inode.c 36 KB

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  1. /*
  2. * linux/fs/fat/inode.c
  3. *
  4. * Written 1992,1993 by Werner Almesberger
  5. * VFAT extensions by Gordon Chaffee, merged with msdos fs by Henrik Storner
  6. * Rewritten for the constant inumbers support by Al Viro
  7. *
  8. * Fixes:
  9. *
  10. * Max Cohan: Fixed invalid FSINFO offset when info_sector is 0
  11. */
  12. #include <linux/module.h>
  13. #include <linux/init.h>
  14. #include <linux/time.h>
  15. #include <linux/slab.h>
  16. #include <linux/smp_lock.h>
  17. #include <linux/seq_file.h>
  18. #include <linux/msdos_fs.h>
  19. #include <linux/pagemap.h>
  20. #include <linux/buffer_head.h>
  21. #include <linux/mount.h>
  22. #include <linux/vfs.h>
  23. #include <linux/parser.h>
  24. #include <asm/unaligned.h>
  25. #ifndef CONFIG_FAT_DEFAULT_IOCHARSET
  26. /* if user don't select VFAT, this is undefined. */
  27. #define CONFIG_FAT_DEFAULT_IOCHARSET ""
  28. #endif
  29. static int fat_default_codepage = CONFIG_FAT_DEFAULT_CODEPAGE;
  30. static char fat_default_iocharset[] = CONFIG_FAT_DEFAULT_IOCHARSET;
  31. static int fat_add_cluster(struct inode *inode)
  32. {
  33. int err, cluster;
  34. err = fat_alloc_clusters(inode, &cluster, 1);
  35. if (err)
  36. return err;
  37. /* FIXME: this cluster should be added after data of this
  38. * cluster is writed */
  39. err = fat_chain_add(inode, cluster, 1);
  40. if (err)
  41. fat_free_clusters(inode, cluster);
  42. return err;
  43. }
  44. static int fat_get_block(struct inode *inode, sector_t iblock,
  45. struct buffer_head *bh_result, int create)
  46. {
  47. struct super_block *sb = inode->i_sb;
  48. sector_t phys;
  49. int err;
  50. err = fat_bmap(inode, iblock, &phys);
  51. if (err)
  52. return err;
  53. if (phys) {
  54. map_bh(bh_result, sb, phys);
  55. return 0;
  56. }
  57. if (!create)
  58. return 0;
  59. if (iblock != MSDOS_I(inode)->mmu_private >> sb->s_blocksize_bits) {
  60. fat_fs_panic(sb, "corrupted file size (i_pos %lld, %lld)",
  61. MSDOS_I(inode)->i_pos, MSDOS_I(inode)->mmu_private);
  62. return -EIO;
  63. }
  64. if (!((unsigned long)iblock & (MSDOS_SB(sb)->sec_per_clus - 1))) {
  65. err = fat_add_cluster(inode);
  66. if (err)
  67. return err;
  68. }
  69. MSDOS_I(inode)->mmu_private += sb->s_blocksize;
  70. err = fat_bmap(inode, iblock, &phys);
  71. if (err)
  72. return err;
  73. if (!phys)
  74. BUG();
  75. set_buffer_new(bh_result);
  76. map_bh(bh_result, sb, phys);
  77. return 0;
  78. }
  79. static int fat_writepage(struct page *page, struct writeback_control *wbc)
  80. {
  81. return block_write_full_page(page, fat_get_block, wbc);
  82. }
  83. static int fat_readpage(struct file *file, struct page *page)
  84. {
  85. return block_read_full_page(page, fat_get_block);
  86. }
  87. static int fat_prepare_write(struct file *file, struct page *page,
  88. unsigned from, unsigned to)
  89. {
  90. return cont_prepare_write(page, from, to, fat_get_block,
  91. &MSDOS_I(page->mapping->host)->mmu_private);
  92. }
  93. static int fat_commit_write(struct file *file, struct page *page,
  94. unsigned from, unsigned to)
  95. {
  96. struct inode *inode = page->mapping->host;
  97. int err = generic_commit_write(file, page, from, to);
  98. if (!err && !(MSDOS_I(inode)->i_attrs & ATTR_ARCH)) {
  99. inode->i_mtime = inode->i_ctime = CURRENT_TIME_SEC;
  100. MSDOS_I(inode)->i_attrs |= ATTR_ARCH;
  101. mark_inode_dirty(inode);
  102. }
  103. return err;
  104. }
  105. static sector_t _fat_bmap(struct address_space *mapping, sector_t block)
  106. {
  107. return generic_block_bmap(mapping, block, fat_get_block);
  108. }
  109. static struct address_space_operations fat_aops = {
  110. .readpage = fat_readpage,
  111. .writepage = fat_writepage,
  112. .sync_page = block_sync_page,
  113. .prepare_write = fat_prepare_write,
  114. .commit_write = fat_commit_write,
  115. .bmap = _fat_bmap
  116. };
  117. /*
  118. * New FAT inode stuff. We do the following:
  119. * a) i_ino is constant and has nothing with on-disk location.
  120. * b) FAT manages its own cache of directory entries.
  121. * c) *This* cache is indexed by on-disk location.
  122. * d) inode has an associated directory entry, all right, but
  123. * it may be unhashed.
  124. * e) currently entries are stored within struct inode. That should
  125. * change.
  126. * f) we deal with races in the following way:
  127. * 1. readdir() and lookup() do FAT-dir-cache lookup.
  128. * 2. rename() unhashes the F-d-c entry and rehashes it in
  129. * a new place.
  130. * 3. unlink() and rmdir() unhash F-d-c entry.
  131. * 4. fat_write_inode() checks whether the thing is unhashed.
  132. * If it is we silently return. If it isn't we do bread(),
  133. * check if the location is still valid and retry if it
  134. * isn't. Otherwise we do changes.
  135. * 5. Spinlock is used to protect hash/unhash/location check/lookup
  136. * 6. fat_clear_inode() unhashes the F-d-c entry.
  137. * 7. lookup() and readdir() do igrab() if they find a F-d-c entry
  138. * and consider negative result as cache miss.
