286 if (likely(wb == inode->i_wb)) {
287 wb_put(wb); /* @inode already has ref */
288 return wb;
289 }
Tejun Heo87e1d782015-05-28 14:50:52 -0400290
291 spin_unlock(&wb->list_lock);
Tejun Heod78ddcf2016-03-18 13:50:03 -0400292 wb_put(wb);
Tejun Heo87e1d782015-05-28 14:50:52 -0400293 cpu_relax();
294 spin_lock(&inode->i_lock);
295 }
296}
297
298/**
299 * inode_to_wb_and_lock_list - determine an inode's wb and lock it
300 * @inode: inode of interest
301 *
302 * Same as locked_inode_to_wb_and_lock_list() but @inode->i_lock isn't held
303 * on entry.
304 */
305static struct bdi_writeback *inode_to_wb_and_lock_list(struct inode *inode)
306 __acquires(&wb->list_lock)
307{
308 spin_lock(&inode->i_lock);
309 return locked_inode_to_wb_and_lock_list(inode);
310}
311
Tejun Heo682aa8e2015-05-28 14:50:53 -0400312struct inode_switch_wbs_context {
313 struct inode *inode;
314 struct bdi_writeback *new_wb;
315
316 struct rcu_head rcu_head;
317 struct work_struct work;
318};
319
320static void inode_switch_wbs_work_fn(struct work_struct *work)
321{
322 struct inode_switch_wbs_context *isw =
323 container_of(work, struct inode_switch_wbs_context, work);
324 struct inode *inode = isw->inode;
Tejun Heod10c8092015-05-28 14:50:56 -0400325 struct address_space *mapping = inode->i_mapping;
326 struct bdi_writeback *old_wb = inode->i_wb;
Tejun Heo682aa8e2015-05-28 14:50:53 -0400327 struct bdi_writeback *new_wb = isw->new_wb;
Tejun Heod10c8092015-05-28 14:50:56 -0400328 struct radix_tree_iter iter;
329 bool switched = false;
330 void **slot;
Tejun Heo682aa8e2015-05-28 14:50:53 -0400331
332 /*
333 * By the time control reaches here, RCU grace period has passed
334 * since I_WB_SWITCH assertion and all wb stat update transactions
335 * between unlocked_inode_to_wb_begin/end() are guaranteed to be
336 * synchronizing against mapping->tree_lock.
Tejun Heod10c8092015-05-28 14:50:56 -0400337 *
338 * Grabbing old_wb->list_lock, inode->i_lock and mapping->tree_lock
339 * gives us exclusion against all wb related operations on @inode
340 * including IO list manipulations and stat updates.
Tejun Heo682aa8e2015-05-28 14:50:53 -0400341 */
Tejun Heod10c8092015-05-28 14:50:56 -0400342 if (old_wb < new_wb) {
343 spin_lock(&old_wb->list_lock);
344 spin_lock_nested(&new_wb->list_lock, SINGLE_DEPTH_NESTING);
345 } else {
346 spin_lock(&new_wb->list_lock);
347 spin_lock_nested(&old_wb->list_lock, SINGLE_DEPTH_NESTING);
348 }
Tejun Heo682aa8e2015-05-28 14:50:53 -0400349 spin_lock(&inode->i_lock);
Tejun Heod10c8092015-05-28 14:50:56 -0400350 spin_lock_irq(&mapping->tree_lock);
Tejun Heo682aa8e2015-05-28 14:50:53 -0400351
Tejun Heod10c8092015-05-28 14:50:56 -0400352 /*
353 * Once I_FREEING is visible under i_lock, the eviction path owns
Dave Chinnerc7f54082015-03-04 14:07:22 -0500354 * the inode and we shouldn't modify ->i_io_list.
Tejun Heod10c8092015-05-28 14:50:56 -0400355 */
356 if (unlikely(inode->i_state & I_FREEING))
357 goto skip_switch;
358
359 /*
360 * Count and transfer stats. Note that PAGECACHE_TAG_DIRTY points
361 * to possibly dirty pages while PAGECACHE_TAG_WRITEBACK points to
362 * pages actually under underwriteback.
363 */
364 radix_tree_for_each_tagged(slot, &mapping->page_tree, &iter, 0,
365 PAGECACHE_TAG_DIRTY) {
366 struct page *page = radix_tree_deref_slot_protected(slot,
367 &mapping->tree_lock);
368 if (likely(page) && PageDirty(page)) {
369 __dec_wb_stat(old_wb, WB_RECLAIMABLE);
370 __inc_wb_stat(new_wb, WB_RECLAIMABLE);
371 }
372 }
373
374 radix_tree_for_each_tagged(slot, &mapping->page_tree, &iter, 0,
375 PAGECACHE_TAG_WRITEBACK) {
376 struct page *page = radix_tree_deref_slot_protected(slot,
377 &mapping->tree_lock);
378 if (likely(page)) {
379 WARN_ON_ONCE(!PageWriteback(page));
380 __dec_wb_stat(old_wb, WB_WRITEBACK);
381 __inc_wb_stat(new_wb, WB_WRITEBACK);
382 }
383 }
384
385 wb_get(new_wb);
386
387 /*
388 * Transfer to @new_wb's IO list if necessary. The specific list
389 * @inode was on is ignored and the inode is put on ->b_dirty which
390 * is always correct including from ->b_dirty_time. The transfer
391 * preserves @inode->dirtied_when ordering.
392 */
Dave Chinnerc7f54082015-03-04 14:07:22 -0500393 if (!list_empty(&inode->i_io_list)) {
Tejun Heod10c8092015-05-28 14:50:56 -0400394 struct inode *pos;
395
Dave Chinnerc7f54082015-03-04 14:07:22 -0500396 inode_io_list_del_locked(inode, old_wb);
Tejun Heod10c8092015-05-28 14:50:56 -0400397 inode->i_wb = new_wb;
Dave Chinnerc7f54082015-03-04 14:07:22 -0500398 list_for_each_entry(pos, &new_wb->b_dirty, i_io_list)
Tejun Heod10c8092015-05-28 14:50:56 -0400399 if (time_after_eq(inode->dirtied_when,
400 pos->dirtied_when))
401 break;
Dave Chinnerc7f54082015-03-04 14:07:22 -0500402 inode_io_list_move_locked(inode, new_wb, pos->i_io_list.prev);
Tejun Heod10c8092015-05-28 14:50:56 -0400403 } else {
404 inode->i_wb = new_wb;
405 }
406
407 /* ->i_wb_frn updates may race wbc_detach_inode() but doesn't matter */
Tejun Heo682aa8e2015-05-28 14:50:53 -0400408 inode->i_wb_frn_winner = 0;
409 inode->i_wb_frn_avg_time = 0;
410 inode->i_wb_frn_history = 0;
Tejun Heod10c8092015-05-28 14:50:56 -0400411 switched = true;
412skip_switch:
Tejun Heo682aa8e2015-05-28 14:50:53 -0400413 /*
414 * Paired with load_acquire in unlocked_inode_to_wb_begin() and
415 * ensures that the new wb is visible if they see !I_WB_SWITCH.
416 */
417 smp_store_release(&inode->i_state, inode->i_state & ~I_WB_SWITCH);
418
Tejun Heod10c8092015-05-28 14:50:56 -0400419 spin_unlock_irq(&mapping->tree_lock);
Tejun Heo682aa8e2015-05-28 14:50:53 -0400420 spin_unlock(&inode->i_lock);
Tejun Heod10c8092015-05-28 14:50:56 -0400421 spin_unlock(&new_wb->list_lock);
422 spin_unlock(&old_wb->list_lock);
423
424 if (switched) {
425 wb_wakeup(new_wb);
426 wb_put(old_wb);
427 }
428 wb_put(new_wb);
Tejun Heo682aa8e2015-05-28 14:50:53 -0400429
430 iput(inode);
Tejun Heo682aa8e2015-05-28 14:50:53 -0400431 kfree(isw);
Tejun Heoc5cbbec2016-02-29 18:28:53 -0500432
433 atomic_dec(&isw_nr_in_flight);
Tejun Heo682aa8e2015-05-28 14:50:53 -0400434}
435
436static void inode_switch_wbs_rcu_fn(struct rcu_head *rcu_head)
437{
438 struct inode_switch_wbs_context *isw = container_of(rcu_head,
439 struct inode_switch_wbs_context, rcu_head);
440
441 /* needs to grab bh-unsafe locks, bounce to work item */
442 INIT_WORK(&isw->work, inode_switch_wbs_work_fn);
Tejun Heoc5cbbec2016-02-29 18:28:53 -0500443 queue_work(isw_wq, &isw->work);
Tejun Heo682aa8e2015-05-28 14:50:53 -0400444}
445
446/**
447 * inode_switch_wbs - change the wb association of an inode
448 * @inode: target inode
449 * @new_wb_id: ID of the new wb
450 *
451 * Switch @inode's wb association to the wb identified by @new_wb_id. The
452 * switching is performed asynchronously and may fail silently.
453 */
454static void inode_switch_wbs(struct inode *inode, int new_wb_id)
455{
456 struct backing_dev_info *bdi = inode_to_bdi(inode);
457 struct cgroup_subsys_state *memcg_css;
458 struct inode_switch_wbs_context *isw;
459
460 /* noop if seems to be already in progress */
461 if (inode->i_state & I_WB_SWITCH)
462 return;
463
464 isw = kzalloc(sizeof(*isw), GFP_ATOMIC);
465 if (!isw)
466 return;
467
468 /* find and pin the new wb */
469 rcu_read_lock();
470 memcg_css = css_from_id(new_wb_id, &memory_cgrp_subsys);
471 if (memcg_css)
472 isw->new_wb = wb_get_create(bdi, memcg_css, GFP_ATOMIC);
473 rcu_read_unlock();
474 if (!isw->new_wb)
475 goto out_free;
476
477 /* while holding I_WB_SWITCH, no one else can update the association */
478 spin_lock(&inode->i_lock);
Tejun Heoc5cbbec2016-02-29 18:28:53 -0500479 if (!(inode->i_sb->s_flags & MS_ACTIVE) ||
480 inode->i_state & (I_WB_SWITCH | I_FREEING) ||
481 inode_to_wb(inode) == isw->new_wb) {
482 spin_unlock(&inode->i_lock);
483 goto out_free;
484 }
Tejun Heo682aa8e2015-05-28 14:50:53 -0400485 inode->i_state |= I_WB_SWITCH;
486 spin_unlock(&inode->i_lock);
487
488 ihold(inode);
489 isw->inode = inode;
490
Tejun Heoc5cbbec2016-02-29 18:28:53 -0500491 atomic_inc(&isw_nr_in_flight);
492
Tejun Heo682aa8e2015-05-28 14:50:53 -0400493 /*
494 * In addition to synchronizing among switchers, I_WB_SWITCH tells
495 * the RCU protected stat update paths to grab the mapping's
496 * tree_lock so that stat transfer can synchronize against them.
497 * Let's continue after I_WB_SWITCH is guaranteed to be visible.
498 */
499 call_rcu(&isw->rcu_head, inode_switch_wbs_rcu_fn);
500 return;
501
502out_free:
503 if (isw->new_wb)
504 wb_put(isw->new_wb);
505 kfree(isw);
506}
507
Tejun Heo87e1d782015-05-28 14:50:52 -0400508/**
Tejun Heob16b1de2015-06-02 08:39:48 -0600509 * wbc_attach_and_unlock_inode - associate wbc with target inode and unlock it
510 * @wbc: writeback_control of interest
511 * @inode: target inode
512 *
513 * @inode is locked and about to be written back under the control of @wbc.
514 * Record @inode's writeback context into @wbc and unlock the i_lock. On
515 * writeback completion, wbc_detach_inode() should be called. This is used
516 * to track the cgroup writeback context.
517 */
518void wbc_attach_and_unlock_inode(struct writeback_control *wbc,
519 struct inode *inode)
520{
Tejun Heodd73e4b2015-06-16 18:48:30 -0400521 if (!inode_cgwb_enabled(inode)) {
522 spin_unlock(&inode->i_lock);
523 return;
524 }
525
Tejun Heob16b1de2015-06-02 08:39:48 -0600526 wbc->wb = inode_to_wb(inode);
Tejun Heo2a814902015-05-28 14:50:51 -0400527 wbc->inode = inode;
528
529 wbc->wb_id = wbc->wb->memcg_css->id;
530 wbc->wb_lcand_id = inode->i_wb_frn_winner;
531 wbc->wb_tcand_id = 0;
532 wbc->wb_bytes = 0;
533 wbc->wb_lcand_bytes = 0;
534 wbc->wb_tcand_bytes = 0;
535
Tejun Heob16b1de2015-06-02 08:39:48 -0600536 wb_get(wbc->wb);
537 spin_unlock(&inode->i_lock);
Tejun Heoe8a7abf2015-05-28 14:50:57 -0400538
539 /*
540 * A dying wb indicates that the memcg-blkcg mapping has changed
541 * and a new wb is already serving the memcg. Switch immediately.
542 */
543 if (unlikely(wb_dying(wbc->wb)))
544 inode_switch_wbs(inode, wbc->wb_id);
Tejun Heob16b1de2015-06-02 08:39:48 -0600545}
546
547/**
Tejun Heo2a814902015-05-28 14:50:51 -0400548 * wbc_detach_inode - disassociate wbc from inode and perform foreign detection
549 * @wbc: writeback_control of the just finished writeback
Tejun Heob16b1de2015-06-02 08:39:48 -0600550 *
551 * To be called after a writeback attempt of an inode finishes and undoes
552 * wbc_attach_and_unlock_inode(). Can be called under any context.
Tejun Heo2a814902015-05-28 14:50:51 -0400553 *
554 * As concurrent write sharing of an inode is expected to be very rare and
555 * memcg only tracks page ownership on first-use basis severely confining
556 * the usefulness of such sharing, cgroup writeback tracks ownership
557 * per-inode. While the support for concurrent write sharing of an inode
558 * is deemed unnecessary, an inode being written to by different cgroups at
559 * different points in time is a lot more common, and, more importantly,
560 * charging only by first-use can too readily lead to grossly incorrect
561 * behaviors (single foreign page can lead to gigabytes of writeback to be
562 * incorrectly attributed).
563 *
564 * To resolve this issue, cgroup writeback detects the majority dirtier of
565 * an inode and transfers the ownership to it. To avoid unnnecessary
566 * oscillation, the detection mechanism keeps track of history and gives
567 * out the switch verdict only if the foreign usage pattern is stable over
568 * a certain amount of time and/or writeback attempts.
569 *
570 * On each writeback attempt, @wbc tries to detect the majority writer
571 * using Boyer-Moore majority vote algorithm. In addition to the byte
572 * count from the majority voting, it also counts the bytes written for the
573 * current wb and the last round's winner wb (max of last round's current
574 * wb, the winner from two rounds ago, and the last round's majority
575 * candidate). Keeping track of the historical winner helps the algorithm
576 * to semi-reliably detect the most active writer even when it's not the
577 * absolute majority.
578 *
579 * Once the winner of the round is determined, whether the winner is
580 * foreign or not and how much IO time the round consumed is recorded in
581 * inode->i_wb_frn_history. If the amount of recorded foreign IO time is
582 * over a certain threshold, the switch verdict is given.
