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blk-throttle: remove spurious throtl_enqueue_tg() call from throtl_select_dispatch()
[mirror_ubuntu-bionic-kernel.git] / block / blk-throttle.c
CommitLineData
e43473b7
VG
1/*
2 * Interface for controlling IO bandwidth on a request queue
3 *
4 * Copyright (C) 2010 Vivek Goyal <vgoyal@redhat.com>
5 */
6
7#include <linux/module.h>
8#include <linux/slab.h>
9#include <linux/blkdev.h>
10#include <linux/bio.h>
11#include <linux/blktrace_api.h>
12#include "blk-cgroup.h"
bc9fcbf9 13#include "blk.h"
e43473b7
VG
14
15/* Max dispatch from a group in 1 round */
16static int throtl_grp_quantum = 8;
17
18/* Total max dispatch from all groups in one round */
19static int throtl_quantum = 32;
20
21/* Throttling is performed over 100ms slice and after that slice is renewed */
22static unsigned long throtl_slice = HZ/10; /* 100 ms */
23
3c798398 24static struct blkcg_policy blkcg_policy_throtl;
0381411e 25
450adcbe
VG
26/* A workqueue to queue throttle related work */
27static struct workqueue_struct *kthrotld_workqueue;
28static void throtl_schedule_delayed_work(struct throtl_data *td,
29 unsigned long delay);
30
e43473b7
VG
31struct throtl_rb_root {
32 struct rb_root rb;
33 struct rb_node *left;
34 unsigned int count;
35 unsigned long min_disptime;
36};
37
38#define THROTL_RB_ROOT (struct throtl_rb_root) { .rb = RB_ROOT, .left = NULL, \
39 .count = 0, .min_disptime = 0}
40
41#define rb_entry_tg(node) rb_entry((node), struct throtl_grp, rb_node)
42
8a3d2615
TH
43/* Per-cpu group stats */
44struct tg_stats_cpu {
45 /* total bytes transferred */
46 struct blkg_rwstat service_bytes;
47 /* total IOs serviced, post merge */
48 struct blkg_rwstat serviced;
49};
50
e43473b7 51struct throtl_grp {
f95a04af
TH
52 /* must be the first member */
53 struct blkg_policy_data pd;
54
e43473b7
VG
55 /* active throtl group service_tree member */
56 struct rb_node rb_node;
57
58 /*
59 * Dispatch time in jiffies. This is the estimated time when group
60 * will unthrottle and is ready to dispatch more bio. It is used as
61 * key to sort active groups in service tree.
62 */
63 unsigned long disptime;
64
e43473b7
VG
65 unsigned int flags;
66
67 /* Two lists for READ and WRITE */
68 struct bio_list bio_lists[2];
69
70 /* Number of queued bios on READ and WRITE lists */
71 unsigned int nr_queued[2];
72
73 /* bytes per second rate limits */
74 uint64_t bps[2];
75
8e89d13f
VG
76 /* IOPS limits */
77 unsigned int iops[2];
78
e43473b7
VG
79 /* Number of bytes disptached in current slice */
80 uint64_t bytes_disp[2];
8e89d13f
VG
81 /* Number of bio's dispatched in current slice */
82 unsigned int io_disp[2];
e43473b7
VG
83
84 /* When did we start a new slice */
85 unsigned long slice_start[2];
86 unsigned long slice_end[2];
fe071437
VG
87
88 /* Some throttle limits got updated for the group */
6f037937 89 int limits_changed;
8a3d2615
TH
90
91 /* Per cpu stats pointer */
92 struct tg_stats_cpu __percpu *stats_cpu;
93
94 /* List of tgs waiting for per cpu stats memory to be allocated */
95 struct list_head stats_alloc_node;
e43473b7
VG
96};
97
98struct throtl_data
99{
e43473b7
VG
100 /* service tree for active throtl groups */
101 struct throtl_rb_root tg_service_tree;
102
e43473b7
VG
103 struct request_queue *queue;
104
105 /* Total Number of queued bios on READ and WRITE lists */
106 unsigned int nr_queued[2];
107
108 /*
02977e4a 109 * number of total undestroyed groups
e43473b7
VG
110 */
111 unsigned int nr_undestroyed_grps;
112
113 /* Work for dispatching throttled bios */
114 struct delayed_work throtl_work;
fe071437 115
6f037937 116 int limits_changed;
e43473b7
VG
117};
118
8a3d2615
TH
119/* list and work item to allocate percpu group stats */
120static DEFINE_SPINLOCK(tg_stats_alloc_lock);
121static LIST_HEAD(tg_stats_alloc_list);
122
123static void tg_stats_alloc_fn(struct work_struct *);
124static DECLARE_DELAYED_WORK(tg_stats_alloc_work, tg_stats_alloc_fn);
125
f95a04af
TH
126static inline struct throtl_grp *pd_to_tg(struct blkg_policy_data *pd)
127{
128 return pd ? container_of(pd, struct throtl_grp, pd) : NULL;
129}
130
3c798398 131static inline struct throtl_grp *blkg_to_tg(struct blkcg_gq *blkg)
0381411e 132{
f95a04af 133 return pd_to_tg(blkg_to_pd(blkg, &blkcg_policy_throtl));
0381411e
TH
134}
135
3c798398 136static inline struct blkcg_gq *tg_to_blkg(struct throtl_grp *tg)
0381411e 137{
f95a04af 138 return pd_to_blkg(&tg->pd);
0381411e
TH
139}
140
03d8e111
TH
141static inline struct throtl_grp *td_root_tg(struct throtl_data *td)
142{
143 return blkg_to_tg(td->queue->root_blkg);
144}
145
e43473b7
VG
146enum tg_state_flags {
147 THROTL_TG_FLAG_on_rr = 0, /* on round-robin busy list */
148};
149
150#define THROTL_TG_FNS(name) \
151static inline void throtl_mark_tg_##name(struct throtl_grp *tg) \
152{ \
153 (tg)->flags |= (1 << THROTL_TG_FLAG_##name); \
154} \
155static inline void throtl_clear_tg_##name(struct throtl_grp *tg) \
156{ \
157 (tg)->flags &= ~(1 << THROTL_TG_FLAG_##name); \
158} \
159static inline int throtl_tg_##name(const struct throtl_grp *tg) \
160{ \
161 return ((tg)->flags & (1 << THROTL_TG_FLAG_##name)) != 0; \
162}
163
164THROTL_TG_FNS(on_rr);
165
54e7ed12
TH
166#define throtl_log_tg(td, tg, fmt, args...) do { \
167 char __pbuf[128]; \
168 \
169 blkg_path(tg_to_blkg(tg), __pbuf, sizeof(__pbuf)); \
170 blk_add_trace_msg((td)->queue, "throtl %s " fmt, __pbuf, ##args); \
171} while (0)
e43473b7
VG
172
173#define throtl_log(td, fmt, args...) \
174 blk_add_trace_msg((td)->queue, "throtl " fmt, ##args)
175
d2f31a5f 176static inline unsigned int total_nr_queued(struct throtl_data *td)
e43473b7 177{
d2f31a5f 178 return td->nr_queued[0] + td->nr_queued[1];
e43473b7
VG
179}
180
8a3d2615
TH
181/*
182 * Worker for allocating per cpu stat for tgs. This is scheduled on the
3b07e9ca 183 * system_wq once there are some groups on the alloc_list waiting for
8a3d2615
TH
184 * allocation.
