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d7067512
JB
1/*
2 * Block rq-qos base io controller
3 *
4 * This works similar to wbt with a few exceptions
5 *
6 * - It's bio based, so the latency covers the whole block layer in addition to
7 * the actual io.
8 * - We will throttle all IO that comes in here if we need to.
9 * - We use the mean latency over the 100ms window. This is because writes can
10 * be particularly fast, which could give us a false sense of the impact of
11 * other workloads on our protected workload.
a284390b
JB
12 * - By default there's no throttling, we set the queue_depth to UINT_MAX so
13 * that we can have as many outstanding bio's as we're allowed to. Only at
d7067512
JB
14 * throttle time do we pay attention to the actual queue depth.
15 *
16 * The hierarchy works like the cpu controller does, we track the latency at
17 * every configured node, and each configured node has it's own independent
18 * queue depth. This means that we only care about our latency targets at the
19 * peer level. Some group at the bottom of the hierarchy isn't going to affect
20 * a group at the end of some other path if we're only configred at leaf level.
21 *
22 * Consider the following
23 *
24 * root blkg
25 * / \
26 * fast (target=5ms) slow (target=10ms)
27 * / \ / \
28 * a b normal(15ms) unloved
29 *
30 * "a" and "b" have no target, but their combined io under "fast" cannot exceed
31 * an average latency of 5ms. If it does then we will throttle the "slow"
32 * group. In the case of "normal", if it exceeds its 15ms target, we will
33 * throttle "unloved", but nobody else.
34 *
35 * In this example "fast", "slow", and "normal" will be the only groups actually
36 * accounting their io latencies. We have to walk up the heirarchy to the root
37 * on every submit and complete so we can do the appropriate stat recording and
38 * adjust the queue depth of ourselves if needed.
39 *
40 * There are 2 ways we throttle IO.
41 *
42 * 1) Queue depth throttling. As we throttle down we will adjust the maximum
43 * number of IO's we're allowed to have in flight. This starts at (u64)-1 down
44 * to 1. If the group is only ever submitting IO for itself then this is the
45 * only way we throttle.
46 *
47 * 2) Induced delay throttling. This is for the case that a group is generating
48 * IO that has to be issued by the root cg to avoid priority inversion. So think
49 * REQ_META or REQ_SWAP. If we are already at qd == 1 and we're getting a lot
50 * of work done for us on behalf of the root cg and are being asked to scale
51 * down more then we induce a latency at userspace return. We accumulate the
52 * total amount of time we need to be punished by doing
53 *
54 * total_time += min_lat_nsec - actual_io_completion
55 *
56 * and then at throttle time will do
57 *
58 * throttle_time = min(total_time, NSEC_PER_SEC)
59 *
60 * This induced delay will throttle back the activity that is generating the
61 * root cg issued io's, wethere that's some metadata intensive operation or the
62 * group is using so much memory that it is pushing us into swap.
63 *
64 * Copyright (C) 2018 Josef Bacik
65 */
66#include <linux/kernel.h>
67#include <linux/blk_types.h>
68#include <linux/backing-dev.h>
69#include <linux/module.h>
70#include <linux/timer.h>
71#include <linux/memcontrol.h>
c480bcf9 72#include <linux/sched/loadavg.h>
d7067512
JB
73#include <linux/sched/signal.h>
74#include <trace/events/block.h>
75#include "blk-rq-qos.h"
76#include "blk-stat.h"
77
78#define DEFAULT_SCALE_COOKIE 1000000U
79
80static struct blkcg_policy blkcg_policy_iolatency;
81struct iolatency_grp;
82
83struct blk_iolatency {
84 struct rq_qos rqos;
85 struct timer_list timer;
86 atomic_t enabled;
87};
88
89static inline struct blk_iolatency *BLKIOLATENCY(struct rq_qos *rqos)
90{
91 return container_of(rqos, struct blk_iolatency, rqos);
92}
93
94static inline bool blk_iolatency_enabled(struct blk_iolatency *blkiolat)
95{
96 return atomic_read(&blkiolat->enabled) > 0;
97}
98
99struct child_latency_info {
100 spinlock_t lock;
101
102 /* Last time we adjusted the scale of everybody. */
103 u64 last_scale_event;
104
105 /* The latency that we missed. */
106 u64 scale_lat;
107
108 /* Total io's from all of our children for the last summation. */
109 u64 nr_samples;
110
111 /* The guy who actually changed the latency numbers. */
112 struct iolatency_grp *scale_grp;
113
114 /* Cookie to tell if we need to scale up or down. */
115 atomic_t scale_cookie;
116};
117
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JB
118struct percentile_stats {
119 u64 total;
120 u64 missed;
121};
122
123struct latency_stat {
124 union {
125 struct percentile_stats ps;
126 struct blk_rq_stat rqs;
127 };
128};
129
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JB
130struct iolatency_grp {
131 struct blkg_policy_data pd;
1fa2840e 132 struct latency_stat __percpu *stats;
451bb7c3 133 struct latency_stat cur_stat;
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JB
134 struct blk_iolatency *blkiolat;
135 struct rq_depth rq_depth;
136 struct rq_wait rq_wait;
137 atomic64_t window_start;
138 atomic_t scale_cookie;
139 u64 min_lat_nsec;
140 u64 cur_win_nsec;
141
142 /* total running average of our io latency. */
c480bcf9 143 u64 lat_avg;
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JB
144
145 /* Our current number of IO's for the last summation. */
146 u64 nr_samples;
147
1fa2840e 148 bool ssd;
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149 struct child_latency_info child_lat;
150};
151
c480bcf9
DZF
152#define BLKIOLATENCY_MIN_WIN_SIZE (100 * NSEC_PER_MSEC)
153#define BLKIOLATENCY_MAX_WIN_SIZE NSEC_PER_SEC
154/*
155 * These are the constants used to fake the fixed-point moving average
156 * calculation just like load average. The call to CALC_LOAD folds
157 * (FIXED_1 (2048) - exp_factor) * new_sample into lat_avg. The sampling
158 * window size is bucketed to try to approximately calculate average
159 * latency such that 1/exp (decay rate) is [1 min, 2.5 min) when windows
160 * elapse immediately. Note, windows only elapse with IO activity. Idle
161 * periods extend the most recent window.
