2 #include <linux/wait.h>
3 #include <linux/backing-dev.h>
4 #include <linux/kthread.h>
5 #include <linux/freezer.h>
7 #include <linux/pagemap.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>
15 struct backing_dev_info noop_backing_dev_info
= {
17 .capabilities
= BDI_CAP_NO_ACCT_AND_WRITEBACK
,
19 EXPORT_SYMBOL_GPL(noop_backing_dev_info
);
21 static struct class *bdi_class
;
24 * bdi_lock protects updates to bdi_list. bdi_list has RCU reader side
27 DEFINE_SPINLOCK(bdi_lock
);
30 /* bdi_wq serves all asynchronous writeback tasks */
31 struct workqueue_struct
*bdi_wq
;
33 #ifdef CONFIG_DEBUG_FS
34 #include <linux/debugfs.h>
35 #include <linux/seq_file.h>
37 static struct dentry
*bdi_debug_root
;
39 static void bdi_debug_init(void)
41 bdi_debug_root
= debugfs_create_dir("bdi", NULL
);
44 static int bdi_debug_stats_show(struct seq_file
*m
, void *v
)
46 struct backing_dev_info
*bdi
= m
->private;
47 struct bdi_writeback
*wb
= &bdi
->wb
;
48 unsigned long background_thresh
;
49 unsigned long dirty_thresh
;
50 unsigned long wb_thresh
;
51 unsigned long nr_dirty
, nr_io
, nr_more_io
, nr_dirty_time
;
54 nr_dirty
= nr_io
= nr_more_io
= nr_dirty_time
= 0;
55 spin_lock(&wb
->list_lock
);
56 list_for_each_entry(inode
, &wb
->b_dirty
, i_io_list
)
58 list_for_each_entry(inode
, &wb
->b_io
, i_io_list
)
60 list_for_each_entry(inode
, &wb
->b_more_io
, i_io_list
)
62 list_for_each_entry(inode
, &wb
->b_dirty_time
, i_io_list
)
63 if (inode
->i_state
& I_DIRTY_TIME
)
65 spin_unlock(&wb
->list_lock
);
67 global_dirty_limits(&background_thresh
, &dirty_thresh
);
68 wb_thresh
= wb_calc_thresh(wb
, dirty_thresh
);
70 #define K(x) ((x) << (PAGE_SHIFT - 10))
72 "BdiWriteback: %10lu kB\n"
73 "BdiReclaimable: %10lu kB\n"
74 "BdiDirtyThresh: %10lu kB\n"
75 "DirtyThresh: %10lu kB\n"
76 "BackgroundThresh: %10lu kB\n"
77 "BdiDirtied: %10lu kB\n"
78 "BdiWritten: %10lu kB\n"
79 "BdiWriteBandwidth: %10lu kBps\n"
83 "b_dirty_time: %10lu\n"
86 (unsigned long) K(wb_stat(wb
, WB_WRITEBACK
)),
87 (unsigned long) K(wb_stat(wb
, WB_RECLAIMABLE
)),
91 (unsigned long) K(wb_stat(wb
, WB_DIRTIED
)),
92 (unsigned long) K(wb_stat(wb
, WB_WRITTEN
)),
93 (unsigned long) K(wb
->write_bandwidth
),
98 !list_empty(&bdi
->bdi_list
), bdi
->wb
.state
);
103 DEFINE_SHOW_ATTRIBUTE(bdi_debug_stats
);
105 static int bdi_debug_register(struct backing_dev_info
*bdi
, const char *name
)
110 bdi
->debug_dir
= debugfs_create_dir(name
, bdi_debug_root
);
114 bdi
->debug_stats
= debugfs_create_file("stats", 0444, bdi
->debug_dir
,
115 bdi
, &bdi_debug_stats_fops
);
116 if (!bdi
->debug_stats
) {
117 debugfs_remove(bdi
->debug_dir
);
118 bdi
->debug_dir
= NULL
;
125 static void bdi_debug_unregister(struct backing_dev_info
*bdi
)
127 debugfs_remove(bdi
->debug_stats
);
128 debugfs_remove(bdi
->debug_dir
);
131 static inline void bdi_debug_init(void)
134 static inline int bdi_debug_register(struct backing_dev_info
*bdi
,
139 static inline void bdi_debug_unregister(struct backing_dev_info
*bdi
)
144 static ssize_t
read_ahead_kb_store(struct device
*dev
,
