]> Git Repo - linux.git/blame - block/blk.h
xfs: AIL doesn't need manual pushing
[linux.git] / block / blk.h
CommitLineData
b2441318 1/* SPDX-License-Identifier: GPL-2.0 */
8324aa91
JA
2#ifndef BLK_INTERNAL_H
3#define BLK_INTERNAL_H
4
a892c8d5 5#include <linux/blk-crypto.h>
9bb33f24 6#include <linux/memblock.h> /* for max_pfn/max_low_pfn */
0eb4db47 7#include <linux/sched/sysctl.h>
08420cf7 8#include <linux/timekeeping.h>
c39ae60d 9#include <xen/xen.h>
a892c8d5 10#include "blk-crypto-internal.h"
a73f730d 11
2e9bc346
CH
12struct elevator_type;
13
0d2602ca
JA
14/* Max future timer expiry for timeouts */
15#define BLK_MAX_TIMEOUT (5 * HZ)
16
18fbda91 17extern struct dentry *blk_debugfs_root;
18fbda91 18
7c94e1c1 19struct blk_flush_queue {
b175c867 20 spinlock_t mq_flush_lock;
7c94e1c1
ML
21 unsigned int flush_pending_idx:1;
22 unsigned int flush_running_idx:1;
8d699663 23 blk_status_t rq_status;
7c94e1c1
ML
24 unsigned long flush_pending_since;
25 struct list_head flush_queue[2];
b175c867 26 unsigned long flush_data_in_flight;
7c94e1c1 27 struct request *flush_rq;
7c94e1c1
ML
28};
29
a9ed27a7 30bool is_flush_rq(struct request *req);
8d699663 31
754a1572
GJ
32struct blk_flush_queue *blk_alloc_flush_queue(int node, int cmd_size,
33 gfp_t flags);
f70ced09 34void blk_free_flush_queue(struct blk_flush_queue *q);
f3552655 35
3ef28e83 36void blk_freeze_queue(struct request_queue *q);
aec89dc5 37void __blk_mq_unfreeze_queue(struct request_queue *q, bool force_atomic);
8e141f9e 38void blk_queue_start_drain(struct request_queue *q);
c98cb5bb 39int __bio_queue_enter(struct request_queue *q, struct bio *bio);
3f98c753 40void submit_bio_noacct_nocheck(struct bio *bio);
0f8e9ecc 41void bio_await_chain(struct bio *bio);
c98cb5bb
JA
42
43static inline bool blk_try_enter_queue(struct request_queue *q, bool pm)
44{
45 rcu_read_lock();
46 if (!percpu_ref_tryget_live_rcu(&q->q_usage_counter))
47 goto fail;
48
49 /*
50 * The code that increments the pm_only counter must ensure that the
51 * counter is globally visible before the queue is unfrozen.
