journal.c 56 KB

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  1. /*
  2. * linux/fs/jbd2/journal.c
  3. *
  4. * Written by Stephen C. Tweedie <sct@redhat.com>, 1998
  5. *
  6. * Copyright 1998 Red Hat corp --- All Rights Reserved
  7. *
  8. * This file is part of the Linux kernel and is made available under
  9. * the terms of the GNU General Public License, version 2, or at your
  10. * option, any later version, incorporated herein by reference.
  11. *
  12. * Generic filesystem journal-writing code; part of the ext2fs
  13. * journaling system.
  14. *
  15. * This file manages journals: areas of disk reserved for logging
  16. * transactional updates. This includes the kernel journaling thread
  17. * which is responsible for scheduling updates to the log.
  18. *
  19. * We do not actually manage the physical storage of the journal in this
  20. * file: that is left to a per-journal policy function, which allows us
  21. * to store the journal within a filesystem-specified area for ext2
  22. * journaling (ext2 can use a reserved inode for storing the log).
  23. */
  24. #include <linux/module.h>
  25. #include <linux/time.h>
  26. #include <linux/fs.h>
  27. #include <linux/jbd2.h>
  28. #include <linux/errno.h>
  29. #include <linux/slab.h>
  30. #include <linux/init.h>
  31. #include <linux/mm.h>
  32. #include <linux/freezer.h>
  33. #include <linux/pagemap.h>
  34. #include <linux/kthread.h>
  35. #include <linux/poison.h>
  36. #include <linux/proc_fs.h>
  37. #include <linux/debugfs.h>
  38. #include <asm/uaccess.h>
  39. #include <asm/page.h>
  40. EXPORT_SYMBOL(jbd2_journal_start);
  41. EXPORT_SYMBOL(jbd2_journal_restart);
  42. EXPORT_SYMBOL(jbd2_journal_extend);
  43. EXPORT_SYMBOL(jbd2_journal_stop);
  44. EXPORT_SYMBOL(jbd2_journal_lock_updates);
  45. EXPORT_SYMBOL(jbd2_journal_unlock_updates);
  46. EXPORT_SYMBOL(jbd2_journal_get_write_access);
  47. EXPORT_SYMBOL(jbd2_journal_get_create_access);
  48. EXPORT_SYMBOL(jbd2_journal_get_undo_access);
  49. EXPORT_SYMBOL(jbd2_journal_dirty_data);
  50. EXPORT_SYMBOL(jbd2_journal_dirty_metadata);
  51. EXPORT_SYMBOL(jbd2_journal_release_buffer);
  52. EXPORT_SYMBOL(jbd2_journal_forget);
  53. #if 0
  54. EXPORT_SYMBOL(journal_sync_buffer);
  55. #endif
  56. EXPORT_SYMBOL(jbd2_journal_flush);
  57. EXPORT_SYMBOL(jbd2_journal_revoke);
  58. EXPORT_SYMBOL(jbd2_journal_init_dev);
  59. EXPORT_SYMBOL(jbd2_journal_init_inode);
  60. EXPORT_SYMBOL(jbd2_journal_update_format);
  61. EXPORT_SYMBOL(jbd2_journal_check_used_features);
  62. EXPORT_SYMBOL(jbd2_journal_check_available_features);
  63. EXPORT_SYMBOL(jbd2_journal_set_features);
  64. EXPORT_SYMBOL(jbd2_journal_create);
  65. EXPORT_SYMBOL(jbd2_journal_load);
  66. EXPORT_SYMBOL(jbd2_journal_destroy);
  67. EXPORT_SYMBOL(jbd2_journal_update_superblock);
  68. EXPORT_SYMBOL(jbd2_journal_abort);
  69. EXPORT_SYMBOL(jbd2_journal_errno);
  70. EXPORT_SYMBOL(jbd2_journal_ack_err);
  71. EXPORT_SYMBOL(jbd2_journal_clear_err);
  72. EXPORT_SYMBOL(jbd2_log_wait_commit);
  73. EXPORT_SYMBOL(jbd2_journal_start_commit);
  74. EXPORT_SYMBOL(jbd2_journal_force_commit_nested);
  75. EXPORT_SYMBOL(jbd2_journal_wipe);
  76. EXPORT_SYMBOL(jbd2_journal_blocks_per_page);
  77. EXPORT_SYMBOL(jbd2_journal_invalidatepage);
  78. EXPORT_SYMBOL(jbd2_journal_try_to_free_buffers);
  79. EXPORT_SYMBOL(jbd2_journal_force_commit);
  80. static int journal_convert_superblock_v1(journal_t *, journal_superblock_t *);
  81. static void __journal_abort_soft (journal_t *journal, int errno);
  82. static int jbd2_journal_create_jbd_slab(size_t slab_size);
  83. /*
  84. * Helper function used to manage commit timeouts
  85. */
  86. static void commit_timeout(unsigned long __data)
  87. {
  88. struct task_struct * p = (struct task_struct *) __data;
  89. wake_up_process(p);
  90. }
  91. /*
  92. * kjournald2: The main thread function used to manage a logging device
  93. * journal.
  94. *
  95. * This kernel thread is responsible for two things:
  96. *
  97. * 1) COMMIT: Every so often we need to commit the current state of the
  98. * filesystem to disk. The journal thread is responsible for writing
  99. * all of the metadata buffers to disk.
  100. *
  101. * 2) CHECKPOINT: We cannot reuse a used section of the log file until all
  102. * of the data in that part of the log has been rewritten elsewhere on
  103. * the disk. Flushing these old buffers to reclaim space in the log is
  104. * known as checkpointing, and this thread is responsible for that job.
  105. */
  106. static int kjournald2(void *arg)
  107. {
  108. journal_t *journal = arg;
  109. transaction_t *transaction;
  110. /*
  111. * Set up an interval timer which can be used to trigger a commit wakeup
  112. * after the commit interval expires
  113. */
  114. setup_timer(&journal->j_commit_timer, commit_timeout,
  115. (unsigned long)current);
  116. /* Record that the journal thread is running */
  117. journal->j_task = current;
  118. wake_up(&journal->j_wait_done_commit);
  119. printk(KERN_INFO "kjournald2 starting. Commit interval %ld seconds\n",
  120. journal->j_commit_interval / HZ);
  121. /*
  122. * And now, wait forever for commit wakeup events.
  123. */
  124. spin_lock(&journal->j_state_lock);
  125. loop:
  126. if (journal->j_flags & JBD2_UNMOUNT)
  127. goto end_loop;
  128. jbd_debug(1, "commit_sequence=%d, commit_request=%d\n",
  129. journal->j_commit_sequence, journal->j_commit_request);
  130. if (journal->j_commit_sequence != journal->j_commit_request) {
  131. jbd_debug(1, "OK, requests differ\n");
  132. spin_unlock(&journal->j_state_lock);
  133. del_timer_sync(&journal->j_commit_timer);
  134. jbd2_journal_commit_transaction(journal);
  135. spin_lock(&journal->j_state_lock);
  136. goto loop;
  137. }
  138. wake_up(&journal->j_wait_done_commit);
  139. if (freezing(current)) {
  140. /*
  141. * The simpler the better. Flushing journal isn't a
  142. * good idea, because that depends on threads that may
  143. * be already stopped.
  144. */
  145. jbd_debug(1, "Now suspending kjournald2\n");
  146. spin_unlock(&journal->j_state_lock);
  147. refrigerator();
  148. spin_lock(&journal->j_state_lock);
  149. } else {
  150. /*
  151. * We assume on resume that commits are already there,
  152. * so we don't sleep
  153. */
  154. DEFINE_WAIT(wait);
  155. int should_sleep = 1;
  156. prepare_to_wait(&journal->j_wait_commit, &wait,
  157. TASK_INTERRUPTIBLE);
  158. if (journal->j_commit_sequence != journal->j_commit_request)
  159. should_sleep = 0;
  160. transaction = journal->j_running_transaction;
  161. if (transaction && time_after_eq(jiffies,
  162. transaction->t_expires))
  163. should_sleep = 0;
  164. if (journal->j_flags & JBD2_UNMOUNT)
  165. should_sleep = 0;
  166. if (should_sleep) {
  167. spin_unlock(&journal->j_state_lock);
  168. schedule();
  169. spin_lock(&journal->j_state_lock);
  170. }
  171. finish_wait(&journal->j_wait_commit, &wait);
  172. }
  173. jbd_debug(1, "kjournald2 wakes\n");
  174. /*
  175. * Were we woken up by a commit wakeup event?
  176. */
  177. transaction = journal->j_running_transaction;
  178. if (transaction && time_after_eq(jiffies, transaction->t_expires)) {
  179. journal->j_commit_request = transaction->t_tid;
  180. jbd_debug(1, "woke because of timeout\n");
  181. }
  182. goto loop;
  183. end_loop:
  184. spin_unlock(&journal->j_state_lock);
  185. del_timer_sync(&journal->j_commit_timer);
  186. journal->j_task = NULL;
  187. wake_up(&journal->j_wait_done_commit);
  188. jbd_debug(1, "Journal thread exiting.\n");
  189. return 0;
  190. }
  191. static int jbd2_journal_start_thread(journal_t *journal)
  192. {
  193. struct task_struct *t;
  194. t = kthread_run(kjournald2, journal, "kjournald2");
  195. if (IS_ERR(t))
  196. return PTR_ERR(t);
  197. wait_event(journal->j_wait_done_commit, journal->j_task != 0);
  198. return 0;
  199. }
  200. static void journal_kill_thread(journal_t *journal)
  201. {
  202. spin_lock(&journal->j_state_lock);
  203. journal->j_flags |= JBD2_UNMOUNT;
  204. while (journal->j_task) {
  205. wake_up(&journal->j_wait_commit);
  206. spin_unlock(&journal->j_state_lock);
  207. wait_event(journal->j_wait_done_commit, journal->j_task == 0);
  208. spin_lock(&journal->j_state_lock);
  209. }
  210. spin_unlock(&journal->j_state_lock);
  211. }
  212. /*
  213. * jbd2_journal_write_metadata_buffer: write a metadata buffer to the journal.
