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86db1e29 1/*
4fed947c 2 * Functions to sequence FLUSH and FUA writes.
ae1b1539
TH
3 *
4 * Copyright (C) 2011 Max Planck Institute for Gravitational Physics
5 * Copyright (C) 2011 Tejun Heo <tj@kernel.org>
6 *
7 * This file is released under the GPLv2.
8 *
9 * REQ_{FLUSH|FUA} requests are decomposed to sequences consisted of three
10 * optional steps - PREFLUSH, DATA and POSTFLUSH - according to the request
11 * properties and hardware capability.
12 *
28a8f0d3
MC
13 * If a request doesn't have data, only REQ_PREFLUSH makes sense, which
14 * indicates a simple flush request. If there is data, REQ_PREFLUSH indicates
ae1b1539
TH
15 * that the device cache should be flushed before the data is executed, and
16 * REQ_FUA means that the data must be on non-volatile media on request
17 * completion.
18 *
19 * If the device doesn't have writeback cache, FLUSH and FUA don't make any
20 * difference. The requests are either completed immediately if there's no
21 * data or executed as normal requests otherwise.
22 *
28a8f0d3 23 * If the device has writeback cache and supports FUA, REQ_PREFLUSH is
ae1b1539
TH
24 * translated to PREFLUSH but REQ_FUA is passed down directly with DATA.
25 *
28a8f0d3
MC
26 * If the device has writeback cache and doesn't support FUA, REQ_PREFLUSH
27 * is translated to PREFLUSH and REQ_FUA to POSTFLUSH.
ae1b1539
TH
28 *
29 * The actual execution of flush is double buffered. Whenever a request
30 * needs to execute PRE or POSTFLUSH, it queues at
7c94e1c1 31 * fq->flush_queue[fq->flush_pending_idx]. Once certain criteria are met, a
3a5e02ce 32 * REQ_OP_FLUSH is issued and the pending_idx is toggled. When the flush
ae1b1539
TH
33 * completes, all the requests which were pending are proceeded to the next
34 * step. This allows arbitrary merging of different types of FLUSH/FUA
35 * requests.
36 *
37 * Currently, the following conditions are used to determine when to issue
38 * flush.
39 *
40 * C1. At any given time, only one flush shall be in progress. This makes
41 * double buffering sufficient.
42 *
43 * C2. Flush is deferred if any request is executing DATA of its sequence.
44 * This avoids issuing separate POSTFLUSHes for requests which shared
45 * PREFLUSH.
46 *
47 * C3. The second condition is ignored if there is a request which has
48 * waited longer than FLUSH_PENDING_TIMEOUT. This is to avoid
49 * starvation in the unlikely case where there are continuous stream of
50 * FUA (without FLUSH) requests.
51 *
52 * For devices which support FUA, it isn't clear whether C2 (and thus C3)
53 * is beneficial.
54 *
55 * Note that a sequenced FLUSH/FUA request with DATA is completed twice.
56 * Once while executing DATA and again after the whole sequence is
57 * complete. The first completion updates the contained bio but doesn't
58 * finish it so that the bio submitter is notified only after the whole
e8064021 59 * sequence is complete. This is implemented by testing RQF_FLUSH_SEQ in
ae1b1539
TH
60 * req_bio_endio().
61 *
62 * The above peculiarity requires that each FLUSH/FUA request has only one
63 * bio attached to it, which is guaranteed as they aren't allowed to be
64 * merged in the usual way.
86db1e29 65 */
ae1b1539 66
86db1e29
JA
67#include <linux/kernel.h>
68#include <linux/module.h>
69#include <linux/bio.h>
70#include <linux/blkdev.h>
5a0e3ad6 71#include <linux/gfp.h>
320ae51f 72#include <linux/blk-mq.h>
86db1e29
JA
73
74#include "blk.h"
320ae51f 75#include "blk-mq.h"
0048b483 76#include "blk-mq-tag.h"
86db1e29 77
4fed947c
TH
78/* FLUSH/FUA sequences */
79enum {
ae1b1539
TH
80 REQ_FSEQ_PREFLUSH = (1 << 0), /* pre-flushing in progress */
81 REQ_FSEQ_DATA = (1 << 1), /* data write in progress */
82 REQ_FSEQ_POSTFLUSH = (1 << 2), /* post-flushing in progress */
83 REQ_FSEQ_DONE = (1 << 3),
84
85 REQ_FSEQ_ACTIONS = REQ_FSEQ_PREFLUSH | REQ_FSEQ_DATA |
86 REQ_FSEQ_POSTFLUSH,
87
88 /*
89 * If flush has been pending longer than the following timeout,
90 * it's issued even if flush_data requests are still in flight.