52 */
53 if (blk_queue_pm_only(q) &&
54 (!pm || queue_rpm_status(q) == RPM_SUSPENDED))
55 goto fail_put;
56
57 rcu_read_unlock();
58 return true;
59
60fail_put:
61 blk_queue_exit(q);
62fail:
63 rcu_read_unlock();
64 return false;
65}
66
67static inline int bio_queue_enter(struct bio *bio)
68{
69 struct request_queue *q = bdev_get_queue(bio->bi_bdev);
70
71 if (blk_try_enter_queue(q, false))
72 return 0;
73 return __bio_queue_enter(q, bio);
74}
3ef28e83 75
0eb4db47
KB
76static inline void blk_wait_io(struct completion *done)
77{
78 /* Prevent hang_check timer from firing at us during very long I/O */
79 unsigned long timeout = sysctl_hung_task_timeout_secs * HZ / 2;
80
81 if (timeout)
82 while (!wait_for_completion_io_timeout(done, timeout))
83 ;
84 else
85 wait_for_completion_io(done);
86}
87
dc0b8a57 88#define BIO_INLINE_VECS 4
7a800a20
CH
89struct bio_vec *bvec_alloc(mempool_t *pool, unsigned short *nr_vecs,
90 gfp_t gfp_mask);
91void bvec_free(mempool_t *pool, struct bio_vec *bv, unsigned short nr_vecs);
eec716a1 92
7c8998f7
JC
93bool bvec_try_merge_hw_page(struct request_queue *q, struct bio_vec *bv,
94 struct page *page, unsigned len, unsigned offset,
95 bool *same_page);
96
3dccdae5
CH
97static inline bool biovec_phys_mergeable(struct request_queue *q,
98 struct bio_vec *vec1, struct bio_vec *vec2)
6a9f5f24 99{
3dccdae5 100 unsigned long mask = queue_segment_boundary(q);
6e768461
CH
101 phys_addr_t addr1 = page_to_phys(vec1->bv_page) + vec1->bv_offset;
102 phys_addr_t addr2 = page_to_phys(vec2->bv_page) + vec2->bv_offset;
3dccdae5 103
f630a5d0
AP
104 /*
105 * Merging adjacent physical pages may not work correctly under KMSAN
106 * if their metadata pages aren't adjacent. Just disable merging.
107 */
108 if (IS_ENABLED(CONFIG_KMSAN))
109 return false;
110
3dccdae5 111 if (addr1 + vec1->bv_len != addr2)
6a9f5f24 112 return false;
0383ad43 113 if (xen_domain() && !xen_biovec_phys_mergeable(vec1, vec2->bv_page))
6a9f5f24 114 return false;
3dccdae5
CH
115 if ((addr1 | mask) != ((addr2 + vec2->bv_len - 1) | mask))
116 return false;
6a9f5f24
CH
117 return true;
118}
119
aa261f20 120static inline bool __bvec_gap_to_prev(const struct queue_limits *lim,
27ca1d4e
CH
121 struct bio_vec *bprv, unsigned int offset)
122{
c55ddd90
CH
123 return (offset & lim->virt_boundary_mask) ||
124 ((bprv->bv_offset + bprv->bv_len) & lim->virt_boundary_mask);
27ca1d4e
CH
125}
126
127/*
128 * Check if adding a bio_vec after bprv with offset would create a gap in
129 * the SG list. Most drivers don't care about this, but some do.
130 */
aa261f20 131static inline bool bvec_gap_to_prev(const struct queue_limits *lim,
27ca1d4e
CH
132 struct bio_vec *bprv, unsigned int offset)
133{
c55ddd90 134 if (!lim->virt_boundary_mask)
27ca1d4e 135 return false;
c55ddd90 136 return __bvec_gap_to_prev(lim, bprv, offset);
27ca1d4e
CH
137}
138
badf7f64
CH
139static inline bool rq_mergeable(struct request *rq)
140{
141 if (blk_rq_is_passthrough(rq))
142 return false;
143
144 if (req_op(rq) == REQ_OP_FLUSH)
145 return false;
146
147 if (req_op(rq) == REQ_OP_WRITE_ZEROES)
148 return false;
149
150 if (req_op(rq) == REQ_OP_ZONE_APPEND)
151 return false;
152
153 if (rq->cmd_flags & REQ_NOMERGE_FLAGS)
154 return false;
155 if (rq->rq_flags & RQF_NOMERGE_FLAGS)
156 return false;
157
158 return true;
159}
160
161/*
162 * There are two different ways to handle DISCARD merges:
163 * 1) If max_discard_segments > 1, the driver treats every bio as a range and
164 * send the bios to controller together. The ranges don't need to be
165 * contiguous.
166 * 2) Otherwise, the request will be normal read/write requests. The ranges
167 * need to be contiguous.