  139. */
  140. static void fat_hash_init(struct super_block *sb)
  141. {
  142. struct msdos_sb_info *sbi = MSDOS_SB(sb);
  143. int i;
  144. spin_lock_init(&sbi->inode_hash_lock);
  145. for (i = 0; i < FAT_HASH_SIZE; i++)
  146. INIT_HLIST_HEAD(&sbi->inode_hashtable[i]);
  147. }
  148. static inline unsigned long fat_hash(struct super_block *sb, loff_t i_pos)
  149. {
  150. unsigned long tmp = (unsigned long)i_pos | (unsigned long) sb;
  151. tmp = tmp + (tmp >> FAT_HASH_BITS) + (tmp >> FAT_HASH_BITS * 2);
  152. return tmp & FAT_HASH_MASK;
  153. }
  154. void fat_attach(struct inode *inode, loff_t i_pos)
  155. {
  156. struct super_block *sb = inode->i_sb;
  157. struct msdos_sb_info *sbi = MSDOS_SB(sb);
  158. spin_lock(&sbi->inode_hash_lock);
  159. MSDOS_I(inode)->i_pos = i_pos;
  160. hlist_add_head(&MSDOS_I(inode)->i_fat_hash,
  161. sbi->inode_hashtable + fat_hash(sb, i_pos));
  162. spin_unlock(&sbi->inode_hash_lock);
  163. }
  164. EXPORT_SYMBOL(fat_attach);
  165. void fat_detach(struct inode *inode)
  166. {
  167. struct msdos_sb_info *sbi = MSDOS_SB(inode->i_sb);
  168. spin_lock(&sbi->inode_hash_lock);
  169. MSDOS_I(inode)->i_pos = 0;
  170. hlist_del_init(&MSDOS_I(inode)->i_fat_hash);
  171. spin_unlock(&sbi->inode_hash_lock);
  172. }
  173. EXPORT_SYMBOL(fat_detach);
  174. struct inode *fat_iget(struct super_block *sb, loff_t i_pos)
  175. {
  176. struct msdos_sb_info *sbi = MSDOS_SB(sb);
  177. struct hlist_head *head = sbi->inode_hashtable + fat_hash(sb, i_pos);
  178. struct hlist_node *_p;
  179. struct msdos_inode_info *i;
  180. struct inode *inode = NULL;
  181. spin_lock(&sbi->inode_hash_lock);
  182. hlist_for_each_entry(i, _p, head, i_fat_hash) {
  183. BUG_ON(i->vfs_inode.i_sb != sb);
  184. if (i->i_pos != i_pos)
  185. continue;
  186. inode = igrab(&i->vfs_inode);
  187. if (inode)
  188. break;
  189. }
  190. spin_unlock(&sbi->inode_hash_lock);
  191. return inode;
  192. }
  193. static int is_exec(unsigned char *extension)
  194. {
  195. unsigned char *exe_extensions = "EXECOMBAT", *walk;
  196. for (walk = exe_extensions; *walk; walk += 3)
  197. if (!strncmp(extension, walk, 3))
  198. return 1;
  199. return 0;
  200. }
  201. static int fat_calc_dir_size(struct inode *inode)
  202. {
  203. struct msdos_sb_info *sbi = MSDOS_SB(inode->i_sb);
  204. int ret, fclus, dclus;
  205. inode->i_size = 0;
  206. if (MSDOS_I(inode)->i_start == 0)
  207. return 0;
  208. ret = fat_get_cluster(inode, FAT_ENT_EOF, &fclus, &dclus);
  209. if (ret < 0)
  210. return ret;
  211. inode->i_size = (fclus + 1) << sbi->cluster_bits;
  212. return 0;
  213. }
  214. /* doesn't deal with root inode */
  215. static int fat_fill_inode(struct inode *inode, struct msdos_dir_entry *de)
  216. {
  217. struct msdos_sb_info *sbi = MSDOS_SB(inode->i_sb);
  218. int error;
  219. MSDOS_I(inode)->i_pos = 0;
  220. inode->i_uid = sbi->options.fs_uid;
  221. inode->i_gid = sbi->options.fs_gid;
  222. inode->i_version++;
  223. inode->i_generation = get_seconds();
  224. if ((de->attr & ATTR_DIR) && !IS_FREE(de->name)) {
  225. inode->i_generation &= ~1;
  226. inode->i_mode = MSDOS_MKMODE(de->attr,
  227. S_IRWXUGO & ~sbi->options.fs_dmask) | S_IFDIR;
  228. inode->i_op = sbi->dir_ops;
  229. inode->i_fop = &fat_dir_operations;
  230. MSDOS_I(inode)->i_start = le16_to_cpu(de->start);
  231. if (sbi->fat_bits == 32)
  232. MSDOS_I(inode)->i_start |= (le16_to_cpu(de->starthi) << 16);
  233. MSDOS_I(inode)->i_logstart = MSDOS_I(inode)->i_start;
  234. error = fat_calc_dir_size(inode);
  235. if (error < 0)
  236. return error;
  237. MSDOS_I(inode)->mmu_private = inode->i_size;
  238. inode->i_nlink = fat_subdirs(inode);
  239. } else { /* not a directory */
  240. inode->i_generation |= 1;
  241. inode->i_mode = MSDOS_MKMODE(de->attr,
  242. ((sbi->options.showexec &&
  243. !is_exec(de->ext))
  244. ? S_IRUGO|S_IWUGO : S_IRWXUGO)
  245. & ~sbi->options.fs_fmask) | S_IFREG;
  246. MSDOS_I(inode)->i_start = le16_to_cpu(de->start);
  247. if (sbi->fat_bits == 32)
  248. MSDOS_I(inode)->i_start |= (le16_to_cpu(de->starthi) << 16);
  249. MSDOS_I(inode)->i_logstart = MSDOS_I(inode)->i_start;
  250. inode->i_size = le32_to_cpu(de->size);
  251. inode->i_op = &fat_file_inode_operations;
  252. inode->i_fop = &fat_file_operations;
  253. inode->i_mapping->a_ops = &fat_aops;
  254. MSDOS_I(inode)->mmu_private = inode->i_size;
  255. }
  256. if (de->attr & ATTR_SYS) {
  257. if (sbi->options.sys_immutable)
  258. inode->i_flags |= S_IMMUTABLE;
  259. }
  260. MSDOS_I(inode)->i_attrs = de->attr & ATTR_UNUSED;
  261. /* this is as close to the truth as we can get ... */
  262. inode->i_blksize = sbi->cluster_size;
  263. inode->i_blocks = ((inode->i_size + (sbi->cluster_size - 1))
  264. & ~((loff_t)sbi->cluster_size - 1)) >> 9;
  265. inode->i_mtime.tv_sec =
  266. date_dos2unix(le16_to_cpu(de->time), le16_to_cpu(de->date));
  267. inode->i_mtime.tv_nsec = 0;
