]> git.proxmox.com Git - mirror_ubuntu-artful-kernel.git/blame - block/blk-mq-tag.c
blk-mq: Export tagset iter function
[mirror_ubuntu-artful-kernel.git] / block / blk-mq-tag.c
CommitLineData
75bb4625
JA
1/*
2 * Fast and scalable bitmap tagging variant. Uses sparser bitmaps spread
3 * over multiple cachelines to avoid ping-pong between multiple submitters
4 * or submitter and completer. Uses rolling wakeups to avoid falling of
5 * the scaling cliff when we run out of tags and have to start putting
6 * submitters to sleep.
7 *
8 * Uses active queue tracking to support fairer distribution of tags
9 * between multiple submitters when a shared tag map is used.
10 *
11 * Copyright (C) 2013-2014 Jens Axboe
12 */
320ae51f
JA
13#include <linux/kernel.h>
14#include <linux/module.h>
4bb659b1 15#include <linux/random.h>
320ae51f
JA
16
17#include <linux/blk-mq.h>
18#include "blk.h"
19#include "blk-mq.h"
20#include "blk-mq-tag.h"
21
4bb659b1
JA
22static bool bt_has_free_tags(struct blk_mq_bitmap_tags *bt)
23{
24 int i;
25
26 for (i = 0; i < bt->map_nr; i++) {
e93ecf60 27 struct blk_align_bitmap *bm = &bt->map[i];
4bb659b1
JA
28 int ret;
29
30 ret = find_first_zero_bit(&bm->word, bm->depth);
31 if (ret < bm->depth)
32 return true;
33 }
34
35 return false;
320ae51f
JA
36}
37
38bool blk_mq_has_free_tags(struct blk_mq_tags *tags)
39{
4bb659b1
JA
40 if (!tags)
41 return true;
42
43 return bt_has_free_tags(&tags->bitmap_tags);
44}
45
8537b120 46static inline int bt_index_inc(int index)
0d2602ca 47{
8537b120
AG
48 return (index + 1) & (BT_WAIT_QUEUES - 1);
49}
50
51static inline void bt_index_atomic_inc(atomic_t *index)
52{
53 int old = atomic_read(index);
54 int new = bt_index_inc(old);
55 atomic_cmpxchg(index, old, new);
0d2602ca
JA
56}
57
58/*
59 * If a previously inactive queue goes active, bump the active user count.
60 */
61bool __blk_mq_tag_busy(struct blk_mq_hw_ctx *hctx)
62{
63 if (!test_bit(BLK_MQ_S_TAG_ACTIVE, &hctx->state) &&
64 !test_and_set_bit(BLK_MQ_S_TAG_ACTIVE, &hctx->state))
65 atomic_inc(&hctx->tags->active_queues);
66
67 return true;
68}
69
70/*
aed3ea94 71 * Wakeup all potentially sleeping on tags
0d2602ca 72 */
aed3ea94 73void blk_mq_tag_wakeup_all(struct blk_mq_tags *tags, bool include_reserve)
0d2602ca 74{
0d2602ca
JA
75 struct blk_mq_bitmap_tags *bt;
76 int i, wake_index;
77
8ee1b7b9
KT
78 /*
79 * Make sure all changes prior to this are visible from other CPUs.
80 */
81 smp_mb();
0d2602ca 82 bt = &tags->bitmap_tags;
8537b120 83 wake_index = atomic_read(&bt->wake_index);
0d2602ca
JA
84 for (i = 0; i < BT_WAIT_QUEUES; i++) {
85 struct bt_wait_state *bs = &bt->bs[wake_index];
86
87 if (waitqueue_active(&bs->wait))
88 wake_up(&bs->wait);
89
8537b120 90 wake_index = bt_index_inc(wake_index);
0d2602ca 91 }
aed3ea94
JA
92
93 if (include_reserve) {
94 bt = &tags->breserved_tags;
95 if (waitqueue_active(&bt->bs[0].wait))
96 wake_up(&bt->bs[0].wait);
97 }
0d2602ca
JA
98}
99
e3a2b3f9
JA
100/*
101 * If a previously busy queue goes inactive, potential waiters could now
102 * be allowed to queue. Wake them up and check.