162 */
163#define BLKIOLATENCY_NR_EXP_FACTORS 5
164#define BLKIOLATENCY_EXP_BUCKET_SIZE (BLKIOLATENCY_MAX_WIN_SIZE / \
165 (BLKIOLATENCY_NR_EXP_FACTORS - 1))
166static const u64 iolatency_exp_factors[BLKIOLATENCY_NR_EXP_FACTORS] = {
167 2045, // exp(1/600) - 600 samples
168 2039, // exp(1/240) - 240 samples
169 2031, // exp(1/120) - 120 samples
170 2023, // exp(1/80) - 80 samples
171 2014, // exp(1/60) - 60 samples
172};
173
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JB
174static inline struct iolatency_grp *pd_to_lat(struct blkg_policy_data *pd)
175{
176 return pd ? container_of(pd, struct iolatency_grp, pd) : NULL;
177}
178
179static inline struct iolatency_grp *blkg_to_lat(struct blkcg_gq *blkg)
180{
181 return pd_to_lat(blkg_to_pd(blkg, &blkcg_policy_iolatency));
182}
183
184static inline struct blkcg_gq *lat_to_blkg(struct iolatency_grp *iolat)
185{
186 return pd_to_blkg(&iolat->pd);
187}
188
1fa2840e
JB
189static inline void latency_stat_init(struct iolatency_grp *iolat,
190 struct latency_stat *stat)
191{
192 if (iolat->ssd) {
193 stat->ps.total = 0;
194 stat->ps.missed = 0;
195 } else
196 blk_rq_stat_init(&stat->rqs);
197}
198
199static inline void latency_stat_sum(struct iolatency_grp *iolat,
200 struct latency_stat *sum,
201 struct latency_stat *stat)
202{
203 if (iolat->ssd) {
204 sum->ps.total += stat->ps.total;
205 sum->ps.missed += stat->ps.missed;
206 } else
207 blk_rq_stat_sum(&sum->rqs, &stat->rqs);
208}
209
210static inline void latency_stat_record_time(struct iolatency_grp *iolat,
211 u64 req_time)
212{
213 struct latency_stat *stat = get_cpu_ptr(iolat->stats);
214 if (iolat->ssd) {
215 if (req_time >= iolat->min_lat_nsec)
216 stat->ps.missed++;
217 stat->ps.total++;
218 } else
219 blk_rq_stat_add(&stat->rqs, req_time);
220 put_cpu_ptr(stat);
221}
222
223static inline bool latency_sum_ok(struct iolatency_grp *iolat,
224 struct latency_stat *stat)
225{
226 if (iolat->ssd) {
227 u64 thresh = div64_u64(stat->ps.total, 10);
228 thresh = max(thresh, 1ULL);
229 return stat->ps.missed < thresh;
230 }
231 return stat->rqs.mean <= iolat->min_lat_nsec;
232}
233
234static inline u64 latency_stat_samples(struct iolatency_grp *iolat,
235 struct latency_stat *stat)
236{
237 if (iolat->ssd)
238 return stat->ps.total;
239 return stat->rqs.nr_samples;
240}
241
242static inline void iolat_update_total_lat_avg(struct iolatency_grp *iolat,
243 struct latency_stat *stat)
244{
245 int exp_idx;
246
247 if (iolat->ssd)
248 return;
249
250 /*
251 * CALC_LOAD takes in a number stored in fixed point representation.
252 * Because we are using this for IO time in ns, the values stored
253 * are significantly larger than the FIXED_1 denominator (2048).
254 * Therefore, rounding errors in the calculation are negligible and
255 * can be ignored.
