super.c 84 KB

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  1. /*
  2. * linux/fs/ext3/super.c
  3. *
  4. * Copyright (C) 1992, 1993, 1994, 1995
  5. * Remy Card (card@masi.ibp.fr)
  6. * Laboratoire MASI - Institut Blaise Pascal
  7. * Universite Pierre et Marie Curie (Paris VI)
  8. *
  9. * from
  10. *
  11. * linux/fs/minix/inode.c
  12. *
  13. * Copyright (C) 1991, 1992 Linus Torvalds
  14. *
  15. * Big-endian to little-endian byte-swapping/bitmaps by
  16. * David S. Miller (davem@caip.rutgers.edu), 1995
  17. */
  18. #include <linux/module.h>
  19. #include <linux/blkdev.h>
  20. #include <linux/parser.h>
  21. #include <linux/exportfs.h>
  22. #include <linux/statfs.h>
  23. #include <linux/random.h>
  24. #include <linux/mount.h>
  25. #include <linux/quotaops.h>
  26. #include <linux/seq_file.h>
  27. #include <linux/log2.h>
  28. #include <linux/cleancache.h>
  29. #include <asm/uaccess.h>
  30. #define CREATE_TRACE_POINTS
  31. #include "ext3.h"
  32. #include "xattr.h"
  33. #include "acl.h"
  34. #include "namei.h"
  35. #ifdef CONFIG_EXT3_DEFAULTS_TO_ORDERED
  36. #define EXT3_MOUNT_DEFAULT_DATA_MODE EXT3_MOUNT_ORDERED_DATA
  37. #else
  38. #define EXT3_MOUNT_DEFAULT_DATA_MODE EXT3_MOUNT_WRITEBACK_DATA
  39. #endif
  40. static int ext3_load_journal(struct super_block *, struct ext3_super_block *,
  41. unsigned long journal_devnum);
  42. static int ext3_create_journal(struct super_block *, struct ext3_super_block *,
  43. unsigned int);
  44. static int ext3_commit_super(struct super_block *sb,
  45. struct ext3_super_block *es,
  46. int sync);
  47. static void ext3_mark_recovery_complete(struct super_block * sb,
  48. struct ext3_super_block * es);
  49. static void ext3_clear_journal_err(struct super_block * sb,
  50. struct ext3_super_block * es);
  51. static int ext3_sync_fs(struct super_block *sb, int wait);
  52. static const char *ext3_decode_error(struct super_block * sb, int errno,
  53. char nbuf[16]);
  54. static int ext3_remount (struct super_block * sb, int * flags, char * data);
  55. static int ext3_statfs (struct dentry * dentry, struct kstatfs * buf);
  56. static int ext3_unfreeze(struct super_block *sb);
  57. static int ext3_freeze(struct super_block *sb);
  58. /*
  59. * Wrappers for journal_start/end.
  60. *
  61. * The only special thing we need to do here is to make sure that all
  62. * journal_end calls result in the superblock being marked dirty, so
  63. * that sync() will call the filesystem's write_super callback if
  64. * appropriate.
  65. */
  66. handle_t *ext3_journal_start_sb(struct super_block *sb, int nblocks)
  67. {
  68. journal_t *journal;
  69. if (sb->s_flags & MS_RDONLY)
  70. return ERR_PTR(-EROFS);
  71. /* Special case here: if the journal has aborted behind our
  72. * backs (eg. EIO in the commit thread), then we still need to
  73. * take the FS itself readonly cleanly. */
  74. journal = EXT3_SB(sb)->s_journal;
  75. if (is_journal_aborted(journal)) {
  76. ext3_abort(sb, __func__,
  77. "Detected aborted journal");
  78. return ERR_PTR(-EROFS);
  79. }
  80. return journal_start(journal, nblocks);
  81. }
  82. /*
  83. * The only special thing we need to do here is to make sure that all
  84. * journal_stop calls result in the superblock being marked dirty, so
  85. * that sync() will call the filesystem's write_super callback if
  86. * appropriate.
  87. */
  88. int __ext3_journal_stop(const char *where, handle_t *handle)
  89. {
  90. struct super_block *sb;
  91. int err;
  92. int rc;
  93. sb = handle->h_transaction->t_journal->j_private;
  94. err = handle->h_err;
  95. rc = journal_stop(handle);
  96. if (!err)
  97. err = rc;
  98. if (err)
  99. __ext3_std_error(sb, where, err);
  100. return err;
  101. }
  102. void ext3_journal_abort_handle(const char *caller, const char *err_fn,
  103. struct buffer_head *bh, handle_t *handle, int err)
  104. {
  105. char nbuf[16];
  106. const char *errstr = ext3_decode_error(NULL, err, nbuf);
  107. if (bh)
  108. BUFFER_TRACE(bh, "abort");
  109. if (!handle->h_err)
  110. handle->h_err = err;
  111. if (is_handle_aborted(handle))
  112. return;
  113. printk(KERN_ERR "EXT3-fs: %s: aborting transaction: %s in %s\n",
  114. caller, errstr, err_fn);
  115. journal_abort_handle(handle);
  116. }
  117. void ext3_msg(struct super_block *sb, const char *prefix,
  118. const char *fmt, ...)
  119. {
  120. struct va_format vaf;
  121. va_list args;
  122. va_start(args, fmt);
  123. vaf.fmt = fmt;
  124. vaf.va = &args;
  125. printk("%sEXT3-fs (%s): %pV\n", prefix, sb->s_id, &vaf);
  126. va_end(args);
  127. }
  128. /* Deal with the reporting of failure conditions on a filesystem such as
  129. * inconsistencies detected or read IO failures.
  130. *
  131. * On ext2, we can store the error state of the filesystem in the
  132. * superblock. That is not possible on ext3, because we may have other
  133. * write ordering constraints on the superblock which prevent us from
  134. * writing it out straight away; and given that the journal is about to
  135. * be aborted, we can't rely on the current, or future, transactions to
  136. * write out the superblock safely.
  137. *
  138. * We'll just use the journal_abort() error code to record an error in
  139. * the journal instead. On recovery, the journal will complain about
  140. * that error until we've noted it down and cleared it.
  141. */
  142. static void ext3_handle_error(struct super_block *sb)
  143. {
  144. struct ext3_super_block *es = EXT3_SB(sb)->s_es;
  145. EXT3_SB(sb)->s_mount_state |= EXT3_ERROR_FS;
  146. es->s_state |= cpu_to_le16(EXT3_ERROR_FS);
  147. if (sb->s_flags & MS_RDONLY)
  148. return;
  149. if (!test_opt (sb, ERRORS_CONT)) {
  150. journal_t *journal = EXT3_SB(sb)->s_journal;
  151. set_opt(EXT3_SB(sb)->s_mount_opt, ABORT);
  152. if (journal)
  153. journal_abort(journal, -EIO);
  154. }
  155. if (test_opt (sb, ERRORS_RO)) {
  156. ext3_msg(sb, KERN_CRIT,
  157. "error: remounting filesystem read-only");
  158. sb->s_flags |= MS_RDONLY;
  159. }
  160. ext3_commit_super(sb, es, 1);
  161. if (test_opt(sb, ERRORS_PANIC))
  162. panic("EXT3-fs (%s): panic forced after error\n",
  163. sb->s_id);
  164. }
  165. void ext3_error(struct super_block *sb, const char *function,
  166. const char *fmt, ...)
  167. {
  168. struct va_format vaf;
  169. va_list args;
  170. va_start(args, fmt);
  171. vaf.fmt = fmt;
  172. vaf.va = &args;
  173. printk(KERN_CRIT "EXT3-fs error (device %s): %s: %pV\n",
  174. sb->s_id, function, &vaf);
  175. va_end(args);
  176. ext3_handle_error(sb);
  177. }
  178. static const char *ext3_decode_error(struct super_block * sb, int errno,
  179. char nbuf[16])
  180. {
  181. char *errstr = NULL;
  182. switch (errno) {
  183. case -EIO:
  184. errstr = "IO failure";
  185. break;
  186. case -ENOMEM:
  187. errstr = "Out of memory";
  188. break;
  189. case -EROFS:
  190. if (!sb || EXT3_SB(sb)->s_journal->j_flags & JFS_ABORT)
  191. errstr = "Journal has aborted";
  192. else
  193. errstr = "Readonly filesystem";
  194. break;
  195. default:
  196. /* If the caller passed in an extra buffer for unknown
  197. * errors, textualise them now. Else we just return
  198. * NULL. */
  199. if (nbuf) {
  200. /* Check for truncated error codes... */
  201. if (snprintf(nbuf, 16, "error %d", -errno) >= 0)
  202. errstr = nbuf;
  203. }
  204. break;
  205. }
  206. return errstr;
  207. }
  208. /* __ext3_std_error decodes expected errors from journaling functions
  209. * automatically and invokes the appropriate error response. */
  210. void __ext3_std_error (struct super_block * sb, const char * function,
  211. int errno)
  212. {
  213. char nbuf[16];
  214. const char *errstr;
  215. /* Special case: if the error is EROFS, and we're not already
  216. * inside a transaction, then there's really no point in logging
  217. * an error. */
  218. if (errno == -EROFS && journal_current_handle() == NULL &&
  219. (sb->s_flags & MS_RDONLY))
  220. return;
  221. errstr = ext3_decode_error(sb, errno, nbuf);
  222. ext3_msg(sb, KERN_CRIT, "error in %s: %s", function, errstr);
  223. ext3_handle_error(sb);
  224. }
  225. /*
  226. * ext3_abort is a much stronger failure handler than ext3_error. The
  227. * abort function may be used to deal with unrecoverable failures such
  228. * as journal IO errors or ENOMEM at a critical moment in log management.
  229. *
  230. * We unconditionally force the filesystem into an ABORT|READONLY state,
  231. * unless the error response on the fs has been set to panic in which
  232. * case we take the easy way out and panic immediately.
  233. */
  234. void ext3_abort(struct super_block *sb, const char *function,
  235. const char *fmt, ...)
  236. {
  237. struct va_format vaf;
  238. va_list args;
  239. va_start(args, fmt);
  240. vaf.fmt = fmt;
  241. vaf.va = &args;
  242. printk(KERN_CRIT "EXT3-fs (%s): error: %s: %pV\n",
  243. sb->s_id, function, &vaf);
  244. va_end(args);
  245. if (test_opt(sb, ERRORS_PANIC))
  246. panic("EXT3-fs: panic from previous error\n");
  247. if (sb->s_flags & MS_RDONLY)
  248. return;
  249. ext3_msg(sb, KERN_CRIT,
  250. "error: remounting filesystem read-only");
  251. EXT3_SB(sb)->s_mount_state |= EXT3_ERROR_FS;
  252. sb->s_flags |= MS_RDONLY;
  253. set_opt(EXT3_SB(sb)->s_mount_opt, ABORT);
  254. if (EXT3_SB(sb)->s_journal)
  255. journal_abort(EXT3_SB(sb)->s_journal, -EIO);
  256. }
  257. void ext3_warning(struct super_block *sb, const char *function,
  258. const char *fmt, ...)
  259. {
  260. struct va_format vaf;
  261. va_list args;
  262. va_start(args, fmt);
  263. vaf.fmt = fmt;
  264. vaf.va = &args;
  265. printk(KERN_WARNING "EXT3-fs (%s): warning: %s: %pV\n",
  266. sb->s_id, function, &vaf);
  267. va_end(args);
  268. }
  269. void ext3_update_dynamic_rev(struct super_block *sb)
  270. {
  271. struct ext3_super_block *es = EXT3_SB(sb)->s_es;
  272. if (le32_to_cpu(es->s_rev_level) > EXT3_GOOD_OLD_REV)
  273. return;
  274. ext3_msg(sb, KERN_WARNING,
  275. "warning: updating to rev %d because of "
  276. "new feature flag, running e2fsck is recommended",
  277. EXT3_DYNAMIC_REV);
  278. es->s_first_ino = cpu_to_le32(EXT3_GOOD_OLD_FIRST_INO);
  279. es->s_inode_size = cpu_to_le16(EXT3_GOOD_OLD_INODE_SIZE);
  280. es->s_rev_level = cpu_to_le32(EXT3_DYNAMIC_REV);
  281. /* leave es->s_feature_*compat flags alone */
  282. /* es->s_uuid will be set by e2fsck if empty */
  283. /*
  284. * The rest of the superblock fields should be zero, and if not it
  285. * means they are likely already in use, so leave them alone. We
  286. * can leave it up to e2fsck to clean up any inconsistencies there.
  287. */
  288. }
  289. /*
  290. * Open the external journal device
  291. */
  292. static struct block_device *ext3_blkdev_get(dev_t dev, struct super_block *sb)
  293. {
  294. struct block_device *bdev;
  295. char b[BDEVNAME_SIZE];
  296. bdev = blkdev_get_by_dev(dev, FMODE_READ|FMODE_WRITE|FMODE_EXCL, sb);
  297. if (IS_ERR(bdev))
  298. goto fail;
  299. return bdev;
  300. fail:
  301. ext3_msg(sb, KERN_ERR, "error: failed to open journal device %s: %ld",
  302. __bdevname(dev, b), PTR_ERR(bdev));
  303. return NULL;
  304. }
  305. /*
  306. * Release the journal device
  307. */
  308. static int ext3_blkdev_put(struct block_device *bdev)
  309. {
  310. return blkdev_put(bdev, FMODE_READ|FMODE_WRITE|FMODE_EXCL);
  311. }
  312. static int ext3_blkdev_remove(struct ext3_sb_info *sbi)
  313. {
  314. struct block_device *bdev;
  315. int ret = -ENODEV;
  316. bdev = sbi->journal_bdev;
  317. if (bdev) {
  318. ret = ext3_blkdev_put(bdev);
  319. sbi->journal_bdev = NULL;
  320. }
  321. return ret;
  322. }
  323. static inline struct inode *orphan_list_entry(struct list_head *l)
  324. {
  325. return &list_entry(l, struct ext3_inode_info, i_orphan)->vfs_inode;
  326. }
  327. static void dump_orphan_list(struct super_block *sb, struct ext3_sb_info *sbi)
  328. {
  329. struct list_head *l;
  330. ext3_msg(sb, KERN_ERR, "error: sb orphan head is %d",
  331. le32_to_cpu(sbi->s_es->s_last_orphan));
  332. ext3_msg(sb, KERN_ERR, "sb_info orphan list:");
  333. list_for_each(l, &sbi->s_orphan) {
  334. struct inode *inode = orphan_list_entry(l);
  335. ext3_msg(sb, KERN_ERR, " "
  336. "inode %s:%lu at %p: mode %o, nlink %d, next %d\n",
  337. inode->i_sb->s_id, inode->i_ino, inode,
  338. inode->i_mode, inode->i_nlink,
  339. NEXT_ORPHAN(inode));
  340. }
  341. }
  342. static void ext3_put_super (struct super_block * sb)
  343. {
  344. struct ext3_sb_info *sbi = EXT3_SB(sb);
  345. struct ext3_super_block *es = sbi->s_es;
  346. int i, err;
  347. dquot_disable(sb, -1, DQUOT_USAGE_ENABLED | DQUOT_LIMITS_ENABLED);
  348. ext3_xattr_put_super(sb);
  349. err = journal_destroy(sbi->s_journal);
  350. sbi->s_journal = NULL;
  351. if (err < 0)
  352. ext3_abort(sb, __func__, "Couldn't clean up the journal");
  353. if (!(sb->s_flags & MS_RDONLY)) {
  354. EXT3_CLEAR_INCOMPAT_FEATURE(sb, EXT3_FEATURE_INCOMPAT_RECOVER);
  355. es->s_state = cpu_to_le16(sbi->s_mount_state);
  356. BUFFER_TRACE(sbi->s_sbh, "marking dirty");
  357. mark_buffer_dirty(sbi->s_sbh);
  358. ext3_commit_super(sb, es, 1);
  359. }
  360. for (i = 0; i < sbi->s_gdb_count; i++)
  361. brelse(sbi->s_group_desc[i]);
  362. kfree(sbi->s_group_desc);
  363. percpu_counter_destroy(&sbi->s_freeblocks_counter);
  364. percpu_counter_destroy(&sbi->s_freeinodes_counter);
  365. percpu_counter_destroy(&sbi->s_dirs_counter);
  366. brelse(sbi->s_sbh);
  367. #ifdef CONFIG_QUOTA
  368. for (i = 0; i < MAXQUOTAS; i++)
  369. kfree(sbi->s_qf_names[i]);
  370. #endif
  371. /* Debugging code just in case the in-memory inode orphan list
  372. * isn't empty. The on-disk one can be non-empty if we've
  373. * detected an error and taken the fs readonly, but the
  374. * in-memory list had better be clean by this point. */
  375. if (!list_empty(&sbi->s_orphan))
  376. dump_orphan_list(sb, sbi);
  377. J_ASSERT(list_empty(&sbi->s_orphan));
  378. invalidate_bdev(sb->s_bdev);
  379. if (sbi->journal_bdev && sbi->journal_bdev != sb->s_bdev) {
  380. /*
  381. * Invalidate the journal device's buffers. We don't want them
  382. * floating about in memory - the physical journal device may
  383. * hotswapped, and it breaks the `ro-after' testing code.