103 */
104void __blk_mq_tag_idle(struct blk_mq_hw_ctx *hctx)
105{
106 struct blk_mq_tags *tags = hctx->tags;
107
108 if (!test_and_clear_bit(BLK_MQ_S_TAG_ACTIVE, &hctx->state))
109 return;
110
111 atomic_dec(&tags->active_queues);
112
aed3ea94 113 blk_mq_tag_wakeup_all(tags, false);
e3a2b3f9
JA
114}
115
0d2602ca
JA
116/*
117 * For shared tag users, we track the number of currently active users
118 * and attempt to provide a fair share of the tag depth for each of them.
119 */
120static inline bool hctx_may_queue(struct blk_mq_hw_ctx *hctx,
121 struct blk_mq_bitmap_tags *bt)
122{
123 unsigned int depth, users;
124
125 if (!hctx || !(hctx->flags & BLK_MQ_F_TAG_SHARED))
126 return true;
127 if (!test_bit(BLK_MQ_S_TAG_ACTIVE, &hctx->state))
128 return true;
129
130 /*
131 * Don't try dividing an ant
132 */
133 if (bt->depth == 1)
134 return true;
135
136 users = atomic_read(&hctx->tags->active_queues);
137 if (!users)
138 return true;
139
140 /*
141 * Allow at least some tags
142 */
143 depth = max((bt->depth + users - 1) / users, 4U);
144 return atomic_read(&hctx->nr_active) < depth;
145}
146
24391c0d
SL
147static int __bt_get_word(struct blk_align_bitmap *bm, unsigned int last_tag,
148 bool nowrap)
4bb659b1 149{
0bf36498
JA
150 int tag, org_last_tag = last_tag;
151
152 while (1) {
153 tag = find_next_zero_bit(&bm->word, bm->depth, last_tag);
154 if (unlikely(tag >= bm->depth)) {
4bb659b1 155 /*
0bf36498
JA
156 * We started with an offset, and we didn't reset the
157 * offset to 0 in a failure case, so start from 0 to
4bb659b1
JA
158 * exhaust the map.
159 */
24391c0d 160 if (org_last_tag && last_tag && !nowrap) {
0bf36498
JA
161 last_tag = org_last_tag = 0;
162 continue;
4bb659b1
JA
163 }
164 return -1;
165 }
0bf36498
JA
166
167 if (!test_and_set_bit(tag, &bm->word))
168 break;
169
4bb659b1 170 last_tag = tag + 1;
0bf36498
JA
171 if (last_tag >= bm->depth - 1)
172 last_tag = 0;
173 }
4bb659b1
JA
174
175 return tag;
176}
177
24391c0d
SL
178#define BT_ALLOC_RR(tags) (tags->alloc_policy == BLK_TAG_ALLOC_RR)
179
4bb659b1
JA
180/*
181 * Straight forward bitmap tag implementation, where each bit is a tag
182 * (cleared == free, and set == busy). The small twist is using per-cpu
183 * last_tag caches, which blk-mq stores in the blk_mq_ctx software queue
184 * contexts. This enables us to drastically limit the space searched,
185 * without dirtying an extra shared cacheline like we would if we stored
186 * the cache value inside the shared blk_mq_bitmap_tags structure. On top
187 * of that, each word of tags is in a separate cacheline. This means that
188 * multiple users will tend to stick to different cachelines, at least
189 * until the map is exhausted.
190 */
0d2602ca 191static int __bt_get(struct blk_mq_hw_ctx *hctx, struct blk_mq_bitmap_tags *bt,
24391c0d 192 unsigned int *tag_cache, struct blk_mq_tags *tags)
4bb659b1
JA
193{
194 unsigned int last_tag, org_last_tag;
195 int index, i, tag;
196
0d2602ca
JA
197 if (!hctx_may_queue(hctx, bt))
198 return -1;
199
4bb659b1 200 last_tag = org_last_tag = *tag_cache;
59d13bf5 201 index = TAG_TO_INDEX(bt, last_tag);
4bb659b1
JA
202
203 for (i = 0; i < bt->map_nr; i++) {
24391c0d
SL
204 tag = __bt_get_word(&bt->map[index], TAG_TO_BIT(bt, last_tag),
205 BT_ALLOC_RR(tags));
4bb659b1 206 if (tag != -1) {
59d13bf5 207 tag += (index << bt->bits_per_word);
4bb659b1
JA
208 goto done;
209 }
210
0bf36498
JA
211 /*
212 * Jump to next index, and reset the last tag to be the
213 * first tag of that index
214 */
215 index++;
216 last_tag = (index << bt->bits_per_word);
217
218 if (index >= bt->map_nr) {
4bb659b1 219 index = 0;
0bf36498
JA
220 last_tag = 0;
221 }
4bb659b1
JA
222 }
223
224 *tag_cache = 0;
225 return -1;
226
227 /*
228 * Only update the cache from the allocation path, if we ended
229 * up using the specific cached tag.
