md.h 17 KB

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  1. /*
  2. md_k.h : kernel internal structure of the Linux MD driver
  3. Copyright (C) 1996-98 Ingo Molnar, Gadi Oxman
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of the GNU General Public License as published by
  6. the Free Software Foundation; either version 2, or (at your option)
  7. any later version.
  8. You should have received a copy of the GNU General Public License
  9. (for example /usr/src/linux/COPYING); if not, write to the Free
  10. Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  11. */
  12. #ifndef _MD_MD_H
  13. #define _MD_MD_H
  14. #include <linux/blkdev.h>
  15. #include <linux/kobject.h>
  16. #include <linux/list.h>
  17. #include <linux/mm.h>
  18. #include <linux/mutex.h>
  19. #include <linux/timer.h>
  20. #include <linux/wait.h>
  21. #include <linux/workqueue.h>
  22. #define MaxSector (~(sector_t)0)
  23. typedef struct mddev_s mddev_t;
  24. typedef struct mdk_rdev_s mdk_rdev_t;
  25. /* generic plugging support - like that provided with request_queue,
  26. * but does not require a request_queue
  27. */
  28. struct plug_handle {
  29. void (*unplug_fn)(struct plug_handle *);
  30. struct timer_list unplug_timer;
  31. struct work_struct unplug_work;
  32. unsigned long unplug_flag;
  33. };
  34. #define PLUGGED_FLAG 1
  35. void plugger_init(struct plug_handle *plug,
  36. void (*unplug_fn)(struct plug_handle *));
  37. void plugger_set_plug(struct plug_handle *plug);
  38. int plugger_remove_plug(struct plug_handle *plug);
  39. static inline void plugger_flush(struct plug_handle *plug)
  40. {
  41. del_timer_sync(&plug->unplug_timer);
  42. cancel_work_sync(&plug->unplug_work);
  43. }
  44. /*
  45. * MD's 'extended' device
  46. */
  47. struct mdk_rdev_s
  48. {
  49. struct list_head same_set; /* RAID devices within the same set */
  50. sector_t sectors; /* Device size (in 512bytes sectors) */
  51. mddev_t *mddev; /* RAID array if running */
  52. int last_events; /* IO event timestamp */
  53. /*
  54. * If meta_bdev is non-NULL, it means that a separate device is
  55. * being used to store the metadata (superblock/bitmap) which
  56. * would otherwise be contained on the same device as the data (bdev).
  57. */
  58. struct block_device *meta_bdev;
  59. struct block_device *bdev; /* block device handle */
  60. struct page *sb_page;
  61. int sb_loaded;
  62. __u64 sb_events;
  63. sector_t data_offset; /* start of data in array */
  64. sector_t sb_start; /* offset of the super block (in 512byte sectors) */
  65. int sb_size; /* bytes in the superblock */
  66. int preferred_minor; /* autorun support */
  67. struct kobject kobj;
  68. /* A device can be in one of three states based on two flags:
  69. * Not working: faulty==1 in_sync==0
  70. * Fully working: faulty==0 in_sync==1
  71. * Working, but not
  72. * in sync with array
  73. * faulty==0 in_sync==0
  74. *
  75. * It can never have faulty==1, in_sync==1
  76. * This reduces the burden of testing multiple flags in many cases
  77. */
  78. unsigned long flags;
  79. #define Faulty 1 /* device is known to have a fault */
  80. #define In_sync 2 /* device is in_sync with rest of array */
  81. #define WriteMostly 4 /* Avoid reading if at all possible */
  82. #define AutoDetected 7 /* added by auto-detect */
  83. #define Blocked 8 /* An error occured on an externally
  84. * managed array, don't allow writes
  85. * until it is cleared */
  86. wait_queue_head_t blocked_wait;
  87. int desc_nr; /* descriptor index in the superblock */
  88. int raid_disk; /* role of device in array */
  89. int new_raid_disk; /* role that the device will have in
  90. * the array after a level-change completes.
  91. */
  92. int saved_raid_disk; /* role that device used to have in the
  93. * array and could again if we did a partial
  94. * resync from the bitmap
  95. */
  96. sector_t recovery_offset;/* If this device has been partially
  97. * recovered, this is where we were
  98. * up to.
  99. */
  100. atomic_t nr_pending; /* number of pending requests.
