Merge tag 'for-6.5/block-2023-06-23' of git://git.kernel.dk/linux
[linux-2.6-block.git] / block / blk-cgroup.c
CommitLineData
3dcf60bc 1// SPDX-License-Identifier: GPL-2.0
31e4c28d
VG
2/*
3 * Common Block IO controller cgroup interface
4 *
5 * Based on ideas and code from CFQ, CFS and BFQ:
6 * Copyright (C) 2003 Jens Axboe <axboe@kernel.dk>
7 *
8 * Copyright (C) 2008 Fabio Checconi <fabio@gandalf.sssup.it>
9 * Paolo Valente <paolo.valente@unimore.it>
10 *
11 * Copyright (C) 2009 Vivek Goyal <vgoyal@redhat.com>
12 * Nauman Rafique <nauman@google.com>
e48453c3
AA
13 *
14 * For policy-specific per-blkcg data:
15 * Copyright (C) 2015 Paolo Valente <paolo.valente@unimore.it>
16 * Arianna Avanzini <avanzini.arianna@gmail.com>
31e4c28d
VG
17 */
18#include <linux/ioprio.h>
22084190 19#include <linux/kdev_t.h>
9d6a986c 20#include <linux/module.h>
174cd4b1 21#include <linux/sched/signal.h>
accee785 22#include <linux/err.h>
9195291e 23#include <linux/blkdev.h>
52ebea74 24#include <linux/backing-dev.h>
5a0e3ad6 25#include <linux/slab.h>
72e06c25 26#include <linux/delay.h>
9a9e8a26 27#include <linux/atomic.h>
36aa9e5f 28#include <linux/ctype.h>
03248add 29#include <linux/resume_user_mode.h>
fd112c74 30#include <linux/psi.h>
82d981d4 31#include <linux/part_stat.h>
5efd6113 32#include "blk.h"
672fdcf0 33#include "blk-cgroup.h"
556910e3 34#include "blk-ioprio.h"
a7b36ee6 35#include "blk-throttle.h"
3e252066 36
20cb1c2f
ML
37static void __blkcg_rstat_flush(struct blkcg *blkcg, int cpu);
38
838f13bf
TH
39/*
40 * blkcg_pol_mutex protects blkcg_policy[] and policy [de]activation.
41 * blkcg_pol_register_mutex nests outside of it and synchronizes entire
42 * policy [un]register operations including cgroup file additions /
43 * removals. Putting cgroup file registration outside blkcg_pol_mutex
44 * allows grabbing it from cgroup callbacks.
45 */
46static DEFINE_MUTEX(blkcg_pol_register_mutex);
bc0d6501 47static DEFINE_MUTEX(blkcg_pol_mutex);
923adde1 48
e48453c3 49struct blkcg blkcg_root;
3c798398 50EXPORT_SYMBOL_GPL(blkcg_root);
9d6a986c 51
496d5e75 52struct cgroup_subsys_state * const blkcg_root_css = &blkcg_root.css;
9b0eb69b 53EXPORT_SYMBOL_GPL(blkcg_root_css);
496d5e75 54
3c798398 55static struct blkcg_policy *blkcg_policy[BLKCG_MAX_POLS];
035d10b2 56
7876f930
TH
57static LIST_HEAD(all_blkcgs); /* protected by blkcg_pol_mutex */
58
07b0fdec 59bool blkcg_debug_stats = false;
903d23f0 60
20cb1c2f
ML
61static DEFINE_RAW_SPINLOCK(blkg_stat_lock);
62
a731763f
YK
63#define BLKG_DESTROY_BATCH_SIZE 64
64
3b8cc629
WL
65/*
66 * Lockless lists for tracking IO stats update
67 *
68 * New IO stats are stored in the percpu iostat_cpu within blkcg_gq (blkg).
69 * There are multiple blkg's (one for each block device) attached to each
70 * blkcg. The rstat code keeps track of which cpu has IO stats updated,
71 * but it doesn't know which blkg has the updated stats. If there are many
72 * block devices in a system, the cost of iterating all the blkg's to flush
73 * out the IO stats can be high. To reduce such overhead, a set of percpu
74 * lockless lists (lhead) per blkcg are used to track the set of recently
75 * updated iostat_cpu's since the last flush. An iostat_cpu will be put
76 * onto the lockless list on the update side [blk_cgroup_bio_start()] if
77 * not there yet and then removed when being flushed [blkcg_rstat_flush()].
78 * References to blkg are gotten and then put back in the process to
79 * protect against blkg removal.
80 *
81 * Return: 0 if successful or -ENOMEM if allocation fails.
82 */
83static int init_blkcg_llists(struct blkcg *blkcg)
84{
85 int cpu;
86
87 blkcg->lhead = alloc_percpu_gfp(struct llist_head, GFP_KERNEL);
88 if (!blkcg->lhead)
89 return -ENOMEM;
90
91 for_each_possible_cpu(cpu)
92 init_llist_head(per_cpu_ptr(blkcg->lhead, cpu));
93 return 0;
94}
95
bc5fee91
CH
96/**
97 * blkcg_css - find the current css
98 *
99 * Find the css associated with either the kthread or the current task.
100 * This may return a dying css, so it is up to the caller to use tryget logic
101 * to confirm it is alive and well.
102 */
103static struct cgroup_subsys_state *blkcg_css(void)
104{
105 struct cgroup_subsys_state *css;
106
107 css = kthread_blkcg();
108 if (css)
109 return css;
110 return task_css(current, io_cgrp_id);
111}
112
a2b1693b 113static bool blkcg_policy_enabled(struct request_queue *q,
3c798398 114 const struct blkcg_policy *pol)
a2b1693b
TH
115{
116 return pol && test_bit(pol->plid, q->blkcg_pols);
117}
118
d578c770 119static void blkg_free_workfn(struct work_struct *work)
0381411e 120{
d578c770
ML
121 struct blkcg_gq *blkg = container_of(work, struct blkcg_gq,
122 free_work);
a06377c5 123 struct request_queue *q = blkg->q;
e8989fae 124 int i;
549d3aa8 125
f1c006f1
YK
126 /*
127 * pd_free_fn() can also be called from blkcg_deactivate_policy(),
128 * in order to make sure pd_free_fn() is called in order, the deletion
1231039d 129 * of the list blkg->q_node is delayed to here from blkg_destroy(), and
f1c006f1
YK
130 * blkcg_mutex is used to synchronize blkg_free_workfn() and
131 * blkcg_deactivate_policy().
132 */
a06377c5 133 mutex_lock(&q->blkcg_mutex);
db613670 134 for (i = 0; i < BLKCG_MAX_POLS; i++)
001bea73
TH
135 if (blkg->pd[i])
136 blkcg_policy[i]->pd_free_fn(blkg->pd[i]);
c7241bab
YK
137 if (blkg->parent)
138 blkg_put(blkg->parent);
1231039d 139 list_del_init(&blkg->q_node);
a06377c5 140 mutex_unlock(&q->blkcg_mutex);
e8989fae 141
a06377c5 142 blk_put_queue(q);
f7331648 143 free_percpu(blkg->iostat_cpu);
ef069b97 144 percpu_ref_exit(&blkg->refcnt);
549d3aa8 145 kfree(blkg);
0381411e
TH
146}
147
d578c770
ML
148/**
149 * blkg_free - free a blkg
150 * @blkg: blkg to free
151 *
152 * Free @blkg which may be partially allocated.
153 */
154static void blkg_free(struct blkcg_gq *blkg)
155{
156 if (!blkg)
157 return;
158
159 /*
160 * Both ->pd_free_fn() and request queue's release handler may
161 * sleep, so free us by scheduling one work func
162 */
163 INIT_WORK(&blkg->free_work, blkg_free_workfn);
164 schedule_work(&blkg->free_work);
165}
166
7fcf2b03
DZ
167static void __blkg_release(struct rcu_head *rcu)
168{
169 struct blkcg_gq *blkg = container_of(rcu, struct blkcg_gq, rcu_head);
20cb1c2f
ML
170 struct blkcg *blkcg = blkg->blkcg;
171 int cpu;
7fcf2b03 172
2c275afe 173#ifdef CONFIG_BLK_CGROUP_PUNT_BIO
d3f77dfd 174 WARN_ON(!bio_list_empty(&blkg->async_bios));
2c275afe 175#endif
20cb1c2f
ML
176 /*
177 * Flush all the non-empty percpu lockless lists before releasing
178 * us, given these stat belongs to us.
179 *
180 * blkg_stat_lock is for serializing blkg stat update
181 */
182 for_each_possible_cpu(cpu)
183 __blkcg_rstat_flush(blkcg, cpu);
d3f77dfd 184
7fcf2b03
DZ
185 /* release the blkcg and parent blkg refs this blkg has been holding */
186 css_put(&blkg->blkcg->css);
7fcf2b03
DZ
187 blkg_free(blkg);
188}
189
190/*
191 * A group is RCU protected, but having an rcu lock does not mean that one
192 * can access all the fields of blkg and assume these are valid. For
193 * example, don't try to follow throtl_data and request queue links.
194 *
195 * Having a reference to blkg under an rcu allows accesses to only values
196 * local to groups like group stats and group rate limits.
197 */
198static void blkg_release(struct percpu_ref *ref)
199{
200 struct blkcg_gq *blkg = container_of(ref, struct blkcg_gq, refcnt);
201
202 call_rcu(&blkg->rcu_head, __blkg_release);
203}
204
2c275afe
CH
205#ifdef CONFIG_BLK_CGROUP_PUNT_BIO
206static struct workqueue_struct *blkcg_punt_bio_wq;
207
d3f77dfd
TH
208static void blkg_async_bio_workfn(struct work_struct *work)
209{
210 struct blkcg_gq *blkg = container_of(work, struct blkcg_gq,
211 async_bio_work);
212 struct bio_list bios = BIO_EMPTY_LIST;
213 struct bio *bio;
192f1c6b
XT
214 struct blk_plug plug;
215 bool need_plug = false;
d3f77dfd
TH
216
217 /* as long as there are pending bios, @blkg can't go away */
12be09fe 218 spin_lock(&blkg->async_bio_lock);
d3f77dfd
TH
219 bio_list_merge(&bios, &blkg->async_bios);
220 bio_list_init(&blkg->async_bios);
12be09fe 221 spin_unlock(&blkg->async_bio_lock);
d3f77dfd 222
192f1c6b
XT
223 /* start plug only when bio_list contains at least 2 bios */
224 if (bios.head && bios.head->bi_next) {
225 need_plug = true;
226 blk_start_plug(&plug);
227 }
d3f77dfd
TH
228 while ((bio = bio_list_pop(&bios)))
229 submit_bio(bio);
192f1c6b
XT
230 if (need_plug)
231 blk_finish_plug(&plug);
d3f77dfd
TH
232}
233
2c275afe
CH
234/*
235 * When a shared kthread issues a bio for a cgroup, doing so synchronously can
236 * lead to priority inversions as the kthread can be trapped waiting for that
237 * cgroup. Use this helper instead of submit_bio to punt the actual issuing to
238 * a dedicated per-blkcg work item to avoid such priority inversions.
239 */
240void blkcg_punt_bio_submit(struct bio *bio)
241{
242 struct blkcg_gq *blkg = bio->bi_blkg;
243
244 if (blkg->parent) {
245 spin_lock(&blkg->async_bio_lock);
246 bio_list_add(&blkg->async_bios, bio);
247 spin_unlock(&blkg->async_bio_lock);
248 queue_work(blkcg_punt_bio_wq, &blkg->async_bio_work);
249 } else {
250 /* never bounce for the root cgroup */
251 submit_bio(bio);
252 }
253}
254EXPORT_SYMBOL_GPL(blkcg_punt_bio_submit);
255
256static int __init blkcg_punt_bio_init(void)
257{
258 blkcg_punt_bio_wq = alloc_workqueue("blkcg_punt_bio",
259 WQ_MEM_RECLAIM | WQ_FREEZABLE |
260 WQ_UNBOUND | WQ_SYSFS, 0);
261 if (!blkcg_punt_bio_wq)
262 return -ENOMEM;
263 return 0;
264}
265subsys_initcall(blkcg_punt_bio_init);
266#endif /* CONFIG_BLK_CGROUP_PUNT_BIO */
267
bbb1ebe7
CH
268/**
269 * bio_blkcg_css - return the blkcg CSS associated with a bio
270 * @bio: target bio
271 *
272 * This returns the CSS for the blkcg associated with a bio, or %NULL if not
273 * associated. Callers are expected to either handle %NULL or know association
274 * has been done prior to calling this.