256 */
257 exp_idx = min_t(int, BLKIOLATENCY_NR_EXP_FACTORS - 1,
258 div64_u64(iolat->cur_win_nsec,
259 BLKIOLATENCY_EXP_BUCKET_SIZE));
260 CALC_LOAD(iolat->lat_avg, iolatency_exp_factors[exp_idx], stat->rqs.mean);
261}
262
d7067512
JB
263static inline bool iolatency_may_queue(struct iolatency_grp *iolat,
264 wait_queue_entry_t *wait,
265 bool first_block)
266{
267 struct rq_wait *rqw = &iolat->rq_wait;
268
269 if (first_block && waitqueue_active(&rqw->wait) &&
270 rqw->wait.head.next != &wait->entry)
271 return false;
272 return rq_wait_inc_below(rqw, iolat->rq_depth.max_depth);
273}
274
275static void __blkcg_iolatency_throttle(struct rq_qos *rqos,
276 struct iolatency_grp *iolat,
277 spinlock_t *lock, bool issue_as_root,
278 bool use_memdelay)
279 __releases(lock)
280 __acquires(lock)
281{
282 struct rq_wait *rqw = &iolat->rq_wait;
283 unsigned use_delay = atomic_read(&lat_to_blkg(iolat)->use_delay);
284 DEFINE_WAIT(wait);
285 bool first_block = true;
286
287 if (use_delay)
288 blkcg_schedule_throttle(rqos->q, use_memdelay);
289
290 /*
291 * To avoid priority inversions we want to just take a slot if we are
292 * issuing as root. If we're being killed off there's no point in
293 * delaying things, we may have been killed by OOM so throttling may
294 * make recovery take even longer, so just let the IO's through so the
295 * task can go away.
296 */
297 if (issue_as_root || fatal_signal_pending(current)) {
298 atomic_inc(&rqw->inflight);
299 return;
300 }
301
302 if (iolatency_may_queue(iolat, &wait, first_block))
303 return;
304
305 do {
306 prepare_to_wait_exclusive(&rqw->wait, &wait,
307 TASK_UNINTERRUPTIBLE);
308
309 if (iolatency_may_queue(iolat, &wait, first_block))
310 break;
311 first_block = false;
312
313 if (lock) {
314 spin_unlock_irq(lock);
315 io_schedule();
316 spin_lock_irq(lock);
317 } else {
318 io_schedule();
319 }
320 } while (1);
321
322 finish_wait(&rqw->wait, &wait);
323}
324
325#define SCALE_DOWN_FACTOR 2
326#define SCALE_UP_FACTOR 4
327
328static inline unsigned long scale_amount(unsigned long qd, bool up)
329{
330 return max(up ? qd >> SCALE_UP_FACTOR : qd >> SCALE_DOWN_FACTOR, 1UL);
331}
332
333/*
334 * We scale the qd down faster than we scale up, so we need to use this helper
335 * to adjust the scale_cookie accordingly so we don't prematurely get
336 * scale_cookie at DEFAULT_SCALE_COOKIE and unthrottle too much.
337 *
338 * Each group has their own local copy of the last scale cookie they saw, so if
339 * the global scale cookie goes up or down they know which way they need to go
340 * based on their last knowledge of it.
341 */
342static void scale_cookie_change(struct blk_iolatency *blkiolat,
343 struct child_latency_info *lat_info,
344 bool up)
345{
ff4cee08 346 unsigned long qd = blkiolat->rqos.q->nr_requests;
d7067512
JB
347 unsigned long scale = scale_amount(qd, up);
348 unsigned long old = atomic_read(&lat_info->scale_cookie);
349 unsigned long max_scale = qd << 1;
350 unsigned long diff = 0;
351
352 if (old < DEFAULT_SCALE_COOKIE)
353 diff = DEFAULT_SCALE_COOKIE - old;
354
355 if (up) {
356 if (scale + old > DEFAULT_SCALE_COOKIE)
357 atomic_set(&lat_info->scale_cookie,
358 DEFAULT_SCALE_COOKIE);
359 else if (diff > qd)
360 atomic_inc(&lat_info->scale_cookie);
361 else
362 atomic_add(scale, &lat_info->scale_cookie);
363 } else {
364 /*
365 * We don't want to dig a hole so deep that it takes us hours to
366 * dig out of it. Just enough that we don't throttle/unthrottle
367 * with jagged workloads but can still unthrottle once pressure
368 * has sufficiently dissipated.
369 */
370 if (diff > qd) {
371 if (diff < max_scale)
372 atomic_dec(&lat_info->scale_cookie);
373 } else {
374 atomic_sub(scale, &lat_info->scale_cookie);
375 }
376 }
377}
378
379/*
380 * Change the queue depth of the iolatency_grp. We add/subtract 1/16th of the
381 * queue depth at a time so we don't get wild swings and hopefully dial in to
382 * fairer distribution of the overall queue depth.
