blkdev.h 57 KB

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  1. #ifndef _LINUX_BLKDEV_H
  2. #define _LINUX_BLKDEV_H
  3. #include <linux/sched.h>
  4. #include <linux/sched/clock.h>
  5. #ifdef CONFIG_BLOCK
  6. #include <linux/major.h>
  7. #include <linux/genhd.h>
  8. #include <linux/list.h>
  9. #include <linux/llist.h>
  10. #include <linux/timer.h>
  11. #include <linux/workqueue.h>
  12. #include <linux/pagemap.h>
  13. #include <linux/backing-dev-defs.h>
  14. #include <linux/wait.h>
  15. #include <linux/mempool.h>
  16. #include <linux/pfn.h>
  17. #include <linux/bio.h>
  18. #include <linux/stringify.h>
  19. #include <linux/gfp.h>
  20. #include <linux/bsg.h>
  21. #include <linux/smp.h>
  22. #include <linux/rcupdate.h>
  23. #include <linux/percpu-refcount.h>
  24. #include <linux/scatterlist.h>
  25. #include <linux/blkzoned.h>
  26. struct module;
  27. struct scsi_ioctl_command;
  28. struct request_queue;
  29. struct elevator_queue;
  30. struct blk_trace;
  31. struct request;
  32. struct sg_io_hdr;
  33. struct bsg_job;
  34. struct blkcg_gq;
  35. struct blk_flush_queue;
  36. struct pr_ops;
  37. struct rq_wb;
  38. struct blk_queue_stats;
  39. struct blk_stat_callback;
  40. #define BLKDEV_MIN_RQ 4
  41. #define BLKDEV_MAX_RQ 128 /* Default maximum */
  42. /*
  43. * Maximum number of blkcg policies allowed to be registered concurrently.
  44. * Defined here to simplify include dependency.
  45. */
  46. #define BLKCG_MAX_POLS 2
  47. typedef void (rq_end_io_fn)(struct request *, int);
  48. #define BLK_RL_SYNCFULL (1U << 0)
  49. #define BLK_RL_ASYNCFULL (1U << 1)
  50. struct request_list {
  51. struct request_queue *q; /* the queue this rl belongs to */
  52. #ifdef CONFIG_BLK_CGROUP
  53. struct blkcg_gq *blkg; /* blkg this request pool belongs to */
  54. #endif
  55. /*
  56. * count[], starved[], and wait[] are indexed by
  57. * BLK_RW_SYNC/BLK_RW_ASYNC
  58. */
  59. int count[2];
  60. int starved[2];
  61. mempool_t *rq_pool;
  62. wait_queue_head_t wait[2];
  63. unsigned int flags;
  64. };
  65. /*
  66. * request flags */
  67. typedef __u32 __bitwise req_flags_t;
  68. /* elevator knows about this request */
  69. #define RQF_SORTED ((__force req_flags_t)(1 << 0))
  70. /* drive already may have started this one */
  71. #define RQF_STARTED ((__force req_flags_t)(1 << 1))
  72. /* uses tagged queueing */
  73. #define RQF_QUEUED ((__force req_flags_t)(1 << 2))
  74. /* may not be passed by ioscheduler */
  75. #define RQF_SOFTBARRIER ((__force req_flags_t)(1 << 3))
  76. /* request for flush sequence */
  77. #define RQF_FLUSH_SEQ ((__force req_flags_t)(1 << 4))
  78. /* merge of different types, fail separately */
  79. #define RQF_MIXED_MERGE ((__force req_flags_t)(1 << 5))
  80. /* track inflight for MQ */
  81. #define RQF_MQ_INFLIGHT ((__force req_flags_t)(1 << 6))
  82. /* don't call prep for this one */
  83. #define RQF_DONTPREP ((__force req_flags_t)(1 << 7))
  84. /* set for "ide_preempt" requests and also for requests for which the SCSI
  85. "quiesce" state must be ignored. */
  86. #define RQF_PREEMPT ((__force req_flags_t)(1 << 8))
  87. /* contains copies of user pages */
  88. #define RQF_COPY_USER ((__force req_flags_t)(1 << 9))
  89. /* vaguely specified driver internal error. Ignored by the block layer */
  90. #define RQF_FAILED ((__force req_flags_t)(1 << 10))
  91. /* don't warn about errors */
  92. #define RQF_QUIET ((__force req_flags_t)(1 << 11))
  93. /* elevator private data attached */
  94. #define RQF_ELVPRIV ((__force req_flags_t)(1 << 12))
  95. /* account I/O stat */
  96. #define RQF_IO_STAT ((__force req_flags_t)(1 << 13))
  97. /* request came from our alloc pool */
  98. #define RQF_ALLOCED ((__force req_flags_t)(1 << 14))
  99. /* runtime pm request */
  100. #define RQF_PM ((__force req_flags_t)(1 << 15))
  101. /* on IO scheduler merge hash */
  102. #define RQF_HASHED ((__force req_flags_t)(1 << 16))
  103. /* IO stats tracking on */
  104. #define RQF_STATS ((__force req_flags_t)(1 << 17))
  105. /* Look at ->special_vec for the actual data payload instead of the
  106. bio chain. */
  107. #define RQF_SPECIAL_PAYLOAD ((__force req_flags_t)(1 << 18))
  108. /* flags that prevent us from merging requests: */
  109. #define RQF_NOMERGE_FLAGS \
  110. (RQF_STARTED | RQF_SOFTBARRIER | RQF_FLUSH_SEQ | RQF_SPECIAL_PAYLOAD)
  111. /*
  112. * Try to put the fields that are referenced together in the same cacheline.
  113. *
  114. * If you modify this structure, make sure to update blk_rq_init() and
  115. * especially blk_mq_rq_ctx_init() to take care of the added fields.
  116. */
  117. struct request {
  118. struct list_head queuelist;
  119. union {
  120. struct call_single_data csd;
  121. u64 fifo_time;
  122. };
  123. struct request_queue *q;
  124. struct blk_mq_ctx *mq_ctx;
  125. int cpu;
  126. unsigned int cmd_flags; /* op and common flags */
  127. req_flags_t rq_flags;
  128. int internal_tag;
  129. unsigned long atomic_flags;
  130. /* the following two fields are internal, NEVER access directly */
  131. unsigned int __data_len; /* total data len */
  132. int tag;
  133. sector_t __sector; /* sector cursor */
  134. struct bio *bio;
  135. struct bio *biotail;
  136. /*
  137. * The hash is used inside the scheduler, and killed once the
  138. * request reaches the dispatch list. The ipi_list is only used
  139. * to queue the request for softirq completion, which is long
  140. * after the request has been unhashed (and even removed from
  141. * the dispatch list).
  142. */
  143. union {
  144. struct hlist_node hash; /* merge hash */
  145. struct list_head ipi_list;
  146. };
  147. /*
  148. * The rb_node is only used inside the io scheduler, requests
  149. * are pruned when moved to the dispatch queue. So let the
  150. * completion_data share space with the rb_node.
  151. */
  152. union {
  153. struct rb_node rb_node; /* sort/lookup */
  154. struct bio_vec special_vec;
  155. void *completion_data;
  156. };
  157. /*
  158. * Three pointers are available for the IO schedulers, if they need
  159. * more they have to dynamically allocate it. Flush requests are
  160. * never put on the IO scheduler. So let the flush fields share
  161. * space with the elevator data.
  162. */
  163. union {
  164. struct {
  165. struct io_cq *icq;
  166. void *priv[2];
  167. } elv;
  168. struct {
  169. unsigned int seq;
  170. struct list_head list;
  171. rq_end_io_fn *saved_end_io;
  172. } flush;
  173. };
  174. struct gendisk *rq_disk;
  175. struct hd_struct *part;
  176. unsigned long start_time;
  177. struct blk_issue_stat issue_stat;
  178. #ifdef CONFIG_BLK_CGROUP
  179. struct request_list *rl; /* rl this rq is alloced from */
  180. unsigned long long start_time_ns;
  181. unsigned long long io_start_time_ns; /* when passed to hardware */
  182. #endif
  183. /* Number of scatter-gather DMA addr+len pairs after
  184. * physical address coalescing is performed.
  185. */
  186. unsigned short nr_phys_segments;
  187. #if defined(CONFIG_BLK_DEV_INTEGRITY)
  188. unsigned short nr_integrity_segments;
  189. #endif
  190. unsigned short ioprio;
  191. unsigned int timeout;
  192. void *special; /* opaque pointer available for LLD use */
  193. int errors;
  194. unsigned int extra_len; /* length of alignment and padding */
  195. unsigned long deadline;
  196. struct list_head timeout_list;
  197. /*
  198. * completion callback.