168 */
169static inline bool blk_discard_mergable(struct request *req)
170{
171 if (req_op(req) == REQ_OP_DISCARD &&
172 queue_max_discard_segments(req->q) > 1)
173 return true;
174 return false;
175}
176
49d24398
US
177static inline unsigned int blk_rq_get_max_segments(struct request *rq)
178{
179 if (req_op(rq) == REQ_OP_DISCARD)
180 return queue_max_discard_segments(rq->q);
181 return queue_max_segments(rq->q);
182}
183
2a9336c4 184static inline unsigned int blk_queue_get_max_sectors(struct request_queue *q,
77e7ffd7 185 enum req_op op)
2a9336c4
CH
186{
187 if (unlikely(op == REQ_OP_DISCARD || op == REQ_OP_SECURE_ERASE))
188 return min(q->limits.max_discard_sectors,
189 UINT_MAX >> SECTOR_SHIFT);
190
191 if (unlikely(op == REQ_OP_WRITE_ZEROES))
192 return q->limits.max_write_zeroes_sectors;
193
194 return q->limits.max_sectors;
195}
196
5a48fc14
DW
197#ifdef CONFIG_BLK_DEV_INTEGRITY
198void blk_flush_integrity(void);
7c20f116 199bool __bio_integrity_endio(struct bio *);
ece841ab 200void bio_integrity_free(struct bio *bio);
7c20f116
CH
201static inline bool bio_integrity_endio(struct bio *bio)
202{
203 if (bio_integrity(bio))
204 return __bio_integrity_endio(bio);
205 return true;
206}
43b729bf 207
92cf2fd1
CH
208bool blk_integrity_merge_rq(struct request_queue *, struct request *,
209 struct request *);
d59da419
CH
210bool blk_integrity_merge_bio(struct request_queue *, struct request *,
211 struct bio *);
92cf2fd1 212
43b729bf
CH
213static inline bool integrity_req_gap_back_merge(struct request *req,
214 struct bio *next)
215{
216 struct bio_integrity_payload *bip = bio_integrity(req->bio);
217 struct bio_integrity_payload *bip_next = bio_integrity(next);
218
c55ddd90
CH
219 return bvec_gap_to_prev(&req->q->limits,
220 &bip->bip_vec[bip->bip_vcnt - 1],
43b729bf
CH
221 bip_next->bip_vec[0].bv_offset);
222}
223
224static inline bool integrity_req_gap_front_merge(struct request *req,
225 struct bio *bio)
226{
227 struct bio_integrity_payload *bip = bio_integrity(bio);
228 struct bio_integrity_payload *bip_next = bio_integrity(req->bio);
229
c55ddd90
CH
230 return bvec_gap_to_prev(&req->q->limits,
231 &bip->bip_vec[bip->bip_vcnt - 1],
43b729bf
CH
232 bip_next->bip_vec[0].bv_offset);
233}
581e2600 234
ff53cd52 235extern const struct attribute_group blk_integrity_attr_group;
43b729bf 236#else /* CONFIG_BLK_DEV_INTEGRITY */
92cf2fd1
CH
237static inline bool blk_integrity_merge_rq(struct request_queue *rq,
238 struct request *r1, struct request *r2)
239{
240 return true;
241}
d59da419
CH
242static inline bool blk_integrity_merge_bio(struct request_queue *rq,
243 struct request *r, struct bio *b)
244{
245 return true;
246}
43b729bf
CH
247static inline bool integrity_req_gap_back_merge(struct request *req,
248 struct bio *next)
249{
250 return false;
251}
252static inline bool integrity_req_gap_front_merge(struct request *req,
253 struct bio *bio)
254{
255 return false;
256}
257
5a48fc14
DW
258static inline void blk_flush_integrity(void)
259{
260}