383 */
384static void scale_change(struct iolatency_grp *iolat, bool up)
385{
ff4cee08 386 unsigned long qd = iolat->blkiolat->rqos.q->nr_requests;
d7067512
JB
387 unsigned long scale = scale_amount(qd, up);
388 unsigned long old = iolat->rq_depth.max_depth;
d7067512
JB
389
390 if (old > qd)
391 old = qd;
392
393 if (up) {
394 if (old == 1 && blkcg_unuse_delay(lat_to_blkg(iolat)))
395 return;
396
397 if (old < qd) {
d7067512
JB
398 old += scale;
399 old = min(old, qd);
400 iolat->rq_depth.max_depth = old;
401 wake_up_all(&iolat->rq_wait.wait);
402 }
9f60511a 403 } else {
d7067512 404 old >>= 1;
d7067512
JB
405 iolat->rq_depth.max_depth = max(old, 1UL);
406 }
407}
408
409/* Check our parent and see if the scale cookie has changed. */
410static void check_scale_change(struct iolatency_grp *iolat)
411{
412 struct iolatency_grp *parent;
413 struct child_latency_info *lat_info;
414 unsigned int cur_cookie;
415 unsigned int our_cookie = atomic_read(&iolat->scale_cookie);
416 u64 scale_lat;
417 unsigned int old;
418 int direction = 0;
419
420 if (lat_to_blkg(iolat)->parent == NULL)
421 return;
422
423 parent = blkg_to_lat(lat_to_blkg(iolat)->parent);
424 if (!parent)
425 return;
426
427 lat_info = &parent->child_lat;
428 cur_cookie = atomic_read(&lat_info->scale_cookie);
429 scale_lat = READ_ONCE(lat_info->scale_lat);
430
431 if (cur_cookie < our_cookie)
432 direction = -1;
433 else if (cur_cookie > our_cookie)
434 direction = 1;
435 else
436 return;
437
438 old = atomic_cmpxchg(&iolat->scale_cookie, our_cookie, cur_cookie);
439
440 /* Somebody beat us to the punch, just bail. */
441 if (old != our_cookie)
442 return;
443
444 if (direction < 0 && iolat->min_lat_nsec) {
445 u64 samples_thresh;
446
447 if (!scale_lat || iolat->min_lat_nsec <= scale_lat)
448 return;
449
450 /*
451 * Sometimes high priority groups are their own worst enemy, so
452 * instead of taking it out on some poor other group that did 5%
453 * or less of the IO's for the last summation just skip this
454 * scale down event.
455 */
456 samples_thresh = lat_info->nr_samples * 5;
22ed8a93 457 samples_thresh = max(1ULL, div64_u64(samples_thresh, 100));
d7067512
JB
458 if (iolat->nr_samples <= samples_thresh)
459 return;
460 }
461
462 /* We're as low as we can go. */
463 if (iolat->rq_depth.max_depth == 1 && direction < 0) {
464 blkcg_use_delay(lat_to_blkg(iolat));
465 return;
466 }
467
468 /* We're back to the default cookie, unthrottle all the things. */
469 if (cur_cookie == DEFAULT_SCALE_COOKIE) {
470 blkcg_clear_delay(lat_to_blkg(iolat));
a284390b 471 iolat->rq_depth.max_depth = UINT_MAX;
d7067512
JB
472 wake_up_all(&iolat->rq_wait.wait);
473 return;
474 }
475
476 scale_change(iolat, direction > 0);
477}
478
479static void blkcg_iolatency_throttle(struct rq_qos *rqos, struct bio *bio,
480 spinlock_t *lock)
481{
482 struct blk_iolatency *blkiolat = BLKIOLATENCY(rqos);
a7b39b4e 483 struct blkcg_gq *blkg = bio->bi_blkg;
d7067512
JB
484 bool issue_as_root = bio_issue_as_root_blkg(bio);
485
486 if (!blk_iolatency_enabled(blkiolat))
487 return;
488
d7067512
JB
489 while (blkg && blkg->parent) {
490 struct iolatency_grp *iolat = blkg_to_lat(blkg);
491 if (!iolat) {
492 blkg = blkg->parent;
493 continue;
494 }
495
496 check_scale_change(iolat);
497 __blkcg_iolatency_throttle(rqos, iolat, lock, issue_as_root,
498 (bio->bi_opf & REQ_SWAP) == REQ_SWAP);
499 blkg = blkg->parent;
500 }
501 if (!timer_pending(&blkiolat->timer))
502 mod_timer(&blkiolat->timer, jiffies + HZ);
503}
504
505static void iolatency_record_time(struct iolatency_grp *iolat,
506 struct bio_issue *issue, u64 now,
507 bool issue_as_root)
508{
d7067512
JB
509 u64 start = bio_issue_time(issue);
510 u64 req_time;
511
71e9690b
JB
512 /*
513 * Have to do this so we are truncated to the correct time that our
514 * issue is truncated to.
515 */
516 now = __bio_issue_time(now);
517
d7067512
JB
518 if (now <= start)
519 return;
520
521 req_time = now - start;
522
523 /*
524 * We don't want to count issue_as_root bio's in the cgroups latency
525 * statistics as it could skew the numbers downwards.
