xfs_log_priv.h 22 KB

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  1. /*
  2. * Copyright (c) 2000-2003,2005 Silicon Graphics, Inc.
  3. * All Rights Reserved.
  4. *
  5. * This program is free software; you can redistribute it and/or
  6. * modify it under the terms of the GNU General Public License as
  7. * published by the Free Software Foundation.
  8. *
  9. * This program is distributed in the hope that it would be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. * GNU General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU General Public License
  15. * along with this program; if not, write the Free Software Foundation,
  16. * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
  17. */
  18. #ifndef __XFS_LOG_PRIV_H__
  19. #define __XFS_LOG_PRIV_H__
  20. struct xfs_buf;
  21. struct log;
  22. struct xlog_ticket;
  23. struct xfs_buf_cancel;
  24. struct xfs_mount;
  25. /*
  26. * Macros, structures, prototypes for internal log manager use.
  27. */
  28. #define XLOG_MIN_ICLOGS 2
  29. #define XLOG_MAX_ICLOGS 8
  30. #define XLOG_HEADER_MAGIC_NUM 0xFEEDbabe /* Invalid cycle number */
  31. #define XLOG_VERSION_1 1
  32. #define XLOG_VERSION_2 2 /* Large IClogs, Log sunit */
  33. #define XLOG_VERSION_OKBITS (XLOG_VERSION_1 | XLOG_VERSION_2)
  34. #define XLOG_MIN_RECORD_BSIZE (16*1024) /* eventually 32k */
  35. #define XLOG_BIG_RECORD_BSIZE (32*1024) /* 32k buffers */
  36. #define XLOG_MAX_RECORD_BSIZE (256*1024)
  37. #define XLOG_HEADER_CYCLE_SIZE (32*1024) /* cycle data in header */
  38. #define XLOG_MIN_RECORD_BSHIFT 14 /* 16384 == 1 << 14 */
  39. #define XLOG_BIG_RECORD_BSHIFT 15 /* 32k == 1 << 15 */
  40. #define XLOG_MAX_RECORD_BSHIFT 18 /* 256k == 1 << 18 */
  41. #define XLOG_BTOLSUNIT(log, b) (((b)+(log)->l_mp->m_sb.sb_logsunit-1) / \
  42. (log)->l_mp->m_sb.sb_logsunit)
  43. #define XLOG_LSUNITTOB(log, su) ((su) * (log)->l_mp->m_sb.sb_logsunit)
  44. #define XLOG_HEADER_SIZE 512
  45. #define XLOG_REC_SHIFT(log) \
  46. BTOBB(1 << (xfs_sb_version_haslogv2(&log->l_mp->m_sb) ? \
  47. XLOG_MAX_RECORD_BSHIFT : XLOG_BIG_RECORD_BSHIFT))
  48. #define XLOG_TOTAL_REC_SHIFT(log) \
  49. BTOBB(XLOG_MAX_ICLOGS << (xfs_sb_version_haslogv2(&log->l_mp->m_sb) ? \
  50. XLOG_MAX_RECORD_BSHIFT : XLOG_BIG_RECORD_BSHIFT))
  51. static inline xfs_lsn_t xlog_assign_lsn(uint cycle, uint block)
  52. {
  53. return ((xfs_lsn_t)cycle << 32) | block;
  54. }
  55. static inline uint xlog_get_cycle(char *ptr)
  56. {
  57. if (be32_to_cpu(*(__be32 *)ptr) == XLOG_HEADER_MAGIC_NUM)
  58. return be32_to_cpu(*((__be32 *)ptr + 1));
  59. else
  60. return be32_to_cpu(*(__be32 *)ptr);
  61. }
  62. #define BLK_AVG(blk1, blk2) ((blk1+blk2) >> 1)
  63. #ifdef __KERNEL__
  64. /*
  65. * get client id from packed copy.
  66. *
  67. * this hack is here because the xlog_pack code copies four bytes
  68. * of xlog_op_header containing the fields oh_clientid, oh_flags
  69. * and oh_res2 into the packed copy.