185 */
186static void tg_stats_alloc_fn(struct work_struct *work)
187{
188 static struct tg_stats_cpu *stats_cpu; /* this fn is non-reentrant */
189 struct delayed_work *dwork = to_delayed_work(work);
190 bool empty = false;
191
192alloc_stats:
193 if (!stats_cpu) {
194 stats_cpu = alloc_percpu(struct tg_stats_cpu);
195 if (!stats_cpu) {
196 /* allocation failed, try again after some time */
3b07e9ca 197 schedule_delayed_work(dwork, msecs_to_jiffies(10));
8a3d2615
TH
198 return;
199 }
200 }
201
202 spin_lock_irq(&tg_stats_alloc_lock);
203
204 if (!list_empty(&tg_stats_alloc_list)) {
205 struct throtl_grp *tg = list_first_entry(&tg_stats_alloc_list,
206 struct throtl_grp,
207 stats_alloc_node);
208 swap(tg->stats_cpu, stats_cpu);
209 list_del_init(&tg->stats_alloc_node);
210 }
211
212 empty = list_empty(&tg_stats_alloc_list);
213 spin_unlock_irq(&tg_stats_alloc_lock);
214 if (!empty)
215 goto alloc_stats;
216}
217
3c798398 218static void throtl_pd_init(struct blkcg_gq *blkg)
a29a171e 219{
0381411e 220 struct throtl_grp *tg = blkg_to_tg(blkg);
ff26eaad 221 unsigned long flags;
cd1604fa 222
a29a171e
VG
223 RB_CLEAR_NODE(&tg->rb_node);
224 bio_list_init(&tg->bio_lists[0]);
225 bio_list_init(&tg->bio_lists[1]);
226 tg->limits_changed = false;
227
e56da7e2
TH
228 tg->bps[READ] = -1;
229 tg->bps[WRITE] = -1;
230 tg->iops[READ] = -1;
231 tg->iops[WRITE] = -1;
8a3d2615
TH
232
233 /*
234 * Ugh... We need to perform per-cpu allocation for tg->stats_cpu
235 * but percpu allocator can't be called from IO path. Queue tg on
236 * tg_stats_alloc_list and allocate from work item.
237 */
ff26eaad 238 spin_lock_irqsave(&tg_stats_alloc_lock, flags);
8a3d2615 239 list_add(&tg->stats_alloc_node, &tg_stats_alloc_list);
3b07e9ca 240 schedule_delayed_work(&tg_stats_alloc_work, 0);
ff26eaad 241 spin_unlock_irqrestore(&tg_stats_alloc_lock, flags);
8a3d2615
TH
242}
243
3c798398 244static void throtl_pd_exit(struct blkcg_gq *blkg)
8a3d2615
TH
245{
246 struct throtl_grp *tg = blkg_to_tg(blkg);
ff26eaad 247 unsigned long flags;
8a3d2615 248
ff26eaad 249 spin_lock_irqsave(&tg_stats_alloc_lock, flags);
8a3d2615 250 list_del_init(&tg->stats_alloc_node);
ff26eaad 251 spin_unlock_irqrestore(&tg_stats_alloc_lock, flags);
8a3d2615
TH
252
253 free_percpu(tg->stats_cpu);
254}
255
3c798398 256static void throtl_pd_reset_stats(struct blkcg_gq *blkg)
8a3d2615
TH
257{
258 struct throtl_grp *tg = blkg_to_tg(blkg);
259 int cpu;
260
261 if (tg->stats_cpu == NULL)
262 return;
263
264 for_each_possible_cpu(cpu) {
265 struct tg_stats_cpu *sc = per_cpu_ptr(tg->stats_cpu, cpu);
266
267 blkg_rwstat_reset(&sc->service_bytes);
268 blkg_rwstat_reset(&sc->serviced);
269 }
a29a171e
VG
270}
271
3c798398
TH
272static struct throtl_grp *throtl_lookup_tg(struct throtl_data *td,
273 struct blkcg *blkcg)
e43473b7 274{
be2c6b19 275 /*
3c798398
TH
276 * This is the common case when there are no blkcgs. Avoid lookup
277 * in this case
cd1604fa 278 */
3c798398 279 if (blkcg == &blkcg_root)
03d8e111 280 return td_root_tg(td);
e43473b7 281
e8989fae 282 return blkg_to_tg(blkg_lookup(blkcg, td->queue));
e43473b7
VG
283}
284
cd1604fa 285static struct throtl_grp *throtl_lookup_create_tg(struct throtl_data *td,
3c798398 286 struct blkcg *blkcg)
e43473b7 287{
f469a7b4 288 struct request_queue *q = td->queue;
cd1604fa 289 struct throtl_grp *tg = NULL;
bc16a4f9 290
f469a7b4 291 /*
3c798398
TH
292 * This is the common case when there are no blkcgs. Avoid lookup
293 * in this case
f469a7b4 294 */
3c798398 295 if (blkcg == &blkcg_root) {
03d8e111 296 tg = td_root_tg(td);
cd1604fa 297 } else {
3c798398 298 struct blkcg_gq *blkg;
f469a7b4 299
3c96cb32 300 blkg = blkg_lookup_create(blkcg, q);
f469a7b4 301
cd1604fa
TH
302 /* if %NULL and @q is alive, fall back to root_tg */
303 if (!IS_ERR(blkg))
0381411e 304 tg = blkg_to_tg(blkg);
3f3299d5 305 else if (!blk_queue_dying(q))
03d8e111 306 tg = td_root_tg(td);
f469a7b4
VG
307 }
308
e43473b7
VG
309 return tg;
310}
311
312static struct throtl_grp *throtl_rb_first(struct throtl_rb_root *root)
313{
314 /* Service tree is empty */
315 if (!root->count)
316 return NULL;
317
318 if (!root->left)
319 root->left = rb_first(&root->rb);
320
321 if (root->left)
322 return rb_entry_tg(root->left);
323
324 return NULL;
325}
326
327static void rb_erase_init(struct rb_node *n, struct rb_root *root)
328{
329 rb_erase(n, root);
330 RB_CLEAR_NODE(n);
331}
332
333static void throtl_rb_erase(struct rb_node *n, struct throtl_rb_root *root)