  214. *
  215. * Writes a metadata buffer to a given disk block. The actual IO is not
  216. * performed but a new buffer_head is constructed which labels the data
  217. * to be written with the correct destination disk block.
  218. *
  219. * Any magic-number escaping which needs to be done will cause a
  220. * copy-out here. If the buffer happens to start with the
  221. * JBD2_MAGIC_NUMBER, then we can't write it to the log directly: the
  222. * magic number is only written to the log for descripter blocks. In
  223. * this case, we copy the data and replace the first word with 0, and we
  224. * return a result code which indicates that this buffer needs to be
  225. * marked as an escaped buffer in the corresponding log descriptor
  226. * block. The missing word can then be restored when the block is read
  227. * during recovery.
  228. *
  229. * If the source buffer has already been modified by a new transaction
  230. * since we took the last commit snapshot, we use the frozen copy of
  231. * that data for IO. If we end up using the existing buffer_head's data
  232. * for the write, then we *have* to lock the buffer to prevent anyone
  233. * else from using and possibly modifying it while the IO is in
  234. * progress.
  235. *
  236. * The function returns a pointer to the buffer_heads to be used for IO.
  237. *
  238. * We assume that the journal has already been locked in this function.
  239. *
  240. * Return value:
  241. * <0: Error
  242. * >=0: Finished OK
  243. *
  244. * On success:
  245. * Bit 0 set == escape performed on the data
  246. * Bit 1 set == buffer copy-out performed (kfree the data after IO)
  247. */
  248. int jbd2_journal_write_metadata_buffer(transaction_t *transaction,
  249. struct journal_head *jh_in,
  250. struct journal_head **jh_out,
  251. unsigned long long blocknr)
  252. {
  253. int need_copy_out = 0;
  254. int done_copy_out = 0;
  255. int do_escape = 0;
  256. char *mapped_data;
  257. struct buffer_head *new_bh;
  258. struct journal_head *new_jh;
  259. struct page *new_page;
  260. unsigned int new_offset;
  261. struct buffer_head *bh_in = jh2bh(jh_in);
  262. /*
  263. * The buffer really shouldn't be locked: only the current committing
  264. * transaction is allowed to write it, so nobody else is allowed
  265. * to do any IO.
  266. *
  267. * akpm: except if we're journalling data, and write() output is
  268. * also part of a shared mapping, and another thread has
  269. * decided to launch a writepage() against this buffer.
  270. */
  271. J_ASSERT_BH(bh_in, buffer_jbddirty(bh_in));
  272. new_bh = alloc_buffer_head(GFP_NOFS|__GFP_NOFAIL);
  273. /*
  274. * If a new transaction has already done a buffer copy-out, then
  275. * we use that version of the data for the commit.
  276. */
  277. jbd_lock_bh_state(bh_in);
  278. repeat:
  279. if (jh_in->b_frozen_data) {
  280. done_copy_out = 1;
  281. new_page = virt_to_page(jh_in->b_frozen_data);
  282. new_offset = offset_in_page(jh_in->b_frozen_data);
  283. } else {
  284. new_page = jh2bh(jh_in)->b_page;
  285. new_offset = offset_in_page(jh2bh(jh_in)->b_data);
  286. }
  287. mapped_data = kmap_atomic(new_page, KM_USER0);
  288. /*
  289. * Check for escaping
  290. */
  291. if (*((__be32 *)(mapped_data + new_offset)) ==
  292. cpu_to_be32(JBD2_MAGIC_NUMBER)) {
  293. need_copy_out = 1;
  294. do_escape = 1;
  295. }
  296. kunmap_atomic(mapped_data, KM_USER0);
  297. /*
  298. * Do we need to do a data copy?
  299. */
  300. if (need_copy_out && !done_copy_out) {
  301. char *tmp;
  302. jbd_unlock_bh_state(bh_in);
  303. tmp = jbd2_slab_alloc(bh_in->b_size, GFP_NOFS);
  304. jbd_lock_bh_state(bh_in);
  305. if (jh_in->b_frozen_data) {
  306. jbd2_slab_free(tmp, bh_in->b_size);
  307. goto repeat;
  308. }
  309. jh_in->b_frozen_data = tmp;
  310. mapped_data = kmap_atomic(new_page, KM_USER0);
  311. memcpy(tmp, mapped_data + new_offset, jh2bh(jh_in)->b_size);
  312. kunmap_atomic(mapped_data, KM_USER0);
  313. new_page = virt_to_page(tmp);
  314. new_offset = offset_in_page(tmp);
  315. done_copy_out = 1;
  316. }
  317. /*
  318. * Did we need to do an escaping? Now we've done all the
  319. * copying, we can finally do so.
  320. */
  321. if (do_escape) {
  322. mapped_data = kmap_atomic(new_page, KM_USER0);
  323. *((unsigned int *)(mapped_data + new_offset)) = 0;
  324. kunmap_atomic(mapped_data, KM_USER0);
  325. }
  326. /* keep subsequent assertions sane */
  327. new_bh->b_state = 0;
  328. init_buffer(new_bh, NULL, NULL);
  329. atomic_set(&new_bh->b_count, 1);
  330. jbd_unlock_bh_state(bh_in);
  331. new_jh = jbd2_journal_add_journal_head(new_bh); /* This sleeps */
  332. set_bh_page(new_bh, new_page, new_offset);
  333. new_jh->b_transaction = NULL;
  334. new_bh->b_size = jh2bh(jh_in)->b_size;
  335. new_bh->b_bdev = transaction->t_journal->j_dev;
  336. new_bh->b_blocknr = blocknr;
  337. set_buffer_mapped(new_bh);
  338. set_buffer_dirty(new_bh);
  339. *jh_out = new_jh;
  340. /*
  341. * The to-be-written buffer needs to get moved to the io queue,
  342. * and the original buffer whose contents we are shadowing or
  343. * copying is moved to the transaction's shadow queue.
  344. */
  345. JBUFFER_TRACE(jh_in, "file as BJ_Shadow");
  346. jbd2_journal_file_buffer(jh_in, transaction, BJ_Shadow);
  347. JBUFFER_TRACE(new_jh, "file as BJ_IO");
  348. jbd2_journal_file_buffer(new_jh, transaction, BJ_IO);
  349. return do_escape | (done_copy_out << 1);
  350. }
  351. /*
  352. * Allocation code for the journal file. Manage the space left in the
  353. * journal, so that we can begin checkpointing when appropriate.
  354. */
  355. /*
  356. * __jbd2_log_space_left: Return the number of free blocks left in the journal.
  357. *
  358. * Called with the journal already locked.
  359. *
  360. * Called under j_state_lock
  361. */
  362. int __jbd2_log_space_left(journal_t *journal)
  363. {
  364. int left = journal->j_free;
  365. assert_spin_locked(&journal->j_state_lock);
  366. /*
  367. * Be pessimistic here about the number of those free blocks which
  368. * might be required for log descriptor control blocks.
  369. */
  370. #define MIN_LOG_RESERVED_BLOCKS 32 /* Allow for rounding errors */
  371. left -= MIN_LOG_RESERVED_BLOCKS;
  372. if (left <= 0)
  373. return 0;
  374. left -= (left >> 3);
  375. return left;
  376. }
  377. /*
  378. * Called under j_state_lock. Returns true if a transaction was started.
  379. */
  380. int __jbd2_log_start_commit(journal_t *journal, tid_t target)
  381. {
  382. /*
  383. * Are we already doing a recent enough commit?
  384. */
  385. if (!tid_geq(journal->j_commit_request, target)) {
  386. /*
  387. * We want a new commit: OK, mark the request and wakup the
  388. * commit thread. We do _not_ do the commit ourselves.
  389. */
  390. journal->j_commit_request = target;
  391. jbd_debug(1, "JBD: requesting commit %d/%d\n",
  392. journal->j_commit_request,
  393. journal->j_commit_sequence);
  394. wake_up(&journal->j_wait_commit);
  395. return 1;
  396. }
  397. return 0;
  398. }
  399. int jbd2_log_start_commit(journal_t *journal, tid_t tid)
  400. {
  401. int ret;
  402. spin_lock(&journal->j_state_lock);
  403. ret = __jbd2_log_start_commit(journal, tid);
  404. spin_unlock(&journal->j_state_lock);
  405. return ret;
  406. }
  407. /*
  408. * Force and wait upon a commit if the calling process is not within
  409. * transaction. This is used for forcing out undo-protected data which contains
  410. * bitmaps, when the fs is running out of space.
  411. *
  412. * We can only force the running transaction if we don't have an active handle;
  413. * otherwise, we will deadlock.
  414. *
  415. * Returns true if a transaction was started.
  416. */
  417. int jbd2_journal_force_commit_nested(journal_t *journal)
  418. {
  419. transaction_t *transaction = NULL;
  420. tid_t tid;
  421. spin_lock(&journal->j_state_lock);
  422. if (journal->j_running_transaction && !current->journal_info) {
  423. transaction = journal->j_running_transaction;
  424. __jbd2_log_start_commit(journal, transaction->t_tid);
  425. } else if (journal->j_committing_transaction)
  426. transaction = journal->j_committing_transaction;
  427. if (!transaction) {
  428. spin_unlock(&journal->j_state_lock);
  429. return 0; /* Nothing to retry */
  430. }
  431. tid = transaction->t_tid;
  432. spin_unlock(&journal->j_state_lock);
  433. jbd2_log_wait_commit(journal, tid);
  434. return 1;
  435. }
  436. /*
  437. * Start a commit of the current running transaction (if any). Returns true
  438. * if a transaction was started, and fills its tid in at *ptid
  439. */
  440. int jbd2_journal_start_commit(journal_t *journal, tid_t *ptid)
  441. {
  442. int ret = 0;
  443. spin_lock(&journal->j_state_lock);
  444. if (journal->j_running_transaction) {
  445. tid_t tid = journal->j_running_transaction->t_tid;
  446. ret = __jbd2_log_start_commit(journal, tid);
  447. if (ret && ptid)
  448. *ptid = tid;
  449. } else if (journal->j_committing_transaction && ptid) {
  450. /*
  451. * If ext3_write_super() recently started a commit, then we
  452. * have to wait for completion of that transaction
  453. */
  454. *ptid = journal->j_committing_transaction->t_tid;
  455. ret = 1;
  456. }
  457. spin_unlock(&journal->j_state_lock);
  458. return ret;
  459. }
  460. /*
  461. * Wait for a specified commit to complete.