91 */
92 FLUSH_PENDING_TIMEOUT = 5 * HZ,
4fed947c
TH
93};
94
0bae352d
ML
95static bool blk_kick_flush(struct request_queue *q,
96 struct blk_flush_queue *fq);
28e7d184 97
c888a8f9 98static unsigned int blk_flush_policy(unsigned long fflags, struct request *rq)
86db1e29 99{
ae1b1539 100 unsigned int policy = 0;
86db1e29 101
fa1bf42f
JM
102 if (blk_rq_sectors(rq))
103 policy |= REQ_FSEQ_DATA;
104
c888a8f9 105 if (fflags & (1UL << QUEUE_FLAG_WC)) {
28a8f0d3 106 if (rq->cmd_flags & REQ_PREFLUSH)
ae1b1539 107 policy |= REQ_FSEQ_PREFLUSH;
c888a8f9
JA
108 if (!(fflags & (1UL << QUEUE_FLAG_FUA)) &&
109 (rq->cmd_flags & REQ_FUA))
ae1b1539 110 policy |= REQ_FSEQ_POSTFLUSH;
28e7d184 111 }
ae1b1539 112 return policy;
86db1e29
JA
113}
114
ae1b1539 115static unsigned int blk_flush_cur_seq(struct request *rq)
47f70d5a 116{
ae1b1539
TH
117 return 1 << ffz(rq->flush.seq);
118}
47f70d5a 119
ae1b1539
TH
120static void blk_flush_restore_request(struct request *rq)
121{
47f70d5a 122 /*
ae1b1539
TH
123 * After flush data completion, @rq->bio is %NULL but we need to
124 * complete the bio again. @rq->biotail is guaranteed to equal the
125 * original @rq->bio. Restore it.
47f70d5a 126 */
ae1b1539
TH
127 rq->bio = rq->biotail;
128
129 /* make @rq a normal request */
e8064021 130 rq->rq_flags &= ~RQF_FLUSH_SEQ;
4853abaa 131 rq->end_io = rq->flush.saved_end_io;
320ae51f
JA
132}
133
10beafc1 134static bool blk_flush_queue_rq(struct request *rq, bool add_front)
320ae51f 135{
18741986 136 if (rq->q->mq_ops) {
6fca6a61
CH
137 struct request_queue *q = rq->q;
138
139 blk_mq_add_to_requeue_list(rq, add_front);
140 blk_mq_kick_requeue_list(q);
18741986
CH
141 return false;
142 } else {
10beafc1
MS
143 if (add_front)
144 list_add(&rq->queuelist, &rq->q->queue_head);
145 else
146 list_add_tail(&rq->queuelist, &rq->q->queue_head);
18741986
CH
147 return true;
148 }
47f70d5a
TH
149}
150
ae1b1539
TH
151/**
152 * blk_flush_complete_seq - complete flush sequence
153 * @rq: FLUSH/FUA request being sequenced
0bae352d 154 * @fq: flush queue
ae1b1539
TH
155 * @seq: sequences to complete (mask of %REQ_FSEQ_*, can be zero)
156 * @error: whether an error occurred
157 *
158 * @rq just completed @seq part of its flush sequence, record the
159 * completion and trigger the next step.
160 *
161 * CONTEXT:
7c94e1c1 162 * spin_lock_irq(q->queue_lock or fq->mq_flush_lock)
ae1b1539
TH
163 *
164 * RETURNS:
165 * %true if requests were added to the dispatch queue, %false otherwise.