334{
335 if (root->left == n)
336 root->left = NULL;
337 rb_erase_init(n, &root->rb);
338 --root->count;
339}
340
341static void update_min_dispatch_time(struct throtl_rb_root *st)
342{
343 struct throtl_grp *tg;
344
345 tg = throtl_rb_first(st);
346 if (!tg)
347 return;
348
349 st->min_disptime = tg->disptime;
350}
351
352static void
353tg_service_tree_add(struct throtl_rb_root *st, struct throtl_grp *tg)
354{
355 struct rb_node **node = &st->rb.rb_node;
356 struct rb_node *parent = NULL;
357 struct throtl_grp *__tg;
358 unsigned long key = tg->disptime;
359 int left = 1;
360
361 while (*node != NULL) {
362 parent = *node;
363 __tg = rb_entry_tg(parent);
364
365 if (time_before(key, __tg->disptime))
366 node = &parent->rb_left;
367 else {
368 node = &parent->rb_right;
369 left = 0;
370 }
371 }
372
373 if (left)
374 st->left = &tg->rb_node;
375
376 rb_link_node(&tg->rb_node, parent, node);
377 rb_insert_color(&tg->rb_node, &st->rb);
378}
379
380static void __throtl_enqueue_tg(struct throtl_data *td, struct throtl_grp *tg)
381{
382 struct throtl_rb_root *st = &td->tg_service_tree;
383
384 tg_service_tree_add(st, tg);
385 throtl_mark_tg_on_rr(tg);
386 st->count++;
387}
388
389static void throtl_enqueue_tg(struct throtl_data *td, struct throtl_grp *tg)
390{
391 if (!throtl_tg_on_rr(tg))
392 __throtl_enqueue_tg(td, tg);
393}
394
395static void __throtl_dequeue_tg(struct throtl_data *td, struct throtl_grp *tg)
396{
397 throtl_rb_erase(&tg->rb_node, &td->tg_service_tree);
398 throtl_clear_tg_on_rr(tg);
399}
400
401static void throtl_dequeue_tg(struct throtl_data *td, struct throtl_grp *tg)
402{
403 if (throtl_tg_on_rr(tg))
404 __throtl_dequeue_tg(td, tg);
405}
406
407static void throtl_schedule_next_dispatch(struct throtl_data *td)
408{
409 struct throtl_rb_root *st = &td->tg_service_tree;
410
411 /*
412 * If there are more bios pending, schedule more work.
413 */
414 if (!total_nr_queued(td))
415 return;
416
417 BUG_ON(!st->count);
418
419 update_min_dispatch_time(st);
420
421 if (time_before_eq(st->min_disptime, jiffies))
450adcbe 422 throtl_schedule_delayed_work(td, 0);
e43473b7 423 else
450adcbe 424 throtl_schedule_delayed_work(td, (st->min_disptime - jiffies));
e43473b7
VG
425}
426
427static inline void
428throtl_start_new_slice(struct throtl_data *td, struct throtl_grp *tg, bool rw)
429{
430 tg->bytes_disp[rw] = 0;
8e89d13f 431 tg->io_disp[rw] = 0;
e43473b7
VG
432 tg->slice_start[rw] = jiffies;
433 tg->slice_end[rw] = jiffies + throtl_slice;
434 throtl_log_tg(td, tg, "[%c] new slice start=%lu end=%lu jiffies=%lu",
435 rw == READ ? 'R' : 'W', tg->slice_start[rw],
436 tg->slice_end[rw], jiffies);
437}
438
d1ae8ffd
VG
439static inline void throtl_set_slice_end(struct throtl_data *td,
440 struct throtl_grp *tg, bool rw, unsigned long jiffy_end)
441{
442 tg->slice_end[rw] = roundup(jiffy_end, throtl_slice);
443}
444
e43473b7
VG
445static inline void throtl_extend_slice(struct throtl_data *td,
446 struct throtl_grp *tg, bool rw, unsigned long jiffy_end)
447{
448 tg->slice_end[rw] = roundup(jiffy_end, throtl_slice);
449 throtl_log_tg(td, tg, "[%c] extend slice start=%lu end=%lu jiffies=%lu",
450 rw == READ ? 'R' : 'W', tg->slice_start[rw],
451 tg->slice_end[rw], jiffies);
452}
453
454/* Determine if previously allocated or extended slice is complete or not */
455static bool
456throtl_slice_used(struct throtl_data *td, struct throtl_grp *tg, bool rw)
457{
458 if (time_in_range(jiffies, tg->slice_start[rw], tg->slice_end[rw]))
459 return 0;
460
461 return 1;
462}
463
464/* Trim the used slices and adjust slice start accordingly */
465static inline void
466throtl_trim_slice(struct throtl_data *td, struct throtl_grp *tg, bool rw)
467{
3aad5d3e
VG
468 unsigned long nr_slices, time_elapsed, io_trim;
469 u64 bytes_trim, tmp;
e43473b7
VG
470
471 BUG_ON(time_before(tg->slice_end[rw], tg->slice_start[rw]));
472
473 /*
474 * If bps are unlimited (-1), then time slice don't get
475 * renewed. Don't try to trim the slice if slice is used. A new
476 * slice will start when appropriate.
477 */
478 if (throtl_slice_used(td, tg, rw))
479 return;
480
d1ae8ffd
VG
481 /*
482 * A bio has been dispatched. Also adjust slice_end. It might happen
483 * that initially cgroup limit was very low resulting in high
484 * slice_end, but later limit was bumped up and bio was dispached
485 * sooner, then we need to reduce slice_end. A high bogus slice_end
486 * is bad because it does not allow new slice to start.
