drivers/block/nvme-core.c: fix build with gcc-4.4.4
[deliverable/linux.git] / mm / backing-dev.c
1
2 #include <linux/wait.h>
3 #include <linux/backing-dev.h>
4 #include <linux/kthread.h>
5 #include <linux/freezer.h>
6 #include <linux/fs.h>
7 #include <linux/pagemap.h>
8 #include <linux/mm.h>
9 #include <linux/sched.h>
10 #include <linux/module.h>
11 #include <linux/writeback.h>
12 #include <linux/device.h>
13 #include <trace/events/writeback.h>
14
15 static atomic_long_t bdi_seq = ATOMIC_LONG_INIT(0);
16
17 struct backing_dev_info noop_backing_dev_info = {
18 .name = "noop",
19 .capabilities = BDI_CAP_NO_ACCT_AND_WRITEBACK,
20 };
21 EXPORT_SYMBOL_GPL(noop_backing_dev_info);
22
23 static struct class *bdi_class;
24
25 /*
26 * bdi_lock protects updates to bdi_list. bdi_list has RCU reader side
27 * locking.
28 */
29 DEFINE_SPINLOCK(bdi_lock);
30 LIST_HEAD(bdi_list);
31
32 /* bdi_wq serves all asynchronous writeback tasks */
33 struct workqueue_struct *bdi_wq;
34
35 #ifdef CONFIG_DEBUG_FS
36 #include <linux/debugfs.h>
37 #include <linux/seq_file.h>
38
39 static struct dentry *bdi_debug_root;
40
41 static void bdi_debug_init(void)
42 {
43 bdi_debug_root = debugfs_create_dir("bdi", NULL);
44 }
45
46 static int bdi_debug_stats_show(struct seq_file *m, void *v)
47 {
48 struct backing_dev_info *bdi = m->private;
49 struct bdi_writeback *wb = &bdi->wb;
50 unsigned long background_thresh;
51 unsigned long dirty_thresh;
52 unsigned long wb_thresh;
53 unsigned long nr_dirty, nr_io, nr_more_io, nr_dirty_time;
54 struct inode *inode;
55
56 nr_dirty = nr_io = nr_more_io = nr_dirty_time = 0;
57 spin_lock(&wb->list_lock);
58 list_for_each_entry(inode, &wb->b_dirty, i_wb_list)
59 nr_dirty++;
60 list_for_each_entry(inode, &wb->b_io, i_wb_list)
61 nr_io++;
62 list_for_each_entry(inode, &wb->b_more_io, i_wb_list)
63 nr_more_io++;
64 list_for_each_entry(inode, &wb->b_dirty_time, i_wb_list)
65 if (inode->i_state & I_DIRTY_TIME)
66 nr_dirty_time++;
67 spin_unlock(&wb->list_lock);
68
69 global_dirty_limits(&background_thresh, &dirty_thresh);
70 wb_thresh = wb_calc_thresh(wb, dirty_thresh);
71
72 #define K(x) ((x) << (PAGE_SHIFT - 10))
73 seq_printf(m,
74 "BdiWriteback: %10lu kB\n"
75 "BdiReclaimable: %10lu kB\n"
76 "BdiDirtyThresh: %10lu kB\n"
77 "DirtyThresh: %10lu kB\n"
78 "BackgroundThresh: %10lu kB\n"
79 "BdiDirtied: %10lu kB\n"
80 "BdiWritten: %10lu kB\n"
81 "BdiWriteBandwidth: %10lu kBps\n"
82 "b_dirty: %10lu\n"
83 "b_io: %10lu\n"
84 "b_more_io: %10lu\n"
85 "b_dirty_time: %10lu\n"
86 "bdi_list: %10u\n"
87 "state: %10lx\n",
88 (unsigned long) K(wb_stat(wb, WB_WRITEBACK)),
89 (unsigned long) K(wb_stat(wb, WB_RECLAIMABLE)),
90 K(wb_thresh),
91 K(dirty_thresh),
92 K(background_thresh),
93 (unsigned long) K(wb_stat(wb, WB_DIRTIED)),
94 (unsigned long) K(wb_stat(wb, WB_WRITTEN)),
95 (unsigned long) K(wb->write_bandwidth),
96 nr_dirty,
97 nr_io,
98 nr_more_io,
99 nr_dirty_time,
100 !list_empty(&bdi->bdi_list), bdi->wb.state);
101 #undef K
102
103 return 0;
104 }
105
106 static int bdi_debug_stats_open(struct inode *inode, struct file *file)
107 {
108 return single_open(file, bdi_debug_stats_show, inode->i_private);
109 }
110
111 static const struct file_operations bdi_debug_stats_fops = {
112 .open = bdi_debug_stats_open,
113 .read = seq_read,
114 .llseek = seq_lseek,
115 .release = single_release,
116 };
117
118 static void bdi_debug_register(struct backing_dev_info *bdi, const char *name)
119 {
120 bdi->debug_dir = debugfs_create_dir(name, bdi_debug_root);
121 bdi->debug_stats = debugfs_create_file("stats", 0444, bdi->debug_dir,
122 bdi, &bdi_debug_stats_fops);
123 }
124
125 static void bdi_debug_unregister(struct backing_dev_info *bdi)