  462. * The caller may not hold the journal lock.
  463. */
  464. int jbd2_log_wait_commit(journal_t *journal, tid_t tid)
  465. {
  466. int err = 0;
  467. #ifdef CONFIG_JBD2_DEBUG
  468. spin_lock(&journal->j_state_lock);
  469. if (!tid_geq(journal->j_commit_request, tid)) {
  470. printk(KERN_EMERG
  471. "%s: error: j_commit_request=%d, tid=%d\n",
  472. __FUNCTION__, journal->j_commit_request, tid);
  473. }
  474. spin_unlock(&journal->j_state_lock);
  475. #endif
  476. spin_lock(&journal->j_state_lock);
  477. while (tid_gt(tid, journal->j_commit_sequence)) {
  478. jbd_debug(1, "JBD: want %d, j_commit_sequence=%d\n",
  479. tid, journal->j_commit_sequence);
  480. wake_up(&journal->j_wait_commit);
  481. spin_unlock(&journal->j_state_lock);
  482. wait_event(journal->j_wait_done_commit,
  483. !tid_gt(tid, journal->j_commit_sequence));
  484. spin_lock(&journal->j_state_lock);
  485. }
  486. spin_unlock(&journal->j_state_lock);
  487. if (unlikely(is_journal_aborted(journal))) {
  488. printk(KERN_EMERG "journal commit I/O error\n");
  489. err = -EIO;
  490. }
  491. return err;
  492. }
  493. /*
  494. * Log buffer allocation routines:
  495. */
  496. int jbd2_journal_next_log_block(journal_t *journal, unsigned long long *retp)
  497. {
  498. unsigned long blocknr;
  499. spin_lock(&journal->j_state_lock);
  500. J_ASSERT(journal->j_free > 1);
  501. blocknr = journal->j_head;
  502. journal->j_head++;
  503. journal->j_free--;
  504. if (journal->j_head == journal->j_last)
  505. journal->j_head = journal->j_first;
  506. spin_unlock(&journal->j_state_lock);
  507. return jbd2_journal_bmap(journal, blocknr, retp);
  508. }
  509. /*
  510. * Conversion of logical to physical block numbers for the journal
  511. *
  512. * On external journals the journal blocks are identity-mapped, so
  513. * this is a no-op. If needed, we can use j_blk_offset - everything is
  514. * ready.
  515. */
  516. int jbd2_journal_bmap(journal_t *journal, unsigned long blocknr,
  517. unsigned long long *retp)
  518. {
  519. int err = 0;
  520. unsigned long long ret;
  521. if (journal->j_inode) {
  522. ret = bmap(journal->j_inode, blocknr);
  523. if (ret)
  524. *retp = ret;
  525. else {
  526. char b[BDEVNAME_SIZE];
  527. printk(KERN_ALERT "%s: journal block not found "
  528. "at offset %lu on %s\n",
  529. __FUNCTION__,
  530. blocknr,
  531. bdevname(journal->j_dev, b));
  532. err = -EIO;
  533. __journal_abort_soft(journal, err);
  534. }
  535. } else {
  536. *retp = blocknr; /* +journal->j_blk_offset */
  537. }
  538. return err;
  539. }
  540. /*
  541. * We play buffer_head aliasing tricks to write data/metadata blocks to
  542. * the journal without copying their contents, but for journal
  543. * descriptor blocks we do need to generate bona fide buffers.
  544. *
  545. * After the caller of jbd2_journal_get_descriptor_buffer() has finished modifying
  546. * the buffer's contents they really should run flush_dcache_page(bh->b_page).
  547. * But we don't bother doing that, so there will be coherency problems with
  548. * mmaps of blockdevs which hold live JBD-controlled filesystems.
  549. */
  550. struct journal_head *jbd2_journal_get_descriptor_buffer(journal_t *journal)
  551. {
  552. struct buffer_head *bh;
  553. unsigned long long blocknr;
  554. int err;
  555. err = jbd2_journal_next_log_block(journal, &blocknr);
  556. if (err)
  557. return NULL;
  558. bh = __getblk(journal->j_dev, blocknr, journal->j_blocksize);
  559. lock_buffer(bh);
  560. memset(bh->b_data, 0, journal->j_blocksize);
  561. set_buffer_uptodate(bh);
  562. unlock_buffer(bh);
  563. BUFFER_TRACE(bh, "return this buffer");
  564. return jbd2_journal_add_journal_head(bh);
  565. }
  566. /*
  567. * Management for journal control blocks: functions to create and
  568. * destroy journal_t structures, and to initialise and read existing
  569. * journal blocks from disk. */
  570. /* First: create and setup a journal_t object in memory. We initialise
  571. * very few fields yet: that has to wait until we have created the
  572. * journal structures from from scratch, or loaded them from disk. */
  573. static journal_t * journal_init_common (void)
  574. {
  575. journal_t *journal;
  576. int err;
  577. journal = jbd_kmalloc(sizeof(*journal), GFP_KERNEL);
  578. if (!journal)
  579. goto fail;
  580. memset(journal, 0, sizeof(*journal));
  581. init_waitqueue_head(&journal->j_wait_transaction_locked);
  582. init_waitqueue_head(&journal->j_wait_logspace);
  583. init_waitqueue_head(&journal->j_wait_done_commit);
  584. init_waitqueue_head(&journal->j_wait_checkpoint);
  585. init_waitqueue_head(&journal->j_wait_commit);
  586. init_waitqueue_head(&journal->j_wait_updates);
  587. mutex_init(&journal->j_barrier);
  588. mutex_init(&journal->j_checkpoint_mutex);
  589. spin_lock_init(&journal->j_revoke_lock);
  590. spin_lock_init(&journal->j_list_lock);
  591. spin_lock_init(&journal->j_state_lock);
  592. journal->j_commit_interval = (HZ * JBD_DEFAULT_MAX_COMMIT_AGE);
  593. /* The journal is marked for error until we succeed with recovery! */
  594. journal->j_flags = JBD2_ABORT;
  595. /* Set up a default-sized revoke table for the new mount. */
  596. err = jbd2_journal_init_revoke(journal, JOURNAL_REVOKE_DEFAULT_HASH);
  597. if (err) {
  598. kfree(journal);
  599. goto fail;
  600. }
  601. return journal;
  602. fail:
  603. return NULL;
  604. }
  605. /* jbd2_journal_init_dev and jbd2_journal_init_inode:
  606. *
  607. * Create a journal structure assigned some fixed set of disk blocks to
  608. * the journal. We don't actually touch those disk blocks yet, but we
  609. * need to set up all of the mapping information to tell the journaling
  610. * system where the journal blocks are.
  611. *
  612. */
  613. /**
  614. * journal_t * jbd2_journal_init_dev() - creates an initialises a journal structure
  615. * @bdev: Block device on which to create the journal
  616. * @fs_dev: Device which hold journalled filesystem for this journal.
  617. * @start: Block nr Start of journal.
  618. * @len: Length of the journal in blocks.
  619. * @blocksize: blocksize of journalling device
  620. * @returns: a newly created journal_t *
  621. *
  622. * jbd2_journal_init_dev creates a journal which maps a fixed contiguous
  623. * range of blocks on an arbitrary block device.
  624. *
  625. */
  626. journal_t * jbd2_journal_init_dev(struct block_device *bdev,
  627. struct block_device *fs_dev,
  628. unsigned long long start, int len, int blocksize)
  629. {
  630. journal_t *journal = journal_init_common();
  631. struct buffer_head *bh;
  632. int n;
  633. if (!journal)
  634. return NULL;
  635. /* journal descriptor can store up to n blocks -bzzz */
  636. journal->j_blocksize = blocksize;
  637. n = journal->j_blocksize / sizeof(journal_block_tag_t);
  638. journal->j_wbufsize = n;
  639. journal->j_wbuf = kmalloc(n * sizeof(struct buffer_head*), GFP_KERNEL);
  640. if (!journal->j_wbuf) {
  641. printk(KERN_ERR "%s: Cant allocate bhs for commit thread\n",
  642. __FUNCTION__);
  643. kfree(journal);
  644. journal = NULL;
  645. goto out;
  646. }
  647. journal->j_dev = bdev;
  648. journal->j_fs_dev = fs_dev;
  649. journal->j_blk_offset = start;
  650. journal->j_maxlen = len;
  651. bh = __getblk(journal->j_dev, start, journal->j_blocksize);
  652. J_ASSERT(bh != NULL);
  653. journal->j_sb_buffer = bh;
  654. journal->j_superblock = (journal_superblock_t *)bh->b_data;
  655. out:
  656. return journal;
  657. }
  658. /**
  659. * journal_t * jbd2_journal_init_inode () - creates a journal which maps to a inode.
  660. * @inode: An inode to create the journal in
  661. *
  662. * jbd2_journal_init_inode creates a journal which maps an on-disk inode as
  663. * the journal. The inode must exist already, must support bmap() and
  664. * must have all data blocks preallocated.