526 */
a284390b 527 if (unlikely(issue_as_root && iolat->rq_depth.max_depth != UINT_MAX)) {
d7067512
JB
528 u64 sub = iolat->min_lat_nsec;
529 if (req_time < sub)
530 blkcg_add_delay(lat_to_blkg(iolat), now, sub - req_time);
531 return;
532 }
533
1fa2840e 534 latency_stat_record_time(iolat, req_time);
d7067512
JB
535}
536
537#define BLKIOLATENCY_MIN_ADJUST_TIME (500 * NSEC_PER_MSEC)
538#define BLKIOLATENCY_MIN_GOOD_SAMPLES 5
539
540static void iolatency_check_latencies(struct iolatency_grp *iolat, u64 now)
541{
542 struct blkcg_gq *blkg = lat_to_blkg(iolat);
543 struct iolatency_grp *parent;
544 struct child_latency_info *lat_info;
1fa2840e 545 struct latency_stat stat;
d7067512 546 unsigned long flags;
1fa2840e 547 int cpu;
d7067512 548
1fa2840e 549 latency_stat_init(iolat, &stat);
d7067512
JB
550 preempt_disable();
551 for_each_online_cpu(cpu) {
1fa2840e 552 struct latency_stat *s;
d7067512 553 s = per_cpu_ptr(iolat->stats, cpu);
1fa2840e
JB
554 latency_stat_sum(iolat, &stat, s);
555 latency_stat_init(iolat, s);
d7067512
JB
556 }
557 preempt_enable();
558
d7067512
JB
559 parent = blkg_to_lat(blkg->parent);
560 if (!parent)
561 return;
562
563 lat_info = &parent->child_lat;
564
1fa2840e 565 iolat_update_total_lat_avg(iolat, &stat);
d7067512
JB
566
567 /* Everything is ok and we don't need to adjust the scale. */
1fa2840e 568 if (latency_sum_ok(iolat, &stat) &&
d7067512
JB
569 atomic_read(&lat_info->scale_cookie) == DEFAULT_SCALE_COOKIE)
570 return;
571
572 /* Somebody beat us to the punch, just bail. */
573 spin_lock_irqsave(&lat_info->lock, flags);
451bb7c3
JB
574
575 latency_stat_sum(iolat, &iolat->cur_stat, &stat);
d7067512 576 lat_info->nr_samples -= iolat->nr_samples;
451bb7c3
JB
577 lat_info->nr_samples += latency_stat_samples(iolat, &iolat->cur_stat);
578 iolat->nr_samples = latency_stat_samples(iolat, &iolat->cur_stat);
d7067512
JB
579
580 if ((lat_info->last_scale_event >= now ||
451bb7c3 581 now - lat_info->last_scale_event < BLKIOLATENCY_MIN_ADJUST_TIME))
d7067512
JB
582 goto out;
583
451bb7c3
JB
584 if (latency_sum_ok(iolat, &iolat->cur_stat) &&
585 latency_sum_ok(iolat, &stat)) {
586 if (latency_stat_samples(iolat, &iolat->cur_stat) <
1fa2840e
JB
587 BLKIOLATENCY_MIN_GOOD_SAMPLES)
588 goto out;
d7067512
JB
589 if (lat_info->scale_grp == iolat) {
590 lat_info->last_scale_event = now;
591 scale_cookie_change(iolat->blkiolat, lat_info, true);
592 }
451bb7c3
JB
593 } else if (lat_info->scale_lat == 0 ||
594 lat_info->scale_lat >= iolat->min_lat_nsec) {
d7067512
JB
595 lat_info->last_scale_event = now;
596 if (!lat_info->scale_grp ||
597 lat_info->scale_lat > iolat->min_lat_nsec) {
598 WRITE_ONCE(lat_info->scale_lat, iolat->min_lat_nsec);
599 lat_info->scale_grp = iolat;
600 }
601 scale_cookie_change(iolat->blkiolat, lat_info, false);
602 }
451bb7c3 603 latency_stat_init(iolat, &iolat->cur_stat);
d7067512
JB
604out:
605 spin_unlock_irqrestore(&lat_info->lock, flags);
606}
607
608static void blkcg_iolatency_done_bio(struct rq_qos *rqos, struct bio *bio)
609{
610 struct blkcg_gq *blkg;
611 struct rq_wait *rqw;
612 struct iolatency_grp *iolat;
613 u64 window_start;
614 u64 now = ktime_to_ns(ktime_get());
615 bool issue_as_root = bio_issue_as_root_blkg(bio);
616 bool enabled = false;
617
618 blkg = bio->bi_blkg;
619 if (!blkg)
620 return;
621
622 iolat = blkg_to_lat(bio->bi_blkg);
623 if (!iolat)
624 return;
625
626 enabled = blk_iolatency_enabled(iolat->blkiolat);
627 while (blkg && blkg->parent) {
628 iolat = blkg_to_lat(blkg);
629 if (!iolat) {
630 blkg = blkg->parent;
631 continue;
632 }
633 rqw = &iolat->rq_wait;
634
635 atomic_dec(&rqw->inflight);
636 if (!enabled || iolat->min_lat_nsec == 0)
637 goto next;
638 iolatency_record_time(iolat, &bio->bi_issue, now,
639 issue_as_root);