275 */
276struct cgroup_subsys_state *bio_blkcg_css(struct bio *bio)
277{
278 if (!bio || !bio->bi_blkg)
279 return NULL;
280 return &bio->bi_blkg->blkcg->css;
281}
282EXPORT_SYMBOL_GPL(bio_blkcg_css);
283
397c9f46
CH
284/**
285 * blkcg_parent - get the parent of a blkcg
286 * @blkcg: blkcg of interest
287 *
288 * Return the parent blkcg of @blkcg. Can be called anytime.
289 */
290static inline struct blkcg *blkcg_parent(struct blkcg *blkcg)
291{
292 return css_to_blkcg(blkcg->css.parent);
293}
294
0381411e
TH
295/**
296 * blkg_alloc - allocate a blkg
297 * @blkcg: block cgroup the new blkg is associated with
99e60387 298 * @disk: gendisk the new blkg is associated with
15974993 299 * @gfp_mask: allocation mask to use
0381411e 300 *
e8989fae 301 * Allocate a new blkg assocating @blkcg and @q.
0381411e 302 */
99e60387 303static struct blkcg_gq *blkg_alloc(struct blkcg *blkcg, struct gendisk *disk,
15974993 304 gfp_t gfp_mask)
0381411e 305{
3c798398 306 struct blkcg_gq *blkg;
f7331648 307 int i, cpu;
0381411e
TH
308
309 /* alloc and init base part */
99e60387 310 blkg = kzalloc_node(sizeof(*blkg), gfp_mask, disk->queue->node);
0381411e
TH
311 if (!blkg)
312 return NULL;
ef069b97 313 if (percpu_ref_init(&blkg->refcnt, blkg_release, 0, gfp_mask))
0b6f93bd 314 goto out_free_blkg;
f7331648
TH
315 blkg->iostat_cpu = alloc_percpu_gfp(struct blkg_iostat_set, gfp_mask);
316 if (!blkg->iostat_cpu)
0b6f93bd 317 goto out_exit_refcnt;
99e60387 318 if (!blk_get_queue(disk->queue))
0b6f93bd 319 goto out_free_iostat;
0a9a25ca 320
99e60387 321 blkg->q = disk->queue;
e8989fae 322 INIT_LIST_HEAD(&blkg->q_node);
2c275afe
CH
323 blkg->blkcg = blkcg;
324#ifdef CONFIG_BLK_CGROUP_PUNT_BIO
d3f77dfd
TH
325 spin_lock_init(&blkg->async_bio_lock);
326 bio_list_init(&blkg->async_bios);
327 INIT_WORK(&blkg->async_bio_work, blkg_async_bio_workfn);
2c275afe 328#endif
0381411e 329
f7331648 330 u64_stats_init(&blkg->iostat.sync);
3b8cc629 331 for_each_possible_cpu(cpu) {
f7331648 332 u64_stats_init(&per_cpu_ptr(blkg->iostat_cpu, cpu)->sync);
3b8cc629
WL
333 per_cpu_ptr(blkg->iostat_cpu, cpu)->blkg = blkg;
334 }
f7331648 335
8bd435b3 336 for (i = 0; i < BLKCG_MAX_POLS; i++) {
3c798398 337 struct blkcg_policy *pol = blkcg_policy[i];
e8989fae 338 struct blkg_policy_data *pd;
0381411e 339
99e60387 340 if (!blkcg_policy_enabled(disk->queue, pol))
e8989fae
TH
341 continue;
342
343 /* alloc per-policy data and attach it to blkg */
0a0b4f79 344 pd = pol->pd_alloc_fn(disk, blkcg, gfp_mask);
a051661c 345 if (!pd)
0b6f93bd 346 goto out_free_pds;
e8989fae
TH
347 blkg->pd[i] = pd;
348 pd->blkg = blkg;
b276a876 349 pd->plid = i;
dfd6200a 350 pd->online = false;
e8989fae
TH
351 }
352
0381411e 353 return blkg;
a051661c 354
0b6f93bd
CH
355out_free_pds:
356 while (--i >= 0)
357 if (blkg->pd[i])
358 blkcg_policy[i]->pd_free_fn(blkg->pd[i]);
a06377c5 359 blk_put_queue(disk->queue);
0b6f93bd
CH
360out_free_iostat:
361 free_percpu(blkg->iostat_cpu);
362out_exit_refcnt:
363 percpu_ref_exit(&blkg->refcnt);
364out_free_blkg:
365 kfree(blkg);
a051661c 366 return NULL;
0381411e
TH
367}
368
15974993 369/*
d708f0d5
JA
370 * If @new_blkg is %NULL, this function tries to allocate a new one as
371 * necessary using %GFP_NOWAIT. @new_blkg is always consumed on return.
15974993 372 */
99e60387 373static struct blkcg_gq *blkg_create(struct blkcg *blkcg, struct gendisk *disk,
d708f0d5 374 struct blkcg_gq *new_blkg)
5624a4e4 375{
d708f0d5 376 struct blkcg_gq *blkg;
f427d909 377 int i, ret;
5624a4e4 378
99e60387 379 lockdep_assert_held(&disk->queue->queue_lock);
cd1604fa 380
0273ac34 381 /* request_queue is dying, do not create/recreate a blkg */
99e60387 382 if (blk_queue_dying(disk->queue)) {
0273ac34
DZ
383 ret = -ENODEV;
384 goto err_free_blkg;
385 }
386
7ee9c562 387 /* blkg holds a reference to blkcg */
ec903c0c 388 if (!css_tryget_online(&blkcg->css)) {
20386ce0 389 ret = -ENODEV;
93e6d5d8 390 goto err_free_blkg;
15974993 391 }
cd1604fa 392
d708f0d5
JA
393 /* allocate */
394 if (!new_blkg) {
99e60387 395 new_blkg = blkg_alloc(blkcg, disk, GFP_NOWAIT | __GFP_NOWARN);
d708f0d5
JA
396 if (unlikely(!new_blkg)) {
397 ret = -ENOMEM;
8c911f3d 398 goto err_put_css;
15974993
TH
399 }
400 }
d708f0d5 401 blkg = new_blkg;
cd1604fa 402
db613670 403 /* link parent */
3c547865 404 if (blkcg_parent(blkcg)) {
99e60387 405 blkg->parent = blkg_lookup(blkcg_parent(blkcg), disk->queue);
3c547865 406 if (WARN_ON_ONCE(!blkg->parent)) {
20386ce0 407 ret = -ENODEV;
8c911f3d 408 goto err_put_css;
3c547865
TH
409 }
410 blkg_get(blkg->parent);
411 }
412
db613670
TH
413 /* invoke per-policy init */
414 for (i = 0; i < BLKCG_MAX_POLS; i++) {
415 struct blkcg_policy *pol = blkcg_policy[i];
416
417 if (blkg->pd[i] && pol->pd_init_fn)
a9520cd6 418 pol->pd_init_fn(blkg->pd[i]);
db613670
TH
419 }
420
421 /* insert */
cd1604fa 422 spin_lock(&blkcg->lock);
99e60387 423 ret = radix_tree_insert(&blkcg->blkg_tree, disk->queue->id, blkg);
a637120e
TH
424 if (likely(!ret)) {
425 hlist_add_head_rcu(&blkg->blkcg_node, &blkcg->blkg_list);
99e60387 426 list_add(&blkg->q_node, &disk->queue->blkg_list);
f427d909
TH
427
428 for (i = 0; i < BLKCG_MAX_POLS; i++) {
429 struct blkcg_policy *pol = blkcg_policy[i];
430
dfd6200a
YK
431 if (blkg->pd[i]) {
432 if (pol->pd_online_fn)
433 pol->pd_online_fn(blkg->pd[i]);
434 blkg->pd[i]->online = true;
435 }
f427d909 436 }
a637120e 437 }
f427d909 438 blkg->online = true;
cd1604fa 439 spin_unlock(&blkcg->lock);
496fb780 440
ec13b1d6 441 if (!ret)
a637120e 442 return blkg;
15974993 443
3c547865
TH
444 /* @blkg failed fully initialized, use the usual release path */
445 blkg_put(blkg);
446 return ERR_PTR(ret);
447
d708f0d5 448err_put_css:
496fb780 449 css_put(&blkcg->css);
93e6d5d8 450err_free_blkg:
28e538a3
CH
451 if (new_blkg)
452 blkg_free(new_blkg);
93e6d5d8 453 return ERR_PTR(ret);
31e4c28d 454}
3c96cb32 455
86cde6b6 456/**
8c546287 457 * blkg_lookup_create - lookup blkg, try to create one if not there
86cde6b6 458 * @blkcg: blkcg of interest
99e60387 459 * @disk: gendisk of interest
86cde6b6 460 *
99e60387 461 * Lookup blkg for the @blkcg - @disk pair. If it doesn't exist, try to
3c547865
TH
462 * create one. blkg creation is performed recursively from blkcg_root such
463 * that all non-root blkg's have access to the parent blkg. This function
99e60387 464 * should be called under RCU read lock and takes @disk->queue->queue_lock.
86cde6b6 465 *
beea9da0
DZ
466 * Returns the blkg or the closest blkg if blkg_create() fails as it walks
467 * down from root.
86cde6b6 468 */
8c546287 469static struct blkcg_gq *blkg_lookup_create(struct blkcg *blkcg,
99e60387 470 struct gendisk *disk)
3c96cb32 471{
99e60387 472 struct request_queue *q = disk->queue;
86cde6b6 473 struct blkcg_gq *blkg;
8c546287 474 unsigned long flags;
86cde6b6
TH
475
476 WARN_ON_ONCE(!rcu_read_lock_held());
86cde6b6 477
8c546287 478 blkg = blkg_lookup(blkcg, q);
86cde6b6
TH
479 if (blkg)
480 return blkg;
481
8c546287 482 spin_lock_irqsave(&q->queue_lock, flags);
4a69f325
CH
483 blkg = blkg_lookup(blkcg, q);
484 if (blkg) {
5765033c
CH
485 if (blkcg != &blkcg_root &&
486 blkg != rcu_dereference(blkcg->blkg_hint))
487 rcu_assign_pointer(blkcg->blkg_hint, blkg);
8c546287 488 goto found;
4a69f325 489 }
8c546287 490
3c547865
TH
491 /*
492 * Create blkgs walking down from blkcg_root to @blkcg, so that all
beea9da0
DZ
493 * non-root blkgs have access to their parents. Returns the closest
494 * blkg to the intended blkg should blkg_create() fail.
3c547865
TH
495 */
496 while (true) {
497 struct blkcg *pos = blkcg;
498 struct blkcg *parent = blkcg_parent(blkcg);
beea9da0
DZ
499 struct blkcg_gq *ret_blkg = q->root_blkg;
500
501 while (parent) {
79fcc5be 502 blkg = blkg_lookup(parent, q);
beea9da0
DZ
503 if (blkg) {
504 /* remember closest blkg */
505 ret_blkg = blkg;
506 break;
507 }
3c547865
TH
508 pos = parent;
509 parent = blkcg_parent(parent);
510 }
511
99e60387 512 blkg = blkg_create(pos, disk, NULL);
8c546287
CH
513 if (IS_ERR(blkg)) {
514 blkg = ret_blkg;
515 break;
516 }
beea9da0 517 if (pos == blkcg)
8c546287 518 break;
b978962a
DZ
519 }
520
8c546287
CH
521found:
522 spin_unlock_irqrestore(&q->queue_lock, flags);
b978962a
DZ
523 return blkg;
524}
525
3c798398 526static void blkg_destroy(struct blkcg_gq *blkg)
03aa264a 527{
3c798398 528 struct blkcg *blkcg = blkg->blkcg;
6b065462 529 int i;
03aa264a 530
0d945c1f 531 lockdep_assert_held(&blkg->q->queue_lock);
9f13ef67 532 lockdep_assert_held(&blkcg->lock);
03aa264a 533
f1c006f1
YK
534 /*
535 * blkg stays on the queue list until blkg_free_workfn(), see details in
536 * blkg_free_workfn(), hence this function can be called from
537 * blkcg_destroy_blkgs() first and again from blkg_destroy_all() before
538 * blkg_free_workfn().