  101. * only maintained for arrays that
  102. * support hot removal
  103. */
  104. atomic_t read_errors; /* number of consecutive read errors that
  105. * we have tried to ignore.
  106. */
  107. struct timespec last_read_error; /* monotonic time since our
  108. * last read error
  109. */
  110. atomic_t corrected_errors; /* number of corrected read errors,
  111. * for reporting to userspace and storing
  112. * in superblock.
  113. */
  114. struct work_struct del_work; /* used for delayed sysfs removal */
  115. struct sysfs_dirent *sysfs_state; /* handle for 'state'
  116. * sysfs entry */
  117. };
  118. struct mddev_s
  119. {
  120. void *private;
  121. struct mdk_personality *pers;
  122. dev_t unit;
  123. int md_minor;
  124. struct list_head disks;
  125. unsigned long flags;
  126. #define MD_CHANGE_DEVS 0 /* Some device status has changed */
  127. #define MD_CHANGE_CLEAN 1 /* transition to or from 'clean' */
  128. #define MD_CHANGE_PENDING 2 /* switch from 'clean' to 'active' in progress */
  129. int suspended;
  130. atomic_t active_io;
  131. int ro;
  132. int sysfs_active; /* set when sysfs deletes
  133. * are happening, so run/
  134. * takeover/stop are not safe
  135. */
  136. int ready; /* See when safe to pass
  137. * IO requests down */
  138. struct gendisk *gendisk;
  139. struct kobject kobj;
  140. int hold_active;
  141. #define UNTIL_IOCTL 1
  142. #define UNTIL_STOP 2
  143. /* Superblock information */
  144. int major_version,
  145. minor_version,
  146. patch_version;
  147. int persistent;
  148. int external; /* metadata is
  149. * managed externally */
  150. char metadata_type[17]; /* externally set*/
  151. int chunk_sectors;
  152. time_t ctime, utime;
  153. int level, layout;
  154. char clevel[16];
  155. int raid_disks;
  156. int max_disks;
  157. sector_t dev_sectors; /* used size of
  158. * component devices */
  159. sector_t array_sectors; /* exported array size */
  160. int external_size; /* size managed
  161. * externally */
  162. __u64 events;
  163. /* If the last 'event' was simply a clean->dirty transition, and
  164. * we didn't write it to the spares, then it is safe and simple
  165. * to just decrement the event count on a dirty->clean transition.
  166. * So we record that possibility here.
  167. */
  168. int can_decrease_events;
  169. char uuid[16];
  170. /* If the array is being reshaped, we need to record the
  171. * new shape and an indication of where we are up to.
  172. * This is written to the superblock.
  173. * If reshape_position is MaxSector, then no reshape is happening (yet).
  174. */
  175. sector_t reshape_position;
  176. int delta_disks, new_level, new_layout;
  177. int new_chunk_sectors;
  178. struct mdk_thread_s *thread; /* management thread */
  179. struct mdk_thread_s *sync_thread; /* doing resync or reconstruct */
  180. sector_t curr_resync; /* last block scheduled */
  181. /* As resync requests can complete out of order, we cannot easily track
  182. * how much resync has been completed. So we occasionally pause until
  183. * everything completes, then set curr_resync_completed to curr_resync.
  184. * As such it may be well behind the real resync mark, but it is a value
  185. * we are certain of.
  186. */
  187. sector_t curr_resync_completed;
  188. unsigned long resync_mark; /* a recent timestamp */
  189. sector_t resync_mark_cnt;/* blocks written at resync_mark */
  190. sector_t curr_mark_cnt; /* blocks scheduled now */
  191. sector_t resync_max_sectors; /* may be set by personality */
  192. sector_t resync_mismatches; /* count of sectors where
  193. * parity/replica mismatch found
  194. */
  195. /* allow user-space to request suspension of IO to regions of the array */
  196. sector_t suspend_lo;
  197. sector_t suspend_hi;
  198. /* if zero, use the system-wide default */
  199. int sync_speed_min;
  200. int sync_speed_max;
  201. /* resync even though the same disks are shared among md-devices */
  202. int parallel_resync;
  203. int ok_start_degraded;
  204. /* recovery/resync flags
  205. * NEEDED: we might need to start a resync/recover
  206. * RUNNING: a thread is running, or about to be started
  207. * SYNC: actually doing a resync, not a recovery
  208. * RECOVER: doing recovery, or need to try it.