487 */
488
489 throtl_set_slice_end(td, tg, rw, jiffies + throtl_slice);
490
e43473b7
VG
491 time_elapsed = jiffies - tg->slice_start[rw];
492
493 nr_slices = time_elapsed / throtl_slice;
494
495 if (!nr_slices)
496 return;
3aad5d3e
VG
497 tmp = tg->bps[rw] * throtl_slice * nr_slices;
498 do_div(tmp, HZ);
499 bytes_trim = tmp;
e43473b7 500
8e89d13f 501 io_trim = (tg->iops[rw] * throtl_slice * nr_slices)/HZ;
e43473b7 502
8e89d13f 503 if (!bytes_trim && !io_trim)
e43473b7
VG
504 return;
505
506 if (tg->bytes_disp[rw] >= bytes_trim)
507 tg->bytes_disp[rw] -= bytes_trim;
508 else
509 tg->bytes_disp[rw] = 0;
510
8e89d13f
VG
511 if (tg->io_disp[rw] >= io_trim)
512 tg->io_disp[rw] -= io_trim;
513 else
514 tg->io_disp[rw] = 0;
515
e43473b7
VG
516 tg->slice_start[rw] += nr_slices * throtl_slice;
517
3aad5d3e 518 throtl_log_tg(td, tg, "[%c] trim slice nr=%lu bytes=%llu io=%lu"
e43473b7 519 " start=%lu end=%lu jiffies=%lu",
8e89d13f 520 rw == READ ? 'R' : 'W', nr_slices, bytes_trim, io_trim,
e43473b7
VG
521 tg->slice_start[rw], tg->slice_end[rw], jiffies);
522}
523
8e89d13f
VG
524static bool tg_with_in_iops_limit(struct throtl_data *td, struct throtl_grp *tg,
525 struct bio *bio, unsigned long *wait)
e43473b7
VG
526{
527 bool rw = bio_data_dir(bio);
8e89d13f 528 unsigned int io_allowed;
e43473b7 529 unsigned long jiffy_elapsed, jiffy_wait, jiffy_elapsed_rnd;
c49c06e4 530 u64 tmp;
e43473b7 531
8e89d13f 532 jiffy_elapsed = jiffy_elapsed_rnd = jiffies - tg->slice_start[rw];
e43473b7 533
8e89d13f
VG
534 /* Slice has just started. Consider one slice interval */
535 if (!jiffy_elapsed)
536 jiffy_elapsed_rnd = throtl_slice;
537
538 jiffy_elapsed_rnd = roundup(jiffy_elapsed_rnd, throtl_slice);
539
c49c06e4
VG
540 /*
541 * jiffy_elapsed_rnd should not be a big value as minimum iops can be
542 * 1 then at max jiffy elapsed should be equivalent of 1 second as we
543 * will allow dispatch after 1 second and after that slice should
544 * have been trimmed.
545 */
546
547 tmp = (u64)tg->iops[rw] * jiffy_elapsed_rnd;
548 do_div(tmp, HZ);
549
550 if (tmp > UINT_MAX)
551 io_allowed = UINT_MAX;
552 else
553 io_allowed = tmp;
8e89d13f
VG
554
555 if (tg->io_disp[rw] + 1 <= io_allowed) {
e43473b7
VG
556 if (wait)
557 *wait = 0;
558 return 1;
559 }
560
8e89d13f
VG
561 /* Calc approx time to dispatch */
562 jiffy_wait = ((tg->io_disp[rw] + 1) * HZ)/tg->iops[rw] + 1;
563
564 if (jiffy_wait > jiffy_elapsed)
565 jiffy_wait = jiffy_wait - jiffy_elapsed;
566 else
567 jiffy_wait = 1;
568
569 if (wait)
570 *wait = jiffy_wait;
571 return 0;
572}
573
574static bool tg_with_in_bps_limit(struct throtl_data *td, struct throtl_grp *tg,
575 struct bio *bio, unsigned long *wait)
576{
577 bool rw = bio_data_dir(bio);
3aad5d3e 578 u64 bytes_allowed, extra_bytes, tmp;
8e89d13f 579 unsigned long jiffy_elapsed, jiffy_wait, jiffy_elapsed_rnd;
e43473b7
VG
580
581 jiffy_elapsed = jiffy_elapsed_rnd = jiffies - tg->slice_start[rw];
582
583 /* Slice has just started. Consider one slice interval */
584 if (!jiffy_elapsed)
585 jiffy_elapsed_rnd = throtl_slice;
586
587 jiffy_elapsed_rnd = roundup(jiffy_elapsed_rnd, throtl_slice);
588
5e901a2b
VG
589 tmp = tg->bps[rw] * jiffy_elapsed_rnd;
590 do_div(tmp, HZ);
3aad5d3e 591 bytes_allowed = tmp;
e43473b7
VG
592
593 if (tg->bytes_disp[rw] + bio->bi_size <= bytes_allowed) {
594 if (wait)
595 *wait = 0;
596 return 1;
597 }
598
599 /* Calc approx time to dispatch */
600 extra_bytes = tg->bytes_disp[rw] + bio->bi_size - bytes_allowed;
601 jiffy_wait = div64_u64(extra_bytes * HZ, tg->bps[rw]);
602
603 if (!jiffy_wait)
604 jiffy_wait = 1;
605
606 /*
607 * This wait time is without taking into consideration the rounding
608 * up we did. Add that time also.
609 */
610 jiffy_wait = jiffy_wait + (jiffy_elapsed_rnd - jiffy_elapsed);
e43473b7
VG
611 if (wait)
612 *wait = jiffy_wait;
8e89d13f
VG
613 return 0;
614}
615
af75cd3c
VG
616static bool tg_no_rule_group(struct throtl_grp *tg, bool rw) {
617 if (tg->bps[rw] == -1 && tg->iops[rw] == -1)
618 return 1;
619 return 0;
620}
621
8e89d13f
VG
622/*
623 * Returns whether one can dispatch a bio or not. Also returns approx number
624 * of jiffies to wait before this bio is with-in IO rate and can be dispatched
625 */
626static bool tg_may_dispatch(struct throtl_data *td, struct throtl_grp *tg,
627 struct bio *bio, unsigned long *wait)
628{
629 bool rw = bio_data_dir(bio);
630 unsigned long bps_wait = 0, iops_wait = 0, max_wait = 0;
631
632 /*
633 * Currently whole state machine of group depends on first bio
634 * queued in the group bio list. So one should not be calling
635 * this function with a different bio if there are other bios
636 * queued.
637 */
638 BUG_ON(tg->nr_queued[rw] && bio != bio_list_peek(&tg->bio_lists[rw]));
e43473b7 639
8e89d13f
VG
640 /* If tg->bps = -1, then BW is unlimited */
641 if (tg->bps[rw] == -1 && tg->iops[rw] == -1) {
642 if (wait)
643 *wait = 0;
644 return 1;
645 }
646
647 /*
648 * If previous slice expired, start a new one otherwise renew/extend
649 * existing slice to make sure it is at least throtl_slice interval
650 * long since now.