  199. */
  200. rq_end_io_fn *end_io;
  201. void *end_io_data;
  202. /* for bidi */
  203. struct request *next_rq;
  204. };
  205. static inline bool blk_rq_is_scsi(struct request *rq)
  206. {
  207. return req_op(rq) == REQ_OP_SCSI_IN || req_op(rq) == REQ_OP_SCSI_OUT;
  208. }
  209. static inline bool blk_rq_is_private(struct request *rq)
  210. {
  211. return req_op(rq) == REQ_OP_DRV_IN || req_op(rq) == REQ_OP_DRV_OUT;
  212. }
  213. static inline bool blk_rq_is_passthrough(struct request *rq)
  214. {
  215. return blk_rq_is_scsi(rq) || blk_rq_is_private(rq);
  216. }
  217. static inline unsigned short req_get_ioprio(struct request *req)
  218. {
  219. return req->ioprio;
  220. }
  221. #include <linux/elevator.h>
  222. struct blk_queue_ctx;
  223. typedef void (request_fn_proc) (struct request_queue *q);
  224. typedef blk_qc_t (make_request_fn) (struct request_queue *q, struct bio *bio);
  225. typedef int (prep_rq_fn) (struct request_queue *, struct request *);
  226. typedef void (unprep_rq_fn) (struct request_queue *, struct request *);
  227. struct bio_vec;
  228. typedef void (softirq_done_fn)(struct request *);
  229. typedef int (dma_drain_needed_fn)(struct request *);
  230. typedef int (lld_busy_fn) (struct request_queue *q);
  231. typedef int (bsg_job_fn) (struct bsg_job *);
  232. typedef int (init_rq_fn)(struct request_queue *, struct request *, gfp_t);
  233. typedef void (exit_rq_fn)(struct request_queue *, struct request *);
  234. enum blk_eh_timer_return {
  235. BLK_EH_NOT_HANDLED,
  236. BLK_EH_HANDLED,
  237. BLK_EH_RESET_TIMER,
  238. };
  239. typedef enum blk_eh_timer_return (rq_timed_out_fn)(struct request *);
  240. enum blk_queue_state {
  241. Queue_down,
  242. Queue_up,
  243. };
  244. struct blk_queue_tag {
  245. struct request **tag_index; /* map of busy tags */
  246. unsigned long *tag_map; /* bit map of free/busy tags */
  247. int max_depth; /* what we will send to device */
  248. int real_max_depth; /* what the array can hold */
  249. atomic_t refcnt; /* map can be shared */
  250. int alloc_policy; /* tag allocation policy */
  251. int next_tag; /* next tag */
  252. };
  253. #define BLK_TAG_ALLOC_FIFO 0 /* allocate starting from 0 */
  254. #define BLK_TAG_ALLOC_RR 1 /* allocate starting from last allocated tag */
  255. #define BLK_SCSI_MAX_CMDS (256)
  256. #define BLK_SCSI_CMD_PER_LONG (BLK_SCSI_MAX_CMDS / (sizeof(long) * 8))
  257. /*
  258. * Zoned block device models (zoned limit).
  259. */
  260. enum blk_zoned_model {
  261. BLK_ZONED_NONE, /* Regular block device */
  262. BLK_ZONED_HA, /* Host-aware zoned block device */
  263. BLK_ZONED_HM, /* Host-managed zoned block device */
  264. };
  265. struct queue_limits {
  266. unsigned long bounce_pfn;
  267. unsigned long seg_boundary_mask;
  268. unsigned long virt_boundary_mask;
  269. unsigned int max_hw_sectors;
  270. unsigned int max_dev_sectors;
  271. unsigned int chunk_sectors;
  272. unsigned int max_sectors;
  273. unsigned int max_segment_size;
  274. unsigned int physical_block_size;
  275. unsigned int alignment_offset;
  276. unsigned int io_min;
  277. unsigned int io_opt;
  278. unsigned int max_discard_sectors;
  279. unsigned int max_hw_discard_sectors;
  280. unsigned int max_write_same_sectors;
  281. unsigned int max_write_zeroes_sectors;
  282. unsigned int discard_granularity;
  283. unsigned int discard_alignment;
  284. unsigned short logical_block_size;
  285. unsigned short max_segments;
  286. unsigned short max_integrity_segments;
  287. unsigned short max_discard_segments;
  288. unsigned char misaligned;
  289. unsigned char discard_misaligned;
  290. unsigned char cluster;
  291. unsigned char raid_partial_stripes_expensive;
  292. enum blk_zoned_model zoned;
  293. };
  294. #ifdef CONFIG_BLK_DEV_ZONED
  295. struct blk_zone_report_hdr {
  296. unsigned int nr_zones;
  297. u8 padding[60];
  298. };
  299. extern int blkdev_report_zones(struct block_device *bdev,
  300. sector_t sector, struct blk_zone *zones,
  301. unsigned int *nr_zones, gfp_t gfp_mask);
  302. extern int blkdev_reset_zones(struct block_device *bdev, sector_t sectors,
  303. sector_t nr_sectors, gfp_t gfp_mask);
  304. extern int blkdev_report_zones_ioctl(struct block_device *bdev, fmode_t mode,
  305. unsigned int cmd, unsigned long arg);
  306. extern int blkdev_reset_zones_ioctl(struct block_device *bdev, fmode_t mode,
  307. unsigned int cmd, unsigned long arg);
  308. #else /* CONFIG_BLK_DEV_ZONED */
  309. static inline int blkdev_report_zones_ioctl(struct block_device *bdev,
  310. fmode_t mode, unsigned int cmd,
  311. unsigned long arg)
  312. {
  313. return -ENOTTY;
  314. }
  315. static inline int blkdev_reset_zones_ioctl(struct block_device *bdev,
  316. fmode_t mode, unsigned int cmd,
  317. unsigned long arg)
  318. {
  319. return -ENOTTY;
  320. }
  321. #endif /* CONFIG_BLK_DEV_ZONED */
  322. struct request_queue {
  323. /*
  324. * Together with queue_head for cacheline sharing
  325. */
  326. struct list_head queue_head;
  327. struct request *last_merge;
  328. struct elevator_queue *elevator;
  329. int nr_rqs[2]; /* # allocated [a]sync rqs */
  330. int nr_rqs_elvpriv; /* # allocated rqs w/ elvpriv */
  331. struct blk_queue_stats *stats;
  332. struct rq_wb *rq_wb;
  333. /*
  334. * If blkcg is not used, @q->root_rl serves all requests. If blkcg
  335. * is used, root blkg allocates from @q->root_rl and all other
  336. * blkgs from their own blkg->rl. Which one to use should be
  337. * determined using bio_request_list().
  338. */
  339. struct request_list root_rl;
  340. request_fn_proc *request_fn;
  341. make_request_fn *make_request_fn;
  342. prep_rq_fn *prep_rq_fn;
  343. unprep_rq_fn *unprep_rq_fn;
  344. softirq_done_fn *softirq_done_fn;
  345. rq_timed_out_fn *rq_timed_out_fn;
  346. dma_drain_needed_fn *dma_drain_needed;
  347. lld_busy_fn *lld_busy_fn;
  348. init_rq_fn *init_rq_fn;
  349. exit_rq_fn *exit_rq_fn;
  350. const struct blk_mq_ops *mq_ops;
  351. unsigned int *mq_map;
  352. /* sw queues */
  353. struct blk_mq_ctx __percpu *queue_ctx;
  354. unsigned int nr_queues;
  355. unsigned int queue_depth;
  356. /* hw dispatch queues */
  357. struct blk_mq_hw_ctx **queue_hw_ctx;
  358. unsigned int nr_hw_queues;
  359. /*
  360. * Dispatch queue sorting
  361. */
  362. sector_t end_sector;
  363. struct request *boundary_rq;
  364. /*
  365. * Delayed queue handling
  366. */
  367. struct delayed_work delay_work;
  368. struct backing_dev_info *backing_dev_info;
  369. /*
  370. * The queue owner gets to use this for whatever they like.
  371. * ll_rw_blk doesn't touch it.
  372. */
  373. void *queuedata;
  374. /*
  375. * various queue flags, see QUEUE_* below
  376. */
  377. unsigned long queue_flags;
  378. /*
  379. * ida allocated id for this queue. Used to index queues from
  380. * ioctx.
  381. */
  382. int id;
  383. /*
  384. * queue needs bounce pages for pages above this limit
  385. */
  386. gfp_t bounce_gfp;
  387. /*
  388. * protects queue structures from reentrancy. ->__queue_lock should
  389. * _never_ be used directly, it is queue private. always use
  390. * ->queue_lock.
  391. */
  392. spinlock_t __queue_lock;
  393. spinlock_t *queue_lock;
  394. /*
  395. * queue kobject
  396. */
  397. struct kobject kobj;
  398. /*
  399. * mq queue kobject
  400. */
  401. struct kobject mq_kobj;
  402. #ifdef CONFIG_BLK_DEV_INTEGRITY
  403. struct blk_integrity integrity;
  404. #endif /* CONFIG_BLK_DEV_INTEGRITY */
  405. #ifdef CONFIG_PM
  406. struct device *dev;
  407. int rpm_status;
  408. unsigned int nr_pending;
  409. #endif
  410. /*
  411. * queue settings
  412. */
  413. unsigned long nr_requests; /* Max # of requests */
  414. unsigned int nr_congestion_on;
  415. unsigned int nr_congestion_off;
  416. unsigned int nr_batching;
  417. unsigned int dma_drain_size;
  418. void *dma_drain_buffer;
  419. unsigned int dma_pad_mask;
  420. unsigned int dma_alignment;
  421. struct blk_queue_tag *queue_tags;
  422. struct list_head tag_busy_list;
  423. unsigned int nr_sorted;
  424. unsigned int in_flight[2];
  425. /*
  426. * Number of active block driver functions for which blk_drain_queue()
  427. * must wait. Must be incremented around functions that unlock the
  428. * queue_lock internally, e.g. scsi_request_fn().