539 */
540 if (hlist_unhashed(&blkg->blkcg_node))
541 return;
a637120e 542
6b065462
DZF
543 for (i = 0; i < BLKCG_MAX_POLS; i++) {
544 struct blkcg_policy *pol = blkcg_policy[i];
545
dfd6200a 546 if (blkg->pd[i] && blkg->pd[i]->online) {
f37bf75c 547 blkg->pd[i]->online = false;
dfd6200a
YK
548 if (pol->pd_offline_fn)
549 pol->pd_offline_fn(blkg->pd[i]);
dfd6200a 550 }
6b065462
DZF
551 }
552
f427d909
TH
553 blkg->online = false;
554
a637120e 555 radix_tree_delete(&blkcg->blkg_tree, blkg->q->id);
9f13ef67 556 hlist_del_init_rcu(&blkg->blkcg_node);
03aa264a 557
a637120e
TH
558 /*
559 * Both setting lookup hint to and clearing it from @blkg are done
560 * under queue_lock. If it's not pointing to @blkg now, it never
561 * will. Hint assignment itself can race safely.
562 */
ec6c676a 563 if (rcu_access_pointer(blkcg->blkg_hint) == blkg)
a637120e
TH
564 rcu_assign_pointer(blkcg->blkg_hint, NULL);
565
03aa264a
TH
566 /*
567 * Put the reference taken at the time of creation so that when all
568 * queues are gone, group can be destroyed.
569 */
7fcf2b03 570 percpu_ref_kill(&blkg->refcnt);
03aa264a
TH
571}
572
00ad6991 573static void blkg_destroy_all(struct gendisk *disk)
72e06c25 574{
00ad6991 575 struct request_queue *q = disk->queue;
3c798398 576 struct blkcg_gq *blkg, *n;
a731763f 577 int count = BLKG_DESTROY_BATCH_SIZE;
72e06c25 578
a731763f 579restart:
0d945c1f 580 spin_lock_irq(&q->queue_lock);
9f13ef67 581 list_for_each_entry_safe(blkg, n, &q->blkg_list, q_node) {
3c798398 582 struct blkcg *blkcg = blkg->blkcg;
72e06c25 583
8176080d
TS
584 if (hlist_unhashed(&blkg->blkcg_node))
585 continue;
586
9f13ef67
TH
587 spin_lock(&blkcg->lock);
588 blkg_destroy(blkg);
589 spin_unlock(&blkcg->lock);
a731763f
YK
590
591 /*
592 * in order to avoid holding the spin lock for too long, release
593 * it when a batch of blkgs are destroyed.
594 */
595 if (!(--count)) {
596 count = BLKG_DESTROY_BATCH_SIZE;
597 spin_unlock_irq(&q->queue_lock);
598 cond_resched();
599 goto restart;
600 }
72e06c25 601 }
6fe810bd
TH
602
603 q->root_blkg = NULL;
0d945c1f 604 spin_unlock_irq(&q->queue_lock);
72e06c25
TH
605}
606
182446d0
TH
607static int blkcg_reset_stats(struct cgroup_subsys_state *css,
608 struct cftype *cftype, u64 val)
303a3acb 609{
182446d0 610 struct blkcg *blkcg = css_to_blkcg(css);
3c798398 611 struct blkcg_gq *blkg;
f7331648 612 int i, cpu;
303a3acb 613
838f13bf 614 mutex_lock(&blkcg_pol_mutex);
303a3acb 615 spin_lock_irq(&blkcg->lock);
997a026c
TH
616
617 /*
618 * Note that stat reset is racy - it doesn't synchronize against
619 * stat updates. This is a debug feature which shouldn't exist
620 * anyway. If you get hit by a race, retry.
621 */
b67bfe0d 622 hlist_for_each_entry(blkg, &blkcg->blkg_list, blkcg_node) {
f7331648
TH
623 for_each_possible_cpu(cpu) {
624 struct blkg_iostat_set *bis =
625 per_cpu_ptr(blkg->iostat_cpu, cpu);
626 memset(bis, 0, sizeof(*bis));
3d2af77e
WL
627
628 /* Re-initialize the cleared blkg_iostat_set */
629 u64_stats_init(&bis->sync);
630 bis->blkg = blkg;
f7331648
TH
631 }
632 memset(&blkg->iostat, 0, sizeof(blkg->iostat));
3d2af77e 633 u64_stats_init(&blkg->iostat.sync);
77ea7338 634
8bd435b3 635 for (i = 0; i < BLKCG_MAX_POLS; i++) {
3c798398 636 struct blkcg_policy *pol = blkcg_policy[i];
549d3aa8 637
a9520cd6
TH
638 if (blkg->pd[i] && pol->pd_reset_stats_fn)
639 pol->pd_reset_stats_fn(blkg->pd[i]);
bc0d6501 640 }
303a3acb 641 }
f0bdc8cd 642
303a3acb 643 spin_unlock_irq(&blkcg->lock);
bc0d6501 644 mutex_unlock(&blkcg_pol_mutex);
303a3acb
DS
645 return 0;
646}
647
dd165eb3 648const char *blkg_dev_name(struct blkcg_gq *blkg)
303a3acb 649{
a06377c5 650 if (!blkg->q->disk)
edb0872f 651 return NULL;
d152c682 652 return bdi_dev_name(blkg->q->disk->bdi);
303a3acb
DS
653}
654
d3d32e69
TH
655/**
656 * blkcg_print_blkgs - helper for printing per-blkg data
657 * @sf: seq_file to print to
658 * @blkcg: blkcg of interest
659 * @prfill: fill function to print out a blkg
660 * @pol: policy in question
661 * @data: data to be passed to @prfill
662 * @show_total: to print out sum of prfill return values or not
663 *
664 * This function invokes @prfill on each blkg of @blkcg if pd for the
665 * policy specified by @pol exists. @prfill is invoked with @sf, the
810ecfa7
TH
666 * policy data and @data and the matching queue lock held. If @show_total
667 * is %true, the sum of the return values from @prfill is printed with
668 * "Total" label at the end.
d3d32e69
TH
669 *
670 * This is to be used to construct print functions for
671 * cftype->read_seq_string method.
672 */
3c798398 673void blkcg_print_blkgs(struct seq_file *sf, struct blkcg *blkcg,
f95a04af
TH
674 u64 (*prfill)(struct seq_file *,
675 struct blkg_policy_data *, int),
3c798398 676 const struct blkcg_policy *pol, int data,
ec399347 677 bool show_total)
5624a4e4 678{
3c798398 679 struct blkcg_gq *blkg;
d3d32e69 680 u64 total = 0;
5624a4e4 681
810ecfa7 682 rcu_read_lock();
ee89f812 683 hlist_for_each_entry_rcu(blkg, &blkcg->blkg_list, blkcg_node) {
0d945c1f 684 spin_lock_irq(&blkg->q->queue_lock);
a2b1693b 685 if (blkcg_policy_enabled(blkg->q, pol))
f95a04af 686 total += prfill(sf, blkg->pd[pol->plid], data);
0d945c1f 687 spin_unlock_irq(&blkg->q->queue_lock);
810ecfa7
TH
688 }
689 rcu_read_unlock();
d3d32e69
TH
690
691 if (show_total)
692 seq_printf(sf, "Total %llu\n", (unsigned long long)total);
693}
829fdb50 694EXPORT_SYMBOL_GPL(blkcg_print_blkgs);
d3d32e69
TH
695
696/**
697 * __blkg_prfill_u64 - prfill helper for a single u64 value
698 * @sf: seq_file to print to
f95a04af 699 * @pd: policy private data of interest
d3d32e69
TH
700 * @v: value to print
701 *
37754595 702 * Print @v to @sf for the device associated with @pd.
d3d32e69 703 */
f95a04af 704u64 __blkg_prfill_u64(struct seq_file *sf, struct blkg_policy_data *pd, u64 v)
d3d32e69 705{
f95a04af 706 const char *dname = blkg_dev_name(pd->blkg);
d3d32e69
TH
707
708 if (!dname)
709 return 0;
710
711 seq_printf(sf, "%s %llu\n", dname, (unsigned long long)v);
712 return v;
713}
829fdb50 714EXPORT_SYMBOL_GPL(__blkg_prfill_u64);
d3d32e69 715
015d254c 716/**
faffaab2
TH
717 * blkg_conf_init - initialize a blkg_conf_ctx
718 * @ctx: blkg_conf_ctx to initialize
719 * @input: input string
015d254c 720 *
faffaab2
TH
721 * Initialize @ctx which can be used to parse blkg config input string @input.
722 * Once initialized, @ctx can be used with blkg_conf_open_bdev() and
723 * blkg_conf_prep(), and must be cleaned up with blkg_conf_exit().
724 */
725void blkg_conf_init(struct blkg_conf_ctx *ctx, char *input)
726{
727 *ctx = (struct blkg_conf_ctx){ .input = input };
728}
729EXPORT_SYMBOL_GPL(blkg_conf_init);
730
731/**
732 * blkg_conf_open_bdev - parse and open bdev for per-blkg config update
733 * @ctx: blkg_conf_ctx initialized with blkg_conf_init()
015d254c 734 *
faffaab2
TH
735 * Parse the device node prefix part, MAJ:MIN, of per-blkg config update from
736 * @ctx->input and get and store the matching bdev in @ctx->bdev. @ctx->body is
737 * set to point past the device node prefix.
738 *
739 * This function may be called multiple times on @ctx and the extra calls become
740 * NOOPs. blkg_conf_prep() implicitly calls this function. Use this function
741 * explicitly if bdev access is needed without resolving the blkcg / policy part
742 * of @ctx->input. Returns -errno on error.
015d254c 743 */
faffaab2 744int blkg_conf_open_bdev(struct blkg_conf_ctx *ctx)
015d254c 745{
faffaab2 746 char *input = ctx->input;
015d254c 747 unsigned int major, minor;
22ae8ce8
CH
748 struct block_device *bdev;
749 int key_len;
015d254c 750
faffaab2
TH
751 if (ctx->bdev)
752 return 0;
753
015d254c 754 if (sscanf(input, "%u:%u%n", &major, &minor, &key_len) != 2)
faffaab2 755 return -EINVAL;
015d254c
TH
756
757 input += key_len;
758 if (!isspace(*input))
faffaab2 759 return -EINVAL;
015d254c
TH
760 input = skip_spaces(input);
761
22ae8ce8
CH
762 bdev = blkdev_get_no_open(MKDEV(major, minor));
763 if (!bdev)
faffaab2 764 return -ENODEV;
22ae8ce8
CH
765 if (bdev_is_partition(bdev)) {
766 blkdev_put_no_open(bdev);
faffaab2 767 return -ENODEV;
015d254c
TH
768 }
769
a13bd91b
YK
770 mutex_lock(&bdev->bd_queue->rq_qos_mutex);
771 if (!disk_live(bdev->bd_disk)) {
772 blkdev_put_no_open(bdev);
773 mutex_unlock(&bdev->bd_queue->rq_qos_mutex);
774 return -ENODEV;
775 }
776
faffaab2
TH
777 ctx->body = input;
778 ctx->bdev = bdev;
779 return 0;
015d254c
TH
780}
781
3a8b31d3
TH
782/**
783 * blkg_conf_prep - parse and prepare for per-blkg config update
784 * @blkcg: target block cgroup
da8b0662 785 * @pol: target policy
faffaab2
TH
786 * @ctx: blkg_conf_ctx initialized with blkg_conf_init()
787 *
788 * Parse per-blkg config update from @ctx->input and initialize @ctx
789 * accordingly. On success, @ctx->body points to the part of @ctx->input
790 * following MAJ:MIN, @ctx->bdev points to the target block device and
791 * @ctx->blkg to the blkg being configured.
3a8b31d3 792 *
faffaab2
TH
793 * blkg_conf_open_bdev() may be called on @ctx beforehand. On success, this
794 * function returns with queue lock held and must be followed by
795 * blkg_conf_exit().
3a8b31d3 796 */
3c798398 797int blkg_conf_prep(struct blkcg *blkcg, const struct blkcg_policy *pol,
faffaab2 798 struct blkg_conf_ctx *ctx)
83462a6c 799 __acquires(&bdev->bd_queue->queue_lock)
34d0f179 800{
99e60387 801 struct gendisk *disk;
457e490f 802 struct request_queue *q;
3c798398 803 struct blkcg_gq *blkg;
015d254c 804 int ret;
36aa9e5f 805
faffaab2
TH
806 ret = blkg_conf_open_bdev(ctx);
807 if (ret)
808 return ret;
809
810 disk = ctx->bdev->bd_disk;
99e60387 811 q = disk->queue;
da8b0662 812
0c9d338c
YK
813 /*
814 * blkcg_deactivate_policy() requires queue to be frozen, we can grab
815 * q_usage_counter to prevent concurrent with blkcg_deactivate_policy().