126 {
127 debugfs_remove(bdi->debug_stats);
128 debugfs_remove(bdi->debug_dir);
129 }
130 #else
131 static inline void bdi_debug_init(void)
132 {
133 }
134 static inline void bdi_debug_register(struct backing_dev_info *bdi,
135 const char *name)
136 {
137 }
138 static inline void bdi_debug_unregister(struct backing_dev_info *bdi)
139 {
140 }
141 #endif
142
143 static ssize_t read_ahead_kb_store(struct device *dev,
144 struct device_attribute *attr,
145 const char *buf, size_t count)
146 {
147 struct backing_dev_info *bdi = dev_get_drvdata(dev);
148 unsigned long read_ahead_kb;
149 ssize_t ret;
150
151 ret = kstrtoul(buf, 10, &read_ahead_kb);
152 if (ret < 0)
153 return ret;
154
155 bdi->ra_pages = read_ahead_kb >> (PAGE_SHIFT - 10);
156
157 return count;
158 }
159
160 #define K(pages) ((pages) << (PAGE_SHIFT - 10))
161
162 #define BDI_SHOW(name, expr) \
163 static ssize_t name##_show(struct device *dev, \
164 struct device_attribute *attr, char *page) \
165 { \
166 struct backing_dev_info *bdi = dev_get_drvdata(dev); \
167 \
168 return snprintf(page, PAGE_SIZE-1, "%lld\n", (long long)expr); \
169 } \
170 static DEVICE_ATTR_RW(name);
171
172 BDI_SHOW(read_ahead_kb, K(bdi->ra_pages))
173
174 static ssize_t min_ratio_store(struct device *dev,
175 struct device_attribute *attr, const char *buf, size_t count)
176 {
177 struct backing_dev_info *bdi = dev_get_drvdata(dev);
178 unsigned int ratio;
179 ssize_t ret;
180
181 ret = kstrtouint(buf, 10, &ratio);
182 if (ret < 0)
183 return ret;
184
185 ret = bdi_set_min_ratio(bdi, ratio);
186 if (!ret)
187 ret = count;
188
189 return ret;
190 }
191 BDI_SHOW(min_ratio, bdi->min_ratio)
192
193 static ssize_t max_ratio_store(struct device *dev,
194 struct device_attribute *attr, const char *buf, size_t count)
195 {
196 struct backing_dev_info *bdi = dev_get_drvdata(dev);
197 unsigned int ratio;
198 ssize_t ret;
199
200 ret = kstrtouint(buf, 10, &ratio);
201 if (ret < 0)
202 return ret;
203
204 ret = bdi_set_max_ratio(bdi, ratio);
205 if (!ret)
206 ret = count;
207
208 return ret;
209 }
210 BDI_SHOW(max_ratio, bdi->max_ratio)
211
212 static ssize_t stable_pages_required_show(struct device *dev,
213 struct device_attribute *attr,
214 char *page)
215 {
216 struct backing_dev_info *bdi = dev_get_drvdata(dev);
217
218 return snprintf(page, PAGE_SIZE-1, "%d\n",
219 bdi_cap_stable_pages_required(bdi) ? 1 : 0);
220 }
221 static DEVICE_ATTR_RO(stable_pages_required);
222
223 static struct attribute *bdi_dev_attrs[] = {
224 &dev_attr_read_ahead_kb.attr,
225 &dev_attr_min_ratio.attr,
226 &dev_attr_max_ratio.attr,
227 &dev_attr_stable_pages_required.attr,
228 NULL,
229 };
230 ATTRIBUTE_GROUPS(bdi_dev);
231
232 static __init int bdi_class_init(void)
233 {
234 bdi_class = class_create(THIS_MODULE, "bdi");
235 if (IS_ERR(bdi_class))
236 return PTR_ERR(bdi_class);
237
238 bdi_class->dev_groups = bdi_dev_groups;
239 bdi_debug_init();
240 return 0;
241 }
242 postcore_initcall(bdi_class_init);
243
244 static int __init default_bdi_init(void)
245 {
246 int err;
247
248 bdi_wq = alloc_workqueue("writeback", WQ_MEM_RECLAIM | WQ_FREEZABLE |
249 WQ_UNBOUND | WQ_SYSFS, 0);
250 if (!bdi_wq)
251 return -ENOMEM;
252
253 err = bdi_init(&noop_backing_dev_info);
254
255 return err;
256 }
257 subsys_initcall(default_bdi_init);
258
259 /*
260 * This function is used when the first inode for this wb is marked dirty. It
261 * wakes-up the corresponding bdi thread which should then take care of the
262 * periodic background write-out of dirty inodes. Since the write-out would
263 * starts only 'dirty_writeback_interval' centisecs from now anyway, we just
264 * set up a timer which wakes the bdi thread up later.