  429. */
  430. unsigned int request_fn_active;
  431. unsigned int rq_timeout;
  432. int poll_nsec;
  433. struct blk_stat_callback *poll_cb;
  434. struct blk_rq_stat poll_stat[2];
  435. struct timer_list timeout;
  436. struct work_struct timeout_work;
  437. struct list_head timeout_list;
  438. struct list_head icq_list;
  439. #ifdef CONFIG_BLK_CGROUP
  440. DECLARE_BITMAP (blkcg_pols, BLKCG_MAX_POLS);
  441. struct blkcg_gq *root_blkg;
  442. struct list_head blkg_list;
  443. #endif
  444. struct queue_limits limits;
  445. /*
  446. * sg stuff
  447. */
  448. unsigned int sg_timeout;
  449. unsigned int sg_reserved_size;
  450. int node;
  451. #ifdef CONFIG_BLK_DEV_IO_TRACE
  452. struct blk_trace *blk_trace;
  453. #endif
  454. /*
  455. * for flush operations
  456. */
  457. struct blk_flush_queue *fq;
  458. struct list_head requeue_list;
  459. spinlock_t requeue_lock;
  460. struct delayed_work requeue_work;
  461. struct mutex sysfs_lock;
  462. int bypass_depth;
  463. atomic_t mq_freeze_depth;
  464. #if defined(CONFIG_BLK_DEV_BSG)
  465. bsg_job_fn *bsg_job_fn;
  466. int bsg_job_size;
  467. struct bsg_class_device bsg_dev;
  468. #endif
  469. #ifdef CONFIG_BLK_DEV_THROTTLING
  470. /* Throttle data */
  471. struct throtl_data *td;
  472. #endif
  473. struct rcu_head rcu_head;
  474. wait_queue_head_t mq_freeze_wq;
  475. struct percpu_ref q_usage_counter;
  476. struct list_head all_q_node;
  477. struct blk_mq_tag_set *tag_set;
  478. struct list_head tag_set_list;
  479. struct bio_set *bio_split;
  480. #ifdef CONFIG_BLK_DEBUG_FS
  481. struct dentry *debugfs_dir;
  482. struct dentry *mq_debugfs_dir;
  483. #endif
  484. bool mq_sysfs_init_done;
  485. size_t cmd_size;
  486. void *rq_alloc_data;
  487. };
  488. #define QUEUE_FLAG_QUEUED 1 /* uses generic tag queueing */
  489. #define QUEUE_FLAG_STOPPED 2 /* queue is stopped */
  490. #define QUEUE_FLAG_SYNCFULL 3 /* read queue has been filled */
  491. #define QUEUE_FLAG_ASYNCFULL 4 /* write queue has been filled */
  492. #define QUEUE_FLAG_DYING 5 /* queue being torn down */
  493. #define QUEUE_FLAG_BYPASS 6 /* act as dumb FIFO queue */
  494. #define QUEUE_FLAG_BIDI 7 /* queue supports bidi requests */
  495. #define QUEUE_FLAG_NOMERGES 8 /* disable merge attempts */
  496. #define QUEUE_FLAG_SAME_COMP 9 /* complete on same CPU-group */
  497. #define QUEUE_FLAG_FAIL_IO 10 /* fake timeout */
  498. #define QUEUE_FLAG_STACKABLE 11 /* supports request stacking */
  499. #define QUEUE_FLAG_NONROT 12 /* non-rotational device (SSD) */
  500. #define QUEUE_FLAG_VIRT QUEUE_FLAG_NONROT /* paravirt device */
  501. #define QUEUE_FLAG_IO_STAT 13 /* do IO stats */
  502. #define QUEUE_FLAG_DISCARD 14 /* supports DISCARD */
  503. #define QUEUE_FLAG_NOXMERGES 15 /* No extended merges */
  504. #define QUEUE_FLAG_ADD_RANDOM 16 /* Contributes to random pool */
  505. #define QUEUE_FLAG_SECERASE 17 /* supports secure erase */
  506. #define QUEUE_FLAG_SAME_FORCE 18 /* force complete on same CPU */
  507. #define QUEUE_FLAG_DEAD 19 /* queue tear-down finished */
  508. #define QUEUE_FLAG_INIT_DONE 20 /* queue is initialized */
  509. #define QUEUE_FLAG_NO_SG_MERGE 21 /* don't attempt to merge SG segments*/
  510. #define QUEUE_FLAG_POLL 22 /* IO polling enabled if set */
  511. #define QUEUE_FLAG_WC 23 /* Write back caching */
  512. #define QUEUE_FLAG_FUA 24 /* device supports FUA writes */
  513. #define QUEUE_FLAG_FLUSH_NQ 25 /* flush not queueuable */
  514. #define QUEUE_FLAG_DAX 26 /* device supports DAX */
  515. #define QUEUE_FLAG_STATS 27 /* track rq completion times */
  516. #define QUEUE_FLAG_POLL_STATS 28 /* collecting stats for hybrid polling */
  517. #define QUEUE_FLAG_REGISTERED 29 /* queue has been registered to a disk */
  518. #define QUEUE_FLAG_DEFAULT ((1 << QUEUE_FLAG_IO_STAT) | \
  519. (1 << QUEUE_FLAG_STACKABLE) | \
  520. (1 << QUEUE_FLAG_SAME_COMP) | \
  521. (1 << QUEUE_FLAG_ADD_RANDOM))
  522. #define QUEUE_FLAG_MQ_DEFAULT ((1 << QUEUE_FLAG_IO_STAT) | \
  523. (1 << QUEUE_FLAG_STACKABLE) | \
  524. (1 << QUEUE_FLAG_SAME_COMP) | \
  525. (1 << QUEUE_FLAG_POLL))
  526. static inline void queue_lockdep_assert_held(struct request_queue *q)
  527. {
  528. if (q->queue_lock)
  529. lockdep_assert_held(q->queue_lock);
  530. }
  531. static inline void queue_flag_set_unlocked(unsigned int flag,
  532. struct request_queue *q)
  533. {
  534. __set_bit(flag, &q->queue_flags);
  535. }
  536. static inline int queue_flag_test_and_clear(unsigned int flag,
  537. struct request_queue *q)
  538. {
  539. queue_lockdep_assert_held(q);
  540. if (test_bit(flag, &q->queue_flags)) {
  541. __clear_bit(flag, &q->queue_flags);
  542. return 1;
  543. }
  544. return 0;
  545. }
  546. static inline int queue_flag_test_and_set(unsigned int flag,
  547. struct request_queue *q)
  548. {
  549. queue_lockdep_assert_held(q);
  550. if (!test_bit(flag, &q->queue_flags)) {
  551. __set_bit(flag, &q->queue_flags);
  552. return 0;
  553. }
  554. return 1;
  555. }
  556. static inline void queue_flag_set(unsigned int flag, struct request_queue *q)
  557. {
  558. queue_lockdep_assert_held(q);
  559. __set_bit(flag, &q->queue_flags);
  560. }
  561. static inline void queue_flag_clear_unlocked(unsigned int flag,
  562. struct request_queue *q)
  563. {
  564. __clear_bit(flag, &q->queue_flags);
  565. }
  566. static inline int queue_in_flight(struct request_queue *q)
  567. {
  568. return q->in_flight[0] + q->in_flight[1];
  569. }
  570. static inline void queue_flag_clear(unsigned int flag, struct request_queue *q)
  571. {
  572. queue_lockdep_assert_held(q);
  573. __clear_bit(flag, &q->queue_flags);
  574. }
  575. #define blk_queue_tagged(q) test_bit(QUEUE_FLAG_QUEUED, &(q)->queue_flags)
  576. #define blk_queue_stopped(q) test_bit(QUEUE_FLAG_STOPPED, &(q)->queue_flags)
  577. #define blk_queue_dying(q) test_bit(QUEUE_FLAG_DYING, &(q)->queue_flags)
  578. #define blk_queue_dead(q) test_bit(QUEUE_FLAG_DEAD, &(q)->queue_flags)
  579. #define blk_queue_bypass(q) test_bit(QUEUE_FLAG_BYPASS, &(q)->queue_flags)
  580. #define blk_queue_init_done(q) test_bit(QUEUE_FLAG_INIT_DONE, &(q)->queue_flags)
  581. #define blk_queue_nomerges(q) test_bit(QUEUE_FLAG_NOMERGES, &(q)->queue_flags)
  582. #define blk_queue_noxmerges(q) \
  583. test_bit(QUEUE_FLAG_NOXMERGES, &(q)->queue_flags)
  584. #define blk_queue_nonrot(q) test_bit(QUEUE_FLAG_NONROT, &(q)->queue_flags)
  585. #define blk_queue_io_stat(q) test_bit(QUEUE_FLAG_IO_STAT, &(q)->queue_flags)
  586. #define blk_queue_add_random(q) test_bit(QUEUE_FLAG_ADD_RANDOM, &(q)->queue_flags)
  587. #define blk_queue_stackable(q) \
  588. test_bit(QUEUE_FLAG_STACKABLE, &(q)->queue_flags)
  589. #define blk_queue_discard(q) test_bit(QUEUE_FLAG_DISCARD, &(q)->queue_flags)
  590. #define blk_queue_secure_erase(q) \
  591. (test_bit(QUEUE_FLAG_SECERASE, &(q)->queue_flags))
  592. #define blk_queue_dax(q) test_bit(QUEUE_FLAG_DAX, &(q)->queue_flags)
  593. #define blk_noretry_request(rq) \
  594. ((rq)->cmd_flags & (REQ_FAILFAST_DEV|REQ_FAILFAST_TRANSPORT| \
  595. REQ_FAILFAST_DRIVER))
  596. static inline bool blk_account_rq(struct request *rq)
  597. {
  598. return (rq->rq_flags & RQF_STARTED) && !blk_rq_is_passthrough(rq);
  599. }
  600. #define blk_rq_cpu_valid(rq) ((rq)->cpu != -1)
  601. #define blk_bidi_rq(rq) ((rq)->next_rq != NULL)
  602. /* rq->queuelist of dequeued request must be list_empty() */
  603. #define blk_queued_rq(rq) (!list_empty(&(rq)->queuelist))
  604. #define list_entry_rq(ptr) list_entry((ptr), struct request, queuelist)
  605. #define rq_data_dir(rq) (op_is_write(req_op(rq)) ? WRITE : READ)
  606. /*
  607. * Driver can handle struct request, if it either has an old style
  608. * request_fn defined, or is blk-mq based.