816 */
817 ret = blk_queue_enter(q, 0);
818 if (ret)
15c30104 819 goto fail;
0c9d338c 820
0d945c1f 821 spin_lock_irq(&q->queue_lock);
e56da7e2 822
f753526e
CH
823 if (!blkcg_policy_enabled(q, pol)) {
824 ret = -EOPNOTSUPP;
457e490f
TE
825 goto fail_unlock;
826 }
827
f753526e 828 blkg = blkg_lookup(blkcg, q);
5765033c 829 if (blkg)
457e490f
TE
830 goto success;
831
832 /*
833 * Create blkgs walking down from blkcg_root to @blkcg, so that all
834 * non-root blkgs have access to their parents.
835 */
836 while (true) {
837 struct blkcg *pos = blkcg;
838 struct blkcg *parent;
839 struct blkcg_gq *new_blkg;
840
841 parent = blkcg_parent(blkcg);
79fcc5be 842 while (parent && !blkg_lookup(parent, q)) {
457e490f
TE
843 pos = parent;
844 parent = blkcg_parent(parent);
845 }
846
847 /* Drop locks to do new blkg allocation with GFP_KERNEL. */
0d945c1f 848 spin_unlock_irq(&q->queue_lock);
457e490f 849
99e60387 850 new_blkg = blkg_alloc(pos, disk, GFP_KERNEL);
457e490f
TE
851 if (unlikely(!new_blkg)) {
852 ret = -ENOMEM;
15c30104 853 goto fail_exit_queue;
7702e8f4 854 }
3a8b31d3 855
f255c19b
GKB
856 if (radix_tree_preload(GFP_KERNEL)) {
857 blkg_free(new_blkg);
858 ret = -ENOMEM;
15c30104 859 goto fail_exit_queue;
f255c19b
GKB
860 }
861
0d945c1f 862 spin_lock_irq(&q->queue_lock);
457e490f 863
f753526e 864 if (!blkcg_policy_enabled(q, pol)) {
52abfcbd 865 blkg_free(new_blkg);
f753526e 866 ret = -EOPNOTSUPP;
f255c19b 867 goto fail_preloaded;
457e490f
TE
868 }
869
f753526e 870 blkg = blkg_lookup(pos, q);
457e490f
TE
871 if (blkg) {
872 blkg_free(new_blkg);
873 } else {
99e60387 874 blkg = blkg_create(pos, disk, new_blkg);
98d669b4 875 if (IS_ERR(blkg)) {
457e490f 876 ret = PTR_ERR(blkg);
f255c19b 877 goto fail_preloaded;
457e490f
TE
878 }
879 }
880
f255c19b
GKB
881 radix_tree_preload_end();
882
457e490f
TE
883 if (pos == blkcg)
884 goto success;
885 }
886success:
0c9d338c 887 blk_queue_exit(q);
3a8b31d3 888 ctx->blkg = blkg;
726fa694 889 return 0;
457e490f 890
f255c19b
GKB
891fail_preloaded:
892 radix_tree_preload_end();
457e490f 893fail_unlock:
0d945c1f 894 spin_unlock_irq(&q->queue_lock);
15c30104
YK
895fail_exit_queue:
896 blk_queue_exit(q);
457e490f 897fail:
457e490f
TE
898 /*
899 * If queue was bypassing, we should retry. Do so after a
900 * short msleep(). It isn't strictly necessary but queue
901 * can be bypassing for some time and it's always nice to
902 * avoid busy looping.
903 */
904 if (ret == -EBUSY) {
905 msleep(10);
906 ret = restart_syscall();
907 }
908 return ret;
34d0f179 909}
89f3b6d6 910EXPORT_SYMBOL_GPL(blkg_conf_prep);
34d0f179 911
3a8b31d3 912/**
faffaab2
TH
913 * blkg_conf_exit - clean up per-blkg config update
914 * @ctx: blkg_conf_ctx initialized with blkg_conf_init()
3a8b31d3 915 *
faffaab2
TH
916 * Clean up after per-blkg config update. This function must be called on all
917 * blkg_conf_ctx's initialized with blkg_conf_init().
3a8b31d3 918 */
faffaab2 919void blkg_conf_exit(struct blkg_conf_ctx *ctx)
83462a6c 920 __releases(&ctx->bdev->bd_queue->queue_lock)
a13bd91b 921 __releases(&ctx->bdev->bd_queue->rq_qos_mutex)
34d0f179 922{
faffaab2
TH
923 if (ctx->blkg) {
924 spin_unlock_irq(&bdev_get_queue(ctx->bdev)->queue_lock);
925 ctx->blkg = NULL;
926 }
927
928 if (ctx->bdev) {
a13bd91b 929 mutex_unlock(&ctx->bdev->bd_queue->rq_qos_mutex);
faffaab2
TH
930 blkdev_put_no_open(ctx->bdev);
931 ctx->body = NULL;
932 ctx->bdev = NULL;
933 }
34d0f179 934}
faffaab2 935EXPORT_SYMBOL_GPL(blkg_conf_exit);
34d0f179 936
cd1fc4b9
BB
937static void blkg_iostat_set(struct blkg_iostat *dst, struct blkg_iostat *src)
938{
939 int i;
940
941 for (i = 0; i < BLKG_IOSTAT_NR; i++) {
942 dst->bytes[i] = src->bytes[i];
943 dst->ios[i] = src->ios[i];
944 }
945}
946
947static void blkg_iostat_add(struct blkg_iostat *dst, struct blkg_iostat *src)
948{
949 int i;
950
951 for (i = 0; i < BLKG_IOSTAT_NR; i++) {
952 dst->bytes[i] += src->bytes[i];
953 dst->ios[i] += src->ios[i];
954 }
955}
956
957static void blkg_iostat_sub(struct blkg_iostat *dst, struct blkg_iostat *src)
958{
959 int i;
960
961 for (i = 0; i < BLKG_IOSTAT_NR; i++) {
962 dst->bytes[i] -= src->bytes[i];
963 dst->ios[i] -= src->ios[i];
964 }
965}
966
362b8c16
JY
967static void blkcg_iostat_update(struct blkcg_gq *blkg, struct blkg_iostat *cur,
968 struct blkg_iostat *last)
969{
970 struct blkg_iostat delta;
971 unsigned long flags;
972
973 /* propagate percpu delta to global */
974 flags = u64_stats_update_begin_irqsave(&blkg->iostat.sync);
975 blkg_iostat_set(&delta, cur);
976 blkg_iostat_sub(&delta, last);
977 blkg_iostat_add(&blkg->iostat.cur, &delta);
978 blkg_iostat_add(last, &delta);
979 u64_stats_update_end_irqrestore(&blkg->iostat.sync, flags);
980}
981
20cb1c2f 982static void __blkcg_rstat_flush(struct blkcg *blkcg, int cpu)
cd1fc4b9 983{
3b8cc629
WL
984 struct llist_head *lhead = per_cpu_ptr(blkcg->lhead, cpu);
985 struct llist_node *lnode;
986 struct blkg_iostat_set *bisc, *next_bisc;
9c39b7a9 987 unsigned long flags;
cd1fc4b9
BB
988
989 rcu_read_lock();
990
3b8cc629
WL
991 lnode = llist_del_all(lhead);
992 if (!lnode)
993 goto out;
994
20cb1c2f
ML
995 /*
996 * For covering concurrent parent blkg update from blkg_release().
997 *
998 * When flushing from cgroup, cgroup_rstat_lock is always held, so
999 * this lock won't cause contention most of time.
1000 */
9c39b7a9 1001 raw_spin_lock_irqsave(&blkg_stat_lock, flags);
20cb1c2f 1002
3b8cc629
WL
1003 /*
1004 * Iterate only the iostat_cpu's queued in the lockless list.
1005 */
1006 llist_for_each_entry_safe(bisc, next_bisc, lnode, lnode) {
1007 struct blkcg_gq *blkg = bisc->blkg;
cd1fc4b9 1008 struct blkcg_gq *parent = blkg->parent;
362b8c16 1009 struct blkg_iostat cur;
cd1fc4b9
BB
1010 unsigned int seq;
1011
3b8cc629
WL
1012 WRITE_ONCE(bisc->lqueued, false);
1013
cd1fc4b9
BB
1014 /* fetch the current per-cpu values */
1015 do {
1016 seq = u64_stats_fetch_begin(&bisc->sync);
1017 blkg_iostat_set(&cur, &bisc->cur);
1018 } while (u64_stats_fetch_retry(&bisc->sync, seq));
1019
362b8c16 1020 blkcg_iostat_update(blkg, &cur, &bisc->last);
cd1fc4b9 1021
dc26532a 1022 /* propagate global delta to parent (unless that's root) */
362b8c16
JY
1023 if (parent && parent->parent)
1024 blkcg_iostat_update(parent, &blkg->iostat.cur,
1025 &blkg->iostat.last);
cd1fc4b9 1026 }
9c39b7a9 1027 raw_spin_unlock_irqrestore(&blkg_stat_lock, flags);
3b8cc629 1028out:
cd1fc4b9
BB
1029 rcu_read_unlock();
1030}
1031
20cb1c2f
ML
1032static void blkcg_rstat_flush(struct cgroup_subsys_state *css, int cpu)
1033{
1034 /* Root-level stats are sourced from system-wide IO stats */
1035 if (cgroup_parent(css->cgroup))
1036 __blkcg_rstat_flush(css_to_blkcg(css), cpu);
1037}
1038
ef45fe47 1039/*
dc26532a
JW
1040 * We source root cgroup stats from the system-wide stats to avoid
1041 * tracking the same information twice and incurring overhead when no
1042 * cgroups are defined. For that reason, cgroup_rstat_flush in
1043 * blkcg_print_stat does not actually fill out the iostat in the root
1044 * cgroup's blkcg_gq.
ef45fe47
BB
1045 *
1046 * However, we would like to re-use the printing code between the root and
1047 * non-root cgroups to the extent possible. For that reason, we simulate
1048 * flushing the root cgroup's stats by explicitly filling in the iostat
1049 * with disk level statistics.