145 struct device_attribute
*attr
,
146 const char *buf
, size_t count
)
148 struct backing_dev_info
*bdi
= dev_get_drvdata(dev
);
149 unsigned long read_ahead_kb
;
152 ret
= kstrtoul(buf
, 10, &read_ahead_kb
);
156 bdi
->ra_pages
= read_ahead_kb
>> (PAGE_SHIFT
- 10);
161 #define K(pages) ((pages) << (PAGE_SHIFT - 10))
163 #define BDI_SHOW(name, expr) \
164 static ssize_t name##_show(struct device *dev, \
165 struct device_attribute *attr, char *page) \
167 struct backing_dev_info *bdi = dev_get_drvdata(dev); \
169 return snprintf(page, PAGE_SIZE-1, "%lld\n", (long long)expr); \
171 static DEVICE_ATTR_RW(name);
173 BDI_SHOW(read_ahead_kb
, K(bdi
->ra_pages
))
175 static ssize_t
min_ratio_store(struct device
*dev
,
176 struct device_attribute
*attr
, const char *buf
, size_t count
)
178 struct backing_dev_info
*bdi
= dev_get_drvdata(dev
);
182 ret
= kstrtouint(buf
, 10, &ratio
);
186 ret
= bdi_set_min_ratio(bdi
, ratio
);
192 BDI_SHOW(min_ratio
, bdi
->min_ratio
)
194 static ssize_t
max_ratio_store(struct device
*dev
,
195 struct device_attribute
*attr
, const char *buf
, size_t count
)
197 struct backing_dev_info
*bdi
= dev_get_drvdata(dev
);
201 ret
= kstrtouint(buf
, 10, &ratio
);
205 ret
= bdi_set_max_ratio(bdi
, ratio
);
211 BDI_SHOW(max_ratio
, bdi
->max_ratio
)
213 static ssize_t
stable_pages_required_show(struct device
*dev
,
214 struct device_attribute
*attr
,
217 struct backing_dev_info
*bdi
= dev_get_drvdata(dev
);
219 return snprintf(page
, PAGE_SIZE
-1, "%d\n",
220 bdi_cap_stable_pages_required(bdi
) ? 1 : 0);
222 static DEVICE_ATTR_RO(stable_pages_required
);
224 static struct attribute
*bdi_dev_attrs
[] = {
225 &dev_attr_read_ahead_kb
.attr
,
226 &dev_attr_min_ratio
.attr
,
227 &dev_attr_max_ratio
.attr
,
228 &dev_attr_stable_pages_required
.attr
,
231 ATTRIBUTE_GROUPS(bdi_dev
);
233 static __init
int bdi_class_init(void)
235 bdi_class
= class_create(THIS_MODULE
, "bdi");
236 if (IS_ERR(bdi_class
))
237 return PTR_ERR(bdi_class
);
239 bdi_class
->dev_groups
= bdi_dev_groups
;
244 postcore_initcall(bdi_class_init
);
246 static int bdi_init(struct backing_dev_info
*bdi
);
248 static int __init
default_bdi_init(void)
252 bdi_wq
= alloc_workqueue("writeback", WQ_MEM_RECLAIM
| WQ_FREEZABLE
|
253 WQ_UNBOUND
| WQ_SYSFS
, 0);
257 err
= bdi_init(&noop_backing_dev_info
);
261 subsys_initcall(default_bdi_init
);
264 * This function is used when the first inode for this wb is marked dirty. It
265 * wakes-up the corresponding bdi thread which should then take care of the
266 * periodic background write-out of dirty inodes. Since the write-out would
267 * starts only 'dirty_writeback_interval' centisecs from now anyway, we just
268 * set up a timer which wakes the bdi thread up later.
270 * Note, we wouldn't bother setting up the timer, but this function is on the
271 * fast-path (used by '__mark_inode_dirty()'), so we save few context switches
272 * by delaying the wake-up.
274 * We have to be careful not to postpone flush work if it is scheduled for
275 * earlier. Thus we use queue_delayed_work().