7c20f116
CH
261static inline bool bio_integrity_endio(struct bio *bio)
262{
263 return true;
264}
ece841ab
JT
265static inline void bio_integrity_free(struct bio *bio)
266{
267}
43b729bf 268#endif /* CONFIG_BLK_DEV_INTEGRITY */
8324aa91 269
0d2602ca 270unsigned long blk_rq_timeout(unsigned long timeout);
87ee7b11 271void blk_add_timer(struct request *req);
320ae51f 272
dd850ff3
DLM
273enum bio_merge_status {
274 BIO_MERGE_OK,
275 BIO_MERGE_NONE,
276 BIO_MERGE_FAILED,
277};
278
279enum bio_merge_status bio_attempt_back_merge(struct request *req,
280 struct bio *bio, unsigned int nr_segs);
320ae51f 281bool blk_attempt_plug_merge(struct request_queue *q, struct bio *bio,
0c5bcc92 282 unsigned int nr_segs);
bdc6a287
BW
283bool blk_bio_list_merge(struct request_queue *q, struct list_head *list,
284 struct bio *bio, unsigned int nr_segs);
320ae51f 285
ba0ffdd8
JA
286/*
287 * Plug flush limits
288 */
289#define BLK_MAX_REQUEST_COUNT 32
290#define BLK_PLUG_FLUSH_SIZE (128 * 1024)
291
158dbda0
TH
292/*
293 * Internal elevator interface
294 */
e8064021 295#define ELV_ON_HASH(rq) ((rq)->rq_flags & RQF_HASHED)
158dbda0 296
360f2648 297bool blk_insert_flush(struct request *rq);
dd831006 298
8237c01f 299int elevator_switch(struct request_queue *q, struct elevator_type *new_e);
64b36075 300void elevator_disable(struct request_queue *q);
0c6cb3a2 301void elevator_exit(struct request_queue *q);
cecf5d87 302int elv_register_queue(struct request_queue *q, bool uevent);
83d016ac
BVA
303void elv_unregister_queue(struct request_queue *q);
304
3ad5cee5
CH
305ssize_t part_size_show(struct device *dev, struct device_attribute *attr,
306 char *buf);
307ssize_t part_stat_show(struct device *dev, struct device_attribute *attr,
308 char *buf);
309ssize_t part_inflight_show(struct device *dev, struct device_attribute *attr,
310 char *buf);
311ssize_t part_fail_show(struct device *dev, struct device_attribute *attr,
312 char *buf);
313ssize_t part_fail_store(struct device *dev, struct device_attribute *attr,
314 const char *buf, size_t count);
581d4e28
JA
315ssize_t part_timeout_show(struct device *, struct device_attribute *, char *);
316ssize_t part_timeout_store(struct device *, struct device_attribute *,
317 const char *, size_t);
581d4e28 318
c55ddd90 319static inline bool bio_may_exceed_limits(struct bio *bio,
aa261f20 320 const struct queue_limits *lim)
abd45c15
JA
321{
322 switch (bio_op(bio)) {
323 case REQ_OP_DISCARD:
324 case REQ_OP_SECURE_ERASE:
325 case REQ_OP_WRITE_ZEROES:
abd45c15
JA
326 return true; /* non-trivial splitting decisions */
327 default:
328 break;
329 }
330
331 /*
332 * All drivers must accept single-segments bios that are <= PAGE_SIZE.
333 * This is a quick and dirty check that relies on the fact that
334 * bi_io_vec[0] is always valid if a bio has data. The check might
335 * lead to occasional false negatives when bios are cloned, but compared
336 * to the performance impact of cloned bios themselves the loop below
337 * doesn't matter anyway.