1050 */
1051static void blkcg_fill_root_iostats(void)
1052{
1053 struct class_dev_iter iter;
1054 struct device *dev;
1055
1056 class_dev_iter_init(&iter, &block_class, NULL, &disk_type);
1057 while ((dev = class_dev_iter_next(&iter))) {
0d02129e 1058 struct block_device *bdev = dev_to_bdev(dev);
928f6f00 1059 struct blkcg_gq *blkg = bdev->bd_disk->queue->root_blkg;
ef45fe47
BB
1060 struct blkg_iostat tmp;
1061 int cpu;
f122d103 1062 unsigned long flags;
ef45fe47
BB
1063
1064 memset(&tmp, 0, sizeof(tmp));
1065 for_each_possible_cpu(cpu) {
1066 struct disk_stats *cpu_dkstats;
1067
0d02129e 1068 cpu_dkstats = per_cpu_ptr(bdev->bd_stats, cpu);
ef45fe47
BB
1069 tmp.ios[BLKG_IOSTAT_READ] +=
1070 cpu_dkstats->ios[STAT_READ];
1071 tmp.ios[BLKG_IOSTAT_WRITE] +=
1072 cpu_dkstats->ios[STAT_WRITE];
1073 tmp.ios[BLKG_IOSTAT_DISCARD] +=
1074 cpu_dkstats->ios[STAT_DISCARD];
1075 // convert sectors to bytes
1076 tmp.bytes[BLKG_IOSTAT_READ] +=
1077 cpu_dkstats->sectors[STAT_READ] << 9;
1078 tmp.bytes[BLKG_IOSTAT_WRITE] +=
1079 cpu_dkstats->sectors[STAT_WRITE] << 9;
1080 tmp.bytes[BLKG_IOSTAT_DISCARD] +=
1081 cpu_dkstats->sectors[STAT_DISCARD] << 9;
ef45fe47 1082 }
f122d103
CZ
1083
1084 flags = u64_stats_update_begin_irqsave(&blkg->iostat.sync);
1085 blkg_iostat_set(&blkg->iostat.cur, &tmp);
1086 u64_stats_update_end_irqrestore(&blkg->iostat.sync, flags);
ef45fe47
BB
1087 }
1088}
1089
49cb5168 1090static void blkcg_print_one_stat(struct blkcg_gq *blkg, struct seq_file *s)
2ee867dc 1091{
49cb5168
CH
1092 struct blkg_iostat_set *bis = &blkg->iostat;
1093 u64 rbytes, wbytes, rios, wios, dbytes, dios;
49cb5168
CH
1094 const char *dname;
1095 unsigned seq;
49cb5168 1096 int i;
ef45fe47 1097
49cb5168
CH
1098 if (!blkg->online)
1099 return;
2ee867dc 1100
49cb5168
CH
1101 dname = blkg_dev_name(blkg);
1102 if (!dname)
1103 return;
2ee867dc 1104
252c651a 1105 seq_printf(s, "%s ", dname);
b0814361 1106
49cb5168
CH
1107 do {
1108 seq = u64_stats_fetch_begin(&bis->sync);
b0814361 1109
49cb5168
CH
1110 rbytes = bis->cur.bytes[BLKG_IOSTAT_READ];
1111 wbytes = bis->cur.bytes[BLKG_IOSTAT_WRITE];
1112 dbytes = bis->cur.bytes[BLKG_IOSTAT_DISCARD];
1113 rios = bis->cur.ios[BLKG_IOSTAT_READ];
1114 wios = bis->cur.ios[BLKG_IOSTAT_WRITE];
1115 dios = bis->cur.ios[BLKG_IOSTAT_DISCARD];
1116 } while (u64_stats_fetch_retry(&bis->sync, seq));
2ee867dc 1117
49cb5168 1118 if (rbytes || wbytes || rios || wios) {
252c651a 1119 seq_printf(s, "rbytes=%llu wbytes=%llu rios=%llu wios=%llu dbytes=%llu dios=%llu",
49cb5168
CH
1120 rbytes, wbytes, rios, wios,
1121 dbytes, dios);
1122 }
903d23f0 1123
49cb5168 1124 if (blkcg_debug_stats && atomic_read(&blkg->use_delay)) {
252c651a 1125 seq_printf(s, " use_delay=%d delay_nsec=%llu",
49cb5168
CH
1126 atomic_read(&blkg->use_delay),
1127 atomic64_read(&blkg->delay_nsec));
1128 }
2ee867dc 1129
49cb5168
CH
1130 for (i = 0; i < BLKCG_MAX_POLS; i++) {
1131 struct blkcg_policy *pol = blkcg_policy[i];
2ee867dc 1132
49cb5168
CH
1133 if (!blkg->pd[i] || !pol->pd_stat_fn)
1134 continue;
903d23f0 1135
3607849d 1136 pol->pd_stat_fn(blkg->pd[i], s);
49cb5168 1137 }
d09d8df3 1138
3607849d 1139 seq_puts(s, "\n");
49cb5168 1140}
903d23f0 1141
49cb5168
CH
1142static int blkcg_print_stat(struct seq_file *sf, void *v)
1143{
1144 struct blkcg *blkcg = css_to_blkcg(seq_css(sf));
1145 struct blkcg_gq *blkg;
903d23f0 1146
49cb5168
CH
1147 if (!seq_css(sf)->parent)
1148 blkcg_fill_root_iostats();
1149 else
1150 cgroup_rstat_flush(blkcg->css.cgroup);
07b0fdec 1151
49cb5168
CH
1152 rcu_read_lock();
1153 hlist_for_each_entry_rcu(blkg, &blkcg->blkg_list, blkcg_node) {
1154 spin_lock_irq(&blkg->q->queue_lock);
1155 blkcg_print_one_stat(blkg, sf);
b0814361 1156 spin_unlock_irq(&blkg->q->queue_lock);
2ee867dc 1157 }
2ee867dc
TH
1158 rcu_read_unlock();
1159 return 0;
1160}
1161
e1f3b941 1162static struct cftype blkcg_files[] = {
2ee867dc
TH
1163 {
1164 .name = "stat",
1165 .seq_show = blkcg_print_stat,
1166 },
1167 { } /* terminate */
1168};
1169
e1f3b941 1170static struct cftype blkcg_legacy_files[] = {
84c124da
DS
1171 {
1172 .name = "reset_stats",
3c798398 1173 .write_u64 = blkcg_reset_stats,
22084190 1174 },
4baf6e33 1175 { } /* terminate */
31e4c28d
VG
1176};
1177
dec223c9
CH
1178#ifdef CONFIG_CGROUP_WRITEBACK
1179struct list_head *blkcg_get_cgwb_list(struct cgroup_subsys_state *css)
1180{
1181 return &css_to_blkcg(css)->cgwb_list;
1182}
1183#endif
1184
59b57717
DZF
1185/*
1186 * blkcg destruction is a three-stage process.
1187 *
1188 * 1. Destruction starts. The blkcg_css_offline() callback is invoked
1189 * which offlines writeback. Here we tie the next stage of blkg destruction
1190 * to the completion of writeback associated with the blkcg. This lets us
1191 * avoid punting potentially large amounts of outstanding writeback to root
1192 * while maintaining any ongoing policies. The next stage is triggered when
1193 * the nr_cgwbs count goes to zero.
1194 *
1195 * 2. When the nr_cgwbs count goes to zero, blkcg_destroy_blkgs() is called
1196 * and handles the destruction of blkgs. Here the css reference held by
1197 * the blkg is put back eventually allowing blkcg_css_free() to be called.
1198 * This work may occur in cgwb_release_workfn() on the cgwb_release
1199 * workqueue. Any submitted ios that fail to get the blkg ref will be
1200 * punted to the root_blkg.
1201 *
1202 * 3. Once the blkcg ref count goes to zero, blkcg_css_free() is called.
1203 * This finally frees the blkcg.
1204 */
1205
59b57717
DZF
1206/**
1207 * blkcg_destroy_blkgs - responsible for shooting down blkgs
1208 * @blkcg: blkcg of interest
1209 *
1210 * blkgs should be removed while holding both q and blkcg locks. As blkcg lock
1211 * is nested inside q lock, this function performs reverse double lock dancing.
1212 * Destroying the blkgs releases the reference held on the blkcg's css allowing
1213 * blkcg_css_free to eventually be called.
1214 *
1215 * This is the blkcg counterpart of ioc_release_fn().
1216 */
397c9f46 1217static void blkcg_destroy_blkgs(struct blkcg *blkcg)
59b57717 1218{
6c635cae
BW
1219 might_sleep();
1220
9f13ef67 1221 spin_lock_irq(&blkcg->lock);
7ee9c562 1222
4c699480
JQ
1223 while (!hlist_empty(&blkcg->blkg_list)) {
1224 struct blkcg_gq *blkg = hlist_entry(blkcg->blkg_list.first,
6b065462 1225 struct blkcg_gq, blkcg_node);
4c699480
JQ
1226 struct request_queue *q = blkg->q;
1227
6c635cae
BW
1228 if (need_resched() || !spin_trylock(&q->queue_lock)) {
1229 /*
1230 * Given that the system can accumulate a huge number
1231 * of blkgs in pathological cases, check to see if we
1232 * need to rescheduling to avoid softlockup.
1233 */
4c699480 1234 spin_unlock_irq(&blkcg->lock);
6c635cae 1235 cond_resched();
4c699480 1236 spin_lock_irq(&blkcg->lock);
6c635cae 1237 continue;
4c699480 1238 }
6c635cae
BW
1239
1240 blkg_destroy(blkg);
1241 spin_unlock(&q->queue_lock);
4c699480 1242 }
6b065462 1243
4c699480
JQ
1244 spin_unlock_irq(&blkcg->lock);
1245}
1246
397c9f46
CH
1247/**
1248 * blkcg_pin_online - pin online state
1249 * @blkcg_css: blkcg of interest
1250 *
1251 * While pinned, a blkcg is kept online. This is primarily used to
1252 * impedance-match blkg and cgwb lifetimes so that blkg doesn't go offline
1253 * while an associated cgwb is still active.
1254 */
1255void blkcg_pin_online(struct cgroup_subsys_state *blkcg_css)
1256{
1257 refcount_inc(&css_to_blkcg(blkcg_css)->online_pin);
1258}
1259
1260/**
1261 * blkcg_unpin_online - unpin online state
1262 * @blkcg_css: blkcg of interest
1263 *
1264 * This is primarily used to impedance-match blkg and cgwb lifetimes so
1265 * that blkg doesn't go offline while an associated cgwb is still active.
1266 * When this count goes to zero, all active cgwbs have finished so the
1267 * blkcg can continue destruction by calling blkcg_destroy_blkgs().
1268 */
1269void blkcg_unpin_online(struct cgroup_subsys_state *blkcg_css)
1270{
1271 struct blkcg *blkcg = css_to_blkcg(blkcg_css);
1272
1273 do {
1274 if (!refcount_dec_and_test(&blkcg->online_pin))
1275 break;
1276 blkcg_destroy_blkgs(blkcg);
1277 blkcg = blkcg_parent(blkcg);
1278 } while (blkcg);
1279}
1280
1281/**
1282 * blkcg_css_offline - cgroup css_offline callback
1283 * @css: css of interest
1284 *
1285 * This function is called when @css is about to go away. Here the cgwbs are
1286 * offlined first and only once writeback associated with the blkcg has
1287 * finished do we start step 2 (see above).
1288 */
1289static void blkcg_css_offline(struct cgroup_subsys_state *css)
1290{
1291 /* this prevents anyone from attaching or migrating to this blkcg */
dec223c9 1292 wb_blkcg_offline(css);
397c9f46
CH
1293
1294 /* put the base online pin allowing step 2 to be triggered */
1295 blkcg_unpin_online(css);
1296}
1297
eb95419b 1298static void blkcg_css_free(struct cgroup_subsys_state *css)
7ee9c562 1299{
eb95419b 1300 struct blkcg *blkcg = css_to_blkcg(css);
bc915e61 1301 int i;
7ee9c562 1302
7876f930 1303 mutex_lock(&blkcg_pol_mutex);
e4a9bde9 1304
7876f930 1305 list_del(&blkcg->all_blkcgs_node);
7876f930 1306
bc915e61 1307 for (i = 0; i < BLKCG_MAX_POLS; i++)
e4a9bde9
TH
1308 if (blkcg->cpd[i])
1309 blkcg_policy[i]->cpd_free_fn(blkcg->cpd[i]);
1310
1311 mutex_unlock(&blkcg_pol_mutex);
1312
3b8cc629 1313 free_percpu(blkcg->lhead);
bc915e61 1314 kfree(blkcg);
31e4c28d
VG
1315}
1316
eb95419b
TH
1317static struct cgroup_subsys_state *
1318blkcg_css_alloc(struct cgroup_subsys_state *parent_css)
31e4c28d 1319{
3c798398 1320 struct blkcg *blkcg;
e48453c3 1321 int i;
31e4c28d 1322
7876f930
TH
1323 mutex_lock(&blkcg_pol_mutex);
1324
eb95419b 1325 if (!parent_css) {
3c798398 1326 blkcg = &blkcg_root;
bc915e61
TH
1327 } else {
1328 blkcg = kzalloc(sizeof(*blkcg), GFP_KERNEL);
b5a9adcb 1329 if (!blkcg)
4c18c9e9 1330 goto unlock;
e48453c3
AA
1331 }
1332
3b8cc629
WL
1333 if (init_blkcg_llists(blkcg))
1334 goto free_blkcg;
1335
e48453c3
AA
1336 for (i = 0; i < BLKCG_MAX_POLS ; i++) {
1337 struct blkcg_policy *pol = blkcg_policy[i];
1338 struct blkcg_policy_data *cpd;
1339
1340 /*
1341 * If the policy hasn't been attached yet, wait for it
1342 * to be attached before doing anything else. Otherwise,
1343 * check if the policy requires any specific per-cgroup
1344 * data: if it does, allocate and initialize it.