Tejun Heob16b1de2015-06-02 08:39:48 -0600583 */
584void wbc_detach_inode(struct writeback_control *wbc)
585{
Tejun Heo2a814902015-05-28 14:50:51 -0400586 struct bdi_writeback *wb = wbc->wb;
587 struct inode *inode = wbc->inode;
Tejun Heodd73e4b2015-06-16 18:48:30 -0400588 unsigned long avg_time, max_bytes, max_time;
589 u16 history;
Tejun Heo2a814902015-05-28 14:50:51 -0400590 int max_id;
591
Tejun Heodd73e4b2015-06-16 18:48:30 -0400592 if (!wb)
593 return;
594
595 history = inode->i_wb_frn_history;
596 avg_time = inode->i_wb_frn_avg_time;
597
Tejun Heo2a814902015-05-28 14:50:51 -0400598 /* pick the winner of this round */
599 if (wbc->wb_bytes >= wbc->wb_lcand_bytes &&
600 wbc->wb_bytes >= wbc->wb_tcand_bytes) {
601 max_id = wbc->wb_id;
602 max_bytes = wbc->wb_bytes;
603 } else if (wbc->wb_lcand_bytes >= wbc->wb_tcand_bytes) {
604 max_id = wbc->wb_lcand_id;
605 max_bytes = wbc->wb_lcand_bytes;
606 } else {
607 max_id = wbc->wb_tcand_id;
608 max_bytes = wbc->wb_tcand_bytes;
609 }
610
611 /*
612 * Calculate the amount of IO time the winner consumed and fold it
613 * into the running average kept per inode. If the consumed IO
614 * time is lower than avag / WB_FRN_TIME_CUT_DIV, ignore it for
615 * deciding whether to switch or not. This is to prevent one-off
616 * small dirtiers from skewing the verdict.
617 */
618 max_time = DIV_ROUND_UP((max_bytes >> PAGE_SHIFT) << WB_FRN_TIME_SHIFT,
619 wb->avg_write_bandwidth);
620 if (avg_time)
621 avg_time += (max_time >> WB_FRN_TIME_AVG_SHIFT) -
622 (avg_time >> WB_FRN_TIME_AVG_SHIFT);
623 else
624 avg_time = max_time; /* immediate catch up on first run */
625
626 if (max_time >= avg_time / WB_FRN_TIME_CUT_DIV) {
627 int slots;
628
629 /*
630 * The switch verdict is reached if foreign wb's consume
631 * more than a certain proportion of IO time in a
632 * WB_FRN_TIME_PERIOD. This is loosely tracked by 16 slot
633 * history mask where each bit represents one sixteenth of
634 * the period. Determine the number of slots to shift into
635 * history from @max_time.
636 */
637 slots = min(DIV_ROUND_UP(max_time, WB_FRN_HIST_UNIT),
638 (unsigned long)WB_FRN_HIST_MAX_SLOTS);
639 history <<= slots;
640 if (wbc->wb_id != max_id)
641 history |= (1U << slots) - 1;
642
643 /*
644 * Switch if the current wb isn't the consistent winner.
645 * If there are multiple closely competing dirtiers, the
646 * inode may switch across them repeatedly over time, which
647 * is okay. The main goal is avoiding keeping an inode on
648 * the wrong wb for an extended period of time.
649 */
Tejun Heo682aa8e2015-05-28 14:50:53 -0400650 if (hweight32(history) > WB_FRN_HIST_THR_SLOTS)
651 inode_switch_wbs(inode, max_id);
Tejun Heo2a814902015-05-28 14:50:51 -0400652 }
653
654 /*
655 * Multiple instances of this function may race to update the
656 * following fields but we don't mind occassional inaccuracies.
657 */
658 inode->i_wb_frn_winner = max_id;
659 inode->i_wb_frn_avg_time = min(avg_time, (unsigned long)U16_MAX);
660 inode->i_wb_frn_history = history;
661
Tejun Heob16b1de2015-06-02 08:39:48 -0600662 wb_put(wbc->wb);
663 wbc->wb = NULL;
664}
665
666/**
Tejun Heo2a814902015-05-28 14:50:51 -0400667 * wbc_account_io - account IO issued during writeback
668 * @wbc: writeback_control of the writeback in progress
669 * @page: page being written out
670 * @bytes: number of bytes being written out
671 *
672 * @bytes from @page are about to written out during the writeback
673 * controlled by @wbc. Keep the book for foreign inode detection. See
674 * wbc_detach_inode().
675 */
676void wbc_account_io(struct writeback_control *wbc, struct page *page,
677 size_t bytes)
678{
679 int id;
680
681 /*
682 * pageout() path doesn't attach @wbc to the inode being written
683 * out. This is intentional as we don't want the function to block
684 * behind a slow cgroup. Ultimately, we want pageout() to kick off
685 * regular writeback instead of writing things out itself.
686 */
687 if (!wbc->wb)
688 return;
689
690 rcu_read_lock();
691 id = mem_cgroup_css_from_page(page)->id;
692 rcu_read_unlock();
693
694 if (id == wbc->wb_id) {
695 wbc->wb_bytes += bytes;
696 return;
697 }
698
699 if (id == wbc->wb_lcand_id)
700 wbc->wb_lcand_bytes += bytes;
701
702 /* Boyer-Moore majority vote algorithm */
703 if (!wbc->wb_tcand_bytes)
704 wbc->wb_tcand_id = id;
705 if (id == wbc->wb_tcand_id)
706 wbc->wb_tcand_bytes += bytes;
707 else
708 wbc->wb_tcand_bytes -= min(bytes, wbc->wb_tcand_bytes);
709}
Tejun Heo5aa2a962015-07-23 14:27:09 -0400710EXPORT_SYMBOL_GPL(wbc_account_io);
Tejun Heo2a814902015-05-28 14:50:51 -0400711
712/**
Tejun Heo703c2702015-05-22 17:13:44 -0400713 * inode_congested - test whether an inode is congested
Tejun Heo60292bc2015-08-18 14:54:54 -0700714 * @inode: inode to test for congestion (may be NULL)
Tejun Heo703c2702015-05-22 17:13:44 -0400715 * @cong_bits: mask of WB_[a]sync_congested bits to test
716 *
717 * Tests whether @inode is congested. @cong_bits is the mask of congestion
718 * bits to test and the return value is the mask of set bits.
719 *
720 * If cgroup writeback is enabled for @inode, the congestion state is
721 * determined by whether the cgwb (cgroup bdi_writeback) for the blkcg
722 * associated with @inode is congested; otherwise, the root wb's congestion
723 * state is used.
Tejun Heo60292bc2015-08-18 14:54:54 -0700724 *
725 * @inode is allowed to be NULL as this function is often called on
726 * mapping->host which is NULL for the swapper space.
Tejun Heo703c2702015-05-22 17:13:44 -0400727 */
728int inode_congested(struct inode *inode, int cong_bits)
729{
Tejun Heo5cb8b822015-05-28 14:50:54 -0400730 /*
731 * Once set, ->i_wb never becomes NULL while the inode is alive.
732 * Start transaction iff ->i_wb is visible.
733 */
Tejun Heoaaa2cac2015-05-28 14:50:55 -0400734 if (inode && inode_to_wb_is_valid(inode)) {
Tejun Heo5cb8b822015-05-28 14:50:54 -0400735 struct bdi_writeback *wb;
736 bool locked, congested;
737
738 wb = unlocked_inode_to_wb_begin(inode, &locked);
739 congested = wb_congested(wb, cong_bits);
740 unlocked_inode_to_wb_end(inode, locked);
741 return congested;
Tejun Heo703c2702015-05-22 17:13:44 -0400742 }
743
744 return wb_congested(&inode_to_bdi(inode)->wb, cong_bits);
745}
746EXPORT_SYMBOL_GPL(inode_congested);
747
Tejun Heof2b65122015-05-22 17:13:55 -0400748/**
749 * wb_split_bdi_pages - split nr_pages to write according to bandwidth
750 * @wb: target bdi_writeback to split @nr_pages to
751 * @nr_pages: number of pages to write for the whole bdi
752 *
753 * Split @wb's portion of @nr_pages according to @wb's write bandwidth in
754 * relation to the total write bandwidth of all wb's w/ dirty inodes on
755 * @wb->bdi.
756 */
757static long wb_split_bdi_pages(struct bdi_writeback *wb, long nr_pages)
758{
759 unsigned long this_bw = wb->avg_write_bandwidth;
760 unsigned long tot_bw = atomic_long_read(&wb->bdi->tot_write_bandwidth);
761
762 if (nr_pages == LONG_MAX)
763 return LONG_MAX;
764
765 /*
766 * This may be called on clean wb's and proportional distribution
767 * may not make sense, just use the original @nr_pages in those
768 * cases. In general, we wanna err on the side of writing more.
769 */
770 if (!tot_bw || this_bw >= tot_bw)
771 return nr_pages;
772 else
773 return DIV_ROUND_UP_ULL((u64)nr_pages * this_bw, tot_bw);
774}
775
Tejun Heodb125362015-05-22 17:14:01 -0400776/**
Tejun Heodb125362015-05-22 17:14:01 -0400777 * bdi_split_work_to_wbs - split a wb_writeback_work to all wb's of a bdi
778 * @bdi: target backing_dev_info
779 * @base_work: wb_writeback_work to issue
780 * @skip_if_busy: skip wb's which already have writeback in progress
781 *
782 * Split and issue @base_work to all wb's (bdi_writeback's) of @bdi which
783 * have dirty inodes. If @base_work->nr_page isn't %LONG_MAX, it's
784 * distributed to the busy wbs according to each wb's proportion in the
785 * total active write bandwidth of @bdi.
786 */
787static void bdi_split_work_to_wbs(struct backing_dev_info *bdi,
788 struct wb_writeback_work *base_work,
789 bool skip_if_busy)
790{
Tejun Heob8175252015-10-02 14:47:05 -0400791 struct bdi_writeback *last_wb = NULL;
Tejun Heob33e18f2015-10-27 14:19:39 +0900792 struct bdi_writeback *wb = list_entry(&bdi->wb_list,
793 struct bdi_writeback, bdi_node);
Tejun Heodb125362015-05-22 17:14:01 -0400794
795 might_sleep();
Tejun Heodb125362015-05-22 17:14:01 -0400796restart:
797 rcu_read_lock();
Tejun Heob8175252015-10-02 14:47:05 -0400798 list_for_each_entry_continue_rcu(wb, &bdi->wb_list, bdi_node) {
Tejun Heo8a1270c2015-08-18 14:54:53 -0700799 DEFINE_WB_COMPLETION_ONSTACK(fallback_work_done);
800 struct wb_writeback_work fallback_work;
801 struct wb_writeback_work *work;
802 long nr_pages;
803
Tejun Heob8175252015-10-02 14:47:05 -0400804 if (last_wb) {
805 wb_put(last_wb);
806 last_wb = NULL;
807 }
808
Tejun Heo006a0972015-08-25 14:11:52 -0400809 /* SYNC_ALL writes out I_DIRTY_TIME too */
810 if (!wb_has_dirty_io(wb) &&
811 (base_work->sync_mode == WB_SYNC_NONE ||
812 list_empty(&wb->b_dirty_time)))
813 continue;
814 if (skip_if_busy && writeback_in_progress(wb))
Tejun Heodb125362015-05-22 17:14:01 -0400815 continue;
816
Tejun Heo8a1270c2015-08-18 14:54:53 -0700817 nr_pages = wb_split_bdi_pages(wb, base_work->nr_pages);
818
819 work = kmalloc(sizeof(*work), GFP_ATOMIC);
820 if (work) {
821 *work = *base_work;
822 work->nr_pages = nr_pages;
823 work->auto_free = 1;
824 wb_queue_work(wb, work);
825 continue;
Tejun Heodb125362015-05-22 17:14:01 -0400826 }
Tejun Heo8a1270c2015-08-18 14:54:53 -0700827
828 /* alloc failed, execute synchronously using on-stack fallback */
829 work = &fallback_work;
830 *work = *base_work;
831 work->nr_pages = nr_pages;
832 work->auto_free = 0;
833 work->done = &fallback_work_done;
834
835 wb_queue_work(wb, work);
836
Tejun Heob8175252015-10-02 14:47:05 -0400837 /*
838 * Pin @wb so that it stays on @bdi->wb_list. This allows
839 * continuing iteration from @wb after dropping and
840 * regrabbing rcu read lock.
841 */
842 wb_get(wb);
843 last_wb = wb;
844
Tejun Heo8a1270c2015-08-18 14:54:53 -0700845 rcu_read_unlock();
846 wb_wait_for_completion(bdi, &fallback_work_done);
847 goto restart;
Tejun Heodb125362015-05-22 17:14:01 -0400848 }
849 rcu_read_unlock();
Tejun Heob8175252015-10-02 14:47:05 -0400850
851 if (last_wb)
852 wb_put(last_wb);
Tejun Heodb125362015-05-22 17:14:01 -0400853}
854
Tejun Heoc5cbbec2016-02-29 18:28:53 -0500855/**
856 * cgroup_writeback_umount - flush inode wb switches for umount
857 *
858 * This function is called when a super_block is about to be destroyed and
859 * flushes in-flight inode wb switches. An inode wb switch goes through
860 * RCU and then workqueue, so the two need to be flushed in order to ensure
861 * that all previously scheduled switches are finished. As wb switches are
862 * rare occurrences and synchronize_rcu() can take a while, perform
863 * flushing iff wb switches are in flight.
864 */
865void cgroup_writeback_umount(void)
866{
867 if (atomic_read(&isw_nr_in_flight)) {
868 synchronize_rcu();
869 flush_workqueue(isw_wq);
870 }
871}
872
873static int __init cgroup_writeback_init(void)
874{
875 isw_wq = alloc_workqueue("inode_switch_wbs", 0, 0);
876 if (!isw_wq)
877 return -ENOMEM;
878 return 0;
879}
880fs_initcall(cgroup_writeback_init);
881
Tejun Heof2b65122015-05-22 17:13:55 -0400882#else /* CONFIG_CGROUP_WRITEBACK */
883
Tejun Heo87e1d782015-05-28 14:50:52 -0400884static struct bdi_writeback *
885locked_inode_to_wb_and_lock_list(struct inode *inode)
886 __releases(&inode->i_lock)
887 __acquires(&wb->list_lock)
888{
889 struct bdi_writeback *wb = inode_to_wb(inode);
890
891 spin_unlock(&inode->i_lock);
892 spin_lock(&wb->list_lock);
893 return wb;
894}
895
896static struct bdi_writeback *inode_to_wb_and_lock_list(struct inode *inode)
897 __acquires(&wb->list_lock)
898{
899 struct bdi_writeback *wb = inode_to_wb(inode);
900
901 spin_lock(&wb->list_lock);
902 return wb;
903}
904
Tejun Heof2b65122015-05-22 17:13:55 -0400905static long wb_split_bdi_pages(struct bdi_writeback *wb, long nr_pages)
906{
907 return nr_pages;
908}
909
Tejun Heodb125362015-05-22 17:14:01 -0400910static void bdi_split_work_to_wbs(struct backing_dev_info *bdi,
911 struct wb_writeback_work *base_work,
912 bool skip_if_busy)
913{
914 might_sleep();
915
Tejun Heo006a0972015-08-25 14:11:52 -0400916 if (!skip_if_busy || !writeback_in_progress(&bdi->wb)) {
Tejun Heodb125362015-05-22 17:14:01 -0400917 base_work->auto_free = 0;
Tejun Heodb125362015-05-22 17:14:01 -0400918 wb_queue_work(&bdi->wb, base_work);
919 }
920}
921
Tejun Heo703c2702015-05-22 17:13:44 -0400922#endif /* CONFIG_CGROUP_WRITEBACK */
923
Tejun Heoc00ddad2015-05-22 17:13:51 -0400924void wb_start_writeback(struct bdi_writeback *wb, long nr_pages,
925 bool range_cyclic, enum wb_reason reason)
Jens Axboeb6e51312009-09-16 15:13:54 +0200926{
Tejun Heoc00ddad2015-05-22 17:13:51 -0400927 struct wb_writeback_work *work;
928
929 if (!wb_has_dirty_io(wb))
930 return;
931
932 /*
933 * This is WB_SYNC_NONE writeback, so if allocation fails just
934 * wakeup the thread for old dirty data writeback
935 */
936 work = kzalloc(sizeof(*work), GFP_ATOMIC);
937 if (!work) {
Tejun Heo5634cc22015-08-18 14:54:56 -0700938 trace_writeback_nowork(wb);
Tejun Heoc00ddad2015-05-22 17:13:51 -0400939 wb_wakeup(wb);
940 return;
941 }
942
943 work->sync_mode = WB_SYNC_NONE;
944 work->nr_pages = nr_pages;
945 work->range_cyclic = range_cyclic;
946 work->reason = reason;
Tejun Heoac7b19a2015-05-22 17:13:57 -0400947 work->auto_free = 1;
Tejun Heoc00ddad2015-05-22 17:13:51 -0400948
949 wb_queue_work(wb, work);
Christoph Hellwigc5444192010-06-08 18:15:15 +0200950}
Wu Fengguangd3ddec72009-09-23 20:33:40 +0800951
Christoph Hellwigc5444192010-06-08 18:15:15 +0200952/**
Tejun Heo9ecf48662015-05-22 17:13:54 -0400953 * wb_start_background_writeback - start background writeback
954 * @wb: bdi_writback to write from
Christoph Hellwigc5444192010-06-08 18:15:15 +0200955 *
956 * Description:
Jan Kara65850272011-01-13 15:45:44 -0800957 * This makes sure WB_SYNC_NONE background writeback happens. When
Tejun Heo9ecf48662015-05-22 17:13:54 -0400958 * this function returns, it is only guaranteed that for given wb
Jan Kara65850272011-01-13 15:45:44 -0800959 * some IO is happening if we are over background dirty threshold.