230 */
231done:
24391c0d 232 if (tag == org_last_tag || unlikely(BT_ALLOC_RR(tags))) {
4bb659b1
JA
233 last_tag = tag + 1;
234 if (last_tag >= bt->depth - 1)
235 last_tag = 0;
236
237 *tag_cache = last_tag;
238 }
239
240 return tag;
241}
242
4bb659b1
JA
243static struct bt_wait_state *bt_wait_ptr(struct blk_mq_bitmap_tags *bt,
244 struct blk_mq_hw_ctx *hctx)
245{
246 struct bt_wait_state *bs;
8537b120 247 int wait_index;
4bb659b1
JA
248
249 if (!hctx)
250 return &bt->bs[0];
251
8537b120
AG
252 wait_index = atomic_read(&hctx->wait_index);
253 bs = &bt->bs[wait_index];
254 bt_index_atomic_inc(&hctx->wait_index);
4bb659b1 255 return bs;
320ae51f
JA
256}
257
cb96a42c
ML
258static int bt_get(struct blk_mq_alloc_data *data,
259 struct blk_mq_bitmap_tags *bt,
260 struct blk_mq_hw_ctx *hctx,
24391c0d 261 unsigned int *last_tag, struct blk_mq_tags *tags)
320ae51f 262{
4bb659b1
JA
263 struct bt_wait_state *bs;
264 DEFINE_WAIT(wait);
320ae51f
JA
265 int tag;
266
24391c0d 267 tag = __bt_get(hctx, bt, last_tag, tags);
4bb659b1
JA
268 if (tag != -1)
269 return tag;
270
6f3b0e8b 271 if (data->flags & BLK_MQ_REQ_NOWAIT)
4bb659b1
JA
272 return -1;
273
35d37c66 274 bs = bt_wait_ptr(bt, hctx);
4bb659b1 275 do {
4bb659b1
JA
276 prepare_to_wait(&bs->wait, &wait, TASK_UNINTERRUPTIBLE);
277
24391c0d 278 tag = __bt_get(hctx, bt, last_tag, tags);
4bb659b1
JA
279 if (tag != -1)
280 break;
281
b3223207
BVA
282 /*
283 * We're out of tags on this hardware queue, kick any
284 * pending IO submits before going to sleep waiting for
bc188d81
SB
285 * some to complete. Note that hctx can be NULL here for
286 * reserved tag allocation.
b3223207 287 */
bc188d81
SB
288 if (hctx)
289 blk_mq_run_hw_queue(hctx, false);
b3223207 290
080ff351
JA
291 /*
292 * Retry tag allocation after running the hardware queue,
293 * as running the queue may also have found completions.