338 */
c55ddd90 339 return lim->chunk_sectors || bio->bi_vcnt != 1 ||
abd45c15
JA
340 bio->bi_io_vec->bv_len + bio->bi_io_vec->bv_offset > PAGE_SIZE;
341}
342
aa261f20
BVA
343struct bio *__bio_split_to_limits(struct bio *bio,
344 const struct queue_limits *lim,
345 unsigned int *nr_segs);
14ccb66b
CH
346int ll_back_merge_fn(struct request *req, struct bio *bio,
347 unsigned int nr_segs);
fd2ef39c 348bool blk_attempt_req_merge(struct request_queue *q, struct request *rq,
5e84ea3a 349 struct request *next);
e9cd19c0 350unsigned int blk_recalc_rq_segments(struct request *rq);
050c8ea8 351bool blk_rq_merge_ok(struct request *rq, struct bio *bio);
34fe7c05 352enum elv_merge blk_try_merge(struct request *rq, struct bio *bio);
d6d48196 353
d690cb8a 354int blk_set_default_limits(struct queue_limits *lim);
ff88972c
AB
355int blk_dev_init(void);
356
c2553b58
JA
357/*
358 * Contribute to IO statistics IFF:
359 *
360 * a) it's attached to a gendisk, and
48d9b0d4 361 * b) the queue had IO stats enabled when this request was started
c2553b58 362 */
599d067d 363static inline bool blk_do_io_stat(struct request *rq)
fb8ec18c 364{
41fa7222 365 return (rq->rq_flags & RQF_IO_STAT) && !blk_rq_is_passthrough(rq);
be6bfe36
PB
366}
367
450b7879 368void update_io_ticks(struct block_device *part, unsigned long now, bool end);
99dc4223 369unsigned int part_in_flight(struct block_device *part);
fb8ec18c 370
6cf7677f
CH
371static inline void req_set_nomerge(struct request_queue *q, struct request *req)
372{
373 req->cmd_flags |= REQ_NOMERGE;
374 if (req == q->last_merge)
375 q->last_merge = NULL;
376}
377
f2dbd76a
TH
378/*
379 * Internal io_context interface
380 */
87dd1d63 381struct io_cq *ioc_find_get_icq(struct request_queue *q);
eca5892a 382struct io_cq *ioc_lookup_icq(struct request_queue *q);
5ef16305 383#ifdef CONFIG_BLK_ICQ
7e5a8794 384void ioc_clear_queue(struct request_queue *q);
5ef16305
CH
385#else
386static inline void ioc_clear_queue(struct request_queue *q)
387{
388}
389#endif /* CONFIG_BLK_ICQ */
f2dbd76a 390
51d798cd 391struct bio *__blk_queue_bounce(struct bio *bio, struct request_queue *q);
9bb33f24
CH
392
393static inline bool blk_queue_may_bounce(struct request_queue *q)
394{
395 return IS_ENABLED(CONFIG_BOUNCE) &&
396 q->limits.bounce == BLK_BOUNCE_HIGH &&
397 max_low_pfn >= max_pfn;
398}
399
51d798cd
CH
400static inline struct bio *blk_queue_bounce(struct bio *bio,
401 struct request_queue *q)
3bce016a 402{
51d798cd
CH
403 if (unlikely(blk_queue_may_bounce(q) && bio_has_data(bio)))
404 return __blk_queue_bounce(bio, q);
405 return bio;
3bce016a 406}
3bce016a 407
bf505456 408#ifdef CONFIG_BLK_DEV_ZONED
dd291d77
DLM
409void disk_init_zone_resources(struct gendisk *disk);
410void disk_free_zone_resources(struct gendisk *disk);
411static inline bool bio_zone_write_plugging(struct bio *bio)
412{
413 return bio_flagged(bio, BIO_ZONE_WRITE_PLUGGING);
414}
9b1ce7f0
DLM
415static inline bool bio_is_zone_append(struct bio *bio)
416{
417 return bio_op(bio) == REQ_OP_ZONE_APPEND ||
418 bio_flagged(bio, BIO_EMULATES_ZONE_APPEND);
419}
dd291d77 420void blk_zone_write_plug_bio_merged(struct bio *bio);
096bc7ea 421void blk_zone_write_plug_init_request(struct request *rq);
a0508c36
DLM
422static inline void blk_zone_update_request_bio(struct request *rq,
423 struct bio *bio)
424{
425 /*
426 * For zone append requests, the request sector indicates the location
427 * at which the BIO data was written. Return this value to the BIO
428 * issuer through the BIO iter sector.