265 *
266 * Note, we wouldn't bother setting up the timer, but this function is on the
267 * fast-path (used by '__mark_inode_dirty()'), so we save few context switches
268 * by delaying the wake-up.
269 *
270 * We have to be careful not to postpone flush work if it is scheduled for
271 * earlier. Thus we use queue_delayed_work().
272 */
273 void wb_wakeup_delayed(struct bdi_writeback *wb)
274 {
275 unsigned long timeout;
276
277 timeout = msecs_to_jiffies(dirty_writeback_interval * 10);
278 spin_lock_bh(&wb->work_lock);
279 if (test_bit(WB_registered, &wb->state))
280 queue_delayed_work(bdi_wq, &wb->dwork, timeout);
281 spin_unlock_bh(&wb->work_lock);
282 }
283
284 /*
285 * Initial write bandwidth: 100 MB/s
286 */
287 #define INIT_BW (100 << (20 - PAGE_SHIFT))
288
289 static int wb_init(struct bdi_writeback *wb, struct backing_dev_info *bdi,
290 gfp_t gfp)
291 {
292 int i, err;
293
294 memset(wb, 0, sizeof(*wb));
295
296 wb->bdi = bdi;
297 wb->last_old_flush = jiffies;
298 INIT_LIST_HEAD(&wb->b_dirty);
299 INIT_LIST_HEAD(&wb->b_io);
300 INIT_LIST_HEAD(&wb->b_more_io);
301 INIT_LIST_HEAD(&wb->b_dirty_time);
302 spin_lock_init(&wb->list_lock);
303
304 wb->bw_time_stamp = jiffies;
305 wb->balanced_dirty_ratelimit = INIT_BW;
306 wb->dirty_ratelimit = INIT_BW;
307 wb->write_bandwidth = INIT_BW;
308 wb->avg_write_bandwidth = INIT_BW;
309
310 spin_lock_init(&wb->work_lock);
311 INIT_LIST_HEAD(&wb->work_list);
312 INIT_DELAYED_WORK(&wb->dwork, wb_workfn);
313
314 err = fprop_local_init_percpu(&wb->completions, gfp);
315 if (err)
316 return err;
317
318 for (i = 0; i < NR_WB_STAT_ITEMS; i++) {
319 err = percpu_counter_init(&wb->stat[i], 0, gfp);
320 if (err) {
321 while (--i)
322 percpu_counter_destroy(&wb->stat[i]);
323 fprop_local_destroy_percpu(&wb->completions);
324 return err;
325 }
326 }
327
328 return 0;
329 }
330
331 /*
332 * Remove bdi from the global list and shutdown any threads we have running
333 */
334 static void wb_shutdown(struct bdi_writeback *wb)
335 {
336 /* Make sure nobody queues further work */
337 spin_lock_bh(&wb->work_lock);
338 if (!test_and_clear_bit(WB_registered, &wb->state)) {
339 spin_unlock_bh(&wb->work_lock);
340 return;
341 }
342 spin_unlock_bh(&wb->work_lock);
343
344 /*
345 * Drain work list and shutdown the delayed_work. !WB_registered
346 * tells wb_workfn() that @wb is dying and its work_list needs to
347 * be drained no matter what.
348 */
349 mod_delayed_work(bdi_wq, &wb->dwork, 0);
350 flush_delayed_work(&wb->dwork);
351 WARN_ON(!list_empty(&wb->work_list));
352 }
353
354 static void wb_exit(struct bdi_writeback *wb)
355 {
356 int i;
357
358 WARN_ON(delayed_work_pending(&wb->dwork));
359
360 for (i = 0; i < NR_WB_STAT_ITEMS; i++)
361 percpu_counter_destroy(&wb->stat[i]);
362
363 fprop_local_destroy_percpu(&wb->completions);
364 }
365
366 #ifdef CONFIG_CGROUP_WRITEBACK
367
368 #include <linux/memcontrol.h>
369
370 /*
371 * cgwb_lock protects bdi->cgwb_tree, bdi->cgwb_congested_tree,
372 * blkcg->cgwb_list, and memcg->cgwb_list. bdi->cgwb_tree is also RCU
373 * protected. cgwb_release_wait is used to wait for the completion of cgwb
374 * releases from bdi destruction path.