277 void wb_wakeup_delayed(struct bdi_writeback
*wb
)
279 unsigned long timeout
;
281 timeout
= msecs_to_jiffies(dirty_writeback_interval
* 10);
282 spin_lock_bh(&wb
->work_lock
);
283 if (test_bit(WB_registered
, &wb
->state
))
284 queue_delayed_work(bdi_wq
, &wb
->dwork
, timeout
);
285 spin_unlock_bh(&wb
->work_lock
);
289 * Initial write bandwidth: 100 MB/s
291 #define INIT_BW (100 << (20 - PAGE_SHIFT))
293 static int wb_init(struct bdi_writeback
*wb
, struct backing_dev_info
*bdi
,
294 int blkcg_id
, gfp_t gfp
)
298 memset(wb
, 0, sizeof(*wb
));
303 wb
->last_old_flush
= jiffies
;
304 INIT_LIST_HEAD(&wb
->b_dirty
);
305 INIT_LIST_HEAD(&wb
->b_io
);
306 INIT_LIST_HEAD(&wb
->b_more_io
);
307 INIT_LIST_HEAD(&wb
->b_dirty_time
);
308 spin_lock_init(&wb
->list_lock
);
310 wb
->bw_time_stamp
= jiffies
;
311 wb
->balanced_dirty_ratelimit
= INIT_BW
;
312 wb
->dirty_ratelimit
= INIT_BW
;
313 wb
->write_bandwidth
= INIT_BW
;
314 wb
->avg_write_bandwidth
= INIT_BW
;
316 spin_lock_init(&wb
->work_lock
);
317 INIT_LIST_HEAD(&wb
->work_list
);
318 INIT_DELAYED_WORK(&wb
->dwork
, wb_workfn
);
319 wb
->dirty_sleep
= jiffies
;
321 wb
->congested
= wb_congested_get_create(bdi
, blkcg_id
, gfp
);
322 if (!wb
->congested
) {
327 err
= fprop_local_init_percpu(&wb
->completions
, gfp
);
331 for (i
= 0; i
< NR_WB_STAT_ITEMS
; i
++) {
332 err
= percpu_counter_init(&wb
->stat
[i
], 0, gfp
);
334 goto out_destroy_stat
;
341 percpu_counter_destroy(&wb
->stat
[i
]);
342 fprop_local_destroy_percpu(&wb
->completions
);
344 wb_congested_put(wb
->congested
);
351 static void cgwb_remove_from_bdi_list(struct bdi_writeback
*wb
);
354 * Remove bdi from the global list and shutdown any threads we have running
356 static void wb_shutdown(struct bdi_writeback
*wb
)
358 /* Make sure nobody queues further work */
359 spin_lock_bh(&wb
->work_lock
);
360 if (!test_and_clear_bit(WB_registered
, &wb
->state
)) {
361 spin_unlock_bh(&wb
->work_lock
);
364 spin_unlock_bh(&wb
->work_lock
);
366 cgwb_remove_from_bdi_list(wb
);
368 * Drain work list and shutdown the delayed_work. !WB_registered
369 * tells wb_workfn() that @wb is dying and its work_list needs to
370 * be drained no matter what.
372 mod_delayed_work(bdi_wq
, &wb
->dwork
, 0);
373 flush_delayed_work(&wb
->dwork
);
374 WARN_ON(!list_empty(&wb
->work_list
));
377 static void wb_exit(struct bdi_writeback
*wb
)
381 WARN_ON(delayed_work_pending(&wb
->dwork
));
383 for (i
= 0; i
< NR_WB_STAT_ITEMS
; i
++)
384 percpu_counter_destroy(&wb
->stat
[i
]);
386 fprop_local_destroy_percpu(&wb
->completions
);
387 wb_congested_put(wb
->congested
);
388 if (wb
!= &wb
->bdi
->wb
)
392 #ifdef CONFIG_CGROUP_WRITEBACK
394 #include <linux/memcontrol.h>
397 * cgwb_lock protects bdi->cgwb_tree, bdi->cgwb_congested_tree,
398 * blkcg->cgwb_list, and memcg->cgwb_list. bdi->cgwb_tree is also RCU
401 static DEFINE_SPINLOCK(cgwb_lock
);
402 static struct workqueue_struct
*cgwb_release_wq
;
405 * wb_congested_get_create - get or create a wb_congested
406 * @bdi: associated bdi
407 * @blkcg_id: ID of the associated blkcg
408 * @gfp: allocation mask
410 * Look up the wb_congested for @blkcg_id on @bdi. If missing, create one.