  70. *
  71. * later on this four byte chunk is treated as an int and the
  72. * client id is pulled out.
  73. *
  74. * this has endian issues, of course.
  75. */
  76. static inline uint xlog_get_client_id(__be32 i)
  77. {
  78. return be32_to_cpu(i) >> 24;
  79. }
  80. #define xlog_panic(args...) cmn_err(CE_PANIC, ## args)
  81. #define xlog_exit(args...) cmn_err(CE_PANIC, ## args)
  82. #define xlog_warn(args...) cmn_err(CE_WARN, ## args)
  83. /*
  84. * In core log state
  85. */
  86. #define XLOG_STATE_ACTIVE 0x0001 /* Current IC log being written to */
  87. #define XLOG_STATE_WANT_SYNC 0x0002 /* Want to sync this iclog; no more writes */
  88. #define XLOG_STATE_SYNCING 0x0004 /* This IC log is syncing */
  89. #define XLOG_STATE_DONE_SYNC 0x0008 /* Done syncing to disk */
  90. #define XLOG_STATE_DO_CALLBACK \
  91. 0x0010 /* Process callback functions */
  92. #define XLOG_STATE_CALLBACK 0x0020 /* Callback functions now */
  93. #define XLOG_STATE_DIRTY 0x0040 /* Dirty IC log, not ready for ACTIVE status*/
  94. #define XLOG_STATE_IOERROR 0x0080 /* IO error happened in sync'ing log */
  95. #define XLOG_STATE_ALL 0x7FFF /* All possible valid flags */
  96. #define XLOG_STATE_NOTUSED 0x8000 /* This IC log not being used */
  97. #endif /* __KERNEL__ */
  98. /*
  99. * Flags to log operation header
  100. *
  101. * The first write of a new transaction will be preceded with a start
  102. * record, XLOG_START_TRANS. Once a transaction is committed, a commit
  103. * record is written, XLOG_COMMIT_TRANS. If a single region can not fit into
  104. * the remainder of the current active in-core log, it is split up into
  105. * multiple regions. Each partial region will be marked with a
  106. * XLOG_CONTINUE_TRANS until the last one, which gets marked with XLOG_END_TRANS.
  107. *
  108. */
  109. #define XLOG_START_TRANS 0x01 /* Start a new transaction */
  110. #define XLOG_COMMIT_TRANS 0x02 /* Commit this transaction */
  111. #define XLOG_CONTINUE_TRANS 0x04 /* Cont this trans into new region */
  112. #define XLOG_WAS_CONT_TRANS 0x08 /* Cont this trans into new region */
  113. #define XLOG_END_TRANS 0x10 /* End a continued transaction */
  114. #define XLOG_UNMOUNT_TRANS 0x20 /* Unmount a filesystem transaction */
  115. #ifdef __KERNEL__
  116. /*
  117. * Flags to log ticket
  118. */
  119. #define XLOG_TIC_INITED 0x1 /* has been initialized */
  120. #define XLOG_TIC_PERM_RESERV 0x2 /* permanent reservation */
  121. #define XLOG_TIC_IN_Q 0x4
  122. #define XLOG_TIC_FLAGS \
  123. { XLOG_TIC_INITED, "XLOG_TIC_INITED" }, \
  124. { XLOG_TIC_PERM_RESERV, "XLOG_TIC_PERM_RESERV" }, \
  125. { XLOG_TIC_IN_Q, "XLOG_TIC_IN_Q" }
  126. #endif /* __KERNEL__ */
  127. #define XLOG_UNMOUNT_TYPE 0x556e /* Un for Unmount */
  128. /*
  129. * Flags for log structure
  130. */
  131. #define XLOG_CHKSUM_MISMATCH 0x1 /* used only during recovery */
  132. #define XLOG_ACTIVE_RECOVERY 0x2 /* in the middle of recovery */
  133. #define XLOG_RECOVERY_NEEDED 0x4 /* log was recovered */
  134. #define XLOG_IO_ERROR 0x8 /* log hit an I/O error, and being
  135. shutdown */
  136. #ifdef __KERNEL__
  137. /*
  138. * Below are states for covering allocation transactions.