960 * Caller need not hold sb s_umount semaphore.
Christoph Hellwigc5444192010-06-08 18:15:15 +0200961 */
Tejun Heo9ecf48662015-05-22 17:13:54 -0400962void wb_start_background_writeback(struct bdi_writeback *wb)
Christoph Hellwigc5444192010-06-08 18:15:15 +0200963{
Jan Kara65850272011-01-13 15:45:44 -0800964 /*
965 * We just wake up the flusher thread. It will perform background
966 * writeback as soon as there is no other work to do.
967 */
Tejun Heo5634cc22015-08-18 14:54:56 -0700968 trace_writeback_wake_background(wb);
Tejun Heo9ecf48662015-05-22 17:13:54 -0400969 wb_wakeup(wb);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700970}
971
972/*
Dave Chinnera66979a2011-03-22 22:23:41 +1100973 * Remove the inode from the writeback list it is on.
974 */
Dave Chinnerc7f54082015-03-04 14:07:22 -0500975void inode_io_list_del(struct inode *inode)
Dave Chinnera66979a2011-03-22 22:23:41 +1100976{
Tejun Heo87e1d782015-05-28 14:50:52 -0400977 struct bdi_writeback *wb;
Dave Chinnera66979a2011-03-22 22:23:41 +1100978
Tejun Heo87e1d782015-05-28 14:50:52 -0400979 wb = inode_to_wb_and_lock_list(inode);
Dave Chinnerc7f54082015-03-04 14:07:22 -0500980 inode_io_list_del_locked(inode, wb);
Tejun Heo52ebea72015-05-22 17:13:37 -0400981 spin_unlock(&wb->list_lock);
Christoph Hellwigf758eea2011-04-21 18:19:44 -0600982}
Dave Chinnera66979a2011-03-22 22:23:41 +1100983
984/*
Andrew Morton6610a0b2007-10-16 23:30:32 -0700985 * Redirty an inode: set its when-it-was dirtied timestamp and move it to the
986 * furthest end of its superblock's dirty-inode list.
987 *
988 * Before stamping the inode's ->dirtied_when, we check to see whether it is
Jens Axboe66f3b8e2009-09-02 09:19:46 +0200989 * already the most-recently-dirtied inode on the b_dirty list. If that is
Andrew Morton6610a0b2007-10-16 23:30:32 -0700990 * the case then the inode must have been redirtied while it was being written
991 * out and we don't reset its dirtied_when.
992 */
Christoph Hellwigf758eea2011-04-21 18:19:44 -0600993static void redirty_tail(struct inode *inode, struct bdi_writeback *wb)
Andrew Morton6610a0b2007-10-16 23:30:32 -0700994{
Jens Axboe03ba3782009-09-09 09:08:54 +0200995 if (!list_empty(&wb->b_dirty)) {
Jens Axboe66f3b8e2009-09-02 09:19:46 +0200996 struct inode *tail;
Andrew Morton6610a0b2007-10-16 23:30:32 -0700997
Nick Piggin7ccf19a2010-10-21 11:49:30 +1100998 tail = wb_inode(wb->b_dirty.next);
Jens Axboe66f3b8e2009-09-02 09:19:46 +0200999 if (time_before(inode->dirtied_when, tail->dirtied_when))
Andrew Morton6610a0b2007-10-16 23:30:32 -07001000 inode->dirtied_when = jiffies;
1001 }
Dave Chinnerc7f54082015-03-04 14:07:22 -05001002 inode_io_list_move_locked(inode, wb, &wb->b_dirty);
Andrew Morton6610a0b2007-10-16 23:30:32 -07001003}
1004
1005/*
Jens Axboe66f3b8e2009-09-02 09:19:46 +02001006 * requeue inode for re-scanning after bdi->b_io list is exhausted.
Andrew Mortonc986d1e2007-10-16 23:30:34 -07001007 */
Christoph Hellwigf758eea2011-04-21 18:19:44 -06001008static void requeue_io(struct inode *inode, struct bdi_writeback *wb)
Andrew Mortonc986d1e2007-10-16 23:30:34 -07001009{
Dave Chinnerc7f54082015-03-04 14:07:22 -05001010 inode_io_list_move_locked(inode, wb, &wb->b_more_io);
Andrew Mortonc986d1e2007-10-16 23:30:34 -07001011}
1012
Joern Engel1c0eeaf2007-10-16 23:30:44 -07001013static void inode_sync_complete(struct inode *inode)
1014{
Jan Kara365b94ae2012-05-03 14:47:55 +02001015 inode->i_state &= ~I_SYNC;
Jan Kara4eff96d2012-11-26 16:29:51 -08001016 /* If inode is clean an unused, put it into LRU now... */
1017 inode_add_lru(inode);
Jan Kara365b94ae2012-05-03 14:47:55 +02001018 /* Waiters must see I_SYNC cleared before being woken up */
Joern Engel1c0eeaf2007-10-16 23:30:44 -07001019 smp_mb();
1020 wake_up_bit(&inode->i_state, __I_SYNC);
1021}
1022
Jeff Laytond2caa3c52009-04-02 16:56:37 -07001023static bool inode_dirtied_after(struct inode *inode, unsigned long t)
1024{
1025 bool ret = time_after(inode->dirtied_when, t);
1026#ifndef CONFIG_64BIT
1027 /*
1028 * For inodes being constantly redirtied, dirtied_when can get stuck.
1029 * It _appears_ to be in the future, but is actually in distant past.
1030 * This test is necessary to prevent such wrapped-around relative times
Jens Axboe5b0830c2009-09-23 19:37:09 +02001031 * from permanently stopping the whole bdi writeback.
Jeff Laytond2caa3c52009-04-02 16:56:37 -07001032 */
1033 ret = ret && time_before_eq(inode->dirtied_when, jiffies);
1034#endif
1035 return ret;
1036}
1037
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001038#define EXPIRE_DIRTY_ATIME 0x0001
1039
Andrew Mortonc986d1e2007-10-16 23:30:34 -07001040/*
Wang Sheng-Hui0e2f2b22012-09-11 08:28:18 +08001041 * Move expired (dirtied before work->older_than_this) dirty inodes from
Jan Kara697e6fe2012-03-09 07:26:22 -08001042 * @delaying_queue to @dispatch_queue.
Fengguang Wu2c136572007-10-16 23:30:39 -07001043 */
Wu Fengguange84d0a42011-04-23 12:27:27 -06001044static int move_expired_inodes(struct list_head *delaying_queue,
Fengguang Wu2c136572007-10-16 23:30:39 -07001045 struct list_head *dispatch_queue,
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001046 int flags,
Curt Wohlgemuthad4e38d2011-10-07 21:51:56 -06001047 struct wb_writeback_work *work)
Fengguang Wu2c136572007-10-16 23:30:39 -07001048{
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001049 unsigned long *older_than_this = NULL;
1050 unsigned long expire_time;
Shaohua Li5c034492009-09-24 14:42:33 +02001051 LIST_HEAD(tmp);
1052 struct list_head *pos, *node;
Jens Axboecf137302009-09-24 15:12:57 +02001053 struct super_block *sb = NULL;
Shaohua Li5c034492009-09-24 14:42:33 +02001054 struct inode *inode;
Jens Axboecf137302009-09-24 15:12:57 +02001055 int do_sb_sort = 0;
Wu Fengguange84d0a42011-04-23 12:27:27 -06001056 int moved = 0;
Shaohua Li5c034492009-09-24 14:42:33 +02001057
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001058 if ((flags & EXPIRE_DIRTY_ATIME) == 0)
1059 older_than_this = work->older_than_this;
Theodore Ts'oa2f48702015-03-17 12:23:19 -04001060 else if (!work->for_sync) {
1061 expire_time = jiffies - (dirtytime_expire_interval * HZ);
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001062 older_than_this = &expire_time;
1063 }
Fengguang Wu2c136572007-10-16 23:30:39 -07001064 while (!list_empty(delaying_queue)) {
Nick Piggin7ccf19a2010-10-21 11:49:30 +11001065 inode = wb_inode(delaying_queue->prev);
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001066 if (older_than_this &&
1067 inode_dirtied_after(inode, *older_than_this))
Fengguang Wu2c136572007-10-16 23:30:39 -07001068 break;
Dave Chinnerc7f54082015-03-04 14:07:22 -05001069 list_move(&inode->i_io_list, &tmp);
Jan Karaa8855992013-07-09 22:36:45 +08001070 moved++;
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001071 if (flags & EXPIRE_DIRTY_ATIME)
1072 set_bit(__I_DIRTY_TIME_EXPIRED, &inode->i_state);
Jan Karaa8855992013-07-09 22:36:45 +08001073 if (sb_is_blkdev_sb(inode->i_sb))
1074 continue;
Jens Axboecf137302009-09-24 15:12:57 +02001075 if (sb && sb != inode->i_sb)
1076 do_sb_sort = 1;
1077 sb = inode->i_sb;
Shaohua Li5c034492009-09-24 14:42:33 +02001078 }
1079
Jens Axboecf137302009-09-24 15:12:57 +02001080 /* just one sb in list, splice to dispatch_queue and we're done */
1081 if (!do_sb_sort) {
1082 list_splice(&tmp, dispatch_queue);
Wu Fengguange84d0a42011-04-23 12:27:27 -06001083 goto out;
Jens Axboecf137302009-09-24 15:12:57 +02001084 }
1085
Shaohua Li5c034492009-09-24 14:42:33 +02001086 /* Move inodes from one superblock together */
1087 while (!list_empty(&tmp)) {
Nick Piggin7ccf19a2010-10-21 11:49:30 +11001088 sb = wb_inode(tmp.prev)->i_sb;
Shaohua Li5c034492009-09-24 14:42:33 +02001089 list_for_each_prev_safe(pos, node, &tmp) {
Nick Piggin7ccf19a2010-10-21 11:49:30 +11001090 inode = wb_inode(pos);
Shaohua Li5c034492009-09-24 14:42:33 +02001091 if (inode->i_sb == sb)
Dave Chinnerc7f54082015-03-04 14:07:22 -05001092 list_move(&inode->i_io_list, dispatch_queue);
Shaohua Li5c034492009-09-24 14:42:33 +02001093 }
Fengguang Wu2c136572007-10-16 23:30:39 -07001094 }
Wu Fengguange84d0a42011-04-23 12:27:27 -06001095out:
1096 return moved;
Fengguang Wu2c136572007-10-16 23:30:39 -07001097}
1098
1099/*
1100 * Queue all expired dirty inodes for io, eldest first.
Wu Fengguang4ea879b2010-08-11 14:17:42 -07001101 * Before
1102 * newly dirtied b_dirty b_io b_more_io
1103 * =============> gf edc BA
1104 * After
1105 * newly dirtied b_dirty b_io b_more_io
1106 * =============> g fBAedc
1107 * |
1108 * +--> dequeue for IO
Fengguang Wu2c136572007-10-16 23:30:39 -07001109 */
Curt Wohlgemuthad4e38d2011-10-07 21:51:56 -06001110static void queue_io(struct bdi_writeback *wb, struct wb_writeback_work *work)
Fengguang Wu2c136572007-10-16 23:30:39 -07001111{
Wu Fengguange84d0a42011-04-23 12:27:27 -06001112 int moved;
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001113
Christoph Hellwigf758eea2011-04-21 18:19:44 -06001114 assert_spin_locked(&wb->list_lock);
Wu Fengguang4ea879b2010-08-11 14:17:42 -07001115 list_splice_init(&wb->b_more_io, &wb->b_io);
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001116 moved = move_expired_inodes(&wb->b_dirty, &wb->b_io, 0, work);
1117 moved += move_expired_inodes(&wb->b_dirty_time, &wb->b_io,
1118 EXPIRE_DIRTY_ATIME, work);
Tejun Heod6c10f12015-05-22 17:13:45 -04001119 if (moved)
1120 wb_io_lists_populated(wb);
Curt Wohlgemuthad4e38d2011-10-07 21:51:56 -06001121 trace_writeback_queue_io(wb, work, moved);
Jens Axboe66f3b8e2009-09-02 09:19:46 +02001122}
1123
Christoph Hellwiga9185b42010-03-05 09:21:37 +01001124static int write_inode(struct inode *inode, struct writeback_control *wbc)
Jens Axboe66f3b8e2009-09-02 09:19:46 +02001125{
Tejun Heo9fb0a7d2013-01-11 13:06:37 -08001126 int ret;
1127
1128 if (inode->i_sb->s_op->write_inode && !is_bad_inode(inode)) {
1129 trace_writeback_write_inode_start(inode, wbc);
1130 ret = inode->i_sb->s_op->write_inode(inode, wbc);
1131 trace_writeback_write_inode(inode, wbc);
1132 return ret;
1133 }
Jens Axboe03ba3782009-09-09 09:08:54 +02001134 return 0;
Fengguang Wu2c136572007-10-16 23:30:39 -07001135}
1136
1137/*
Jan Kara169ebd92012-05-03 14:48:03 +02001138 * Wait for writeback on an inode to complete. Called with i_lock held.
1139 * Caller must make sure inode cannot go away when we drop i_lock.