  665. */
  666. journal_t * jbd2_journal_init_inode (struct inode *inode)
  667. {
  668. struct buffer_head *bh;
  669. journal_t *journal = journal_init_common();
  670. int err;
  671. int n;
  672. unsigned long long blocknr;
  673. if (!journal)
  674. return NULL;
  675. journal->j_dev = journal->j_fs_dev = inode->i_sb->s_bdev;
  676. journal->j_inode = inode;
  677. jbd_debug(1,
  678. "journal %p: inode %s/%ld, size %Ld, bits %d, blksize %ld\n",
  679. journal, inode->i_sb->s_id, inode->i_ino,
  680. (long long) inode->i_size,
  681. inode->i_sb->s_blocksize_bits, inode->i_sb->s_blocksize);
  682. journal->j_maxlen = inode->i_size >> inode->i_sb->s_blocksize_bits;
  683. journal->j_blocksize = inode->i_sb->s_blocksize;
  684. /* journal descriptor can store up to n blocks -bzzz */
  685. n = journal->j_blocksize / sizeof(journal_block_tag_t);
  686. journal->j_wbufsize = n;
  687. journal->j_wbuf = kmalloc(n * sizeof(struct buffer_head*), GFP_KERNEL);
  688. if (!journal->j_wbuf) {
  689. printk(KERN_ERR "%s: Cant allocate bhs for commit thread\n",
  690. __FUNCTION__);
  691. kfree(journal);
  692. return NULL;
  693. }
  694. err = jbd2_journal_bmap(journal, 0, &blocknr);
  695. /* If that failed, give up */
  696. if (err) {
  697. printk(KERN_ERR "%s: Cannnot locate journal superblock\n",
  698. __FUNCTION__);
  699. kfree(journal);
  700. return NULL;
  701. }
  702. bh = __getblk(journal->j_dev, blocknr, journal->j_blocksize);
  703. J_ASSERT(bh != NULL);
  704. journal->j_sb_buffer = bh;
  705. journal->j_superblock = (journal_superblock_t *)bh->b_data;
  706. return journal;
  707. }
  708. /*
  709. * If the journal init or create aborts, we need to mark the journal
  710. * superblock as being NULL to prevent the journal destroy from writing
  711. * back a bogus superblock.
  712. */
  713. static void journal_fail_superblock (journal_t *journal)
  714. {
  715. struct buffer_head *bh = journal->j_sb_buffer;
  716. brelse(bh);
  717. journal->j_sb_buffer = NULL;
  718. }
  719. /*
  720. * Given a journal_t structure, initialise the various fields for
  721. * startup of a new journaling session. We use this both when creating
  722. * a journal, and after recovering an old journal to reset it for
  723. * subsequent use.
  724. */
  725. static int journal_reset(journal_t *journal)
  726. {
  727. journal_superblock_t *sb = journal->j_superblock;
  728. unsigned long long first, last;
  729. first = be32_to_cpu(sb->s_first);
  730. last = be32_to_cpu(sb->s_maxlen);
  731. journal->j_first = first;
  732. journal->j_last = last;
  733. journal->j_head = first;
  734. journal->j_tail = first;
  735. journal->j_free = last - first;
  736. journal->j_tail_sequence = journal->j_transaction_sequence;
  737. journal->j_commit_sequence = journal->j_transaction_sequence - 1;
  738. journal->j_commit_request = journal->j_commit_sequence;
  739. journal->j_max_transaction_buffers = journal->j_maxlen / 4;
  740. /* Add the dynamic fields and write it to disk. */
  741. jbd2_journal_update_superblock(journal, 1);
  742. return jbd2_journal_start_thread(journal);
  743. }
  744. /**
  745. * int jbd2_journal_create() - Initialise the new journal file
  746. * @journal: Journal to create. This structure must have been initialised
  747. *
  748. * Given a journal_t structure which tells us which disk blocks we can
  749. * use, create a new journal superblock and initialise all of the
  750. * journal fields from scratch.
  751. **/
  752. int jbd2_journal_create(journal_t *journal)
  753. {
  754. unsigned long long blocknr;
  755. struct buffer_head *bh;
  756. journal_superblock_t *sb;
  757. int i, err;
  758. if (journal->j_maxlen < JBD2_MIN_JOURNAL_BLOCKS) {
  759. printk (KERN_ERR "Journal length (%d blocks) too short.\n",
  760. journal->j_maxlen);
  761. journal_fail_superblock(journal);
  762. return -EINVAL;
  763. }
  764. if (journal->j_inode == NULL) {
  765. /*
  766. * We don't know what block to start at!
  767. */
  768. printk(KERN_EMERG
  769. "%s: creation of journal on external device!\n",
  770. __FUNCTION__);
  771. BUG();
  772. }
  773. /* Zero out the entire journal on disk. We cannot afford to
  774. have any blocks on disk beginning with JBD2_MAGIC_NUMBER. */
  775. jbd_debug(1, "JBD: Zeroing out journal blocks...\n");
  776. for (i = 0; i < journal->j_maxlen; i++) {
  777. err = jbd2_journal_bmap(journal, i, &blocknr);
  778. if (err)
  779. return err;
  780. bh = __getblk(journal->j_dev, blocknr, journal->j_blocksize);
  781. lock_buffer(bh);
  782. memset (bh->b_data, 0, journal->j_blocksize);
  783. BUFFER_TRACE(bh, "marking dirty");
  784. mark_buffer_dirty(bh);
  785. BUFFER_TRACE(bh, "marking uptodate");
  786. set_buffer_uptodate(bh);
  787. unlock_buffer(bh);
  788. __brelse(bh);
  789. }
  790. sync_blockdev(journal->j_dev);
  791. jbd_debug(1, "JBD: journal cleared.\n");
  792. /* OK, fill in the initial static fields in the new superblock */
  793. sb = journal->j_superblock;
  794. sb->s_header.h_magic = cpu_to_be32(JBD2_MAGIC_NUMBER);
  795. sb->s_header.h_blocktype = cpu_to_be32(JBD2_SUPERBLOCK_V2);
  796. sb->s_blocksize = cpu_to_be32(journal->j_blocksize);
  797. sb->s_maxlen = cpu_to_be32(journal->j_maxlen);
  798. sb->s_first = cpu_to_be32(1);
  799. journal->j_transaction_sequence = 1;
  800. journal->j_flags &= ~JBD2_ABORT;
  801. journal->j_format_version = 2;
  802. return journal_reset(journal);
  803. }
  804. /**
  805. * void jbd2_journal_update_superblock() - Update journal sb on disk.
  806. * @journal: The journal to update.
  807. * @wait: Set to '0' if you don't want to wait for IO completion.
  808. *
  809. * Update a journal's dynamic superblock fields and write it to disk,
  810. * optionally waiting for the IO to complete.
  811. */
  812. void jbd2_journal_update_superblock(journal_t *journal, int wait)
  813. {
  814. journal_superblock_t *sb = journal->j_superblock;
  815. struct buffer_head *bh = journal->j_sb_buffer;
  816. /*
  817. * As a special case, if the on-disk copy is already marked as needing
  818. * no recovery (s_start == 0) and there are no outstanding transactions
  819. * in the filesystem, then we can safely defer the superblock update
  820. * until the next commit by setting JBD2_FLUSHED. This avoids
  821. * attempting a write to a potential-readonly device.
  822. */
  823. if (sb->s_start == 0 && journal->j_tail_sequence ==
  824. journal->j_transaction_sequence) {
  825. jbd_debug(1,"JBD: Skipping superblock update on recovered sb "
  826. "(start %ld, seq %d, errno %d)\n",
  827. journal->j_tail, journal->j_tail_sequence,
  828. journal->j_errno);
  829. goto out;
  830. }
  831. spin_lock(&journal->j_state_lock);
  832. jbd_debug(1,"JBD: updating superblock (start %ld, seq %d, errno %d)\n",
  833. journal->j_tail, journal->j_tail_sequence, journal->j_errno);
  834. sb->s_sequence = cpu_to_be32(journal->j_tail_sequence);
  835. sb->s_start = cpu_to_be32(journal->j_tail);
  836. sb->s_errno = cpu_to_be32(journal->j_errno);
  837. spin_unlock(&journal->j_state_lock);
  838. BUFFER_TRACE(bh, "marking dirty");
  839. mark_buffer_dirty(bh);
  840. if (wait)
  841. sync_dirty_buffer(bh);
  842. else
  843. ll_rw_block(SWRITE, 1, &bh);
  844. out:
  845. /* If we have just flushed the log (by marking s_start==0), then
  846. * any future commit will have to be careful to update the
  847. * superblock again to re-record the true start of the log. */
  848. spin_lock(&journal->j_state_lock);
  849. if (sb->s_start)
  850. journal->j_flags &= ~JBD2_FLUSHED;
  851. else
  852. journal->j_flags |= JBD2_FLUSHED;
  853. spin_unlock(&journal->j_state_lock);
  854. }
  855. /*
  856. * Read the superblock for a given journal, performing initial
  857. * validation of the format.
  858. */
  859. static int journal_get_superblock(journal_t *journal)
  860. {
  861. struct buffer_head *bh;
  862. journal_superblock_t *sb;
  863. int err = -EIO;
  864. bh = journal->j_sb_buffer;
  865. J_ASSERT(bh != NULL);
  866. if (!buffer_uptodate(bh)) {
  867. ll_rw_block(READ, 1, &bh);
  868. wait_on_buffer(bh);
  869. if (!buffer_uptodate(bh)) {
  870. printk (KERN_ERR
  871. "JBD: IO error reading journal superblock\n");
  872. goto out;
  873. }
  874. }
  875. sb = journal->j_superblock;
  876. err = -EINVAL;
  877. if (sb->s_header.h_magic != cpu_to_be32(JBD2_MAGIC_NUMBER) ||
  878. sb->s_blocksize != cpu_to_be32(journal->j_blocksize)) {
  879. printk(KERN_WARNING "JBD: no valid journal superblock found\n");
  880. goto out;
  881. }
  882. switch(be32_to_cpu(sb->s_header.h_blocktype)) {
  883. case JBD2_SUPERBLOCK_V1:
  884. journal->j_format_version = 1;
  885. break;
  886. case JBD2_SUPERBLOCK_V2:
  887. journal->j_format_version = 2;
  888. break;
  889. default:
  890. printk(KERN_WARNING "JBD: unrecognised superblock format ID\n");
  891. goto out;
  892. }
  893. if (be32_to_cpu(sb->s_maxlen) < journal->j_maxlen)
  894. journal->j_maxlen = be32_to_cpu(sb->s_maxlen);
  895. else if (be32_to_cpu(sb->s_maxlen) > journal->j_maxlen) {
  896. printk (KERN_WARNING "JBD: journal file too short\n");
  897. goto out;
  898. }
  899. return 0;
  900. out:
  901. journal_fail_superblock(journal);
  902. return err;
  903. }
  904. /*
  905. * Load the on-disk journal superblock and read the key fields into the
  906. * journal_t.