294 */
24391c0d 295 tag = __bt_get(hctx, bt, last_tag, tags);
080ff351
JA
296 if (tag != -1)
297 break;
298
cb96a42c
ML
299 blk_mq_put_ctx(data->ctx);
300
4bb659b1 301 io_schedule();
cb96a42c
ML
302
303 data->ctx = blk_mq_get_ctx(data->q);
304 data->hctx = data->q->mq_ops->map_queue(data->q,
305 data->ctx->cpu);
6f3b0e8b 306 if (data->flags & BLK_MQ_REQ_RESERVED) {
cb96a42c
ML
307 bt = &data->hctx->tags->breserved_tags;
308 } else {
309 last_tag = &data->ctx->last_tag;
310 hctx = data->hctx;
311 bt = &hctx->tags->bitmap_tags;
312 }
35d37c66
JA
313 finish_wait(&bs->wait, &wait);
314 bs = bt_wait_ptr(bt, hctx);
4bb659b1
JA
315 } while (1);
316
317 finish_wait(&bs->wait, &wait);
318 return tag;
319}
320
cb96a42c 321static unsigned int __blk_mq_get_tag(struct blk_mq_alloc_data *data)
4bb659b1
JA
322{
323 int tag;
324
cb96a42c 325 tag = bt_get(data, &data->hctx->tags->bitmap_tags, data->hctx,
24391c0d 326 &data->ctx->last_tag, data->hctx->tags);
4bb659b1 327 if (tag >= 0)
cb96a42c 328 return tag + data->hctx->tags->nr_reserved_tags;
4bb659b1
JA
329
330 return BLK_MQ_TAG_FAIL;
320ae51f
JA
331}
332
cb96a42c 333static unsigned int __blk_mq_get_reserved_tag(struct blk_mq_alloc_data *data)
320ae51f 334{
4bb659b1 335 int tag, zero = 0;
320ae51f 336
cb96a42c 337 if (unlikely(!data->hctx->tags->nr_reserved_tags)) {
320ae51f
JA
338 WARN_ON_ONCE(1);
339 return BLK_MQ_TAG_FAIL;
340 }
341
24391c0d
SL
342 tag = bt_get(data, &data->hctx->tags->breserved_tags, NULL, &zero,
343 data->hctx->tags);
320ae51f
JA
344 if (tag < 0)
345 return BLK_MQ_TAG_FAIL;
4bb659b1 346
320ae51f
JA
347 return tag;
348}
349
cb96a42c 350unsigned int blk_mq_get_tag(struct blk_mq_alloc_data *data)
320ae51f 351{
6f3b0e8b
CH
352 if (data->flags & BLK_MQ_REQ_RESERVED)
353 return __blk_mq_get_reserved_tag(data);
354 return __blk_mq_get_tag(data);
320ae51f
JA
355}
356
4bb659b1
JA
357static struct bt_wait_state *bt_wake_ptr(struct blk_mq_bitmap_tags *bt)
358{
359 int i, wake_index;
360
8537b120 361 wake_index = atomic_read(&bt->wake_index);
4bb659b1
JA
362 for (i = 0; i < BT_WAIT_QUEUES; i++) {
363 struct bt_wait_state *bs = &bt->bs[wake_index];
364
365 if (waitqueue_active(&bs->wait)) {
8537b120
AG
366 int o = atomic_read(&bt->wake_index);
367 if (wake_index != o)
368 atomic_cmpxchg(&bt->wake_index, o, wake_index);
4bb659b1
JA
369
370 return bs;
371 }
372
8537b120 373 wake_index = bt_index_inc(wake_index);
4bb659b1
JA
374 }
375
376 return NULL;
377}
378
379static void bt_clear_tag(struct blk_mq_bitmap_tags *bt, unsigned int tag)
380{
59d13bf5 381 const int index = TAG_TO_INDEX(bt, tag);
4bb659b1 382 struct bt_wait_state *bs;
2971c35f 383 int wait_cnt;
4bb659b1 384
c38d185d
BVA
385 clear_bit(TAG_TO_BIT(bt, tag), &bt->map[index].word);
386
387 /* Ensure that the wait list checks occur after clear_bit(). */
388 smp_mb();
4bb659b1
JA
389
390 bs = bt_wake_ptr(bt);
2971c35f
AG
391 if (!bs)
392 return;
393
394 wait_cnt = atomic_dec_return(&bs->wait_cnt);
9d8f0bcc
BVA
395 if (unlikely(wait_cnt < 0))
396 wait_cnt = atomic_inc_return(&bs->wait_cnt);
2971c35f 397 if (wait_cnt == 0) {
2971c35f 398 atomic_add(bt->wake_cnt, &bs->wait_cnt);
8537b120 399 bt_index_atomic_inc(&bt->wake_index);
4bb659b1
JA
400 wake_up(&bs->wait);
401 }
402}
403