  209. * INTR: resync needs to be aborted for some reason
  210. * DONE: thread is done and is waiting to be reaped
  211. * REQUEST: user-space has requested a sync (used with SYNC)
  212. * CHECK: user-space request for check-only, no repair
  213. * RESHAPE: A reshape is happening
  214. *
  215. * If neither SYNC or RESHAPE are set, then it is a recovery.
  216. */
  217. #define MD_RECOVERY_RUNNING 0
  218. #define MD_RECOVERY_SYNC 1
  219. #define MD_RECOVERY_RECOVER 2
  220. #define MD_RECOVERY_INTR 3
  221. #define MD_RECOVERY_DONE 4
  222. #define MD_RECOVERY_NEEDED 5
  223. #define MD_RECOVERY_REQUESTED 6
  224. #define MD_RECOVERY_CHECK 7
  225. #define MD_RECOVERY_RESHAPE 8
  226. #define MD_RECOVERY_FROZEN 9
  227. unsigned long recovery;
  228. int recovery_disabled; /* if we detect that recovery
  229. * will always fail, set this
  230. * so we don't loop trying */
  231. int in_sync; /* know to not need resync */
  232. /* 'open_mutex' avoids races between 'md_open' and 'do_md_stop', so
  233. * that we are never stopping an array while it is open.
  234. * 'reconfig_mutex' protects all other reconfiguration.
  235. * These locks are separate due to conflicting interactions
  236. * with bdev->bd_mutex.
  237. * Lock ordering is:
  238. * reconfig_mutex -> bd_mutex : e.g. do_md_run -> revalidate_disk
  239. * bd_mutex -> open_mutex: e.g. __blkdev_get -> md_open
  240. */
  241. struct mutex open_mutex;
  242. struct mutex reconfig_mutex;
  243. atomic_t active; /* general refcount */
  244. atomic_t openers; /* number of active opens */
  245. int changed; /* True if we might need to
  246. * reread partition info */
  247. int degraded; /* whether md should consider
  248. * adding a spare
  249. */
  250. atomic_t recovery_active; /* blocks scheduled, but not written */
  251. wait_queue_head_t recovery_wait;
  252. sector_t recovery_cp;
  253. sector_t resync_min; /* user requested sync
  254. * starts here */
  255. sector_t resync_max; /* resync should pause
  256. * when it gets here */
  257. struct sysfs_dirent *sysfs_state; /* handle for 'array_state'
  258. * file in sysfs.
  259. */
  260. struct sysfs_dirent *sysfs_action; /* handle for 'sync_action' */
  261. struct work_struct del_work; /* used for delayed sysfs removal */
  262. spinlock_t write_lock;
  263. wait_queue_head_t sb_wait; /* for waiting on superblock updates */
  264. atomic_t pending_writes; /* number of active superblock writes */
  265. unsigned int safemode; /* if set, update "clean" superblock
  266. * when no writes pending.
  267. */
  268. unsigned int safemode_delay;
  269. struct timer_list safemode_timer;
  270. atomic_t writes_pending;
  271. struct request_queue *queue; /* for plugging ... */
  272. struct bitmap *bitmap; /* the bitmap for the device */
  273. struct {
  274. struct file *file; /* the bitmap file */
  275. loff_t offset; /* offset from superblock of
  276. * start of bitmap. May be
  277. * negative, but not '0'
  278. * For external metadata, offset
  279. * from start of device.
  280. */
  281. loff_t default_offset; /* this is the offset to use when
  282. * hot-adding a bitmap. It should
  283. * eventually be settable by sysfs.
  284. */
  285. /* When md is serving under dm, it might use a
  286. * dirty_log to store the bits.
  287. */
  288. struct dm_dirty_log *log;
  289. struct mutex mutex;
  290. unsigned long chunksize;
  291. unsigned long daemon_sleep; /* how many jiffies between updates? */
  292. unsigned long max_write_behind; /* write-behind mode */
  293. int external;
  294. } bitmap_info;
  295. atomic_t max_corr_read_errors; /* max read retries */
  296. struct list_head all_mddevs;
  297. struct attribute_group *to_remove;
  298. struct plug_handle *plug; /* if used by personality */
  299. struct bio_set *bio_set;
  300. /* Generic flush handling.
  301. * The last to finish preflush schedules a worker to submit
  302. * the rest of the request (without the REQ_FLUSH flag).