  609. */
  610. static inline bool queue_is_rq_based(struct request_queue *q)
  611. {
  612. return q->request_fn || q->mq_ops;
  613. }
  614. static inline unsigned int blk_queue_cluster(struct request_queue *q)
  615. {
  616. return q->limits.cluster;
  617. }
  618. static inline enum blk_zoned_model
  619. blk_queue_zoned_model(struct request_queue *q)
  620. {
  621. return q->limits.zoned;
  622. }
  623. static inline bool blk_queue_is_zoned(struct request_queue *q)
  624. {
  625. switch (blk_queue_zoned_model(q)) {
  626. case BLK_ZONED_HA:
  627. case BLK_ZONED_HM:
  628. return true;
  629. default:
  630. return false;
  631. }
  632. }
  633. static inline unsigned int blk_queue_zone_sectors(struct request_queue *q)
  634. {
  635. return blk_queue_is_zoned(q) ? q->limits.chunk_sectors : 0;
  636. }
  637. static inline bool rq_is_sync(struct request *rq)
  638. {
  639. return op_is_sync(rq->cmd_flags);
  640. }
  641. static inline bool blk_rl_full(struct request_list *rl, bool sync)
  642. {
  643. unsigned int flag = sync ? BLK_RL_SYNCFULL : BLK_RL_ASYNCFULL;
  644. return rl->flags & flag;
  645. }
  646. static inline void blk_set_rl_full(struct request_list *rl, bool sync)
  647. {
  648. unsigned int flag = sync ? BLK_RL_SYNCFULL : BLK_RL_ASYNCFULL;
  649. rl->flags |= flag;
  650. }
  651. static inline void blk_clear_rl_full(struct request_list *rl, bool sync)
  652. {
  653. unsigned int flag = sync ? BLK_RL_SYNCFULL : BLK_RL_ASYNCFULL;
  654. rl->flags &= ~flag;
  655. }
  656. static inline bool rq_mergeable(struct request *rq)
  657. {
  658. if (blk_rq_is_passthrough(rq))
  659. return false;
  660. if (req_op(rq) == REQ_OP_FLUSH)
  661. return false;
  662. if (req_op(rq) == REQ_OP_WRITE_ZEROES)
  663. return false;
  664. if (rq->cmd_flags & REQ_NOMERGE_FLAGS)
  665. return false;
  666. if (rq->rq_flags & RQF_NOMERGE_FLAGS)
  667. return false;
  668. return true;
  669. }
  670. static inline bool blk_write_same_mergeable(struct bio *a, struct bio *b)
  671. {
  672. if (bio_data(a) == bio_data(b))
  673. return true;
  674. return false;
  675. }
  676. static inline unsigned int blk_queue_depth(struct request_queue *q)
  677. {
  678. if (q->queue_depth)
  679. return q->queue_depth;
  680. return q->nr_requests;
  681. }
  682. /*
  683. * q->prep_rq_fn return values
  684. */
  685. enum {
  686. BLKPREP_OK, /* serve it */
  687. BLKPREP_KILL, /* fatal error, kill, return -EIO */
  688. BLKPREP_DEFER, /* leave on queue */
  689. BLKPREP_INVALID, /* invalid command, kill, return -EREMOTEIO */
  690. };
  691. extern unsigned long blk_max_low_pfn, blk_max_pfn;
  692. /*
  693. * standard bounce addresses:
  694. *
  695. * BLK_BOUNCE_HIGH : bounce all highmem pages
  696. * BLK_BOUNCE_ANY : don't bounce anything
  697. * BLK_BOUNCE_ISA : bounce pages above ISA DMA boundary
  698. */
  699. #if BITS_PER_LONG == 32
  700. #define BLK_BOUNCE_HIGH ((u64)blk_max_low_pfn << PAGE_SHIFT)
  701. #else
  702. #define BLK_BOUNCE_HIGH -1ULL
  703. #endif
  704. #define BLK_BOUNCE_ANY (-1ULL)
  705. #define BLK_BOUNCE_ISA (DMA_BIT_MASK(24))
  706. /*
  707. * default timeout for SG_IO if none specified
  708. */
  709. #define BLK_DEFAULT_SG_TIMEOUT (60 * HZ)
  710. #define BLK_MIN_SG_TIMEOUT (7 * HZ)
  711. #ifdef CONFIG_BOUNCE
  712. extern int init_emergency_isa_pool(void);
  713. extern void blk_queue_bounce(struct request_queue *q, struct bio **bio);
  714. #else
  715. static inline int init_emergency_isa_pool(void)
  716. {
  717. return 0;
  718. }
  719. static inline void blk_queue_bounce(struct request_queue *q, struct bio **bio)
  720. {
  721. }
  722. #endif /* CONFIG_MMU */
  723. struct rq_map_data {
  724. struct page **pages;
  725. int page_order;
  726. int nr_entries;
  727. unsigned long offset;
  728. int null_mapped;
  729. int from_user;
  730. };
  731. struct req_iterator {
  732. struct bvec_iter iter;
  733. struct bio *bio;
  734. };
  735. /* This should not be used directly - use rq_for_each_segment */
  736. #define for_each_bio(_bio) \
  737. for (; _bio; _bio = _bio->bi_next)
  738. #define __rq_for_each_bio(_bio, rq) \
  739. if ((rq->bio)) \
  740. for (_bio = (rq)->bio; _bio; _bio = _bio->bi_next)
  741. #define rq_for_each_segment(bvl, _rq, _iter) \
  742. __rq_for_each_bio(_iter.bio, _rq) \
  743. bio_for_each_segment(bvl, _iter.bio, _iter.iter)
  744. #define rq_iter_last(bvec, _iter) \
  745. (_iter.bio->bi_next == NULL && \
  746. bio_iter_last(bvec, _iter.iter))
  747. #ifndef ARCH_IMPLEMENTS_FLUSH_DCACHE_PAGE
  748. # error "You should define ARCH_IMPLEMENTS_FLUSH_DCACHE_PAGE for your platform"
  749. #endif
  750. #if ARCH_IMPLEMENTS_FLUSH_DCACHE_PAGE
  751. extern void rq_flush_dcache_pages(struct request *rq);
  752. #else
  753. static inline void rq_flush_dcache_pages(struct request *rq)
  754. {
  755. }
  756. #endif
  757. #ifdef CONFIG_PRINTK
  758. #define vfs_msg(sb, level, fmt, ...) \
  759. __vfs_msg(sb, level, fmt, ##__VA_ARGS__)
  760. #else
  761. #define vfs_msg(sb, level, fmt, ...) \
  762. do { \
  763. no_printk(fmt, ##__VA_ARGS__); \
  764. __vfs_msg(sb, "", " "); \
  765. } while (0)
  766. #endif
  767. extern int blk_register_queue(struct gendisk *disk);
  768. extern void blk_unregister_queue(struct gendisk *disk);
  769. extern blk_qc_t generic_make_request(struct bio *bio);
  770. extern void blk_rq_init(struct request_queue *q, struct request *rq);
  771. extern void blk_put_request(struct request *);
  772. extern void __blk_put_request(struct request_queue *, struct request *);
  773. extern struct request *blk_get_request(struct request_queue *, int, gfp_t);
  774. extern void blk_requeue_request(struct request_queue *, struct request *);
  775. extern int blk_lld_busy(struct request_queue *q);
  776. extern int blk_rq_prep_clone(struct request *rq, struct request *rq_src,
  777. struct bio_set *bs, gfp_t gfp_mask,
  778. int (*bio_ctr)(struct bio *, struct bio *, void *),
  779. void *data);
  780. extern void blk_rq_unprep_clone(struct request *rq);
  781. extern int blk_insert_cloned_request(struct request_queue *q,
  782. struct request *rq);
  783. extern int blk_rq_append_bio(struct request *rq, struct bio *bio);
  784. extern void blk_delay_queue(struct request_queue *, unsigned long);
  785. extern void blk_queue_split(struct request_queue *, struct bio **,
  786. struct bio_set *);
  787. extern void blk_recount_segments(struct request_queue *, struct bio *);
  788. extern int scsi_verify_blk_ioctl(struct block_device *, unsigned int);
  789. extern int scsi_cmd_blk_ioctl(struct block_device *, fmode_t,
  790. unsigned int, void __user *);
  791. extern int scsi_cmd_ioctl(struct request_queue *, struct gendisk *, fmode_t,
  792. unsigned int, void __user *);
  793. extern int sg_scsi_ioctl(struct request_queue *, struct gendisk *, fmode_t,
  794. struct scsi_ioctl_command __user *);
  795. extern int blk_queue_enter(struct request_queue *q, bool nowait);
  796. extern void blk_queue_exit(struct request_queue *q);
  797. extern void blk_start_queue(struct request_queue *q);
  798. extern void blk_start_queue_async(struct request_queue *q);
  799. extern void blk_stop_queue(struct request_queue *q);
  800. extern void blk_sync_queue(struct request_queue *q);
  801. extern void __blk_stop_queue(struct request_queue *q);
  802. extern void __blk_run_queue(struct request_queue *q);
  803. extern void __blk_run_queue_uncond(struct request_queue *q);
  804. extern void blk_run_queue(struct request_queue *);
  805. extern void blk_run_queue_async(struct request_queue *q);
  806. extern void blk_mq_quiesce_queue(struct request_queue *q);
  807. extern int blk_rq_map_user(struct request_queue *, struct request *,
  808. struct rq_map_data *, void __user *, unsigned long,
  809. gfp_t);
  810. extern int blk_rq_unmap_user(struct bio *);
  811. extern int blk_rq_map_kern(struct request_queue *, struct request *, void *, unsigned int, gfp_t);
  812. extern int blk_rq_map_user_iov(struct request_queue *, struct request *,
  813. struct rq_map_data *, const struct iov_iter *,
  814. gfp_t);
  815. extern int blk_execute_rq(struct request_queue *, struct gendisk *,
  816. struct request *, int);
  817. extern void blk_execute_rq_nowait(struct request_queue *, struct gendisk *,
  818. struct request *, int, rq_end_io_fn *);
  819. bool blk_mq_poll(struct request_queue *q, blk_qc_t cookie);
  820. static inline struct request_queue *bdev_get_queue(struct block_device *bdev)
  821. {
  822. return bdev->bd_disk->queue; /* this is never NULL */
  823. }
  824. /*
  825. * blk_rq_pos() : the current sector
  826. * blk_rq_bytes() : bytes left in the entire request
  827. * blk_rq_cur_bytes() : bytes left in the current segment
  828. * blk_rq_err_bytes() : bytes left till the next error boundary
  829. * blk_rq_sectors() : sectors left in the entire request
  830. * blk_rq_cur_sectors() : sectors left in the current segment
  831. */
  832. static inline sector_t blk_rq_pos(const struct request *rq)
  833. {
  834. return rq->__sector;
  835. }
  836. static inline unsigned int blk_rq_bytes(const struct request *rq)
  837. {
  838. return rq->__data_len;
  839. }
  840. static inline int blk_rq_cur_bytes(const struct request *rq)
  841. {
  842. return rq->bio ? bio_cur_bytes(rq->bio) : 0;
  843. }
  844. extern unsigned int blk_rq_err_bytes(const struct request *rq);
  845. static inline unsigned int blk_rq_sectors(const struct request *rq)
  846. {
  847. return blk_rq_bytes(rq) >> 9;
  848. }
  849. static inline unsigned int blk_rq_cur_sectors(const struct request *rq)
  850. {
  851. return blk_rq_cur_bytes(rq) >> 9;
  852. }
  853. /*
  854. * Some commands like WRITE SAME have a payload or data transfer size which
  855. * is different from the size of the request. Any driver that supports such
  856. * commands using the RQF_SPECIAL_PAYLOAD flag needs to use this helper to
  857. * calculate the data transfer size.