  268. if (sbi->options.isvfat) {
  269. int secs = de->ctime_cs / 100;
  270. int csecs = de->ctime_cs % 100;
  271. inode->i_ctime.tv_sec =
  272. date_dos2unix(le16_to_cpu(de->ctime),
  273. le16_to_cpu(de->cdate)) + secs;
  274. inode->i_ctime.tv_nsec = csecs * 10000000;
  275. inode->i_atime.tv_sec =
  276. date_dos2unix(le16_to_cpu(0), le16_to_cpu(de->adate));
  277. inode->i_atime.tv_nsec = 0;
  278. } else
  279. inode->i_ctime = inode->i_atime = inode->i_mtime;
  280. return 0;
  281. }
  282. struct inode *fat_build_inode(struct super_block *sb,
  283. struct msdos_dir_entry *de, loff_t i_pos)
  284. {
  285. struct inode *inode;
  286. int err;
  287. inode = fat_iget(sb, i_pos);
  288. if (inode)
  289. goto out;
  290. inode = new_inode(sb);
  291. if (!inode) {
  292. inode = ERR_PTR(-ENOMEM);
  293. goto out;
  294. }
  295. inode->i_ino = iunique(sb, MSDOS_ROOT_INO);
  296. inode->i_version = 1;
  297. err = fat_fill_inode(inode, de);
  298. if (err) {
  299. iput(inode);
  300. inode = ERR_PTR(err);
  301. goto out;
  302. }
  303. fat_attach(inode, i_pos);
  304. insert_inode_hash(inode);
  305. out:
  306. return inode;
  307. }
  308. EXPORT_SYMBOL(fat_build_inode);
  309. static void fat_delete_inode(struct inode *inode)
  310. {
  311. truncate_inode_pages(&inode->i_data, 0);
  312. if (!is_bad_inode(inode)) {
  313. inode->i_size = 0;
  314. fat_truncate(inode);
  315. }
  316. clear_inode(inode);
  317. }
  318. static void fat_clear_inode(struct inode *inode)
  319. {
  320. struct msdos_sb_info *sbi = MSDOS_SB(inode->i_sb);
  321. if (is_bad_inode(inode))
  322. return;
  323. lock_kernel();
  324. spin_lock(&sbi->inode_hash_lock);
  325. fat_cache_inval_inode(inode);
  326. hlist_del_init(&MSDOS_I(inode)->i_fat_hash);
  327. spin_unlock(&sbi->inode_hash_lock);
  328. unlock_kernel();
  329. }
  330. static void fat_put_super(struct super_block *sb)
  331. {
  332. struct msdos_sb_info *sbi = MSDOS_SB(sb);
  333. if (!(sb->s_flags & MS_RDONLY))
  334. fat_clusters_flush(sb);
  335. if (sbi->nls_disk) {
  336. unload_nls(sbi->nls_disk);
  337. sbi->nls_disk = NULL;
  338. sbi->options.codepage = fat_default_codepage;
  339. }
  340. if (sbi->nls_io) {
  341. unload_nls(sbi->nls_io);
  342. sbi->nls_io = NULL;
  343. }
  344. if (sbi->options.iocharset != fat_default_iocharset) {
  345. kfree(sbi->options.iocharset);
  346. sbi->options.iocharset = fat_default_iocharset;
  347. }
  348. sb->s_fs_info = NULL;
  349. kfree(sbi);
  350. }
  351. static kmem_cache_t *fat_inode_cachep;
  352. static struct inode *fat_alloc_inode(struct super_block *sb)
  353. {
  354. struct msdos_inode_info *ei;
  355. ei = kmem_cache_alloc(fat_inode_cachep, SLAB_KERNEL);
  356. if (!ei)
  357. return NULL;
  358. return &ei->vfs_inode;
  359. }
  360. static void fat_destroy_inode(struct inode *inode)
  361. {
  362. kmem_cache_free(fat_inode_cachep, MSDOS_I(inode));
  363. }
  364. static void init_once(void * foo, kmem_cache_t * cachep, unsigned long flags)
  365. {
  366. struct msdos_inode_info *ei = (struct msdos_inode_info *)foo;
  367. if ((flags & (SLAB_CTOR_VERIFY|SLAB_CTOR_CONSTRUCTOR)) ==
  368. SLAB_CTOR_CONSTRUCTOR) {
  369. spin_lock_init(&ei->cache_lru_lock);
  370. ei->nr_caches = 0;
  371. ei->cache_valid_id = FAT_CACHE_VALID + 1;
  372. INIT_LIST_HEAD(&ei->cache_lru);
  373. INIT_HLIST_NODE(&ei->i_fat_hash);
  374. inode_init_once(&ei->vfs_inode);
  375. }
  376. }
  377. static int __init fat_init_inodecache(void)
  378. {
  379. fat_inode_cachep = kmem_cache_create("fat_inode_cache",
  380. sizeof(struct msdos_inode_info),
  381. 0, SLAB_RECLAIM_ACCOUNT,
  382. init_once, NULL);
  383. if (fat_inode_cachep == NULL)
  384. return -ENOMEM;
  385. return 0;
  386. }
  387. static void __exit fat_destroy_inodecache(void)
  388. {
  389. if (kmem_cache_destroy(fat_inode_cachep))
  390. printk(KERN_INFO "fat_inode_cache: not all structures were freed\n");
  391. }
  392. static int fat_remount(struct super_block *sb, int *flags, char *data)
  393. {
  394. struct msdos_sb_info *sbi = MSDOS_SB(sb);
  395. *flags |= MS_NODIRATIME | (sbi->options.isvfat ? 0 : MS_NOATIME);
  396. return 0;
  397. }
  398. static int fat_statfs(struct super_block *sb, struct kstatfs *buf)
  399. {
  400. struct msdos_sb_info *sbi = MSDOS_SB(sb);
  401. /* If the count of free cluster is still unknown, counts it here. */
  402. if (sbi->free_clusters == -1) {
  403. int err = fat_count_free_clusters(sb);
  404. if (err)
  405. return err;
  406. }
  407. buf->f_type = sb->s_magic;
  408. buf->f_bsize = sbi->cluster_size;
  409. buf->f_blocks = sbi->max_cluster - FAT_START_ENT;
  410. buf->f_bfree = sbi->free_clusters;
  411. buf->f_bavail = sbi->free_clusters;
  412. buf->f_namelen = sbi->options.isvfat ? 260 : 12;
  413. return 0;
  414. }
  415. static int fat_write_inode(struct inode *inode, int wait)
  416. {
  417. struct super_block *sb = inode->i_sb;
  418. struct msdos_sb_info *sbi = MSDOS_SB(sb);