375 */
376 static DEFINE_SPINLOCK(cgwb_lock);
377 static DECLARE_WAIT_QUEUE_HEAD(cgwb_release_wait);
378
379 /**
380 * wb_congested_get_create - get or create a wb_congested
381 * @bdi: associated bdi
382 * @blkcg_id: ID of the associated blkcg
383 * @gfp: allocation mask
384 *
385 * Look up the wb_congested for @blkcg_id on @bdi. If missing, create one.
386 * The returned wb_congested has its reference count incremented. Returns
387 * NULL on failure.
388 */
389 struct bdi_writeback_congested *
390 wb_congested_get_create(struct backing_dev_info *bdi, int blkcg_id, gfp_t gfp)
391 {
392 struct bdi_writeback_congested *new_congested = NULL, *congested;
393 struct rb_node **node, *parent;
394 unsigned long flags;
395
396 if (blkcg_id == 1)
397 return &bdi->wb_congested;
398 retry:
399 spin_lock_irqsave(&cgwb_lock, flags);
400
401 node = &bdi->cgwb_congested_tree.rb_node;
402 parent = NULL;
403
404 while (*node != NULL) {
405 parent = *node;
406 congested = container_of(parent, struct bdi_writeback_congested,
407 rb_node);
408 if (congested->blkcg_id < blkcg_id)
409 node = &parent->rb_left;
410 else if (congested->blkcg_id > blkcg_id)
411 node = &parent->rb_right;
412 else
413 goto found;
414 }
415
416 if (new_congested) {
417 /* !found and storage for new one already allocated, insert */
418 congested = new_congested;
419 new_congested = NULL;
420 rb_link_node(&congested->rb_node, parent, node);
421 rb_insert_color(&congested->rb_node, &bdi->cgwb_congested_tree);
422 atomic_inc(&bdi->usage_cnt);
423 goto found;
424 }
425
426 spin_unlock_irqrestore(&cgwb_lock, flags);
427
428 /* allocate storage for new one and retry */
429 new_congested = kzalloc(sizeof(*new_congested), gfp);
430 if (!new_congested)
431 return NULL;
432
433 atomic_set(&new_congested->refcnt, 0);
434 new_congested->bdi = bdi;
435 new_congested->blkcg_id = blkcg_id;
436 goto retry;
437
438 found:
439 atomic_inc(&congested->refcnt);
440 spin_unlock_irqrestore(&cgwb_lock, flags);
441 kfree(new_congested);
442 return congested;
443 }
444
445 /**
446 * wb_congested_put - put a wb_congested
447 * @congested: wb_congested to put
448 *
449 * Put @congested and destroy it if the refcnt reaches zero.
450 */
451 void wb_congested_put(struct bdi_writeback_congested *congested)
452 {
453 struct backing_dev_info *bdi = congested->bdi;
454 unsigned long flags;
455
456 if (congested->blkcg_id == 1)
457 return;
458
459 local_irq_save(flags);
460 if (!atomic_dec_and_lock(&congested->refcnt, &cgwb_lock)) {
461 local_irq_restore(flags);
462 return;
463 }
464
465 rb_erase(&congested->rb_node, &congested->bdi->cgwb_congested_tree);
466 spin_unlock_irqrestore(&cgwb_lock, flags);
467 kfree(congested);
468
469 if (atomic_dec_and_test(&bdi->usage_cnt))
470 wake_up_all(&cgwb_release_wait);
471 }
472
473 static void cgwb_release_workfn(struct work_struct *work)
474 {
475 struct bdi_writeback *wb = container_of(work, struct bdi_writeback,
476 release_work);
477 struct backing_dev_info *bdi = wb->bdi;
478
479 wb_shutdown(wb);
480
481 css_put(wb->memcg_css);
482 css_put(wb->blkcg_css);
483 wb_congested_put(wb->congested);
484
485 fprop_local_destroy_percpu(&wb->memcg_completions);
486 percpu_ref_exit(&wb->refcnt);
487 wb_exit(wb);
488 kfree_rcu(wb, rcu);
489
490 if (atomic_dec_and_test(&bdi->usage_cnt))
491 wake_up_all(&cgwb_release_wait);
492 }
493
494 static void cgwb_release(struct percpu_ref *refcnt)
495 {
496 struct bdi_writeback *wb = container_of(refcnt, struct bdi_writeback,
497 refcnt);
498 schedule_work(&wb->release_work);