9b1ce7f0
DLM
429 * For plugged zone writes, which include emulated zone append, we need
430 * the original BIO sector so that blk_zone_write_plug_bio_endio() can
431 * lookup the zone write plug.
a0508c36 432 */
dd291d77 433 if (req_op(rq) == REQ_OP_ZONE_APPEND || bio_zone_write_plugging(bio))
a0508c36
DLM
434 bio->bi_iter.bi_sector = rq->__sector;
435}
dd291d77
DLM
436void blk_zone_write_plug_bio_endio(struct bio *bio);
437static inline void blk_zone_bio_endio(struct bio *bio)
438{
439 /*
440 * For write BIOs to zoned devices, signal the completion of the BIO so
441 * that the next write BIO can be submitted by zone write plugging.
442 */
443 if (bio_zone_write_plugging(bio))
444 blk_zone_write_plug_bio_endio(bio);
445}
446
347bde9d
DLM
447void blk_zone_write_plug_finish_request(struct request *rq);
448static inline void blk_zone_finish_request(struct request *rq)
dd291d77
DLM
449{
450 if (rq->rq_flags & RQF_ZONE_WRITE_PLUGGING)
347bde9d 451 blk_zone_write_plug_finish_request(rq);
dd291d77 452}
5e4ea834
CH
453int blkdev_report_zones_ioctl(struct block_device *bdev, unsigned int cmd,
454 unsigned long arg);
05bdb996 455int blkdev_zone_mgmt_ioctl(struct block_device *bdev, blk_mode_t mode,
cfb42576
CH
456 unsigned int cmd, unsigned long arg);
457#else /* CONFIG_BLK_DEV_ZONED */
dd291d77
DLM
458static inline void disk_init_zone_resources(struct gendisk *disk)
459{
460}
461static inline void disk_free_zone_resources(struct gendisk *disk)
462{
463}
464static inline bool bio_zone_write_plugging(struct bio *bio)
465{
466 return false;
467}
9b1ce7f0
DLM
468static inline bool bio_is_zone_append(struct bio *bio)
469{
470 return false;
471}
dd291d77
DLM
472static inline void blk_zone_write_plug_bio_merged(struct bio *bio)
473{
474}
096bc7ea 475static inline void blk_zone_write_plug_init_request(struct request *rq)
a0508c36
DLM
476{
477}
478static inline void blk_zone_update_request_bio(struct request *rq,
479 struct bio *bio)
480{
481}
dd291d77
DLM
482static inline void blk_zone_bio_endio(struct bio *bio)
483{
484}
347bde9d 485static inline void blk_zone_finish_request(struct request *rq)
dd291d77
DLM
486{
487}
cfb42576 488static inline int blkdev_report_zones_ioctl(struct block_device *bdev,
5e4ea834 489 unsigned int cmd, unsigned long arg)
cfb42576
CH
490{
491 return -ENOTTY;
492}
493static inline int blkdev_zone_mgmt_ioctl(struct block_device *bdev,
05bdb996 494 blk_mode_t mode, unsigned int cmd, unsigned long arg)
cfb42576
CH
495{
496 return -ENOTTY;
497}
498#endif /* CONFIG_BLK_DEV_ZONED */
499
500struct block_device *bdev_alloc(struct gendisk *disk, u8 partno);
501void bdev_add(struct block_device *bdev, dev_t dev);
2638c208
AV
502void bdev_unhash(struct block_device *bdev);
503void bdev_drop(struct block_device *bdev);
bf505456 504
7c3f828b
CH
505int blk_alloc_ext_minor(void);
506void blk_free_ext_minor(unsigned int minor);
581e2600
CH
507#define ADDPART_FLAG_NONE 0
508#define ADDPART_FLAG_RAID 1
509#define ADDPART_FLAG_WHOLEDISK 2
7f6be376
CH
510int bdev_add_partition(struct gendisk *disk, int partno, sector_t start,
511 sector_t length);
926fbb16 512int bdev_del_partition(struct gendisk *disk, int partno);
3d2e7989
CH
513int bdev_resize_partition(struct gendisk *disk, int partno, sector_t start,
514 sector_t length);
eec1be4c 515void drop_partition(struct block_device *part);
581e2600 516
83794367
DLM
517void bdev_set_nr_sectors(struct block_device *bdev, sector_t sectors);
518
6f8191fd
CH
519struct gendisk *__alloc_disk_node(struct request_queue *q, int node_id,
520 struct lock_class_key *lkclass);
521
e4581105 522int bio_add_hw_page(struct request_queue *q, struct bio *bio,
130879f1 523 struct page *page, unsigned int len, unsigned int offset,
e4581105 524 unsigned int max_sectors, bool *same_page);
130879f1 525
fd363244
DH
526/*
527 * Clean up a page appropriately, where the page may be pinned, may have a
528 * ref taken on it or neither.