166 */
0bae352d
ML
167static bool blk_flush_complete_seq(struct request *rq,
168 struct blk_flush_queue *fq,
169 unsigned int seq, int error)
86db1e29 170{
ae1b1539 171 struct request_queue *q = rq->q;
7c94e1c1 172 struct list_head *pending = &fq->flush_queue[fq->flush_pending_idx];
320ae51f 173 bool queued = false, kicked;
ae1b1539
TH
174
175 BUG_ON(rq->flush.seq & seq);
176 rq->flush.seq |= seq;
177
178 if (likely(!error))
179 seq = blk_flush_cur_seq(rq);
180 else
181 seq = REQ_FSEQ_DONE;
182
183 switch (seq) {
184 case REQ_FSEQ_PREFLUSH:
185 case REQ_FSEQ_POSTFLUSH:
186 /* queue for flush */
187 if (list_empty(pending))
7c94e1c1 188 fq->flush_pending_since = jiffies;
ae1b1539
TH
189 list_move_tail(&rq->flush.list, pending);
190 break;
191
192 case REQ_FSEQ_DATA:
7c94e1c1 193 list_move_tail(&rq->flush.list, &fq->flush_data_in_flight);
10beafc1 194 queued = blk_flush_queue_rq(rq, true);
ae1b1539
TH
195 break;
196
197 case REQ_FSEQ_DONE:
198 /*
199 * @rq was previously adjusted by blk_flush_issue() for
200 * flush sequencing and may already have gone through the
201 * flush data request completion path. Restore @rq for
202 * normal completion and end it.
203 */
204 BUG_ON(!list_empty(&rq->queuelist));
205 list_del_init(&rq->flush.list);
206 blk_flush_restore_request(rq);
320ae51f 207 if (q->mq_ops)
c8a446ad 208 blk_mq_end_request(rq, error);
320ae51f
JA
209 else
210 __blk_end_request_all(rq, error);
ae1b1539
TH
211 break;
212
213 default:
214 BUG();
215 }
216
0bae352d 217 kicked = blk_kick_flush(q, fq);
320ae51f 218 return kicked | queued;
86db1e29
JA
219}
220
ae1b1539 221static void flush_end_io(struct request *flush_rq, int error)
86db1e29 222{
ae1b1539 223 struct request_queue *q = flush_rq->q;
320ae51f 224 struct list_head *running;
ae1b1539
TH
225 bool queued = false;
226 struct request *rq, *n;
320ae51f 227 unsigned long flags = 0;
e97c293c 228 struct blk_flush_queue *fq = blk_get_flush_queue(q, flush_rq->mq_ctx);
ae1b1539 229
22302375 230 if (q->mq_ops) {
0048b483
ML
231 struct blk_mq_hw_ctx *hctx;
232
233 /* release the tag's ownership to the req cloned from */
7c94e1c1 234 spin_lock_irqsave(&fq->mq_flush_lock, flags);
7d7e0f90 235 hctx = blk_mq_map_queue(q, flush_rq->mq_ctx->cpu);
0048b483 236 blk_mq_tag_set_rq(hctx, flush_rq->tag, fq->orig_rq);
7ddab5de 237 flush_rq->tag = -1;
22302375 238 }
18741986 239
7c94e1c1
ML
240 running = &fq->flush_queue[fq->flush_running_idx];
241 BUG_ON(fq->flush_pending_idx == fq->flush_running_idx);
ae1b1539
TH
242
243 /* account completion of the flush request */
7c94e1c1 244 fq->flush_running_idx ^= 1;
320ae51f
JA
245
246 if (!q->mq_ops)
247 elv_completed_request(q, flush_rq);
ae1b1539
TH
248
249 /* and push the waiting requests to the next stage */
250 list_for_each_entry_safe(rq, n, running, flush.list) {
251 unsigned int seq = blk_flush_cur_seq(rq);
252
253 BUG_ON(seq != REQ_FSEQ_PREFLUSH && seq != REQ_FSEQ_POSTFLUSH);
0bae352d 254 queued |= blk_flush_complete_seq(rq, fq, seq, error);
ae1b1539
TH
255 }
256
47f70d5a 257 /*
3ac0cc45 258 * Kick the queue to avoid stall for two cases:
259 * 1. Moving a request silently to empty queue_head may stall the
260 * queue.
261 * 2. When flush request is running in non-queueable queue, the
262 * queue is hold. Restart the queue after flush request is finished
263 * to avoid stall.
264 * This function is called from request completion path and calling
265 * directly into request_fn may confuse the driver. Always use
266 * kblockd.