499 }
500
501 static void cgwb_kill(struct bdi_writeback *wb)
502 {
503 lockdep_assert_held(&cgwb_lock);
504
505 WARN_ON(!radix_tree_delete(&wb->bdi->cgwb_tree, wb->memcg_css->id));
506 list_del(&wb->memcg_node);
507 list_del(&wb->blkcg_node);
508 percpu_ref_kill(&wb->refcnt);
509 }
510
511 static int cgwb_create(struct backing_dev_info *bdi,
512 struct cgroup_subsys_state *memcg_css, gfp_t gfp)
513 {
514 struct mem_cgroup *memcg;
515 struct cgroup_subsys_state *blkcg_css;
516 struct blkcg *blkcg;
517 struct list_head *memcg_cgwb_list, *blkcg_cgwb_list;
518 struct bdi_writeback *wb;
519 unsigned long flags;
520 int ret = 0;
521
522 memcg = mem_cgroup_from_css(memcg_css);
523 blkcg_css = cgroup_get_e_css(memcg_css->cgroup, &blkio_cgrp_subsys);
524 blkcg = css_to_blkcg(blkcg_css);
525 memcg_cgwb_list = mem_cgroup_cgwb_list(memcg);
526 blkcg_cgwb_list = &blkcg->cgwb_list;
527
528 /* look up again under lock and discard on blkcg mismatch */
529 spin_lock_irqsave(&cgwb_lock, flags);
530 wb = radix_tree_lookup(&bdi->cgwb_tree, memcg_css->id);
531 if (wb && wb->blkcg_css != blkcg_css) {
532 cgwb_kill(wb);
533 wb = NULL;
534 }
535 spin_unlock_irqrestore(&cgwb_lock, flags);
536 if (wb)
537 goto out_put;
538
539 /* need to create a new one */
540 wb = kmalloc(sizeof(*wb), gfp);
541 if (!wb)
542 return -ENOMEM;
543
544 ret = wb_init(wb, bdi, gfp);
545 if (ret)
546 goto err_free;
547
548 ret = percpu_ref_init(&wb->refcnt, cgwb_release, 0, gfp);
549 if (ret)
550 goto err_wb_exit;
551
552 ret = fprop_local_init_percpu(&wb->memcg_completions, gfp);
553 if (ret)
554 goto err_ref_exit;
555
556 wb->congested = wb_congested_get_create(bdi, blkcg_css->id, gfp);
557 if (!wb->congested) {
558 ret = -ENOMEM;
559 goto err_fprop_exit;
560 }
561
562 wb->memcg_css = memcg_css;
563 wb->blkcg_css = blkcg_css;
564 INIT_WORK(&wb->release_work, cgwb_release_workfn);
565 set_bit(WB_registered, &wb->state);
566
567 /*
568 * The root wb determines the registered state of the whole bdi and
569 * memcg_cgwb_list and blkcg_cgwb_list's next pointers indicate
570 * whether they're still online. Don't link @wb if any is dead.
571 * See wb_memcg_offline() and wb_blkcg_offline().
572 */
573 ret = -ENODEV;
574 spin_lock_irqsave(&cgwb_lock, flags);
575 if (test_bit(WB_registered, &bdi->wb.state) &&
576 blkcg_cgwb_list->next && memcg_cgwb_list->next) {
577 /* we might have raced another instance of this function */
578 ret = radix_tree_insert(&bdi->cgwb_tree, memcg_css->id, wb);
579 if (!ret) {
580 atomic_inc(&bdi->usage_cnt);
581 list_add(&wb->memcg_node, memcg_cgwb_list);
582 list_add(&wb->blkcg_node, blkcg_cgwb_list);
583 css_get(memcg_css);
584 css_get(blkcg_css);
585 }
586 }
587 spin_unlock_irqrestore(&cgwb_lock, flags);
588 if (ret) {
589 if (ret == -EEXIST)
590 ret = 0;
591 goto err_put_congested;
592 }
593 goto out_put;
594
595 err_put_congested:
596 wb_congested_put(wb->congested);
597 err_fprop_exit:
598 fprop_local_destroy_percpu(&wb->memcg_completions);
599 err_ref_exit:
600 percpu_ref_exit(&wb->refcnt);
601 err_wb_exit:
602 wb_exit(wb);
603 err_free:
604 kfree(wb);
605 out_put:
606 css_put(blkcg_css);
607 return ret;
608 }
609
610 /**
611 * wb_get_create - get wb for a given memcg, create if necessary
612 * @bdi: target bdi
613 * @memcg_css: cgroup_subsys_state of the target memcg (must have positive ref)
614 * @gfp: allocation mask to use
615 *
616 * Try to get the wb for @memcg_css on @bdi. If it doesn't exist, try to
617 * create one. The returned wb has its refcount incremented.