529 */
530static inline void bio_release_page(struct bio *bio, struct page *page)
531{
532 if (bio_flagged(bio, BIO_PAGE_PINNED))
533 unpin_user_page(page);
fd363244
DH
534}
535
ad751ba1 536struct request_queue *blk_alloc_queue(struct queue_limits *lim, int node_id);
704b914f 537
05bdb996 538int disk_scan_partitions(struct gendisk *disk, blk_mode_t mode);
da7ba729 539
92e7755e 540int disk_alloc_events(struct gendisk *disk);
d5870edf
CH
541void disk_add_events(struct gendisk *disk);
542void disk_del_events(struct gendisk *disk);
543void disk_release_events(struct gendisk *disk);
926597ff
CH
544void disk_block_events(struct gendisk *disk);
545void disk_unblock_events(struct gendisk *disk);
546void disk_flush_events(struct gendisk *disk, unsigned int mask);
2bc8cda5
CH
547extern struct device_attribute dev_attr_events;
548extern struct device_attribute dev_attr_events_async;
549extern struct device_attribute dev_attr_events_poll_msecs;
d5870edf 550
cc5c516d
CH
551extern struct attribute_group blk_trace_attr_group;
552
05bdb996
CH
553blk_mode_t file_to_blk_mode(struct file *file);
554int truncate_bdev_range(struct block_device *bdev, blk_mode_t mode,
555 loff_t lstart, loff_t lend);
8a709512 556long blkdev_ioctl(struct file *file, unsigned cmd, unsigned long arg);
84b8514b
CH
557long compat_blkdev_ioctl(struct file *file, unsigned cmd, unsigned long arg);
558
cd82cca7
CH
559extern const struct address_space_operations def_blk_aops;
560
22d0c408 561int disk_register_independent_access_ranges(struct gendisk *disk);
a2247f19
DLM
562void disk_unregister_independent_access_ranges(struct gendisk *disk);
563
06c8c691
CH
564#ifdef CONFIG_FAIL_MAKE_REQUEST
565bool should_fail_request(struct block_device *part, unsigned int bytes);
566#else /* CONFIG_FAIL_MAKE_REQUEST */
567static inline bool should_fail_request(struct block_device *part,
568 unsigned int bytes)
569{
570 return false;
571}
572#endif /* CONFIG_FAIL_MAKE_REQUEST */
573
0a467d0f
JA
574/*
575 * Optimized request reference counting. Ideally we'd make timeouts be more
576 * clever, as that's the only reason we need references at all... But until
577 * this happens, this is faster than using refcount_t. Also see:
578 *
579 * abc54d634334 ("io_uring: switch to atomic_t for io_kiocb reference count")
580 */
581#define req_ref_zero_or_close_to_overflow(req) \
582 ((unsigned int) atomic_read(&(req->ref)) + 127u <= 127u)
583
584static inline bool req_ref_inc_not_zero(struct request *req)
585{
586 return atomic_inc_not_zero(&req->ref);
587}
588
589static inline bool req_ref_put_and_test(struct request *req)
590{
591 WARN_ON_ONCE(req_ref_zero_or_close_to_overflow(req));
592 return atomic_dec_and_test(&req->ref);
593}
594
595static inline void req_ref_set(struct request *req, int value)
596{
597 atomic_set(&req->ref, value);
598}
599
600static inline int req_ref_read(struct request *req)
601{
602 return atomic_read(&req->ref);
603}
604
08420cf7
JA
605static inline u64 blk_time_get_ns(void)
606{
da4c8c3d
JA
607 struct blk_plug *plug = current->plug;
608
b874d4aa 609 if (!plug || !in_task())
da4c8c3d
JA
610 return ktime_get_ns();
611
612 /*
613 * 0 could very well be a valid time, but rather than flag "this is
614 * a valid timestamp" separately, just accept that we'll do an extra
615 * ktime_get_ns() if we just happen to get 0 as the current time.