411 * The returned wb_congested has its reference count incremented. Returns
414 struct bdi_writeback_congested
*
415 wb_congested_get_create(struct backing_dev_info
*bdi
, int blkcg_id
, gfp_t gfp
)
417 struct bdi_writeback_congested
*new_congested
= NULL
, *congested
;
418 struct rb_node
**node
, *parent
;
421 spin_lock_irqsave(&cgwb_lock
, flags
);
423 node
= &bdi
->cgwb_congested_tree
.rb_node
;
426 while (*node
!= NULL
) {
428 congested
= rb_entry(parent
, struct bdi_writeback_congested
,
430 if (congested
->blkcg_id
< blkcg_id
)
431 node
= &parent
->rb_left
;
432 else if (congested
->blkcg_id
> blkcg_id
)
433 node
= &parent
->rb_right
;
439 /* !found and storage for new one already allocated, insert */
440 congested
= new_congested
;
441 rb_link_node(&congested
->rb_node
, parent
, node
);
442 rb_insert_color(&congested
->rb_node
, &bdi
->cgwb_congested_tree
);
443 spin_unlock_irqrestore(&cgwb_lock
, flags
);
447 spin_unlock_irqrestore(&cgwb_lock
, flags
);
449 /* allocate storage for new one and retry */
450 new_congested
= kzalloc(sizeof(*new_congested
), gfp
);
454 refcount_set(&new_congested
->refcnt
, 1);
455 new_congested
->__bdi
= bdi
;
456 new_congested
->blkcg_id
= blkcg_id
;
460 refcount_inc(&congested
->refcnt
);
461 spin_unlock_irqrestore(&cgwb_lock
, flags
);
462 kfree(new_congested
);
467 * wb_congested_put - put a wb_congested
468 * @congested: wb_congested to put
470 * Put @congested and destroy it if the refcnt reaches zero.
472 void wb_congested_put(struct bdi_writeback_congested
*congested
)
476 if (!refcount_dec_and_lock_irqsave(&congested
->refcnt
, &cgwb_lock
, &flags
))
479 /* bdi might already have been destroyed leaving @congested unlinked */
480 if (congested
->__bdi
) {
481 rb_erase(&congested
->rb_node
,
482 &congested
->__bdi
->cgwb_congested_tree
);
483 congested
->__bdi
= NULL
;
486 spin_unlock_irqrestore(&cgwb_lock
, flags
);
490 static void cgwb_release_workfn(struct work_struct
*work
)
492 struct bdi_writeback
*wb
= container_of(work
, struct bdi_writeback
,
494 struct blkcg
*blkcg
= css_to_blkcg(wb
->blkcg_css
);
496 mutex_lock(&wb
->bdi
->cgwb_release_mutex
);
499 css_put(wb
->memcg_css
);
500 css_put(wb
->blkcg_css
);
501 mutex_unlock(&wb
->bdi
->cgwb_release_mutex
);
503 /* triggers blkg destruction if cgwb_refcnt becomes zero */
504 blkcg_cgwb_put(blkcg
);
506 fprop_local_destroy_percpu(&wb
->memcg_completions
);
507 percpu_ref_exit(&wb
->refcnt
);
512 static void cgwb_release(struct percpu_ref
*refcnt
)
514 struct bdi_writeback
*wb
= container_of(refcnt
, struct bdi_writeback
,
516 queue_work(cgwb_release_wq
, &wb
->release_work
);
519 static void cgwb_kill(struct bdi_writeback
*wb
)
521 lockdep_assert_held(&cgwb_lock
);
523 WARN_ON(!radix_tree_delete(&wb
->bdi
->cgwb_tree
, wb
->memcg_css
->id
));
524 list_del(&wb
->memcg_node
);
525 list_del(&wb
->blkcg_node
);
526 percpu_ref_kill(&wb
->refcnt
);
529 static void cgwb_remove_from_bdi_list(struct bdi_writeback
*wb
)
531 spin_lock_irq(&cgwb_lock