  384. */
  385. sync_blockdev(sbi->journal_bdev);
  386. invalidate_bdev(sbi->journal_bdev);
  387. ext3_blkdev_remove(sbi);
  388. }
  389. sb->s_fs_info = NULL;
  390. kfree(sbi->s_blockgroup_lock);
  391. kfree(sbi);
  392. }
  393. static struct kmem_cache *ext3_inode_cachep;
  394. /*
  395. * Called inside transaction, so use GFP_NOFS
  396. */
  397. static struct inode *ext3_alloc_inode(struct super_block *sb)
  398. {
  399. struct ext3_inode_info *ei;
  400. ei = kmem_cache_alloc(ext3_inode_cachep, GFP_NOFS);
  401. if (!ei)
  402. return NULL;
  403. ei->i_block_alloc_info = NULL;
  404. ei->vfs_inode.i_version = 1;
  405. atomic_set(&ei->i_datasync_tid, 0);
  406. atomic_set(&ei->i_sync_tid, 0);
  407. return &ei->vfs_inode;
  408. }
  409. static int ext3_drop_inode(struct inode *inode)
  410. {
  411. int drop = generic_drop_inode(inode);
  412. trace_ext3_drop_inode(inode, drop);
  413. return drop;
  414. }
  415. static void ext3_i_callback(struct rcu_head *head)
  416. {
  417. struct inode *inode = container_of(head, struct inode, i_rcu);
  418. kmem_cache_free(ext3_inode_cachep, EXT3_I(inode));
  419. }
  420. static void ext3_destroy_inode(struct inode *inode)
  421. {
  422. if (!list_empty(&(EXT3_I(inode)->i_orphan))) {
  423. printk("EXT3 Inode %p: orphan list check failed!\n",
  424. EXT3_I(inode));
  425. print_hex_dump(KERN_INFO, "", DUMP_PREFIX_ADDRESS, 16, 4,
  426. EXT3_I(inode), sizeof(struct ext3_inode_info),
  427. false);
  428. dump_stack();
  429. }
  430. call_rcu(&inode->i_rcu, ext3_i_callback);
  431. }
  432. static void init_once(void *foo)
  433. {
  434. struct ext3_inode_info *ei = (struct ext3_inode_info *) foo;
  435. INIT_LIST_HEAD(&ei->i_orphan);
  436. #ifdef CONFIG_EXT3_FS_XATTR
  437. init_rwsem(&ei->xattr_sem);
  438. #endif
  439. mutex_init(&ei->truncate_mutex);
  440. inode_init_once(&ei->vfs_inode);
  441. }
  442. static int init_inodecache(void)
  443. {
  444. ext3_inode_cachep = kmem_cache_create("ext3_inode_cache",
  445. sizeof(struct ext3_inode_info),
  446. 0, (SLAB_RECLAIM_ACCOUNT|
  447. SLAB_MEM_SPREAD),
  448. init_once);
  449. if (ext3_inode_cachep == NULL)
  450. return -ENOMEM;
  451. return 0;
  452. }
  453. static void destroy_inodecache(void)
  454. {
  455. /*
  456. * Make sure all delayed rcu free inodes are flushed before we
  457. * destroy cache.
  458. */
  459. rcu_barrier();
  460. kmem_cache_destroy(ext3_inode_cachep);
  461. }
  462. static inline void ext3_show_quota_options(struct seq_file *seq, struct super_block *sb)
  463. {
  464. #if defined(CONFIG_QUOTA)
  465. struct ext3_sb_info *sbi = EXT3_SB(sb);
  466. if (sbi->s_jquota_fmt) {
  467. char *fmtname = "";
  468. switch (sbi->s_jquota_fmt) {
  469. case QFMT_VFS_OLD:
  470. fmtname = "vfsold";
  471. break;
  472. case QFMT_VFS_V0:
  473. fmtname = "vfsv0";
  474. break;
  475. case QFMT_VFS_V1:
  476. fmtname = "vfsv1";
  477. break;
  478. }
  479. seq_printf(seq, ",jqfmt=%s", fmtname);
  480. }
  481. if (sbi->s_qf_names[USRQUOTA])
  482. seq_printf(seq, ",usrjquota=%s", sbi->s_qf_names[USRQUOTA]);
  483. if (sbi->s_qf_names[GRPQUOTA])
  484. seq_printf(seq, ",grpjquota=%s", sbi->s_qf_names[GRPQUOTA]);
  485. if (test_opt(sb, USRQUOTA))
  486. seq_puts(seq, ",usrquota");
  487. if (test_opt(sb, GRPQUOTA))
  488. seq_puts(seq, ",grpquota");
  489. #endif
  490. }
  491. static char *data_mode_string(unsigned long mode)
  492. {
  493. switch (mode) {
  494. case EXT3_MOUNT_JOURNAL_DATA:
  495. return "journal";
  496. case EXT3_MOUNT_ORDERED_DATA:
  497. return "ordered";
  498. case EXT3_MOUNT_WRITEBACK_DATA:
  499. return "writeback";
  500. }
  501. return "unknown";
  502. }
  503. /*
  504. * Show an option if
  505. * - it's set to a non-default value OR
  506. * - if the per-sb default is different from the global default
  507. */
  508. static int ext3_show_options(struct seq_file *seq, struct dentry *root)
  509. {
  510. struct super_block *sb = root->d_sb;
  511. struct ext3_sb_info *sbi = EXT3_SB(sb);
  512. struct ext3_super_block *es = sbi->s_es;
  513. unsigned long def_mount_opts;
  514. def_mount_opts = le32_to_cpu(es->s_default_mount_opts);
  515. if (sbi->s_sb_block != 1)
  516. seq_printf(seq, ",sb=%lu", sbi->s_sb_block);
  517. if (test_opt(sb, MINIX_DF))
  518. seq_puts(seq, ",minixdf");
  519. if (test_opt(sb, GRPID))
  520. seq_puts(seq, ",grpid");
  521. if (!test_opt(sb, GRPID) && (def_mount_opts & EXT3_DEFM_BSDGROUPS))
  522. seq_puts(seq, ",nogrpid");
  523. if (sbi->s_resuid != EXT3_DEF_RESUID ||
  524. le16_to_cpu(es->s_def_resuid) != EXT3_DEF_RESUID) {
  525. seq_printf(seq, ",resuid=%u", sbi->s_resuid);
  526. }
  527. if (sbi->s_resgid != EXT3_DEF_RESGID ||
  528. le16_to_cpu(es->s_def_resgid) != EXT3_DEF_RESGID) {
  529. seq_printf(seq, ",resgid=%u", sbi->s_resgid);
  530. }
  531. if (test_opt(sb, ERRORS_RO)) {
  532. int def_errors = le16_to_cpu(es->s_errors);
  533. if (def_errors == EXT3_ERRORS_PANIC ||
  534. def_errors == EXT3_ERRORS_CONTINUE) {
  535. seq_puts(seq, ",errors=remount-ro");
  536. }
  537. }
  538. if (test_opt(sb, ERRORS_CONT))
  539. seq_puts(seq, ",errors=continue");
  540. if (test_opt(sb, ERRORS_PANIC))
  541. seq_puts(seq, ",errors=panic");
  542. if (test_opt(sb, NO_UID32))
  543. seq_puts(seq, ",nouid32");
  544. if (test_opt(sb, DEBUG))
  545. seq_puts(seq, ",debug");
  546. #ifdef CONFIG_EXT3_FS_XATTR
  547. if (test_opt(sb, XATTR_USER))
  548. seq_puts(seq, ",user_xattr");
  549. if (!test_opt(sb, XATTR_USER) &&
  550. (def_mount_opts & EXT3_DEFM_XATTR_USER)) {
  551. seq_puts(seq, ",nouser_xattr");
  552. }
  553. #endif
  554. #ifdef CONFIG_EXT3_FS_POSIX_ACL
  555. if (test_opt(sb, POSIX_ACL))
  556. seq_puts(seq, ",acl");
  557. if (!test_opt(sb, POSIX_ACL) && (def_mount_opts & EXT3_DEFM_ACL))
  558. seq_puts(seq, ",noacl");
  559. #endif
  560. if (!test_opt(sb, RESERVATION))
  561. seq_puts(seq, ",noreservation");
  562. if (sbi->s_commit_interval) {
  563. seq_printf(seq, ",commit=%u",
  564. (unsigned) (sbi->s_commit_interval / HZ));
  565. }
  566. /*
  567. * Always display barrier state so it's clear what the status is.
  568. */
  569. seq_puts(seq, ",barrier=");
  570. seq_puts(seq, test_opt(sb, BARRIER) ? "1" : "0");
  571. seq_printf(seq, ",data=%s", data_mode_string(test_opt(sb, DATA_FLAGS)));
  572. if (test_opt(sb, DATA_ERR_ABORT))
  573. seq_puts(seq, ",data_err=abort");
  574. if (test_opt(sb, NOLOAD))
  575. seq_puts(seq, ",norecovery");
  576. ext3_show_quota_options(seq, sb);
  577. return 0;
  578. }
  579. static struct inode *ext3_nfs_get_inode(struct super_block *sb,
  580. u64 ino, u32 generation)
  581. {
  582. struct inode *inode;
  583. if (ino < EXT3_FIRST_INO(sb) && ino != EXT3_ROOT_INO)
  584. return ERR_PTR(-ESTALE);
  585. if (ino > le32_to_cpu(EXT3_SB(sb)->s_es->s_inodes_count))
  586. return ERR_PTR(-ESTALE);
  587. /* iget isn't really right if the inode is currently unallocated!!
  588. *
  589. * ext3_read_inode will return a bad_inode if the inode had been
  590. * deleted, so we should be safe.
  591. *
  592. * Currently we don't know the generation for parent directory, so
  593. * a generation of 0 means "accept any"
  594. */
  595. inode = ext3_iget(sb, ino);
  596. if (IS_ERR(inode))
  597. return ERR_CAST(inode);
  598. if (generation && inode->i_generation != generation) {
  599. iput(inode);
  600. return ERR_PTR(-ESTALE);
  601. }
  602. return inode;
  603. }
  604. static struct dentry *ext3_fh_to_dentry(struct super_block *sb, struct fid *fid,
  605. int fh_len, int fh_type)
  606. {
  607. return generic_fh_to_dentry(sb, fid, fh_len, fh_type,
  608. ext3_nfs_get_inode);
  609. }
  610. static struct dentry *ext3_fh_to_parent(struct super_block *sb, struct fid *fid,
  611. int fh_len, int fh_type)
  612. {
  613. return generic_fh_to_parent(sb, fid, fh_len, fh_type,
  614. ext3_nfs_get_inode);
  615. }
  616. /*
  617. * Try to release metadata pages (indirect blocks, directories) which are
  618. * mapped via the block device. Since these pages could have journal heads
  619. * which would prevent try_to_free_buffers() from freeing them, we must use
  620. * jbd layer's try_to_free_buffers() function to release them.