651 */
652 if (throtl_slice_used(td, tg, rw))
653 throtl_start_new_slice(td, tg, rw);
654 else {
655 if (time_before(tg->slice_end[rw], jiffies + throtl_slice))
656 throtl_extend_slice(td, tg, rw, jiffies + throtl_slice);
657 }
658
659 if (tg_with_in_bps_limit(td, tg, bio, &bps_wait)
660 && tg_with_in_iops_limit(td, tg, bio, &iops_wait)) {
661 if (wait)
662 *wait = 0;
663 return 1;
664 }
665
666 max_wait = max(bps_wait, iops_wait);
667
668 if (wait)
669 *wait = max_wait;
670
671 if (time_before(tg->slice_end[rw], jiffies + max_wait))
672 throtl_extend_slice(td, tg, rw, jiffies + max_wait);
e43473b7
VG
673
674 return 0;
675}
676
3c798398 677static void throtl_update_dispatch_stats(struct blkcg_gq *blkg, u64 bytes,
629ed0b1
TH
678 int rw)
679{
8a3d2615
TH
680 struct throtl_grp *tg = blkg_to_tg(blkg);
681 struct tg_stats_cpu *stats_cpu;
629ed0b1
TH
682 unsigned long flags;
683
684 /* If per cpu stats are not allocated yet, don't do any accounting. */
8a3d2615 685 if (tg->stats_cpu == NULL)
629ed0b1
TH
686 return;
687
688 /*
689 * Disabling interrupts to provide mutual exclusion between two
690 * writes on same cpu. It probably is not needed for 64bit. Not
691 * optimizing that case yet.
692 */
693 local_irq_save(flags);
694
8a3d2615 695 stats_cpu = this_cpu_ptr(tg->stats_cpu);
629ed0b1 696
629ed0b1
TH
697 blkg_rwstat_add(&stats_cpu->serviced, rw, 1);
698 blkg_rwstat_add(&stats_cpu->service_bytes, rw, bytes);
699
700 local_irq_restore(flags);
701}
702
e43473b7
VG
703static void throtl_charge_bio(struct throtl_grp *tg, struct bio *bio)
704{
705 bool rw = bio_data_dir(bio);
e43473b7
VG
706
707 /* Charge the bio to the group */
708 tg->bytes_disp[rw] += bio->bi_size;
8e89d13f 709 tg->io_disp[rw]++;
e43473b7 710
629ed0b1 711 throtl_update_dispatch_stats(tg_to_blkg(tg), bio->bi_size, bio->bi_rw);
e43473b7
VG
712}
713
714static void throtl_add_bio_tg(struct throtl_data *td, struct throtl_grp *tg,
715 struct bio *bio)
716{
717 bool rw = bio_data_dir(bio);
718
719 bio_list_add(&tg->bio_lists[rw], bio);
720 /* Take a bio reference on tg */
1adaf3dd 721 blkg_get(tg_to_blkg(tg));
e43473b7
VG
722 tg->nr_queued[rw]++;
723 td->nr_queued[rw]++;
724 throtl_enqueue_tg(td, tg);
725}
726
727static void tg_update_disptime(struct throtl_data *td, struct throtl_grp *tg)
728{
729 unsigned long read_wait = -1, write_wait = -1, min_wait = -1, disptime;
730 struct bio *bio;
731
732 if ((bio = bio_list_peek(&tg->bio_lists[READ])))
733 tg_may_dispatch(td, tg, bio, &read_wait);
734
735 if ((bio = bio_list_peek(&tg->bio_lists[WRITE])))
736 tg_may_dispatch(td, tg, bio, &write_wait);
737
738 min_wait = min(read_wait, write_wait);
739 disptime = jiffies + min_wait;
740
e43473b7
VG
741 /* Update dispatch time */
742 throtl_dequeue_tg(td, tg);
743 tg->disptime = disptime;
744 throtl_enqueue_tg(td, tg);
745}
746
747static void tg_dispatch_one_bio(struct throtl_data *td, struct throtl_grp *tg,
748 bool rw, struct bio_list *bl)
749{
750 struct bio *bio;
751
752 bio = bio_list_pop(&tg->bio_lists[rw]);
753 tg->nr_queued[rw]--;
1adaf3dd
TH
754 /* Drop bio reference on blkg */
755 blkg_put(tg_to_blkg(tg));
e43473b7
VG
756
757 BUG_ON(td->nr_queued[rw] <= 0);
758 td->nr_queued[rw]--;
759
760 throtl_charge_bio(tg, bio);
761 bio_list_add(bl, bio);
762 bio->bi_rw |= REQ_THROTTLED;
763
764 throtl_trim_slice(td, tg, rw);
765}
766
767static int throtl_dispatch_tg(struct throtl_data *td, struct throtl_grp *tg,
768 struct bio_list *bl)
769{
770 unsigned int nr_reads = 0, nr_writes = 0;
771 unsigned int max_nr_reads = throtl_grp_quantum*3/4;
c2f6805d 772 unsigned int max_nr_writes = throtl_grp_quantum - max_nr_reads;
e43473b7
VG
773 struct bio *bio;
774
775 /* Try to dispatch 75% READS and 25% WRITES */
776
777 while ((bio = bio_list_peek(&tg->bio_lists[READ]))
778 && tg_may_dispatch(td, tg, bio, NULL)) {
779
780 tg_dispatch_one_bio(td, tg, bio_data_dir(bio), bl);
781 nr_reads++;
782
783 if (nr_reads >= max_nr_reads)
784 break;
785 }
786
787 while ((bio = bio_list_peek(&tg->bio_lists[WRITE]))
788 && tg_may_dispatch(td, tg, bio, NULL)) {
789
790 tg_dispatch_one_bio(td, tg, bio_data_dir(bio), bl);
791 nr_writes++;
792
793 if (nr_writes >= max_nr_writes)
794 break;
795 }
796
797 return nr_reads + nr_writes;
798}
799
800static int throtl_select_dispatch(struct throtl_data *td, struct bio_list *bl)
801{
802 unsigned int nr_disp = 0;
803 struct throtl_grp *tg;
804 struct throtl_rb_root *st = &td->tg_service_tree;
805
806 while (1) {
807 tg = throtl_rb_first(st);
808
809 if (!tg)
810 break;
811
812 if (time_before(jiffies, tg->disptime))
813 break;
814
815 throtl_dequeue_tg(td, tg);
816
817 nr_disp += throtl_dispatch_tg(td, tg, bl);
818
2db6314c 819 if (tg->nr_queued[0] || tg->nr_queued[1])
e43473b7 820 tg_update_disptime(td, tg);
e43473b7
VG
821
822 if (nr_disp >= throtl_quantum)