);
532 list_del_rcu(&wb
->bdi_node
);
533 spin_unlock_irq(&cgwb_lock
);
536 static int cgwb_create(struct backing_dev_info
*bdi
,
537 struct cgroup_subsys_state
*memcg_css
, gfp_t gfp
)
539 struct mem_cgroup
*memcg
;
540 struct cgroup_subsys_state
*blkcg_css
;
542 struct list_head
*memcg_cgwb_list
, *blkcg_cgwb_list
;
543 struct bdi_writeback
*wb
;
547 memcg
= mem_cgroup_from_css(memcg_css
);
548 blkcg_css
= cgroup_get_e_css(memcg_css
->cgroup
, &io_cgrp_subsys
);
549 blkcg
= css_to_blkcg(blkcg_css
);
550 memcg_cgwb_list
= &memcg
->cgwb_list
;
551 blkcg_cgwb_list
= &blkcg
->cgwb_list
;
553 /* look up again under lock and discard on blkcg mismatch */
554 spin_lock_irqsave(&cgwb_lock
, flags
);
555 wb
= radix_tree_lookup(&bdi
->cgwb_tree
, memcg_css
->id
);
556 if (wb
&& wb
->blkcg_css
!= blkcg_css
) {
560 spin_unlock_irqrestore(&cgwb_lock
, flags
);
564 /* need to create a new one */
565 wb
= kmalloc(sizeof(*wb
), gfp
);
571 ret
= wb_init(wb
, bdi
, blkcg_css
->id
, gfp
);
575 ret
= percpu_ref_init(&wb
->refcnt
, cgwb_release
, 0, gfp
);
579 ret
= fprop_local_init_percpu(&wb
->memcg_completions
, gfp
);
583 wb
->memcg_css
= memcg_css
;
584 wb
->blkcg_css
= blkcg_css
;
585 INIT_WORK(&wb
->release_work
, cgwb_release_workfn
);
586 set_bit(WB_registered
, &wb
->state
);
589 * The root wb determines the registered state of the whole bdi and
590 * memcg_cgwb_list and blkcg_cgwb_list's next pointers indicate
591 * whether they're still online. Don't link @wb if any is dead.
592 * See wb_memcg_offline() and wb_blkcg_offline().
595 spin_lock_irqsave(&cgwb_lock
, flags
);
596 if (test_bit(WB_registered
, &bdi
->wb
.state
) &&
597 blkcg_cgwb_list
->next
&& memcg_cgwb_list
->next
) {
598 /* we might have raced another instance of this function */
599 ret
= radix_tree_insert(&bdi
->cgwb_tree
, memcg_css
->id
, wb
);
601 list_add_tail_rcu(&wb
->bdi_node
, &bdi
->wb_list
);
602 list_add(&wb
->memcg_node
, memcg_cgwb_list
);
603 list_add(&wb
->blkcg_node
, blkcg_cgwb_list
);
604 blkcg_cgwb_get(blkcg
);
609 spin_unlock_irqrestore(&cgwb_lock
, flags
);
618 fprop_local_destroy_percpu(&wb
->memcg_completions
);
620 percpu_ref_exit(&wb
->refcnt
);
631 * wb_get_create - get wb for a given memcg, create if necessary
633 * @memcg_css: cgroup_subsys_state of the target memcg (must have positive ref)
634 * @gfp: allocation mask to use
636 * Try to get the wb for @memcg_css on @bdi. If it doesn't exist, try to
637 * create one. The returned wb has its refcount incremented.
639 * This function uses css_get() on @memcg_css and thus expects its refcnt
640 * to be positive on invocation. IOW, rcu_read_lock() protection on
641 * @memcg_css isn't enough. try_get it before calling this function.
643 * A wb is keyed by its associated memcg. As blkcg implicitly enables
644 * memcg on the default hierarchy, memcg association is guaranteed to be
645 * more specific (equal or descendant to the associated blkcg) and thus can
646 * identify both the memcg and blkcg associations.