618 *
619 * This function uses css_get() on @memcg_css and thus expects its refcnt
620 * to be positive on invocation. IOW, rcu_read_lock() protection on
621 * @memcg_css isn't enough. try_get it before calling this function.
622 *
623 * A wb is keyed by its associated memcg. As blkcg implicitly enables
624 * memcg on the default hierarchy, memcg association is guaranteed to be
625 * more specific (equal or descendant to the associated blkcg) and thus can
626 * identify both the memcg and blkcg associations.
627 *
628 * Because the blkcg associated with a memcg may change as blkcg is enabled
629 * and disabled closer to root in the hierarchy, each wb keeps track of
630 * both the memcg and blkcg associated with it and verifies the blkcg on
631 * each lookup. On mismatch, the existing wb is discarded and a new one is
632 * created.
633 */
634 struct bdi_writeback *wb_get_create(struct backing_dev_info *bdi,
635 struct cgroup_subsys_state *memcg_css,
636 gfp_t gfp)
637 {
638 struct bdi_writeback *wb;
639
640 might_sleep_if(gfp & __GFP_WAIT);
641
642 if (!memcg_css->parent)
643 return &bdi->wb;
644
645 do {
646 rcu_read_lock();
647 wb = radix_tree_lookup(&bdi->cgwb_tree, memcg_css->id);
648 if (wb) {
649 struct cgroup_subsys_state *blkcg_css;
650
651 /* see whether the blkcg association has changed */
652 blkcg_css = cgroup_get_e_css(memcg_css->cgroup,
653 &blkio_cgrp_subsys);
654 if (unlikely(wb->blkcg_css != blkcg_css ||
655 !wb_tryget(wb)))
656 wb = NULL;
657 css_put(blkcg_css);
658 }
659 rcu_read_unlock();
660 } while (!wb && !cgwb_create(bdi, memcg_css, gfp));
661
662 return wb;
663 }
664
665 static void cgwb_bdi_init(struct backing_dev_info *bdi)
666 {
667 bdi->wb.memcg_css = mem_cgroup_root_css;
668 bdi->wb.blkcg_css = blkcg_root_css;
669 bdi->wb_congested.blkcg_id = 1;
670 INIT_RADIX_TREE(&bdi->cgwb_tree, GFP_ATOMIC);
671 bdi->cgwb_congested_tree = RB_ROOT;
672 atomic_set(&bdi->usage_cnt, 1);
673 }
674
675 static void cgwb_bdi_destroy(struct backing_dev_info *bdi)
676 {
677 struct radix_tree_iter iter;
678 void **slot;
679
680 WARN_ON(test_bit(WB_registered, &bdi->wb.state));
681
682 spin_lock_irq(&cgwb_lock);
683 radix_tree_for_each_slot(slot, &bdi->cgwb_tree, &iter, 0)
684 cgwb_kill(*slot);
685 spin_unlock_irq(&cgwb_lock);
686
687 /*
688 * All cgwb's and their congested states must be shutdown and
689 * released before returning. Drain the usage counter to wait for
690 * all cgwb's and cgwb_congested's ever created on @bdi.
691 */
692 atomic_dec(&bdi->usage_cnt);
693 wait_event(cgwb_release_wait, !atomic_read(&bdi->usage_cnt));
694 }
695
696 /**
697 * wb_memcg_offline - kill all wb's associated with a memcg being offlined
698 * @memcg: memcg being offlined
699 *
700 * Also prevents creation of any new wb's associated with @memcg.
701 */
702 void wb_memcg_offline(struct mem_cgroup *memcg)
703 {
704 LIST_HEAD(to_destroy);
705 struct list_head *memcg_cgwb_list = mem_cgroup_cgwb_list(memcg);
706 struct bdi_writeback *wb, *next;
707
708 spin_lock_irq(&cgwb_lock);
709 list_for_each_entry_safe(wb, next, memcg_cgwb_list, memcg_node)
710 cgwb_kill(wb);
711 memcg_cgwb_list->next = NULL; /* prevent new wb's */
712 spin_unlock_irq(&cgwb_lock);
713 }
714
715 /**
716 * wb_blkcg_offline - kill all wb's associated with a blkcg being offlined
717 * @blkcg: blkcg being offlined
718 *
719 * Also prevents creation of any new wb's associated with @blkcg.