Christoph Hellwig01c03192009-06-08 13:35:40 +02001140 */
Jan Kara169ebd92012-05-03 14:48:03 +02001141static void __inode_wait_for_writeback(struct inode *inode)
1142 __releases(inode->i_lock)
1143 __acquires(inode->i_lock)
Christoph Hellwig01c03192009-06-08 13:35:40 +02001144{
1145 DEFINE_WAIT_BIT(wq, &inode->i_state, __I_SYNC);
1146 wait_queue_head_t *wqh;
1147
1148 wqh = bit_waitqueue(&inode->i_state, __I_SYNC);
Dave Chinner250df6e2011-03-22 22:23:36 +11001149 while (inode->i_state & I_SYNC) {
1150 spin_unlock(&inode->i_lock);
NeilBrown74316202014-07-07 15:16:04 +10001151 __wait_on_bit(wqh, &wq, bit_wait,
1152 TASK_UNINTERRUPTIBLE);
Dave Chinner250df6e2011-03-22 22:23:36 +11001153 spin_lock(&inode->i_lock);
Richard Kennedy58a9d3d82010-05-24 14:32:38 -07001154 }
Christoph Hellwig01c03192009-06-08 13:35:40 +02001155}
1156
1157/*
Jan Kara169ebd92012-05-03 14:48:03 +02001158 * Wait for writeback on an inode to complete. Caller must have inode pinned.
1159 */
1160void inode_wait_for_writeback(struct inode *inode)
1161{
1162 spin_lock(&inode->i_lock);
1163 __inode_wait_for_writeback(inode);
1164 spin_unlock(&inode->i_lock);
1165}
1166
1167/*
1168 * Sleep until I_SYNC is cleared. This function must be called with i_lock
1169 * held and drops it. It is aimed for callers not holding any inode reference
1170 * so once i_lock is dropped, inode can go away.
1171 */
1172static void inode_sleep_on_writeback(struct inode *inode)
1173 __releases(inode->i_lock)
1174{
1175 DEFINE_WAIT(wait);
1176 wait_queue_head_t *wqh = bit_waitqueue(&inode->i_state, __I_SYNC);
1177 int sleep;
1178
1179 prepare_to_wait(wqh, &wait, TASK_UNINTERRUPTIBLE);
1180 sleep = inode->i_state & I_SYNC;
1181 spin_unlock(&inode->i_lock);
1182 if (sleep)
1183 schedule();
1184 finish_wait(wqh, &wait);
1185}
1186
1187/*
Jan Karaccb26b52012-05-03 14:47:58 +02001188 * Find proper writeback list for the inode depending on its current state and
1189 * possibly also change of its state while we were doing writeback. Here we
1190 * handle things such as livelock prevention or fairness of writeback among
1191 * inodes. This function can be called only by flusher thread - noone else
1192 * processes all inodes in writeback lists and requeueing inodes behind flusher
1193 * thread's back can have unexpected consequences.
1194 */
1195static void requeue_inode(struct inode *inode, struct bdi_writeback *wb,
1196 struct writeback_control *wbc)
1197{
1198 if (inode->i_state & I_FREEING)
1199 return;
1200
1201 /*
1202 * Sync livelock prevention. Each inode is tagged and synced in one
1203 * shot. If still dirty, it will be redirty_tail()'ed below. Update
1204 * the dirty time to prevent enqueue and sync it again.
1205 */
1206 if ((inode->i_state & I_DIRTY) &&
1207 (wbc->sync_mode == WB_SYNC_ALL || wbc->tagged_writepages))
1208 inode->dirtied_when = jiffies;
1209
Jan Kara4f8ad652012-05-03 14:48:00 +02001210 if (wbc->pages_skipped) {
1211 /*
1212 * writeback is not making progress due to locked
1213 * buffers. Skip this inode for now.
1214 */
1215 redirty_tail(inode, wb);
1216 return;
1217 }
1218
Jan Karaccb26b52012-05-03 14:47:58 +02001219 if (mapping_tagged(inode->i_mapping, PAGECACHE_TAG_DIRTY)) {
1220 /*
1221 * We didn't write back all the pages. nfs_writepages()
1222 * sometimes bales out without doing anything.
1223 */
1224 if (wbc->nr_to_write <= 0) {
1225 /* Slice used up. Queue for next turn. */
1226 requeue_io(inode, wb);
1227 } else {
1228 /*
1229 * Writeback blocked by something other than
1230 * congestion. Delay the inode for some time to
1231 * avoid spinning on the CPU (100% iowait)
1232 * retrying writeback of the dirty page/inode
1233 * that cannot be performed immediately.
1234 */
1235 redirty_tail(inode, wb);
1236 }
1237 } else if (inode->i_state & I_DIRTY) {
1238 /*
1239 * Filesystems can dirty the inode during writeback operations,
1240 * such as delayed allocation during submission or metadata
1241 * updates after data IO completion.
1242 */
1243 redirty_tail(inode, wb);
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001244 } else if (inode->i_state & I_DIRTY_TIME) {
Theodore Ts'oa2f48702015-03-17 12:23:19 -04001245 inode->dirtied_when = jiffies;
Dave Chinnerc7f54082015-03-04 14:07:22 -05001246 inode_io_list_move_locked(inode, wb, &wb->b_dirty_time);
Jan Karaccb26b52012-05-03 14:47:58 +02001247 } else {
1248 /* The inode is clean. Remove from writeback lists. */
Dave Chinnerc7f54082015-03-04 14:07:22 -05001249 inode_io_list_del_locked(inode, wb);
Jan Karaccb26b52012-05-03 14:47:58 +02001250 }
1251}
1252
1253/*
Jan Kara4f8ad652012-05-03 14:48:00 +02001254 * Write out an inode and its dirty pages. Do not update the writeback list
1255 * linkage. That is left to the caller. The caller is also responsible for
1256 * setting I_SYNC flag and calling inode_sync_complete() to clear it.
Linus Torvalds1da177e2005-04-16 15:20:36 -07001257 */
1258static int
Yan Hongcd8ed2a2012-10-08 16:33:45 -07001259__writeback_single_inode(struct inode *inode, struct writeback_control *wbc)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001260{
Linus Torvalds1da177e2005-04-16 15:20:36 -07001261 struct address_space *mapping = inode->i_mapping;
Wu Fengguang251d6a42010-12-01 17:33:37 -06001262 long nr_to_write = wbc->nr_to_write;
Christoph Hellwig01c03192009-06-08 13:35:40 +02001263 unsigned dirty;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001264 int ret;
1265
Jan Kara4f8ad652012-05-03 14:48:00 +02001266 WARN_ON(!(inode->i_state & I_SYNC));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001267
Tejun Heo9fb0a7d2013-01-11 13:06:37 -08001268 trace_writeback_single_inode_start(inode, wbc, nr_to_write);
1269
Linus Torvalds1da177e2005-04-16 15:20:36 -07001270 ret = do_writepages(mapping, wbc);
1271
Christoph Hellwig26821ed2010-03-05 09:21:21 +01001272 /*
1273 * Make sure to wait on the data before writing out the metadata.
1274 * This is important for filesystems that modify metadata on data
Dave Chinner7747bd42013-07-02 22:38:35 +10001275 * I/O completion. We don't do it for sync(2) writeback because it has a
1276 * separate, external IO completion path and ->sync_fs for guaranteeing
1277 * inode metadata is written back correctly.
Christoph Hellwig26821ed2010-03-05 09:21:21 +01001278 */
Dave Chinner7747bd42013-07-02 22:38:35 +10001279 if (wbc->sync_mode == WB_SYNC_ALL && !wbc->for_sync) {
Christoph Hellwig26821ed2010-03-05 09:21:21 +01001280 int err = filemap_fdatawait(mapping);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001281 if (ret == 0)
1282 ret = err;
1283 }
1284
Dmitry Monakhov5547e8a2010-05-07 13:35:44 +04001285 /*
1286 * Some filesystems may redirty the inode during the writeback
1287 * due to delalloc, clear dirty metadata flags right before
1288 * write_inode()
1289 */
Dave Chinner250df6e2011-03-22 22:23:36 +11001290 spin_lock(&inode->i_lock);
Tejun Heo9c6ac782014-10-24 15:38:21 -04001291
Dmitry Monakhov5547e8a2010-05-07 13:35:44 +04001292 dirty = inode->i_state & I_DIRTY;
Theodore Ts'oa2f48702015-03-17 12:23:19 -04001293 if (inode->i_state & I_DIRTY_TIME) {
1294 if ((dirty & (I_DIRTY_SYNC | I_DIRTY_DATASYNC)) ||
1295 unlikely(inode->i_state & I_DIRTY_TIME_EXPIRED) ||
1296 unlikely(time_after(jiffies,
1297 (inode->dirtied_time_when +
1298 dirtytime_expire_interval * HZ)))) {
1299 dirty |= I_DIRTY_TIME | I_DIRTY_TIME_EXPIRED;
1300 trace_writeback_lazytime(inode);
1301 }
1302 } else
1303 inode->i_state &= ~I_DIRTY_TIME_EXPIRED;
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001304 inode->i_state &= ~dirty;
Tejun Heo9c6ac782014-10-24 15:38:21 -04001305
1306 /*
1307 * Paired with smp_mb() in __mark_inode_dirty(). This allows
1308 * __mark_inode_dirty() to test i_state without grabbing i_lock -
1309 * either they see the I_DIRTY bits cleared or we see the dirtied
1310 * inode.
1311 *
1312 * I_DIRTY_PAGES is always cleared together above even if @mapping
1313 * still has dirty pages. The flag is reinstated after smp_mb() if
1314 * necessary. This guarantees that either __mark_inode_dirty()
1315 * sees clear I_DIRTY_PAGES or we see PAGECACHE_TAG_DIRTY.
1316 */
1317 smp_mb();
1318
1319 if (mapping_tagged(mapping, PAGECACHE_TAG_DIRTY))
1320 inode->i_state |= I_DIRTY_PAGES;
1321
Dave Chinner250df6e2011-03-22 22:23:36 +11001322 spin_unlock(&inode->i_lock);
Tejun Heo9c6ac782014-10-24 15:38:21 -04001323
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001324 if (dirty & I_DIRTY_TIME)
1325 mark_inode_dirty_sync(inode);
Christoph Hellwig26821ed2010-03-05 09:21:21 +01001326 /* Don't write the inode if only I_DIRTY_PAGES was set */
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001327 if (dirty & ~I_DIRTY_PAGES) {
Christoph Hellwiga9185b42010-03-05 09:21:37 +01001328 int err = write_inode(inode, wbc);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001329 if (ret == 0)
1330 ret = err;
1331 }
Jan Kara4f8ad652012-05-03 14:48:00 +02001332 trace_writeback_single_inode(inode, wbc, nr_to_write);
1333 return ret;
1334}
1335
1336/*
1337 * Write out an inode's dirty pages. Either the caller has an active reference
1338 * on the inode or the inode has I_WILL_FREE set.
1339 *
1340 * This function is designed to be called for writing back one inode which
1341 * we go e.g. from filesystem. Flusher thread uses __writeback_single_inode()
1342 * and does more profound writeback list handling in writeback_sb_inodes().
1343 */
1344static int
1345writeback_single_inode(struct inode *inode, struct bdi_writeback *wb,
1346 struct writeback_control *wbc)
1347{
1348 int ret = 0;
1349
1350 spin_lock(&inode->i_lock);
1351 if (!atomic_read(&inode->i_count))
1352 WARN_ON(!(inode->i_state & (I_WILL_FREE|I_FREEING)));
1353 else
1354 WARN_ON(inode->i_state & I_WILL_FREE);
1355
1356 if (inode->i_state & I_SYNC) {
1357 if (wbc->sync_mode != WB_SYNC_ALL)
1358 goto out;
1359 /*
Jan Kara169ebd92012-05-03 14:48:03 +02001360 * It's a data-integrity sync. We must wait. Since callers hold
1361 * inode reference or inode has I_WILL_FREE set, it cannot go
1362 * away under us.
Jan Kara4f8ad652012-05-03 14:48:00 +02001363 */
Jan Kara169ebd92012-05-03 14:48:03 +02001364 __inode_wait_for_writeback(inode);
Jan Kara4f8ad652012-05-03 14:48:00 +02001365 }
1366 WARN_ON(inode->i_state & I_SYNC);
1367 /*
Jan Karaf9b0e052013-12-14 04:21:26 +08001368 * Skip inode if it is clean and we have no outstanding writeback in
1369 * WB_SYNC_ALL mode. We don't want to mess with writeback lists in this
1370 * function since flusher thread may be doing for example sync in
1371 * parallel and if we move the inode, it could get skipped. So here we
1372 * make sure inode is on some writeback list and leave it there unless
1373 * we have completely cleaned the inode.
Jan Kara4f8ad652012-05-03 14:48:00 +02001374 */
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001375 if (!(inode->i_state & I_DIRTY_ALL) &&
Jan Karaf9b0e052013-12-14 04:21:26 +08001376 (wbc->sync_mode != WB_SYNC_ALL ||
1377 !mapping_tagged(inode->i_mapping, PAGECACHE_TAG_WRITEBACK)))
Jan Kara4f8ad652012-05-03 14:48:00 +02001378 goto out;
1379 inode->i_state |= I_SYNC;
Tejun Heob16b1de2015-06-02 08:39:48 -06001380 wbc_attach_and_unlock_inode(wbc, inode);
Jan Kara4f8ad652012-05-03 14:48:00 +02001381
Yan Hongcd8ed2a2012-10-08 16:33:45 -07001382 ret = __writeback_single_inode(inode, wbc);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001383
Tejun Heob16b1de2015-06-02 08:39:48 -06001384 wbc_detach_inode(wbc);
Christoph Hellwigf758eea2011-04-21 18:19:44 -06001385 spin_lock(&wb->list_lock);
Dave Chinner250df6e2011-03-22 22:23:36 +11001386 spin_lock(&inode->i_lock);
Jan Kara4f8ad652012-05-03 14:48:00 +02001387 /*
1388 * If inode is clean, remove it from writeback lists. Otherwise don't
1389 * touch it. See comment above for explanation.
1390 */
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001391 if (!(inode->i_state & I_DIRTY_ALL))
Dave Chinnerc7f54082015-03-04 14:07:22 -05001392 inode_io_list_del_locked(inode, wb);
Jan Kara4f8ad652012-05-03 14:48:00 +02001393 spin_unlock(&wb->list_lock);
Joern Engel1c0eeaf2007-10-16 23:30:44 -07001394 inode_sync_complete(inode);
Jan Kara4f8ad652012-05-03 14:48:00 +02001395out:
1396 spin_unlock(&inode->i_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001397 return ret;
1398}
1399
Tejun Heoa88a3412015-05-22 17:13:28 -04001400static long writeback_chunk_size(struct bdi_writeback *wb,
Wu Fengguang1a12d8b2010-08-29 13:28:09 -06001401 struct wb_writeback_work *work)
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001402{
1403 long pages;
1404
1405 /*
1406 * WB_SYNC_ALL mode does livelock avoidance by syncing dirty
1407 * inodes/pages in one big loop. Setting wbc.nr_to_write=LONG_MAX
1408 * here avoids calling into writeback_inodes_wb() more than once.
1409 *
1410 * The intended call sequence for WB_SYNC_ALL writeback is:
1411 *
1412 * wb_writeback()
1413 * writeback_sb_inodes() <== called only once
1414 * write_cache_pages() <== called once for each inode
1415 * (quickly) tag currently dirty pages
1416 * (maybe slowly) sync all tagged pages
1417 */
1418 if (work->sync_mode == WB_SYNC_ALL || work->tagged_writepages)
1419 pages = LONG_MAX;
Wu Fengguang1a12d8b2010-08-29 13:28:09 -06001420 else {
Tejun Heoa88a3412015-05-22 17:13:28 -04001421 pages = min(wb->avg_write_bandwidth / 2,
Tejun Heodcc25ae2015-05-22 18:23:22 -04001422 global_wb_domain.dirty_limit / DIRTY_SCOPE);
Wu Fengguang1a12d8b2010-08-29 13:28:09 -06001423 pages = min(pages, work->nr_pages);
1424 pages = round_down(pages + MIN_WRITEBACK_PAGES,
1425 MIN_WRITEBACK_PAGES);
1426 }
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001427
1428 return pages;
1429}
1430
Jens Axboe03ba3782009-09-09 09:08:54 +02001431/*
Edward Shishkinf11c9c52010-03-11 14:09:47 -08001432 * Write a portion of b_io inodes which belong to @sb.