  139. * By covering, we mean changing the h_tail_lsn in the last on-disk
  140. * log write such that no allocation transactions will be re-done during
  141. * recovery after a system crash. Recovery starts at the last on-disk
  142. * log write.
  143. *
  144. * These states are used to insert dummy log entries to cover
  145. * space allocation transactions which can undo non-transactional changes
  146. * after a crash. Writes to a file with space
  147. * already allocated do not result in any transactions. Allocations
  148. * might include space beyond the EOF. So if we just push the EOF a
  149. * little, the last transaction for the file could contain the wrong
  150. * size. If there is no file system activity, after an allocation
  151. * transaction, and the system crashes, the allocation transaction
  152. * will get replayed and the file will be truncated. This could
  153. * be hours/days/... after the allocation occurred.
  154. *
  155. * The fix for this is to do two dummy transactions when the
  156. * system is idle. We need two dummy transaction because the h_tail_lsn
  157. * in the log record header needs to point beyond the last possible
  158. * non-dummy transaction. The first dummy changes the h_tail_lsn to
  159. * the first transaction before the dummy. The second dummy causes
  160. * h_tail_lsn to point to the first dummy. Recovery starts at h_tail_lsn.
  161. *
  162. * These dummy transactions get committed when everything
  163. * is idle (after there has been some activity).
  164. *
  165. * There are 5 states used to control this.
  166. *
  167. * IDLE -- no logging has been done on the file system or
  168. * we are done covering previous transactions.
  169. * NEED -- logging has occurred and we need a dummy transaction
  170. * when the log becomes idle.
  171. * DONE -- we were in the NEED state and have committed a dummy
  172. * transaction.
  173. * NEED2 -- we detected that a dummy transaction has gone to the
  174. * on disk log with no other transactions.
  175. * DONE2 -- we committed a dummy transaction when in the NEED2 state.
  176. *
  177. * There are two places where we switch states:
  178. *
  179. * 1.) In xfs_sync, when we detect an idle log and are in NEED or NEED2.
  180. * We commit the dummy transaction and switch to DONE or DONE2,
  181. * respectively. In all other states, we don't do anything.
  182. *
  183. * 2.) When we finish writing the on-disk log (xlog_state_clean_log).
  184. *
  185. * No matter what state we are in, if this isn't the dummy
  186. * transaction going out, the next state is NEED.
  187. * So, if we aren't in the DONE or DONE2 states, the next state
  188. * is NEED. We can't be finishing a write of the dummy record
  189. * unless it was committed and the state switched to DONE or DONE2.
  190. *
  191. * If we are in the DONE state and this was a write of the
  192. * dummy transaction, we move to NEED2.
  193. *
  194. * If we are in the DONE2 state and this was a write of the
  195. * dummy transaction, we move to IDLE.
  196. *
  197. *
  198. * Writing only one dummy transaction can get appended to
  199. * one file space allocation. When this happens, the log recovery
  200. * code replays the space allocation and a file could be truncated.
  201. * This is why we have the NEED2 and DONE2 states before going idle.
  202. */
  203. #define XLOG_STATE_COVER_IDLE 0
  204. #define XLOG_STATE_COVER_NEED 1
  205. #define XLOG_STATE_COVER_DONE 2
  206. #define XLOG_STATE_COVER_NEED2 3
  207. #define XLOG_STATE_COVER_DONE2 4
  208. #define XLOG_COVER_OPS 5
  209. /* Ticket reservation region accounting */
  210. #define XLOG_TIC_LEN_MAX 15
  211. /*
  212. * Reservation region
  213. * As would be stored in xfs_log_iovec but without the i_addr which
  214. * we don't care about.