823 break;
824 }
825
826 return nr_disp;
827}
828
fe071437
VG
829static void throtl_process_limit_change(struct throtl_data *td)
830{
4eef3049 831 struct request_queue *q = td->queue;
3c798398 832 struct blkcg_gq *blkg, *n;
fe071437 833
de701c74 834 if (!td->limits_changed)
fe071437
VG
835 return;
836
de701c74 837 xchg(&td->limits_changed, false);
fe071437 838
de701c74 839 throtl_log(td, "limits changed");
fe071437 840
e8989fae 841 list_for_each_entry_safe(blkg, n, &q->blkg_list, q_node) {
4eef3049
TH
842 struct throtl_grp *tg = blkg_to_tg(blkg);
843
de701c74
VG
844 if (!tg->limits_changed)
845 continue;
846
847 if (!xchg(&tg->limits_changed, false))
848 continue;
849
850 throtl_log_tg(td, tg, "limit change rbps=%llu wbps=%llu"
851 " riops=%u wiops=%u", tg->bps[READ], tg->bps[WRITE],
852 tg->iops[READ], tg->iops[WRITE]);
853
04521db0
VG
854 /*
855 * Restart the slices for both READ and WRITES. It
856 * might happen that a group's limit are dropped
857 * suddenly and we don't want to account recently
858 * dispatched IO with new low rate
859 */
860 throtl_start_new_slice(td, tg, 0);
861 throtl_start_new_slice(td, tg, 1);
862
de701c74 863 if (throtl_tg_on_rr(tg))
fe071437 864 tg_update_disptime(td, tg);
fe071437 865 }
fe071437
VG
866}
867
e43473b7
VG
868/* Dispatch throttled bios. Should be called without queue lock held. */
869static int throtl_dispatch(struct request_queue *q)
870{
871 struct throtl_data *td = q->td;
872 unsigned int nr_disp = 0;
873 struct bio_list bio_list_on_stack;
874 struct bio *bio;
69d60eb9 875 struct blk_plug plug;
e43473b7
VG
876
877 spin_lock_irq(q->queue_lock);
878
fe071437
VG
879 throtl_process_limit_change(td);
880
e43473b7
VG
881 if (!total_nr_queued(td))
882 goto out;
883
884 bio_list_init(&bio_list_on_stack);
885
d2f31a5f 886 throtl_log(td, "dispatch nr_queued=%u read=%u write=%u",
e43473b7
VG
887 total_nr_queued(td), td->nr_queued[READ],
888 td->nr_queued[WRITE]);
889
890 nr_disp = throtl_select_dispatch(td, &bio_list_on_stack);
891
892 if (nr_disp)
893 throtl_log(td, "bios disp=%u", nr_disp);
894
895 throtl_schedule_next_dispatch(td);
896out:
897 spin_unlock_irq(q->queue_lock);
898
899 /*
900 * If we dispatched some requests, unplug the queue to make sure
901 * immediate dispatch
902 */
903 if (nr_disp) {
69d60eb9 904 blk_start_plug(&plug);
e43473b7
VG
905 while((bio = bio_list_pop(&bio_list_on_stack)))
906 generic_make_request(bio);
69d60eb9 907 blk_finish_plug(&plug);
e43473b7
VG
908 }
909 return nr_disp;
910}
911
912void blk_throtl_work(struct work_struct *work)
913{
914 struct throtl_data *td = container_of(work, struct throtl_data,
915 throtl_work.work);
916 struct request_queue *q = td->queue;
917
918 throtl_dispatch(q);
919}
920
921/* Call with queue lock held */
450adcbe
VG
922static void
923throtl_schedule_delayed_work(struct throtl_data *td, unsigned long delay)
e43473b7
VG
924{
925
e43473b7
VG
926 struct delayed_work *dwork = &td->throtl_work;
927
04521db0 928 /* schedule work if limits changed even if no bio is queued */
d2f31a5f 929 if (total_nr_queued(td) || td->limits_changed) {
e7c2f967 930 mod_delayed_work(kthrotld_workqueue, dwork, delay);
e43473b7
VG
931 throtl_log(td, "schedule work. delay=%lu jiffies=%lu",
932 delay, jiffies);
933 }
934}
e43473b7 935
f95a04af
TH
936static u64 tg_prfill_cpu_rwstat(struct seq_file *sf,
937 struct blkg_policy_data *pd, int off)
41b38b6d 938{
f95a04af 939 struct throtl_grp *tg = pd_to_tg(pd);
41b38b6d
TH
940 struct blkg_rwstat rwstat = { }, tmp;
941 int i, cpu;
942
943 for_each_possible_cpu(cpu) {
8a3d2615 944 struct tg_stats_cpu *sc = per_cpu_ptr(tg->stats_cpu, cpu);
41b38b6d
TH
945
946 tmp = blkg_rwstat_read((void *)sc + off);
947 for (i = 0; i < BLKG_RWSTAT_NR; i++)
948 rwstat.cnt[i] += tmp.cnt[i];
949 }
950
f95a04af 951 return __blkg_prfill_rwstat(sf, pd, &rwstat);
41b38b6d
TH
952}
953
8a3d2615
TH
954static int tg_print_cpu_rwstat(struct cgroup *cgrp, struct cftype *cft,
955 struct seq_file *sf)
41b38b6d 956{
3c798398 957 struct blkcg *blkcg = cgroup_to_blkcg(cgrp);
41b38b6d 958
3c798398 959 blkcg_print_blkgs(sf, blkcg, tg_prfill_cpu_rwstat, &blkcg_policy_throtl,
5bc4afb1 960 cft->private, true);
41b38b6d
TH
961 return 0;
962}
963
f95a04af
TH
964static u64 tg_prfill_conf_u64(struct seq_file *sf, struct blkg_policy_data *pd,
965 int off)
60c2bc2d 966{
f95a04af
TH
967 struct throtl_grp *tg = pd_to_tg(pd);
968 u64 v = *(u64 *)((void *)tg + off);
60c2bc2d 969
af133ceb 970 if (v == -1)
60c2bc2d 971 return 0;
f95a04af 972 return __blkg_prfill_u64(sf, pd, v);
60c2bc2d
TH
973}
974
f95a04af
TH
975static u64 tg_prfill_conf_uint(struct seq_file *sf, struct blkg_policy_data *pd,
976 int off)
e43473b7 977{
f95a04af
TH
978 struct throtl_grp *tg = pd_to_tg(pd);
979 unsigned int v = *(unsigned int *)((void *)tg + off);