  621. */
  622. static int bdev_try_to_free_page(struct super_block *sb, struct page *page,
  623. gfp_t wait)
  624. {
  625. journal_t *journal = EXT3_SB(sb)->s_journal;
  626. WARN_ON(PageChecked(page));
  627. if (!page_has_buffers(page))
  628. return 0;
  629. if (journal)
  630. return journal_try_to_free_buffers(journal, page,
  631. wait & ~__GFP_WAIT);
  632. return try_to_free_buffers(page);
  633. }
  634. #ifdef CONFIG_QUOTA
  635. #define QTYPE2NAME(t) ((t)==USRQUOTA?"user":"group")
  636. #define QTYPE2MOPT(on, t) ((t)==USRQUOTA?((on)##USRJQUOTA):((on)##GRPJQUOTA))
  637. static int ext3_write_dquot(struct dquot *dquot);
  638. static int ext3_acquire_dquot(struct dquot *dquot);
  639. static int ext3_release_dquot(struct dquot *dquot);
  640. static int ext3_mark_dquot_dirty(struct dquot *dquot);
  641. static int ext3_write_info(struct super_block *sb, int type);
  642. static int ext3_quota_on(struct super_block *sb, int type, int format_id,
  643. struct path *path);
  644. static int ext3_quota_on_mount(struct super_block *sb, int type);
  645. static ssize_t ext3_quota_read(struct super_block *sb, int type, char *data,
  646. size_t len, loff_t off);
  647. static ssize_t ext3_quota_write(struct super_block *sb, int type,
  648. const char *data, size_t len, loff_t off);
  649. static const struct dquot_operations ext3_quota_operations = {
  650. .write_dquot = ext3_write_dquot,
  651. .acquire_dquot = ext3_acquire_dquot,
  652. .release_dquot = ext3_release_dquot,
  653. .mark_dirty = ext3_mark_dquot_dirty,
  654. .write_info = ext3_write_info,
  655. .alloc_dquot = dquot_alloc,
  656. .destroy_dquot = dquot_destroy,
  657. };
  658. static const struct quotactl_ops ext3_qctl_operations = {
  659. .quota_on = ext3_quota_on,
  660. .quota_off = dquot_quota_off,
  661. .quota_sync = dquot_quota_sync,
  662. .get_info = dquot_get_dqinfo,
  663. .set_info = dquot_set_dqinfo,
  664. .get_dqblk = dquot_get_dqblk,
  665. .set_dqblk = dquot_set_dqblk
  666. };
  667. #endif
  668. static const struct super_operations ext3_sops = {
  669. .alloc_inode = ext3_alloc_inode,
  670. .destroy_inode = ext3_destroy_inode,
  671. .write_inode = ext3_write_inode,
  672. .dirty_inode = ext3_dirty_inode,
  673. .drop_inode = ext3_drop_inode,
  674. .evict_inode = ext3_evict_inode,
  675. .put_super = ext3_put_super,
  676. .sync_fs = ext3_sync_fs,
  677. .freeze_fs = ext3_freeze,
  678. .unfreeze_fs = ext3_unfreeze,
  679. .statfs = ext3_statfs,
  680. .remount_fs = ext3_remount,
  681. .show_options = ext3_show_options,
  682. #ifdef CONFIG_QUOTA
  683. .quota_read = ext3_quota_read,
  684. .quota_write = ext3_quota_write,
  685. #endif
  686. .bdev_try_to_free_page = bdev_try_to_free_page,
  687. };
  688. static const struct export_operations ext3_export_ops = {
  689. .fh_to_dentry = ext3_fh_to_dentry,
  690. .fh_to_parent = ext3_fh_to_parent,
  691. .get_parent = ext3_get_parent,
  692. };
  693. enum {
  694. Opt_bsd_df, Opt_minix_df, Opt_grpid, Opt_nogrpid,
  695. Opt_resgid, Opt_resuid, Opt_sb, Opt_err_cont, Opt_err_panic, Opt_err_ro,
  696. Opt_nouid32, Opt_nocheck, Opt_debug, Opt_oldalloc, Opt_orlov,
  697. Opt_user_xattr, Opt_nouser_xattr, Opt_acl, Opt_noacl,
  698. Opt_reservation, Opt_noreservation, Opt_noload, Opt_nobh, Opt_bh,
  699. Opt_commit, Opt_journal_update, Opt_journal_inum, Opt_journal_dev,
  700. Opt_abort, Opt_data_journal, Opt_data_ordered, Opt_data_writeback,
  701. Opt_data_err_abort, Opt_data_err_ignore,
  702. Opt_usrjquota, Opt_grpjquota, Opt_offusrjquota, Opt_offgrpjquota,
  703. Opt_jqfmt_vfsold, Opt_jqfmt_vfsv0, Opt_jqfmt_vfsv1, Opt_quota,
  704. Opt_noquota, Opt_ignore, Opt_barrier, Opt_nobarrier, Opt_err,
  705. Opt_resize, Opt_usrquota, Opt_grpquota
  706. };
  707. static const match_table_t tokens = {
  708. {Opt_bsd_df, "bsddf"},
  709. {Opt_minix_df, "minixdf"},
  710. {Opt_grpid, "grpid"},
  711. {Opt_grpid, "bsdgroups"},
  712. {Opt_nogrpid, "nogrpid"},
  713. {Opt_nogrpid, "sysvgroups"},
  714. {Opt_resgid, "resgid=%u"},
  715. {Opt_resuid, "resuid=%u"},
  716. {Opt_sb, "sb=%u"},
  717. {Opt_err_cont, "errors=continue"},
  718. {Opt_err_panic, "errors=panic"},
  719. {Opt_err_ro, "errors=remount-ro"},
  720. {Opt_nouid32, "nouid32"},
  721. {Opt_nocheck, "nocheck"},
  722. {Opt_nocheck, "check=none"},
  723. {Opt_debug, "debug"},
  724. {Opt_oldalloc, "oldalloc"},
  725. {Opt_orlov, "orlov"},
  726. {Opt_user_xattr, "user_xattr"},
  727. {Opt_nouser_xattr, "nouser_xattr"},
  728. {Opt_acl, "acl"},
  729. {Opt_noacl, "noacl"},
  730. {Opt_reservation, "reservation"},
  731. {Opt_noreservation, "noreservation"},
  732. {Opt_noload, "noload"},
  733. {Opt_noload, "norecovery"},
  734. {Opt_nobh, "nobh"},
  735. {Opt_bh, "bh"},
  736. {Opt_commit, "commit=%u"},
  737. {Opt_journal_update, "journal=update"},
  738. {Opt_journal_inum, "journal=%u"},
  739. {Opt_journal_dev, "journal_dev=%u"},
  740. {Opt_abort, "abort"},
  741. {Opt_data_journal, "data=journal"},
  742. {Opt_data_ordered, "data=ordered"},
  743. {Opt_data_writeback, "data=writeback"},
  744. {Opt_data_err_abort, "data_err=abort"},
  745. {Opt_data_err_ignore, "data_err=ignore"},
  746. {Opt_offusrjquota, "usrjquota="},
  747. {Opt_usrjquota, "usrjquota=%s"},
  748. {Opt_offgrpjquota, "grpjquota="},
  749. {Opt_grpjquota, "grpjquota=%s"},
  750. {Opt_jqfmt_vfsold, "jqfmt=vfsold"},
  751. {Opt_jqfmt_vfsv0, "jqfmt=vfsv0"},
  752. {Opt_jqfmt_vfsv1, "jqfmt=vfsv1"},
  753. {Opt_grpquota, "grpquota"},
  754. {Opt_noquota, "noquota"},
  755. {Opt_quota, "quota"},
  756. {Opt_usrquota, "usrquota"},
  757. {Opt_barrier, "barrier=%u"},
  758. {Opt_barrier, "barrier"},
  759. {Opt_nobarrier, "nobarrier"},
  760. {Opt_resize, "resize"},
  761. {Opt_err, NULL},
  762. };
  763. static ext3_fsblk_t get_sb_block(void **data, struct super_block *sb)
  764. {
  765. ext3_fsblk_t sb_block;
  766. char *options = (char *) *data;
  767. if (!options || strncmp(options, "sb=", 3) != 0)
  768. return 1; /* Default location */
  769. options += 3;
  770. /*todo: use simple_strtoll with >32bit ext3 */
  771. sb_block = simple_strtoul(options, &options, 0);
  772. if (*options && *options != ',') {
  773. ext3_msg(sb, KERN_ERR, "error: invalid sb specification: %s",
  774. (char *) *data);
  775. return 1;
  776. }
  777. if (*options == ',')
  778. options++;
  779. *data = (void *) options;
  780. return sb_block;
  781. }
  782. #ifdef CONFIG_QUOTA
  783. static int set_qf_name(struct super_block *sb, int qtype, substring_t *args)
  784. {
  785. struct ext3_sb_info *sbi = EXT3_SB(sb);
  786. char *qname;
  787. if (sb_any_quota_loaded(sb) &&
  788. !sbi->s_qf_names[qtype]) {
  789. ext3_msg(sb, KERN_ERR,
  790. "Cannot change journaled "
  791. "quota options when quota turned on");
  792. return 0;
  793. }
  794. qname = match_strdup(args);
  795. if (!qname) {
  796. ext3_msg(sb, KERN_ERR,
  797. "Not enough memory for storing quotafile name");
  798. return 0;
  799. }
  800. if (sbi->s_qf_names[qtype] &&
  801. strcmp(sbi->s_qf_names[qtype], qname)) {
  802. ext3_msg(sb, KERN_ERR,
  803. "%s quota file already specified", QTYPE2NAME(qtype));
  804. kfree(qname);
  805. return 0;
  806. }
  807. sbi->s_qf_names[qtype] = qname;
  808. if (strchr(sbi->s_qf_names[qtype], '/')) {
  809. ext3_msg(sb, KERN_ERR,
  810. "quotafile must be on filesystem root");
  811. kfree(sbi->s_qf_names[qtype]);
  812. sbi->s_qf_names[qtype] = NULL;
  813. return 0;
  814. }
  815. set_opt(sbi->s_mount_opt, QUOTA);
  816. return 1;
  817. }
  818. static int clear_qf_name(struct super_block *sb, int qtype) {
  819. struct ext3_sb_info *sbi = EXT3_SB(sb);
  820. if (sb_any_quota_loaded(sb) &&
  821. sbi->s_qf_names[qtype]) {
  822. ext3_msg(sb, KERN_ERR, "Cannot change journaled quota options"
  823. " when quota turned on");
  824. return 0;
  825. }
  826. /*
  827. * The space will be released later when all options are confirmed
  828. * to be correct
  829. */
  830. sbi->s_qf_names[qtype] = NULL;
  831. return 1;
  832. }
  833. #endif
  834. static int parse_options (char *options, struct super_block *sb,
  835. unsigned int *inum, unsigned long *journal_devnum,
  836. ext3_fsblk_t *n_blocks_count, int is_remount)
  837. {
  838. struct ext3_sb_info *sbi = EXT3_SB(sb);
  839. char * p;
  840. substring_t args[MAX_OPT_ARGS];
  841. int data_opt = 0;
  842. int option;
  843. #ifdef CONFIG_QUOTA
  844. int qfmt;
  845. #endif
  846. if (!options)
  847. return 1;
  848. while ((p = strsep (&options, ",")) != NULL) {
  849. int token;
  850. if (!*p)
  851. continue;
  852. /*
  853. * Initialize args struct so we know whether arg was
  854. * found; some options take optional arguments.
  855. */
  856. args[0].to = args[0].from = 0;
  857. token = match_token(p, tokens, args);
  858. switch (token) {
  859. case Opt_bsd_df:
  860. clear_opt (sbi->s_mount_opt, MINIX_DF);
  861. break;
  862. case Opt_minix_df:
  863. set_opt (sbi->s_mount_opt, MINIX_DF);
  864. break;
  865. case Opt_grpid:
  866. set_opt (sbi->s_mount_opt, GRPID);
  867. break;
  868. case Opt_nogrpid:
  869. clear_opt (sbi->s_mount_opt, GRPID);
  870. break;
  871. case Opt_resuid:
  872. if (match_int(&args[0], &option))
  873. return 0;
  874. sbi->s_resuid = option;
  875. break;
  876. case Opt_resgid:
  877. if (match_int(&args[0], &option))
  878. return 0;
  879. sbi->s_resgid = option;
  880. break;
  881. case Opt_sb:
  882. /* handled by get_sb_block() instead of here */
  883. /* *sb_block = match_int(&args[0]); */
  884. break;
  885. case Opt_err_panic:
  886. clear_opt (sbi->s_mount_opt, ERRORS_CONT);
  887. clear_opt (sbi->s_mount_opt, ERRORS_RO);
  888. set_opt (sbi->s_mount_opt, ERRORS_PANIC);
  889. break;
  890. case Opt_err_ro:
  891. clear_opt (sbi->s_mount_opt, ERRORS_CONT);
  892. clear_opt (sbi->s_mount_opt, ERRORS_PANIC);
  893. set_opt (sbi->s_mount_opt, ERRORS_RO);
  894. break;
  895. case Opt_err_cont:
  896. clear_opt (sbi->s_mount_opt, ERRORS_RO);
  897. clear_opt (sbi->s_mount_opt, ERRORS_PANIC);
  898. set_opt (sbi->s_mount_opt, ERRORS_CONT);
  899. break;
  900. case Opt_nouid32:
  901. set_opt (sbi->s_mount_opt, NO_UID32);
  902. break;
  903. case Opt_nocheck:
  904. clear_opt (sbi->s_mount_opt, CHECK);
  905. break;
  906. case Opt_debug:
  907. set_opt (sbi->s_mount_opt, DEBUG);
  908. break;
  909. case Opt_oldalloc:
  910. ext3_msg(sb, KERN_WARNING,
  911. "Ignoring deprecated oldalloc option");
  912. break;
  913. case Opt_orlov:
  914. ext3_msg(sb, KERN_WARNING,
  915. "Ignoring deprecated orlov option");
  916. break;
  917. #ifdef CONFIG_EXT3_FS_XATTR
  918. case Opt_user_xattr:
  919. set_opt (sbi->s_mount_opt, XATTR_USER);
  920. break;
  921. case Opt_nouser_xattr:
  922. clear_opt (sbi->s_mount_opt, XATTR_USER);
  923. break;
  924. #else
  925. case Opt_user_xattr:
  926. case Opt_nouser_xattr:
  927. ext3_msg(sb, KERN_INFO,
  928. "(no)user_xattr options not supported");
  929. break;
  930. #endif
  931. #ifdef CONFIG_EXT3_FS_POSIX_ACL
  932. case Opt_acl:
  933. set_opt(sbi->s_mount_opt, POSIX_ACL);
  934. break;
  935. case Opt_noacl:
  936. clear_opt(sbi->s_mount_opt, POSIX_ACL);
  937. break;
  938. #else
  939. case Opt_acl:
  940. case Opt_noacl:
  941. ext3_msg(sb, KERN_INFO,
  942. "(no)acl options not supported");
  943. break;
  944. #endif
  945. case Opt_reservation:
  946. set_opt(sbi->s_mount_opt, RESERVATION);
  947. break;
  948. case Opt_noreservation:
  949. clear_opt(sbi->s_mount_opt, RESERVATION);
  950. break;
  951. case Opt_journal_update:
  952. /* @@@ FIXME */
  953. /* Eventually we will want to be able to create
  954. a journal file here. For now, only allow the
  955. user to specify an existing inode to be the
  956. journal file. */
  957. if (is_remount) {
  958. ext3_msg(sb, KERN_ERR, "error: cannot specify "
  959. "journal on remount");
  960. return 0;
  961. }
  962. set_opt (sbi->s_mount_opt, UPDATE_JOURNAL);
  963. break;
  964. case Opt_journal_inum:
  965. if (is_remount) {
  966. ext3_msg(sb, KERN_ERR, "error: cannot specify "
  967. "journal on remount");
  968. return 0;
  969. }
  970. if (match_int(&args[0], &option))
  971. return 0;
  972. *inum = option;
  973. break;
  974. case Opt_journal_dev:
  975. if (is_remount) {
  976. ext3_msg(sb, KERN_ERR, "error: cannot specify "
  977. "journal on remount");
  978. return 0;
  979. }
  980. if (match_int(&args[0], &option))
  981. return 0;
  982. *journal_devnum = option;
  983. break;
  984. case Opt_noload:
  985. set_opt (sbi->s_mount_opt, NOLOAD);
  986. break;
  987. case Opt_commit:
  988. if (match_int(&args[0], &option))
  989. return 0;
  990. if (option < 0)
  991. return 0;
  992. if (option == 0)
  993. option = JBD_DEFAULT_MAX_COMMIT_AGE;
  994. sbi->s_commit_interval = HZ * option;
  995. break;
  996. case Opt_data_journal:
  997. data_opt = EXT3_MOUNT_JOURNAL_DATA;
  998. goto datacheck;
  999. case Opt_data_ordered:
  1000. data_opt = EXT3_MOUNT_ORDERED_DATA;
  1001. goto datacheck;
  1002. case Opt_data_writeback:
  1003. data_opt = EXT3_MOUNT_WRITEBACK_DATA;
  1004. datacheck:
  1005. if (is_remount) {
  1006. if (test_opt(sb, DATA_FLAGS) == data_opt)
  1007. break;
  1008. ext3_msg(sb, KERN_ERR,
  1009. "error: cannot change "
  1010. "data mode on remount. The filesystem "
  1011. "is mounted in data=%s mode and you "
  1012. "try to remount it in data=%s mode.",
  1013. data_mode_string(test_opt(sb,
  1014. DATA_FLAGS)),
  1015. data_mode_string(data_opt));
  1016. return 0;
  1017. } else {
  1018. clear_opt(sbi->s_mount_opt, DATA_FLAGS);