648 * Because the blkcg associated with a memcg may change as blkcg is enabled
649 * and disabled closer to root in the hierarchy, each wb keeps track of
650 * both the memcg and blkcg associated with it and verifies the blkcg on
651 * each lookup. On mismatch, the existing wb is discarded and a new one is
654 struct bdi_writeback
*wb_get_create(struct backing_dev_info
*bdi
,
655 struct cgroup_subsys_state
*memcg_css
,
658 struct bdi_writeback
*wb
;
660 might_sleep_if(gfpflags_allow_blocking(gfp
));
662 if (!memcg_css
->parent
)
667 wb
= radix_tree_lookup(&bdi
->cgwb_tree
, memcg_css
->id
);
669 struct cgroup_subsys_state
*blkcg_css
;
671 /* see whether the blkcg association has changed */
672 blkcg_css
= cgroup_get_e_css(memcg_css
->cgroup
,
674 if (unlikely(wb
->blkcg_css
!= blkcg_css
||
680 } while (!wb
&& !cgwb_create(bdi
, memcg_css
, gfp
));
685 static int cgwb_bdi_init(struct backing_dev_info
*bdi
)
689 INIT_RADIX_TREE(&bdi
->cgwb_tree
, GFP_ATOMIC
);
690 bdi
->cgwb_congested_tree
= RB_ROOT
;
691 mutex_init(&bdi
->cgwb_release_mutex
);
693 ret
= wb_init(&bdi
->wb
, bdi
, 1, GFP_KERNEL
);
695 bdi
->wb
.memcg_css
= &root_mem_cgroup
->css
;
696 bdi
->wb
.blkcg_css
= blkcg_root_css
;
701 static void cgwb_bdi_unregister(struct backing_dev_info
*bdi
)
703 struct radix_tree_iter iter
;
705 struct bdi_writeback
*wb
;
707 WARN_ON(test_bit(WB_registered
, &bdi
->wb
.state
));
709 spin_lock_irq(&cgwb_lock
);
710 radix_tree_for_each_slot(slot
, &bdi
->cgwb_tree
, &iter
, 0)
712 spin_unlock_irq(&cgwb_lock
);
714 mutex_lock(&bdi
->cgwb_release_mutex
);
715 spin_lock_irq(&cgwb_lock
);
716 while (!list_empty(&bdi
->wb_list
)) {
717 wb
= list_first_entry(&bdi
->wb_list
, struct bdi_writeback
,
719 spin_unlock_irq(&cgwb_lock
);
721 spin_lock_irq(&cgwb_lock
);
723 spin_unlock_irq(&cgwb_lock
);
724 mutex_unlock(&bdi
->cgwb_release_mutex
);
728 * wb_memcg_offline - kill all wb's associated with a memcg being offlined
729 * @memcg: memcg being offlined
731 * Also prevents creation of any new wb's associated with @memcg.
733 void wb_memcg_offline(struct mem_cgroup
*memcg
)
735 struct list_head
*memcg_cgwb_list
= &memcg
->cgwb_list
;
736 struct bdi_writeback
*wb
, *next
;
738 spin_lock_irq(&cgwb_lock
);
739 list_for_each_entry_safe(wb
, next
, memcg_cgwb_list
, memcg_node
)
741 memcg_cgwb_list
->next
= NULL
; /* prevent new wb's */
742 spin_unlock_irq(&cgwb_lock
);
746 * wb_blkcg_offline - kill all wb's associated with a blkcg being offlined
747 * @blkcg: blkcg being offlined
749 * Also prevents creation of any new wb's associated with @blkcg.
751 void wb_blkcg_offline(struct blkcg
*blkcg
)
753 struct bdi_writeback
*wb
, *next
;
755 spin_lock_irq(&cgwb_lock
);
756 list_for_each_entry_safe(wb
, next
, &blkcg
->cgwb_list
, blkcg_node
)
758 blkcg
->cgwb_list
.next
= NULL
; /* prevent new wb's */
759 spin_unlock_irq(&cgwb_lock
);
762 static void cgwb_bdi_exit(struct backing_dev_info
*bdi
)
766 spin_lock_irq(&cgwb_lock
);
767 while ((rbn
= rb_first(&bdi
->cgwb_congested_tree
))) {
768 struct bdi_writeback_congested
*congested
=
769 rb_entry(rbn
, struct bdi_writeback_congested
, rb_node
);
771 rb_erase(rbn
, &bdi
->cgwb_congested_tree
);
772 congested
->__bdi
= NULL
; /* mark @congested unlinked */
774 spin_unlock_irq(&cgwb_lock
);
777 static void cgwb_bdi_register(struct backing_dev_info
*bdi
)
779 spin_lock_irq(&cgwb_lock
);
780 list_add_tail_rcu(&bdi
->wb
.bdi_node
, &bdi
->wb_list
);
781 spin_unlock_irq(&cgwb_lock
);
784 static int __init
cgwb_init(void)
787 * There can be many concurrent release work items overwhelming
788 * system_wq. Put them in a separate wq and limit concurrency.
789 * There's no point in executing many of these in parallel.