fe071437 980
af133ceb
TH
981 if (v == -1)
982 return 0;
f95a04af 983 return __blkg_prfill_u64(sf, pd, v);
e43473b7
VG
984}
985
af133ceb
TH
986static int tg_print_conf_u64(struct cgroup *cgrp, struct cftype *cft,
987 struct seq_file *sf)
8e89d13f 988{
3c798398
TH
989 blkcg_print_blkgs(sf, cgroup_to_blkcg(cgrp), tg_prfill_conf_u64,
990 &blkcg_policy_throtl, cft->private, false);
af133ceb 991 return 0;
8e89d13f
VG
992}
993
af133ceb
TH
994static int tg_print_conf_uint(struct cgroup *cgrp, struct cftype *cft,
995 struct seq_file *sf)
8e89d13f 996{
3c798398
TH
997 blkcg_print_blkgs(sf, cgroup_to_blkcg(cgrp), tg_prfill_conf_uint,
998 &blkcg_policy_throtl, cft->private, false);
af133ceb 999 return 0;
60c2bc2d
TH
1000}
1001
af133ceb
TH
1002static int tg_set_conf(struct cgroup *cgrp, struct cftype *cft, const char *buf,
1003 bool is_u64)
60c2bc2d 1004{
3c798398 1005 struct blkcg *blkcg = cgroup_to_blkcg(cgrp);
60c2bc2d 1006 struct blkg_conf_ctx ctx;
af133ceb 1007 struct throtl_grp *tg;
a2b1693b 1008 struct throtl_data *td;
60c2bc2d
TH
1009 int ret;
1010
3c798398 1011 ret = blkg_conf_prep(blkcg, &blkcg_policy_throtl, buf, &ctx);
60c2bc2d
TH
1012 if (ret)
1013 return ret;
1014
af133ceb 1015 tg = blkg_to_tg(ctx.blkg);
a2b1693b 1016 td = ctx.blkg->q->td;
af133ceb 1017
a2b1693b
TH
1018 if (!ctx.v)
1019 ctx.v = -1;
af133ceb 1020
a2b1693b
TH
1021 if (is_u64)
1022 *(u64 *)((void *)tg + cft->private) = ctx.v;
1023 else
1024 *(unsigned int *)((void *)tg + cft->private) = ctx.v;
af133ceb 1025
a2b1693b
TH
1026 /* XXX: we don't need the following deferred processing */
1027 xchg(&tg->limits_changed, true);
1028 xchg(&td->limits_changed, true);
1029 throtl_schedule_delayed_work(td, 0);
60c2bc2d
TH
1030
1031 blkg_conf_finish(&ctx);
a2b1693b 1032 return 0;
8e89d13f
VG
1033}
1034
af133ceb
TH
1035static int tg_set_conf_u64(struct cgroup *cgrp, struct cftype *cft,
1036 const char *buf)
60c2bc2d 1037{
af133ceb 1038 return tg_set_conf(cgrp, cft, buf, true);
60c2bc2d
TH
1039}
1040
af133ceb
TH
1041static int tg_set_conf_uint(struct cgroup *cgrp, struct cftype *cft,
1042 const char *buf)
60c2bc2d 1043{
af133ceb 1044 return tg_set_conf(cgrp, cft, buf, false);
60c2bc2d
TH
1045}
1046
1047static struct cftype throtl_files[] = {
1048 {
1049 .name = "throttle.read_bps_device",
af133ceb
TH
1050 .private = offsetof(struct throtl_grp, bps[READ]),
1051 .read_seq_string = tg_print_conf_u64,
1052 .write_string = tg_set_conf_u64,
60c2bc2d
TH
1053 .max_write_len = 256,
1054 },
1055 {
1056 .name = "throttle.write_bps_device",
af133ceb
TH
1057 .private = offsetof(struct throtl_grp, bps[WRITE]),
1058 .read_seq_string = tg_print_conf_u64,
1059 .write_string = tg_set_conf_u64,
60c2bc2d
TH
1060 .max_write_len = 256,
1061 },
1062 {
1063 .name = "throttle.read_iops_device",
af133ceb
TH
1064 .private = offsetof(struct throtl_grp, iops[READ]),
1065 .read_seq_string = tg_print_conf_uint,
1066 .write_string = tg_set_conf_uint,
60c2bc2d
TH
1067 .max_write_len = 256,
1068 },
1069 {
1070 .name = "throttle.write_iops_device",
af133ceb
TH
1071 .private = offsetof(struct throtl_grp, iops[WRITE]),
1072 .read_seq_string = tg_print_conf_uint,
1073 .write_string = tg_set_conf_uint,
60c2bc2d
TH
1074 .max_write_len = 256,
1075 },
1076 {
1077 .name = "throttle.io_service_bytes",
5bc4afb1 1078 .private = offsetof(struct tg_stats_cpu, service_bytes),
8a3d2615 1079 .read_seq_string = tg_print_cpu_rwstat,
60c2bc2d
TH
1080 },
1081 {
1082 .name = "throttle.io_serviced",
5bc4afb1 1083 .private = offsetof(struct tg_stats_cpu, serviced),
8a3d2615 1084 .read_seq_string = tg_print_cpu_rwstat,
60c2bc2d
TH
1085 },
1086 { } /* terminate */
1087};
1088
da527770 1089static void throtl_shutdown_wq(struct request_queue *q)
e43473b7
VG
1090{
1091 struct throtl_data *td = q->td;
1092
1093 cancel_delayed_work_sync(&td->throtl_work);
1094}
1095
3c798398 1096static struct blkcg_policy blkcg_policy_throtl = {
f9fcc2d3
TH
1097 .pd_size = sizeof(struct throtl_grp),
1098 .cftypes = throtl_files,
1099
1100 .pd_init_fn = throtl_pd_init,
1101 .pd_exit_fn = throtl_pd_exit,
1102 .pd_reset_stats_fn = throtl_pd_reset_stats,
e43473b7
VG
1103};
1104
bc16a4f9 1105bool blk_throtl_bio(struct request_queue *q, struct bio *bio)
e43473b7
VG
1106{
1107 struct throtl_data *td = q->td;
1108 struct throtl_grp *tg;
e43473b7 1109 bool rw = bio_data_dir(bio), update_disptime = true;
3c798398 1110 struct blkcg *blkcg;
bc16a4f9 1111 bool throttled = false;
e43473b7
VG
1112
1113 if (bio->bi_rw & REQ_THROTTLED) {
1114 bio->bi_rw &= ~REQ_THROTTLED;
bc16a4f9 1115 goto out;
e43473b7
VG
1116 }
1117
af75cd3c
VG
1118 /*
1119 * A throtl_grp pointer retrieved under rcu can be used to access
1120 * basic fields like stats and io rates. If a group has no rules,
1121 * just update the dispatch stats in lockless manner and return.