0d2602ca 404void blk_mq_put_tag(struct blk_mq_hw_ctx *hctx, unsigned int tag,
4bb659b1 405 unsigned int *last_tag)
320ae51f 406{
0d2602ca
JA
407 struct blk_mq_tags *tags = hctx->tags;
408
4bb659b1
JA
409 if (tag >= tags->nr_reserved_tags) {
410 const int real_tag = tag - tags->nr_reserved_tags;
411
70114c39
JA
412 BUG_ON(real_tag >= tags->nr_tags);
413 bt_clear_tag(&tags->bitmap_tags, real_tag);
24391c0d
SL
414 if (likely(tags->alloc_policy == BLK_TAG_ALLOC_FIFO))
415 *last_tag = real_tag;
70114c39
JA
416 } else {
417 BUG_ON(tag >= tags->nr_reserved_tags);
418 bt_clear_tag(&tags->breserved_tags, tag);
419 }
320ae51f
JA
420}
421
81481eb4
CH
422static void bt_for_each(struct blk_mq_hw_ctx *hctx,
423 struct blk_mq_bitmap_tags *bt, unsigned int off,
424 busy_iter_fn *fn, void *data, bool reserved)
320ae51f 425{
81481eb4
CH
426 struct request *rq;
427 int bit, i;
4bb659b1
JA
428
429 for (i = 0; i < bt->map_nr; i++) {
e93ecf60 430 struct blk_align_bitmap *bm = &bt->map[i];
4bb659b1 431
81481eb4
CH
432 for (bit = find_first_bit(&bm->word, bm->depth);
433 bit < bm->depth;
434 bit = find_next_bit(&bm->word, bm->depth, bit + 1)) {
0048b483 435 rq = hctx->tags->rqs[off + bit];
81481eb4
CH
436 if (rq->q == hctx->queue)
437 fn(hctx, rq, data, reserved);
438 }
4bb659b1 439
59d13bf5 440 off += (1 << bt->bits_per_word);
4bb659b1 441 }
320ae51f
JA
442}
443
f26cdc85
KB
444static void bt_tags_for_each(struct blk_mq_tags *tags,
445 struct blk_mq_bitmap_tags *bt, unsigned int off,
446 busy_tag_iter_fn *fn, void *data, bool reserved)
447{
448 struct request *rq;
449 int bit, i;
450
451 if (!tags->rqs)
452 return;
453 for (i = 0; i < bt->map_nr; i++) {
454 struct blk_align_bitmap *bm = &bt->map[i];
455
456 for (bit = find_first_bit(&bm->word, bm->depth);
457 bit < bm->depth;
458 bit = find_next_bit(&bm->word, bm->depth, bit + 1)) {
0048b483 459 rq = tags->rqs[off + bit];
f26cdc85
KB
460 fn(rq, data, reserved);
461 }
462
463 off += (1 << bt->bits_per_word);
464 }
465}
466
467void blk_mq_all_tag_busy_iter(struct blk_mq_tags *tags, busy_tag_iter_fn *fn,
468 void *priv)
469{
470 if (tags->nr_reserved_tags)
471 bt_tags_for_each(tags, &tags->breserved_tags, 0, fn, priv, true);
472 bt_tags_for_each(tags, &tags->bitmap_tags, tags->nr_reserved_tags, fn, priv,
473 false);
474}
475EXPORT_SYMBOL(blk_mq_all_tag_busy_iter);
476
e0489487
SG
477void blk_mq_tagset_busy_iter(struct blk_mq_tag_set *tagset,
478 busy_tag_iter_fn *fn, void *priv)
479{
480 int i;
481
482 for (i = 0; i < tagset->nr_hw_queues; i++) {
483 if (tagset->tags && tagset->tags[i])
484 blk_mq_all_tag_busy_iter(tagset->tags[i], fn, priv);
485 }
486}
487EXPORT_SYMBOL(blk_mq_tagset_busy_iter);
488
0bf6cd5b 489void blk_mq_queue_tag_busy_iter(struct request_queue *q, busy_iter_fn *fn,
81481eb4 490 void *priv)
320ae51f 491{
0bf6cd5b
CH
492 struct blk_mq_hw_ctx *hctx;
493 int i;
494
495
496 queue_for_each_hw_ctx(q, hctx, i) {
497 struct blk_mq_tags *tags = hctx->tags;
498
499 /*
500 * If not software queues are currently mapped to this
501 * hardware queue, there's nothing to check
502 */
503 if (!blk_mq_hw_queue_mapped(hctx))
504 continue;
505
506 if (tags->nr_reserved_tags)
507 bt_for_each(hctx, &tags->breserved_tags, 0, fn, priv, true);