791 cgwb_release_wq
= alloc_workqueue("cgwb_release", 0, 1);
792 if (!cgwb_release_wq
)
797 subsys_initcall(cgwb_init
);
799 #else /* CONFIG_CGROUP_WRITEBACK */
801 static int cgwb_bdi_init(struct backing_dev_info
*bdi
)
805 bdi
->wb_congested
= kzalloc(sizeof(*bdi
->wb_congested
), GFP_KERNEL
);
806 if (!bdi
->wb_congested
)
809 refcount_set(&bdi
->wb_congested
->refcnt
, 1);
811 err
= wb_init(&bdi
->wb
, bdi
, 1, GFP_KERNEL
);
813 wb_congested_put(bdi
->wb_congested
);
819 static void cgwb_bdi_unregister(struct backing_dev_info
*bdi
) { }
821 static void cgwb_bdi_exit(struct backing_dev_info
*bdi
)
823 wb_congested_put(bdi
->wb_congested
);
826 static void cgwb_bdi_register(struct backing_dev_info
*bdi
)
828 list_add_tail_rcu(&bdi
->wb
.bdi_node
, &bdi
->wb_list
);
831 static void cgwb_remove_from_bdi_list(struct bdi_writeback
*wb
)
833 list_del_rcu(&wb
->bdi_node
);
836 #endif /* CONFIG_CGROUP_WRITEBACK */
838 static int bdi_init(struct backing_dev_info
*bdi
)
844 kref_init(&bdi
->refcnt
);
846 bdi
->max_ratio
= 100;
847 bdi
->max_prop_frac
= FPROP_FRAC_BASE
;
848 INIT_LIST_HEAD(&bdi
->bdi_list
);
849 INIT_LIST_HEAD(&bdi
->wb_list
);
850 init_waitqueue_head(&bdi
->wb_waitq
);
852 ret
= cgwb_bdi_init(bdi
);
857 struct backing_dev_info
*bdi_alloc_node(gfp_t gfp_mask
, int node_id
)
859 struct backing_dev_info
*bdi
;
861 bdi
= kmalloc_node(sizeof(struct backing_dev_info
),
862 gfp_mask
| __GFP_ZERO
, node_id
);
872 EXPORT_SYMBOL(bdi_alloc_node
);
874 int bdi_register_va(struct backing_dev_info
*bdi
, const char *fmt
, va_list args
)
878 if (bdi
->dev
) /* The driver needs to use separate queues per device */
881 dev
= device_create_vargs(bdi_class
, NULL
, MKDEV(0, 0), bdi
, fmt
, args
);
885 cgwb_bdi_register(bdi
);
888 bdi_debug_register(bdi
, dev_name(dev
));
889 set_bit(WB_registered
, &bdi
->wb
.state
);
891 spin_lock_bh(&bdi_lock
);
892 list_add_tail_rcu(&bdi
->bdi_list
, &bdi_list
);
893 spin_unlock_bh(&bdi_lock
);
895 trace_writeback_bdi_register(bdi
);
898 EXPORT_SYMBOL(bdi_register_va
);
900 int bdi_register(struct backing_dev_info
*bdi
, const char *fmt
, ...)