720 */
721 void wb_blkcg_offline(struct blkcg *blkcg)
722 {
723 LIST_HEAD(to_destroy);
724 struct bdi_writeback *wb, *next;
725
726 spin_lock_irq(&cgwb_lock);
727 list_for_each_entry_safe(wb, next, &blkcg->cgwb_list, blkcg_node)
728 cgwb_kill(wb);
729 blkcg->cgwb_list.next = NULL; /* prevent new wb's */
730 spin_unlock_irq(&cgwb_lock);
731 }
732
733 #else /* CONFIG_CGROUP_WRITEBACK */
734
735 static void cgwb_bdi_init(struct backing_dev_info *bdi) { }
736 static void cgwb_bdi_destroy(struct backing_dev_info *bdi) { }
737
738 #endif /* CONFIG_CGROUP_WRITEBACK */
739
740 int bdi_init(struct backing_dev_info *bdi)
741 {
742 int err;
743
744 bdi->dev = NULL;
745
746 bdi->min_ratio = 0;
747 bdi->max_ratio = 100;
748 bdi->max_prop_frac = FPROP_FRAC_BASE;
749 INIT_LIST_HEAD(&bdi->bdi_list);
750 init_waitqueue_head(&bdi->wb_waitq);
751
752 err = wb_init(&bdi->wb, bdi, GFP_KERNEL);
753 if (err)
754 return err;
755
756 bdi->wb_congested.state = 0;
757 bdi->wb.congested = &bdi->wb_congested;
758
759 cgwb_bdi_init(bdi);
760 return 0;
761 }
762 EXPORT_SYMBOL(bdi_init);
763
764 int bdi_register(struct backing_dev_info *bdi, struct device *parent,
765 const char *fmt, ...)
766 {
767 va_list args;
768 struct device *dev;
769
770 if (bdi->dev) /* The driver needs to use separate queues per device */
771 return 0;
772
773 va_start(args, fmt);
774 dev = device_create_vargs(bdi_class, parent, MKDEV(0, 0), bdi, fmt, args);
775 va_end(args);
776 if (IS_ERR(dev))
777 return PTR_ERR(dev);
778
779 bdi->dev = dev;
780
781 bdi_debug_register(bdi, dev_name(dev));
782 set_bit(WB_registered, &bdi->wb.state);
783
784 spin_lock_bh(&bdi_lock);
785 list_add_tail_rcu(&bdi->bdi_list, &bdi_list);
786 spin_unlock_bh(&bdi_lock);
787
788 trace_writeback_bdi_register(bdi);
789 return 0;
790 }
791 EXPORT_SYMBOL(bdi_register);
792
793 int bdi_register_dev(struct backing_dev_info *bdi, dev_t dev)
794 {
795 return bdi_register(bdi, NULL, "%u:%u", MAJOR(dev), MINOR(dev));
796 }
797 EXPORT_SYMBOL(bdi_register_dev);
798
799 /*
800 * Remove bdi from bdi_list, and ensure that it is no longer visible
801 */
802 static void bdi_remove_from_list(struct backing_dev_info *bdi)
803 {
804 spin_lock_bh(&bdi_lock);
805 list_del_rcu(&bdi->bdi_list);
806 spin_unlock_bh(&bdi_lock);
807
808 synchronize_rcu_expedited();
809 }
810
811 void bdi_destroy(struct backing_dev_info *bdi)
812 {
813 /* make sure nobody finds us on the bdi_list anymore */
814 bdi_remove_from_list(bdi);
815 wb_shutdown(&bdi->wb);
816 cgwb_bdi_destroy(bdi);
817
818 if (bdi->dev) {
819 bdi_debug_unregister(bdi);
820 device_unregister(bdi->dev);
821 bdi->dev = NULL;
822 }
823
824 wb_exit(&bdi->wb);
825 }
826 EXPORT_SYMBOL(bdi_destroy);
827
828 /*
829 * For use from filesystems to quickly init and register a bdi associated
830 * with dirty writeback
831 */
832 int bdi_setup_and_register(struct backing_dev_info *bdi, char *name)
833 {
834 int err;
835
836 bdi->name = name;
837 bdi->capabilities = 0;
838 err = bdi_init(bdi);
839 if (err)
840 return err;
841
842 err = bdi_register(bdi, NULL, "%.28s-%ld", name,
843 atomic_long_inc_return(&bdi_seq));
844 if (err) {
845 bdi_destroy(bdi);
846 return err;
847 }
848
849 return 0;
850 }
851 EXPORT_SYMBOL(bdi_setup_and_register);
852
853 static wait_queue_head_t congestion_wqh[2] = {
854 __WAIT_QUEUE_HEAD_INITIALIZER(congestion_wqh[0]),
855 __WAIT_QUEUE_HEAD_INITIALIZER(congestion_wqh[1])
856 };
857 static atomic_t nr_wb_congested[2];
858
859 void clear_wb_congested(struct bdi_writeback_congested *congested, int sync)
860 {
861 wait_queue_head_t *wqh = &congestion_wqh[sync];
862 enum wb_state bit;
863
864 bit = sync ? WB_sync_congested : WB_async_congested;
865 if (test_and_clear_bit(bit, &congested->state))
866 atomic_dec(&nr_wb_congested[sync]);
867 smp_mb__after_atomic();
868 if (waitqueue_active(wqh))
869 wake_up(wqh);
870 }
871 EXPORT_SYMBOL(clear_wb_congested);
872
873 void set_wb_congested(struct bdi_writeback_congested *congested, int sync)
874 {
875 enum wb_state bit;
876
877 bit = sync ? WB_sync_congested : WB_async_congested;
878 if (!test_and_set_bit(bit, &congested->state))
879 atomic_inc(&nr_wb_congested[sync]);
880 }
881 EXPORT_SYMBOL(set_wb_congested);
882
883 /**
884 * congestion_wait - wait for a backing_dev to become uncongested
885 * @sync: SYNC or ASYNC IO
886 * @timeout: timeout in jiffies
887 *
888 * Waits for up to @timeout jiffies for a backing_dev (any backing_dev) to exit
889 * write congestion. If no backing_devs are congested then just wait for the
890 * next write to be completed.