  907. */
  908. static int load_superblock(journal_t *journal)
  909. {
  910. int err;
  911. journal_superblock_t *sb;
  912. err = journal_get_superblock(journal);
  913. if (err)
  914. return err;
  915. sb = journal->j_superblock;
  916. journal->j_tail_sequence = be32_to_cpu(sb->s_sequence);
  917. journal->j_tail = be32_to_cpu(sb->s_start);
  918. journal->j_first = be32_to_cpu(sb->s_first);
  919. journal->j_last = be32_to_cpu(sb->s_maxlen);
  920. journal->j_errno = be32_to_cpu(sb->s_errno);
  921. return 0;
  922. }
  923. /**
  924. * int jbd2_journal_load() - Read journal from disk.
  925. * @journal: Journal to act on.
  926. *
  927. * Given a journal_t structure which tells us which disk blocks contain
  928. * a journal, read the journal from disk to initialise the in-memory
  929. * structures.
  930. */
  931. int jbd2_journal_load(journal_t *journal)
  932. {
  933. int err;
  934. journal_superblock_t *sb;
  935. err = load_superblock(journal);
  936. if (err)
  937. return err;
  938. sb = journal->j_superblock;
  939. /* If this is a V2 superblock, then we have to check the
  940. * features flags on it. */
  941. if (journal->j_format_version >= 2) {
  942. if ((sb->s_feature_ro_compat &
  943. ~cpu_to_be32(JBD2_KNOWN_ROCOMPAT_FEATURES)) ||
  944. (sb->s_feature_incompat &
  945. ~cpu_to_be32(JBD2_KNOWN_INCOMPAT_FEATURES))) {
  946. printk (KERN_WARNING
  947. "JBD: Unrecognised features on journal\n");
  948. return -EINVAL;
  949. }
  950. }
  951. /*
  952. * Create a slab for this blocksize
  953. */
  954. err = jbd2_journal_create_jbd_slab(be32_to_cpu(sb->s_blocksize));
  955. if (err)
  956. return err;
  957. /* Let the recovery code check whether it needs to recover any
  958. * data from the journal. */
  959. if (jbd2_journal_recover(journal))
  960. goto recovery_error;
  961. /* OK, we've finished with the dynamic journal bits:
  962. * reinitialise the dynamic contents of the superblock in memory
  963. * and reset them on disk. */
  964. if (journal_reset(journal))
  965. goto recovery_error;
  966. journal->j_flags &= ~JBD2_ABORT;
  967. journal->j_flags |= JBD2_LOADED;
  968. return 0;
  969. recovery_error:
  970. printk (KERN_WARNING "JBD: recovery failed\n");
  971. return -EIO;
  972. }
  973. /**
  974. * void jbd2_journal_destroy() - Release a journal_t structure.
  975. * @journal: Journal to act on.
  976. *
  977. * Release a journal_t structure once it is no longer in use by the
  978. * journaled object.
  979. */
  980. void jbd2_journal_destroy(journal_t *journal)
  981. {
  982. /* Wait for the commit thread to wake up and die. */
  983. journal_kill_thread(journal);
  984. /* Force a final log commit */
  985. if (journal->j_running_transaction)
  986. jbd2_journal_commit_transaction(journal);
  987. /* Force any old transactions to disk */
  988. /* Totally anal locking here... */
  989. spin_lock(&journal->j_list_lock);
  990. while (journal->j_checkpoint_transactions != NULL) {
  991. spin_unlock(&journal->j_list_lock);
  992. jbd2_log_do_checkpoint(journal);
  993. spin_lock(&journal->j_list_lock);
  994. }
  995. J_ASSERT(journal->j_running_transaction == NULL);
  996. J_ASSERT(journal->j_committing_transaction == NULL);
  997. J_ASSERT(journal->j_checkpoint_transactions == NULL);
  998. spin_unlock(&journal->j_list_lock);
  999. /* We can now mark the journal as empty. */
  1000. journal->j_tail = 0;
  1001. journal->j_tail_sequence = ++journal->j_transaction_sequence;
  1002. if (journal->j_sb_buffer) {
  1003. jbd2_journal_update_superblock(journal, 1);
  1004. brelse(journal->j_sb_buffer);
  1005. }
  1006. if (journal->j_inode)
  1007. iput(journal->j_inode);
  1008. if (journal->j_revoke)
  1009. jbd2_journal_destroy_revoke(journal);
  1010. kfree(journal->j_wbuf);
  1011. kfree(journal);
  1012. }
  1013. /**
  1014. *int jbd2_journal_check_used_features () - Check if features specified are used.
  1015. * @journal: Journal to check.
  1016. * @compat: bitmask of compatible features
  1017. * @ro: bitmask of features that force read-only mount
  1018. * @incompat: bitmask of incompatible features
  1019. *
  1020. * Check whether the journal uses all of a given set of
  1021. * features. Return true (non-zero) if it does.
  1022. **/
  1023. int jbd2_journal_check_used_features (journal_t *journal, unsigned long compat,
  1024. unsigned long ro, unsigned long incompat)
  1025. {
  1026. journal_superblock_t *sb;
  1027. if (!compat && !ro && !incompat)
  1028. return 1;
  1029. if (journal->j_format_version == 1)
  1030. return 0;
  1031. sb = journal->j_superblock;
  1032. if (((be32_to_cpu(sb->s_feature_compat) & compat) == compat) &&
  1033. ((be32_to_cpu(sb->s_feature_ro_compat) & ro) == ro) &&
  1034. ((be32_to_cpu(sb->s_feature_incompat) & incompat) == incompat))
  1035. return 1;
  1036. return 0;
  1037. }
  1038. /**
  1039. * int jbd2_journal_check_available_features() - Check feature set in journalling layer
  1040. * @journal: Journal to check.
  1041. * @compat: bitmask of compatible features
  1042. * @ro: bitmask of features that force read-only mount
  1043. * @incompat: bitmask of incompatible features
  1044. *
  1045. * Check whether the journaling code supports the use of
  1046. * all of a given set of features on this journal. Return true
  1047. * (non-zero) if it can. */
  1048. int jbd2_journal_check_available_features (journal_t *journal, unsigned long compat,
  1049. unsigned long ro, unsigned long incompat)
  1050. {
  1051. journal_superblock_t *sb;
  1052. if (!compat && !ro && !incompat)
  1053. return 1;
  1054. sb = journal->j_superblock;
  1055. /* We can support any known requested features iff the
  1056. * superblock is in version 2. Otherwise we fail to support any
  1057. * extended sb features. */
  1058. if (journal->j_format_version != 2)
  1059. return 0;
  1060. if ((compat & JBD2_KNOWN_COMPAT_FEATURES) == compat &&
  1061. (ro & JBD2_KNOWN_ROCOMPAT_FEATURES) == ro &&
  1062. (incompat & JBD2_KNOWN_INCOMPAT_FEATURES) == incompat)
  1063. return 1;
  1064. return 0;
  1065. }
  1066. /**
  1067. * int jbd2_journal_set_features () - Mark a given journal feature in the superblock
  1068. * @journal: Journal to act on.
  1069. * @compat: bitmask of compatible features
  1070. * @ro: bitmask of features that force read-only mount
  1071. * @incompat: bitmask of incompatible features
  1072. *
  1073. * Mark a given journal feature as present on the
  1074. * superblock. Returns true if the requested features could be set.
  1075. *
  1076. */
  1077. int jbd2_journal_set_features (journal_t *journal, unsigned long compat,
  1078. unsigned long ro, unsigned long incompat)
  1079. {
  1080. journal_superblock_t *sb;
  1081. if (jbd2_journal_check_used_features(journal, compat, ro, incompat))
  1082. return 1;
  1083. if (!jbd2_journal_check_available_features(journal, compat, ro, incompat))
  1084. return 0;
  1085. jbd_debug(1, "Setting new features 0x%lx/0x%lx/0x%lx\n",
  1086. compat, ro, incompat);
  1087. sb = journal->j_superblock;
  1088. sb->s_feature_compat |= cpu_to_be32(compat);
  1089. sb->s_feature_ro_compat |= cpu_to_be32(ro);
  1090. sb->s_feature_incompat |= cpu_to_be32(incompat);
  1091. return 1;
  1092. }
  1093. /**
  1094. * int jbd2_journal_update_format () - Update on-disk journal structure.
  1095. * @journal: Journal to act on.
  1096. *
  1097. * Given an initialised but unloaded journal struct, poke about in the
  1098. * on-disk structure to update it to the most recent supported version.