508 bt_for_each(hctx, &tags->bitmap_tags, tags->nr_reserved_tags, fn, priv,
509 false);
510 }
320ae51f 511
320ae51f
JA
512}
513
4bb659b1
JA
514static unsigned int bt_unused_tags(struct blk_mq_bitmap_tags *bt)
515{
516 unsigned int i, used;
517
518 for (i = 0, used = 0; i < bt->map_nr; i++) {
e93ecf60 519 struct blk_align_bitmap *bm = &bt->map[i];
4bb659b1
JA
520
521 used += bitmap_weight(&bm->word, bm->depth);
522 }
523
524 return bt->depth - used;
525}
526
e3a2b3f9
JA
527static void bt_update_count(struct blk_mq_bitmap_tags *bt,
528 unsigned int depth)
529{
530 unsigned int tags_per_word = 1U << bt->bits_per_word;
531 unsigned int map_depth = depth;
532
533 if (depth) {
534 int i;
535
536 for (i = 0; i < bt->map_nr; i++) {
537 bt->map[i].depth = min(map_depth, tags_per_word);
538 map_depth -= bt->map[i].depth;
539 }
540 }
541
542 bt->wake_cnt = BT_WAIT_BATCH;
abab13b5
JA
543 if (bt->wake_cnt > depth / BT_WAIT_QUEUES)
544 bt->wake_cnt = max(1U, depth / BT_WAIT_QUEUES);
e3a2b3f9
JA
545
546 bt->depth = depth;
547}
548
4bb659b1
JA
549static int bt_alloc(struct blk_mq_bitmap_tags *bt, unsigned int depth,
550 int node, bool reserved)
551{
552 int i;
553
59d13bf5
JA
554 bt->bits_per_word = ilog2(BITS_PER_LONG);
555
4bb659b1
JA
556 /*
557 * Depth can be zero for reserved tags, that's not a failure
558 * condition.
559 */
560 if (depth) {
e3a2b3f9 561 unsigned int nr, tags_per_word;
59d13bf5
JA
562
563 tags_per_word = (1 << bt->bits_per_word);
564
565 /*
566 * If the tag space is small, shrink the number of tags
567 * per word so we spread over a few cachelines, at least.
568 * If less than 4 tags, just forget about it, it's not
569 * going to work optimally anyway.
570 */
571 if (depth >= 4) {
572 while (tags_per_word * 4 > depth) {
573 bt->bits_per_word--;
574 tags_per_word = (1 << bt->bits_per_word);
575 }
576 }
4bb659b1 577
59d13bf5 578 nr = ALIGN(depth, tags_per_word) / tags_per_word;
e93ecf60 579 bt->map = kzalloc_node(nr * sizeof(struct blk_align_bitmap),
4bb659b1
JA
580 GFP_KERNEL, node);
581 if (!bt->map)
582 return -ENOMEM;
583
584 bt->map_nr = nr;
4bb659b1
JA
585 }
586
587 bt->bs = kzalloc(BT_WAIT_QUEUES * sizeof(*bt->bs), GFP_KERNEL);
588 if (!bt->bs) {
589 kfree(bt->map);
564e559f 590 bt->map = NULL;
4bb659b1
JA
591 return -ENOMEM;
592 }
593
86fb5c56
AG
594 bt_update_count(bt, depth);
595
596 for (i = 0; i < BT_WAIT_QUEUES; i++) {
4bb659b1 597 init_waitqueue_head(&bt->bs[i].wait);
86fb5c56
AG
598 atomic_set(&bt->bs[i].wait_cnt, bt->wake_cnt);
599 }
4bb659b1 600
4bb659b1
JA
601 return 0;
602}
603
604static void bt_free(struct blk_mq_bitmap_tags *bt)
605{
606 kfree(bt->map);
607 kfree(bt->bs);
608}
609
610static struct blk_mq_tags *blk_mq_init_bitmap_tags(struct blk_mq_tags *tags,
24391c0d 611 int node, int alloc_policy)
4bb659b1
JA
612{
613 unsigned int depth = tags->nr_tags - tags->nr_reserved_tags;
614
24391c0d
SL
615 tags->alloc_policy = alloc_policy;
616
4bb659b1
JA
617 if (bt_alloc(&tags->bitmap_tags, depth, node, false))
618 goto enomem;
619 if (bt_alloc(&tags->breserved_tags, tags->nr_reserved_tags, node, true))
620 goto enomem;
621
622 return tags;
623enomem:
624 bt_free(&tags->bitmap_tags);
625 kfree(tags);
626 return NULL;
627}
628
320ae51f 629struct blk_mq_tags *blk_mq_init_tags(unsigned int total_tags,