47f70d5a 267 */
7c94e1c1 268 if (queued || fq->flush_queue_delayed) {
18741986
CH
269 WARN_ON(q->mq_ops);
270 blk_run_queue_async(q);
320ae51f 271 }
7c94e1c1 272 fq->flush_queue_delayed = 0;
320ae51f 273 if (q->mq_ops)
7c94e1c1 274 spin_unlock_irqrestore(&fq->mq_flush_lock, flags);
320ae51f
JA
275}
276
ae1b1539
TH
277/**
278 * blk_kick_flush - consider issuing flush request
279 * @q: request_queue being kicked
0bae352d 280 * @fq: flush queue
ae1b1539
TH
281 *
282 * Flush related states of @q have changed, consider issuing flush request.
283 * Please read the comment at the top of this file for more info.
284 *
285 * CONTEXT:
7c94e1c1 286 * spin_lock_irq(q->queue_lock or fq->mq_flush_lock)
ae1b1539
TH
287 *
288 * RETURNS:
289 * %true if flush was issued, %false otherwise.
290 */
0bae352d 291static bool blk_kick_flush(struct request_queue *q, struct blk_flush_queue *fq)
86db1e29 292{
7c94e1c1 293 struct list_head *pending = &fq->flush_queue[fq->flush_pending_idx];
ae1b1539
TH
294 struct request *first_rq =
295 list_first_entry(pending, struct request, flush.list);
7c94e1c1 296 struct request *flush_rq = fq->flush_rq;
ae1b1539
TH
297
298 /* C1 described at the top of this file */
7c94e1c1 299 if (fq->flush_pending_idx != fq->flush_running_idx || list_empty(pending))
ae1b1539
TH
300 return false;
301
302 /* C2 and C3 */
7c94e1c1 303 if (!list_empty(&fq->flush_data_in_flight) &&
ae1b1539 304 time_before(jiffies,
7c94e1c1 305 fq->flush_pending_since + FLUSH_PENDING_TIMEOUT))
ae1b1539
TH
306 return false;
307
308 /*
309 * Issue flush and toggle pending_idx. This makes pending_idx
310 * different from running_idx, which means flush is in flight.
311 */
7c94e1c1 312 fq->flush_pending_idx ^= 1;
18741986 313
7ddab5de 314 blk_rq_init(q, flush_rq);
f70ced09
ML
315
316 /*
317 * Borrow tag from the first request since they can't
0048b483
ML
318 * be in flight at the same time. And acquire the tag's
319 * ownership for flush req.
f70ced09
ML
320 */
321 if (q->mq_ops) {
0048b483
ML
322 struct blk_mq_hw_ctx *hctx;
323
f70ced09
ML
324 flush_rq->mq_ctx = first_rq->mq_ctx;
325 flush_rq->tag = first_rq->tag;
0048b483
ML
326 fq->orig_rq = first_rq;
327
7d7e0f90 328 hctx = blk_mq_map_queue(q, first_rq->mq_ctx->cpu);
0048b483 329 blk_mq_tag_set_rq(hctx, first_rq->tag, flush_rq);
f70ced09 330 }
320ae51f 331
7ddab5de 332 flush_rq->cmd_type = REQ_TYPE_FS;
70fd7614 333 flush_rq->cmd_flags = REQ_OP_FLUSH | REQ_PREFLUSH;
e8064021 334 flush_rq->rq_flags |= RQF_FLUSH_SEQ;
7ddab5de
ML
335 flush_rq->rq_disk = first_rq->rq_disk;
336 flush_rq->end_io = flush_end_io;
ae1b1539 337
7ddab5de 338 return blk_flush_queue_rq(flush_rq, false);
86db1e29
JA
339}
340
ae1b1539 341static void flush_data_end_io(struct request *rq, int error)
86db1e29 342{
ae1b1539 343 struct request_queue *q = rq->q;
e97c293c 344 struct blk_flush_queue *fq = blk_get_flush_queue(q, NULL);
ae1b1539 345
e83a46bb
TH
346 /*
347 * After populating an empty queue, kick it to avoid stall. Read
348 * the comment in flush_end_io().
349 */
0bae352d 350 if (blk_flush_complete_seq(rq, fq, REQ_FSEQ_DATA, error))
24ecfbe2 351 blk_run_queue_async(q);
86db1e29
JA
352}
353
320ae51f
JA
354static void mq_flush_data_end_io(struct request *rq, int error)
355{
356 struct request_queue *q = rq->q;
357 struct blk_mq_hw_ctx *hctx;
e97c293c 358 struct blk_mq_ctx *ctx = rq->mq_ctx;
320ae51f 359 unsigned long flags;
e97c293c 360 struct blk_flush_queue *fq = blk_get_flush_queue(q, ctx);
320ae51f 361
7d7e0f90 362 hctx = blk_mq_map_queue(q, ctx->cpu);
320ae51f
JA
363
364 /*
365 * After populating an empty queue, kick it to avoid stall. Read
366 * the comment in flush_end_io().