  1099. */
  1100. int jbd2_journal_update_format (journal_t *journal)
  1101. {
  1102. journal_superblock_t *sb;
  1103. int err;
  1104. err = journal_get_superblock(journal);
  1105. if (err)
  1106. return err;
  1107. sb = journal->j_superblock;
  1108. switch (be32_to_cpu(sb->s_header.h_blocktype)) {
  1109. case JBD2_SUPERBLOCK_V2:
  1110. return 0;
  1111. case JBD2_SUPERBLOCK_V1:
  1112. return journal_convert_superblock_v1(journal, sb);
  1113. default:
  1114. break;
  1115. }
  1116. return -EINVAL;
  1117. }
  1118. static int journal_convert_superblock_v1(journal_t *journal,
  1119. journal_superblock_t *sb)
  1120. {
  1121. int offset, blocksize;
  1122. struct buffer_head *bh;
  1123. printk(KERN_WARNING
  1124. "JBD: Converting superblock from version 1 to 2.\n");
  1125. /* Pre-initialise new fields to zero */
  1126. offset = ((char *) &(sb->s_feature_compat)) - ((char *) sb);
  1127. blocksize = be32_to_cpu(sb->s_blocksize);
  1128. memset(&sb->s_feature_compat, 0, blocksize-offset);
  1129. sb->s_nr_users = cpu_to_be32(1);
  1130. sb->s_header.h_blocktype = cpu_to_be32(JBD2_SUPERBLOCK_V2);
  1131. journal->j_format_version = 2;
  1132. bh = journal->j_sb_buffer;
  1133. BUFFER_TRACE(bh, "marking dirty");
  1134. mark_buffer_dirty(bh);
  1135. sync_dirty_buffer(bh);
  1136. return 0;
  1137. }
  1138. /**
  1139. * int jbd2_journal_flush () - Flush journal
  1140. * @journal: Journal to act on.
  1141. *
  1142. * Flush all data for a given journal to disk and empty the journal.
  1143. * Filesystems can use this when remounting readonly to ensure that
  1144. * recovery does not need to happen on remount.
  1145. */
  1146. int jbd2_journal_flush(journal_t *journal)
  1147. {
  1148. int err = 0;
  1149. transaction_t *transaction = NULL;
  1150. unsigned long old_tail;
  1151. spin_lock(&journal->j_state_lock);
  1152. /* Force everything buffered to the log... */
  1153. if (journal->j_running_transaction) {
  1154. transaction = journal->j_running_transaction;
  1155. __jbd2_log_start_commit(journal, transaction->t_tid);
  1156. } else if (journal->j_committing_transaction)
  1157. transaction = journal->j_committing_transaction;
  1158. /* Wait for the log commit to complete... */
  1159. if (transaction) {
  1160. tid_t tid = transaction->t_tid;
  1161. spin_unlock(&journal->j_state_lock);
  1162. jbd2_log_wait_commit(journal, tid);
  1163. } else {
  1164. spin_unlock(&journal->j_state_lock);
  1165. }
  1166. /* ...and flush everything in the log out to disk. */
  1167. spin_lock(&journal->j_list_lock);
  1168. while (!err && journal->j_checkpoint_transactions != NULL) {
  1169. spin_unlock(&journal->j_list_lock);
  1170. err = jbd2_log_do_checkpoint(journal);
  1171. spin_lock(&journal->j_list_lock);
  1172. }
  1173. spin_unlock(&journal->j_list_lock);
  1174. jbd2_cleanup_journal_tail(journal);
  1175. /* Finally, mark the journal as really needing no recovery.
  1176. * This sets s_start==0 in the underlying superblock, which is
  1177. * the magic code for a fully-recovered superblock. Any future
  1178. * commits of data to the journal will restore the current
  1179. * s_start value. */
  1180. spin_lock(&journal->j_state_lock);
  1181. old_tail = journal->j_tail;
  1182. journal->j_tail = 0;
  1183. spin_unlock(&journal->j_state_lock);
  1184. jbd2_journal_update_superblock(journal, 1);
  1185. spin_lock(&journal->j_state_lock);
  1186. journal->j_tail = old_tail;
  1187. J_ASSERT(!journal->j_running_transaction);
  1188. J_ASSERT(!journal->j_committing_transaction);
  1189. J_ASSERT(!journal->j_checkpoint_transactions);
  1190. J_ASSERT(journal->j_head == journal->j_tail);
  1191. J_ASSERT(journal->j_tail_sequence == journal->j_transaction_sequence);
  1192. spin_unlock(&journal->j_state_lock);
  1193. return err;
  1194. }
  1195. /**
  1196. * int jbd2_journal_wipe() - Wipe journal contents
  1197. * @journal: Journal to act on.
  1198. * @write: flag (see below)
  1199. *
  1200. * Wipe out all of the contents of a journal, safely. This will produce
  1201. * a warning if the journal contains any valid recovery information.
  1202. * Must be called between journal_init_*() and jbd2_journal_load().
  1203. *
  1204. * If 'write' is non-zero, then we wipe out the journal on disk; otherwise
  1205. * we merely suppress recovery.
  1206. */
  1207. int jbd2_journal_wipe(journal_t *journal, int write)
  1208. {
  1209. journal_superblock_t *sb;
  1210. int err = 0;
  1211. J_ASSERT (!(journal->j_flags & JBD2_LOADED));
  1212. err = load_superblock(journal);
  1213. if (err)
  1214. return err;
  1215. sb = journal->j_superblock;
  1216. if (!journal->j_tail)
  1217. goto no_recovery;
  1218. printk (KERN_WARNING "JBD: %s recovery information on journal\n",
  1219. write ? "Clearing" : "Ignoring");
  1220. err = jbd2_journal_skip_recovery(journal);
  1221. if (write)
  1222. jbd2_journal_update_superblock(journal, 1);
  1223. no_recovery:
  1224. return err;
  1225. }
  1226. /*
  1227. * journal_dev_name: format a character string to describe on what
  1228. * device this journal is present.
  1229. */
  1230. static const char *journal_dev_name(journal_t *journal, char *buffer)
  1231. {
  1232. struct block_device *bdev;
  1233. if (journal->j_inode)
  1234. bdev = journal->j_inode->i_sb->s_bdev;
  1235. else
  1236. bdev = journal->j_dev;
  1237. return bdevname(bdev, buffer);
  1238. }
  1239. /*
  1240. * Journal abort has very specific semantics, which we describe
  1241. * for journal abort.
  1242. *
  1243. * Two internal function, which provide abort to te jbd layer
  1244. * itself are here.
  1245. */
  1246. /*
  1247. * Quick version for internal journal use (doesn't lock the journal).
  1248. * Aborts hard --- we mark the abort as occurred, but do _nothing_ else,
  1249. * and don't attempt to make any other journal updates.
  1250. */
  1251. void __jbd2_journal_abort_hard(journal_t *journal)
  1252. {
  1253. transaction_t *transaction;
  1254. char b[BDEVNAME_SIZE];
  1255. if (journal->j_flags & JBD2_ABORT)
  1256. return;
  1257. printk(KERN_ERR "Aborting journal on device %s.\n",
  1258. journal_dev_name(journal, b));
  1259. spin_lock(&journal->j_state_lock);
  1260. journal->j_flags |= JBD2_ABORT;
  1261. transaction = journal->j_running_transaction;
  1262. if (transaction)
  1263. __jbd2_log_start_commit(journal, transaction->t_tid);
  1264. spin_unlock(&journal->j_state_lock);
  1265. }
  1266. /* Soft abort: record the abort error status in the journal superblock,
  1267. * but don't do any other IO. */
  1268. static void __journal_abort_soft (journal_t *journal, int errno)
  1269. {
  1270. if (journal->j_flags & JBD2_ABORT)
  1271. return;
  1272. if (!journal->j_errno)
  1273. journal->j_errno = errno;
  1274. __jbd2_journal_abort_hard(journal);
  1275. if (errno)
  1276. jbd2_journal_update_superblock(journal, 1);
  1277. }
  1278. /**
  1279. * void jbd2_journal_abort () - Shutdown the journal immediately.
  1280. * @journal: the journal to shutdown.
  1281. * @errno: an error number to record in the journal indicating
  1282. * the reason for the shutdown.
  1283. *
  1284. * Perform a complete, immediate shutdown of the ENTIRE
  1285. * journal (not of a single transaction). This operation cannot be
  1286. * undone without closing and reopening the journal.
  1287. *
  1288. * The jbd2_journal_abort function is intended to support higher level error
  1289. * recovery mechanisms such as the ext2/ext3 remount-readonly error
  1290. * mode.
  1291. *
  1292. * Journal abort has very specific semantics. Any existing dirty,
  1293. * unjournaled buffers in the main filesystem will still be written to
  1294. * disk by bdflush, but the journaling mechanism will be suspended
  1295. * immediately and no further transaction commits will be honoured.
  1296. *
  1297. * Any dirty, journaled buffers will be written back to disk without
  1298. * hitting the journal. Atomicity cannot be guaranteed on an aborted
  1299. * filesystem, but we _do_ attempt to leave as much data as possible
  1300. * behind for fsck to use for cleanup.
  1301. *
  1302. * Any attempt to get a new transaction handle on a journal which is in
  1303. * ABORT state will just result in an -EROFS error return. A
  1304. * jbd2_journal_stop on an existing handle will return -EIO if we have
  1305. * entered abort state during the update.
  1306. *
  1307. * Recursive transactions are not disturbed by journal abort until the
  1308. * final jbd2_journal_stop, which will receive the -EIO error.
  1309. *
  1310. * Finally, the jbd2_journal_abort call allows the caller to supply an errno
  1311. * which will be recorded (if possible) in the journal superblock. This
  1312. * allows a client to record failure conditions in the middle of a
  1313. * transaction without having to complete the transaction to record the
  1314. * failure to disk. ext3_error, for example, now uses this
  1315. * functionality.
  1316. *
  1317. * Errors which originate from within the journaling layer will NOT
  1318. * supply an errno; a null errno implies that absolutely no further
  1319. * writes are done to the journal (unless there are any already in
  1320. * progress).
  1321. *
  1322. */
  1323. void jbd2_journal_abort(journal_t *journal, int errno)
  1324. {
  1325. __journal_abort_soft(journal, errno);
  1326. }
  1327. /**
  1328. * int jbd2_journal_errno () - returns the journal's error state.
  1329. * @journal: journal to examine.