  1019. sbi->s_mount_opt |= data_opt;
  1020. }
  1021. break;
  1022. case Opt_data_err_abort:
  1023. set_opt(sbi->s_mount_opt, DATA_ERR_ABORT);
  1024. break;
  1025. case Opt_data_err_ignore:
  1026. clear_opt(sbi->s_mount_opt, DATA_ERR_ABORT);
  1027. break;
  1028. #ifdef CONFIG_QUOTA
  1029. case Opt_usrjquota:
  1030. if (!set_qf_name(sb, USRQUOTA, &args[0]))
  1031. return 0;
  1032. break;
  1033. case Opt_grpjquota:
  1034. if (!set_qf_name(sb, GRPQUOTA, &args[0]))
  1035. return 0;
  1036. break;
  1037. case Opt_offusrjquota:
  1038. if (!clear_qf_name(sb, USRQUOTA))
  1039. return 0;
  1040. break;
  1041. case Opt_offgrpjquota:
  1042. if (!clear_qf_name(sb, GRPQUOTA))
  1043. return 0;
  1044. break;
  1045. case Opt_jqfmt_vfsold:
  1046. qfmt = QFMT_VFS_OLD;
  1047. goto set_qf_format;
  1048. case Opt_jqfmt_vfsv0:
  1049. qfmt = QFMT_VFS_V0;
  1050. goto set_qf_format;
  1051. case Opt_jqfmt_vfsv1:
  1052. qfmt = QFMT_VFS_V1;
  1053. set_qf_format:
  1054. if (sb_any_quota_loaded(sb) &&
  1055. sbi->s_jquota_fmt != qfmt) {
  1056. ext3_msg(sb, KERN_ERR, "error: cannot change "
  1057. "journaled quota options when "
  1058. "quota turned on.");
  1059. return 0;
  1060. }
  1061. sbi->s_jquota_fmt = qfmt;
  1062. break;
  1063. case Opt_quota:
  1064. case Opt_usrquota:
  1065. set_opt(sbi->s_mount_opt, QUOTA);
  1066. set_opt(sbi->s_mount_opt, USRQUOTA);
  1067. break;
  1068. case Opt_grpquota:
  1069. set_opt(sbi->s_mount_opt, QUOTA);
  1070. set_opt(sbi->s_mount_opt, GRPQUOTA);
  1071. break;
  1072. case Opt_noquota:
  1073. if (sb_any_quota_loaded(sb)) {
  1074. ext3_msg(sb, KERN_ERR, "error: cannot change "
  1075. "quota options when quota turned on.");
  1076. return 0;
  1077. }
  1078. clear_opt(sbi->s_mount_opt, QUOTA);
  1079. clear_opt(sbi->s_mount_opt, USRQUOTA);
  1080. clear_opt(sbi->s_mount_opt, GRPQUOTA);
  1081. break;
  1082. #else
  1083. case Opt_quota:
  1084. case Opt_usrquota:
  1085. case Opt_grpquota:
  1086. ext3_msg(sb, KERN_ERR,
  1087. "error: quota options not supported.");
  1088. break;
  1089. case Opt_usrjquota:
  1090. case Opt_grpjquota:
  1091. case Opt_offusrjquota:
  1092. case Opt_offgrpjquota:
  1093. case Opt_jqfmt_vfsold:
  1094. case Opt_jqfmt_vfsv0:
  1095. case Opt_jqfmt_vfsv1:
  1096. ext3_msg(sb, KERN_ERR,
  1097. "error: journaled quota options not "
  1098. "supported.");
  1099. break;
  1100. case Opt_noquota:
  1101. break;
  1102. #endif
  1103. case Opt_abort:
  1104. set_opt(sbi->s_mount_opt, ABORT);
  1105. break;
  1106. case Opt_nobarrier:
  1107. clear_opt(sbi->s_mount_opt, BARRIER);
  1108. break;
  1109. case Opt_barrier:
  1110. if (args[0].from) {
  1111. if (match_int(&args[0], &option))
  1112. return 0;
  1113. } else
  1114. option = 1; /* No argument, default to 1 */
  1115. if (option)
  1116. set_opt(sbi->s_mount_opt, BARRIER);
  1117. else
  1118. clear_opt(sbi->s_mount_opt, BARRIER);
  1119. break;
  1120. case Opt_ignore:
  1121. break;
  1122. case Opt_resize:
  1123. if (!is_remount) {
  1124. ext3_msg(sb, KERN_ERR,
  1125. "error: resize option only available "
  1126. "for remount");
  1127. return 0;
  1128. }
  1129. if (match_int(&args[0], &option) != 0)
  1130. return 0;
  1131. *n_blocks_count = option;
  1132. break;
  1133. case Opt_nobh:
  1134. ext3_msg(sb, KERN_WARNING,
  1135. "warning: ignoring deprecated nobh option");
  1136. break;
  1137. case Opt_bh:
  1138. ext3_msg(sb, KERN_WARNING,
  1139. "warning: ignoring deprecated bh option");
  1140. break;
  1141. default:
  1142. ext3_msg(sb, KERN_ERR,
  1143. "error: unrecognized mount option \"%s\" "
  1144. "or missing value", p);
  1145. return 0;
  1146. }
  1147. }
  1148. #ifdef CONFIG_QUOTA
  1149. if (sbi->s_qf_names[USRQUOTA] || sbi->s_qf_names[GRPQUOTA]) {
  1150. if (test_opt(sb, USRQUOTA) && sbi->s_qf_names[USRQUOTA])
  1151. clear_opt(sbi->s_mount_opt, USRQUOTA);
  1152. if (test_opt(sb, GRPQUOTA) && sbi->s_qf_names[GRPQUOTA])
  1153. clear_opt(sbi->s_mount_opt, GRPQUOTA);
  1154. if (test_opt(sb, GRPQUOTA) || test_opt(sb, USRQUOTA)) {
  1155. ext3_msg(sb, KERN_ERR, "error: old and new quota "
  1156. "format mixing.");
  1157. return 0;
  1158. }
  1159. if (!sbi->s_jquota_fmt) {
  1160. ext3_msg(sb, KERN_ERR, "error: journaled quota format "
  1161. "not specified.");
  1162. return 0;
  1163. }
  1164. }
  1165. #endif
  1166. return 1;
  1167. }
  1168. static int ext3_setup_super(struct super_block *sb, struct ext3_super_block *es,
  1169. int read_only)
  1170. {
  1171. struct ext3_sb_info *sbi = EXT3_SB(sb);
  1172. int res = 0;
  1173. if (le32_to_cpu(es->s_rev_level) > EXT3_MAX_SUPP_REV) {
  1174. ext3_msg(sb, KERN_ERR,
  1175. "error: revision level too high, "
  1176. "forcing read-only mode");
  1177. res = MS_RDONLY;
  1178. }
  1179. if (read_only)
  1180. return res;
  1181. if (!(sbi->s_mount_state & EXT3_VALID_FS))
  1182. ext3_msg(sb, KERN_WARNING,
  1183. "warning: mounting unchecked fs, "
  1184. "running e2fsck is recommended");
  1185. else if ((sbi->s_mount_state & EXT3_ERROR_FS))
  1186. ext3_msg(sb, KERN_WARNING,
  1187. "warning: mounting fs with errors, "
  1188. "running e2fsck is recommended");
  1189. else if ((__s16) le16_to_cpu(es->s_max_mnt_count) > 0 &&
  1190. le16_to_cpu(es->s_mnt_count) >=
  1191. le16_to_cpu(es->s_max_mnt_count))
  1192. ext3_msg(sb, KERN_WARNING,
  1193. "warning: maximal mount count reached, "
  1194. "running e2fsck is recommended");
  1195. else if (le32_to_cpu(es->s_checkinterval) &&
  1196. (le32_to_cpu(es->s_lastcheck) +
  1197. le32_to_cpu(es->s_checkinterval) <= get_seconds()))
  1198. ext3_msg(sb, KERN_WARNING,
  1199. "warning: checktime reached, "
  1200. "running e2fsck is recommended");
  1201. #if 0
  1202. /* @@@ We _will_ want to clear the valid bit if we find
  1203. inconsistencies, to force a fsck at reboot. But for
  1204. a plain journaled filesystem we can keep it set as
  1205. valid forever! :) */
  1206. es->s_state &= cpu_to_le16(~EXT3_VALID_FS);
  1207. #endif
  1208. if (!le16_to_cpu(es->s_max_mnt_count))
  1209. es->s_max_mnt_count = cpu_to_le16(EXT3_DFL_MAX_MNT_COUNT);
  1210. le16_add_cpu(&es->s_mnt_count, 1);
  1211. es->s_mtime = cpu_to_le32(get_seconds());
  1212. ext3_update_dynamic_rev(sb);
  1213. EXT3_SET_INCOMPAT_FEATURE(sb, EXT3_FEATURE_INCOMPAT_RECOVER);
  1214. ext3_commit_super(sb, es, 1);
  1215. if (test_opt(sb, DEBUG))
  1216. ext3_msg(sb, KERN_INFO, "[bs=%lu, gc=%lu, "
  1217. "bpg=%lu, ipg=%lu, mo=%04lx]",
  1218. sb->s_blocksize,
  1219. sbi->s_groups_count,
  1220. EXT3_BLOCKS_PER_GROUP(sb),
  1221. EXT3_INODES_PER_GROUP(sb),
  1222. sbi->s_mount_opt);
  1223. if (EXT3_SB(sb)->s_journal->j_inode == NULL) {
  1224. char b[BDEVNAME_SIZE];
  1225. ext3_msg(sb, KERN_INFO, "using external journal on %s",
  1226. bdevname(EXT3_SB(sb)->s_journal->j_dev, b));
  1227. } else {
  1228. ext3_msg(sb, KERN_INFO, "using internal journal");
  1229. }
  1230. cleancache_init_fs(sb);
  1231. return res;
  1232. }
  1233. /* Called at mount-time, super-block is locked */
  1234. static int ext3_check_descriptors(struct super_block *sb)
  1235. {
  1236. struct ext3_sb_info *sbi = EXT3_SB(sb);
  1237. int i;
  1238. ext3_debug ("Checking group descriptors");
  1239. for (i = 0; i < sbi->s_groups_count; i++) {
  1240. struct ext3_group_desc *gdp = ext3_get_group_desc(sb, i, NULL);
  1241. ext3_fsblk_t first_block = ext3_group_first_block_no(sb, i);
  1242. ext3_fsblk_t last_block;
  1243. if (i == sbi->s_groups_count - 1)
  1244. last_block = le32_to_cpu(sbi->s_es->s_blocks_count) - 1;
  1245. else
  1246. last_block = first_block +
  1247. (EXT3_BLOCKS_PER_GROUP(sb) - 1);
  1248. if (le32_to_cpu(gdp->bg_block_bitmap) < first_block ||
  1249. le32_to_cpu(gdp->bg_block_bitmap) > last_block)
  1250. {
  1251. ext3_error (sb, "ext3_check_descriptors",
  1252. "Block bitmap for group %d"
  1253. " not in group (block %lu)!",
  1254. i, (unsigned long)
  1255. le32_to_cpu(gdp->bg_block_bitmap));
  1256. return 0;
  1257. }
  1258. if (le32_to_cpu(gdp->bg_inode_bitmap) < first_block ||
  1259. le32_to_cpu(gdp->bg_inode_bitmap) > last_block)
  1260. {
  1261. ext3_error (sb, "ext3_check_descriptors",
  1262. "Inode bitmap for group %d"
  1263. " not in group (block %lu)!",
  1264. i, (unsigned long)
  1265. le32_to_cpu(gdp->bg_inode_bitmap));
  1266. return 0;
  1267. }
  1268. if (le32_to_cpu(gdp->bg_inode_table) < first_block ||
  1269. le32_to_cpu(gdp->bg_inode_table) + sbi->s_itb_per_group - 1 >
  1270. last_block)
  1271. {
  1272. ext3_error (sb, "ext3_check_descriptors",
  1273. "Inode table for group %d"
  1274. " not in group (block %lu)!",
  1275. i, (unsigned long)
  1276. le32_to_cpu(gdp->bg_inode_table));
  1277. return 0;
  1278. }
  1279. }
  1280. sbi->s_es->s_free_blocks_count=cpu_to_le32(ext3_count_free_blocks(sb));
  1281. sbi->s_es->s_free_inodes_count=cpu_to_le32(ext3_count_free_inodes(sb));
  1282. return 1;
  1283. }
  1284. /* ext3_orphan_cleanup() walks a singly-linked list of inodes (starting at
  1285. * the superblock) which were deleted from all directories, but held open by
  1286. * a process at the time of a crash. We walk the list and try to delete these
  1287. * inodes at recovery time (only with a read-write filesystem).
  1288. *
  1289. * In order to keep the orphan inode chain consistent during traversal (in
  1290. * case of crash during recovery), we link each inode into the superblock
  1291. * orphan list_head and handle it the same way as an inode deletion during
  1292. * normal operation (which journals the operations for us).
  1293. *
  1294. * We only do an iget() and an iput() on each inode, which is very safe if we
  1295. * accidentally point at an in-use or already deleted inode. The worst that
  1296. * can happen in this case is that we get a "bit already cleared" message from
  1297. * ext3_free_inode(). The only reason we would point at a wrong inode is if
  1298. * e2fsck was run on this filesystem, and it must have already done the orphan
  1299. * inode cleanup for us, so we can safely abort without any further action.
  1300. */
  1301. static void ext3_orphan_cleanup (struct super_block * sb,
  1302. struct ext3_super_block * es)
  1303. {
  1304. unsigned int s_flags = sb->s_flags;
  1305. int nr_orphans = 0, nr_truncates = 0;
  1306. #ifdef CONFIG_QUOTA
  1307. int i;
  1308. #endif
  1309. if (!es->s_last_orphan) {
  1310. jbd_debug(4, "no orphan inodes to clean up\n");
  1311. return;
  1312. }
  1313. if (bdev_read_only(sb->s_bdev)) {
  1314. ext3_msg(sb, KERN_ERR, "error: write access "
  1315. "unavailable, skipping orphan cleanup.");
  1316. return;
  1317. }
  1318. /* Check if feature set allows readwrite operations */
  1319. if (EXT3_HAS_RO_COMPAT_FEATURE(sb, ~EXT3_FEATURE_RO_COMPAT_SUPP)) {
  1320. ext3_msg(sb, KERN_INFO, "Skipping orphan cleanup due to "
  1321. "unknown ROCOMPAT features");
  1322. return;
  1323. }
  1324. if (EXT3_SB(sb)->s_mount_state & EXT3_ERROR_FS) {
  1325. if (es->s_last_orphan)
  1326. jbd_debug(1, "Errors on filesystem, "
  1327. "clearing orphan list.\n");
  1328. es->s_last_orphan = 0;
  1329. jbd_debug(1, "Skipping orphan recovery on fs with errors.\n");
  1330. return;
  1331. }
  1332. if (s_flags & MS_RDONLY) {
  1333. ext3_msg(sb, KERN_INFO, "orphan cleanup on readonly fs");
  1334. sb->s_flags &= ~MS_RDONLY;
  1335. }
  1336. #ifdef CONFIG_QUOTA
  1337. /* Needed for iput() to work correctly and not trash data */
  1338. sb->s_flags |= MS_ACTIVE;
  1339. /* Turn on quotas so that they are updated correctly */
  1340. for (i = 0; i < MAXQUOTAS; i++) {
  1341. if (EXT3_SB(sb)->s_qf_names[i]) {
  1342. int ret = ext3_quota_on_mount(sb, i);
  1343. if (ret < 0)
  1344. ext3_msg(sb, KERN_ERR,
  1345. "error: cannot turn on journaled "
  1346. "quota: %d", ret);
  1347. }
  1348. }
  1349. #endif
  1350. while (es->s_last_orphan) {
  1351. struct inode *inode;
  1352. inode = ext3_orphan_get(sb, le32_to_cpu(es->s_last_orphan));
  1353. if (IS_ERR(inode)) {
  1354. es->s_last_orphan = 0;
  1355. break;
  1356. }
  1357. list_add(&EXT3_I(inode)->i_orphan, &EXT3_SB(sb)->s_orphan);
  1358. dquot_initialize(inode);
  1359. if (inode->i_nlink) {
  1360. printk(KERN_DEBUG
  1361. "%s: truncating inode %lu to %Ld bytes\n",
  1362. __func__, inode->i_ino, inode->i_size);
  1363. jbd_debug(2, "truncating inode %lu to %Ld bytes\n",
  1364. inode->i_ino, inode->i_size);
  1365. ext3_truncate(inode);
  1366. nr_truncates++;
  1367. } else {
  1368. printk(KERN_DEBUG
  1369. "%s: deleting unreferenced inode %lu\n",
  1370. __func__, inode->i_ino);
  1371. jbd_debug(2, "deleting unreferenced inode %lu\n",
  1372. inode->i_ino);
  1373. nr_orphans++;
  1374. }
  1375. iput(inode); /* The delete magic happens here! */
  1376. }
  1377. #define PLURAL(x) (x), ((x)==1) ? "" : "s"
  1378. if (nr_orphans)
  1379. ext3_msg(sb, KERN_INFO, "%d orphan inode%s deleted",
  1380. PLURAL(nr_orphans));
  1381. if (nr_truncates)
  1382. ext3_msg(sb, KERN_INFO, "%d truncate%s cleaned up",
  1383. PLURAL(nr_truncates));
  1384. #ifdef CONFIG_QUOTA
  1385. /* Turn quotas off */
  1386. for (i = 0; i < MAXQUOTAS; i++) {
  1387. if (sb_dqopt(sb)->files[i])
  1388. dquot_quota_off(sb, i);
  1389. }
  1390. #endif
  1391. sb->s_flags = s_flags; /* Restore MS_RDONLY status */
  1392. }
  1393. /*
  1394. * Maximal file size. There is a direct, and {,double-,triple-}indirect
  1395. * block limit, and also a limit of (2^32 - 1) 512-byte sectors in i_blocks.
  1396. * We need to be 1 filesystem block less than the 2^32 sector limit.