  215. */
  216. typedef struct xlog_res {
  217. uint r_len; /* region length :4 */
  218. uint r_type; /* region's transaction type :4 */
  219. } xlog_res_t;
  220. typedef struct xlog_ticket {
  221. sv_t t_wait; /* ticket wait queue : 20 */
  222. struct xlog_ticket *t_next; /* :4|8 */
  223. struct xlog_ticket *t_prev; /* :4|8 */
  224. xlog_tid_t t_tid; /* transaction identifier : 4 */
  225. atomic_t t_ref; /* ticket reference count : 4 */
  226. int t_curr_res; /* current reservation in bytes : 4 */
  227. int t_unit_res; /* unit reservation in bytes : 4 */
  228. char t_ocnt; /* original count : 1 */
  229. char t_cnt; /* current count : 1 */
  230. char t_clientid; /* who does this belong to; : 1 */
  231. char t_flags; /* properties of reservation : 1 */
  232. uint t_trans_type; /* transaction type : 4 */
  233. /* reservation array fields */
  234. uint t_res_num; /* num in array : 4 */
  235. uint t_res_num_ophdrs; /* num op hdrs : 4 */
  236. uint t_res_arr_sum; /* array sum : 4 */
  237. uint t_res_o_flow; /* sum overflow : 4 */
  238. xlog_res_t t_res_arr[XLOG_TIC_LEN_MAX]; /* array of res : 8 * 15 */
  239. } xlog_ticket_t;
  240. #endif
  241. typedef struct xlog_op_header {
  242. __be32 oh_tid; /* transaction id of operation : 4 b */
  243. __be32 oh_len; /* bytes in data region : 4 b */
  244. __u8 oh_clientid; /* who sent me this : 1 b */
  245. __u8 oh_flags; /* : 1 b */
  246. __u16 oh_res2; /* 32 bit align : 2 b */
  247. } xlog_op_header_t;
  248. /* valid values for h_fmt */
  249. #define XLOG_FMT_UNKNOWN 0
  250. #define XLOG_FMT_LINUX_LE 1
  251. #define XLOG_FMT_LINUX_BE 2
  252. #define XLOG_FMT_IRIX_BE 3
  253. /* our fmt */
  254. #ifdef XFS_NATIVE_HOST
  255. #define XLOG_FMT XLOG_FMT_LINUX_BE
  256. #else
  257. #define XLOG_FMT XLOG_FMT_LINUX_LE
  258. #endif
  259. typedef struct xlog_rec_header {
  260. __be32 h_magicno; /* log record (LR) identifier : 4 */
  261. __be32 h_cycle; /* write cycle of log : 4 */
  262. __be32 h_version; /* LR version : 4 */
  263. __be32 h_len; /* len in bytes; should be 64-bit aligned: 4 */
  264. __be64 h_lsn; /* lsn of this LR : 8 */
  265. __be64 h_tail_lsn; /* lsn of 1st LR w/ buffers not committed: 8 */
  266. __be32 h_chksum; /* may not be used; non-zero if used : 4 */
  267. __be32 h_prev_block; /* block number to previous LR : 4 */
  268. __be32 h_num_logops; /* number of log operations in this LR : 4 */
  269. __be32 h_cycle_data[XLOG_HEADER_CYCLE_SIZE / BBSIZE];
  270. /* new fields */
  271. __be32 h_fmt; /* format of log record : 4 */
  272. uuid_t h_fs_uuid; /* uuid of FS : 16 */
  273. __be32 h_size; /* iclog size : 4 */
  274. } xlog_rec_header_t;
  275. typedef struct xlog_rec_ext_header {
  276. __be32 xh_cycle; /* write cycle of log : 4 */
  277. __be32 xh_cycle_data[XLOG_HEADER_CYCLE_SIZE / BBSIZE]; /* : 256 */
  278. } xlog_rec_ext_header_t;
  279. #ifdef __KERNEL__
  280. /*
  281. * Quite misnamed, because this union lays out the actual on-disk log buffer.
  282. */
  283. typedef union xlog_in_core2 {
  284. xlog_rec_header_t hic_header;
  285. xlog_rec_ext_header_t hic_xheader;
  286. char hic_sector[XLOG_HEADER_SIZE];
  287. } xlog_in_core_2_t;
  288. /*
  289. * - A log record header is 512 bytes. There is plenty of room to grow the
  290. * xlog_rec_header_t into the reserved space.
  291. * - ic_data follows, so a write to disk can start at the beginning of
  292. * the iclog.