  1330. *
  1331. * This is the errno numbet set with jbd2_journal_abort(), the last
  1332. * time the journal was mounted - if the journal was stopped
  1333. * without calling abort this will be 0.
  1334. *
  1335. * If the journal has been aborted on this mount time -EROFS will
  1336. * be returned.
  1337. */
  1338. int jbd2_journal_errno(journal_t *journal)
  1339. {
  1340. int err;
  1341. spin_lock(&journal->j_state_lock);
  1342. if (journal->j_flags & JBD2_ABORT)
  1343. err = -EROFS;
  1344. else
  1345. err = journal->j_errno;
  1346. spin_unlock(&journal->j_state_lock);
  1347. return err;
  1348. }
  1349. /**
  1350. * int jbd2_journal_clear_err () - clears the journal's error state
  1351. * @journal: journal to act on.
  1352. *
  1353. * An error must be cleared or Acked to take a FS out of readonly
  1354. * mode.
  1355. */
  1356. int jbd2_journal_clear_err(journal_t *journal)
  1357. {
  1358. int err = 0;
  1359. spin_lock(&journal->j_state_lock);
  1360. if (journal->j_flags & JBD2_ABORT)
  1361. err = -EROFS;
  1362. else
  1363. journal->j_errno = 0;
  1364. spin_unlock(&journal->j_state_lock);
  1365. return err;
  1366. }
  1367. /**
  1368. * void jbd2_journal_ack_err() - Ack journal err.
  1369. * @journal: journal to act on.
  1370. *
  1371. * An error must be cleared or Acked to take a FS out of readonly
  1372. * mode.
  1373. */
  1374. void jbd2_journal_ack_err(journal_t *journal)
  1375. {
  1376. spin_lock(&journal->j_state_lock);
  1377. if (journal->j_errno)
  1378. journal->j_flags |= JBD2_ACK_ERR;
  1379. spin_unlock(&journal->j_state_lock);
  1380. }
  1381. int jbd2_journal_blocks_per_page(struct inode *inode)
  1382. {
  1383. return 1 << (PAGE_CACHE_SHIFT - inode->i_sb->s_blocksize_bits);
  1384. }
  1385. /*
  1386. * helper functions to deal with 32 or 64bit block numbers.
  1387. */
  1388. size_t journal_tag_bytes(journal_t *journal)
  1389. {
  1390. if (JBD2_HAS_INCOMPAT_FEATURE(journal, JBD2_FEATURE_INCOMPAT_64BIT))
  1391. return JBD_TAG_SIZE64;
  1392. else
  1393. return JBD_TAG_SIZE32;
  1394. }
  1395. /*
  1396. * Simple support for retrying memory allocations. Introduced to help to
  1397. * debug different VM deadlock avoidance strategies.
  1398. */
  1399. void * __jbd2_kmalloc (const char *where, size_t size, gfp_t flags, int retry)
  1400. {
  1401. return kmalloc(size, flags | (retry ? __GFP_NOFAIL : 0));
  1402. }
  1403. /*
  1404. * jbd slab management: create 1k, 2k, 4k, 8k slabs as needed
  1405. * and allocate frozen and commit buffers from these slabs.
  1406. *
  1407. * Reason for doing this is to avoid, SLAB_DEBUG - since it could
  1408. * cause bh to cross page boundary.
  1409. */
  1410. #define JBD_MAX_SLABS 5
  1411. #define JBD_SLAB_INDEX(size) (size >> 11)
  1412. static struct kmem_cache *jbd_slab[JBD_MAX_SLABS];
  1413. static const char *jbd_slab_names[JBD_MAX_SLABS] = {
  1414. "jbd2_1k", "jbd2_2k", "jbd2_4k", NULL, "jbd2_8k"
  1415. };
  1416. static void jbd2_journal_destroy_jbd_slabs(void)
  1417. {
  1418. int i;
  1419. for (i = 0; i < JBD_MAX_SLABS; i++) {
  1420. if (jbd_slab[i])
  1421. kmem_cache_destroy(jbd_slab[i]);
  1422. jbd_slab[i] = NULL;
  1423. }
  1424. }
  1425. static int jbd2_journal_create_jbd_slab(size_t slab_size)
  1426. {
  1427. int i = JBD_SLAB_INDEX(slab_size);
  1428. BUG_ON(i >= JBD_MAX_SLABS);
  1429. /*
  1430. * Check if we already have a slab created for this size
  1431. */
  1432. if (jbd_slab[i])
  1433. return 0;
  1434. /*
  1435. * Create a slab and force alignment to be same as slabsize -
  1436. * this will make sure that allocations won't cross the page
  1437. * boundary.
  1438. */
  1439. jbd_slab[i] = kmem_cache_create(jbd_slab_names[i],
  1440. slab_size, slab_size, 0, NULL);
  1441. if (!jbd_slab[i]) {
  1442. printk(KERN_EMERG "JBD: no memory for jbd_slab cache\n");
  1443. return -ENOMEM;
  1444. }
  1445. return 0;
  1446. }
  1447. void * jbd2_slab_alloc(size_t size, gfp_t flags)
  1448. {
  1449. int idx;
  1450. idx = JBD_SLAB_INDEX(size);
  1451. BUG_ON(jbd_slab[idx] == NULL);
  1452. return kmem_cache_alloc(jbd_slab[idx], flags | __GFP_NOFAIL);
  1453. }
  1454. void jbd2_slab_free(void *ptr, size_t size)
  1455. {
  1456. int idx;
  1457. idx = JBD_SLAB_INDEX(size);
  1458. BUG_ON(jbd_slab[idx] == NULL);
  1459. kmem_cache_free(jbd_slab[idx], ptr);
  1460. }
  1461. /*
  1462. * Journal_head storage management
  1463. */
  1464. static struct kmem_cache *jbd2_journal_head_cache;
  1465. #ifdef CONFIG_JBD2_DEBUG
  1466. static atomic_t nr_journal_heads = ATOMIC_INIT(0);
  1467. #endif
  1468. static int journal_init_jbd2_journal_head_cache(void)
  1469. {
  1470. int retval;
  1471. J_ASSERT(jbd2_journal_head_cache == 0);
  1472. jbd2_journal_head_cache = kmem_cache_create("jbd2_journal_head",
  1473. sizeof(struct journal_head),
  1474. 0, /* offset */
  1475. 0, /* flags */
  1476. NULL); /* ctor */
  1477. retval = 0;
  1478. if (jbd2_journal_head_cache == 0) {
  1479. retval = -ENOMEM;
  1480. printk(KERN_EMERG "JBD: no memory for journal_head cache\n");
  1481. }
  1482. return retval;
  1483. }
  1484. static void jbd2_journal_destroy_jbd2_journal_head_cache(void)
  1485. {
  1486. J_ASSERT(jbd2_journal_head_cache != NULL);
  1487. kmem_cache_destroy(jbd2_journal_head_cache);
  1488. jbd2_journal_head_cache = NULL;
  1489. }
  1490. /*
  1491. * journal_head splicing and dicing
  1492. */
  1493. static struct journal_head *journal_alloc_journal_head(void)
  1494. {
  1495. struct journal_head *ret;
  1496. static unsigned long last_warning;
  1497. #ifdef CONFIG_JBD2_DEBUG
  1498. atomic_inc(&nr_journal_heads);
  1499. #endif
  1500. ret = kmem_cache_alloc(jbd2_journal_head_cache, GFP_NOFS);
  1501. if (ret == 0) {
  1502. jbd_debug(1, "out of memory for journal_head\n");
  1503. if (time_after(jiffies, last_warning + 5*HZ)) {
  1504. printk(KERN_NOTICE "ENOMEM in %s, retrying.\n",
  1505. __FUNCTION__);
  1506. last_warning = jiffies;
  1507. }
  1508. while (ret == 0) {
  1509. yield();
  1510. ret = kmem_cache_alloc(jbd2_journal_head_cache, GFP_NOFS);
  1511. }
  1512. }
  1513. return ret;
  1514. }
  1515. static void journal_free_journal_head(struct journal_head *jh)
  1516. {
  1517. #ifdef CONFIG_JBD2_DEBUG
  1518. atomic_dec(&nr_journal_heads);
  1519. memset(jh, JBD_POISON_FREE, sizeof(*jh));
  1520. #endif
  1521. kmem_cache_free(jbd2_journal_head_cache, jh);
  1522. }
  1523. /*
  1524. * A journal_head is attached to a buffer_head whenever JBD has an
  1525. * interest in the buffer.
  1526. *
  1527. * Whenever a buffer has an attached journal_head, its ->b_state:BH_JBD bit
  1528. * is set. This bit is tested in core kernel code where we need to take
  1529. * JBD-specific actions. Testing the zeroness of ->b_private is not reliable
  1530. * there.
  1531. *
  1532. * When a buffer has its BH_JBD bit set, its ->b_count is elevated by one.
  1533. *
  1534. * When a buffer has its BH_JBD bit set it is immune from being released by
  1535. * core kernel code, mainly via ->b_count.
  1536. *
  1537. * A journal_head may be detached from its buffer_head when the journal_head's
  1538. * b_transaction, b_cp_transaction and b_next_transaction pointers are NULL.
  1539. * Various places in JBD call jbd2_journal_remove_journal_head() to indicate that the
  1540. * journal_head can be dropped if needed.
  1541. *
  1542. * Various places in the kernel want to attach a journal_head to a buffer_head
  1543. * _before_ attaching the journal_head to a transaction. To protect the
  1544. * journal_head in this situation, jbd2_journal_add_journal_head elevates the
  1545. * journal_head's b_jcount refcount by one. The caller must call
  1546. * jbd2_journal_put_journal_head() to undo this.
  1547. *
  1548. * So the typical usage would be:
  1549. *
  1550. * (Attach a journal_head if needed. Increments b_jcount)
  1551. * struct journal_head *jh = jbd2_journal_add_journal_head(bh);
  1552. * ...