Christoph Hellwigedadfb12010-06-10 12:07:54 +02001433 *
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001434 * Return the number of pages and/or inodes written.
Linus Torvalds0ba13fd2015-09-11 13:26:39 -07001435 *
1436 * NOTE! This is called with wb->list_lock held, and will
1437 * unlock and relock that for each inode it ends up doing
1438 * IO for.
Edward Shishkinf11c9c52010-03-11 14:09:47 -08001439 */
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001440static long writeback_sb_inodes(struct super_block *sb,
1441 struct bdi_writeback *wb,
1442 struct wb_writeback_work *work)
Jens Axboe03ba3782009-09-09 09:08:54 +02001443{
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001444 struct writeback_control wbc = {
1445 .sync_mode = work->sync_mode,
1446 .tagged_writepages = work->tagged_writepages,
1447 .for_kupdate = work->for_kupdate,
1448 .for_background = work->for_background,
Dave Chinner7747bd42013-07-02 22:38:35 +10001449 .for_sync = work->for_sync,
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001450 .range_cyclic = work->range_cyclic,
1451 .range_start = 0,
1452 .range_end = LLONG_MAX,
1453 };
1454 unsigned long start_time = jiffies;
1455 long write_chunk;
1456 long wrote = 0; /* count both pages and inodes */
1457
Jens Axboe03ba3782009-09-09 09:08:54 +02001458 while (!list_empty(&wb->b_io)) {
Nick Piggin7ccf19a2010-10-21 11:49:30 +11001459 struct inode *inode = wb_inode(wb->b_io.prev);
Christoph Hellwigedadfb12010-06-10 12:07:54 +02001460
1461 if (inode->i_sb != sb) {
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001462 if (work->sb) {
Christoph Hellwigedadfb12010-06-10 12:07:54 +02001463 /*
1464 * We only want to write back data for this
1465 * superblock, move all inodes not belonging
1466 * to it back onto the dirty list.
1467 */
Christoph Hellwigf758eea2011-04-21 18:19:44 -06001468 redirty_tail(inode, wb);
Christoph Hellwigedadfb12010-06-10 12:07:54 +02001469 continue;
1470 }
1471
1472 /*
1473 * The inode belongs to a different superblock.
1474 * Bounce back to the caller to unpin this and
1475 * pin the next superblock.
1476 */
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001477 break;
Christoph Hellwigedadfb12010-06-10 12:07:54 +02001478 }
1479
Christoph Hellwig9843b762010-10-24 19:40:46 +02001480 /*
Wanpeng Li331cbde2012-06-09 11:10:55 +08001481 * Don't bother with new inodes or inodes being freed, first
1482 * kind does not need periodic writeout yet, and for the latter
Christoph Hellwig9843b762010-10-24 19:40:46 +02001483 * kind writeout is handled by the freer.
1484 */
Dave Chinner250df6e2011-03-22 22:23:36 +11001485 spin_lock(&inode->i_lock);
Christoph Hellwig9843b762010-10-24 19:40:46 +02001486 if (inode->i_state & (I_NEW | I_FREEING | I_WILL_FREE)) {
Dave Chinner250df6e2011-03-22 22:23:36 +11001487 spin_unlock(&inode->i_lock);
Wu Fengguangfcc5c222011-07-11 23:08:50 -07001488 redirty_tail(inode, wb);
Nick Piggin7ef0d732009-03-12 14:31:38 -07001489 continue;
1490 }
Jan Karacc1676d2012-05-03 14:47:56 +02001491 if ((inode->i_state & I_SYNC) && wbc.sync_mode != WB_SYNC_ALL) {
1492 /*
1493 * If this inode is locked for writeback and we are not
1494 * doing writeback-for-data-integrity, move it to
1495 * b_more_io so that writeback can proceed with the
1496 * other inodes on s_io.
1497 *
1498 * We'll have another go at writing back this inode
1499 * when we completed a full scan of b_io.
1500 */
1501 spin_unlock(&inode->i_lock);
1502 requeue_io(inode, wb);
1503 trace_writeback_sb_inodes_requeue(inode);
1504 continue;
1505 }
Jan Karaf0d07b72012-05-03 14:47:59 +02001506 spin_unlock(&wb->list_lock);
1507
Jan Kara4f8ad652012-05-03 14:48:00 +02001508 /*
1509 * We already requeued the inode if it had I_SYNC set and we
1510 * are doing WB_SYNC_NONE writeback. So this catches only the
1511 * WB_SYNC_ALL case.
1512 */
Jan Kara169ebd92012-05-03 14:48:03 +02001513 if (inode->i_state & I_SYNC) {
1514 /* Wait for I_SYNC. This function drops i_lock... */
1515 inode_sleep_on_writeback(inode);
1516 /* Inode may be gone, start again */
Jan Karaead188f2012-06-08 17:07:36 +02001517 spin_lock(&wb->list_lock);
Jan Kara169ebd92012-05-03 14:48:03 +02001518 continue;
1519 }
Jan Kara4f8ad652012-05-03 14:48:00 +02001520 inode->i_state |= I_SYNC;
Tejun Heob16b1de2015-06-02 08:39:48 -06001521 wbc_attach_and_unlock_inode(&wbc, inode);
Jan Kara169ebd92012-05-03 14:48:03 +02001522
Tejun Heoa88a3412015-05-22 17:13:28 -04001523 write_chunk = writeback_chunk_size(wb, work);
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001524 wbc.nr_to_write = write_chunk;
1525 wbc.pages_skipped = 0;
Dave Chinner250df6e2011-03-22 22:23:36 +11001526
Jan Kara169ebd92012-05-03 14:48:03 +02001527 /*
1528 * We use I_SYNC to pin the inode in memory. While it is set
1529 * evict_inode() will wait so the inode cannot be freed.
1530 */
Yan Hongcd8ed2a2012-10-08 16:33:45 -07001531 __writeback_single_inode(inode, &wbc);
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001532
Tejun Heob16b1de2015-06-02 08:39:48 -06001533 wbc_detach_inode(&wbc);
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001534 work->nr_pages -= write_chunk - wbc.nr_to_write;
1535 wrote += write_chunk - wbc.nr_to_write;
Chris Mason590dca32015-09-18 13:35:08 -04001536
1537 if (need_resched()) {
1538 /*
1539 * We're trying to balance between building up a nice
1540 * long list of IOs to improve our merge rate, and
1541 * getting those IOs out quickly for anyone throttling
1542 * in balance_dirty_pages(). cond_resched() doesn't
1543 * unplug, so get our IOs out the door before we
1544 * give up the CPU.
1545 */
1546 blk_flush_plug(current);
1547 cond_resched();
1548 }
1549
1550
Jan Kara4f8ad652012-05-03 14:48:00 +02001551 spin_lock(&wb->list_lock);
1552 spin_lock(&inode->i_lock);
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05001553 if (!(inode->i_state & I_DIRTY_ALL))
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001554 wrote++;
Jan Kara4f8ad652012-05-03 14:48:00 +02001555 requeue_inode(inode, wb, &wbc);
1556 inode_sync_complete(inode);
Dave Chinner0f1b1fd2011-03-22 22:23:43 +11001557 spin_unlock(&inode->i_lock);
Chris Mason590dca32015-09-18 13:35:08 -04001558
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001559 /*
1560 * bail out to wb_writeback() often enough to check
1561 * background threshold and other termination conditions.
1562 */
1563 if (wrote) {
1564 if (time_is_before_jiffies(start_time + HZ / 10UL))
1565 break;
1566 if (work->nr_pages <= 0)
1567 break;
Fengguang Wu8bc3be22008-02-04 22:29:36 -08001568 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001569 }
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001570 return wrote;
Edward Shishkinf11c9c52010-03-11 14:09:47 -08001571}
Nick Piggin38f21972009-01-06 14:40:25 -08001572
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001573static long __writeback_inodes_wb(struct bdi_writeback *wb,
1574 struct wb_writeback_work *work)
Edward Shishkinf11c9c52010-03-11 14:09:47 -08001575{
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001576 unsigned long start_time = jiffies;
1577 long wrote = 0;
Edward Shishkinf11c9c52010-03-11 14:09:47 -08001578
1579 while (!list_empty(&wb->b_io)) {
Nick Piggin7ccf19a2010-10-21 11:49:30 +11001580 struct inode *inode = wb_inode(wb->b_io.prev);
Edward Shishkinf11c9c52010-03-11 14:09:47 -08001581 struct super_block *sb = inode->i_sb;
Edward Shishkinf11c9c52010-03-11 14:09:47 -08001582
Konstantin Khlebnikoveb6ef3d2015-02-19 20:19:35 +03001583 if (!trylock_super(sb)) {
Wu Fengguang0e995812011-07-29 22:14:35 -06001584 /*
Konstantin Khlebnikoveb6ef3d2015-02-19 20:19:35 +03001585 * trylock_super() may fail consistently due to
Wu Fengguang0e995812011-07-29 22:14:35 -06001586 * s_umount being grabbed by someone else. Don't use
1587 * requeue_io() to avoid busy retrying the inode/sb.
1588 */
1589 redirty_tail(inode, wb);
Christoph Hellwigedadfb12010-06-10 12:07:54 +02001590 continue;
Edward Shishkinf11c9c52010-03-11 14:09:47 -08001591 }
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001592 wrote += writeback_sb_inodes(sb, wb, work);
Konstantin Khlebnikoveb6ef3d2015-02-19 20:19:35 +03001593 up_read(&sb->s_umount);
Edward Shishkinf11c9c52010-03-11 14:09:47 -08001594
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001595 /* refer to the same tests at the end of writeback_sb_inodes */
1596 if (wrote) {
1597 if (time_is_before_jiffies(start_time + HZ / 10UL))
1598 break;
1599 if (work->nr_pages <= 0)
1600 break;
1601 }
Edward Shishkinf11c9c52010-03-11 14:09:47 -08001602 }
Jens Axboe66f3b8e2009-09-02 09:19:46 +02001603 /* Leave any unwritten inodes on b_io */
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001604 return wrote;
Jens Axboe66f3b8e2009-09-02 09:19:46 +02001605}
1606
Wanpeng Li7d9f0732013-09-11 14:22:40 -07001607static long writeback_inodes_wb(struct bdi_writeback *wb, long nr_pages,
Curt Wohlgemuth0e175a12011-10-07 21:54:10 -06001608 enum wb_reason reason)
Christoph Hellwigedadfb12010-06-10 12:07:54 +02001609{
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001610 struct wb_writeback_work work = {
1611 .nr_pages = nr_pages,
1612 .sync_mode = WB_SYNC_NONE,
1613 .range_cyclic = 1,
Curt Wohlgemuth0e175a12011-10-07 21:54:10 -06001614 .reason = reason,
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001615 };
Linus Torvalds505a6662015-09-11 13:37:19 -07001616 struct blk_plug plug;
Christoph Hellwigedadfb12010-06-10 12:07:54 +02001617
Linus Torvalds505a6662015-09-11 13:37:19 -07001618 blk_start_plug(&plug);
Christoph Hellwigf758eea2011-04-21 18:19:44 -06001619 spin_lock(&wb->list_lock);
Wu Fengguang424b3512010-07-21 20:11:53 -06001620 if (list_empty(&wb->b_io))
Curt Wohlgemuthad4e38d2011-10-07 21:51:56 -06001621 queue_io(wb, &work);
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001622 __writeback_inodes_wb(wb, &work);
Christoph Hellwigf758eea2011-04-21 18:19:44 -06001623 spin_unlock(&wb->list_lock);
Linus Torvalds505a6662015-09-11 13:37:19 -07001624 blk_finish_plug(&plug);
Christoph Hellwigedadfb12010-06-10 12:07:54 +02001625
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001626 return nr_pages - work.nr_pages;
Jens Axboe66f3b8e2009-09-02 09:19:46 +02001627}
1628
Jens Axboe03ba3782009-09-09 09:08:54 +02001629/*
1630 * Explicit flushing or periodic writeback of "old" data.
1631 *
1632 * Define "old": the first time one of an inode's pages is dirtied, we mark the
1633 * dirtying-time in the inode's address_space. So this periodic writeback code
1634 * just walks the superblock inode list, writing back any inodes which are
1635 * older than a specific point in time.
1636 *
1637 * Try to run once per dirty_writeback_interval. But if a writeback event
1638 * takes longer than a dirty_writeback_interval interval, then leave a
1639 * one-second gap.
1640 *
1641 * older_than_this takes precedence over nr_to_write. So we'll only write back
1642 * all dirty pages if they are all attached to "old" mappings.
1643 */
Jens Axboec4a77a62009-09-16 15:18:25 +02001644static long wb_writeback(struct bdi_writeback *wb,
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02001645 struct wb_writeback_work *work)
Jens Axboe03ba3782009-09-09 09:08:54 +02001646{
Wu Fengguange98be2d2010-08-29 11:22:30 -06001647 unsigned long wb_start = jiffies;
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001648 long nr_pages = work->nr_pages;
Jan Kara0dc83bd2014-02-21 11:19:04 +01001649 unsigned long oldest_jif;
Jan Karaa5989bd2009-09-16 19:22:48 +02001650 struct inode *inode;
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001651 long progress;
Linus Torvalds505a6662015-09-11 13:37:19 -07001652 struct blk_plug plug;
Jens Axboe03ba3782009-09-09 09:08:54 +02001653
Jan Kara0dc83bd2014-02-21 11:19:04 +01001654 oldest_jif = jiffies;
1655 work->older_than_this = &oldest_jif;
Jens Axboe03ba3782009-09-09 09:08:54 +02001656
Linus Torvalds505a6662015-09-11 13:37:19 -07001657 blk_start_plug(&plug);
Wu Fengguange8dfc302011-04-21 12:06:32 -06001658 spin_lock(&wb->list_lock);
Jens Axboe03ba3782009-09-09 09:08:54 +02001659 for (;;) {
1660 /*
Wu Fengguangd3ddec72009-09-23 20:33:40 +08001661 * Stop writeback when nr_pages has been consumed
Jens Axboe03ba3782009-09-09 09:08:54 +02001662 */
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02001663 if (work->nr_pages <= 0)
Jens Axboe03ba3782009-09-09 09:08:54 +02001664 break;
1665
1666 /*
Jan Karaaa373cf2011-01-13 15:45:47 -08001667 * Background writeout and kupdate-style writeback may
1668 * run forever. Stop them if there is other work to do
1669 * so that e.g. sync can proceed. They'll be restarted
1670 * after the other works are all done.
1671 */
1672 if ((work->for_background || work->for_kupdate) &&
Tejun Heof0054bb2015-05-22 17:13:30 -04001673 !list_empty(&wb->work_list))
Jan Karaaa373cf2011-01-13 15:45:47 -08001674 break;
1675
1676 /*
Wu Fengguangd3ddec72009-09-23 20:33:40 +08001677 * For background writeout, stop when we are below the
1678 * background dirty threshold
Jens Axboe03ba3782009-09-09 09:08:54 +02001679 */
Tejun Heoaa661bb2015-05-22 18:23:31 -04001680 if (work->for_background && !wb_over_bg_thresh(wb))
Jens Axboe03ba3782009-09-09 09:08:54 +02001681 break;
1682
Jan Kara1bc36b62011-10-19 11:44:41 +02001683 /*
1684 * Kupdate and background works are special and we want to
1685 * include all inodes that need writing. Livelock avoidance is
1686 * handled by these works yielding to any other work so we are
1687 * safe.