  858. */
  859. static inline unsigned int blk_rq_payload_bytes(struct request *rq)
  860. {
  861. if (rq->rq_flags & RQF_SPECIAL_PAYLOAD)
  862. return rq->special_vec.bv_len;
  863. return blk_rq_bytes(rq);
  864. }
  865. static inline unsigned int blk_queue_get_max_sectors(struct request_queue *q,
  866. int op)
  867. {
  868. if (unlikely(op == REQ_OP_DISCARD || op == REQ_OP_SECURE_ERASE))
  869. return min(q->limits.max_discard_sectors, UINT_MAX >> 9);
  870. if (unlikely(op == REQ_OP_WRITE_SAME))
  871. return q->limits.max_write_same_sectors;
  872. if (unlikely(op == REQ_OP_WRITE_ZEROES))
  873. return q->limits.max_write_zeroes_sectors;
  874. return q->limits.max_sectors;
  875. }
  876. /*
  877. * Return maximum size of a request at given offset. Only valid for
  878. * file system requests.
  879. */
  880. static inline unsigned int blk_max_size_offset(struct request_queue *q,
  881. sector_t offset)
  882. {
  883. if (!q->limits.chunk_sectors)
  884. return q->limits.max_sectors;
  885. return q->limits.chunk_sectors -
  886. (offset & (q->limits.chunk_sectors - 1));
  887. }
  888. static inline unsigned int blk_rq_get_max_sectors(struct request *rq,
  889. sector_t offset)
  890. {
  891. struct request_queue *q = rq->q;
  892. if (blk_rq_is_passthrough(rq))
  893. return q->limits.max_hw_sectors;
  894. if (!q->limits.chunk_sectors ||
  895. req_op(rq) == REQ_OP_DISCARD ||
  896. req_op(rq) == REQ_OP_SECURE_ERASE)
  897. return blk_queue_get_max_sectors(q, req_op(rq));
  898. return min(blk_max_size_offset(q, offset),
  899. blk_queue_get_max_sectors(q, req_op(rq)));
  900. }
  901. static inline unsigned int blk_rq_count_bios(struct request *rq)
  902. {
  903. unsigned int nr_bios = 0;
  904. struct bio *bio;
  905. __rq_for_each_bio(bio, rq)
  906. nr_bios++;
  907. return nr_bios;
  908. }
  909. /*
  910. * blk_rq_set_prio - associate a request with prio from ioc
  911. * @rq: request of interest
  912. * @ioc: target iocontext
  913. *
  914. * Assocate request prio with ioc prio so request based drivers
  915. * can leverage priority information.
  916. */
  917. static inline void blk_rq_set_prio(struct request *rq, struct io_context *ioc)
  918. {
  919. if (ioc)
  920. rq->ioprio = ioc->ioprio;
  921. }
  922. /*
  923. * Request issue related functions.
  924. */
  925. extern struct request *blk_peek_request(struct request_queue *q);
  926. extern void blk_start_request(struct request *rq);
  927. extern struct request *blk_fetch_request(struct request_queue *q);
  928. /*
  929. * Request completion related functions.
  930. *
  931. * blk_update_request() completes given number of bytes and updates
  932. * the request without completing it.
  933. *
  934. * blk_end_request() and friends. __blk_end_request() must be called
  935. * with the request queue spinlock acquired.
  936. *
  937. * Several drivers define their own end_request and call
  938. * blk_end_request() for parts of the original function.
  939. * This prevents code duplication in drivers.
  940. */
  941. extern bool blk_update_request(struct request *rq, int error,
  942. unsigned int nr_bytes);
  943. extern void blk_finish_request(struct request *rq, int error);
  944. extern bool blk_end_request(struct request *rq, int error,
  945. unsigned int nr_bytes);
  946. extern void blk_end_request_all(struct request *rq, int error);
  947. extern bool blk_end_request_cur(struct request *rq, int error);
  948. extern bool blk_end_request_err(struct request *rq, int error);
  949. extern bool __blk_end_request(struct request *rq, int error,
  950. unsigned int nr_bytes);
  951. extern void __blk_end_request_all(struct request *rq, int error);
  952. extern bool __blk_end_request_cur(struct request *rq, int error);
  953. extern bool __blk_end_request_err(struct request *rq, int error);
  954. extern void blk_complete_request(struct request *);
  955. extern void __blk_complete_request(struct request *);
  956. extern void blk_abort_request(struct request *);
  957. extern void blk_unprep_request(struct request *);
  958. /*
  959. * Access functions for manipulating queue properties
  960. */
  961. extern struct request_queue *blk_init_queue_node(request_fn_proc *rfn,
  962. spinlock_t *lock, int node_id);
  963. extern struct request_queue *blk_init_queue(request_fn_proc *, spinlock_t *);
  964. extern int blk_init_allocated_queue(struct request_queue *);
  965. extern void blk_cleanup_queue(struct request_queue *);
  966. extern void blk_queue_make_request(struct request_queue *, make_request_fn *);
  967. extern void blk_queue_bounce_limit(struct request_queue *, u64);
  968. extern void blk_queue_max_hw_sectors(struct request_queue *, unsigned int);
  969. extern void blk_queue_chunk_sectors(struct request_queue *, unsigned int);
  970. extern void blk_queue_max_segments(struct request_queue *, unsigned short);
  971. extern void blk_queue_max_discard_segments(struct request_queue *,
  972. unsigned short);
  973. extern void blk_queue_max_segment_size(struct request_queue *, unsigned int);
  974. extern void blk_queue_max_discard_sectors(struct request_queue *q,
  975. unsigned int max_discard_sectors);
  976. extern void blk_queue_max_write_same_sectors(struct request_queue *q,
  977. unsigned int max_write_same_sectors);
  978. extern void blk_queue_max_write_zeroes_sectors(struct request_queue *q,
  979. unsigned int max_write_same_sectors);
  980. extern void blk_queue_logical_block_size(struct request_queue *, unsigned short);
  981. extern void blk_queue_physical_block_size(struct request_queue *, unsigned int);
  982. extern void blk_queue_alignment_offset(struct request_queue *q,
  983. unsigned int alignment);
  984. extern void blk_limits_io_min(struct queue_limits *limits, unsigned int min);
  985. extern void blk_queue_io_min(struct request_queue *q, unsigned int min);
  986. extern void blk_limits_io_opt(struct queue_limits *limits, unsigned int opt);
  987. extern void blk_queue_io_opt(struct request_queue *q, unsigned int opt);
  988. extern void blk_set_queue_depth(struct request_queue *q, unsigned int depth);
  989. extern void blk_set_default_limits(struct queue_limits *lim);
  990. extern void blk_set_stacking_limits(struct queue_limits *lim);
  991. extern int blk_stack_limits(struct queue_limits *t, struct queue_limits *b,
  992. sector_t offset);
  993. extern int bdev_stack_limits(struct queue_limits *t, struct block_device *bdev,
  994. sector_t offset);
  995. extern void disk_stack_limits(struct gendisk *disk, struct block_device *bdev,
  996. sector_t offset);
  997. extern void blk_queue_stack_limits(struct request_queue *t, struct request_queue *b);
  998. extern void blk_queue_dma_pad(struct request_queue *, unsigned int);
  999. extern void blk_queue_update_dma_pad(struct request_queue *, unsigned int);
  1000. extern int blk_queue_dma_drain(struct request_queue *q,
  1001. dma_drain_needed_fn *dma_drain_needed,
  1002. void *buf, unsigned int size);
  1003. extern void blk_queue_lld_busy(struct request_queue *q, lld_busy_fn *fn);
  1004. extern void blk_queue_segment_boundary(struct request_queue *, unsigned long);
  1005. extern void blk_queue_virt_boundary(struct request_queue *, unsigned long);
  1006. extern void blk_queue_prep_rq(struct request_queue *, prep_rq_fn *pfn);
  1007. extern void blk_queue_unprep_rq(struct request_queue *, unprep_rq_fn *ufn);
  1008. extern void blk_queue_dma_alignment(struct request_queue *, int);
  1009. extern void blk_queue_update_dma_alignment(struct request_queue *, int);
  1010. extern void blk_queue_softirq_done(struct request_queue *, softirq_done_fn *);
  1011. extern void blk_queue_rq_timed_out(struct request_queue *, rq_timed_out_fn *);
  1012. extern void blk_queue_rq_timeout(struct request_queue *, unsigned int);
  1013. extern void blk_queue_flush_queueable(struct request_queue *q, bool queueable);
  1014. extern void blk_queue_write_cache(struct request_queue *q, bool enabled, bool fua);
  1015. /*
  1016. * Number of physical segments as sent to the device.
  1017. *
  1018. * Normally this is the number of discontiguous data segments sent by the
  1019. * submitter. But for data-less command like discard we might have no
  1020. * actual data segments submitted, but the driver might have to add it's
  1021. * own special payload. In that case we still return 1 here so that this
  1022. * special payload will be mapped.
  1023. */
  1024. static inline unsigned short blk_rq_nr_phys_segments(struct request *rq)
  1025. {
  1026. if (rq->rq_flags & RQF_SPECIAL_PAYLOAD)
  1027. return 1;
  1028. return rq->nr_phys_segments;
  1029. }
  1030. /*
  1031. * Number of discard segments (or ranges) the driver needs to fill in.
  1032. * Each discard bio merged into a request is counted as one segment.