  419. struct buffer_head *bh;
  420. struct msdos_dir_entry *raw_entry;
  421. loff_t i_pos;
  422. int err = 0;
  423. retry:
  424. i_pos = MSDOS_I(inode)->i_pos;
  425. if (inode->i_ino == MSDOS_ROOT_INO || !i_pos)
  426. return 0;
  427. lock_kernel();
  428. bh = sb_bread(sb, i_pos >> sbi->dir_per_block_bits);
  429. if (!bh) {
  430. printk(KERN_ERR "FAT: unable to read inode block "
  431. "for updating (i_pos %lld)\n", i_pos);
  432. err = -EIO;
  433. goto out;
  434. }
  435. spin_lock(&sbi->inode_hash_lock);
  436. if (i_pos != MSDOS_I(inode)->i_pos) {
  437. spin_unlock(&sbi->inode_hash_lock);
  438. brelse(bh);
  439. unlock_kernel();
  440. goto retry;
  441. }
  442. raw_entry = &((struct msdos_dir_entry *) (bh->b_data))
  443. [i_pos & (sbi->dir_per_block - 1)];
  444. if (S_ISDIR(inode->i_mode))
  445. raw_entry->size = 0;
  446. else
  447. raw_entry->size = cpu_to_le32(inode->i_size);
  448. raw_entry->attr = fat_attr(inode);
  449. raw_entry->start = cpu_to_le16(MSDOS_I(inode)->i_logstart);
  450. raw_entry->starthi = cpu_to_le16(MSDOS_I(inode)->i_logstart >> 16);
  451. fat_date_unix2dos(inode->i_mtime.tv_sec, &raw_entry->time, &raw_entry->date);
  452. if (sbi->options.isvfat) {
  453. __le16 atime;
  454. fat_date_unix2dos(inode->i_ctime.tv_sec,&raw_entry->ctime,&raw_entry->cdate);
  455. fat_date_unix2dos(inode->i_atime.tv_sec,&atime,&raw_entry->adate);
  456. raw_entry->ctime_cs = (inode->i_ctime.tv_sec & 1) * 100 +
  457. inode->i_ctime.tv_nsec / 10000000;
  458. }
  459. spin_unlock(&sbi->inode_hash_lock);
  460. mark_buffer_dirty(bh);
  461. if (wait)
  462. err = sync_dirty_buffer(bh);
  463. brelse(bh);
  464. out:
  465. unlock_kernel();
  466. return err;
  467. }
  468. int fat_sync_inode(struct inode *inode)
  469. {
  470. return fat_write_inode(inode, 1);
  471. }
  472. EXPORT_SYMBOL(fat_sync_inode);
  473. static int fat_show_options(struct seq_file *m, struct vfsmount *mnt);
  474. static struct super_operations fat_sops = {
  475. .alloc_inode = fat_alloc_inode,
  476. .destroy_inode = fat_destroy_inode,
  477. .write_inode = fat_write_inode,
  478. .delete_inode = fat_delete_inode,
  479. .put_super = fat_put_super,
  480. .statfs = fat_statfs,
  481. .clear_inode = fat_clear_inode,
  482. .remount_fs = fat_remount,
  483. .read_inode = make_bad_inode,
  484. .show_options = fat_show_options,
  485. };
  486. /*
  487. * a FAT file handle with fhtype 3 is
  488. * 0/ i_ino - for fast, reliable lookup if still in the cache
  489. * 1/ i_generation - to see if i_ino is still valid
  490. * bit 0 == 0 iff directory
  491. * 2/ i_pos(8-39) - if ino has changed, but still in cache
  492. * 3/ i_pos(4-7)|i_logstart - to semi-verify inode found at i_pos
  493. * 4/ i_pos(0-3)|parent->i_logstart - maybe used to hunt for the file on disc
  494. *
  495. * Hack for NFSv2: Maximum FAT entry number is 28bits and maximum
  496. * i_pos is 40bits (blocknr(32) + dir offset(8)), so two 4bits
  497. * of i_logstart is used to store the directory entry offset.
  498. */
  499. static struct dentry *
  500. fat_decode_fh(struct super_block *sb, __u32 *fh, int len, int fhtype,
  501. int (*acceptable)(void *context, struct dentry *de),
  502. void *context)
  503. {
  504. if (fhtype != 3)
  505. return ERR_PTR(-ESTALE);
  506. if (len < 5)
  507. return ERR_PTR(-ESTALE);
  508. return sb->s_export_op->find_exported_dentry(sb, fh, NULL, acceptable, context);
  509. }
  510. static struct dentry *fat_get_dentry(struct super_block *sb, void *inump)
  511. {
  512. struct inode *inode = NULL;
  513. struct dentry *result;
  514. __u32 *fh = inump;
  515. inode = iget(sb, fh[0]);
  516. if (!inode || is_bad_inode(inode) || inode->i_generation != fh[1]) {
  517. if (inode)
  518. iput(inode);
  519. inode = NULL;
  520. }
  521. if (!inode) {
  522. loff_t i_pos;
  523. int i_logstart = fh[3] & 0x0fffffff;
  524. i_pos = (loff_t)fh[2] << 8;
  525. i_pos |= ((fh[3] >> 24) & 0xf0) | (fh[4] >> 28);
  526. /* try 2 - see if i_pos is in F-d-c
  527. * require i_logstart to be the same
  528. * Will fail if you truncate and then re-write
  529. */
  530. inode = fat_iget(sb, i_pos);
  531. if (inode && MSDOS_I(inode)->i_logstart != i_logstart) {
  532. iput(inode);
  533. inode = NULL;
  534. }
  535. }
  536. if (!inode) {
  537. /* For now, do nothing
  538. * What we could do is:
  539. * follow the file starting at fh[4], and record
  540. * the ".." entry, and the name of the fh[2] entry.
  541. * The follow the ".." file finding the next step up.
  542. * This way we build a path to the root of
  543. * the tree. If this works, we lookup the path and so
  544. * get this inode into the cache.
  545. * Finally try the fat_iget lookup again
  546. * If that fails, then weare totally out of luck
  547. * But all that is for another day
  548. */
  549. }
  550. if (!inode)
  551. return ERR_PTR(-ESTALE);
  552. /* now to find a dentry.