640 window_start = atomic64_read(&iolat->window_start);
641 if (now > window_start &&
642 (now - window_start) >= iolat->cur_win_nsec) {
643 if (atomic64_cmpxchg(&iolat->window_start,
644 window_start, now) == window_start)
645 iolatency_check_latencies(iolat, now);
646 }
647next:
648 wake_up(&rqw->wait);
649 blkg = blkg->parent;
650 }
651}
652
653static void blkcg_iolatency_cleanup(struct rq_qos *rqos, struct bio *bio)
654{
655 struct blkcg_gq *blkg;
656
657 blkg = bio->bi_blkg;
658 while (blkg && blkg->parent) {
659 struct rq_wait *rqw;
660 struct iolatency_grp *iolat;
661
662 iolat = blkg_to_lat(blkg);
663 if (!iolat)
664 goto next;
665
666 rqw = &iolat->rq_wait;
667 atomic_dec(&rqw->inflight);
668 wake_up(&rqw->wait);
669next:
670 blkg = blkg->parent;
671 }
672}
673
674static void blkcg_iolatency_exit(struct rq_qos *rqos)
675{
676 struct blk_iolatency *blkiolat = BLKIOLATENCY(rqos);
677
678 del_timer_sync(&blkiolat->timer);
679 blkcg_deactivate_policy(rqos->q, &blkcg_policy_iolatency);
680 kfree(blkiolat);
681}
682
683static struct rq_qos_ops blkcg_iolatency_ops = {
684 .throttle = blkcg_iolatency_throttle,
685 .cleanup = blkcg_iolatency_cleanup,
686 .done_bio = blkcg_iolatency_done_bio,
687 .exit = blkcg_iolatency_exit,
688};
689
690static void blkiolatency_timer_fn(struct timer_list *t)
691{
692 struct blk_iolatency *blkiolat = from_timer(blkiolat, t, timer);
693 struct blkcg_gq *blkg;
694 struct cgroup_subsys_state *pos_css;
695 u64 now = ktime_to_ns(ktime_get());
696
697 rcu_read_lock();
698 blkg_for_each_descendant_pre(blkg, pos_css,
699 blkiolat->rqos.q->root_blkg) {
700 struct iolatency_grp *iolat;
701 struct child_latency_info *lat_info;
702 unsigned long flags;
703 u64 cookie;
704
705 /*
706 * We could be exiting, don't access the pd unless we have a
707 * ref on the blkg.
708 */
101246ec 709 if (!blkg_tryget(blkg))
d7067512
JB
710 continue;
711
712 iolat = blkg_to_lat(blkg);
713 if (!iolat)
52a1199c 714 goto next;
d7067512
JB
715
716 lat_info = &iolat->child_lat;
717 cookie = atomic_read(&lat_info->scale_cookie);
718
719 if (cookie >= DEFAULT_SCALE_COOKIE)
720 goto next;
721
722 spin_lock_irqsave(&lat_info->lock, flags);
723 if (lat_info->last_scale_event >= now)
724 goto next_lock;
725
726 /*
727 * We scaled down but don't have a scale_grp, scale up and carry
728 * on.
729 */
730 if (lat_info->scale_grp == NULL) {
731 scale_cookie_change(iolat->blkiolat, lat_info, true);
732 goto next_lock;
733 }
734
735 /*
736 * It's been 5 seconds since our last scale event, clear the
737 * scale grp in case the group that needed the scale down isn't
738 * doing any IO currently.
739 */
740 if (now - lat_info->last_scale_event >=
741 ((u64)NSEC_PER_SEC * 5))
742 lat_info->scale_grp = NULL;
743next_lock:
744 spin_unlock_irqrestore(&lat_info->lock, flags);
745next:
746 blkg_put(blkg);
747 }
748 rcu_read_unlock();
749}
750
751int blk_iolatency_init(struct request_queue *q)
752{
753 struct blk_iolatency *blkiolat;
754 struct rq_qos *rqos;
755 int ret;
756
757 blkiolat = kzalloc(sizeof(*blkiolat), GFP_KERNEL);
758 if (!blkiolat)
759 return -ENOMEM;
760
761 rqos = &blkiolat->rqos;
762 rqos->id = RQ_QOS_CGROUP;
763 rqos->ops = &blkcg_iolatency_ops;
764 rqos->q = q;
765
766 rq_qos_add(q, rqos);
767
768 ret = blkcg_activate_policy(q, &blkcg_policy_iolatency);
769 if (ret) {
770 rq_qos_del(q, rqos);
771 kfree(blkiolat);
772 return ret;
773 }
774
775 timer_setup(&blkiolat->timer, blkiolatency_timer_fn, 0);
776
777 return 0;
778}
779
780static void iolatency_set_min_lat_nsec(struct blkcg_gq *blkg, u64 val)
781{
782 struct iolatency_grp *iolat = blkg_to_lat(blkg);
783 struct blk_iolatency *blkiolat = iolat->blkiolat;
784 u64 oldval = iolat->min_lat_nsec;
785
786 iolat->min_lat_nsec = val;
c480bcf9
DZF
787 iolat->cur_win_nsec = max_t(u64, val << 4, BLKIOLATENCY_MIN_WIN_SIZE);