  1033. */
  1034. static inline unsigned short blk_rq_nr_discard_segments(struct request *rq)
  1035. {
  1036. return max_t(unsigned short, rq->nr_phys_segments, 1);
  1037. }
  1038. extern int blk_rq_map_sg(struct request_queue *, struct request *, struct scatterlist *);
  1039. extern void blk_dump_rq_flags(struct request *, char *);
  1040. extern long nr_blockdev_pages(void);
  1041. bool __must_check blk_get_queue(struct request_queue *);
  1042. struct request_queue *blk_alloc_queue(gfp_t);
  1043. struct request_queue *blk_alloc_queue_node(gfp_t, int);
  1044. extern void blk_put_queue(struct request_queue *);
  1045. extern void blk_set_queue_dying(struct request_queue *);
  1046. /*
  1047. * block layer runtime pm functions
  1048. */
  1049. #ifdef CONFIG_PM
  1050. extern void blk_pm_runtime_init(struct request_queue *q, struct device *dev);
  1051. extern int blk_pre_runtime_suspend(struct request_queue *q);
  1052. extern void blk_post_runtime_suspend(struct request_queue *q, int err);
  1053. extern void blk_pre_runtime_resume(struct request_queue *q);
  1054. extern void blk_post_runtime_resume(struct request_queue *q, int err);
  1055. extern void blk_set_runtime_active(struct request_queue *q);
  1056. #else
  1057. static inline void blk_pm_runtime_init(struct request_queue *q,
  1058. struct device *dev) {}
  1059. static inline int blk_pre_runtime_suspend(struct request_queue *q)
  1060. {
  1061. return -ENOSYS;
  1062. }
  1063. static inline void blk_post_runtime_suspend(struct request_queue *q, int err) {}
  1064. static inline void blk_pre_runtime_resume(struct request_queue *q) {}
  1065. static inline void blk_post_runtime_resume(struct request_queue *q, int err) {}
  1066. static inline void blk_set_runtime_active(struct request_queue *q) {}
  1067. #endif
  1068. /*
  1069. * blk_plug permits building a queue of related requests by holding the I/O
  1070. * fragments for a short period. This allows merging of sequential requests
  1071. * into single larger request. As the requests are moved from a per-task list to
  1072. * the device's request_queue in a batch, this results in improved scalability
  1073. * as the lock contention for request_queue lock is reduced.
  1074. *
  1075. * It is ok not to disable preemption when adding the request to the plug list
  1076. * or when attempting a merge, because blk_schedule_flush_list() will only flush
  1077. * the plug list when the task sleeps by itself. For details, please see
  1078. * schedule() where blk_schedule_flush_plug() is called.
  1079. */
  1080. struct blk_plug {
  1081. struct list_head list; /* requests */
  1082. struct list_head mq_list; /* blk-mq requests */
  1083. struct list_head cb_list; /* md requires an unplug callback */
  1084. };
  1085. #define BLK_MAX_REQUEST_COUNT 16
  1086. #define BLK_PLUG_FLUSH_SIZE (128 * 1024)
  1087. struct blk_plug_cb;
  1088. typedef void (*blk_plug_cb_fn)(struct blk_plug_cb *, bool);
  1089. struct blk_plug_cb {
  1090. struct list_head list;
  1091. blk_plug_cb_fn callback;
  1092. void *data;
  1093. };
  1094. extern struct blk_plug_cb *blk_check_plugged(blk_plug_cb_fn unplug,
  1095. void *data, int size);
  1096. extern void blk_start_plug(struct blk_plug *);
  1097. extern void blk_finish_plug(struct blk_plug *);
  1098. extern void blk_flush_plug_list(struct blk_plug *, bool);
  1099. static inline void blk_flush_plug(struct task_struct *tsk)
  1100. {
  1101. struct blk_plug *plug = tsk->plug;
  1102. if (plug)
  1103. blk_flush_plug_list(plug, false);
  1104. }
  1105. static inline void blk_schedule_flush_plug(struct task_struct *tsk)
  1106. {
  1107. struct blk_plug *plug = tsk->plug;
  1108. if (plug)
  1109. blk_flush_plug_list(plug, true);
  1110. }
  1111. static inline bool blk_needs_flush_plug(struct task_struct *tsk)
  1112. {
  1113. struct blk_plug *plug = tsk->plug;
  1114. return plug &&
  1115. (!list_empty(&plug->list) ||
  1116. !list_empty(&plug->mq_list) ||
  1117. !list_empty(&plug->cb_list));
  1118. }
  1119. /*
  1120. * tag stuff
  1121. */
  1122. extern int blk_queue_start_tag(struct request_queue *, struct request *);
  1123. extern struct request *blk_queue_find_tag(struct request_queue *, int);
  1124. extern void blk_queue_end_tag(struct request_queue *, struct request *);
  1125. extern int blk_queue_init_tags(struct request_queue *, int, struct blk_queue_tag *, int);
  1126. extern void blk_queue_free_tags(struct request_queue *);
  1127. extern int blk_queue_resize_tags(struct request_queue *, int);
  1128. extern void blk_queue_invalidate_tags(struct request_queue *);
  1129. extern struct blk_queue_tag *blk_init_tags(int, int);
  1130. extern void blk_free_tags(struct blk_queue_tag *);
  1131. static inline struct request *blk_map_queue_find_tag(struct blk_queue_tag *bqt,
  1132. int tag)
  1133. {
  1134. if (unlikely(bqt == NULL || tag >= bqt->real_max_depth))
  1135. return NULL;
  1136. return bqt->tag_index[tag];
  1137. }
  1138. extern int blkdev_issue_flush(struct block_device *, gfp_t, sector_t *);
  1139. extern int blkdev_issue_write_same(struct block_device *bdev, sector_t sector,
  1140. sector_t nr_sects, gfp_t gfp_mask, struct page *page);
  1141. #define BLKDEV_DISCARD_SECURE (1 << 0) /* issue a secure erase */
  1142. extern int blkdev_issue_discard(struct block_device *bdev, sector_t sector,
  1143. sector_t nr_sects, gfp_t gfp_mask, unsigned long flags);
  1144. extern int __blkdev_issue_discard(struct block_device *bdev, sector_t sector,
  1145. sector_t nr_sects, gfp_t gfp_mask, int flags,
  1146. struct bio **biop);
  1147. #define BLKDEV_ZERO_NOUNMAP (1 << 0) /* do not free blocks */
  1148. #define BLKDEV_ZERO_NOFALLBACK (1 << 1) /* don't write explicit zeroes */
  1149. extern int __blkdev_issue_zeroout(struct block_device *bdev, sector_t sector,
  1150. sector_t nr_sects, gfp_t gfp_mask, struct bio **biop,
  1151. unsigned flags);
  1152. extern int blkdev_issue_zeroout(struct block_device *bdev, sector_t sector,
  1153. sector_t nr_sects, gfp_t gfp_mask, unsigned flags);
  1154. static inline int sb_issue_discard(struct super_block *sb, sector_t block,
  1155. sector_t nr_blocks, gfp_t gfp_mask, unsigned long flags)
  1156. {
  1157. return blkdev_issue_discard(sb->s_bdev, block << (sb->s_blocksize_bits - 9),
  1158. nr_blocks << (sb->s_blocksize_bits - 9),
  1159. gfp_mask, flags);
  1160. }
  1161. static inline int sb_issue_zeroout(struct super_block *sb, sector_t block,
  1162. sector_t nr_blocks, gfp_t gfp_mask)
  1163. {
  1164. return blkdev_issue_zeroout(sb->s_bdev,
  1165. block << (sb->s_blocksize_bits - 9),
  1166. nr_blocks << (sb->s_blocksize_bits - 9),
  1167. gfp_mask, 0);
  1168. }
  1169. extern int blk_verify_command(unsigned char *cmd, fmode_t has_write_perm);
  1170. enum blk_default_limits {
  1171. BLK_MAX_SEGMENTS = 128,
  1172. BLK_SAFE_MAX_SECTORS = 255,
  1173. BLK_DEF_MAX_SECTORS = 2560,
  1174. BLK_MAX_SEGMENT_SIZE = 65536,
  1175. BLK_SEG_BOUNDARY_MASK = 0xFFFFFFFFUL,
  1176. };
  1177. #define blkdev_entry_to_request(entry) list_entry((entry), struct request, queuelist)
  1178. static inline unsigned long queue_bounce_pfn(struct request_queue *q)
  1179. {
  1180. return q->limits.bounce_pfn;
  1181. }
  1182. static inline unsigned long queue_segment_boundary(struct request_queue *q)
  1183. {
  1184. return q->limits.seg_boundary_mask;
  1185. }
  1186. static inline unsigned long queue_virt_boundary(struct request_queue *q)
  1187. {
  1188. return q->limits.virt_boundary_mask;
  1189. }
  1190. static inline unsigned int queue_max_sectors(struct request_queue *q)
  1191. {
  1192. return q->limits.max_sectors;
  1193. }
  1194. static inline unsigned int queue_max_hw_sectors(struct request_queue *q)
  1195. {
  1196. return q->limits.max_hw_sectors;
  1197. }
  1198. static inline unsigned short queue_max_segments(struct request_queue *q)
  1199. {
  1200. return q->limits.max_segments;
  1201. }
  1202. static inline unsigned short queue_max_discard_segments(struct request_queue *q)
  1203. {
  1204. return q->limits.max_discard_segments;
  1205. }
  1206. static inline unsigned int queue_max_segment_size(struct request_queue *q)
  1207. {
  1208. return q->limits.max_segment_size;
  1209. }
  1210. static inline unsigned short queue_logical_block_size(struct request_queue *q)
  1211. {
  1212. int retval = 512;