  553. * If possible, get a well-connected one
  554. */
  555. result = d_alloc_anon(inode);
  556. if (result == NULL) {
  557. iput(inode);
  558. return ERR_PTR(-ENOMEM);
  559. }
  560. result->d_op = sb->s_root->d_op;
  561. return result;
  562. }
  563. static int
  564. fat_encode_fh(struct dentry *de, __u32 *fh, int *lenp, int connectable)
  565. {
  566. int len = *lenp;
  567. struct inode *inode = de->d_inode;
  568. u32 ipos_h, ipos_m, ipos_l;
  569. if (len < 5)
  570. return 255; /* no room */
  571. ipos_h = MSDOS_I(inode)->i_pos >> 8;
  572. ipos_m = (MSDOS_I(inode)->i_pos & 0xf0) << 24;
  573. ipos_l = (MSDOS_I(inode)->i_pos & 0x0f) << 28;
  574. *lenp = 5;
  575. fh[0] = inode->i_ino;
  576. fh[1] = inode->i_generation;
  577. fh[2] = ipos_h;
  578. fh[3] = ipos_m | MSDOS_I(inode)->i_logstart;
  579. spin_lock(&de->d_lock);
  580. fh[4] = ipos_l | MSDOS_I(de->d_parent->d_inode)->i_logstart;
  581. spin_unlock(&de->d_lock);
  582. return 3;
  583. }
  584. static struct dentry *fat_get_parent(struct dentry *child)
  585. {
  586. struct buffer_head *bh;
  587. struct msdos_dir_entry *de;
  588. loff_t i_pos;
  589. struct dentry *parent;
  590. struct inode *inode;
  591. int err;
  592. lock_kernel();
  593. err = fat_get_dotdot_entry(child->d_inode, &bh, &de, &i_pos);
  594. if (err) {
  595. parent = ERR_PTR(err);
  596. goto out;
  597. }
  598. inode = fat_build_inode(child->d_sb, de, i_pos);
  599. brelse(bh);
  600. if (IS_ERR(inode)) {
  601. parent = ERR_PTR(PTR_ERR(inode));
  602. goto out;
  603. }
  604. parent = d_alloc_anon(inode);
  605. if (!parent) {
  606. iput(inode);
  607. parent = ERR_PTR(-ENOMEM);
  608. }
  609. out:
  610. unlock_kernel();
  611. return parent;
  612. }
  613. static struct export_operations fat_export_ops = {
  614. .decode_fh = fat_decode_fh,
  615. .encode_fh = fat_encode_fh,
  616. .get_dentry = fat_get_dentry,
  617. .get_parent = fat_get_parent,
  618. };
  619. static int fat_show_options(struct seq_file *m, struct vfsmount *mnt)
  620. {
  621. struct msdos_sb_info *sbi = MSDOS_SB(mnt->mnt_sb);
  622. struct fat_mount_options *opts = &sbi->options;
  623. int isvfat = opts->isvfat;
  624. if (opts->fs_uid != 0)
  625. seq_printf(m, ",uid=%u", opts->fs_uid);
  626. if (opts->fs_gid != 0)
  627. seq_printf(m, ",gid=%u", opts->fs_gid);
  628. seq_printf(m, ",fmask=%04o", opts->fs_fmask);
  629. seq_printf(m, ",dmask=%04o", opts->fs_dmask);
  630. if (sbi->nls_disk)
  631. seq_printf(m, ",codepage=%s", sbi->nls_disk->charset);
  632. if (isvfat) {
  633. if (sbi->nls_io)
  634. seq_printf(m, ",iocharset=%s", sbi->nls_io->charset);
  635. switch (opts->shortname) {
  636. case VFAT_SFN_DISPLAY_WIN95 | VFAT_SFN_CREATE_WIN95:
  637. seq_puts(m, ",shortname=win95");
  638. break;
  639. case VFAT_SFN_DISPLAY_WINNT | VFAT_SFN_CREATE_WINNT:
  640. seq_puts(m, ",shortname=winnt");
  641. break;
  642. case VFAT_SFN_DISPLAY_WINNT | VFAT_SFN_CREATE_WIN95:
  643. seq_puts(m, ",shortname=mixed");
  644. break;
  645. case VFAT_SFN_DISPLAY_LOWER | VFAT_SFN_CREATE_WIN95:
  646. /* seq_puts(m, ",shortname=lower"); */
  647. break;
  648. default:
  649. seq_puts(m, ",shortname=unknown");
  650. break;
  651. }
  652. }
  653. if (opts->name_check != 'n')
  654. seq_printf(m, ",check=%c", opts->name_check);
  655. if (opts->quiet)
  656. seq_puts(m, ",quiet");
  657. if (opts->showexec)
  658. seq_puts(m, ",showexec");
  659. if (opts->sys_immutable)
  660. seq_puts(m, ",sys_immutable");
  661. if (!isvfat) {
  662. if (opts->dotsOK)
  663. seq_puts(m, ",dotsOK=yes");
  664. if (opts->nocase)
  665. seq_puts(m, ",nocase");
  666. } else {
  667. if (opts->utf8)
  668. seq_puts(m, ",utf8");
  669. if (opts->unicode_xlate)
  670. seq_puts(m, ",uni_xlate");
  671. if (!opts->numtail)
  672. seq_puts(m, ",nonumtail");
  673. }
  674. return 0;
  675. }
  676. enum {
  677. Opt_check_n, Opt_check_r, Opt_check_s, Opt_uid, Opt_gid,
  678. Opt_umask, Opt_dmask, Opt_fmask, Opt_codepage, Opt_nocase,
  679. Opt_quiet, Opt_showexec, Opt_debug, Opt_immutable,
  680. Opt_dots, Opt_nodots,
  681. Opt_charset, Opt_shortname_lower, Opt_shortname_win95,
  682. Opt_shortname_winnt, Opt_shortname_mixed, Opt_utf8_no, Opt_utf8_yes,
  683. Opt_uni_xl_no, Opt_uni_xl_yes, Opt_nonumtail_no, Opt_nonumtail_yes,
  684. Opt_obsolate, Opt_err,
  685. };
  686. static match_table_t fat_tokens = {
  687. {Opt_check_r, "check=relaxed"},
  688. {Opt_check_s, "check=strict"},
  689. {Opt_check_n, "check=normal"},
  690. {Opt_check_r, "check=r"},
  691. {Opt_check_s, "check=s"},
  692. {Opt_check_n, "check=n"},
  693. {Opt_uid, "uid=%u"},
  694. {Opt_gid, "gid=%u"},
  695. {Opt_umask, "umask=%o"},
  696. {Opt_dmask, "dmask=%o"},
  697. {Opt_fmask, "fmask=%o"},
  698. {Opt_codepage, "codepage=%u"},
  699. {Opt_nocase, "nocase"},
  700. {Opt_quiet, "quiet"},
  701. {Opt_showexec, "showexec"},
  702. {Opt_debug, "debug"},
  703. {Opt_immutable, "sys_immutable"},