  1397. */
  1398. static loff_t ext3_max_size(int bits)
  1399. {
  1400. loff_t res = EXT3_NDIR_BLOCKS;
  1401. int meta_blocks;
  1402. loff_t upper_limit;
  1403. /* This is calculated to be the largest file size for a
  1404. * dense, file such that the total number of
  1405. * sectors in the file, including data and all indirect blocks,
  1406. * does not exceed 2^32 -1
  1407. * __u32 i_blocks representing the total number of
  1408. * 512 bytes blocks of the file
  1409. */
  1410. upper_limit = (1LL << 32) - 1;
  1411. /* total blocks in file system block size */
  1412. upper_limit >>= (bits - 9);
  1413. /* indirect blocks */
  1414. meta_blocks = 1;
  1415. /* double indirect blocks */
  1416. meta_blocks += 1 + (1LL << (bits-2));
  1417. /* tripple indirect blocks */
  1418. meta_blocks += 1 + (1LL << (bits-2)) + (1LL << (2*(bits-2)));
  1419. upper_limit -= meta_blocks;
  1420. upper_limit <<= bits;
  1421. res += 1LL << (bits-2);
  1422. res += 1LL << (2*(bits-2));
  1423. res += 1LL << (3*(bits-2));
  1424. res <<= bits;
  1425. if (res > upper_limit)
  1426. res = upper_limit;
  1427. if (res > MAX_LFS_FILESIZE)
  1428. res = MAX_LFS_FILESIZE;
  1429. return res;
  1430. }
  1431. static ext3_fsblk_t descriptor_loc(struct super_block *sb,
  1432. ext3_fsblk_t logic_sb_block,
  1433. int nr)
  1434. {
  1435. struct ext3_sb_info *sbi = EXT3_SB(sb);
  1436. unsigned long bg, first_meta_bg;
  1437. int has_super = 0;
  1438. first_meta_bg = le32_to_cpu(sbi->s_es->s_first_meta_bg);
  1439. if (!EXT3_HAS_INCOMPAT_FEATURE(sb, EXT3_FEATURE_INCOMPAT_META_BG) ||
  1440. nr < first_meta_bg)
  1441. return (logic_sb_block + nr + 1);
  1442. bg = sbi->s_desc_per_block * nr;
  1443. if (ext3_bg_has_super(sb, bg))
  1444. has_super = 1;
  1445. return (has_super + ext3_group_first_block_no(sb, bg));
  1446. }
  1447. static int ext3_fill_super (struct super_block *sb, void *data, int silent)
  1448. {
  1449. struct buffer_head * bh;
  1450. struct ext3_super_block *es = NULL;
  1451. struct ext3_sb_info *sbi;
  1452. ext3_fsblk_t block;
  1453. ext3_fsblk_t sb_block = get_sb_block(&data, sb);
  1454. ext3_fsblk_t logic_sb_block;
  1455. unsigned long offset = 0;
  1456. unsigned int journal_inum = 0;
  1457. unsigned long journal_devnum = 0;
  1458. unsigned long def_mount_opts;
  1459. struct inode *root;
  1460. int blocksize;
  1461. int hblock;
  1462. int db_count;
  1463. int i;
  1464. int needs_recovery;
  1465. int ret = -EINVAL;
  1466. __le32 features;
  1467. int err;
  1468. sbi = kzalloc(sizeof(*sbi), GFP_KERNEL);
  1469. if (!sbi)
  1470. return -ENOMEM;
  1471. sbi->s_blockgroup_lock =
  1472. kzalloc(sizeof(struct blockgroup_lock), GFP_KERNEL);
  1473. if (!sbi->s_blockgroup_lock) {
  1474. kfree(sbi);
  1475. return -ENOMEM;
  1476. }
  1477. sb->s_fs_info = sbi;
  1478. sbi->s_mount_opt = 0;
  1479. sbi->s_resuid = EXT3_DEF_RESUID;
  1480. sbi->s_resgid = EXT3_DEF_RESGID;
  1481. sbi->s_sb_block = sb_block;
  1482. blocksize = sb_min_blocksize(sb, EXT3_MIN_BLOCK_SIZE);
  1483. if (!blocksize) {
  1484. ext3_msg(sb, KERN_ERR, "error: unable to set blocksize");
  1485. goto out_fail;
  1486. }
  1487. /*
  1488. * The ext3 superblock will not be buffer aligned for other than 1kB
  1489. * block sizes. We need to calculate the offset from buffer start.
  1490. */
  1491. if (blocksize != EXT3_MIN_BLOCK_SIZE) {
  1492. logic_sb_block = (sb_block * EXT3_MIN_BLOCK_SIZE) / blocksize;
  1493. offset = (sb_block * EXT3_MIN_BLOCK_SIZE) % blocksize;
  1494. } else {
  1495. logic_sb_block = sb_block;
  1496. }
  1497. if (!(bh = sb_bread(sb, logic_sb_block))) {
  1498. ext3_msg(sb, KERN_ERR, "error: unable to read superblock");
  1499. goto out_fail;
  1500. }
  1501. /*
  1502. * Note: s_es must be initialized as soon as possible because
  1503. * some ext3 macro-instructions depend on its value
  1504. */
  1505. es = (struct ext3_super_block *) (bh->b_data + offset);
  1506. sbi->s_es = es;
  1507. sb->s_magic = le16_to_cpu(es->s_magic);
  1508. if (sb->s_magic != EXT3_SUPER_MAGIC)
  1509. goto cantfind_ext3;
  1510. /* Set defaults before we parse the mount options */
  1511. def_mount_opts = le32_to_cpu(es->s_default_mount_opts);
  1512. if (def_mount_opts & EXT3_DEFM_DEBUG)
  1513. set_opt(sbi->s_mount_opt, DEBUG);
  1514. if (def_mount_opts & EXT3_DEFM_BSDGROUPS)
  1515. set_opt(sbi->s_mount_opt, GRPID);
  1516. if (def_mount_opts & EXT3_DEFM_UID16)
  1517. set_opt(sbi->s_mount_opt, NO_UID32);
  1518. #ifdef CONFIG_EXT3_FS_XATTR
  1519. if (def_mount_opts & EXT3_DEFM_XATTR_USER)
  1520. set_opt(sbi->s_mount_opt, XATTR_USER);
  1521. #endif
  1522. #ifdef CONFIG_EXT3_FS_POSIX_ACL
  1523. if (def_mount_opts & EXT3_DEFM_ACL)
  1524. set_opt(sbi->s_mount_opt, POSIX_ACL);
  1525. #endif
  1526. if ((def_mount_opts & EXT3_DEFM_JMODE) == EXT3_DEFM_JMODE_DATA)
  1527. set_opt(sbi->s_mount_opt, JOURNAL_DATA);
  1528. else if ((def_mount_opts & EXT3_DEFM_JMODE) == EXT3_DEFM_JMODE_ORDERED)
  1529. set_opt(sbi->s_mount_opt, ORDERED_DATA);
  1530. else if ((def_mount_opts & EXT3_DEFM_JMODE) == EXT3_DEFM_JMODE_WBACK)
  1531. set_opt(sbi->s_mount_opt, WRITEBACK_DATA);
  1532. if (le16_to_cpu(sbi->s_es->s_errors) == EXT3_ERRORS_PANIC)
  1533. set_opt(sbi->s_mount_opt, ERRORS_PANIC);
  1534. else if (le16_to_cpu(sbi->s_es->s_errors) == EXT3_ERRORS_CONTINUE)
  1535. set_opt(sbi->s_mount_opt, ERRORS_CONT);
  1536. else
  1537. set_opt(sbi->s_mount_opt, ERRORS_RO);
  1538. sbi->s_resuid = le16_to_cpu(es->s_def_resuid);
  1539. sbi->s_resgid = le16_to_cpu(es->s_def_resgid);
  1540. /* enable barriers by default */
  1541. set_opt(sbi->s_mount_opt, BARRIER);
  1542. set_opt(sbi->s_mount_opt, RESERVATION);
  1543. if (!parse_options ((char *) data, sb, &journal_inum, &journal_devnum,
  1544. NULL, 0))
  1545. goto failed_mount;
  1546. sb->s_flags = (sb->s_flags & ~MS_POSIXACL) |
  1547. (test_opt(sb, POSIX_ACL) ? MS_POSIXACL : 0);
  1548. if (le32_to_cpu(es->s_rev_level) == EXT3_GOOD_OLD_REV &&
  1549. (EXT3_HAS_COMPAT_FEATURE(sb, ~0U) ||
  1550. EXT3_HAS_RO_COMPAT_FEATURE(sb, ~0U) ||
  1551. EXT3_HAS_INCOMPAT_FEATURE(sb, ~0U)))
  1552. ext3_msg(sb, KERN_WARNING,
  1553. "warning: feature flags set on rev 0 fs, "
  1554. "running e2fsck is recommended");
  1555. /*
  1556. * Check feature flags regardless of the revision level, since we
  1557. * previously didn't change the revision level when setting the flags,
  1558. * so there is a chance incompat flags are set on a rev 0 filesystem.
  1559. */
  1560. features = EXT3_HAS_INCOMPAT_FEATURE(sb, ~EXT3_FEATURE_INCOMPAT_SUPP);
  1561. if (features) {
  1562. ext3_msg(sb, KERN_ERR,
  1563. "error: couldn't mount because of unsupported "
  1564. "optional features (%x)", le32_to_cpu(features));
  1565. goto failed_mount;
  1566. }
  1567. features = EXT3_HAS_RO_COMPAT_FEATURE(sb, ~EXT3_FEATURE_RO_COMPAT_SUPP);
  1568. if (!(sb->s_flags & MS_RDONLY) && features) {
  1569. ext3_msg(sb, KERN_ERR,
  1570. "error: couldn't mount RDWR because of unsupported "
  1571. "optional features (%x)", le32_to_cpu(features));
  1572. goto failed_mount;
  1573. }
  1574. blocksize = BLOCK_SIZE << le32_to_cpu(es->s_log_block_size);
  1575. if (blocksize < EXT3_MIN_BLOCK_SIZE ||
  1576. blocksize > EXT3_MAX_BLOCK_SIZE) {
  1577. ext3_msg(sb, KERN_ERR,
  1578. "error: couldn't mount because of unsupported "
  1579. "filesystem blocksize %d", blocksize);
  1580. goto failed_mount;
  1581. }
  1582. hblock = bdev_logical_block_size(sb->s_bdev);
  1583. if (sb->s_blocksize != blocksize) {
  1584. /*
  1585. * Make sure the blocksize for the filesystem is larger
  1586. * than the hardware sectorsize for the machine.
  1587. */
  1588. if (blocksize < hblock) {
  1589. ext3_msg(sb, KERN_ERR,
  1590. "error: fsblocksize %d too small for "
  1591. "hardware sectorsize %d", blocksize, hblock);
  1592. goto failed_mount;
  1593. }
  1594. brelse (bh);
  1595. if (!sb_set_blocksize(sb, blocksize)) {
  1596. ext3_msg(sb, KERN_ERR,
  1597. "error: bad blocksize %d", blocksize);
  1598. goto out_fail;
  1599. }
  1600. logic_sb_block = (sb_block * EXT3_MIN_BLOCK_SIZE) / blocksize;
  1601. offset = (sb_block * EXT3_MIN_BLOCK_SIZE) % blocksize;
  1602. bh = sb_bread(sb, logic_sb_block);
  1603. if (!bh) {
  1604. ext3_msg(sb, KERN_ERR,
  1605. "error: can't read superblock on 2nd try");
  1606. goto failed_mount;
  1607. }
  1608. es = (struct ext3_super_block *)(bh->b_data + offset);
  1609. sbi->s_es = es;
  1610. if (es->s_magic != cpu_to_le16(EXT3_SUPER_MAGIC)) {
  1611. ext3_msg(sb, KERN_ERR,
  1612. "error: magic mismatch");
  1613. goto failed_mount;
  1614. }
  1615. }
  1616. sb->s_maxbytes = ext3_max_size(sb->s_blocksize_bits);
  1617. if (le32_to_cpu(es->s_rev_level) == EXT3_GOOD_OLD_REV) {
  1618. sbi->s_inode_size = EXT3_GOOD_OLD_INODE_SIZE;
  1619. sbi->s_first_ino = EXT3_GOOD_OLD_FIRST_INO;
  1620. } else {
  1621. sbi->s_inode_size = le16_to_cpu(es->s_inode_size);
  1622. sbi->s_first_ino = le32_to_cpu(es->s_first_ino);
  1623. if ((sbi->s_inode_size < EXT3_GOOD_OLD_INODE_SIZE) ||
  1624. (!is_power_of_2(sbi->s_inode_size)) ||
  1625. (sbi->s_inode_size > blocksize)) {
  1626. ext3_msg(sb, KERN_ERR,
  1627. "error: unsupported inode size: %d",
  1628. sbi->s_inode_size);
  1629. goto failed_mount;
  1630. }
  1631. }
  1632. sbi->s_frag_size = EXT3_MIN_FRAG_SIZE <<
  1633. le32_to_cpu(es->s_log_frag_size);
  1634. if (blocksize != sbi->s_frag_size) {
  1635. ext3_msg(sb, KERN_ERR,
  1636. "error: fragsize %lu != blocksize %u (unsupported)",
  1637. sbi->s_frag_size, blocksize);
  1638. goto failed_mount;
  1639. }
  1640. sbi->s_frags_per_block = 1;
  1641. sbi->s_blocks_per_group = le32_to_cpu(es->s_blocks_per_group);
  1642. sbi->s_frags_per_group = le32_to_cpu(es->s_frags_per_group);
  1643. sbi->s_inodes_per_group = le32_to_cpu(es->s_inodes_per_group);
  1644. if (EXT3_INODE_SIZE(sb) == 0 || EXT3_INODES_PER_GROUP(sb) == 0)
  1645. goto cantfind_ext3;
  1646. sbi->s_inodes_per_block = blocksize / EXT3_INODE_SIZE(sb);
  1647. if (sbi->s_inodes_per_block == 0)
  1648. goto cantfind_ext3;
  1649. sbi->s_itb_per_group = sbi->s_inodes_per_group /
  1650. sbi->s_inodes_per_block;
  1651. sbi->s_desc_per_block = blocksize / sizeof(struct ext3_group_desc);
  1652. sbi->s_sbh = bh;
  1653. sbi->s_mount_state = le16_to_cpu(es->s_state);
  1654. sbi->s_addr_per_block_bits = ilog2(EXT3_ADDR_PER_BLOCK(sb));
  1655. sbi->s_desc_per_block_bits = ilog2(EXT3_DESC_PER_BLOCK(sb));
  1656. for (i=0; i < 4; i++)
  1657. sbi->s_hash_seed[i] = le32_to_cpu(es->s_hash_seed[i]);
  1658. sbi->s_def_hash_version = es->s_def_hash_version;
  1659. i = le32_to_cpu(es->s_flags);
  1660. if (i & EXT2_FLAGS_UNSIGNED_HASH)
  1661. sbi->s_hash_unsigned = 3;
  1662. else if ((i & EXT2_FLAGS_SIGNED_HASH) == 0) {
  1663. #ifdef __CHAR_UNSIGNED__
  1664. es->s_flags |= cpu_to_le32(EXT2_FLAGS_UNSIGNED_HASH);
  1665. sbi->s_hash_unsigned = 3;
  1666. #else
  1667. es->s_flags |= cpu_to_le32(EXT2_FLAGS_SIGNED_HASH);
  1668. #endif
  1669. }
  1670. if (sbi->s_blocks_per_group > blocksize * 8) {
  1671. ext3_msg(sb, KERN_ERR,
  1672. "#blocks per group too big: %lu",
  1673. sbi->s_blocks_per_group);
  1674. goto failed_mount;
  1675. }
  1676. if (sbi->s_frags_per_group > blocksize * 8) {
  1677. ext3_msg(sb, KERN_ERR,
  1678. "error: #fragments per group too big: %lu",
  1679. sbi->s_frags_per_group);
  1680. goto failed_mount;
  1681. }
  1682. if (sbi->s_inodes_per_group > blocksize * 8) {
  1683. ext3_msg(sb, KERN_ERR,
  1684. "error: #inodes per group too big: %lu",
  1685. sbi->s_inodes_per_group);
  1686. goto failed_mount;
  1687. }
  1688. err = generic_check_addressable(sb->s_blocksize_bits,
  1689. le32_to_cpu(es->s_blocks_count));
  1690. if (err) {
  1691. ext3_msg(sb, KERN_ERR,
  1692. "error: filesystem is too large to mount safely");
  1693. if (sizeof(sector_t) < 8)
  1694. ext3_msg(sb, KERN_ERR,
  1695. "error: CONFIG_LBDAF not enabled");
  1696. ret = err;
  1697. goto failed_mount;
  1698. }
  1699. if (EXT3_BLOCKS_PER_GROUP(sb) == 0)
  1700. goto cantfind_ext3;
  1701. sbi->s_groups_count = ((le32_to_cpu(es->s_blocks_count) -
  1702. le32_to_cpu(es->s_first_data_block) - 1)
  1703. / EXT3_BLOCKS_PER_GROUP(sb)) + 1;
  1704. db_count = DIV_ROUND_UP(sbi->s_groups_count, EXT3_DESC_PER_BLOCK(sb));
  1705. sbi->s_group_desc = kmalloc(db_count * sizeof (struct buffer_head *),
  1706. GFP_KERNEL);
  1707. if (sbi->s_group_desc == NULL) {
  1708. ext3_msg(sb, KERN_ERR,
  1709. "error: not enough memory");
  1710. ret = -ENOMEM;
  1711. goto failed_mount;
  1712. }
  1713. bgl_lock_init(sbi->s_blockgroup_lock);
  1714. for (i = 0; i < db_count; i++) {
  1715. block = descriptor_loc(sb, logic_sb_block, i);
  1716. sbi->s_group_desc[i] = sb_bread(sb, block);
  1717. if (!sbi->s_group_desc[i]) {
  1718. ext3_msg(sb, KERN_ERR,
  1719. "error: can't read group descriptor %d", i);
  1720. db_count = i;
  1721. goto failed_mount2;
  1722. }
  1723. }
  1724. if (!ext3_check_descriptors (sb)) {
  1725. ext3_msg(sb, KERN_ERR,
  1726. "error: group descriptors corrupted");
  1727. goto failed_mount2;
  1728. }
  1729. sbi->s_gdb_count = db_count;
  1730. get_random_bytes(&sbi->s_next_generation, sizeof(u32));
  1731. spin_lock_init(&sbi->s_next_gen_lock);
  1732. /* per fileystem reservation list head & lock */
  1733. spin_lock_init(&sbi->s_rsv_window_lock);
  1734. sbi->s_rsv_window_root = RB_ROOT;
  1735. /* Add a single, static dummy reservation to the start of the
  1736. * reservation window list --- it gives us a placeholder for
  1737. * append-at-start-of-list which makes the allocation logic
  1738. * _much_ simpler. */
  1739. sbi->s_rsv_window_head.rsv_start = EXT3_RESERVE_WINDOW_NOT_ALLOCATED;
  1740. sbi->s_rsv_window_head.rsv_end = EXT3_RESERVE_WINDOW_NOT_ALLOCATED;
  1741. sbi->s_rsv_window_head.rsv_alloc_hit = 0;
  1742. sbi->s_rsv_window_head.rsv_goal_size = 0;
  1743. ext3_rsv_window_add(sb, &sbi->s_rsv_window_head);
  1744. /*
  1745. * set up enough so that it can read an inode
  1746. */
  1747. sb->s_op = &ext3_sops;
  1748. sb->s_export_op = &ext3_export_ops;
  1749. sb->s_xattr = ext3_xattr_handlers;
  1750. #ifdef CONFIG_QUOTA
  1751. sb->s_qcop = &ext3_qctl_operations;
  1752. sb->dq_op = &ext3_quota_operations;
  1753. #endif
  1754. memcpy(sb->s_uuid, es->s_uuid, sizeof(es->s_uuid));
  1755. INIT_LIST_HEAD(&sbi->s_orphan); /* unlinked but open files */
  1756. mutex_init(&sbi->s_orphan_lock);
  1757. mutex_init(&sbi->s_resize_lock);
  1758. sb->s_root = NULL;
  1759. needs_recovery = (es->s_last_orphan != 0 ||
  1760. EXT3_HAS_INCOMPAT_FEATURE(sb,
  1761. EXT3_FEATURE_INCOMPAT_RECOVER));
  1762. /*
  1763. * The first inode we look at is the journal inode. Don't try
  1764. * root first: it may be modified in the journal!