  303. */
  304. struct bio *flush_bio;
  305. atomic_t flush_pending;
  306. struct work_struct flush_work;
  307. struct work_struct event_work; /* used by dm to report failure event */
  308. };
  309. static inline void rdev_dec_pending(mdk_rdev_t *rdev, mddev_t *mddev)
  310. {
  311. int faulty = test_bit(Faulty, &rdev->flags);
  312. if (atomic_dec_and_test(&rdev->nr_pending) && faulty)
  313. set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
  314. }
  315. static inline void md_sync_acct(struct block_device *bdev, unsigned long nr_sectors)
  316. {
  317. atomic_add(nr_sectors, &bdev->bd_contains->bd_disk->sync_io);
  318. }
  319. struct mdk_personality
  320. {
  321. char *name;
  322. int level;
  323. struct list_head list;
  324. struct module *owner;
  325. int (*make_request)(mddev_t *mddev, struct bio *bio);
  326. int (*run)(mddev_t *mddev);
  327. int (*stop)(mddev_t *mddev);
  328. void (*status)(struct seq_file *seq, mddev_t *mddev);
  329. /* error_handler must set ->faulty and clear ->in_sync
  330. * if appropriate, and should abort recovery if needed
  331. */
  332. void (*error_handler)(mddev_t *mddev, mdk_rdev_t *rdev);
  333. int (*hot_add_disk) (mddev_t *mddev, mdk_rdev_t *rdev);
  334. int (*hot_remove_disk) (mddev_t *mddev, int number);
  335. int (*spare_active) (mddev_t *mddev);
  336. sector_t (*sync_request)(mddev_t *mddev, sector_t sector_nr, int *skipped, int go_faster);
  337. int (*resize) (mddev_t *mddev, sector_t sectors);
  338. sector_t (*size) (mddev_t *mddev, sector_t sectors, int raid_disks);
  339. int (*check_reshape) (mddev_t *mddev);
  340. int (*start_reshape) (mddev_t *mddev);
  341. void (*finish_reshape) (mddev_t *mddev);
  342. /* quiesce moves between quiescence states
  343. * 0 - fully active
  344. * 1 - no new requests allowed
  345. * others - reserved
  346. */
  347. void (*quiesce) (mddev_t *mddev, int state);
  348. /* takeover is used to transition an array from one
  349. * personality to another. The new personality must be able
  350. * to handle the data in the current layout.
  351. * e.g. 2drive raid1 -> 2drive raid5
  352. * ndrive raid5 -> degraded n+1drive raid6 with special layout
  353. * If the takeover succeeds, a new 'private' structure is returned.
  354. * This needs to be installed and then ->run used to activate the
  355. * array.
  356. */
  357. void *(*takeover) (mddev_t *mddev);
  358. };
  359. struct md_sysfs_entry {
  360. struct attribute attr;
  361. ssize_t (*show)(mddev_t *, char *);
  362. ssize_t (*store)(mddev_t *, const char *, size_t);
  363. };
  364. extern struct attribute_group md_bitmap_group;
  365. static inline struct sysfs_dirent *sysfs_get_dirent_safe(struct sysfs_dirent *sd, char *name)
  366. {
  367. if (sd)
  368. return sysfs_get_dirent(sd, NULL, name);
  369. return sd;
  370. }
  371. static inline void sysfs_notify_dirent_safe(struct sysfs_dirent *sd)
  372. {
  373. if (sd)
  374. sysfs_notify_dirent(sd);
  375. }
  376. static inline char * mdname (mddev_t * mddev)
  377. {
  378. return mddev->gendisk ? mddev->gendisk->disk_name : "mdX";
  379. }
  380. /*
  381. * iterates through some rdev ringlist. It's safe to remove the
  382. * current 'rdev'. Dont touch 'tmp' though.