  293. * - ic_forcewait is used to implement synchronous forcing of the iclog to disk.
  294. * - ic_next is the pointer to the next iclog in the ring.
  295. * - ic_bp is a pointer to the buffer used to write this incore log to disk.
  296. * - ic_log is a pointer back to the global log structure.
  297. * - ic_callback is a linked list of callback function/argument pairs to be
  298. * called after an iclog finishes writing.
  299. * - ic_size is the full size of the header plus data.
  300. * - ic_offset is the current number of bytes written to in this iclog.
  301. * - ic_refcnt is bumped when someone is writing to the log.
  302. * - ic_state is the state of the iclog.
  303. *
  304. * Because of cacheline contention on large machines, we need to separate
  305. * various resources onto different cachelines. To start with, make the
  306. * structure cacheline aligned. The following fields can be contended on
  307. * by independent processes:
  308. *
  309. * - ic_callback_*
  310. * - ic_refcnt
  311. * - fields protected by the global l_icloglock
  312. *
  313. * so we need to ensure that these fields are located in separate cachelines.
  314. * We'll put all the read-only and l_icloglock fields in the first cacheline,
  315. * and move everything else out to subsequent cachelines.
  316. */
  317. typedef struct xlog_in_core {
  318. sv_t ic_force_wait;
  319. sv_t ic_write_wait;
  320. struct xlog_in_core *ic_next;
  321. struct xlog_in_core *ic_prev;
  322. struct xfs_buf *ic_bp;
  323. struct log *ic_log;
  324. int ic_size;
  325. int ic_offset;
  326. int ic_bwritecnt;
  327. unsigned short ic_state;
  328. char *ic_datap; /* pointer to iclog data */
  329. /* Callback structures need their own cacheline */
  330. spinlock_t ic_callback_lock ____cacheline_aligned_in_smp;
  331. xfs_log_callback_t *ic_callback;
  332. xfs_log_callback_t **ic_callback_tail;
  333. /* reference counts need their own cacheline */
  334. atomic_t ic_refcnt ____cacheline_aligned_in_smp;
  335. xlog_in_core_2_t *ic_data;
  336. #define ic_header ic_data->hic_header
  337. } xlog_in_core_t;
  338. /*
  339. * The CIL context is used to aggregate per-transaction details as well be
  340. * passed to the iclog for checkpoint post-commit processing. After being
  341. * passed to the iclog, another context needs to be allocated for tracking the
  342. * next set of transactions to be aggregated into a checkpoint.
  343. */
  344. struct xfs_cil;
  345. struct xfs_cil_ctx {
  346. struct xfs_cil *cil;
  347. xfs_lsn_t sequence; /* chkpt sequence # */
  348. xfs_lsn_t start_lsn; /* first LSN of chkpt commit */
  349. xfs_lsn_t commit_lsn; /* chkpt commit record lsn */
  350. struct xlog_ticket *ticket; /* chkpt ticket */
  351. int nvecs; /* number of regions */
  352. int space_used; /* aggregate size of regions */
  353. struct list_head busy_extents; /* busy extents in chkpt */
  354. struct xfs_log_vec *lv_chain; /* logvecs being pushed */
  355. xfs_log_callback_t log_cb; /* completion callback hook. */
  356. struct list_head committing; /* ctx committing list */
  357. };
  358. /*
  359. * Committed Item List structure
  360. *
  361. * This structure is used to track log items that have been committed but not
  362. * yet written into the log. It is used only when the delayed logging mount
  363. * option is enabled.
  364. *
  365. * This structure tracks the list of committing checkpoint contexts so
  366. * we can avoid the problem of having to hold out new transactions during a
  367. * flush until we have a the commit record LSN of the checkpoint. We can
  368. * traverse the list of committing contexts in xlog_cil_push_lsn() to find a
  369. * sequence match and extract the commit LSN directly from there. If the
  370. * checkpoint is still in the process of committing, we can block waiting for
  371. * the commit LSN to be determined as well. This should make synchronous
  372. * operations almost as efficient as the old logging methods.