1688 */
Wu Fengguangba9aa832010-07-21 20:32:30 -06001689 if (work->for_kupdate) {
Jan Kara0dc83bd2014-02-21 11:19:04 +01001690 oldest_jif = jiffies -
Wu Fengguangba9aa832010-07-21 20:32:30 -06001691 msecs_to_jiffies(dirty_expire_interval * 10);
Jan Kara1bc36b62011-10-19 11:44:41 +02001692 } else if (work->for_background)
Jan Kara0dc83bd2014-02-21 11:19:04 +01001693 oldest_jif = jiffies;
Dave Chinner028c2dd2010-07-07 13:24:07 +10001694
Tejun Heo5634cc22015-08-18 14:54:56 -07001695 trace_writeback_start(wb, work);
Wu Fengguange8dfc302011-04-21 12:06:32 -06001696 if (list_empty(&wb->b_io))
Curt Wohlgemuthad4e38d2011-10-07 21:51:56 -06001697 queue_io(wb, work);
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02001698 if (work->sb)
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001699 progress = writeback_sb_inodes(work->sb, wb, work);
Christoph Hellwigedadfb12010-06-10 12:07:54 +02001700 else
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001701 progress = __writeback_inodes_wb(wb, work);
Tejun Heo5634cc22015-08-18 14:54:56 -07001702 trace_writeback_written(wb, work);
Dave Chinner028c2dd2010-07-07 13:24:07 +10001703
Wu Fengguange98be2d2010-08-29 11:22:30 -06001704 wb_update_bandwidth(wb, wb_start);
Jens Axboe03ba3782009-09-09 09:08:54 +02001705
1706 /*
Jens Axboe71fd05a2009-09-23 19:32:26 +02001707 * Did we write something? Try for more
Wu Fengguange6fb6da2010-07-22 10:23:44 -06001708 *
1709 * Dirty inodes are moved to b_io for writeback in batches.
1710 * The completion of the current batch does not necessarily
1711 * mean the overall work is done. So we keep looping as long
1712 * as made some progress on cleaning pages or inodes.
Jens Axboe71fd05a2009-09-23 19:32:26 +02001713 */
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001714 if (progress)
Jens Axboe71fd05a2009-09-23 19:32:26 +02001715 continue;
1716 /*
Wu Fengguange6fb6da2010-07-22 10:23:44 -06001717 * No more inodes for IO, bail
Jens Axboe71fd05a2009-09-23 19:32:26 +02001718 */
Wu Fengguangb7a24412010-07-21 22:19:51 -06001719 if (list_empty(&wb->b_more_io))
Jens Axboe03ba3782009-09-09 09:08:54 +02001720 break;
1721 /*
Jens Axboe8010c3b2009-09-15 20:04:57 +02001722 * Nothing written. Wait for some inode to
1723 * become available for writeback. Otherwise
1724 * we'll just busyloop.
Jens Axboe03ba3782009-09-09 09:08:54 +02001725 */
Jens Axboe03ba3782009-09-09 09:08:54 +02001726 if (!list_empty(&wb->b_more_io)) {
Tejun Heo5634cc22015-08-18 14:54:56 -07001727 trace_writeback_wait(wb, work);
Jens Axboe03ba3782009-09-09 09:08:54 +02001728 inode = wb_inode(wb->b_more_io.prev);
Dave Chinner250df6e2011-03-22 22:23:36 +11001729 spin_lock(&inode->i_lock);
Jan Karaf0d07b72012-05-03 14:47:59 +02001730 spin_unlock(&wb->list_lock);
Jan Kara169ebd92012-05-03 14:48:03 +02001731 /* This function drops i_lock... */
1732 inode_sleep_on_writeback(inode);
Jan Karaf0d07b72012-05-03 14:47:59 +02001733 spin_lock(&wb->list_lock);
Jens Axboe03ba3782009-09-09 09:08:54 +02001734 }
Jens Axboe03ba3782009-09-09 09:08:54 +02001735 }
Wu Fengguange8dfc302011-04-21 12:06:32 -06001736 spin_unlock(&wb->list_lock);
Linus Torvalds505a6662015-09-11 13:37:19 -07001737 blk_finish_plug(&plug);
Jens Axboe03ba3782009-09-09 09:08:54 +02001738
Wu Fengguangd46db3d2011-05-04 19:54:37 -06001739 return nr_pages - work->nr_pages;
Jens Axboe03ba3782009-09-09 09:08:54 +02001740}
1741
1742/*
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02001743 * Return the next wb_writeback_work struct that hasn't been processed yet.
Jens Axboe03ba3782009-09-09 09:08:54 +02001744 */
Tejun Heof0054bb2015-05-22 17:13:30 -04001745static struct wb_writeback_work *get_next_work_item(struct bdi_writeback *wb)
Jens Axboe03ba3782009-09-09 09:08:54 +02001746{
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02001747 struct wb_writeback_work *work = NULL;
Jens Axboe03ba3782009-09-09 09:08:54 +02001748
Tejun Heof0054bb2015-05-22 17:13:30 -04001749 spin_lock_bh(&wb->work_lock);
1750 if (!list_empty(&wb->work_list)) {
1751 work = list_entry(wb->work_list.next,
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02001752 struct wb_writeback_work, list);
1753 list_del_init(&work->list);
Jens Axboe03ba3782009-09-09 09:08:54 +02001754 }
Tejun Heof0054bb2015-05-22 17:13:30 -04001755 spin_unlock_bh(&wb->work_lock);
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02001756 return work;
Jens Axboe03ba3782009-09-09 09:08:54 +02001757}
1758
Linus Torvaldscdf01dd2010-10-30 08:55:52 -07001759/*
1760 * Add in the number of potentially dirty inodes, because each inode
1761 * write can dirty pagecache in the underlying blockdev.
1762 */
1763static unsigned long get_nr_dirty_pages(void)
1764{
1765 return global_page_state(NR_FILE_DIRTY) +
1766 global_page_state(NR_UNSTABLE_NFS) +
1767 get_nr_dirty_inodes();
1768}
1769
Jan Kara65850272011-01-13 15:45:44 -08001770static long wb_check_background_flush(struct bdi_writeback *wb)
1771{
Tejun Heoaa661bb2015-05-22 18:23:31 -04001772 if (wb_over_bg_thresh(wb)) {
Jan Kara65850272011-01-13 15:45:44 -08001773
1774 struct wb_writeback_work work = {
1775 .nr_pages = LONG_MAX,
1776 .sync_mode = WB_SYNC_NONE,
1777 .for_background = 1,
1778 .range_cyclic = 1,
Curt Wohlgemuth0e175a12011-10-07 21:54:10 -06001779 .reason = WB_REASON_BACKGROUND,
Jan Kara65850272011-01-13 15:45:44 -08001780 };
1781
1782 return wb_writeback(wb, &work);
1783 }
1784
1785 return 0;
1786}
1787
Jens Axboe03ba3782009-09-09 09:08:54 +02001788static long wb_check_old_data_flush(struct bdi_writeback *wb)
1789{
1790 unsigned long expired;
1791 long nr_pages;
1792
Jens Axboe69b62d02010-05-17 12:51:03 +02001793 /*
1794 * When set to zero, disable periodic writeback
1795 */
1796 if (!dirty_writeback_interval)
1797 return 0;
1798
Jens Axboe03ba3782009-09-09 09:08:54 +02001799 expired = wb->last_old_flush +
1800 msecs_to_jiffies(dirty_writeback_interval * 10);
1801 if (time_before(jiffies, expired))
1802 return 0;
1803
1804 wb->last_old_flush = jiffies;
Linus Torvaldscdf01dd2010-10-30 08:55:52 -07001805 nr_pages = get_nr_dirty_pages();
Jens Axboe03ba3782009-09-09 09:08:54 +02001806
Jens Axboec4a77a62009-09-16 15:18:25 +02001807 if (nr_pages) {
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02001808 struct wb_writeback_work work = {
Jens Axboec4a77a62009-09-16 15:18:25 +02001809 .nr_pages = nr_pages,
1810 .sync_mode = WB_SYNC_NONE,
1811 .for_kupdate = 1,
1812 .range_cyclic = 1,
Curt Wohlgemuth0e175a12011-10-07 21:54:10 -06001813 .reason = WB_REASON_PERIODIC,
Jens Axboec4a77a62009-09-16 15:18:25 +02001814 };
1815
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02001816 return wb_writeback(wb, &work);
Jens Axboec4a77a62009-09-16 15:18:25 +02001817 }
Jens Axboe03ba3782009-09-09 09:08:54 +02001818
1819 return 0;
1820}
1821
1822/*
1823 * Retrieve work items and do the writeback they describe
1824 */
Wanpeng Li25d130b2013-07-08 16:00:14 -07001825static long wb_do_writeback(struct bdi_writeback *wb)
Jens Axboe03ba3782009-09-09 09:08:54 +02001826{
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02001827 struct wb_writeback_work *work;
Jens Axboec4a77a62009-09-16 15:18:25 +02001828 long wrote = 0;
Jens Axboe03ba3782009-09-09 09:08:54 +02001829
Tejun Heo44522262015-05-22 17:13:26 -04001830 set_bit(WB_writeback_running, &wb->state);
Tejun Heof0054bb2015-05-22 17:13:30 -04001831 while ((work = get_next_work_item(wb)) != NULL) {
Tejun Heocc395d72015-05-22 17:13:58 -04001832 struct wb_completion *done = work->done;
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02001833
Tejun Heo5634cc22015-08-18 14:54:56 -07001834 trace_writeback_exec(wb, work);
Dave Chinner455b2862010-07-07 13:24:06 +10001835
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02001836 wrote += wb_writeback(wb, work);
Jens Axboe03ba3782009-09-09 09:08:54 +02001837
Tejun Heo8a1270c2015-08-18 14:54:53 -07001838 if (work->auto_free)
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02001839 kfree(work);
Tejun Heocc395d72015-05-22 17:13:58 -04001840 if (done && atomic_dec_and_test(&done->cnt))
1841 wake_up_all(&wb->bdi->wb_waitq);
Jens Axboe03ba3782009-09-09 09:08:54 +02001842 }
1843
1844 /*
1845 * Check for periodic writeback, kupdated() style
1846 */
1847 wrote += wb_check_old_data_flush(wb);
Jan Kara65850272011-01-13 15:45:44 -08001848 wrote += wb_check_background_flush(wb);
Tejun Heo44522262015-05-22 17:13:26 -04001849 clear_bit(WB_writeback_running, &wb->state);
Jens Axboe03ba3782009-09-09 09:08:54 +02001850
1851 return wrote;
1852}
1853
1854/*
1855 * Handle writeback of dirty data for the device backed by this bdi. Also
Tejun Heo839a8e82013-04-01 19:08:06 -07001856 * reschedules periodically and does kupdated style flushing.
Jens Axboe03ba3782009-09-09 09:08:54 +02001857 */
Tejun Heof0054bb2015-05-22 17:13:30 -04001858void wb_workfn(struct work_struct *work)
Jens Axboe03ba3782009-09-09 09:08:54 +02001859{
Tejun Heo839a8e82013-04-01 19:08:06 -07001860 struct bdi_writeback *wb = container_of(to_delayed_work(work),
1861 struct bdi_writeback, dwork);
Jens Axboe03ba3782009-09-09 09:08:54 +02001862 long pages_written;
1863
Tejun Heof0054bb2015-05-22 17:13:30 -04001864 set_worker_desc("flush-%s", dev_name(wb->bdi->dev));
Peter Zijlstra766f9162010-10-26 14:22:45 -07001865 current->flags |= PF_SWAPWRITE;
Christoph Hellwig08243902010-06-19 23:08:22 +02001866
Tejun Heo839a8e82013-04-01 19:08:06 -07001867 if (likely(!current_is_workqueue_rescuer() ||
Tejun Heo44522262015-05-22 17:13:26 -04001868 !test_bit(WB_registered, &wb->state))) {
Artem Bityutskiy64677162010-07-25 14:29:22 +03001869 /*
Tejun Heof0054bb2015-05-22 17:13:30 -04001870 * The normal path. Keep writing back @wb until its
Tejun Heo839a8e82013-04-01 19:08:06 -07001871 * work_list is empty. Note that this path is also taken
Tejun Heof0054bb2015-05-22 17:13:30 -04001872 * if @wb is shutting down even when we're running off the
Tejun Heo839a8e82013-04-01 19:08:06 -07001873 * rescuer as work_list needs to be drained.
Artem Bityutskiy64677162010-07-25 14:29:22 +03001874 */
Tejun Heo839a8e82013-04-01 19:08:06 -07001875 do {
Wanpeng Li25d130b2013-07-08 16:00:14 -07001876 pages_written = wb_do_writeback(wb);
Tejun Heo839a8e82013-04-01 19:08:06 -07001877 trace_writeback_pages_written(pages_written);
Tejun Heof0054bb2015-05-22 17:13:30 -04001878 } while (!list_empty(&wb->work_list));
Tejun Heo839a8e82013-04-01 19:08:06 -07001879 } else {
1880 /*
1881 * bdi_wq can't get enough workers and we're running off
1882 * the emergency worker. Don't hog it. Hopefully, 1024 is
1883 * enough for efficient IO.
1884 */
Tejun Heof0054bb2015-05-22 17:13:30 -04001885 pages_written = writeback_inodes_wb(wb, 1024,
Tejun Heo839a8e82013-04-01 19:08:06 -07001886 WB_REASON_FORKER_THREAD);
Dave Chinner455b2862010-07-07 13:24:06 +10001887 trace_writeback_pages_written(pages_written);
Jens Axboe03ba3782009-09-09 09:08:54 +02001888 }
1889
Tejun Heof0054bb2015-05-22 17:13:30 -04001890 if (!list_empty(&wb->work_list))
Derek Basehore6ca738d2014-04-03 14:46:22 -07001891 mod_delayed_work(bdi_wq, &wb->dwork, 0);
1892 else if (wb_has_dirty_io(wb) && dirty_writeback_interval)
Tejun Heof0054bb2015-05-22 17:13:30 -04001893 wb_wakeup_delayed(wb);
Dave Chinner455b2862010-07-07 13:24:06 +10001894
Tejun Heo839a8e82013-04-01 19:08:06 -07001895 current->flags &= ~PF_SWAPWRITE;
Jens Axboe03ba3782009-09-09 09:08:54 +02001896}
1897
1898/*
Jens Axboe03ba3782009-09-09 09:08:54 +02001899 * Start writeback of `nr_pages' pages. If `nr_pages' is zero, write back
1900 * the whole world.