  383. */
  384. #define rdev_for_each_list(rdev, tmp, head) \
  385. list_for_each_entry_safe(rdev, tmp, head, same_set)
  386. /*
  387. * iterates through the 'same array disks' ringlist
  388. */
  389. #define rdev_for_each(rdev, tmp, mddev) \
  390. list_for_each_entry_safe(rdev, tmp, &((mddev)->disks), same_set)
  391. #define rdev_for_each_rcu(rdev, mddev) \
  392. list_for_each_entry_rcu(rdev, &((mddev)->disks), same_set)
  393. typedef struct mdk_thread_s {
  394. void (*run) (mddev_t *mddev);
  395. mddev_t *mddev;
  396. wait_queue_head_t wqueue;
  397. unsigned long flags;
  398. struct task_struct *tsk;
  399. unsigned long timeout;
  400. } mdk_thread_t;
  401. #define THREAD_WAKEUP 0
  402. #define __wait_event_lock_irq(wq, condition, lock, cmd) \
  403. do { \
  404. wait_queue_t __wait; \
  405. init_waitqueue_entry(&__wait, current); \
  406. \
  407. add_wait_queue(&wq, &__wait); \
  408. for (;;) { \
  409. set_current_state(TASK_UNINTERRUPTIBLE); \
  410. if (condition) \
  411. break; \
  412. spin_unlock_irq(&lock); \
  413. cmd; \
  414. schedule(); \
  415. spin_lock_irq(&lock); \
  416. } \
  417. current->state = TASK_RUNNING; \
  418. remove_wait_queue(&wq, &__wait); \
  419. } while (0)
  420. #define wait_event_lock_irq(wq, condition, lock, cmd) \
  421. do { \
  422. if (condition) \
  423. break; \
  424. __wait_event_lock_irq(wq, condition, lock, cmd); \
  425. } while (0)
  426. static inline void safe_put_page(struct page *p)
  427. {
  428. if (p) put_page(p);
  429. }
  430. extern int register_md_personality(struct mdk_personality *p);
  431. extern int unregister_md_personality(struct mdk_personality *p);
  432. extern mdk_thread_t * md_register_thread(void (*run) (mddev_t *mddev),
  433. mddev_t *mddev, const char *name);
  434. extern void md_unregister_thread(mdk_thread_t *thread);
  435. extern void md_wakeup_thread(mdk_thread_t *thread);
  436. extern void md_check_recovery(mddev_t *mddev);
  437. extern void md_write_start(mddev_t *mddev, struct bio *bi);
  438. extern void md_write_end(mddev_t *mddev);
  439. extern void md_done_sync(mddev_t *mddev, int blocks, int ok);
  440. extern void md_error(mddev_t *mddev, mdk_rdev_t *rdev);
  441. extern int mddev_congested(mddev_t *mddev, int bits);
  442. extern void md_flush_request(mddev_t *mddev, struct bio *bio);
  443. extern void md_super_write(mddev_t *mddev, mdk_rdev_t *rdev,
  444. sector_t sector, int size, struct page *page);
  445. extern void md_super_wait(mddev_t *mddev);
  446. extern int sync_page_io(mdk_rdev_t *rdev, sector_t sector, int size,
  447. struct page *page, int rw, bool metadata_op);
  448. extern void md_do_sync(mddev_t *mddev);
  449. extern void md_new_event(mddev_t *mddev);
  450. extern int md_allow_write(mddev_t *mddev);
  451. extern void md_wait_for_blocked_rdev(mdk_rdev_t *rdev, mddev_t *mddev);
  452. extern void md_set_array_sectors(mddev_t *mddev, sector_t array_sectors);
  453. extern int md_check_no_bitmap(mddev_t *mddev);
  454. extern int md_integrity_register(mddev_t *mddev);
  455. extern void md_integrity_add_rdev(mdk_rdev_t *rdev, mddev_t *mddev);
  456. extern int strict_strtoul_scaled(const char *cp, unsigned long *res, int scale);
  457. extern void restore_bitmap_write_access(struct file *file);
  458. extern void md_unplug(mddev_t *mddev);
  459. extern void mddev_init(mddev_t *mddev);
  460. extern int md_run(mddev_t *mddev);
  461. extern void md_stop(mddev_t *mddev);
  462. extern void md_stop_writes(mddev_t *mddev);
  463. extern void md_rdev_init(mdk_rdev_t *rdev);
  464. extern void mddev_suspend(mddev_t *mddev);
  465. extern void mddev_resume(mddev_t *mddev);
  466. extern struct bio *bio_clone_mddev(struct bio *bio, gfp_t gfp_mask,
  467. mddev_t *mddev);
  468. extern struct bio *bio_alloc_mddev(gfp_t gfp_mask, int nr_iovecs,
  469. mddev_t *mddev);
  470. #endif /* _MD_MD_H */