1345 */
e4a9bde9 1346 if (!pol || !pol->cpd_alloc_fn)
e48453c3
AA
1347 continue;
1348
e4a9bde9 1349 cpd = pol->cpd_alloc_fn(GFP_KERNEL);
b5a9adcb 1350 if (!cpd)
e48453c3 1351 goto free_pd_blkcg;
b5a9adcb 1352
81437648
TH
1353 blkcg->cpd[i] = cpd;
1354 cpd->blkcg = blkcg;
e48453c3 1355 cpd->plid = i;
e48453c3 1356 }
31e4c28d 1357
31e4c28d 1358 spin_lock_init(&blkcg->lock);
d866dbf6 1359 refcount_set(&blkcg->online_pin, 1);
e00f4f4d 1360 INIT_RADIX_TREE(&blkcg->blkg_tree, GFP_NOWAIT | __GFP_NOWARN);
31e4c28d 1361 INIT_HLIST_HEAD(&blkcg->blkg_list);
52ebea74
TH
1362#ifdef CONFIG_CGROUP_WRITEBACK
1363 INIT_LIST_HEAD(&blkcg->cgwb_list);
1364#endif
7876f930
TH
1365 list_add_tail(&blkcg->all_blkcgs_node, &all_blkcgs);
1366
1367 mutex_unlock(&blkcg_pol_mutex);
31e4c28d 1368 return &blkcg->css;
e48453c3
AA
1369
1370free_pd_blkcg:
1371 for (i--; i >= 0; i--)
e4a9bde9
TH
1372 if (blkcg->cpd[i])
1373 blkcg_policy[i]->cpd_free_fn(blkcg->cpd[i]);
3b8cc629
WL
1374 free_percpu(blkcg->lhead);
1375free_blkcg:
4c18c9e9 1376 if (blkcg != &blkcg_root)
1377 kfree(blkcg);
1378unlock:
7876f930 1379 mutex_unlock(&blkcg_pol_mutex);
b5a9adcb 1380 return ERR_PTR(-ENOMEM);
31e4c28d
VG
1381}
1382
4308a434
TH
1383static int blkcg_css_online(struct cgroup_subsys_state *css)
1384{
397c9f46 1385 struct blkcg *parent = blkcg_parent(css_to_blkcg(css));
4308a434
TH
1386
1387 /*
1388 * blkcg_pin_online() is used to delay blkcg offline so that blkgs
1389 * don't go offline while cgwbs are still active on them. Pin the
1390 * parent so that offline always happens towards the root.
1391 */
1392 if (parent)
d7dbd43f 1393 blkcg_pin_online(&parent->css);
4308a434
TH
1394 return 0;
1395}
1396
9823538f 1397int blkcg_init_disk(struct gendisk *disk)
5efd6113 1398{
9823538f 1399 struct request_queue *q = disk->queue;
d708f0d5
JA
1400 struct blkcg_gq *new_blkg, *blkg;
1401 bool preloaded;
ec13b1d6
TH
1402 int ret;
1403
472e4314 1404 INIT_LIST_HEAD(&q->blkg_list);
1231039d 1405 mutex_init(&q->blkcg_mutex);
472e4314 1406
99e60387 1407 new_blkg = blkg_alloc(&blkcg_root, disk, GFP_KERNEL);
d708f0d5
JA
1408 if (!new_blkg)
1409 return -ENOMEM;
1410
1411 preloaded = !radix_tree_preload(GFP_KERNEL);
1412
bea54883 1413 /* Make sure the root blkg exists. */
77c570a1 1414 /* spin_lock_irq can serve as RCU read-side critical section. */
0d945c1f 1415 spin_lock_irq(&q->queue_lock);
99e60387 1416 blkg = blkg_create(&blkcg_root, disk, new_blkg);
901932a3
JB
1417 if (IS_ERR(blkg))
1418 goto err_unlock;
1419 q->root_blkg = blkg;
0d945c1f 1420 spin_unlock_irq(&q->queue_lock);
ec13b1d6 1421
d708f0d5
JA
1422 if (preloaded)
1423 radix_tree_preload_end();
1424
b0dde3f5 1425 ret = blk_ioprio_init(disk);
556910e3
BVA
1426 if (ret)
1427 goto err_destroy_all;
1428
e13793ba 1429 ret = blk_throtl_init(disk);
19688d7f 1430 if (ret)
33dc6279 1431 goto err_ioprio_exit;
19688d7f 1432
04be60b5 1433 return 0;
901932a3 1434
33dc6279 1435err_ioprio_exit:
b0dde3f5 1436 blk_ioprio_exit(disk);
04be60b5 1437err_destroy_all:
00ad6991 1438 blkg_destroy_all(disk);
04be60b5 1439 return ret;
901932a3 1440err_unlock:
0d945c1f 1441 spin_unlock_irq(&q->queue_lock);
901932a3
JB
1442 if (preloaded)
1443 radix_tree_preload_end();
1444 return PTR_ERR(blkg);
5efd6113
TH
1445}
1446
9823538f 1447void blkcg_exit_disk(struct gendisk *disk)
5efd6113 1448{
00ad6991 1449 blkg_destroy_all(disk);
e13793ba 1450 blk_throtl_exit(disk);
5efd6113
TH
1451}
1452
d09d8df3
JB
1453static void blkcg_exit(struct task_struct *tsk)
1454{
f05837ed
CH
1455 if (tsk->throttle_disk)
1456 put_disk(tsk->throttle_disk);
1457 tsk->throttle_disk = NULL;
d09d8df3
JB
1458}
1459
c165b3e3 1460struct cgroup_subsys io_cgrp_subsys = {
92fb9748 1461 .css_alloc = blkcg_css_alloc,
4308a434 1462 .css_online = blkcg_css_online,
92fb9748
TH
1463 .css_offline = blkcg_css_offline,
1464 .css_free = blkcg_css_free,
f7331648 1465 .css_rstat_flush = blkcg_rstat_flush,
2ee867dc 1466 .dfl_cftypes = blkcg_files,
880f50e2 1467 .legacy_cftypes = blkcg_legacy_files,
c165b3e3 1468 .legacy_name = "blkio",
d09d8df3 1469 .exit = blkcg_exit,
1ced953b
TH
1470#ifdef CONFIG_MEMCG
1471 /*
1472 * This ensures that, if available, memcg is automatically enabled
1473 * together on the default hierarchy so that the owner cgroup can
1474 * be retrieved from writeback pages.
1475 */
1476 .depends_on = 1 << memory_cgrp_id,
1477#endif
676f7c8f 1478};
c165b3e3 1479EXPORT_SYMBOL_GPL(io_cgrp_subsys);
676f7c8f 1480
a2b1693b 1481/**
40e4996e
CH
1482 * blkcg_activate_policy - activate a blkcg policy on a gendisk
1483 * @disk: gendisk of interest
a2b1693b
TH
1484 * @pol: blkcg policy to activate
1485 *
40e4996e 1486 * Activate @pol on @disk. Requires %GFP_KERNEL context. @disk goes through
a2b1693b
TH
1487 * bypass mode to populate its blkgs with policy_data for @pol.
1488 *
40e4996e 1489 * Activation happens with @disk bypassed, so nobody would be accessing blkgs
a2b1693b
TH
1490 * from IO path. Update of each blkg is protected by both queue and blkcg
1491 * locks so that holding either lock and testing blkcg_policy_enabled() is
1492 * always enough for dereferencing policy data.
1493 *
1494 * The caller is responsible for synchronizing [de]activations and policy
1495 * [un]registerations. Returns 0 on success, -errno on failure.
1496 */
40e4996e 1497int blkcg_activate_policy(struct gendisk *disk, const struct blkcg_policy *pol)
a2b1693b 1498{
40e4996e 1499 struct request_queue *q = disk->queue;
4c55f4f9 1500 struct blkg_policy_data *pd_prealloc = NULL;
9d179b86 1501 struct blkcg_gq *blkg, *pinned_blkg = NULL;
4c55f4f9 1502 int ret;
a2b1693b
TH
1503
1504 if (blkcg_policy_enabled(q, pol))
1505 return 0;
1506
344e9ffc 1507 if (queue_is_mq(q))
bd166ef1 1508 blk_mq_freeze_queue(q);
9d179b86 1509retry:
0d945c1f 1510 spin_lock_irq(&q->queue_lock);
a2b1693b 1511
9d179b86 1512 /* blkg_list is pushed at the head, reverse walk to allocate parents first */
71c81407 1513 list_for_each_entry_reverse(blkg, &q->blkg_list, q_node) {
4c55f4f9
TH
1514 struct blkg_policy_data *pd;
1515
1516 if (blkg->pd[pol->plid])
1517 continue;
a2b1693b 1518
9d179b86
TH
1519 /* If prealloc matches, use it; otherwise try GFP_NOWAIT */
1520 if (blkg == pinned_blkg) {
1521 pd = pd_prealloc;
1522 pd_prealloc = NULL;
1523 } else {
0a0b4f79
CH
1524 pd = pol->pd_alloc_fn(disk, blkg->blkcg,
1525 GFP_NOWAIT | __GFP_NOWARN);
9d179b86
TH
1526 }
1527
4c55f4f9 1528 if (!pd) {
9d179b86
TH
1529 /*
1530 * GFP_NOWAIT failed. Free the existing one and
1531 * prealloc for @blkg w/ GFP_KERNEL.
1532 */
1533 if (pinned_blkg)
1534 blkg_put(pinned_blkg);
1535 blkg_get(blkg);
1536 pinned_blkg = blkg;
1537
0d945c1f 1538 spin_unlock_irq(&q->queue_lock);
9d179b86
TH
1539
1540 if (pd_prealloc)
1541 pol->pd_free_fn(pd_prealloc);
0a0b4f79
CH
1542 pd_prealloc = pol->pd_alloc_fn(disk, blkg->blkcg,
1543 GFP_KERNEL);
9d179b86
TH
1544 if (pd_prealloc)
1545 goto retry;
1546 else
1547 goto enomem;
4c55f4f9 1548 }
a2b1693b
TH
1549
1550 blkg->pd[pol->plid] = pd;
1551 pd->blkg = blkg;
b276a876 1552 pd->plid = pol->plid;
dfd6200a 1553 pd->online = false;
a2b1693b
TH
1554 }
1555
9d179b86
TH
1556 /* all allocated, init in the same order */
1557 if (pol->pd_init_fn)
1558 list_for_each_entry_reverse(blkg, &q->blkg_list, q_node)
1559 pol->pd_init_fn(blkg->pd[pol->plid]);
1560
1231039d 1561 list_for_each_entry_reverse(blkg, &q->blkg_list, q_node) {
dfd6200a 1562 if (pol->pd_online_fn)
e3ff8887 1563 pol->pd_online_fn(blkg->pd[pol->plid]);
dfd6200a
YK
1564 blkg->pd[pol->plid]->online = true;
1565 }
e3ff8887 1566
a2b1693b
TH
1567 __set_bit(pol->plid, q->blkcg_pols);
1568 ret = 0;
4c55f4f9 1569
0d945c1f 1570 spin_unlock_irq(&q->queue_lock);
9d179b86 1571out:
344e9ffc 1572 if (queue_is_mq(q))
bd166ef1 1573 blk_mq_unfreeze_queue(q);
9d179b86
TH
1574 if (pinned_blkg)
1575 blkg_put(pinned_blkg);
001bea73
TH
1576 if (pd_prealloc)
1577 pol->pd_free_fn(pd_prealloc);
a2b1693b 1578 return ret;
9d179b86
TH
1579
1580enomem:
1581 /* alloc failed, nothing's initialized yet, free everything */
1582 spin_lock_irq(&q->queue_lock);
1583 list_for_each_entry(blkg, &q->blkg_list, q_node) {
858560b2
LJ
1584 struct blkcg *blkcg = blkg->blkcg;
1585
1586 spin_lock(&blkcg->lock);
9d179b86
TH
1587 if (blkg->pd[pol->plid]) {
1588 pol->pd_free_fn(blkg->pd[pol->plid]);
1589 blkg->pd[pol->plid] = NULL;
1590 }
858560b2 1591 spin_unlock(&blkcg->lock);
9d179b86
TH
1592 }
1593 spin_unlock_irq(&q->queue_lock);
1594 ret = -ENOMEM;
1595 goto out;
a2b1693b
TH
1596}
1597EXPORT_SYMBOL_GPL(blkcg_activate_policy);
1598
1599/**
40e4996e
CH
1600 * blkcg_deactivate_policy - deactivate a blkcg policy on a gendisk
1601 * @disk: gendisk of interest
a2b1693b
TH
1602 * @pol: blkcg policy to deactivate
1603 *
40e4996e 1604 * Deactivate @pol on @disk. Follows the same synchronization rules as
a2b1693b
TH
1605 * blkcg_activate_policy().