1901 */
Curt Wohlgemuth0e175a12011-10-07 21:54:10 -06001902void wakeup_flusher_threads(long nr_pages, enum wb_reason reason)
Jens Axboe03ba3782009-09-09 09:08:54 +02001903{
Christoph Hellwigb8c2f342010-06-08 18:15:07 +02001904 struct backing_dev_info *bdi;
Christoph Hellwigb8c2f342010-06-08 18:15:07 +02001905
Jan Kara47df3dd2013-09-11 14:22:22 -07001906 if (!nr_pages)
1907 nr_pages = get_nr_dirty_pages();
Christoph Hellwigb8c2f342010-06-08 18:15:07 +02001908
1909 rcu_read_lock();
Tejun Heof2b65122015-05-22 17:13:55 -04001910 list_for_each_entry_rcu(bdi, &bdi_list, bdi_list) {
1911 struct bdi_writeback *wb;
Tejun Heof2b65122015-05-22 17:13:55 -04001912
1913 if (!bdi_has_dirty_io(bdi))
1914 continue;
1915
Tejun Heob8175252015-10-02 14:47:05 -04001916 list_for_each_entry_rcu(wb, &bdi->wb_list, bdi_node)
Tejun Heof2b65122015-05-22 17:13:55 -04001917 wb_start_writeback(wb, wb_split_bdi_pages(wb, nr_pages),
1918 false, reason);
1919 }
Christoph Hellwigb8c2f342010-06-08 18:15:07 +02001920 rcu_read_unlock();
Jens Axboe03ba3782009-09-09 09:08:54 +02001921}
1922
Theodore Ts'oa2f48702015-03-17 12:23:19 -04001923/*
1924 * Wake up bdi's periodically to make sure dirtytime inodes gets
1925 * written back periodically. We deliberately do *not* check the
1926 * b_dirtytime list in wb_has_dirty_io(), since this would cause the
1927 * kernel to be constantly waking up once there are any dirtytime
1928 * inodes on the system. So instead we define a separate delayed work
1929 * function which gets called much more rarely. (By default, only
1930 * once every 12 hours.)
1931 *
1932 * If there is any other write activity going on in the file system,
1933 * this function won't be necessary. But if the only thing that has
1934 * happened on the file system is a dirtytime inode caused by an atime
1935 * update, we need this infrastructure below to make sure that inode
1936 * eventually gets pushed out to disk.
1937 */
1938static void wakeup_dirtytime_writeback(struct work_struct *w);
1939static DECLARE_DELAYED_WORK(dirtytime_work, wakeup_dirtytime_writeback);
1940
1941static void wakeup_dirtytime_writeback(struct work_struct *w)
1942{
1943 struct backing_dev_info *bdi;
1944
1945 rcu_read_lock();
1946 list_for_each_entry_rcu(bdi, &bdi_list, bdi_list) {
Tejun Heo001fe6f2015-05-22 17:13:56 -04001947 struct bdi_writeback *wb;
Tejun Heo001fe6f2015-05-22 17:13:56 -04001948
Tejun Heob8175252015-10-02 14:47:05 -04001949 list_for_each_entry_rcu(wb, &bdi->wb_list, bdi_node)
Tejun Heo6fdf8602015-09-29 12:47:51 -04001950 if (!list_empty(&wb->b_dirty_time))
1951 wb_wakeup(wb);
Theodore Ts'oa2f48702015-03-17 12:23:19 -04001952 }
1953 rcu_read_unlock();
1954 schedule_delayed_work(&dirtytime_work, dirtytime_expire_interval * HZ);
1955}
1956
1957static int __init start_dirtytime_writeback(void)
1958{
1959 schedule_delayed_work(&dirtytime_work, dirtytime_expire_interval * HZ);
1960 return 0;
1961}
1962__initcall(start_dirtytime_writeback);
1963
Theodore Ts'o1efff912015-03-17 12:23:32 -04001964int dirtytime_interval_handler(struct ctl_table *table, int write,
1965 void __user *buffer, size_t *lenp, loff_t *ppos)
1966{
1967 int ret;
1968
1969 ret = proc_dointvec_minmax(table, write, buffer, lenp, ppos);
1970 if (ret == 0 && write)
1971 mod_delayed_work(system_wq, &dirtytime_work, 0);
1972 return ret;
1973}
1974
Jens Axboe03ba3782009-09-09 09:08:54 +02001975static noinline void block_dump___mark_inode_dirty(struct inode *inode)
1976{
1977 if (inode->i_ino || strcmp(inode->i_sb->s_id, "bdev")) {
1978 struct dentry *dentry;
1979 const char *name = "?";
1980
1981 dentry = d_find_alias(inode);
1982 if (dentry) {
1983 spin_lock(&dentry->d_lock);
1984 name = (const char *) dentry->d_name.name;
1985 }
1986 printk(KERN_DEBUG
1987 "%s(%d): dirtied inode %lu (%s) on %s\n",
1988 current->comm, task_pid_nr(current), inode->i_ino,
1989 name, inode->i_sb->s_id);
1990 if (dentry) {
1991 spin_unlock(&dentry->d_lock);
1992 dput(dentry);
1993 }
1994 }
1995}
1996
1997/**
1998 * __mark_inode_dirty - internal function
1999 * @inode: inode to mark
2000 * @flags: what kind of dirty (i.e. I_DIRTY_SYNC)
2001 * Mark an inode as dirty. Callers should use mark_inode_dirty or
2002 * mark_inode_dirty_sync.
2003 *
2004 * Put the inode on the super block's dirty list.
2005 *
2006 * CAREFUL! We mark it dirty unconditionally, but move it onto the
2007 * dirty list only if it is hashed or if it refers to a blockdev.
2008 * If it was not hashed, it will never be added to the dirty list
2009 * even if it is later hashed, as it will have been marked dirty already.
2010 *
2011 * In short, make sure you hash any inodes _before_ you start marking
2012 * them dirty.
2013 *
Jens Axboe03ba3782009-09-09 09:08:54 +02002014 * Note that for blockdevs, inode->dirtied_when represents the dirtying time of
2015 * the block-special inode (/dev/hda1) itself. And the ->dirtied_when field of
2016 * the kernel-internal blockdev inode represents the dirtying time of the
2017 * blockdev's pages. This is why for I_DIRTY_PAGES we always use
2018 * page->mapping->host, so the page-dirtying time is recorded in the internal
2019 * blockdev inode.
2020 */
2021void __mark_inode_dirty(struct inode *inode, int flags)
2022{
Randy Dunlapdbce03b2015-11-09 14:58:00 -08002023#define I_DIRTY_INODE (I_DIRTY_SYNC | I_DIRTY_DATASYNC)
Jens Axboe03ba3782009-09-09 09:08:54 +02002024 struct super_block *sb = inode->i_sb;
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05002025 int dirtytime;
2026
2027 trace_writeback_mark_inode_dirty(inode, flags);
Jens Axboe03ba3782009-09-09 09:08:54 +02002028
2029 /*
2030 * Don't do this for I_DIRTY_PAGES - that doesn't actually
2031 * dirty the inode itself
2032 */
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05002033 if (flags & (I_DIRTY_SYNC | I_DIRTY_DATASYNC | I_DIRTY_TIME)) {
Tejun Heo9fb0a7d2013-01-11 13:06:37 -08002034 trace_writeback_dirty_inode_start(inode, flags);
2035
Jens Axboe03ba3782009-09-09 09:08:54 +02002036 if (sb->s_op->dirty_inode)
Christoph Hellwigaa385722011-05-27 06:53:02 -04002037 sb->s_op->dirty_inode(inode, flags);
Tejun Heo9fb0a7d2013-01-11 13:06:37 -08002038
2039 trace_writeback_dirty_inode(inode, flags);
Jens Axboe03ba3782009-09-09 09:08:54 +02002040 }
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05002041 if (flags & I_DIRTY_INODE)
2042 flags &= ~I_DIRTY_TIME;
2043 dirtytime = flags & I_DIRTY_TIME;
Jens Axboe03ba3782009-09-09 09:08:54 +02002044
2045 /*
Tejun Heo9c6ac782014-10-24 15:38:21 -04002046 * Paired with smp_mb() in __writeback_single_inode() for the
2047 * following lockless i_state test. See there for details.
Jens Axboe03ba3782009-09-09 09:08:54 +02002048 */
2049 smp_mb();
2050
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05002051 if (((inode->i_state & flags) == flags) ||
2052 (dirtytime && (inode->i_state & I_DIRTY_INODE)))
Jens Axboe03ba3782009-09-09 09:08:54 +02002053 return;
2054
2055 if (unlikely(block_dump))
2056 block_dump___mark_inode_dirty(inode);
2057
Dave Chinner250df6e2011-03-22 22:23:36 +11002058 spin_lock(&inode->i_lock);
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05002059 if (dirtytime && (inode->i_state & I_DIRTY_INODE))
2060 goto out_unlock_inode;
Jens Axboe03ba3782009-09-09 09:08:54 +02002061 if ((inode->i_state & flags) != flags) {
2062 const int was_dirty = inode->i_state & I_DIRTY;
2063
Tejun Heo52ebea72015-05-22 17:13:37 -04002064 inode_attach_wb(inode, NULL);
2065
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05002066 if (flags & I_DIRTY_INODE)
2067 inode->i_state &= ~I_DIRTY_TIME;
Jens Axboe03ba3782009-09-09 09:08:54 +02002068 inode->i_state |= flags;
2069
2070 /*
2071 * If the inode is being synced, just update its dirty state.
2072 * The unlocker will place the inode on the appropriate
2073 * superblock list, based upon its state.
2074 */
2075 if (inode->i_state & I_SYNC)
Dave Chinner250df6e2011-03-22 22:23:36 +11002076 goto out_unlock_inode;
Jens Axboe03ba3782009-09-09 09:08:54 +02002077
2078 /*
2079 * Only add valid (hashed) inodes to the superblock's
2080 * dirty list. Add blockdev inodes as well.
2081 */
2082 if (!S_ISBLK(inode->i_mode)) {
Al Viro1d3382cb2010-10-23 15:19:20 -04002083 if (inode_unhashed(inode))
Dave Chinner250df6e2011-03-22 22:23:36 +11002084 goto out_unlock_inode;
Jens Axboe03ba3782009-09-09 09:08:54 +02002085 }
Al Viroa4ffdde2010-06-02 17:38:30 -04002086 if (inode->i_state & I_FREEING)
Dave Chinner250df6e2011-03-22 22:23:36 +11002087 goto out_unlock_inode;
Jens Axboe03ba3782009-09-09 09:08:54 +02002088
2089 /*
2090 * If the inode was already on b_dirty/b_io/b_more_io, don't
2091 * reposition it (that would break b_dirty time-ordering).
2092 */
2093 if (!was_dirty) {
Tejun Heo87e1d782015-05-28 14:50:52 -04002094 struct bdi_writeback *wb;
Tejun Heod6c10f12015-05-22 17:13:45 -04002095 struct list_head *dirty_list;
Dave Chinnera66979a2011-03-22 22:23:41 +11002096 bool wakeup_bdi = false;
Jens Axboe500b0672009-09-09 09:10:25 +02002097
Tejun Heo87e1d782015-05-28 14:50:52 -04002098 wb = locked_inode_to_wb_and_lock_list(inode);
Artem Bityutskiy253c34e2010-07-25 14:29:21 +03002099
Tejun Heo07472592015-05-22 17:14:02 -04002100 WARN(bdi_cap_writeback_dirty(wb->bdi) &&
2101 !test_bit(WB_registered, &wb->state),
2102 "bdi-%s not registered\n", wb->bdi->name);
Jens Axboe03ba3782009-09-09 09:08:54 +02002103
2104 inode->dirtied_when = jiffies;
Theodore Ts'oa2f48702015-03-17 12:23:19 -04002105 if (dirtytime)
2106 inode->dirtied_time_when = jiffies;
Tejun Heod6c10f12015-05-22 17:13:45 -04002107
Theodore Ts'oa2f48702015-03-17 12:23:19 -04002108 if (inode->i_state & (I_DIRTY_INODE | I_DIRTY_PAGES))
Tejun Heo07472592015-05-22 17:14:02 -04002109 dirty_list = &wb->b_dirty;
Theodore Ts'oa2f48702015-03-17 12:23:19 -04002110 else
Tejun Heo07472592015-05-22 17:14:02 -04002111 dirty_list = &wb->b_dirty_time;
Tejun Heod6c10f12015-05-22 17:13:45 -04002112
Dave Chinnerc7f54082015-03-04 14:07:22 -05002113 wakeup_bdi = inode_io_list_move_locked(inode, wb,
Tejun Heod6c10f12015-05-22 17:13:45 -04002114 dirty_list);
2115
Tejun Heo07472592015-05-22 17:14:02 -04002116 spin_unlock(&wb->list_lock);
Theodore Ts'o0ae45f62015-02-02 00:37:00 -05002117 trace_writeback_dirty_inode_enqueue(inode);
Dave Chinnera66979a2011-03-22 22:23:41 +11002118
Tejun Heod6c10f12015-05-22 17:13:45 -04002119 /*
2120 * If this is the first dirty inode for this bdi,
2121 * we have to wake-up the corresponding bdi thread
2122 * to make sure background write-back happens
2123 * later.
2124 */
Tejun Heo07472592015-05-22 17:14:02 -04002125 if (bdi_cap_writeback_dirty(wb->bdi) && wakeup_bdi)
2126 wb_wakeup_delayed(wb);
Dave Chinnera66979a2011-03-22 22:23:41 +11002127 return;
Jens Axboe03ba3782009-09-09 09:08:54 +02002128 }
2129 }
Dave Chinner250df6e2011-03-22 22:23:36 +11002130out_unlock_inode:
2131 spin_unlock(&inode->i_lock);
Artem Bityutskiy253c34e2010-07-25 14:29:21 +03002132
Randy Dunlapdbce03b2015-11-09 14:58:00 -08002133#undef I_DIRTY_INODE
Jens Axboe03ba3782009-09-09 09:08:54 +02002134}
2135EXPORT_SYMBOL(__mark_inode_dirty);
2136
Dave Chinnere97fedb2015-03-04 13:40:00 -05002137/*
2138 * The @s_sync_lock is used to serialise concurrent sync operations
2139 * to avoid lock contention problems with concurrent wait_sb_inodes() calls.
2140 * Concurrent callers will block on the s_sync_lock rather than doing contending
2141 * walks. The queueing maintains sync(2) required behaviour as all the IO that
2142 * has been issued up to the time this function is enter is guaranteed to be
2143 * completed by the time we have gained the lock and waited for all IO that is
2144 * in progress regardless of the order callers are granted the lock.
2145 */
Jens Axboeb6e51312009-09-16 15:13:54 +02002146static void wait_sb_inodes(struct super_block *sb)
Jens Axboe66f3b8e2009-09-02 09:19:46 +02002147{
Jens Axboe03ba3782009-09-09 09:08:54 +02002148 struct inode *inode, *old_inode = NULL;
Jens Axboe66f3b8e2009-09-02 09:19:46 +02002149
Jens Axboe03ba3782009-09-09 09:08:54 +02002150 /*
2151 * We need to be protected against the filesystem going from
2152 * r/o to r/w or vice versa.
2153 */
Jens Axboeb6e51312009-09-16 15:13:54 +02002154 WARN_ON(!rwsem_is_locked(&sb->s_umount));
Jens Axboe66f3b8e2009-09-02 09:19:46 +02002155
Dave Chinnere97fedb2015-03-04 13:40:00 -05002156 mutex_lock(&sb->s_sync_lock);
Dave Chinner74278da2015-03-04 12:37:22 -05002157 spin_lock(&sb->s_inode_list_lock);
Jens Axboe03ba3782009-09-09 09:08:54 +02002158
2159 /*
2160 * Data integrity sync. Must wait for all pages under writeback,
2161 * because there may have been pages dirtied before our sync
2162 * call, but which had writeout started before we write it out.
2163 * In which case, the inode may not be on the dirty list, but
2164 * we still have to wait for that writeout.