  373. */
  374. struct xfs_cil {
  375. struct log *xc_log;
  376. struct list_head xc_cil;
  377. spinlock_t xc_cil_lock;
  378. struct xfs_cil_ctx *xc_ctx;
  379. struct rw_semaphore xc_ctx_lock;
  380. struct list_head xc_committing;
  381. sv_t xc_commit_wait;
  382. xfs_lsn_t xc_current_sequence;
  383. };
  384. /*
  385. * The amount of log space we should the CIL to aggregate is difficult to size.
  386. * Whatever we chose we have to make we can get a reservation for the log space
  387. * effectively, that it is large enough to capture sufficient relogging to
  388. * reduce log buffer IO significantly, but it is not too large for the log or
  389. * induces too much latency when writing out through the iclogs. We track both
  390. * space consumed and the number of vectors in the checkpoint context, so we
  391. * need to decide which to use for limiting.
  392. *
  393. * Every log buffer we write out during a push needs a header reserved, which
  394. * is at least one sector and more for v2 logs. Hence we need a reservation of
  395. * at least 512 bytes per 32k of log space just for the LR headers. That means
  396. * 16KB of reservation per megabyte of delayed logging space we will consume,
  397. * plus various headers. The number of headers will vary based on the num of
  398. * io vectors, so limiting on a specific number of vectors is going to result
  399. * in transactions of varying size. IOWs, it is more consistent to track and
  400. * limit space consumed in the log rather than by the number of objects being
  401. * logged in order to prevent checkpoint ticket overruns.
  402. *
  403. * Further, use of static reservations through the log grant mechanism is
  404. * problematic. It introduces a lot of complexity (e.g. reserve grant vs write
  405. * grant) and a significant deadlock potential because regranting write space
  406. * can block on log pushes. Hence if we have to regrant log space during a log
  407. * push, we can deadlock.
  408. *
  409. * However, we can avoid this by use of a dynamic "reservation stealing"
  410. * technique during transaction commit whereby unused reservation space in the
  411. * transaction ticket is transferred to the CIL ctx commit ticket to cover the
  412. * space needed by the checkpoint transaction. This means that we never need to
  413. * specifically reserve space for the CIL checkpoint transaction, nor do we
  414. * need to regrant space once the checkpoint completes. This also means the
  415. * checkpoint transaction ticket is specific to the checkpoint context, rather
  416. * than the CIL itself.
  417. *
  418. * With dynamic reservations, we can basically make up arbitrary limits for the
  419. * checkpoint size so long as they don't violate any other size rules. Hence
  420. * the initial maximum size for the checkpoint transaction will be set to a
  421. * quarter of the log or 8MB, which ever is smaller. 8MB is an arbitrary limit
  422. * right now based on the latency of writing out a large amount of data through
  423. * the circular iclog buffers.
  424. */
  425. #define XLOG_CIL_SPACE_LIMIT(log) \
  426. (min((log->l_logsize >> 2), (8 * 1024 * 1024)))
  427. /*
  428. * The reservation head lsn is not made up of a cycle number and block number.
  429. * Instead, it uses a cycle number and byte number. Logs don't expect to
  430. * overflow 31 bits worth of byte offset, so using a byte number will mean
  431. * that round off problems won't occur when releasing partial reservations.