1606 */
40e4996e 1607void blkcg_deactivate_policy(struct gendisk *disk,
3c798398 1608 const struct blkcg_policy *pol)
a2b1693b 1609{
40e4996e 1610 struct request_queue *q = disk->queue;
3c798398 1611 struct blkcg_gq *blkg;
a2b1693b
TH
1612
1613 if (!blkcg_policy_enabled(q, pol))
1614 return;
1615
344e9ffc 1616 if (queue_is_mq(q))
bd166ef1 1617 blk_mq_freeze_queue(q);
bd166ef1 1618
1231039d 1619 mutex_lock(&q->blkcg_mutex);
0d945c1f 1620 spin_lock_irq(&q->queue_lock);
a2b1693b
TH
1621
1622 __clear_bit(pol->plid, q->blkcg_pols);
1623
1624 list_for_each_entry(blkg, &q->blkg_list, q_node) {
858560b2
LJ
1625 struct blkcg *blkcg = blkg->blkcg;
1626
1627 spin_lock(&blkcg->lock);
001bea73 1628 if (blkg->pd[pol->plid]) {
dfd6200a 1629 if (blkg->pd[pol->plid]->online && pol->pd_offline_fn)
a9520cd6 1630 pol->pd_offline_fn(blkg->pd[pol->plid]);
001bea73
TH
1631 pol->pd_free_fn(blkg->pd[pol->plid]);
1632 blkg->pd[pol->plid] = NULL;
1633 }
858560b2 1634 spin_unlock(&blkcg->lock);
a2b1693b
TH
1635 }
1636
0d945c1f 1637 spin_unlock_irq(&q->queue_lock);
1231039d 1638 mutex_unlock(&q->blkcg_mutex);
bd166ef1 1639
344e9ffc 1640 if (queue_is_mq(q))
bd166ef1 1641 blk_mq_unfreeze_queue(q);
a2b1693b
TH
1642}
1643EXPORT_SYMBOL_GPL(blkcg_deactivate_policy);
1644
e55cf798
JY
1645static void blkcg_free_all_cpd(struct blkcg_policy *pol)
1646{
1647 struct blkcg *blkcg;
1648
1649 list_for_each_entry(blkcg, &all_blkcgs, all_blkcgs_node) {
1650 if (blkcg->cpd[pol->plid]) {
1651 pol->cpd_free_fn(blkcg->cpd[pol->plid]);
1652 blkcg->cpd[pol->plid] = NULL;
1653 }
1654 }
1655}
1656
8bd435b3 1657/**
3c798398
TH
1658 * blkcg_policy_register - register a blkcg policy
1659 * @pol: blkcg policy to register
8bd435b3 1660 *
3c798398
TH
1661 * Register @pol with blkcg core. Might sleep and @pol may be modified on
1662 * successful registration. Returns 0 on success and -errno on failure.
8bd435b3 1663 */
d5bf0291 1664int blkcg_policy_register(struct blkcg_policy *pol)
3e252066 1665{
06b285bd 1666 struct blkcg *blkcg;
8bd435b3 1667 int i, ret;
e8989fae 1668
838f13bf 1669 mutex_lock(&blkcg_pol_register_mutex);
bc0d6501
TH
1670 mutex_lock(&blkcg_pol_mutex);
1671
8bd435b3
TH
1672 /* find an empty slot */
1673 ret = -ENOSPC;
1674 for (i = 0; i < BLKCG_MAX_POLS; i++)
3c798398 1675 if (!blkcg_policy[i])
8bd435b3 1676 break;
01c5f85a
JA
1677 if (i >= BLKCG_MAX_POLS) {
1678 pr_warn("blkcg_policy_register: BLKCG_MAX_POLS too small\n");
838f13bf 1679 goto err_unlock;
01c5f85a 1680 }
035d10b2 1681
e8401073 1682 /* Make sure cpd/pd_alloc_fn and cpd/pd_free_fn in pairs */
1683 if ((!pol->cpd_alloc_fn ^ !pol->cpd_free_fn) ||
1684 (!pol->pd_alloc_fn ^ !pol->pd_free_fn))
1685 goto err_unlock;
1686
06b285bd 1687 /* register @pol */
3c798398 1688 pol->plid = i;
06b285bd
TH
1689 blkcg_policy[pol->plid] = pol;
1690
1691 /* allocate and install cpd's */
e4a9bde9 1692 if (pol->cpd_alloc_fn) {
06b285bd
TH
1693 list_for_each_entry(blkcg, &all_blkcgs, all_blkcgs_node) {
1694 struct blkcg_policy_data *cpd;
1695
e4a9bde9 1696 cpd = pol->cpd_alloc_fn(GFP_KERNEL);
bbb427e3 1697 if (!cpd)
06b285bd 1698 goto err_free_cpds;
06b285bd 1699
81437648
TH
1700 blkcg->cpd[pol->plid] = cpd;
1701 cpd->blkcg = blkcg;
06b285bd 1702 cpd->plid = pol->plid;
06b285bd
TH
1703 }
1704 }
1705
838f13bf 1706 mutex_unlock(&blkcg_pol_mutex);
8bd435b3 1707
8bd435b3 1708 /* everything is in place, add intf files for the new policy */
2ee867dc
TH
1709 if (pol->dfl_cftypes)
1710 WARN_ON(cgroup_add_dfl_cftypes(&io_cgrp_subsys,
1711 pol->dfl_cftypes));
880f50e2 1712 if (pol->legacy_cftypes)
c165b3e3 1713 WARN_ON(cgroup_add_legacy_cftypes(&io_cgrp_subsys,
880f50e2 1714 pol->legacy_cftypes));
838f13bf
TH
1715 mutex_unlock(&blkcg_pol_register_mutex);
1716 return 0;
1717
06b285bd 1718err_free_cpds:
e55cf798
JY
1719 if (pol->cpd_free_fn)
1720 blkcg_free_all_cpd(pol);
1721
06b285bd 1722 blkcg_policy[pol->plid] = NULL;
838f13bf 1723err_unlock:
bc0d6501 1724 mutex_unlock(&blkcg_pol_mutex);
838f13bf 1725 mutex_unlock(&blkcg_pol_register_mutex);
8bd435b3 1726 return ret;
3e252066 1727}
3c798398 1728EXPORT_SYMBOL_GPL(blkcg_policy_register);
3e252066 1729
8bd435b3 1730/**
3c798398
TH
1731 * blkcg_policy_unregister - unregister a blkcg policy
1732 * @pol: blkcg policy to unregister
8bd435b3 1733 *
3c798398 1734 * Undo blkcg_policy_register(@pol). Might sleep.
8bd435b3 1735 */
3c798398 1736void blkcg_policy_unregister(struct blkcg_policy *pol)
3e252066 1737{
838f13bf 1738 mutex_lock(&blkcg_pol_register_mutex);
bc0d6501 1739
3c798398 1740 if (WARN_ON(blkcg_policy[pol->plid] != pol))
8bd435b3
TH
1741 goto out_unlock;
1742
1743 /* kill the intf files first */
2ee867dc
TH
1744 if (pol->dfl_cftypes)
1745 cgroup_rm_cftypes(pol->dfl_cftypes);
880f50e2
TH
1746 if (pol->legacy_cftypes)
1747 cgroup_rm_cftypes(pol->legacy_cftypes);
44ea53de 1748
06b285bd 1749 /* remove cpds and unregister */
838f13bf 1750 mutex_lock(&blkcg_pol_mutex);
06b285bd 1751
e55cf798
JY
1752 if (pol->cpd_free_fn)
1753 blkcg_free_all_cpd(pol);
1754
3c798398 1755 blkcg_policy[pol->plid] = NULL;
06b285bd 1756
bc0d6501 1757 mutex_unlock(&blkcg_pol_mutex);
838f13bf
TH
1758out_unlock:
1759 mutex_unlock(&blkcg_pol_register_mutex);
3e252066 1760}
3c798398 1761EXPORT_SYMBOL_GPL(blkcg_policy_unregister);
903d23f0 1762
d09d8df3
JB
1763/*
1764 * Scale the accumulated delay based on how long it has been since we updated
1765 * the delay. We only call this when we are adding delay, in case it's been a
1766 * while since we added delay, and when we are checking to see if we need to
1767 * delay a task, to account for any delays that may have occurred.
1768 */
1769static void blkcg_scale_delay(struct blkcg_gq *blkg, u64 now)
1770{
1771 u64 old = atomic64_read(&blkg->delay_start);
1772
54c52e10
TH
1773 /* negative use_delay means no scaling, see blkcg_set_delay() */
1774 if (atomic_read(&blkg->use_delay) < 0)
1775 return;
1776
d09d8df3
JB
1777 /*
1778 * We only want to scale down every second. The idea here is that we
1779 * want to delay people for min(delay_nsec, NSEC_PER_SEC) in a certain
1780 * time window. We only want to throttle tasks for recent delay that
1781 * has occurred, in 1 second time windows since that's the maximum
1782 * things can be throttled. We save the current delay window in
1783 * blkg->last_delay so we know what amount is still left to be charged
1784 * to the blkg from this point onward. blkg->last_use keeps track of
1785 * the use_delay counter. The idea is if we're unthrottling the blkg we
1786 * are ok with whatever is happening now, and we can take away more of
1787 * the accumulated delay as we've already throttled enough that
1788 * everybody is happy with their IO latencies.
1789 */
1790 if (time_before64(old + NSEC_PER_SEC, now) &&
96388f57 1791 atomic64_try_cmpxchg(&blkg->delay_start, &old, now)) {
d09d8df3
JB
1792 u64 cur = atomic64_read(&blkg->delay_nsec);
1793 u64 sub = min_t(u64, blkg->last_delay, now - old);
1794 int cur_use = atomic_read(&blkg->use_delay);
1795
1796 /*
1797 * We've been unthrottled, subtract a larger chunk of our
1798 * accumulated delay.
1799 */
1800 if (cur_use < blkg->last_use)
1801 sub = max_t(u64, sub, blkg->last_delay >> 1);
1802
1803 /*
1804 * This shouldn't happen, but handle it anyway. Our delay_nsec
1805 * should only ever be growing except here where we subtract out
1806 * min(last_delay, 1 second), but lord knows bugs happen and I'd
1807 * rather not end up with negative numbers.
1808 */
1809 if (unlikely(cur < sub)) {
1810 atomic64_set(&blkg->delay_nsec, 0);
1811 blkg->last_delay = 0;
1812 } else {
1813 atomic64_sub(sub, &blkg->delay_nsec);
1814 blkg->last_delay = cur - sub;
1815 }
1816 blkg->last_use = cur_use;
1817 }
1818}
1819
1820/*
1821 * This is called when we want to actually walk up the hierarchy and check to
1822 * see if we need to throttle, and then actually throttle if there is some
1823 * accumulated delay. This should only be called upon return to user space so
1824 * we're not holding some lock that would induce a priority inversion.
1825 */
1826static void blkcg_maybe_throttle_blkg(struct blkcg_gq *blkg, bool use_memdelay)
1827{
fd112c74 1828 unsigned long pflags;
5160a5a5 1829 bool clamp;
d09d8df3
JB
1830 u64 now = ktime_to_ns(ktime_get());
1831 u64 exp;
1832 u64 delay_nsec = 0;
1833 int tok;
1834
1835 while (blkg->parent) {
5160a5a5
TH
1836 int use_delay = atomic_read(&blkg->use_delay);
1837
1838 if (use_delay) {
1839 u64 this_delay;
1840
d09d8df3 1841 blkcg_scale_delay(blkg, now);
5160a5a5
TH
1842 this_delay = atomic64_read(&blkg->delay_nsec);
1843 if (this_delay > delay_nsec) {
1844 delay_nsec = this_delay;
1845 clamp = use_delay > 0;
1846 }
d09d8df3
JB
1847 }
1848 blkg = blkg->parent;
1849 }
1850
1851 if (!delay_nsec)
1852 return;
1853
1854 /*
1855 * Let's not sleep for all eternity if we've amassed a huge delay.