2165 */
Jens Axboeb6e51312009-09-16 15:13:54 +02002166 list_for_each_entry(inode, &sb->s_inodes, i_sb_list) {
Dave Chinner250df6e2011-03-22 22:23:36 +11002167 struct address_space *mapping = inode->i_mapping;
Jens Axboe03ba3782009-09-09 09:08:54 +02002168
Dave Chinner250df6e2011-03-22 22:23:36 +11002169 spin_lock(&inode->i_lock);
2170 if ((inode->i_state & (I_FREEING|I_WILL_FREE|I_NEW)) ||
2171 (mapping->nrpages == 0)) {
2172 spin_unlock(&inode->i_lock);
Jens Axboe03ba3782009-09-09 09:08:54 +02002173 continue;
Dave Chinner250df6e2011-03-22 22:23:36 +11002174 }
Jens Axboe03ba3782009-09-09 09:08:54 +02002175 __iget(inode);
Dave Chinner250df6e2011-03-22 22:23:36 +11002176 spin_unlock(&inode->i_lock);
Dave Chinner74278da2015-03-04 12:37:22 -05002177 spin_unlock(&sb->s_inode_list_lock);
Dave Chinner55fa6092011-03-22 22:23:40 +11002178
Jens Axboe03ba3782009-09-09 09:08:54 +02002179 /*
Dave Chinner55fa6092011-03-22 22:23:40 +11002180 * We hold a reference to 'inode' so it couldn't have been
2181 * removed from s_inodes list while we dropped the
Dave Chinner74278da2015-03-04 12:37:22 -05002182 * s_inode_list_lock. We cannot iput the inode now as we can
Dave Chinner55fa6092011-03-22 22:23:40 +11002183 * be holding the last reference and we cannot iput it under
Dave Chinner74278da2015-03-04 12:37:22 -05002184 * s_inode_list_lock. So we keep the reference and iput it
Dave Chinner55fa6092011-03-22 22:23:40 +11002185 * later.
Jens Axboe03ba3782009-09-09 09:08:54 +02002186 */
2187 iput(old_inode);
2188 old_inode = inode;
2189
Junichi Nomuraaa750fd2015-11-05 18:47:23 -08002190 /*
2191 * We keep the error status of individual mapping so that
2192 * applications can catch the writeback error using fsync(2).
2193 * See filemap_fdatawait_keep_errors() for details.
2194 */
2195 filemap_fdatawait_keep_errors(mapping);
Jens Axboe03ba3782009-09-09 09:08:54 +02002196
2197 cond_resched();
Nick Piggin38f21972009-01-06 14:40:25 -08002198
Dave Chinner74278da2015-03-04 12:37:22 -05002199 spin_lock(&sb->s_inode_list_lock);
Jens Axboe66f3b8e2009-09-02 09:19:46 +02002200 }
Dave Chinner74278da2015-03-04 12:37:22 -05002201 spin_unlock(&sb->s_inode_list_lock);
Jens Axboe03ba3782009-09-09 09:08:54 +02002202 iput(old_inode);
Dave Chinnere97fedb2015-03-04 13:40:00 -05002203 mutex_unlock(&sb->s_sync_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002204}
2205
Tejun Heof30a7d02015-05-22 17:14:00 -04002206static void __writeback_inodes_sb_nr(struct super_block *sb, unsigned long nr,
2207 enum wb_reason reason, bool skip_if_busy)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002208{
Tejun Heocc395d72015-05-22 17:13:58 -04002209 DEFINE_WB_COMPLETION_ONSTACK(done);
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02002210 struct wb_writeback_work work = {
Wu Fengguang6e6938b2010-06-06 10:38:15 -06002211 .sb = sb,
2212 .sync_mode = WB_SYNC_NONE,
2213 .tagged_writepages = 1,
2214 .done = &done,
2215 .nr_pages = nr,
Curt Wohlgemuth0e175a12011-10-07 21:54:10 -06002216 .reason = reason,
Christoph Hellwig3c4d7162010-06-08 18:14:43 +02002217 };
Tejun Heoe7972912015-05-22 17:13:48 -04002218 struct backing_dev_info *bdi = sb->s_bdi;
Jens Axboe0e3c9a22010-06-01 11:08:43 +02002219
Tejun Heoe7972912015-05-22 17:13:48 -04002220 if (!bdi_has_dirty_io(bdi) || bdi == &noop_backing_dev_info)
Jan Kara6eedc702012-07-03 16:45:27 +02002221 return;
Christoph Hellwigcf37e972010-06-08 18:14:51 +02002222 WARN_ON(!rwsem_is_locked(&sb->s_umount));
Tejun Heof30a7d02015-05-22 17:14:00 -04002223
Tejun Heodb125362015-05-22 17:14:01 -04002224 bdi_split_work_to_wbs(sb->s_bdi, &work, skip_if_busy);
Tejun Heocc395d72015-05-22 17:13:58 -04002225 wb_wait_for_completion(bdi, &done);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002226}
Tejun Heof30a7d02015-05-22 17:14:00 -04002227
2228/**
2229 * writeback_inodes_sb_nr - writeback dirty inodes from given super_block
2230 * @sb: the superblock
2231 * @nr: the number of pages to write
2232 * @reason: reason why some writeback work initiated
2233 *
2234 * Start writeback on some inodes on this super_block. No guarantees are made
2235 * on how many (if any) will be written, and this function does not wait
2236 * for IO completion of submitted IO.
2237 */
2238void writeback_inodes_sb_nr(struct super_block *sb,
2239 unsigned long nr,
2240 enum wb_reason reason)
2241{
2242 __writeback_inodes_sb_nr(sb, nr, reason, false);
2243}
Chris Mason3259f8b2010-10-29 11:16:17 -04002244EXPORT_SYMBOL(writeback_inodes_sb_nr);
2245
2246/**
2247 * writeback_inodes_sb - writeback dirty inodes from given super_block
2248 * @sb: the superblock
Marcos Paulo de Souza786228a2011-11-23 20:56:45 +08002249 * @reason: reason why some writeback work was initiated
Chris Mason3259f8b2010-10-29 11:16:17 -04002250 *
2251 * Start writeback on some inodes on this super_block. No guarantees are made
2252 * on how many (if any) will be written, and this function does not wait
2253 * for IO completion of submitted IO.
2254 */
Curt Wohlgemuth0e175a12011-10-07 21:54:10 -06002255void writeback_inodes_sb(struct super_block *sb, enum wb_reason reason)
Chris Mason3259f8b2010-10-29 11:16:17 -04002256{
Curt Wohlgemuth0e175a12011-10-07 21:54:10 -06002257 return writeback_inodes_sb_nr(sb, get_nr_dirty_pages(), reason);
Chris Mason3259f8b2010-10-29 11:16:17 -04002258}
Jens Axboed8a85592009-09-02 12:34:32 +02002259EXPORT_SYMBOL(writeback_inodes_sb);
2260
2261/**
Miao Xie10ee27a2013-01-10 13:47:57 +08002262 * try_to_writeback_inodes_sb_nr - try to start writeback if none underway
Chris Mason3259f8b2010-10-29 11:16:17 -04002263 * @sb: the superblock
2264 * @nr: the number of pages to write
Miao Xie10ee27a2013-01-10 13:47:57 +08002265 * @reason: the reason of writeback
Chris Mason3259f8b2010-10-29 11:16:17 -04002266 *
Miao Xie10ee27a2013-01-10 13:47:57 +08002267 * Invoke writeback_inodes_sb_nr if no writeback is currently underway.
Chris Mason3259f8b2010-10-29 11:16:17 -04002268 * Returns 1 if writeback was started, 0 if not.
2269 */
Tejun Heof30a7d02015-05-22 17:14:00 -04002270bool try_to_writeback_inodes_sb_nr(struct super_block *sb, unsigned long nr,
2271 enum wb_reason reason)
Chris Mason3259f8b2010-10-29 11:16:17 -04002272{
Miao Xie10ee27a2013-01-10 13:47:57 +08002273 if (!down_read_trylock(&sb->s_umount))
Tejun Heof30a7d02015-05-22 17:14:00 -04002274 return false;
Miao Xie10ee27a2013-01-10 13:47:57 +08002275
Tejun Heof30a7d02015-05-22 17:14:00 -04002276 __writeback_inodes_sb_nr(sb, nr, reason, true);
Miao Xie10ee27a2013-01-10 13:47:57 +08002277 up_read(&sb->s_umount);
Tejun Heof30a7d02015-05-22 17:14:00 -04002278 return true;
Chris Mason3259f8b2010-10-29 11:16:17 -04002279}
Miao Xie10ee27a2013-01-10 13:47:57 +08002280EXPORT_SYMBOL(try_to_writeback_inodes_sb_nr);
2281
2282/**
2283 * try_to_writeback_inodes_sb - try to start writeback if none underway
2284 * @sb: the superblock
2285 * @reason: reason why some writeback work was initiated
2286 *
2287 * Implement by try_to_writeback_inodes_sb_nr()
2288 * Returns 1 if writeback was started, 0 if not.
2289 */
Tejun Heof30a7d02015-05-22 17:14:00 -04002290bool try_to_writeback_inodes_sb(struct super_block *sb, enum wb_reason reason)
Miao Xie10ee27a2013-01-10 13:47:57 +08002291{
2292 return try_to_writeback_inodes_sb_nr(sb, get_nr_dirty_pages(), reason);
2293}
2294EXPORT_SYMBOL(try_to_writeback_inodes_sb);
Chris Mason3259f8b2010-10-29 11:16:17 -04002295
2296/**
Jens Axboed8a85592009-09-02 12:34:32 +02002297 * sync_inodes_sb - sync sb inode pages
Jan Kara0dc83bd2014-02-21 11:19:04 +01002298 * @sb: the superblock
Jens Axboed8a85592009-09-02 12:34:32 +02002299 *
2300 * This function writes and waits on any dirty inode belonging to this
Jan Kara0dc83bd2014-02-21 11:19:04 +01002301 * super_block.
Jens Axboed8a85592009-09-02 12:34:32 +02002302 */
Jan Kara0dc83bd2014-02-21 11:19:04 +01002303void sync_inodes_sb(struct super_block *sb)
Jens Axboed8a85592009-09-02 12:34:32 +02002304{
Tejun Heocc395d72015-05-22 17:13:58 -04002305 DEFINE_WB_COMPLETION_ONSTACK(done);
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02002306 struct wb_writeback_work work = {
Christoph Hellwig3c4d7162010-06-08 18:14:43 +02002307 .sb = sb,
2308 .sync_mode = WB_SYNC_ALL,
2309 .nr_pages = LONG_MAX,
2310 .range_cyclic = 0,
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02002311 .done = &done,
Curt Wohlgemuth0e175a12011-10-07 21:54:10 -06002312 .reason = WB_REASON_SYNC,
Dave Chinner7747bd42013-07-02 22:38:35 +10002313 .for_sync = 1,
Christoph Hellwig3c4d7162010-06-08 18:14:43 +02002314 };
Tejun Heoe7972912015-05-22 17:13:48 -04002315 struct backing_dev_info *bdi = sb->s_bdi;
Christoph Hellwig3c4d7162010-06-08 18:14:43 +02002316
Tejun Heo006a0972015-08-25 14:11:52 -04002317 /*
2318 * Can't skip on !bdi_has_dirty() because we should wait for !dirty
2319 * inodes under writeback and I_DIRTY_TIME inodes ignored by
2320 * bdi_has_dirty() need to be written out too.
2321 */
2322 if (bdi == &noop_backing_dev_info)
Jan Kara6eedc702012-07-03 16:45:27 +02002323 return;
Christoph Hellwigcf37e972010-06-08 18:14:51 +02002324 WARN_ON(!rwsem_is_locked(&sb->s_umount));
2325
Tejun Heodb125362015-05-22 17:14:01 -04002326 bdi_split_work_to_wbs(bdi, &work, false);
Tejun Heocc395d72015-05-22 17:13:58 -04002327 wb_wait_for_completion(bdi, &done);
Christoph Hellwig83ba7b02010-07-06 08:59:53 +02002328
Jens Axboeb6e51312009-09-16 15:13:54 +02002329 wait_sb_inodes(sb);
Jens Axboed8a85592009-09-02 12:34:32 +02002330}
2331EXPORT_SYMBOL(sync_inodes_sb);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002332
Linus Torvalds1da177e2005-04-16 15:20:36 -07002333/**
Andrea Arcangeli7f04c262005-10-30 15:03:05 -08002334 * write_inode_now - write an inode to disk
2335 * @inode: inode to write to disk
2336 * @sync: whether the write should be synchronous or not
Linus Torvalds1da177e2005-04-16 15:20:36 -07002337 *
Andrea Arcangeli7f04c262005-10-30 15:03:05 -08002338 * This function commits an inode to disk immediately if it is dirty. This is
2339 * primarily needed by knfsd.
2340 *
2341 * The caller must either have a ref on the inode or must have set I_WILL_FREE.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002342 */
Linus Torvalds1da177e2005-04-16 15:20:36 -07002343int write_inode_now(struct inode *inode, int sync)
2344{
Christoph Hellwigf758eea2011-04-21 18:19:44 -06002345 struct bdi_writeback *wb = &inode_to_bdi(inode)->wb;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002346 struct writeback_control wbc = {
2347 .nr_to_write = LONG_MAX,
Mike Galbraith18914b12008-02-08 04:20:23 -08002348 .sync_mode = sync ? WB_SYNC_ALL : WB_SYNC_NONE,
OGAWA Hirofumi111ebb62006-06-23 02:03:26 -07002349 .range_start = 0,
2350 .range_end = LLONG_MAX,
Linus Torvalds1da177e2005-04-16 15:20:36 -07002351 };
2352
2353 if (!mapping_cap_writeback_dirty(inode->i_mapping))
Andrew Morton49364ce2005-11-07 00:59:15 -08002354 wbc.nr_to_write = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002355
2356 might_sleep();
Jan Kara4f8ad652012-05-03 14:48:00 +02002357 return writeback_single_inode(inode, wb, &wbc);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002358}
2359EXPORT_SYMBOL(write_inode_now);
2360
2361/**
2362 * sync_inode - write an inode and its pages to disk.
2363 * @inode: the inode to sync
2364 * @wbc: controls the writeback mode
2365 *
2366 * sync_inode() will write an inode and its pages to disk. It will also
2367 * correctly update the inode on its superblock's dirty inode lists and will
2368 * update inode->i_state.
2369 *
2370 * The caller must have a ref on the inode.
2371 */
2372int sync_inode(struct inode *inode, struct writeback_control *wbc)
2373{
Jan Kara4f8ad652012-05-03 14:48:00 +02002374 return writeback_single_inode(inode, &inode_to_bdi(inode)->wb, wbc);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002375}
2376EXPORT_SYMBOL(sync_inode);
Christoph Hellwigc37650162010-10-06 10:48:20 +02002377
2378/**
Andrew Mortonc691b9d2011-01-13 15:45:48 -08002379 * sync_inode_metadata - write an inode to disk
Christoph Hellwigc37650162010-10-06 10:48:20 +02002380 * @inode: the inode to sync
2381 * @wait: wait for I/O to complete.
2382 *
Andrew Mortonc691b9d2011-01-13 15:45:48 -08002383 * Write an inode to disk and adjust its dirty state after completion.
Christoph Hellwigc37650162010-10-06 10:48:20 +02002384 *
2385 * Note: only writes the actual inode, no associated data or other metadata.
2386 */
2387int sync_inode_metadata(struct inode *inode, int wait)
2388{
2389 struct writeback_control wbc = {
2390 .sync_mode = wait ? WB_SYNC_ALL : WB_SYNC_NONE,
2391 .nr_to_write = 0, /* metadata-only */
2392 };
2393
2394 return sync_inode(inode, &wbc);
2395}
2396EXPORT_SYMBOL(sync_inode_metadata);