788 iolat->cur_win_nsec = min_t(u64, iolat->cur_win_nsec,
789 BLKIOLATENCY_MAX_WIN_SIZE);
d7067512
JB
790
791 if (!oldval && val)
792 atomic_inc(&blkiolat->enabled);
793 if (oldval && !val)
794 atomic_dec(&blkiolat->enabled);
795}
796
797static void iolatency_clear_scaling(struct blkcg_gq *blkg)
798{
799 if (blkg->parent) {
800 struct iolatency_grp *iolat = blkg_to_lat(blkg->parent);
801 struct child_latency_info *lat_info;
802 if (!iolat)
803 return;
804
805 lat_info = &iolat->child_lat;
806 spin_lock(&lat_info->lock);
807 atomic_set(&lat_info->scale_cookie, DEFAULT_SCALE_COOKIE);
808 lat_info->last_scale_event = 0;
809 lat_info->scale_grp = NULL;
810 lat_info->scale_lat = 0;
811 spin_unlock(&lat_info->lock);
812 }
813}
814
815static ssize_t iolatency_set_limit(struct kernfs_open_file *of, char *buf,
816 size_t nbytes, loff_t off)
817{
818 struct blkcg *blkcg = css_to_blkcg(of_css(of));
819 struct blkcg_gq *blkg;
d7067512
JB
820 struct blkg_conf_ctx ctx;
821 struct iolatency_grp *iolat;
822 char *p, *tok;
823 u64 lat_val = 0;
824 u64 oldval;
825 int ret;
826
827 ret = blkg_conf_prep(blkcg, &blkcg_policy_iolatency, buf, &ctx);
828 if (ret)
829 return ret;
830
831 iolat = blkg_to_lat(ctx.blkg);
d7067512
JB
832 p = ctx.body;
833
834 ret = -EINVAL;
835 while ((tok = strsep(&p, " "))) {
836 char key[16];
837 char val[21]; /* 18446744073709551616 */
838
839 if (sscanf(tok, "%15[^=]=%20s", key, val) != 2)
840 goto out;
841
842 if (!strcmp(key, "target")) {
843 u64 v;
844
845 if (!strcmp(val, "max"))
846 lat_val = 0;
847 else if (sscanf(val, "%llu", &v) == 1)
848 lat_val = v * NSEC_PER_USEC;
849 else
850 goto out;
851 } else {
852 goto out;
853 }
854 }
855
856 /* Walk up the tree to see if our new val is lower than it should be. */
857 blkg = ctx.blkg;
858 oldval = iolat->min_lat_nsec;
859
860 iolatency_set_min_lat_nsec(blkg, lat_val);
861 if (oldval != iolat->min_lat_nsec) {
862 iolatency_clear_scaling(blkg);
863 }
864
865 ret = 0;
866out:
867 blkg_conf_finish(&ctx);
868 return ret ?: nbytes;
869}
870
871static u64 iolatency_prfill_limit(struct seq_file *sf,
872 struct blkg_policy_data *pd, int off)
873{
874 struct iolatency_grp *iolat = pd_to_lat(pd);
875 const char *dname = blkg_dev_name(pd->blkg);
876
877 if (!dname || !iolat->min_lat_nsec)
878 return 0;
879 seq_printf(sf, "%s target=%llu\n",
88b7210c 880 dname, div_u64(iolat->min_lat_nsec, NSEC_PER_USEC));
d7067512
JB
881 return 0;
882}
883
884static int iolatency_print_limit(struct seq_file *sf, void *v)
885{
886 blkcg_print_blkgs(sf, css_to_blkcg(seq_css(sf)),
887 iolatency_prfill_limit,
888 &blkcg_policy_iolatency, seq_cft(sf)->private, false);
889 return 0;
890}
891
1fa2840e
JB
892static size_t iolatency_ssd_stat(struct iolatency_grp *iolat, char *buf,
893 size_t size)
894{
895 struct latency_stat stat;
896 int cpu;
897
898 latency_stat_init(iolat, &stat);
899 preempt_disable();
900 for_each_online_cpu(cpu) {
901 struct latency_stat *s;
902 s = per_cpu_ptr(iolat->stats, cpu);
903 latency_stat_sum(iolat, &stat, s);
904 }
905 preempt_enable();
906
907 if (iolat->rq_depth.max_depth == UINT_MAX)
908 return scnprintf(buf, size, " missed=%llu total=%llu depth=max",
909 (unsigned long long)stat.ps.missed,
910 (unsigned long long)stat.ps.total);
911 return scnprintf(buf, size, " missed=%llu total=%llu depth=%u",
912 (unsigned long long)stat.ps.missed,
913 (unsigned long long)stat.ps.total,
914 iolat->rq_depth.max_depth);
915}
916
d7067512
JB
917static size_t iolatency_pd_stat(struct blkg_policy_data *pd, char *buf,
918 size_t size)
919{
920 struct iolatency_grp *iolat = pd_to_lat(pd);
1fa2840e
JB
921 unsigned long long avg_lat;
922 unsigned long long cur_win;
923
924 if (iolat->ssd)
925 return iolatency_ssd_stat(iolat, buf, size);
d7067512 926