  704. {Opt_obsolate, "conv=binary"},
  705. {Opt_obsolate, "conv=text"},
  706. {Opt_obsolate, "conv=auto"},
  707. {Opt_obsolate, "conv=b"},
  708. {Opt_obsolate, "conv=t"},
  709. {Opt_obsolate, "conv=a"},
  710. {Opt_obsolate, "fat=%u"},
  711. {Opt_obsolate, "blocksize=%u"},
  712. {Opt_obsolate, "cvf_format=%20s"},
  713. {Opt_obsolate, "cvf_options=%100s"},
  714. {Opt_obsolate, "posix"},
  715. {Opt_err, NULL}
  716. };
  717. static match_table_t msdos_tokens = {
  718. {Opt_nodots, "nodots"},
  719. {Opt_nodots, "dotsOK=no"},
  720. {Opt_dots, "dots"},
  721. {Opt_dots, "dotsOK=yes"},
  722. {Opt_err, NULL}
  723. };
  724. static match_table_t vfat_tokens = {
  725. {Opt_charset, "iocharset=%s"},
  726. {Opt_shortname_lower, "shortname=lower"},
  727. {Opt_shortname_win95, "shortname=win95"},
  728. {Opt_shortname_winnt, "shortname=winnt"},
  729. {Opt_shortname_mixed, "shortname=mixed"},
  730. {Opt_utf8_no, "utf8=0"}, /* 0 or no or false */
  731. {Opt_utf8_no, "utf8=no"},
  732. {Opt_utf8_no, "utf8=false"},
  733. {Opt_utf8_yes, "utf8=1"}, /* empty or 1 or yes or true */
  734. {Opt_utf8_yes, "utf8=yes"},
  735. {Opt_utf8_yes, "utf8=true"},
  736. {Opt_utf8_yes, "utf8"},
  737. {Opt_uni_xl_no, "uni_xlate=0"}, /* 0 or no or false */
  738. {Opt_uni_xl_no, "uni_xlate=no"},
  739. {Opt_uni_xl_no, "uni_xlate=false"},
  740. {Opt_uni_xl_yes, "uni_xlate=1"}, /* empty or 1 or yes or true */
  741. {Opt_uni_xl_yes, "uni_xlate=yes"},
  742. {Opt_uni_xl_yes, "uni_xlate=true"},
  743. {Opt_uni_xl_yes, "uni_xlate"},
  744. {Opt_nonumtail_no, "nonumtail=0"}, /* 0 or no or false */
  745. {Opt_nonumtail_no, "nonumtail=no"},
  746. {Opt_nonumtail_no, "nonumtail=false"},
  747. {Opt_nonumtail_yes, "nonumtail=1"}, /* empty or 1 or yes or true */
  748. {Opt_nonumtail_yes, "nonumtail=yes"},
  749. {Opt_nonumtail_yes, "nonumtail=true"},
  750. {Opt_nonumtail_yes, "nonumtail"},
  751. {Opt_err, NULL}
  752. };
  753. static int parse_options(char *options, int is_vfat, int *debug,
  754. struct fat_mount_options *opts)
  755. {
  756. char *p;
  757. substring_t args[MAX_OPT_ARGS];
  758. int option;
  759. char *iocharset;
  760. opts->isvfat = is_vfat;
  761. opts->fs_uid = current->uid;
  762. opts->fs_gid = current->gid;
  763. opts->fs_fmask = opts->fs_dmask = current->fs->umask;
  764. opts->codepage = fat_default_codepage;
  765. opts->iocharset = fat_default_iocharset;
  766. if (is_vfat)
  767. opts->shortname = VFAT_SFN_DISPLAY_LOWER|VFAT_SFN_CREATE_WIN95;
  768. else
  769. opts->shortname = 0;
  770. opts->name_check = 'n';
  771. opts->quiet = opts->showexec = opts->sys_immutable = opts->dotsOK = 0;
  772. opts->utf8 = opts->unicode_xlate = 0;
  773. opts->numtail = 1;
  774. opts->nocase = 0;
  775. *debug = 0;
  776. if (!options)
  777. return 0;
  778. while ((p = strsep(&options, ",")) != NULL) {
  779. int token;
  780. if (!*p)
  781. continue;
  782. token = match_token(p, fat_tokens, args);
  783. if (token == Opt_err) {
  784. if (is_vfat)
  785. token = match_token(p, vfat_tokens, args);
  786. else
  787. token = match_token(p, msdos_tokens, args);
  788. }
  789. switch (token) {
  790. case Opt_check_s:
  791. opts->name_check = 's';
  792. break;
  793. case Opt_check_r:
  794. opts->name_check = 'r';
  795. break;
  796. case Opt_check_n:
  797. opts->name_check = 'n';
  798. break;
  799. case Opt_nocase:
  800. if (!is_vfat)
  801. opts->nocase = 1;
  802. else {
  803. /* for backward compatibility */
  804. opts->shortname = VFAT_SFN_DISPLAY_WIN95
  805. | VFAT_SFN_CREATE_WIN95;
  806. }
  807. break;
  808. case Opt_quiet:
  809. opts->quiet = 1;
  810. break;
  811. case Opt_showexec:
  812. opts->showexec = 1;
  813. break;
  814. case Opt_debug:
  815. *debug = 1;
  816. break;
  817. case Opt_immutable:
  818. opts->sys_immutable = 1;
  819. break;
  820. case Opt_uid:
  821. if (match_int(&args[0], &option))
  822. return 0;
  823. opts->fs_uid = option;
  824. break;
  825. case Opt_gid:
  826. if (match_int(&args[0], &option))
  827. return 0;
  828. opts->fs_gid = option;
  829. break;
  830. case Opt_umask:
  831. if (match_octal(&args[0], &option))
  832. return 0;
  833. opts->fs_fmask = opts->fs_dmask = option;
  834. break;
  835. case Opt_dmask:
  836. if (match_octal(&args[0], &option))
  837. return 0;
  838. opts->fs_dmask = option;
  839. break;
  840. case Opt_fmask:
  841. if (match_octal(&args[0], &option))
  842. return 0;
  843. opts->fs_fmask = option;
  844. break;
  845. case Opt_codepage:
  846. if (match_int(&args[0], &option))
  847. return 0;
  848. opts->codepage = option;
  849. break;
  850. /* msdos specific */
  851. case Opt_dots:
  852. opts->dotsOK = 1;
  853. break;
  854. case Opt_nodots:
  855. opts->dotsOK = 0;
  856. break;
  857. /* vfat specific */
  858. case Opt_charset:
  859. if (opts->iocharset != fat_default_iocharset)
  860. kfree(opts->iocharset);
  861. iocharset = match_strdup(&args[0]);
  862. if (!iocharset)