  1553. * jh->b_transaction = xxx;
  1554. * jbd2_journal_put_journal_head(jh);
  1555. *
  1556. * Now, the journal_head's b_jcount is zero, but it is safe from being released
  1557. * because it has a non-zero b_transaction.
  1558. */
  1559. /*
  1560. * Give a buffer_head a journal_head.
  1561. *
  1562. * Doesn't need the journal lock.
  1563. * May sleep.
  1564. */
  1565. struct journal_head *jbd2_journal_add_journal_head(struct buffer_head *bh)
  1566. {
  1567. struct journal_head *jh;
  1568. struct journal_head *new_jh = NULL;
  1569. repeat:
  1570. if (!buffer_jbd(bh)) {
  1571. new_jh = journal_alloc_journal_head();
  1572. memset(new_jh, 0, sizeof(*new_jh));
  1573. }
  1574. jbd_lock_bh_journal_head(bh);
  1575. if (buffer_jbd(bh)) {
  1576. jh = bh2jh(bh);
  1577. } else {
  1578. J_ASSERT_BH(bh,
  1579. (atomic_read(&bh->b_count) > 0) ||
  1580. (bh->b_page && bh->b_page->mapping));
  1581. if (!new_jh) {
  1582. jbd_unlock_bh_journal_head(bh);
  1583. goto repeat;
  1584. }
  1585. jh = new_jh;
  1586. new_jh = NULL; /* We consumed it */
  1587. set_buffer_jbd(bh);
  1588. bh->b_private = jh;
  1589. jh->b_bh = bh;
  1590. get_bh(bh);
  1591. BUFFER_TRACE(bh, "added journal_head");
  1592. }
  1593. jh->b_jcount++;
  1594. jbd_unlock_bh_journal_head(bh);
  1595. if (new_jh)
  1596. journal_free_journal_head(new_jh);
  1597. return bh->b_private;
  1598. }
  1599. /*
  1600. * Grab a ref against this buffer_head's journal_head. If it ended up not
  1601. * having a journal_head, return NULL
  1602. */
  1603. struct journal_head *jbd2_journal_grab_journal_head(struct buffer_head *bh)
  1604. {
  1605. struct journal_head *jh = NULL;
  1606. jbd_lock_bh_journal_head(bh);
  1607. if (buffer_jbd(bh)) {
  1608. jh = bh2jh(bh);
  1609. jh->b_jcount++;
  1610. }
  1611. jbd_unlock_bh_journal_head(bh);
  1612. return jh;
  1613. }
  1614. static void __journal_remove_journal_head(struct buffer_head *bh)
  1615. {
  1616. struct journal_head *jh = bh2jh(bh);
  1617. J_ASSERT_JH(jh, jh->b_jcount >= 0);
  1618. get_bh(bh);
  1619. if (jh->b_jcount == 0) {
  1620. if (jh->b_transaction == NULL &&
  1621. jh->b_next_transaction == NULL &&
  1622. jh->b_cp_transaction == NULL) {
  1623. J_ASSERT_JH(jh, jh->b_jlist == BJ_None);
  1624. J_ASSERT_BH(bh, buffer_jbd(bh));
  1625. J_ASSERT_BH(bh, jh2bh(jh) == bh);
  1626. BUFFER_TRACE(bh, "remove journal_head");
  1627. if (jh->b_frozen_data) {
  1628. printk(KERN_WARNING "%s: freeing "
  1629. "b_frozen_data\n",
  1630. __FUNCTION__);
  1631. jbd2_slab_free(jh->b_frozen_data, bh->b_size);
  1632. }
  1633. if (jh->b_committed_data) {
  1634. printk(KERN_WARNING "%s: freeing "
  1635. "b_committed_data\n",
  1636. __FUNCTION__);
  1637. jbd2_slab_free(jh->b_committed_data, bh->b_size);
  1638. }
  1639. bh->b_private = NULL;
  1640. jh->b_bh = NULL; /* debug, really */
  1641. clear_buffer_jbd(bh);
  1642. __brelse(bh);
  1643. journal_free_journal_head(jh);
  1644. } else {
  1645. BUFFER_TRACE(bh, "journal_head was locked");
  1646. }
  1647. }
  1648. }
  1649. /*
  1650. * jbd2_journal_remove_journal_head(): if the buffer isn't attached to a transaction
  1651. * and has a zero b_jcount then remove and release its journal_head. If we did
  1652. * see that the buffer is not used by any transaction we also "logically"
  1653. * decrement ->b_count.
  1654. *
  1655. * We in fact take an additional increment on ->b_count as a convenience,
  1656. * because the caller usually wants to do additional things with the bh
  1657. * after calling here.
  1658. * The caller of jbd2_journal_remove_journal_head() *must* run __brelse(bh) at some
  1659. * time. Once the caller has run __brelse(), the buffer is eligible for
  1660. * reaping by try_to_free_buffers().
  1661. */
  1662. void jbd2_journal_remove_journal_head(struct buffer_head *bh)
  1663. {
  1664. jbd_lock_bh_journal_head(bh);
  1665. __journal_remove_journal_head(bh);
  1666. jbd_unlock_bh_journal_head(bh);
  1667. }
  1668. /*
  1669. * Drop a reference on the passed journal_head. If it fell to zero then try to
  1670. * release the journal_head from the buffer_head.
  1671. */
  1672. void jbd2_journal_put_journal_head(struct journal_head *jh)
  1673. {
  1674. struct buffer_head *bh = jh2bh(jh);
  1675. jbd_lock_bh_journal_head(bh);
  1676. J_ASSERT_JH(jh, jh->b_jcount > 0);
  1677. --jh->b_jcount;
  1678. if (!jh->b_jcount && !jh->b_transaction) {
  1679. __journal_remove_journal_head(bh);
  1680. __brelse(bh);
  1681. }
  1682. jbd_unlock_bh_journal_head(bh);
  1683. }
  1684. /*
  1685. * debugfs tunables
  1686. */
  1687. #if defined(CONFIG_JBD2_DEBUG)
  1688. u8 jbd2_journal_enable_debug;
  1689. EXPORT_SYMBOL(jbd2_journal_enable_debug);
  1690. #endif
  1691. #if defined(CONFIG_JBD2_DEBUG) && defined(CONFIG_DEBUG_FS)
  1692. #define JBD2_DEBUG_NAME "jbd2-debug"
  1693. struct dentry *jbd2_debugfs_dir, *jbd2_debug;
  1694. static void __init jbd2_create_debugfs_entry(void)
  1695. {
  1696. jbd2_debugfs_dir = debugfs_create_dir("jbd2", NULL);
  1697. if (jbd2_debugfs_dir)
  1698. jbd2_debug = debugfs_create_u8(JBD2_DEBUG_NAME, S_IRUGO,
  1699. jbd2_debugfs_dir,
  1700. &jbd2_journal_enable_debug);
  1701. }
  1702. static void __exit jbd2_remove_debugfs_entry(void)
  1703. {
  1704. if (jbd2_debug)
  1705. debugfs_remove(jbd2_debug);
  1706. if (jbd2_debugfs_dir)
  1707. debugfs_remove(jbd2_debugfs_dir);
  1708. }
  1709. #else
  1710. static void __init jbd2_create_debugfs_entry(void)
  1711. {
  1712. do {
  1713. } while (0);
  1714. }
  1715. static void __exit jbd2_remove_debugfs_entry(void)
  1716. {
  1717. do {
  1718. } while (0);
  1719. }
  1720. #endif
  1721. struct kmem_cache *jbd2_handle_cache;
  1722. static int __init journal_init_handle_cache(void)
  1723. {
  1724. jbd2_handle_cache = kmem_cache_create("jbd2_journal_handle",
  1725. sizeof(handle_t),
  1726. 0, /* offset */
  1727. 0, /* flags */
  1728. NULL); /* ctor */
  1729. if (jbd2_handle_cache == NULL) {
  1730. printk(KERN_EMERG "JBD: failed to create handle cache\n");
  1731. return -ENOMEM;
  1732. }
  1733. return 0;
  1734. }
  1735. static void jbd2_journal_destroy_handle_cache(void)
  1736. {
  1737. if (jbd2_handle_cache)
  1738. kmem_cache_destroy(jbd2_handle_cache);
  1739. }
  1740. /*
  1741. * Module startup and shutdown
  1742. */
  1743. static int __init journal_init_caches(void)
  1744. {
  1745. int ret;
  1746. ret = jbd2_journal_init_revoke_caches();
  1747. if (ret == 0)
  1748. ret = journal_init_jbd2_journal_head_cache();
  1749. if (ret == 0)
  1750. ret = journal_init_handle_cache();
  1751. return ret;
  1752. }
  1753. static void jbd2_journal_destroy_caches(void)
  1754. {
  1755. jbd2_journal_destroy_revoke_caches();
  1756. jbd2_journal_destroy_jbd2_journal_head_cache();
  1757. jbd2_journal_destroy_handle_cache();
  1758. jbd2_journal_destroy_jbd_slabs();
  1759. }
  1760. static int __init journal_init(void)
  1761. {
  1762. int ret;
  1763. BUILD_BUG_ON(sizeof(struct journal_superblock_s) != 1024);
  1764. ret = journal_init_caches();
  1765. if (ret != 0)
  1766. jbd2_journal_destroy_caches();
  1767. jbd2_create_debugfs_entry();
  1768. return ret;
  1769. }
  1770. static void __exit journal_exit(void)
  1771. {
  1772. #ifdef CONFIG_JBD2_DEBUG
  1773. int n = atomic_read(&nr_journal_heads);
  1774. if (n)
  1775. printk(KERN_EMERG "JBD: leaked %d journal_heads!\n", n);
  1776. #endif
  1777. jbd2_remove_debugfs_entry();
  1778. jbd2_journal_destroy_caches();
  1779. }
  1780. MODULE_LICENSE("GPL");
  1781. module_init(journal_init);
  1782. module_exit(journal_exit);