367 */
7c94e1c1 368 spin_lock_irqsave(&fq->mq_flush_lock, flags);
0bae352d 369 if (blk_flush_complete_seq(rq, fq, REQ_FSEQ_DATA, error))
320ae51f 370 blk_mq_run_hw_queue(hctx, true);
7c94e1c1 371 spin_unlock_irqrestore(&fq->mq_flush_lock, flags);
320ae51f
JA
372}
373
ae1b1539
TH
374/**
375 * blk_insert_flush - insert a new FLUSH/FUA request
376 * @rq: request to insert
377 *
b710a480 378 * To be called from __elv_add_request() for %ELEVATOR_INSERT_FLUSH insertions.
320ae51f 379 * or __blk_mq_run_hw_queue() to dispatch request.
ae1b1539
TH
380 * @rq is being submitted. Analyze what needs to be done and put it on the
381 * right queue.
382 *
383 * CONTEXT:
320ae51f 384 * spin_lock_irq(q->queue_lock) in !mq case
ae1b1539
TH
385 */
386void blk_insert_flush(struct request *rq)
86db1e29 387{
ae1b1539 388 struct request_queue *q = rq->q;
c888a8f9 389 unsigned long fflags = q->queue_flags; /* may change, cache */
ae1b1539 390 unsigned int policy = blk_flush_policy(fflags, rq);
e97c293c 391 struct blk_flush_queue *fq = blk_get_flush_queue(q, rq->mq_ctx);
86db1e29 392
ae1b1539
TH
393 /*
394 * @policy now records what operations need to be done. Adjust
28a8f0d3 395 * REQ_PREFLUSH and FUA for the driver.
ae1b1539 396 */
28a8f0d3 397 rq->cmd_flags &= ~REQ_PREFLUSH;
c888a8f9 398 if (!(fflags & (1UL << QUEUE_FLAG_FUA)))
ae1b1539
TH
399 rq->cmd_flags &= ~REQ_FUA;
400
4853abaa
JM
401 /*
402 * An empty flush handed down from a stacking driver may
403 * translate into nothing if the underlying device does not
404 * advertise a write-back cache. In this case, simply
405 * complete the request.
406 */
407 if (!policy) {
320ae51f 408 if (q->mq_ops)
c8a446ad 409 blk_mq_end_request(rq, 0);
320ae51f
JA
410 else
411 __blk_end_bidi_request(rq, 0, 0, 0);
4853abaa
JM
412 return;
413 }
414
834f9f61 415 BUG_ON(rq->bio != rq->biotail); /*assumes zero or single bio rq */
4853abaa 416
ae1b1539
TH
417 /*
418 * If there's data but flush is not necessary, the request can be
419 * processed directly without going through flush machinery. Queue
420 * for normal execution.
421 */
422 if ((policy & REQ_FSEQ_DATA) &&
423 !(policy & (REQ_FSEQ_PREFLUSH | REQ_FSEQ_POSTFLUSH))) {
320ae51f 424 if (q->mq_ops) {
feb71dae 425 blk_mq_insert_request(rq, false, false, true);
320ae51f 426 } else
dcd8376c 427 list_add_tail(&rq->queuelist, &q->queue_head);
ae1b1539 428 return;
28e7d184 429 }
cde4c406 430
ae1b1539
TH
431 /*
432 * @rq should go through flush machinery. Mark it part of flush
433 * sequence and submit for further processing.