  863. return -ENOMEM;
  864. opts->iocharset = iocharset;
  865. break;
  866. case Opt_shortname_lower:
  867. opts->shortname = VFAT_SFN_DISPLAY_LOWER
  868. | VFAT_SFN_CREATE_WIN95;
  869. break;
  870. case Opt_shortname_win95:
  871. opts->shortname = VFAT_SFN_DISPLAY_WIN95
  872. | VFAT_SFN_CREATE_WIN95;
  873. break;
  874. case Opt_shortname_winnt:
  875. opts->shortname = VFAT_SFN_DISPLAY_WINNT
  876. | VFAT_SFN_CREATE_WINNT;
  877. break;
  878. case Opt_shortname_mixed:
  879. opts->shortname = VFAT_SFN_DISPLAY_WINNT
  880. | VFAT_SFN_CREATE_WIN95;
  881. break;
  882. case Opt_utf8_no: /* 0 or no or false */
  883. opts->utf8 = 0;
  884. break;
  885. case Opt_utf8_yes: /* empty or 1 or yes or true */
  886. opts->utf8 = 1;
  887. break;
  888. case Opt_uni_xl_no: /* 0 or no or false */
  889. opts->unicode_xlate = 0;
  890. break;
  891. case Opt_uni_xl_yes: /* empty or 1 or yes or true */
  892. opts->unicode_xlate = 1;
  893. break;
  894. case Opt_nonumtail_no: /* 0 or no or false */
  895. opts->numtail = 1; /* negated option */
  896. break;
  897. case Opt_nonumtail_yes: /* empty or 1 or yes or true */
  898. opts->numtail = 0; /* negated option */
  899. break;
  900. /* obsolete mount options */
  901. case Opt_obsolate:
  902. printk(KERN_INFO "FAT: \"%s\" option is obsolete, "
  903. "not supported now\n", p);
  904. break;
  905. /* unknown option */
  906. default:
  907. printk(KERN_ERR "FAT: Unrecognized mount option \"%s\" "
  908. "or missing value\n", p);
  909. return -EINVAL;
  910. }
  911. }
  912. /* UTF8 doesn't provide FAT semantics */
  913. if (!strcmp(opts->iocharset, "utf8")) {
  914. printk(KERN_ERR "FAT: utf8 is not a recommended IO charset"
  915. " for FAT filesystems, filesystem will be case sensitive!\n");
  916. }
  917. if (opts->unicode_xlate)
  918. opts->utf8 = 0;
  919. return 0;
  920. }
  921. static int fat_read_root(struct inode *inode)
  922. {
  923. struct super_block *sb = inode->i_sb;
  924. struct msdos_sb_info *sbi = MSDOS_SB(sb);
  925. int error;
  926. MSDOS_I(inode)->i_pos = 0;
  927. inode->i_uid = sbi->options.fs_uid;
  928. inode->i_gid = sbi->options.fs_gid;
  929. inode->i_version++;
  930. inode->i_generation = 0;
  931. inode->i_mode = (S_IRWXUGO & ~sbi->options.fs_dmask) | S_IFDIR;
  932. inode->i_op = sbi->dir_ops;
  933. inode->i_fop = &fat_dir_operations;
  934. if (sbi->fat_bits == 32) {
  935. MSDOS_I(inode)->i_start = sbi->root_cluster;
  936. error = fat_calc_dir_size(inode);
  937. if (error < 0)
  938. return error;
  939. } else {
  940. MSDOS_I(inode)->i_start = 0;
  941. inode->i_size = sbi->dir_entries * sizeof(struct msdos_dir_entry);
  942. }
  943. inode->i_blksize = sbi->cluster_size;
  944. inode->i_blocks = ((inode->i_size + (sbi->cluster_size - 1))
  945. & ~((loff_t)sbi->cluster_size - 1)) >> 9;
  946. MSDOS_I(inode)->i_logstart = 0;
  947. MSDOS_I(inode)->mmu_private = inode->i_size;
  948. MSDOS_I(inode)->i_attrs = ATTR_NONE;
  949. inode->i_mtime.tv_sec = inode->i_atime.tv_sec = inode->i_ctime.tv_sec = 0;
  950. inode->i_mtime.tv_nsec = inode->i_atime.tv_nsec = inode->i_ctime.tv_nsec = 0;
  951. inode->i_nlink = fat_subdirs(inode)+2;
  952. return 0;
  953. }
  954. /*
  955. * Read the super block of an MS-DOS FS.
  956. */
  957. int fat_fill_super(struct super_block *sb, void *data, int silent,
  958. struct inode_operations *fs_dir_inode_ops, int isvfat)
  959. {
  960. struct inode *root_inode = NULL;
  961. struct buffer_head *bh;
  962. struct fat_boot_sector *b;
  963. struct msdos_sb_info *sbi;
  964. u16 logical_sector_size;
  965. u32 total_sectors, total_clusters, fat_clusters, rootdir_sectors;
  966. int debug;
  967. unsigned int media;
  968. long error;
  969. char buf[50];
  970. sbi = kmalloc(sizeof(struct msdos_sb_info), GFP_KERNEL);
  971. if (!sbi)
  972. return -ENOMEM;
  973. sb->s_fs_info = sbi;
  974. memset(sbi, 0, sizeof(struct msdos_sb_info));
  975. sb->s_flags |= MS_NODIRATIME;
  976. sb->s_magic = MSDOS_SUPER_MAGIC;
  977. sb->s_op = &fat_sops;
  978. sb->s_export_op = &fat_export_ops;
  979. sbi->dir_ops = fs_dir_inode_ops;
  980. error = parse_options(data, isvfat, &debug, &sbi->options);
  981. if (error)
  982. goto out_fail;
  983. error = -EIO;
  984. sb_min_blocksize(sb, 512);
  985. bh = sb_bread(sb, 0);
  986. if (bh == NULL) {
  987. printk(KERN_ERR "FAT: unable to read boot sector\n");
  988. goto out_fail;
  989. }
  990. b = (struct fat_boot_sector *) bh->b_data;
  991. if (!b->reserved) {
  992. if (!silent)
  993. printk(KERN_ERR "FAT: bogus number of reserved sectors\n");
  994. brelse(bh);
  995. goto out_invalid;
  996. }
  997. if (!b->fats) {
  998. if (!silent)
  999. printk(KERN_ERR "FAT: bogus number of FAT structure\n");
  1000. brelse(bh);
  1001. goto out_invalid;
  1002. }
  1003. /*
  1004. * Earlier we checked here that b->secs_track and b->head are nonzero,
  1005. * but it turns out valid FAT filesystems can have zero there.