1856 * Swapping or metadata IO can accumulate 10's of seconds worth of
1857 * delay, and we want userspace to be able to do _something_ so cap the
5160a5a5
TH
1858 * delays at 0.25s. If there's 10's of seconds worth of delay then the
1859 * tasks will be delayed for 0.25 second for every syscall. If
1860 * blkcg_set_delay() was used as indicated by negative use_delay, the
1861 * caller is responsible for regulating the range.
d09d8df3 1862 */
5160a5a5
TH
1863 if (clamp)
1864 delay_nsec = min_t(u64, delay_nsec, 250 * NSEC_PER_MSEC);
d09d8df3 1865
fd112c74
JB
1866 if (use_memdelay)
1867 psi_memstall_enter(&pflags);
d09d8df3
JB
1868
1869 exp = ktime_add_ns(now, delay_nsec);
1870 tok = io_schedule_prepare();
1871 do {
1872 __set_current_state(TASK_KILLABLE);
1873 if (!schedule_hrtimeout(&exp, HRTIMER_MODE_ABS))
1874 break;
1875 } while (!fatal_signal_pending(current));
1876 io_schedule_finish(tok);
fd112c74
JB
1877
1878 if (use_memdelay)
1879 psi_memstall_leave(&pflags);
d09d8df3
JB
1880}
1881
1882/**
1883 * blkcg_maybe_throttle_current - throttle the current task if it has been marked
1884 *
1885 * This is only called if we've been marked with set_notify_resume(). Obviously
1886 * we can be set_notify_resume() for reasons other than blkcg throttling, so we
f05837ed 1887 * check to see if current->throttle_disk is set and if not this doesn't do
d09d8df3
JB
1888 * anything. This should only ever be called by the resume code, it's not meant
1889 * to be called by people willy-nilly as it will actually do the work to
1890 * throttle the task if it is setup for throttling.
1891 */
1892void blkcg_maybe_throttle_current(void)
1893{
f05837ed 1894 struct gendisk *disk = current->throttle_disk;
d09d8df3
JB
1895 struct blkcg *blkcg;
1896 struct blkcg_gq *blkg;
1897 bool use_memdelay = current->use_memdelay;
1898
f05837ed 1899 if (!disk)
d09d8df3
JB
1900 return;
1901
f05837ed 1902 current->throttle_disk = NULL;
d09d8df3
JB
1903 current->use_memdelay = false;
1904
1905 rcu_read_lock();
82778259 1906 blkcg = css_to_blkcg(blkcg_css());
d09d8df3
JB
1907 if (!blkcg)
1908 goto out;
9a9c261e 1909 blkg = blkg_lookup(blkcg, disk->queue);
d09d8df3
JB
1910 if (!blkg)
1911 goto out;
7754f669 1912 if (!blkg_tryget(blkg))
d09d8df3
JB
1913 goto out;
1914 rcu_read_unlock();
d09d8df3
JB
1915
1916 blkcg_maybe_throttle_blkg(blkg, use_memdelay);
1917 blkg_put(blkg);
f05837ed 1918 put_disk(disk);
d09d8df3
JB
1919 return;
1920out:
1921 rcu_read_unlock();
d09d8df3 1922}
d09d8df3
JB
1923
1924/**
1925 * blkcg_schedule_throttle - this task needs to check for throttling
1d6df9d3 1926 * @disk: disk to throttle
537d71b3 1927 * @use_memdelay: do we charge this to memory delay for PSI
d09d8df3
JB
1928 *
1929 * This is called by the IO controller when we know there's delay accumulated
1930 * for the blkg for this task. We do not pass the blkg because there are places
1931 * we call this that may not have that information, the swapping code for
de185b56 1932 * instance will only have a block_device at that point. This set's the
d09d8df3
JB
1933 * notify_resume for the task to check and see if it requires throttling before
1934 * returning to user space.
1935 *
1936 * We will only schedule once per syscall. You can call this over and over
1937 * again and it will only do the check once upon return to user space, and only
1938 * throttle once. If the task needs to be throttled again it'll need to be
1939 * re-set at the next time we see the task.
1940 */
de185b56 1941void blkcg_schedule_throttle(struct gendisk *disk, bool use_memdelay)
d09d8df3
JB
1942{
1943 if (unlikely(current->flags & PF_KTHREAD))
1944 return;
1945
f05837ed
CH
1946 if (current->throttle_disk != disk) {
1947 if (test_bit(GD_DEAD, &disk->state))
49d1822b 1948 return;
f05837ed 1949 get_device(disk_to_dev(disk));
49d1822b 1950
f05837ed
CH
1951 if (current->throttle_disk)
1952 put_disk(current->throttle_disk);
1953 current->throttle_disk = disk;
49d1822b 1954 }
d09d8df3 1955
d09d8df3
JB
1956 if (use_memdelay)
1957 current->use_memdelay = use_memdelay;
1958 set_notify_resume(current);
1959}
d09d8df3
JB
1960
1961/**
1962 * blkcg_add_delay - add delay to this blkg
537d71b3
BVA
1963 * @blkg: blkg of interest
1964 * @now: the current time in nanoseconds
1965 * @delta: how many nanoseconds of delay to add
d09d8df3
JB
1966 *
1967 * Charge @delta to the blkg's current delay accumulation. This is used to
1968 * throttle tasks if an IO controller thinks we need more throttling.
1969 */
1970void blkcg_add_delay(struct blkcg_gq *blkg, u64 now, u64 delta)
1971{
54c52e10
TH
1972 if (WARN_ON_ONCE(atomic_read(&blkg->use_delay) < 0))
1973 return;
d09d8df3
JB
1974 blkcg_scale_delay(blkg, now);
1975 atomic64_add(delta, &blkg->delay_nsec);
1976}
d09d8df3 1977
28fc591f
CH
1978/**
1979 * blkg_tryget_closest - try and get a blkg ref on the closet blkg
13c7863d
CH
1980 * @bio: target bio
1981 * @css: target css
28fc591f 1982 *
13c7863d
CH
1983 * As the failure mode here is to walk up the blkg tree, this ensure that the
1984 * blkg->parent pointers are always valid. This returns the blkg that it ended
1985 * up taking a reference on or %NULL if no reference was taken.
28fc591f 1986 */
13c7863d
CH
1987static inline struct blkcg_gq *blkg_tryget_closest(struct bio *bio,
1988 struct cgroup_subsys_state *css)
28fc591f 1989{
13c7863d 1990 struct blkcg_gq *blkg, *ret_blkg = NULL;
28fc591f 1991
13c7863d 1992 rcu_read_lock();
99e60387 1993 blkg = blkg_lookup_create(css_to_blkcg(css), bio->bi_bdev->bd_disk);
28fc591f
CH
1994 while (blkg) {
1995 if (blkg_tryget(blkg)) {
1996 ret_blkg = blkg;
1997 break;
1998 }
1999 blkg = blkg->parent;
2000 }
13c7863d 2001 rcu_read_unlock();
28fc591f
CH
2002
2003 return ret_blkg;
2004}
2005
2006/**
2007 * bio_associate_blkg_from_css - associate a bio with a specified css
2008 * @bio: target bio
2009 * @css: target css
2010 *
2011 * Associate @bio with the blkg found by combining the css's blkg and the
2012 * request_queue of the @bio. An association failure is handled by walking up
2013 * the blkg tree. Therefore, the blkg associated can be anything between @blkg
2014 * and q->root_blkg. This situation only happens when a cgroup is dying and
2015 * then the remaining bios will spill to the closest alive blkg.
2016 *
2017 * A reference will be taken on the blkg and will be released when @bio is
2018 * freed.
2019 */
2020void bio_associate_blkg_from_css(struct bio *bio,
2021 struct cgroup_subsys_state *css)
2022{
28fc591f
CH
2023 if (bio->bi_blkg)
2024 blkg_put(bio->bi_blkg);
2025
a5b97526 2026 if (css && css->parent) {
13c7863d 2027 bio->bi_blkg = blkg_tryget_closest(bio, css);
a5b97526 2028 } else {
ed6cddef
PB
2029 blkg_get(bdev_get_queue(bio->bi_bdev)->root_blkg);
2030 bio->bi_blkg = bdev_get_queue(bio->bi_bdev)->root_blkg;
a5b97526 2031 }
28fc591f
CH
2032}
2033EXPORT_SYMBOL_GPL(bio_associate_blkg_from_css);
2034
2035/**
2036 * bio_associate_blkg - associate a bio with a blkg
2037 * @bio: target bio
2038 *
2039 * Associate @bio with the blkg found from the bio's css and request_queue.
2040 * If one is not found, bio_lookup_blkg() creates the blkg. If a blkg is
2041 * already associated, the css is reused and association redone as the
2042 * request_queue may have changed.
2043 */
2044void bio_associate_blkg(struct bio *bio)
2045{
2046 struct cgroup_subsys_state *css;
2047
2048 rcu_read_lock();
2049
2050 if (bio->bi_blkg)
bbb1ebe7 2051 css = bio_blkcg_css(bio);
28fc591f
CH
2052 else
2053 css = blkcg_css();
2054
2055 bio_associate_blkg_from_css(bio, css);
2056
2057 rcu_read_unlock();
2058}
2059EXPORT_SYMBOL_GPL(bio_associate_blkg);
2060
2061/**
2062 * bio_clone_blkg_association - clone blkg association from src to dst bio
2063 * @dst: destination bio
2064 * @src: source bio
2065 */
2066void bio_clone_blkg_association(struct bio *dst, struct bio *src)
2067{
22b106e5
JK
2068 if (src->bi_blkg)
2069 bio_associate_blkg_from_css(dst, bio_blkcg_css(src));
28fc591f
CH
2070}
2071EXPORT_SYMBOL_GPL(bio_clone_blkg_association);
2072
db18a53e
CH
2073static int blk_cgroup_io_type(struct bio *bio)
2074{
2075 if (op_is_discard(bio->bi_opf))
2076 return BLKG_IOSTAT_DISCARD;
2077 if (op_is_write(bio->bi_opf))
2078 return BLKG_IOSTAT_WRITE;
2079 return BLKG_IOSTAT_READ;
2080}
2081
2082void blk_cgroup_bio_start(struct bio *bio)
2083{
3b8cc629 2084 struct blkcg *blkcg = bio->bi_blkg->blkcg;
db18a53e
CH
2085 int rwd = blk_cgroup_io_type(bio), cpu;
2086 struct blkg_iostat_set *bis;
3c08b093 2087 unsigned long flags;
db18a53e 2088
0416f3be
ML
2089 /* Root-level stats are sourced from system-wide IO stats */
2090 if (!cgroup_parent(blkcg->css.cgroup))
2091 return;
2092
db18a53e
CH
2093 cpu = get_cpu();
2094 bis = per_cpu_ptr(bio->bi_blkg->iostat_cpu, cpu);
3c08b093 2095 flags = u64_stats_update_begin_irqsave(&bis->sync);
db18a53e
CH
2096
2097 /*
2098 * If the bio is flagged with BIO_CGROUP_ACCT it means this is a split
2099 * bio and we would have already accounted for the size of the bio.
2100 */
2101 if (!bio_flagged(bio, BIO_CGROUP_ACCT)) {
2102 bio_set_flag(bio, BIO_CGROUP_ACCT);
0b8cc25d 2103 bis->cur.bytes[rwd] += bio->bi_iter.bi_size;
db18a53e
CH
2104 }
2105 bis->cur.ios[rwd]++;
2106
3b8cc629
WL
2107 /*
2108 * If the iostat_cpu isn't in a lockless list, put it into the
2109 * list to indicate that a stat update is pending.
2110 */
2111 if (!READ_ONCE(bis->lqueued)) {
2112 struct llist_head *lhead = this_cpu_ptr(blkcg->lhead);
2113
2114 llist_add(&bis->lnode, lhead);
2115 WRITE_ONCE(bis->lqueued, true);
3b8cc629
WL
2116 }
2117
3c08b093 2118 u64_stats_update_end_irqrestore(&bis->sync, flags);
db18a53e 2119 if (cgroup_subsys_on_dfl(io_cgrp_subsys))
3b8cc629 2120 cgroup_rstat_updated(blkcg->css.cgroup, cpu);
db18a53e
CH
2121 put_cpu();
2122}
2123
216889aa
CH
2124bool blk_cgroup_congested(void)
2125{
2126 struct cgroup_subsys_state *css;
2127 bool ret = false;
2128
2129 rcu_read_lock();
d200ca14 2130 for (css = blkcg_css(); css; css = css->parent) {
216889aa
CH
2131 if (atomic_read(&css->cgroup->congestion_count)) {
2132 ret = true;
2133 break;
2134 }
216889aa
CH
2135 }
2136 rcu_read_unlock();
2137 return ret;
2138}
2139
903d23f0
JB
2140module_param(blkcg_debug_stats, bool, 0644);
2141MODULE_PARM_DESC(blkcg_debug_stats, "True if you want debug stats, false if not");