891 */
892 long congestion_wait(int sync, long timeout)
893 {
894 long ret;
895 unsigned long start = jiffies;
896 DEFINE_WAIT(wait);
897 wait_queue_head_t *wqh = &congestion_wqh[sync];
898
899 prepare_to_wait(wqh, &wait, TASK_UNINTERRUPTIBLE);
900 ret = io_schedule_timeout(timeout);
901 finish_wait(wqh, &wait);
902
903 trace_writeback_congestion_wait(jiffies_to_usecs(timeout),
904 jiffies_to_usecs(jiffies - start));
905
906 return ret;
907 }
908 EXPORT_SYMBOL(congestion_wait);
909
910 /**
911 * wait_iff_congested - Conditionally wait for a backing_dev to become uncongested or a zone to complete writes
912 * @zone: A zone to check if it is heavily congested
913 * @sync: SYNC or ASYNC IO
914 * @timeout: timeout in jiffies
915 *
916 * In the event of a congested backing_dev (any backing_dev) and the given
917 * @zone has experienced recent congestion, this waits for up to @timeout
918 * jiffies for either a BDI to exit congestion of the given @sync queue
919 * or a write to complete.
920 *
921 * In the absence of zone congestion, cond_resched() is called to yield
922 * the processor if necessary but otherwise does not sleep.
923 *
924 * The return value is 0 if the sleep is for the full timeout. Otherwise,
925 * it is the number of jiffies that were still remaining when the function
926 * returned. return_value == timeout implies the function did not sleep.
927 */
928 long wait_iff_congested(struct zone *zone, int sync, long timeout)
929 {
930 long ret;
931 unsigned long start = jiffies;
932 DEFINE_WAIT(wait);
933 wait_queue_head_t *wqh = &congestion_wqh[sync];
934
935 /*
936 * If there is no congestion, or heavy congestion is not being
937 * encountered in the current zone, yield if necessary instead
938 * of sleeping on the congestion queue
939 */
940 if (atomic_read(&nr_wb_congested[sync]) == 0 ||
941 !test_bit(ZONE_CONGESTED, &zone->flags)) {
942 cond_resched();
943
944 /* In case we scheduled, work out time remaining */
945 ret = timeout - (jiffies - start);
946 if (ret < 0)
947 ret = 0;
948
949 goto out;
950 }
951
952 /* Sleep until uncongested or a write happens */
953 prepare_to_wait(wqh, &wait, TASK_UNINTERRUPTIBLE);
954 ret = io_schedule_timeout(timeout);
955 finish_wait(wqh, &wait);
956
957 out:
958 trace_writeback_wait_iff_congested(jiffies_to_usecs(timeout),
959 jiffies_to_usecs(jiffies - start));
960
961 return ret;
962 }
963 EXPORT_SYMBOL(wait_iff_congested);
964
965 int pdflush_proc_obsolete(struct ctl_table *table, int write,
966 void __user *buffer, size_t *lenp, loff_t *ppos)
967 {
968 char kbuf[] = "0\n";
969
970 if (*ppos || *lenp < sizeof(kbuf)) {
971 *lenp = 0;
972 return 0;
973 }
974
975 if (copy_to_user(buffer, kbuf, sizeof(kbuf)))
976 return -EFAULT;
977 printk_once(KERN_WARNING "%s exported in /proc is scheduled for removal\n",
978 table->procname);
979
980 *lenp = 2;
981 *ppos += *lenp;
982 return 2;
983 }
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