  1765. */
  1766. if (!test_opt(sb, NOLOAD) &&
  1767. EXT3_HAS_COMPAT_FEATURE(sb, EXT3_FEATURE_COMPAT_HAS_JOURNAL)) {
  1768. if (ext3_load_journal(sb, es, journal_devnum))
  1769. goto failed_mount2;
  1770. } else if (journal_inum) {
  1771. if (ext3_create_journal(sb, es, journal_inum))
  1772. goto failed_mount2;
  1773. } else {
  1774. if (!silent)
  1775. ext3_msg(sb, KERN_ERR,
  1776. "error: no journal found. "
  1777. "mounting ext3 over ext2?");
  1778. goto failed_mount2;
  1779. }
  1780. err = percpu_counter_init(&sbi->s_freeblocks_counter,
  1781. ext3_count_free_blocks(sb));
  1782. if (!err) {
  1783. err = percpu_counter_init(&sbi->s_freeinodes_counter,
  1784. ext3_count_free_inodes(sb));
  1785. }
  1786. if (!err) {
  1787. err = percpu_counter_init(&sbi->s_dirs_counter,
  1788. ext3_count_dirs(sb));
  1789. }
  1790. if (err) {
  1791. ext3_msg(sb, KERN_ERR, "error: insufficient memory");
  1792. ret = err;
  1793. goto failed_mount3;
  1794. }
  1795. /* We have now updated the journal if required, so we can
  1796. * validate the data journaling mode. */
  1797. switch (test_opt(sb, DATA_FLAGS)) {
  1798. case 0:
  1799. /* No mode set, assume a default based on the journal
  1800. capabilities: ORDERED_DATA if the journal can
  1801. cope, else JOURNAL_DATA */
  1802. if (journal_check_available_features
  1803. (sbi->s_journal, 0, 0, JFS_FEATURE_INCOMPAT_REVOKE))
  1804. set_opt(sbi->s_mount_opt, DEFAULT_DATA_MODE);
  1805. else
  1806. set_opt(sbi->s_mount_opt, JOURNAL_DATA);
  1807. break;
  1808. case EXT3_MOUNT_ORDERED_DATA:
  1809. case EXT3_MOUNT_WRITEBACK_DATA:
  1810. if (!journal_check_available_features
  1811. (sbi->s_journal, 0, 0, JFS_FEATURE_INCOMPAT_REVOKE)) {
  1812. ext3_msg(sb, KERN_ERR,
  1813. "error: journal does not support "
  1814. "requested data journaling mode");
  1815. goto failed_mount3;
  1816. }
  1817. default:
  1818. break;
  1819. }
  1820. /*
  1821. * The journal_load will have done any necessary log recovery,
  1822. * so we can safely mount the rest of the filesystem now.
  1823. */
  1824. root = ext3_iget(sb, EXT3_ROOT_INO);
  1825. if (IS_ERR(root)) {
  1826. ext3_msg(sb, KERN_ERR, "error: get root inode failed");
  1827. ret = PTR_ERR(root);
  1828. goto failed_mount3;
  1829. }
  1830. if (!S_ISDIR(root->i_mode) || !root->i_blocks || !root->i_size) {
  1831. iput(root);
  1832. ext3_msg(sb, KERN_ERR, "error: corrupt root inode, run e2fsck");
  1833. goto failed_mount3;
  1834. }
  1835. sb->s_root = d_make_root(root);
  1836. if (!sb->s_root) {
  1837. ext3_msg(sb, KERN_ERR, "error: get root dentry failed");
  1838. ret = -ENOMEM;
  1839. goto failed_mount3;
  1840. }
  1841. ext3_setup_super (sb, es, sb->s_flags & MS_RDONLY);
  1842. EXT3_SB(sb)->s_mount_state |= EXT3_ORPHAN_FS;
  1843. ext3_orphan_cleanup(sb, es);
  1844. EXT3_SB(sb)->s_mount_state &= ~EXT3_ORPHAN_FS;
  1845. if (needs_recovery) {
  1846. ext3_mark_recovery_complete(sb, es);
  1847. ext3_msg(sb, KERN_INFO, "recovery complete");
  1848. }
  1849. ext3_msg(sb, KERN_INFO, "mounted filesystem with %s data mode",
  1850. test_opt(sb,DATA_FLAGS) == EXT3_MOUNT_JOURNAL_DATA ? "journal":
  1851. test_opt(sb,DATA_FLAGS) == EXT3_MOUNT_ORDERED_DATA ? "ordered":
  1852. "writeback");
  1853. sb->s_flags |= MS_SNAP_STABLE;
  1854. return 0;
  1855. cantfind_ext3:
  1856. if (!silent)
  1857. ext3_msg(sb, KERN_INFO,
  1858. "error: can't find ext3 filesystem on dev %s.",
  1859. sb->s_id);
  1860. goto failed_mount;
  1861. failed_mount3:
  1862. percpu_counter_destroy(&sbi->s_freeblocks_counter);
  1863. percpu_counter_destroy(&sbi->s_freeinodes_counter);
  1864. percpu_counter_destroy(&sbi->s_dirs_counter);
  1865. journal_destroy(sbi->s_journal);
  1866. failed_mount2:
  1867. for (i = 0; i < db_count; i++)
  1868. brelse(sbi->s_group_desc[i]);
  1869. kfree(sbi->s_group_desc);
  1870. failed_mount:
  1871. #ifdef CONFIG_QUOTA
  1872. for (i = 0; i < MAXQUOTAS; i++)
  1873. kfree(sbi->s_qf_names[i]);
  1874. #endif
  1875. ext3_blkdev_remove(sbi);
  1876. brelse(bh);
  1877. out_fail:
  1878. sb->s_fs_info = NULL;
  1879. kfree(sbi->s_blockgroup_lock);
  1880. kfree(sbi);
  1881. return ret;
  1882. }
  1883. /*
  1884. * Setup any per-fs journal parameters now. We'll do this both on
  1885. * initial mount, once the journal has been initialised but before we've
  1886. * done any recovery; and again on any subsequent remount.
  1887. */
  1888. static void ext3_init_journal_params(struct super_block *sb, journal_t *journal)
  1889. {
  1890. struct ext3_sb_info *sbi = EXT3_SB(sb);
  1891. if (sbi->s_commit_interval)
  1892. journal->j_commit_interval = sbi->s_commit_interval;
  1893. /* We could also set up an ext3-specific default for the commit
  1894. * interval here, but for now we'll just fall back to the jbd
  1895. * default. */
  1896. spin_lock(&journal->j_state_lock);
  1897. if (test_opt(sb, BARRIER))
  1898. journal->j_flags |= JFS_BARRIER;
  1899. else
  1900. journal->j_flags &= ~JFS_BARRIER;
  1901. if (test_opt(sb, DATA_ERR_ABORT))
  1902. journal->j_flags |= JFS_ABORT_ON_SYNCDATA_ERR;
  1903. else
  1904. journal->j_flags &= ~JFS_ABORT_ON_SYNCDATA_ERR;
  1905. spin_unlock(&journal->j_state_lock);
  1906. }
  1907. static journal_t *ext3_get_journal(struct super_block *sb,
  1908. unsigned int journal_inum)
  1909. {
  1910. struct inode *journal_inode;
  1911. journal_t *journal;
  1912. /* First, test for the existence of a valid inode on disk. Bad
  1913. * things happen if we iget() an unused inode, as the subsequent
  1914. * iput() will try to delete it. */
  1915. journal_inode = ext3_iget(sb, journal_inum);
  1916. if (IS_ERR(journal_inode)) {
  1917. ext3_msg(sb, KERN_ERR, "error: no journal found");
  1918. return NULL;
  1919. }
  1920. if (!journal_inode->i_nlink) {
  1921. make_bad_inode(journal_inode);
  1922. iput(journal_inode);
  1923. ext3_msg(sb, KERN_ERR, "error: journal inode is deleted");
  1924. return NULL;
  1925. }
  1926. jbd_debug(2, "Journal inode found at %p: %Ld bytes\n",
  1927. journal_inode, journal_inode->i_size);
  1928. if (!S_ISREG(journal_inode->i_mode)) {
  1929. ext3_msg(sb, KERN_ERR, "error: invalid journal inode");
  1930. iput(journal_inode);
  1931. return NULL;
  1932. }
  1933. journal = journal_init_inode(journal_inode);
  1934. if (!journal) {
  1935. ext3_msg(sb, KERN_ERR, "error: could not load journal inode");
  1936. iput(journal_inode);
  1937. return NULL;
  1938. }
  1939. journal->j_private = sb;
  1940. ext3_init_journal_params(sb, journal);
  1941. return journal;
  1942. }
  1943. static journal_t *ext3_get_dev_journal(struct super_block *sb,
  1944. dev_t j_dev)
  1945. {
  1946. struct buffer_head * bh;
  1947. journal_t *journal;
  1948. ext3_fsblk_t start;
  1949. ext3_fsblk_t len;
  1950. int hblock, blocksize;
  1951. ext3_fsblk_t sb_block;
  1952. unsigned long offset;
  1953. struct ext3_super_block * es;
  1954. struct block_device *bdev;
  1955. bdev = ext3_blkdev_get(j_dev, sb);
  1956. if (bdev == NULL)
  1957. return NULL;
  1958. blocksize = sb->s_blocksize;
  1959. hblock = bdev_logical_block_size(bdev);
  1960. if (blocksize < hblock) {
  1961. ext3_msg(sb, KERN_ERR,
  1962. "error: blocksize too small for journal device");
  1963. goto out_bdev;
  1964. }
  1965. sb_block = EXT3_MIN_BLOCK_SIZE / blocksize;
  1966. offset = EXT3_MIN_BLOCK_SIZE % blocksize;
  1967. set_blocksize(bdev, blocksize);
  1968. if (!(bh = __bread(bdev, sb_block, blocksize))) {
  1969. ext3_msg(sb, KERN_ERR, "error: couldn't read superblock of "
  1970. "external journal");
  1971. goto out_bdev;
  1972. }
  1973. es = (struct ext3_super_block *) (bh->b_data + offset);
  1974. if ((le16_to_cpu(es->s_magic) != EXT3_SUPER_MAGIC) ||
  1975. !(le32_to_cpu(es->s_feature_incompat) &
  1976. EXT3_FEATURE_INCOMPAT_JOURNAL_DEV)) {
  1977. ext3_msg(sb, KERN_ERR, "error: external journal has "
  1978. "bad superblock");
  1979. brelse(bh);
  1980. goto out_bdev;
  1981. }
  1982. if (memcmp(EXT3_SB(sb)->s_es->s_journal_uuid, es->s_uuid, 16)) {
  1983. ext3_msg(sb, KERN_ERR, "error: journal UUID does not match");
  1984. brelse(bh);
  1985. goto out_bdev;
  1986. }
  1987. len = le32_to_cpu(es->s_blocks_count);
  1988. start = sb_block + 1;
  1989. brelse(bh); /* we're done with the superblock */
  1990. journal = journal_init_dev(bdev, sb->s_bdev,
  1991. start, len, blocksize);
  1992. if (!journal) {
  1993. ext3_msg(sb, KERN_ERR,
  1994. "error: failed to create device journal");
  1995. goto out_bdev;
  1996. }
  1997. journal->j_private = sb;
  1998. if (!bh_uptodate_or_lock(journal->j_sb_buffer)) {
  1999. if (bh_submit_read(journal->j_sb_buffer)) {
  2000. ext3_msg(sb, KERN_ERR, "I/O error on journal device");
  2001. goto out_journal;
  2002. }
  2003. }
  2004. if (be32_to_cpu(journal->j_superblock->s_nr_users) != 1) {
  2005. ext3_msg(sb, KERN_ERR,
  2006. "error: external journal has more than one "
  2007. "user (unsupported) - %d",
  2008. be32_to_cpu(journal->j_superblock->s_nr_users));
  2009. goto out_journal;
  2010. }
  2011. EXT3_SB(sb)->journal_bdev = bdev;
  2012. ext3_init_journal_params(sb, journal);
  2013. return journal;
  2014. out_journal:
  2015. journal_destroy(journal);
  2016. out_bdev:
  2017. ext3_blkdev_put(bdev);
  2018. return NULL;
  2019. }
  2020. static int ext3_load_journal(struct super_block *sb,
  2021. struct ext3_super_block *es,
  2022. unsigned long journal_devnum)
  2023. {
  2024. journal_t *journal;
  2025. unsigned int journal_inum = le32_to_cpu(es->s_journal_inum);
  2026. dev_t journal_dev;
  2027. int err = 0;
  2028. int really_read_only;
  2029. if (journal_devnum &&
  2030. journal_devnum != le32_to_cpu(es->s_journal_dev)) {
  2031. ext3_msg(sb, KERN_INFO, "external journal device major/minor "
  2032. "numbers have changed");
  2033. journal_dev = new_decode_dev(journal_devnum);
  2034. } else
  2035. journal_dev = new_decode_dev(le32_to_cpu(es->s_journal_dev));
  2036. really_read_only = bdev_read_only(sb->s_bdev);
  2037. /*
  2038. * Are we loading a blank journal or performing recovery after a
  2039. * crash? For recovery, we need to check in advance whether we
  2040. * can get read-write access to the device.