  1213. if (q && q->limits.logical_block_size)
  1214. retval = q->limits.logical_block_size;
  1215. return retval;
  1216. }
  1217. static inline unsigned short bdev_logical_block_size(struct block_device *bdev)
  1218. {
  1219. return queue_logical_block_size(bdev_get_queue(bdev));
  1220. }
  1221. static inline unsigned int queue_physical_block_size(struct request_queue *q)
  1222. {
  1223. return q->limits.physical_block_size;
  1224. }
  1225. static inline unsigned int bdev_physical_block_size(struct block_device *bdev)
  1226. {
  1227. return queue_physical_block_size(bdev_get_queue(bdev));
  1228. }
  1229. static inline unsigned int queue_io_min(struct request_queue *q)
  1230. {
  1231. return q->limits.io_min;
  1232. }
  1233. static inline int bdev_io_min(struct block_device *bdev)
  1234. {
  1235. return queue_io_min(bdev_get_queue(bdev));
  1236. }
  1237. static inline unsigned int queue_io_opt(struct request_queue *q)
  1238. {
  1239. return q->limits.io_opt;
  1240. }
  1241. static inline int bdev_io_opt(struct block_device *bdev)
  1242. {
  1243. return queue_io_opt(bdev_get_queue(bdev));
  1244. }
  1245. static inline int queue_alignment_offset(struct request_queue *q)
  1246. {
  1247. if (q->limits.misaligned)
  1248. return -1;
  1249. return q->limits.alignment_offset;
  1250. }
  1251. static inline int queue_limit_alignment_offset(struct queue_limits *lim, sector_t sector)
  1252. {
  1253. unsigned int granularity = max(lim->physical_block_size, lim->io_min);
  1254. unsigned int alignment = sector_div(sector, granularity >> 9) << 9;
  1255. return (granularity + lim->alignment_offset - alignment) % granularity;
  1256. }
  1257. static inline int bdev_alignment_offset(struct block_device *bdev)
  1258. {
  1259. struct request_queue *q = bdev_get_queue(bdev);
  1260. if (q->limits.misaligned)
  1261. return -1;
  1262. if (bdev != bdev->bd_contains)
  1263. return bdev->bd_part->alignment_offset;
  1264. return q->limits.alignment_offset;
  1265. }
  1266. static inline int queue_discard_alignment(struct request_queue *q)
  1267. {
  1268. if (q->limits.discard_misaligned)
  1269. return -1;
  1270. return q->limits.discard_alignment;
  1271. }
  1272. static inline int queue_limit_discard_alignment(struct queue_limits *lim, sector_t sector)
  1273. {
  1274. unsigned int alignment, granularity, offset;
  1275. if (!lim->max_discard_sectors)
  1276. return 0;
  1277. /* Why are these in bytes, not sectors? */
  1278. alignment = lim->discard_alignment >> 9;
  1279. granularity = lim->discard_granularity >> 9;
  1280. if (!granularity)
  1281. return 0;
  1282. /* Offset of the partition start in 'granularity' sectors */
  1283. offset = sector_div(sector, granularity);
  1284. /* And why do we do this modulus *again* in blkdev_issue_discard()? */
  1285. offset = (granularity + alignment - offset) % granularity;
  1286. /* Turn it back into bytes, gaah */
  1287. return offset << 9;
  1288. }
  1289. static inline int bdev_discard_alignment(struct block_device *bdev)
  1290. {
  1291. struct request_queue *q = bdev_get_queue(bdev);
  1292. if (bdev != bdev->bd_contains)
  1293. return bdev->bd_part->discard_alignment;
  1294. return q->limits.discard_alignment;
  1295. }
  1296. static inline unsigned int bdev_write_same(struct block_device *bdev)
  1297. {
  1298. struct request_queue *q = bdev_get_queue(bdev);
  1299. if (q)
  1300. return q->limits.max_write_same_sectors;
  1301. return 0;
  1302. }
  1303. static inline unsigned int bdev_write_zeroes_sectors(struct block_device *bdev)
  1304. {
  1305. struct request_queue *q = bdev_get_queue(bdev);
  1306. if (q)
  1307. return q->limits.max_write_zeroes_sectors;
  1308. return 0;
  1309. }
  1310. static inline enum blk_zoned_model bdev_zoned_model(struct block_device *bdev)
  1311. {
  1312. struct request_queue *q = bdev_get_queue(bdev);
  1313. if (q)
  1314. return blk_queue_zoned_model(q);
  1315. return BLK_ZONED_NONE;
  1316. }
  1317. static inline bool bdev_is_zoned(struct block_device *bdev)
  1318. {
  1319. struct request_queue *q = bdev_get_queue(bdev);
  1320. if (q)
  1321. return blk_queue_is_zoned(q);
  1322. return false;
  1323. }
  1324. static inline unsigned int bdev_zone_sectors(struct block_device *bdev)
  1325. {
  1326. struct request_queue *q = bdev_get_queue(bdev);
  1327. if (q)
  1328. return blk_queue_zone_sectors(q);
  1329. return 0;
  1330. }
  1331. static inline int queue_dma_alignment(struct request_queue *q)
  1332. {
  1333. return q ? q->dma_alignment : 511;
  1334. }
  1335. static inline int blk_rq_aligned(struct request_queue *q, unsigned long addr,
  1336. unsigned int len)
  1337. {
  1338. unsigned int alignment = queue_dma_alignment(q) | q->dma_pad_mask;
  1339. return !(addr & alignment) && !(len & alignment);
  1340. }
  1341. /* assumes size > 256 */
  1342. static inline unsigned int blksize_bits(unsigned int size)
  1343. {
  1344. unsigned int bits = 8;
  1345. do {
  1346. bits++;
  1347. size >>= 1;
  1348. } while (size > 256);
  1349. return bits;
  1350. }
  1351. static inline unsigned int block_size(struct block_device *bdev)
  1352. {
  1353. return bdev->bd_block_size;
  1354. }
  1355. static inline bool queue_flush_queueable(struct request_queue *q)
  1356. {
  1357. return !test_bit(QUEUE_FLAG_FLUSH_NQ, &q->queue_flags);
  1358. }
  1359. typedef struct {struct page *v;} Sector;
  1360. unsigned char *read_dev_sector(struct block_device *, sector_t, Sector *);
  1361. static inline void put_dev_sector(Sector p)
  1362. {
  1363. put_page(p.v);
  1364. }
  1365. static inline bool __bvec_gap_to_prev(struct request_queue *q,
  1366. struct bio_vec *bprv, unsigned int offset)
  1367. {
  1368. return offset ||
  1369. ((bprv->bv_offset + bprv->bv_len) & queue_virt_boundary(q));
  1370. }
  1371. /*
  1372. * Check if adding a bio_vec after bprv with offset would create a gap in
  1373. * the SG list. Most drivers don't care about this, but some do.
  1374. */
  1375. static inline bool bvec_gap_to_prev(struct request_queue *q,
  1376. struct bio_vec *bprv, unsigned int offset)
  1377. {
  1378. if (!queue_virt_boundary(q))
  1379. return false;
  1380. return __bvec_gap_to_prev(q, bprv, offset);
  1381. }
  1382. /*
  1383. * Check if the two bvecs from two bios can be merged to one segment.
  1384. * If yes, no need to check gap between the two bios since the 1st bio
  1385. * and the 1st bvec in the 2nd bio can be handled in one segment.
  1386. */
  1387. static inline bool bios_segs_mergeable(struct request_queue *q,
  1388. struct bio *prev, struct bio_vec *prev_last_bv,
  1389. struct bio_vec *next_first_bv)
  1390. {
  1391. if (!BIOVEC_PHYS_MERGEABLE(prev_last_bv, next_first_bv))
  1392. return false;
  1393. if (!BIOVEC_SEG_BOUNDARY(q, prev_last_bv, next_first_bv))
  1394. return false;
  1395. if (prev->bi_seg_back_size + next_first_bv->bv_len >
  1396. queue_max_segment_size(q))
  1397. return false;
  1398. return true;
  1399. }
  1400. static inline bool bio_will_gap(struct request_queue *q, struct bio *prev,
  1401. struct bio *next)
  1402. {
  1403. if (bio_has_data(prev) && queue_virt_boundary(q)) {
  1404. struct bio_vec pb, nb;
  1405. bio_get_last_bvec(prev, &pb);
  1406. bio_get_first_bvec(next, &nb);
  1407. if (!bios_segs_mergeable(q, prev, &pb, &nb))
  1408. return __bvec_gap_to_prev(q, &pb, nb.bv_offset);
  1409. }
  1410. return false;
  1411. }
  1412. static inline bool req_gap_back_merge(struct request *req, struct bio *bio)
  1413. {
  1414. return bio_will_gap(req->q, req->biotail, bio);
  1415. }
  1416. static inline bool req_gap_front_merge(struct request *req, struct bio *bio)
  1417. {
  1418. return bio_will_gap(req->q, bio, req->bio);
  1419. }
  1420. int kblockd_schedule_work(struct work_struct *work);
  1421. int kblockd_schedule_work_on(int cpu, struct work_struct *work);
  1422. int kblockd_schedule_delayed_work(struct delayed_work *dwork, unsigned long delay);
  1423. int kblockd_schedule_delayed_work_on(int cpu, struct delayed_work *dwork, unsigned long delay);
  1424. #ifdef CONFIG_BLK_CGROUP
  1425. /*
  1426. * This should not be using sched_clock(). A real patch is in progress
  1427. * to fix this up, until that is in place we need to disable preemption
  1428. * around sched_clock() in this function and set_io_start_time_ns().