906 ret
= bdi_register_va(bdi
, fmt
, args
);
910 EXPORT_SYMBOL(bdi_register
);
912 int bdi_register_owner(struct backing_dev_info
*bdi
, struct device
*owner
)
916 rc
= bdi_register(bdi
, "%u:%u", MAJOR(owner
->devt
), MINOR(owner
->devt
));
919 /* Leaking owner reference... */
925 EXPORT_SYMBOL(bdi_register_owner
);
928 * Remove bdi from bdi_list, and ensure that it is no longer visible
930 static void bdi_remove_from_list(struct backing_dev_info
*bdi
)
932 spin_lock_bh(&bdi_lock
);
933 list_del_rcu(&bdi
->bdi_list
);
934 spin_unlock_bh(&bdi_lock
);
936 synchronize_rcu_expedited();
939 void bdi_unregister(struct backing_dev_info
*bdi
)
941 /* make sure nobody finds us on the bdi_list anymore */
942 bdi_remove_from_list(bdi
);
943 wb_shutdown(&bdi
->wb
);
944 cgwb_bdi_unregister(bdi
);
947 bdi_debug_unregister(bdi
);
948 device_unregister(bdi
->dev
);
953 put_device(bdi
->owner
);
958 static void release_bdi(struct kref
*ref
)
960 struct backing_dev_info
*bdi
=
961 container_of(ref
, struct backing_dev_info
, refcnt
);
963 if (test_bit(WB_registered
, &bdi
->wb
.state
))
965 WARN_ON_ONCE(bdi
->dev
);
971 void bdi_put(struct backing_dev_info
*bdi
)
973 kref_put(&bdi
->refcnt
, release_bdi
);
975 EXPORT_SYMBOL(bdi_put
);
977 static wait_queue_head_t congestion_wqh
[2] = {
978 __WAIT_QUEUE_HEAD_INITIALIZER(congestion_wqh
[0]),
979 __WAIT_QUEUE_HEAD_INITIALIZER(congestion_wqh
[1])
981 static atomic_t nr_wb_congested
[2];
983 void clear_wb_congested(struct bdi_writeback_congested
*congested
, int sync
)
985 wait_queue_head_t
*wqh
= &congestion_wqh
[sync
];
986 enum wb_congested_state bit
;
988 bit
= sync
? WB_sync_congested
: WB_async_congested
;
989 if (test_and_clear_bit(bit
, &congested
->state
))
990 atomic_dec(&nr_wb_congested
[sync
]);
991 smp_mb__after_atomic();
992 if (waitqueue_active(wqh
))
995 EXPORT_SYMBOL(clear_wb_congested
);
997 void set_wb_congested(struct bdi_writeback_congested
*congested
, int sync
)
999 enum wb_congested_state bit
;
1001 bit
= sync
? WB_sync_congested
: WB_async_congested
;
1002 if (!test_and_set_bit(bit
, &congested
->state
))
1003 atomic_inc(&nr_wb_congested
[sync
]);
1005 EXPORT_SYMBOL(set_wb_congested
);
1008 * congestion_wait - wait for a backing_dev to become uncongested
1009 * @sync: SYNC or ASYNC IO
1010 * @timeout: timeout in jiffies
1012 * Waits for up to @timeout jiffies for a backing_dev (any backing_dev) to exit
1013 * write congestion. If no backing_devs are congested then just wait for the
1014 * next write to be completed.
1016 long congestion_wait(int sync
, long timeout
)
1019 unsigned long start
= jiffies
;
1021 wait_queue_head_t
*wqh
= &congestion_wqh
[sync
];
1023 prepare_to_wait(wqh
, &wait
, TASK_UNINTERRUPTIBLE
);
1024 ret
= io_schedule_timeout(timeout
);
1025 finish_wait(wqh
, &wait
);
1027 trace_writeback_congestion_wait(jiffies_to_usecs(timeout
),
1028 jiffies_to_usecs(jiffies
- start
));
1032 EXPORT_SYMBOL(congestion_wait
);
1035 * wait_iff_congested - Conditionally wait for a backing_dev to become uncongested or a pgdat to complete writes
1036 * @sync: SYNC or ASYNC IO
1037 * @timeout: timeout in jiffies
1039 * In the event of a congested backing_dev (any backing_dev) this waits
1040 * for up to @timeout jiffies for either a BDI to exit congestion of the
1041 * given @sync queue or a write to complete.
1043 * The return value is 0 if the sleep is for the full timeout. Otherwise,
1044 * it is the number of jiffies that were still remaining when the function
1045 * returned. return_value == timeout implies the function did not sleep.
1047 long wait_iff_congested(int sync
, long timeout
)
1050 unsigned long start
= jiffies
;
1052 wait_queue_head_t
*wqh
= &congestion_wqh
[sync
];
1055 * If there is no congestion, yield if necessary instead
1056 * of sleeping on the congestion queue
1058 if (atomic_read(&nr_wb_congested
[sync
]) == 0) {
1061 /* In case we scheduled, work out time remaining */
1062 ret
= timeout
- (jiffies
- start
);
1069 /* Sleep until uncongested or a write happens */
1070 prepare_to_wait(wqh
, &wait
, TASK_UNINTERRUPTIBLE
);
1071 ret
= io_schedule_timeout(timeout
);
1072 finish_wait(wqh
, &wait
);
1075 trace_writeback_wait_iff_congested(jiffies_to_usecs(timeout
),
1076 jiffies_to_usecs(jiffies
- start
));
1080 EXPORT_SYMBOL(wait_iff_congested
);