  2041. */
  2042. if (EXT3_HAS_INCOMPAT_FEATURE(sb, EXT3_FEATURE_INCOMPAT_RECOVER)) {
  2043. if (sb->s_flags & MS_RDONLY) {
  2044. ext3_msg(sb, KERN_INFO,
  2045. "recovery required on readonly filesystem");
  2046. if (really_read_only) {
  2047. ext3_msg(sb, KERN_ERR, "error: write access "
  2048. "unavailable, cannot proceed");
  2049. return -EROFS;
  2050. }
  2051. ext3_msg(sb, KERN_INFO,
  2052. "write access will be enabled during recovery");
  2053. }
  2054. }
  2055. if (journal_inum && journal_dev) {
  2056. ext3_msg(sb, KERN_ERR, "error: filesystem has both journal "
  2057. "and inode journals");
  2058. return -EINVAL;
  2059. }
  2060. if (journal_inum) {
  2061. if (!(journal = ext3_get_journal(sb, journal_inum)))
  2062. return -EINVAL;
  2063. } else {
  2064. if (!(journal = ext3_get_dev_journal(sb, journal_dev)))
  2065. return -EINVAL;
  2066. }
  2067. if (!(journal->j_flags & JFS_BARRIER))
  2068. printk(KERN_INFO "EXT3-fs: barriers not enabled\n");
  2069. if (!really_read_only && test_opt(sb, UPDATE_JOURNAL)) {
  2070. err = journal_update_format(journal);
  2071. if (err) {
  2072. ext3_msg(sb, KERN_ERR, "error updating journal");
  2073. journal_destroy(journal);
  2074. return err;
  2075. }
  2076. }
  2077. if (!EXT3_HAS_INCOMPAT_FEATURE(sb, EXT3_FEATURE_INCOMPAT_RECOVER))
  2078. err = journal_wipe(journal, !really_read_only);
  2079. if (!err)
  2080. err = journal_load(journal);
  2081. if (err) {
  2082. ext3_msg(sb, KERN_ERR, "error loading journal");
  2083. journal_destroy(journal);
  2084. return err;
  2085. }
  2086. EXT3_SB(sb)->s_journal = journal;
  2087. ext3_clear_journal_err(sb, es);
  2088. if (!really_read_only && journal_devnum &&
  2089. journal_devnum != le32_to_cpu(es->s_journal_dev)) {
  2090. es->s_journal_dev = cpu_to_le32(journal_devnum);
  2091. /* Make sure we flush the recovery flag to disk. */
  2092. ext3_commit_super(sb, es, 1);
  2093. }
  2094. return 0;
  2095. }
  2096. static int ext3_create_journal(struct super_block *sb,
  2097. struct ext3_super_block *es,
  2098. unsigned int journal_inum)
  2099. {
  2100. journal_t *journal;
  2101. int err;
  2102. if (sb->s_flags & MS_RDONLY) {
  2103. ext3_msg(sb, KERN_ERR,
  2104. "error: readonly filesystem when trying to "
  2105. "create journal");
  2106. return -EROFS;
  2107. }
  2108. journal = ext3_get_journal(sb, journal_inum);
  2109. if (!journal)
  2110. return -EINVAL;
  2111. ext3_msg(sb, KERN_INFO, "creating new journal on inode %u",
  2112. journal_inum);
  2113. err = journal_create(journal);
  2114. if (err) {
  2115. ext3_msg(sb, KERN_ERR, "error creating journal");
  2116. journal_destroy(journal);
  2117. return -EIO;
  2118. }
  2119. EXT3_SB(sb)->s_journal = journal;
  2120. ext3_update_dynamic_rev(sb);
  2121. EXT3_SET_INCOMPAT_FEATURE(sb, EXT3_FEATURE_INCOMPAT_RECOVER);
  2122. EXT3_SET_COMPAT_FEATURE(sb, EXT3_FEATURE_COMPAT_HAS_JOURNAL);
  2123. es->s_journal_inum = cpu_to_le32(journal_inum);
  2124. /* Make sure we flush the recovery flag to disk. */
  2125. ext3_commit_super(sb, es, 1);
  2126. return 0;
  2127. }
  2128. static int ext3_commit_super(struct super_block *sb,
  2129. struct ext3_super_block *es,
  2130. int sync)
  2131. {
  2132. struct buffer_head *sbh = EXT3_SB(sb)->s_sbh;
  2133. int error = 0;
  2134. if (!sbh)
  2135. return error;
  2136. if (buffer_write_io_error(sbh)) {
  2137. /*
  2138. * Oh, dear. A previous attempt to write the
  2139. * superblock failed. This could happen because the
  2140. * USB device was yanked out. Or it could happen to
  2141. * be a transient write error and maybe the block will
  2142. * be remapped. Nothing we can do but to retry the
  2143. * write and hope for the best.
  2144. */
  2145. ext3_msg(sb, KERN_ERR, "previous I/O error to "
  2146. "superblock detected");
  2147. clear_buffer_write_io_error(sbh);
  2148. set_buffer_uptodate(sbh);
  2149. }
  2150. /*
  2151. * If the file system is mounted read-only, don't update the
  2152. * superblock write time. This avoids updating the superblock
  2153. * write time when we are mounting the root file system
  2154. * read/only but we need to replay the journal; at that point,
  2155. * for people who are east of GMT and who make their clock
  2156. * tick in localtime for Windows bug-for-bug compatibility,
  2157. * the clock is set in the future, and this will cause e2fsck
  2158. * to complain and force a full file system check.
  2159. */
  2160. if (!(sb->s_flags & MS_RDONLY))
  2161. es->s_wtime = cpu_to_le32(get_seconds());
  2162. es->s_free_blocks_count = cpu_to_le32(ext3_count_free_blocks(sb));
  2163. es->s_free_inodes_count = cpu_to_le32(ext3_count_free_inodes(sb));
  2164. BUFFER_TRACE(sbh, "marking dirty");
  2165. mark_buffer_dirty(sbh);
  2166. if (sync) {
  2167. error = sync_dirty_buffer(sbh);
  2168. if (buffer_write_io_error(sbh)) {
  2169. ext3_msg(sb, KERN_ERR, "I/O error while writing "
  2170. "superblock");
  2171. clear_buffer_write_io_error(sbh);
  2172. set_buffer_uptodate(sbh);
  2173. }
  2174. }
  2175. return error;
  2176. }
  2177. /*
  2178. * Have we just finished recovery? If so, and if we are mounting (or
  2179. * remounting) the filesystem readonly, then we will end up with a
  2180. * consistent fs on disk. Record that fact.
  2181. */
  2182. static void ext3_mark_recovery_complete(struct super_block * sb,
  2183. struct ext3_super_block * es)
  2184. {
  2185. journal_t *journal = EXT3_SB(sb)->s_journal;
  2186. journal_lock_updates(journal);
  2187. if (journal_flush(journal) < 0)
  2188. goto out;
  2189. if (EXT3_HAS_INCOMPAT_FEATURE(sb, EXT3_FEATURE_INCOMPAT_RECOVER) &&
  2190. sb->s_flags & MS_RDONLY) {
  2191. EXT3_CLEAR_INCOMPAT_FEATURE(sb, EXT3_FEATURE_INCOMPAT_RECOVER);
  2192. ext3_commit_super(sb, es, 1);
  2193. }
  2194. out:
  2195. journal_unlock_updates(journal);
  2196. }
  2197. /*
  2198. * If we are mounting (or read-write remounting) a filesystem whose journal
  2199. * has recorded an error from a previous lifetime, move that error to the
  2200. * main filesystem now.
  2201. */
  2202. static void ext3_clear_journal_err(struct super_block *sb,
  2203. struct ext3_super_block *es)
  2204. {
  2205. journal_t *journal;
  2206. int j_errno;
  2207. const char *errstr;
  2208. journal = EXT3_SB(sb)->s_journal;
  2209. /*
  2210. * Now check for any error status which may have been recorded in the
  2211. * journal by a prior ext3_error() or ext3_abort()
  2212. */
  2213. j_errno = journal_errno(journal);
  2214. if (j_errno) {
  2215. char nbuf[16];
  2216. errstr = ext3_decode_error(sb, j_errno, nbuf);
  2217. ext3_warning(sb, __func__, "Filesystem error recorded "
  2218. "from previous mount: %s", errstr);
  2219. ext3_warning(sb, __func__, "Marking fs in need of "
  2220. "filesystem check.");
  2221. EXT3_SB(sb)->s_mount_state |= EXT3_ERROR_FS;
  2222. es->s_state |= cpu_to_le16(EXT3_ERROR_FS);
  2223. ext3_commit_super (sb, es, 1);
  2224. journal_clear_err(journal);
  2225. }
  2226. }
  2227. /*
  2228. * Force the running and committing transactions to commit,
  2229. * and wait on the commit.
  2230. */
  2231. int ext3_force_commit(struct super_block *sb)
  2232. {
  2233. journal_t *journal;
  2234. int ret;
  2235. if (sb->s_flags & MS_RDONLY)
  2236. return 0;
  2237. journal = EXT3_SB(sb)->s_journal;
  2238. ret = ext3_journal_force_commit(journal);
  2239. return ret;
  2240. }
  2241. static int ext3_sync_fs(struct super_block *sb, int wait)
  2242. {
  2243. tid_t target;
  2244. trace_ext3_sync_fs(sb, wait);
  2245. if (journal_start_commit(EXT3_SB(sb)->s_journal, &target)) {
  2246. if (wait)
  2247. log_wait_commit(EXT3_SB(sb)->s_journal, target);
  2248. }
  2249. return 0;
  2250. }
  2251. /*
  2252. * LVM calls this function before a (read-only) snapshot is created. This
  2253. * gives us a chance to flush the journal completely and mark the fs clean.
  2254. */
  2255. static int ext3_freeze(struct super_block *sb)
  2256. {
  2257. int error = 0;
  2258. journal_t *journal;
  2259. if (!(sb->s_flags & MS_RDONLY)) {
  2260. journal = EXT3_SB(sb)->s_journal;
  2261. /* Now we set up the journal barrier. */
  2262. journal_lock_updates(journal);
  2263. /*
  2264. * We don't want to clear needs_recovery flag when we failed
  2265. * to flush the journal.
  2266. */
  2267. error = journal_flush(journal);
  2268. if (error < 0)
  2269. goto out;
  2270. /* Journal blocked and flushed, clear needs_recovery flag. */
  2271. EXT3_CLEAR_INCOMPAT_FEATURE(sb, EXT3_FEATURE_INCOMPAT_RECOVER);
  2272. error = ext3_commit_super(sb, EXT3_SB(sb)->s_es, 1);
  2273. if (error)
  2274. goto out;
  2275. }
  2276. return 0;
  2277. out:
  2278. journal_unlock_updates(journal);
  2279. return error;
  2280. }
  2281. /*
  2282. * Called by LVM after the snapshot is done. We need to reset the RECOVER
  2283. * flag here, even though the filesystem is not technically dirty yet.
  2284. */
  2285. static int ext3_unfreeze(struct super_block *sb)
  2286. {
  2287. if (!(sb->s_flags & MS_RDONLY)) {
  2288. lock_super(sb);
  2289. /* Reser the needs_recovery flag before the fs is unlocked. */
  2290. EXT3_SET_INCOMPAT_FEATURE(sb, EXT3_FEATURE_INCOMPAT_RECOVER);
  2291. ext3_commit_super(sb, EXT3_SB(sb)->s_es, 1);
  2292. unlock_super(sb);
  2293. journal_unlock_updates(EXT3_SB(sb)->s_journal);
  2294. }
  2295. return 0;
  2296. }
  2297. static int ext3_remount (struct super_block * sb, int * flags, char * data)
  2298. {
  2299. struct ext3_super_block * es;
  2300. struct ext3_sb_info *sbi = EXT3_SB(sb);
  2301. ext3_fsblk_t n_blocks_count = 0;
  2302. unsigned long old_sb_flags;
  2303. struct ext3_mount_options old_opts;
  2304. int enable_quota = 0;
  2305. int err;
  2306. #ifdef CONFIG_QUOTA
  2307. int i;
  2308. #endif
  2309. sync_filesystem(sb);
  2310. /* Store the original options */
  2311. lock_super(sb);
  2312. old_sb_flags = sb->s_flags;
  2313. old_opts.s_mount_opt = sbi->s_mount_opt;
  2314. old_opts.s_resuid = sbi->s_resuid;
  2315. old_opts.s_resgid = sbi->s_resgid;
  2316. old_opts.s_commit_interval = sbi->s_commit_interval;
  2317. #ifdef CONFIG_QUOTA
  2318. old_opts.s_jquota_fmt = sbi->s_jquota_fmt;
  2319. for (i = 0; i < MAXQUOTAS; i++)
  2320. old_opts.s_qf_names[i] = sbi->s_qf_names[i];
  2321. #endif
  2322. /*
  2323. * Allow the "check" option to be passed as a remount option.
  2324. */
  2325. if (!parse_options(data, sb, NULL, NULL, &n_blocks_count, 1)) {
  2326. err = -EINVAL;
  2327. goto restore_opts;
  2328. }
  2329. if (test_opt(sb, ABORT))
  2330. ext3_abort(sb, __func__, "Abort forced by user");
  2331. sb->s_flags = (sb->s_flags & ~MS_POSIXACL) |
  2332. (test_opt(sb, POSIX_ACL) ? MS_POSIXACL : 0);
  2333. es = sbi->s_es;
  2334. ext3_init_journal_params(sb, sbi->s_journal);
  2335. if ((*flags & MS_RDONLY) != (sb->s_flags & MS_RDONLY) ||
  2336. n_blocks_count > le32_to_cpu(es->s_blocks_count)) {
  2337. if (test_opt(sb, ABORT)) {
  2338. err = -EROFS;
  2339. goto restore_opts;
  2340. }
  2341. if (*flags & MS_RDONLY) {
  2342. err = dquot_suspend(sb, -1);
  2343. if (err < 0)
  2344. goto restore_opts;
  2345. /*
  2346. * First of all, the unconditional stuff we have to do
  2347. * to disable replay of the journal when we next remount
  2348. */
  2349. sb->s_flags |= MS_RDONLY;
  2350. /*
  2351. * OK, test if we are remounting a valid rw partition
  2352. * readonly, and if so set the rdonly flag and then
  2353. * mark the partition as valid again.
  2354. */
  2355. if (!(es->s_state & cpu_to_le16(EXT3_VALID_FS)) &&
  2356. (sbi->s_mount_state & EXT3_VALID_FS))
  2357. es->s_state = cpu_to_le16(sbi->s_mount_state);
  2358. ext3_mark_recovery_complete(sb, es);
  2359. } else {
  2360. __le32 ret;
  2361. if ((ret = EXT3_HAS_RO_COMPAT_FEATURE(sb,
  2362. ~EXT3_FEATURE_RO_COMPAT_SUPP))) {
  2363. ext3_msg(sb, KERN_WARNING,
  2364. "warning: couldn't remount RDWR "
  2365. "because of unsupported optional "
  2366. "features (%x)", le32_to_cpu(ret));
  2367. err = -EROFS;
  2368. goto restore_opts;
  2369. }
  2370. /*
  2371. * If we have an unprocessed orphan list hanging
  2372. * around from a previously readonly bdev mount,
  2373. * require a full umount & mount for now.
  2374. */
  2375. if (es->s_last_orphan) {
  2376. ext3_msg(sb, KERN_WARNING, "warning: couldn't "
  2377. "remount RDWR because of unprocessed "
  2378. "orphan inode list. Please "
  2379. "umount & mount instead.");
  2380. err = -EINVAL;
  2381. goto restore_opts;
  2382. }
  2383. /*
  2384. * Mounting a RDONLY partition read-write, so reread
  2385. * and store the current valid flag. (It may have
  2386. * been changed by e2fsck since we originally mounted
  2387. * the partition.)