  1429. */
  1430. static inline void set_start_time_ns(struct request *req)
  1431. {
  1432. preempt_disable();
  1433. req->start_time_ns = sched_clock();
  1434. preempt_enable();
  1435. }
  1436. static inline void set_io_start_time_ns(struct request *req)
  1437. {
  1438. preempt_disable();
  1439. req->io_start_time_ns = sched_clock();
  1440. preempt_enable();
  1441. }
  1442. static inline uint64_t rq_start_time_ns(struct request *req)
  1443. {
  1444. return req->start_time_ns;
  1445. }
  1446. static inline uint64_t rq_io_start_time_ns(struct request *req)
  1447. {
  1448. return req->io_start_time_ns;
  1449. }
  1450. #else
  1451. static inline void set_start_time_ns(struct request *req) {}
  1452. static inline void set_io_start_time_ns(struct request *req) {}
  1453. static inline uint64_t rq_start_time_ns(struct request *req)
  1454. {
  1455. return 0;
  1456. }
  1457. static inline uint64_t rq_io_start_time_ns(struct request *req)
  1458. {
  1459. return 0;
  1460. }
  1461. #endif
  1462. #define MODULE_ALIAS_BLOCKDEV(major,minor) \
  1463. MODULE_ALIAS("block-major-" __stringify(major) "-" __stringify(minor))
  1464. #define MODULE_ALIAS_BLOCKDEV_MAJOR(major) \
  1465. MODULE_ALIAS("block-major-" __stringify(major) "-*")
  1466. #if defined(CONFIG_BLK_DEV_INTEGRITY)
  1467. enum blk_integrity_flags {
  1468. BLK_INTEGRITY_VERIFY = 1 << 0,
  1469. BLK_INTEGRITY_GENERATE = 1 << 1,
  1470. BLK_INTEGRITY_DEVICE_CAPABLE = 1 << 2,
  1471. BLK_INTEGRITY_IP_CHECKSUM = 1 << 3,
  1472. };
  1473. struct blk_integrity_iter {
  1474. void *prot_buf;
  1475. void *data_buf;
  1476. sector_t seed;
  1477. unsigned int data_size;
  1478. unsigned short interval;
  1479. const char *disk_name;
  1480. };
  1481. typedef int (integrity_processing_fn) (struct blk_integrity_iter *);
  1482. struct blk_integrity_profile {
  1483. integrity_processing_fn *generate_fn;
  1484. integrity_processing_fn *verify_fn;
  1485. const char *name;
  1486. };
  1487. extern void blk_integrity_register(struct gendisk *, struct blk_integrity *);
  1488. extern void blk_integrity_unregister(struct gendisk *);
  1489. extern int blk_integrity_compare(struct gendisk *, struct gendisk *);
  1490. extern int blk_rq_map_integrity_sg(struct request_queue *, struct bio *,
  1491. struct scatterlist *);
  1492. extern int blk_rq_count_integrity_sg(struct request_queue *, struct bio *);
  1493. extern bool blk_integrity_merge_rq(struct request_queue *, struct request *,
  1494. struct request *);
  1495. extern bool blk_integrity_merge_bio(struct request_queue *, struct request *,
  1496. struct bio *);
  1497. static inline struct blk_integrity *blk_get_integrity(struct gendisk *disk)
  1498. {
  1499. struct blk_integrity *bi = &disk->queue->integrity;
  1500. if (!bi->profile)
  1501. return NULL;
  1502. return bi;
  1503. }
  1504. static inline
  1505. struct blk_integrity *bdev_get_integrity(struct block_device *bdev)
  1506. {
  1507. return blk_get_integrity(bdev->bd_disk);
  1508. }
  1509. static inline bool blk_integrity_rq(struct request *rq)
  1510. {
  1511. return rq->cmd_flags & REQ_INTEGRITY;
  1512. }
  1513. static inline void blk_queue_max_integrity_segments(struct request_queue *q,
  1514. unsigned int segs)
  1515. {
  1516. q->limits.max_integrity_segments = segs;
  1517. }
  1518. static inline unsigned short
  1519. queue_max_integrity_segments(struct request_queue *q)
  1520. {
  1521. return q->limits.max_integrity_segments;
  1522. }
  1523. static inline bool integrity_req_gap_back_merge(struct request *req,
  1524. struct bio *next)
  1525. {
  1526. struct bio_integrity_payload *bip = bio_integrity(req->bio);
  1527. struct bio_integrity_payload *bip_next = bio_integrity(next);
  1528. return bvec_gap_to_prev(req->q, &bip->bip_vec[bip->bip_vcnt - 1],
  1529. bip_next->bip_vec[0].bv_offset);
  1530. }
  1531. static inline bool integrity_req_gap_front_merge(struct request *req,
  1532. struct bio *bio)
  1533. {
  1534. struct bio_integrity_payload *bip = bio_integrity(bio);
  1535. struct bio_integrity_payload *bip_next = bio_integrity(req->bio);
  1536. return bvec_gap_to_prev(req->q, &bip->bip_vec[bip->bip_vcnt - 1],
  1537. bip_next->bip_vec[0].bv_offset);
  1538. }
  1539. #else /* CONFIG_BLK_DEV_INTEGRITY */
  1540. struct bio;
  1541. struct block_device;
  1542. struct gendisk;
  1543. struct blk_integrity;
  1544. static inline int blk_integrity_rq(struct request *rq)
  1545. {
  1546. return 0;
  1547. }
  1548. static inline int blk_rq_count_integrity_sg(struct request_queue *q,
  1549. struct bio *b)
  1550. {
  1551. return 0;
  1552. }
  1553. static inline int blk_rq_map_integrity_sg(struct request_queue *q,
  1554. struct bio *b,
  1555. struct scatterlist *s)
  1556. {
  1557. return 0;
  1558. }
  1559. static inline struct blk_integrity *bdev_get_integrity(struct block_device *b)
  1560. {
  1561. return NULL;
  1562. }
  1563. static inline struct blk_integrity *blk_get_integrity(struct gendisk *disk)
  1564. {
  1565. return NULL;
  1566. }
  1567. static inline int blk_integrity_compare(struct gendisk *a, struct gendisk *b)
  1568. {
  1569. return 0;
  1570. }
  1571. static inline void blk_integrity_register(struct gendisk *d,
  1572. struct blk_integrity *b)
  1573. {
  1574. }
  1575. static inline void blk_integrity_unregister(struct gendisk *d)
  1576. {
  1577. }
  1578. static inline void blk_queue_max_integrity_segments(struct request_queue *q,
  1579. unsigned int segs)
  1580. {
  1581. }
  1582. static inline unsigned short queue_max_integrity_segments(struct request_queue *q)
  1583. {
  1584. return 0;
  1585. }
  1586. static inline bool blk_integrity_merge_rq(struct request_queue *rq,
  1587. struct request *r1,
  1588. struct request *r2)
  1589. {
  1590. return true;
  1591. }
  1592. static inline bool blk_integrity_merge_bio(struct request_queue *rq,
  1593. struct request *r,
  1594. struct bio *b)
  1595. {
  1596. return true;
  1597. }
  1598. static inline bool integrity_req_gap_back_merge(struct request *req,
  1599. struct bio *next)
  1600. {
  1601. return false;
  1602. }
  1603. static inline bool integrity_req_gap_front_merge(struct request *req,
  1604. struct bio *bio)
  1605. {
  1606. return false;
  1607. }
  1608. #endif /* CONFIG_BLK_DEV_INTEGRITY */
  1609. /**
  1610. * struct blk_dax_ctl - control and output parameters for ->direct_access
  1611. * @sector: (input) offset relative to a block_device
  1612. * @addr: (output) kernel virtual address for @sector populated by driver
  1613. * @pfn: (output) page frame number for @addr populated by driver
  1614. * @size: (input) number of bytes requested
  1615. */
  1616. struct blk_dax_ctl {
  1617. sector_t sector;
  1618. void *addr;
  1619. long size;
  1620. pfn_t pfn;
  1621. };
  1622. struct block_device_operations {
  1623. int (*open) (struct block_device *, fmode_t);
  1624. void (*release) (struct gendisk *, fmode_t);
  1625. int (*rw_page)(struct block_device *, sector_t, struct page *, bool);
  1626. int (*ioctl) (struct block_device *, fmode_t, unsigned, unsigned long);
  1627. int (*compat_ioctl) (struct block_device *, fmode_t, unsigned, unsigned long);
  1628. long (*direct_access)(struct block_device *, sector_t, void **, pfn_t *,
  1629. long);
  1630. unsigned int (*check_events) (struct gendisk *disk,
  1631. unsigned int clearing);
  1632. /* ->media_changed() is DEPRECATED, use ->check_events() instead */
  1633. int (*media_changed) (struct gendisk *);
  1634. void (*unlock_native_capacity) (struct gendisk *);
  1635. int (*revalidate_disk) (struct gendisk *);
  1636. int (*getgeo)(struct block_device *, struct hd_geometry *);
  1637. /* this callback is with swap_lock and sometimes page table lock held */
  1638. void (*swap_slot_free_notify) (struct block_device *, unsigned long);
  1639. struct module *owner;
  1640. const struct pr_ops *pr_ops;
  1641. };
  1642. extern int __blkdev_driver_ioctl(struct block_device *, fmode_t, unsigned int,
  1643. unsigned long);
  1644. extern int bdev_read_page(struct block_device *, sector_t, struct page *);
  1645. extern int bdev_write_page(struct block_device *, sector_t, struct page *,
  1646. struct writeback_control *);
  1647. extern long bdev_direct_access(struct block_device *, struct blk_dax_ctl *);
  1648. extern int bdev_dax_supported(struct super_block *, int);
  1649. extern bool bdev_dax_capable(struct block_device *);
  1650. #else /* CONFIG_BLOCK */
  1651. struct block_device;
  1652. /*
  1653. * stubs for when the block layer is configured out
  1654. */
  1655. #define buffer_heads_over_limit 0
  1656. static inline long nr_blockdev_pages(void)
  1657. {
  1658. return 0;
  1659. }
  1660. struct blk_plug {
  1661. };
  1662. static inline void blk_start_plug(struct blk_plug *plug)
  1663. {
  1664. }
  1665. static inline void blk_finish_plug(struct blk_plug *plug)
  1666. {
  1667. }
  1668. static inline void blk_flush_plug(struct task_struct *task)
  1669. {
  1670. }
  1671. static inline void blk_schedule_flush_plug(struct task_struct *task)
  1672. {
  1673. }
  1674. static inline bool blk_needs_flush_plug(struct task_struct *tsk)
  1675. {
  1676. return false;
  1677. }
  1678. static inline int blkdev_issue_flush(struct block_device *bdev, gfp_t gfp_mask,
  1679. sector_t *error_sector)
  1680. {
  1681. return 0;
  1682. }
  1683. #endif /* CONFIG_BLOCK */
  1684. #endif