1fa2840e
JB
927 avg_lat = div64_u64(iolat->lat_avg, NSEC_PER_USEC);
928 cur_win = div64_u64(iolat->cur_win_nsec, NSEC_PER_MSEC);
a284390b 929 if (iolat->rq_depth.max_depth == UINT_MAX)
c480bcf9
DZF
930 return scnprintf(buf, size, " depth=max avg_lat=%llu win=%llu",
931 avg_lat, cur_win);
d7067512 932
c480bcf9
DZF
933 return scnprintf(buf, size, " depth=%u avg_lat=%llu win=%llu",
934 iolat->rq_depth.max_depth, avg_lat, cur_win);
d7067512
JB
935}
936
937
938static struct blkg_policy_data *iolatency_pd_alloc(gfp_t gfp, int node)
939{
940 struct iolatency_grp *iolat;
941
942 iolat = kzalloc_node(sizeof(*iolat), gfp, node);
943 if (!iolat)
944 return NULL;
1fa2840e
JB
945 iolat->stats = __alloc_percpu_gfp(sizeof(struct latency_stat),
946 __alignof__(struct latency_stat), gfp);
d7067512
JB
947 if (!iolat->stats) {
948 kfree(iolat);
949 return NULL;
950 }
951 return &iolat->pd;
952}
953
954static void iolatency_pd_init(struct blkg_policy_data *pd)
955{
956 struct iolatency_grp *iolat = pd_to_lat(pd);
957 struct blkcg_gq *blkg = lat_to_blkg(iolat);
958 struct rq_qos *rqos = blkcg_rq_qos(blkg->q);
959 struct blk_iolatency *blkiolat = BLKIOLATENCY(rqos);
960 u64 now = ktime_to_ns(ktime_get());
961 int cpu;
962
1fa2840e
JB
963 if (blk_queue_nonrot(blkg->q))
964 iolat->ssd = true;
965 else
966 iolat->ssd = false;
967
d7067512 968 for_each_possible_cpu(cpu) {
1fa2840e 969 struct latency_stat *stat;
d7067512 970 stat = per_cpu_ptr(iolat->stats, cpu);
1fa2840e 971 latency_stat_init(iolat, stat);
d7067512
JB
972 }
973
451bb7c3 974 latency_stat_init(iolat, &iolat->cur_stat);
d7067512
JB
975 rq_wait_init(&iolat->rq_wait);
976 spin_lock_init(&iolat->child_lat.lock);
ff4cee08 977 iolat->rq_depth.queue_depth = blkg->q->nr_requests;
a284390b 978 iolat->rq_depth.max_depth = UINT_MAX;
d7067512
JB
979 iolat->rq_depth.default_depth = iolat->rq_depth.queue_depth;
980 iolat->blkiolat = blkiolat;
981 iolat->cur_win_nsec = 100 * NSEC_PER_MSEC;
982 atomic64_set(&iolat->window_start, now);
983
984 /*
985 * We init things in list order, so the pd for the parent may not be
986 * init'ed yet for whatever reason.
987 */
988 if (blkg->parent && blkg_to_pd(blkg->parent, &blkcg_policy_iolatency)) {
989 struct iolatency_grp *parent = blkg_to_lat(blkg->parent);
990 atomic_set(&iolat->scale_cookie,
991 atomic_read(&parent->child_lat.scale_cookie));
992 } else {
993 atomic_set(&iolat->scale_cookie, DEFAULT_SCALE_COOKIE);
994 }
995
996 atomic_set(&iolat->child_lat.scale_cookie, DEFAULT_SCALE_COOKIE);
997}
998
999static void iolatency_pd_offline(struct blkg_policy_data *pd)
1000{
1001 struct iolatency_grp *iolat = pd_to_lat(pd);
1002 struct blkcg_gq *blkg = lat_to_blkg(iolat);
1003
1004 iolatency_set_min_lat_nsec(blkg, 0);
1005 iolatency_clear_scaling(blkg);
1006}
1007
1008static void iolatency_pd_free(struct blkg_policy_data *pd)
1009{
1010 struct iolatency_grp *iolat = pd_to_lat(pd);
1011 free_percpu(iolat->stats);
1012 kfree(iolat);
1013}
1014
1015static struct cftype iolatency_files[] = {
1016 {
1017 .name = "latency",
1018 .flags = CFTYPE_NOT_ON_ROOT,
1019 .seq_show = iolatency_print_limit,
1020 .write = iolatency_set_limit,
1021 },
1022 {}
1023};
1024
1025static struct blkcg_policy blkcg_policy_iolatency = {
1026 .dfl_cftypes = iolatency_files,
1027 .pd_alloc_fn = iolatency_pd_alloc,
1028 .pd_init_fn = iolatency_pd_init,
1029 .pd_offline_fn = iolatency_pd_offline,
1030 .pd_free_fn = iolatency_pd_free,
1031 .pd_stat_fn = iolatency_pd_stat,
1032};
1033
1034static int __init iolatency_init(void)
1035{
1036 return blkcg_policy_register(&blkcg_policy_iolatency);
1037}
1038
1039static void __exit iolatency_exit(void)
1040{
1041 return blkcg_policy_unregister(&blkcg_policy_iolatency);
1042}
1043
1044module_init(iolatency_init);
1045module_exit(iolatency_exit);