  432. */
  433. typedef struct log {
  434. /* The following fields don't need locking */
  435. struct xfs_mount *l_mp; /* mount point */
  436. struct xfs_ail *l_ailp; /* AIL log is working with */
  437. struct xfs_cil *l_cilp; /* CIL log is working with */
  438. struct xfs_buf *l_xbuf; /* extra buffer for log
  439. * wrapping */
  440. struct xfs_buftarg *l_targ; /* buftarg of log */
  441. uint l_flags;
  442. uint l_quotaoffs_flag; /* XFS_DQ_*, for QUOTAOFFs */
  443. struct xfs_buf_cancel **l_buf_cancel_table;
  444. int l_iclog_hsize; /* size of iclog header */
  445. int l_iclog_heads; /* # of iclog header sectors */
  446. uint l_sectBBsize; /* sector size in BBs (2^n) */
  447. int l_iclog_size; /* size of log in bytes */
  448. int l_iclog_size_log; /* log power size of log */
  449. int l_iclog_bufs; /* number of iclog buffers */
  450. xfs_daddr_t l_logBBstart; /* start block of log */
  451. int l_logsize; /* size of log in bytes */
  452. int l_logBBsize; /* size of log in BB chunks */
  453. /* The following block of fields are changed while holding icloglock */
  454. sv_t l_flush_wait ____cacheline_aligned_in_smp;
  455. /* waiting for iclog flush */
  456. int l_covered_state;/* state of "covering disk
  457. * log entries" */
  458. xlog_in_core_t *l_iclog; /* head log queue */
  459. spinlock_t l_icloglock; /* grab to change iclog state */
  460. xfs_lsn_t l_tail_lsn; /* lsn of 1st LR with unflushed
  461. * buffers */
  462. xfs_lsn_t l_last_sync_lsn;/* lsn of last LR on disk */
  463. int l_curr_cycle; /* Cycle number of log writes */
  464. int l_prev_cycle; /* Cycle number before last
  465. * block increment */
  466. int l_curr_block; /* current logical log block */
  467. int l_prev_block; /* previous logical log block */
  468. /* The following block of fields are changed while holding grant_lock */
  469. spinlock_t l_grant_lock ____cacheline_aligned_in_smp;
  470. xlog_ticket_t *l_reserve_headq;
  471. xlog_ticket_t *l_write_headq;
  472. int l_grant_reserve_cycle;
  473. int l_grant_reserve_bytes;
  474. int l_grant_write_cycle;
  475. int l_grant_write_bytes;
  476. /* The following field are used for debugging; need to hold icloglock */
  477. #ifdef DEBUG
  478. char *l_iclog_bak[XLOG_MAX_ICLOGS];
  479. #endif
  480. } xlog_t;
  481. #define XLOG_FORCED_SHUTDOWN(log) ((log)->l_flags & XLOG_IO_ERROR)
  482. /* common routines */
  483. extern xfs_lsn_t xlog_assign_tail_lsn(struct xfs_mount *mp);
  484. extern int xlog_recover(xlog_t *log);
  485. extern int xlog_recover_finish(xlog_t *log);
  486. extern void xlog_pack_data(xlog_t *log, xlog_in_core_t *iclog, int);
  487. extern kmem_zone_t *xfs_log_ticket_zone;
  488. struct xlog_ticket *xlog_ticket_alloc(struct log *log, int unit_bytes,
  489. int count, char client, uint xflags,
  490. int alloc_flags);
  491. static inline void
  492. xlog_write_adv_cnt(void **ptr, int *len, int *off, size_t bytes)
  493. {
  494. *ptr += bytes;
  495. *len -= bytes;
  496. *off += bytes;
  497. }
  498. void xlog_print_tic_res(struct xfs_mount *mp, struct xlog_ticket *ticket);
  499. int xlog_write(struct log *log, struct xfs_log_vec *log_vector,
  500. struct xlog_ticket *tic, xfs_lsn_t *start_lsn,
  501. xlog_in_core_t **commit_iclog, uint flags);
  502. /*
  503. * Committed Item List interfaces
  504. */
  505. int xlog_cil_init(struct log *log);
  506. void xlog_cil_init_post_recovery(struct log *log);
  507. void xlog_cil_destroy(struct log *log);
  508. /*
  509. * CIL force routines
  510. */
  511. xfs_lsn_t xlog_cil_force_lsn(struct log *log, xfs_lsn_t sequence);
  512. static inline void
  513. xlog_cil_force(struct log *log)
  514. {
  515. xlog_cil_force_lsn(log, log->l_cilp->xc_current_sequence);
  516. }
  517. /*
  518. * Unmount record type is used as a pseudo transaction type for the ticket.
  519. * It's value must be outside the range of XFS_TRANS_* values.
  520. */
  521. #define XLOG_UNMOUNT_REC_TYPE (-1U)
  522. #endif /* __KERNEL__ */
  523. #endif /* __XFS_LOG_PRIV_H__ */