  2388. */
  2389. ext3_clear_journal_err(sb, es);
  2390. sbi->s_mount_state = le16_to_cpu(es->s_state);
  2391. if ((err = ext3_group_extend(sb, es, n_blocks_count)))
  2392. goto restore_opts;
  2393. if (!ext3_setup_super (sb, es, 0))
  2394. sb->s_flags &= ~MS_RDONLY;
  2395. enable_quota = 1;
  2396. }
  2397. }
  2398. #ifdef CONFIG_QUOTA
  2399. /* Release old quota file names */
  2400. for (i = 0; i < MAXQUOTAS; i++)
  2401. if (old_opts.s_qf_names[i] &&
  2402. old_opts.s_qf_names[i] != sbi->s_qf_names[i])
  2403. kfree(old_opts.s_qf_names[i]);
  2404. #endif
  2405. unlock_super(sb);
  2406. if (enable_quota)
  2407. dquot_resume(sb, -1);
  2408. return 0;
  2409. restore_opts:
  2410. sb->s_flags = old_sb_flags;
  2411. sbi->s_mount_opt = old_opts.s_mount_opt;
  2412. sbi->s_resuid = old_opts.s_resuid;
  2413. sbi->s_resgid = old_opts.s_resgid;
  2414. sbi->s_commit_interval = old_opts.s_commit_interval;
  2415. #ifdef CONFIG_QUOTA
  2416. sbi->s_jquota_fmt = old_opts.s_jquota_fmt;
  2417. for (i = 0; i < MAXQUOTAS; i++) {
  2418. if (sbi->s_qf_names[i] &&
  2419. old_opts.s_qf_names[i] != sbi->s_qf_names[i])
  2420. kfree(sbi->s_qf_names[i]);
  2421. sbi->s_qf_names[i] = old_opts.s_qf_names[i];
  2422. }
  2423. #endif
  2424. unlock_super(sb);
  2425. return err;
  2426. }
  2427. static int ext3_statfs (struct dentry * dentry, struct kstatfs * buf)
  2428. {
  2429. struct super_block *sb = dentry->d_sb;
  2430. struct ext3_sb_info *sbi = EXT3_SB(sb);
  2431. struct ext3_super_block *es = sbi->s_es;
  2432. u64 fsid;
  2433. if (test_opt(sb, MINIX_DF)) {
  2434. sbi->s_overhead_last = 0;
  2435. } else if (sbi->s_blocks_last != le32_to_cpu(es->s_blocks_count)) {
  2436. unsigned long ngroups = sbi->s_groups_count, i;
  2437. ext3_fsblk_t overhead = 0;
  2438. smp_rmb();
  2439. /*
  2440. * Compute the overhead (FS structures). This is constant
  2441. * for a given filesystem unless the number of block groups
  2442. * changes so we cache the previous value until it does.
  2443. */
  2444. /*
  2445. * All of the blocks before first_data_block are
  2446. * overhead
  2447. */
  2448. overhead = le32_to_cpu(es->s_first_data_block);
  2449. /*
  2450. * Add the overhead attributed to the superblock and
  2451. * block group descriptors. If the sparse superblocks
  2452. * feature is turned on, then not all groups have this.
  2453. */
  2454. for (i = 0; i < ngroups; i++) {
  2455. overhead += ext3_bg_has_super(sb, i) +
  2456. ext3_bg_num_gdb(sb, i);
  2457. cond_resched();
  2458. }
  2459. /*
  2460. * Every block group has an inode bitmap, a block
  2461. * bitmap, and an inode table.
  2462. */
  2463. overhead += ngroups * (2 + sbi->s_itb_per_group);
  2464. sbi->s_overhead_last = overhead;
  2465. smp_wmb();
  2466. sbi->s_blocks_last = le32_to_cpu(es->s_blocks_count);
  2467. }
  2468. buf->f_type = EXT3_SUPER_MAGIC;
  2469. buf->f_bsize = sb->s_blocksize;
  2470. buf->f_blocks = le32_to_cpu(es->s_blocks_count) - sbi->s_overhead_last;
  2471. buf->f_bfree = percpu_counter_sum_positive(&sbi->s_freeblocks_counter);
  2472. buf->f_bavail = buf->f_bfree - le32_to_cpu(es->s_r_blocks_count);
  2473. if (buf->f_bfree < le32_to_cpu(es->s_r_blocks_count))
  2474. buf->f_bavail = 0;
  2475. buf->f_files = le32_to_cpu(es->s_inodes_count);
  2476. buf->f_ffree = percpu_counter_sum_positive(&sbi->s_freeinodes_counter);
  2477. buf->f_namelen = EXT3_NAME_LEN;
  2478. fsid = le64_to_cpup((void *)es->s_uuid) ^
  2479. le64_to_cpup((void *)es->s_uuid + sizeof(u64));
  2480. buf->f_fsid.val[0] = fsid & 0xFFFFFFFFUL;
  2481. buf->f_fsid.val[1] = (fsid >> 32) & 0xFFFFFFFFUL;
  2482. return 0;
  2483. }
  2484. /* Helper function for writing quotas on sync - we need to start transaction before quota file
  2485. * is locked for write. Otherwise the are possible deadlocks:
  2486. * Process 1 Process 2
  2487. * ext3_create() quota_sync()
  2488. * journal_start() write_dquot()
  2489. * dquot_initialize() down(dqio_mutex)
  2490. * down(dqio_mutex) journal_start()
  2491. *
  2492. */
  2493. #ifdef CONFIG_QUOTA
  2494. static inline struct inode *dquot_to_inode(struct dquot *dquot)
  2495. {
  2496. return sb_dqopt(dquot->dq_sb)->files[dquot->dq_type];
  2497. }
  2498. static int ext3_write_dquot(struct dquot *dquot)
  2499. {
  2500. int ret, err;
  2501. handle_t *handle;
  2502. struct inode *inode;
  2503. inode = dquot_to_inode(dquot);
  2504. handle = ext3_journal_start(inode,
  2505. EXT3_QUOTA_TRANS_BLOCKS(dquot->dq_sb));
  2506. if (IS_ERR(handle))
  2507. return PTR_ERR(handle);
  2508. ret = dquot_commit(dquot);
  2509. err = ext3_journal_stop(handle);
  2510. if (!ret)
  2511. ret = err;
  2512. return ret;
  2513. }
  2514. static int ext3_acquire_dquot(struct dquot *dquot)
  2515. {
  2516. int ret, err;
  2517. handle_t *handle;
  2518. handle = ext3_journal_start(dquot_to_inode(dquot),
  2519. EXT3_QUOTA_INIT_BLOCKS(dquot->dq_sb));
  2520. if (IS_ERR(handle))
  2521. return PTR_ERR(handle);
  2522. ret = dquot_acquire(dquot);
  2523. err = ext3_journal_stop(handle);
  2524. if (!ret)
  2525. ret = err;
  2526. return ret;
  2527. }
  2528. static int ext3_release_dquot(struct dquot *dquot)
  2529. {
  2530. int ret, err;
  2531. handle_t *handle;
  2532. handle = ext3_journal_start(dquot_to_inode(dquot),
  2533. EXT3_QUOTA_DEL_BLOCKS(dquot->dq_sb));
  2534. if (IS_ERR(handle)) {
  2535. /* Release dquot anyway to avoid endless cycle in dqput() */
  2536. dquot_release(dquot);
  2537. return PTR_ERR(handle);
  2538. }
  2539. ret = dquot_release(dquot);
  2540. err = ext3_journal_stop(handle);
  2541. if (!ret)
  2542. ret = err;
  2543. return ret;
  2544. }
  2545. static int ext3_mark_dquot_dirty(struct dquot *dquot)
  2546. {
  2547. /* Are we journaling quotas? */
  2548. if (EXT3_SB(dquot->dq_sb)->s_qf_names[USRQUOTA] ||
  2549. EXT3_SB(dquot->dq_sb)->s_qf_names[GRPQUOTA]) {
  2550. dquot_mark_dquot_dirty(dquot);
  2551. return ext3_write_dquot(dquot);
  2552. } else {
  2553. return dquot_mark_dquot_dirty(dquot);
  2554. }
  2555. }
  2556. static int ext3_write_info(struct super_block *sb, int type)
  2557. {
  2558. int ret, err;
  2559. handle_t *handle;
  2560. /* Data block + inode block */
  2561. handle = ext3_journal_start(sb->s_root->d_inode, 2);
  2562. if (IS_ERR(handle))
  2563. return PTR_ERR(handle);
  2564. ret = dquot_commit_info(sb, type);
  2565. err = ext3_journal_stop(handle);
  2566. if (!ret)
  2567. ret = err;
  2568. return ret;
  2569. }
  2570. /*
  2571. * Turn on quotas during mount time - we need to find
  2572. * the quota file and such...
  2573. */
  2574. static int ext3_quota_on_mount(struct super_block *sb, int type)
  2575. {
  2576. return dquot_quota_on_mount(sb, EXT3_SB(sb)->s_qf_names[type],
  2577. EXT3_SB(sb)->s_jquota_fmt, type);
  2578. }
  2579. /*
  2580. * Standard function to be called on quota_on
  2581. */
  2582. static int ext3_quota_on(struct super_block *sb, int type, int format_id,
  2583. struct path *path)
  2584. {
  2585. int err;
  2586. if (!test_opt(sb, QUOTA))
  2587. return -EINVAL;
  2588. /* Quotafile not on the same filesystem? */
  2589. if (path->dentry->d_sb != sb)
  2590. return -EXDEV;
  2591. /* Journaling quota? */
  2592. if (EXT3_SB(sb)->s_qf_names[type]) {
  2593. /* Quotafile not of fs root? */
  2594. if (path->dentry->d_parent != sb->s_root)
  2595. ext3_msg(sb, KERN_WARNING,
  2596. "warning: Quota file not on filesystem root. "
  2597. "Journaled quota will not work.");
  2598. }
  2599. /*
  2600. * When we journal data on quota file, we have to flush journal to see
  2601. * all updates to the file when we bypass pagecache...
  2602. */
  2603. if (ext3_should_journal_data(path->dentry->d_inode)) {
  2604. /*
  2605. * We don't need to lock updates but journal_flush() could
  2606. * otherwise be livelocked...
  2607. */
  2608. journal_lock_updates(EXT3_SB(sb)->s_journal);
  2609. err = journal_flush(EXT3_SB(sb)->s_journal);
  2610. journal_unlock_updates(EXT3_SB(sb)->s_journal);
  2611. if (err)
  2612. return err;
  2613. }
  2614. return dquot_quota_on(sb, type, format_id, path);
  2615. }
  2616. /* Read data from quotafile - avoid pagecache and such because we cannot afford
  2617. * acquiring the locks... As quota files are never truncated and quota code
  2618. * itself serializes the operations (and no one else should touch the files)
  2619. * we don't have to be afraid of races */
  2620. static ssize_t ext3_quota_read(struct super_block *sb, int type, char *data,
  2621. size_t len, loff_t off)
  2622. {
  2623. struct inode *inode = sb_dqopt(sb)->files[type];
  2624. sector_t blk = off >> EXT3_BLOCK_SIZE_BITS(sb);
  2625. int err = 0;
  2626. int offset = off & (sb->s_blocksize - 1);
  2627. int tocopy;
  2628. size_t toread;
  2629. struct buffer_head *bh;
  2630. loff_t i_size = i_size_read(inode);
  2631. if (off > i_size)
  2632. return 0;
  2633. if (off+len > i_size)
  2634. len = i_size-off;
  2635. toread = len;
  2636. while (toread > 0) {
  2637. tocopy = sb->s_blocksize - offset < toread ?
  2638. sb->s_blocksize - offset : toread;
  2639. bh = ext3_bread(NULL, inode, blk, 0, &err);
  2640. if (err)
  2641. return err;
  2642. if (!bh) /* A hole? */
  2643. memset(data, 0, tocopy);
  2644. else
  2645. memcpy(data, bh->b_data+offset, tocopy);
  2646. brelse(bh);
  2647. offset = 0;
  2648. toread -= tocopy;
  2649. data += tocopy;
  2650. blk++;
  2651. }
  2652. return len;
  2653. }
  2654. /* Write to quotafile (we know the transaction is already started and has
  2655. * enough credits) */
  2656. static ssize_t ext3_quota_write(struct super_block *sb, int type,
  2657. const char *data, size_t len, loff_t off)
  2658. {
  2659. struct inode *inode = sb_dqopt(sb)->files[type];
  2660. sector_t blk = off >> EXT3_BLOCK_SIZE_BITS(sb);
  2661. int err = 0;
  2662. int offset = off & (sb->s_blocksize - 1);
  2663. int journal_quota = EXT3_SB(sb)->s_qf_names[type] != NULL;
  2664. struct buffer_head *bh;
  2665. handle_t *handle = journal_current_handle();
  2666. if (!handle) {
  2667. ext3_msg(sb, KERN_WARNING,
  2668. "warning: quota write (off=%llu, len=%llu)"
  2669. " cancelled because transaction is not started.",
  2670. (unsigned long long)off, (unsigned long long)len);
  2671. return -EIO;
  2672. }
  2673. /*
  2674. * Since we account only one data block in transaction credits,
  2675. * then it is impossible to cross a block boundary.
  2676. */
  2677. if (sb->s_blocksize - offset < len) {
  2678. ext3_msg(sb, KERN_WARNING, "Quota write (off=%llu, len=%llu)"
  2679. " cancelled because not block aligned",
  2680. (unsigned long long)off, (unsigned long long)len);
  2681. return -EIO;
  2682. }
  2683. mutex_lock_nested(&inode->i_mutex, I_MUTEX_QUOTA);
  2684. bh = ext3_bread(handle, inode, blk, 1, &err);
  2685. if (!bh)
  2686. goto out;
  2687. if (journal_quota) {
  2688. err = ext3_journal_get_write_access(handle, bh);
  2689. if (err) {
  2690. brelse(bh);
  2691. goto out;
  2692. }
  2693. }
  2694. lock_buffer(bh);
  2695. memcpy(bh->b_data+offset, data, len);
  2696. flush_dcache_page(bh->b_page);
  2697. unlock_buffer(bh);
  2698. if (journal_quota)
  2699. err = ext3_journal_dirty_metadata(handle, bh);
  2700. else {
  2701. /* Always do at least ordered writes for quotas */
  2702. err = ext3_journal_dirty_data(handle, bh);
  2703. mark_buffer_dirty(bh);
  2704. }
  2705. brelse(bh);
  2706. out:
  2707. if (err) {
  2708. mutex_unlock(&inode->i_mutex);
  2709. return err;
  2710. }
  2711. if (inode->i_size < off + len) {
  2712. i_size_write(inode, off + len);
  2713. EXT3_I(inode)->i_disksize = inode->i_size;
  2714. }
  2715. inode->i_version++;
  2716. inode->i_mtime = inode->i_ctime = CURRENT_TIME;
  2717. ext3_mark_inode_dirty(handle, inode);
  2718. mutex_unlock(&inode->i_mutex);
  2719. return len;
  2720. }
  2721. #endif
  2722. static struct dentry *ext3_mount(struct file_system_type *fs_type,
  2723. int flags, const char *dev_name, void *data)
  2724. {
  2725. return mount_bdev(fs_type, flags, dev_name, data, ext3_fill_super);
  2726. }
  2727. static struct file_system_type ext3_fs_type = {
  2728. .owner = THIS_MODULE,
  2729. .name = "ext3",
  2730. .mount = ext3_mount,
  2731. .kill_sb = kill_block_super,
  2732. .fs_flags = FS_REQUIRES_DEV,
  2733. };
  2734. MODULE_ALIAS_FS("ext3");
  2735. static int __init init_ext3_fs(void)
  2736. {
  2737. int err = init_ext3_xattr();
  2738. if (err)
  2739. return err;
  2740. err = init_inodecache();
  2741. if (err)
  2742. goto out1;
  2743. err = register_filesystem(&ext3_fs_type);
  2744. if (err)
  2745. goto out;
  2746. return 0;
  2747. out:
  2748. destroy_inodecache();
  2749. out1:
  2750. exit_ext3_xattr();
  2751. return err;
  2752. }
  2753. static void __exit exit_ext3_fs(void)
  2754. {
  2755. unregister_filesystem(&ext3_fs_type);
  2756. destroy_inodecache();
  2757. exit_ext3_xattr();
  2758. }
  2759. MODULE_AUTHOR("Remy Card, Stephen Tweedie, Andrew Morton, Andreas Dilger, Theodore Ts'o and others");
  2760. MODULE_DESCRIPTION("Second Extended Filesystem with journaling extensions");
  2761. MODULE_LICENSE("GPL");
  2762. module_init(init_ext3_fs)
  2763. module_exit(exit_ext3_fs)