1122 */
af75cd3c 1123 rcu_read_lock();
3c798398 1124 blkcg = bio_blkcg(bio);
cd1604fa 1125 tg = throtl_lookup_tg(td, blkcg);
af75cd3c 1126 if (tg) {
af75cd3c 1127 if (tg_no_rule_group(tg, rw)) {
629ed0b1
TH
1128 throtl_update_dispatch_stats(tg_to_blkg(tg),
1129 bio->bi_size, bio->bi_rw);
2a7f1244 1130 goto out_unlock_rcu;
af75cd3c
VG
1131 }
1132 }
af75cd3c
VG
1133
1134 /*
1135 * Either group has not been allocated yet or it is not an unlimited
1136 * IO group
1137 */
e43473b7 1138 spin_lock_irq(q->queue_lock);
cd1604fa 1139 tg = throtl_lookup_create_tg(td, blkcg);
bc16a4f9
TH
1140 if (unlikely(!tg))
1141 goto out_unlock;
f469a7b4 1142
e43473b7
VG
1143 if (tg->nr_queued[rw]) {
1144 /*
1145 * There is already another bio queued in same dir. No
1146 * need to update dispatch time.
1147 */
231d704b 1148 update_disptime = false;
e43473b7 1149 goto queue_bio;
de701c74 1150
e43473b7
VG
1151 }
1152
1153 /* Bio is with-in rate limit of group */
1154 if (tg_may_dispatch(td, tg, bio, NULL)) {
1155 throtl_charge_bio(tg, bio);
04521db0
VG
1156
1157 /*
1158 * We need to trim slice even when bios are not being queued
1159 * otherwise it might happen that a bio is not queued for
1160 * a long time and slice keeps on extending and trim is not
1161 * called for a long time. Now if limits are reduced suddenly
1162 * we take into account all the IO dispatched so far at new
1163 * low rate and * newly queued IO gets a really long dispatch
1164 * time.
1165 *
1166 * So keep on trimming slice even if bio is not queued.
1167 */
1168 throtl_trim_slice(td, tg, rw);
bc16a4f9 1169 goto out_unlock;
e43473b7
VG
1170 }
1171
1172queue_bio:
fd16d263 1173 throtl_log_tg(td, tg, "[%c] bio. bdisp=%llu sz=%u bps=%llu"
8e89d13f
VG
1174 " iodisp=%u iops=%u queued=%d/%d",
1175 rw == READ ? 'R' : 'W',
e43473b7 1176 tg->bytes_disp[rw], bio->bi_size, tg->bps[rw],
8e89d13f 1177 tg->io_disp[rw], tg->iops[rw],
e43473b7
VG
1178 tg->nr_queued[READ], tg->nr_queued[WRITE]);
1179
671058fb 1180 bio_associate_current(bio);
e43473b7 1181 throtl_add_bio_tg(q->td, tg, bio);
bc16a4f9 1182 throttled = true;
e43473b7
VG
1183
1184 if (update_disptime) {
1185 tg_update_disptime(td, tg);
1186 throtl_schedule_next_dispatch(td);
1187 }
1188
bc16a4f9 1189out_unlock:
e43473b7 1190 spin_unlock_irq(q->queue_lock);
2a7f1244
TH
1191out_unlock_rcu:
1192 rcu_read_unlock();
bc16a4f9
TH
1193out:
1194 return throttled;
e43473b7
VG
1195}
1196
c9a929dd
TH
1197/**
1198 * blk_throtl_drain - drain throttled bios
1199 * @q: request_queue to drain throttled bios for
1200 *
1201 * Dispatch all currently throttled bios on @q through ->make_request_fn().
1202 */
1203void blk_throtl_drain(struct request_queue *q)
1204 __releases(q->queue_lock) __acquires(q->queue_lock)
1205{
1206 struct throtl_data *td = q->td;
1207 struct throtl_rb_root *st = &td->tg_service_tree;
1208 struct throtl_grp *tg;
1209 struct bio_list bl;
1210 struct bio *bio;
1211
8bcb6c7d 1212 queue_lockdep_assert_held(q);
c9a929dd
TH
1213
1214 bio_list_init(&bl);
1215
1216 while ((tg = throtl_rb_first(st))) {
1217 throtl_dequeue_tg(td, tg);
1218
1219 while ((bio = bio_list_peek(&tg->bio_lists[READ])))
1220 tg_dispatch_one_bio(td, tg, bio_data_dir(bio), &bl);
1221 while ((bio = bio_list_peek(&tg->bio_lists[WRITE])))
1222 tg_dispatch_one_bio(td, tg, bio_data_dir(bio), &bl);
1223 }
1224 spin_unlock_irq(q->queue_lock);
1225
1226 while ((bio = bio_list_pop(&bl)))
1227 generic_make_request(bio);
1228
1229 spin_lock_irq(q->queue_lock);
1230}
1231
e43473b7
VG
1232int blk_throtl_init(struct request_queue *q)
1233{
1234 struct throtl_data *td;
a2b1693b 1235 int ret;
e43473b7
VG
1236
1237 td = kzalloc_node(sizeof(*td), GFP_KERNEL, q->node);
1238 if (!td)
1239 return -ENOMEM;
1240
e43473b7 1241 td->tg_service_tree = THROTL_RB_ROOT;
de701c74 1242 td->limits_changed = false;
a29a171e 1243 INIT_DELAYED_WORK(&td->throtl_work, blk_throtl_work);
e43473b7 1244
cd1604fa 1245 q->td = td;
29b12589 1246 td->queue = q;
02977e4a 1247
a2b1693b 1248 /* activate policy */
3c798398 1249 ret = blkcg_activate_policy(q, &blkcg_policy_throtl);
a2b1693b 1250 if (ret)
f51b802c 1251 kfree(td);
a2b1693b 1252 return ret;
e43473b7
VG
1253}
1254
1255void blk_throtl_exit(struct request_queue *q)
1256{
c875f4d0 1257 BUG_ON(!q->td);
da527770 1258 throtl_shutdown_wq(q);
3c798398 1259 blkcg_deactivate_policy(q, &blkcg_policy_throtl);
c9a929dd 1260 kfree(q->td);
e43473b7
VG
1261}
1262
1263static int __init throtl_init(void)
1264{
450adcbe
VG
1265 kthrotld_workqueue = alloc_workqueue("kthrotld", WQ_MEM_RECLAIM, 0);
1266 if (!kthrotld_workqueue)
1267 panic("Failed to create kthrotld\n");
1268
3c798398 1269 return blkcg_policy_register(&blkcg_policy_throtl);
e43473b7
VG
1270}
1271
1272module_init(throtl_init);