24391c0d
SL
630 unsigned int reserved_tags,
631 int node, int alloc_policy)
320ae51f 632{
320ae51f 633 struct blk_mq_tags *tags;
320ae51f
JA
634
635 if (total_tags > BLK_MQ_TAG_MAX) {
636 pr_err("blk-mq: tag depth too large\n");
637 return NULL;
638 }
639
640 tags = kzalloc_node(sizeof(*tags), GFP_KERNEL, node);
641 if (!tags)
642 return NULL;
643
f26cdc85
KB
644 if (!zalloc_cpumask_var(&tags->cpumask, GFP_KERNEL)) {
645 kfree(tags);
646 return NULL;
647 }
648
320ae51f
JA
649 tags->nr_tags = total_tags;
650 tags->nr_reserved_tags = reserved_tags;
320ae51f 651
24391c0d 652 return blk_mq_init_bitmap_tags(tags, node, alloc_policy);
320ae51f
JA
653}
654
655void blk_mq_free_tags(struct blk_mq_tags *tags)
656{
4bb659b1
JA
657 bt_free(&tags->bitmap_tags);
658 bt_free(&tags->breserved_tags);
f42d79ab 659 free_cpumask_var(tags->cpumask);
320ae51f
JA
660 kfree(tags);
661}
662
4bb659b1
JA
663void blk_mq_tag_init_last_tag(struct blk_mq_tags *tags, unsigned int *tag)
664{
665 unsigned int depth = tags->nr_tags - tags->nr_reserved_tags;
666
9d3d21ae 667 *tag = prandom_u32() % depth;
4bb659b1
JA
668}
669
e3a2b3f9
JA
670int blk_mq_tag_update_depth(struct blk_mq_tags *tags, unsigned int tdepth)
671{
672 tdepth -= tags->nr_reserved_tags;
673 if (tdepth > tags->nr_tags)
674 return -EINVAL;
675
676 /*
677 * Don't need (or can't) update reserved tags here, they remain
678 * static and should never need resizing.
679 */
680 bt_update_count(&tags->bitmap_tags, tdepth);
aed3ea94 681 blk_mq_tag_wakeup_all(tags, false);
e3a2b3f9
JA
682 return 0;
683}
684
205fb5f5
BVA
685/**
686 * blk_mq_unique_tag() - return a tag that is unique queue-wide
687 * @rq: request for which to compute a unique tag
688 *
689 * The tag field in struct request is unique per hardware queue but not over
690 * all hardware queues. Hence this function that returns a tag with the
691 * hardware context index in the upper bits and the per hardware queue tag in
692 * the lower bits.
693 *
694 * Note: When called for a request that is queued on a non-multiqueue request
695 * queue, the hardware context index is set to zero.
696 */
697u32 blk_mq_unique_tag(struct request *rq)
698{
699 struct request_queue *q = rq->q;
700 struct blk_mq_hw_ctx *hctx;
701 int hwq = 0;
702
703 if (q->mq_ops) {
704 hctx = q->mq_ops->map_queue(q, rq->mq_ctx->cpu);
705 hwq = hctx->queue_num;
706 }
707
708 return (hwq << BLK_MQ_UNIQUE_TAG_BITS) |
709 (rq->tag & BLK_MQ_UNIQUE_TAG_MASK);
710}
711EXPORT_SYMBOL(blk_mq_unique_tag);
712
320ae51f
JA
713ssize_t blk_mq_tag_sysfs_show(struct blk_mq_tags *tags, char *page)
714{
715 char *orig_page = page;
4bb659b1 716 unsigned int free, res;
320ae51f
JA
717
718 if (!tags)
719 return 0;
720
59d13bf5
JA
721 page += sprintf(page, "nr_tags=%u, reserved_tags=%u, "
722 "bits_per_word=%u\n",
723 tags->nr_tags, tags->nr_reserved_tags,
724 tags->bitmap_tags.bits_per_word);
320ae51f 725
4bb659b1
JA
726 free = bt_unused_tags(&tags->bitmap_tags);
727 res = bt_unused_tags(&tags->breserved_tags);
320ae51f 728
4bb659b1 729 page += sprintf(page, "nr_free=%u, nr_reserved=%u\n", free, res);
0d2602ca 730 page += sprintf(page, "active_queues=%u\n", atomic_read(&tags->active_queues));
320ae51f
JA
731
732 return page - orig_page;
733}