434 */
435 memset(&rq->flush, 0, sizeof(rq->flush));
436 INIT_LIST_HEAD(&rq->flush.list);
e8064021 437 rq->rq_flags |= RQF_FLUSH_SEQ;
4853abaa 438 rq->flush.saved_end_io = rq->end_io; /* Usually NULL */
320ae51f
JA
439 if (q->mq_ops) {
440 rq->end_io = mq_flush_data_end_io;
441
7c94e1c1 442 spin_lock_irq(&fq->mq_flush_lock);
0bae352d 443 blk_flush_complete_seq(rq, fq, REQ_FSEQ_ACTIONS & ~policy, 0);
7c94e1c1 444 spin_unlock_irq(&fq->mq_flush_lock);
320ae51f
JA
445 return;
446 }
ae1b1539
TH
447 rq->end_io = flush_data_end_io;
448
0bae352d 449 blk_flush_complete_seq(rq, fq, REQ_FSEQ_ACTIONS & ~policy, 0);
86db1e29
JA
450}
451
86db1e29
JA
452/**
453 * blkdev_issue_flush - queue a flush
454 * @bdev: blockdev to issue flush for
fbd9b09a 455 * @gfp_mask: memory allocation flags (for bio_alloc)
86db1e29
JA
456 * @error_sector: error sector
457 *
458 * Description:
459 * Issue a flush for the block device in question. Caller can supply
460 * room for storing the error offset in case of a flush error, if they
f17e232e
DM
461 * wish to. If WAIT flag is not passed then caller may check only what
462 * request was pushed in some internal queue for later handling.
86db1e29 463 */
fbd9b09a 464int blkdev_issue_flush(struct block_device *bdev, gfp_t gfp_mask,
dd3932ed 465 sector_t *error_sector)
86db1e29 466{
86db1e29
JA
467 struct request_queue *q;
468 struct bio *bio;
fbd9b09a 469 int ret = 0;
86db1e29
JA
470
471 if (bdev->bd_disk == NULL)
472 return -ENXIO;
473
474 q = bdev_get_queue(bdev);
475 if (!q)
476 return -ENXIO;
477
f10d9f61
DC
478 /*
479 * some block devices may not have their queue correctly set up here
480 * (e.g. loop device without a backing file) and so issuing a flush
481 * here will panic. Ensure there is a request function before issuing
d391a2dd 482 * the flush.
f10d9f61
DC
483 */
484 if (!q->make_request_fn)
485 return -ENXIO;
486
fbd9b09a 487 bio = bio_alloc(gfp_mask, 0);
86db1e29 488 bio->bi_bdev = bdev;
70fd7614 489 bio->bi_opf = REQ_OP_WRITE | REQ_PREFLUSH;
86db1e29 490
4e49ea4a 491 ret = submit_bio_wait(bio);
dd3932ed
CH
492
493 /*
494 * The driver must store the error location in ->bi_sector, if
495 * it supports it. For non-stacked drivers, this should be
496 * copied from blk_rq_pos(rq).
497 */
498 if (error_sector)
4f024f37 499 *error_sector = bio->bi_iter.bi_sector;
86db1e29 500
86db1e29
JA
501 bio_put(bio);
502 return ret;
503}
86db1e29 504EXPORT_SYMBOL(blkdev_issue_flush);
320ae51f 505
f70ced09
ML
506struct blk_flush_queue *blk_alloc_flush_queue(struct request_queue *q,
507 int node, int cmd_size)
320ae51f 508{
7c94e1c1
ML
509 struct blk_flush_queue *fq;
510 int rq_sz = sizeof(struct request);
1bcb1ead 511
f70ced09 512 fq = kzalloc_node(sizeof(*fq), GFP_KERNEL, node);
7c94e1c1
ML
513 if (!fq)
514 goto fail;
1bcb1ead 515
7c94e1c1
ML
516 if (q->mq_ops) {
517 spin_lock_init(&fq->mq_flush_lock);
f70ced09 518 rq_sz = round_up(rq_sz + cmd_size, cache_line_size());
7c94e1c1
ML
519 }
520
f70ced09 521 fq->flush_rq = kzalloc_node(rq_sz, GFP_KERNEL, node);
7c94e1c1
ML
522 if (!fq->flush_rq)
523 goto fail_rq;
524
525 INIT_LIST_HEAD(&fq->flush_queue[0]);
526 INIT_LIST_HEAD(&fq->flush_queue[1]);
527 INIT_LIST_HEAD(&fq->flush_data_in_flight);
528
529 return fq;
530
531 fail_rq:
532 kfree(fq);
533 fail:
534 return NULL;
320ae51f 535}
f3552655 536
ba483388 537void blk_free_flush_queue(struct blk_flush_queue *fq)
f3552655 538{
7c94e1c1
ML
539 /* bio based request queue hasn't flush queue */
540 if (!fq)
541 return;
3c09676c 542
7c94e1c1
ML
543 kfree(fq->flush_rq);
544 kfree(fq);
545}