616 */
06b23f92 617 if (!plug->cur_ktime) {
da4c8c3d 618 plug->cur_ktime = ktime_get_ns();
06b23f92
JA
619 current->flags |= PF_BLOCK_TS;
620 }
da4c8c3d 621 return plug->cur_ktime;
08420cf7
JA
622}
623
624static inline ktime_t blk_time_get(void)
625{
626 return ns_to_ktime(blk_time_get_ns());
627}
628
c4e47bbb
JA
629/*
630 * From most significant bit:
631 * 1 bit: reserved for other usage, see below
632 * 12 bits: original size of bio
633 * 51 bits: issue time of bio
634 */
635#define BIO_ISSUE_RES_BITS 1
636#define BIO_ISSUE_SIZE_BITS 12
637#define BIO_ISSUE_RES_SHIFT (64 - BIO_ISSUE_RES_BITS)
638#define BIO_ISSUE_SIZE_SHIFT (BIO_ISSUE_RES_SHIFT - BIO_ISSUE_SIZE_BITS)
639#define BIO_ISSUE_TIME_MASK ((1ULL << BIO_ISSUE_SIZE_SHIFT) - 1)
640#define BIO_ISSUE_SIZE_MASK \
641 (((1ULL << BIO_ISSUE_SIZE_BITS) - 1) << BIO_ISSUE_SIZE_SHIFT)
642#define BIO_ISSUE_RES_MASK (~((1ULL << BIO_ISSUE_RES_SHIFT) - 1))
643
644/* Reserved bit for blk-throtl */
645#define BIO_ISSUE_THROTL_SKIP_LATENCY (1ULL << 63)
646
647static inline u64 __bio_issue_time(u64 time)
648{
649 return time & BIO_ISSUE_TIME_MASK;
650}
651
652static inline u64 bio_issue_time(struct bio_issue *issue)
653{
654 return __bio_issue_time(issue->value);
655}
656
657static inline sector_t bio_issue_size(struct bio_issue *issue)
658{
659 return ((issue->value & BIO_ISSUE_SIZE_MASK) >> BIO_ISSUE_SIZE_SHIFT);
660}
661
662static inline void bio_issue_init(struct bio_issue *issue,
663 sector_t size)
664{
665 size &= (1ULL << BIO_ISSUE_SIZE_BITS) - 1;
666 issue->value = ((issue->value & BIO_ISSUE_RES_MASK) |
08420cf7 667 (blk_time_get_ns() & BIO_ISSUE_TIME_MASK) |
c4e47bbb
JA
668 ((u64)size << BIO_ISSUE_SIZE_SHIFT));
669}
670
7c09a4ed 671void bdev_release(struct file *bdev_file);
a56aefca
CB
672int bdev_open(struct block_device *bdev, blk_mode_t mode, void *holder,
673 const struct blk_holder_ops *hops, struct file *bdev_file);
674int bdev_permission(dev_t dev, blk_mode_t mode, void *holder);
1ddeeb2a 675
bc9fcbf9 676#endif /* BLK_INTERNAL_H */
This page took 0.769829 seconds and 4 git commands to generate.