  1006. */
  1007. media = b->media;
  1008. if (!FAT_VALID_MEDIA(media)) {
  1009. if (!silent)
  1010. printk(KERN_ERR "FAT: invalid media value (0x%02x)\n",
  1011. media);
  1012. brelse(bh);
  1013. goto out_invalid;
  1014. }
  1015. logical_sector_size =
  1016. le16_to_cpu(get_unaligned((__le16 *)&b->sector_size));
  1017. if (!logical_sector_size
  1018. || (logical_sector_size & (logical_sector_size - 1))
  1019. || (logical_sector_size < 512)
  1020. || (PAGE_CACHE_SIZE < logical_sector_size)) {
  1021. if (!silent)
  1022. printk(KERN_ERR "FAT: bogus logical sector size %u\n",
  1023. logical_sector_size);
  1024. brelse(bh);
  1025. goto out_invalid;
  1026. }
  1027. sbi->sec_per_clus = b->sec_per_clus;
  1028. if (!sbi->sec_per_clus
  1029. || (sbi->sec_per_clus & (sbi->sec_per_clus - 1))) {
  1030. if (!silent)
  1031. printk(KERN_ERR "FAT: bogus sectors per cluster %u\n",
  1032. sbi->sec_per_clus);
  1033. brelse(bh);
  1034. goto out_invalid;
  1035. }
  1036. if (logical_sector_size < sb->s_blocksize) {
  1037. printk(KERN_ERR "FAT: logical sector size too small for device"
  1038. " (logical sector size = %u)\n", logical_sector_size);
  1039. brelse(bh);
  1040. goto out_fail;
  1041. }
  1042. if (logical_sector_size > sb->s_blocksize) {
  1043. brelse(bh);
  1044. if (!sb_set_blocksize(sb, logical_sector_size)) {
  1045. printk(KERN_ERR "FAT: unable to set blocksize %u\n",
  1046. logical_sector_size);
  1047. goto out_fail;
  1048. }
  1049. bh = sb_bread(sb, 0);
  1050. if (bh == NULL) {
  1051. printk(KERN_ERR "FAT: unable to read boot sector"
  1052. " (logical sector size = %lu)\n",
  1053. sb->s_blocksize);
  1054. goto out_fail;
  1055. }
  1056. b = (struct fat_boot_sector *) bh->b_data;
  1057. }
  1058. sbi->cluster_size = sb->s_blocksize * sbi->sec_per_clus;
  1059. sbi->cluster_bits = ffs(sbi->cluster_size) - 1;
  1060. sbi->fats = b->fats;
  1061. sbi->fat_bits = 0; /* Don't know yet */
  1062. sbi->fat_start = le16_to_cpu(b->reserved);
  1063. sbi->fat_length = le16_to_cpu(b->fat_length);
  1064. sbi->root_cluster = 0;
  1065. sbi->free_clusters = -1; /* Don't know yet */
  1066. sbi->prev_free = FAT_START_ENT;
  1067. if (!sbi->fat_length && b->fat32_length) {
  1068. struct fat_boot_fsinfo *fsinfo;
  1069. struct buffer_head *fsinfo_bh;
  1070. /* Must be FAT32 */
  1071. sbi->fat_bits = 32;
  1072. sbi->fat_length = le32_to_cpu(b->fat32_length);
  1073. sbi->root_cluster = le32_to_cpu(b->root_cluster);
  1074. sb->s_maxbytes = 0xffffffff;
  1075. /* MC - if info_sector is 0, don't multiply by 0 */
  1076. sbi->fsinfo_sector = le16_to_cpu(b->info_sector);
  1077. if (sbi->fsinfo_sector == 0)
  1078. sbi->fsinfo_sector = 1;
  1079. fsinfo_bh = sb_bread(sb, sbi->fsinfo_sector);
  1080. if (fsinfo_bh == NULL) {
  1081. printk(KERN_ERR "FAT: bread failed, FSINFO block"
  1082. " (sector = %lu)\n", sbi->fsinfo_sector);
  1083. brelse(bh);
  1084. goto out_fail;
  1085. }
  1086. fsinfo = (struct fat_boot_fsinfo *)fsinfo_bh->b_data;
  1087. if (!IS_FSINFO(fsinfo)) {
  1088. printk(KERN_WARNING
  1089. "FAT: Did not find valid FSINFO signature.\n"
  1090. " Found signature1 0x%08x signature2 0x%08x"
  1091. " (sector = %lu)\n",
  1092. le32_to_cpu(fsinfo->signature1),
  1093. le32_to_cpu(fsinfo->signature2),
  1094. sbi->fsinfo_sector);
  1095. } else {
  1096. sbi->free_clusters = le32_to_cpu(fsinfo->free_clusters);
  1097. sbi->prev_free = le32_to_cpu(fsinfo->next_cluster);
  1098. }
  1099. brelse(fsinfo_bh);
  1100. }
  1101. sbi->dir_per_block = sb->s_blocksize / sizeof(struct msdos_dir_entry);
  1102. sbi->dir_per_block_bits = ffs(sbi->dir_per_block) - 1;
  1103. sbi->dir_start = sbi->fat_start + sbi->fats * sbi->fat_length;
  1104. sbi->dir_entries =
  1105. le16_to_cpu(get_unaligned((__le16 *)&b->dir_entries));
  1106. if (sbi->dir_entries & (sbi->dir_per_block - 1)) {
  1107. if (!silent)
  1108. printk(KERN_ERR "FAT: bogus directroy-entries per block"
  1109. " (%u)\n", sbi->dir_entries);
  1110. brelse(bh);
  1111. goto out_invalid;
  1112. }
  1113. rootdir_sectors = sbi->dir_entries
  1114. * sizeof(struct msdos_dir_entry) / sb->s_blocksize;
  1115. sbi->data_start = sbi->dir_start + rootdir_sectors;
  1116. total_sectors = le16_to_cpu(get_unaligned((__le16 *)&b->sectors));
  1117. if (total_sectors == 0)
  1118. total_sectors = le32_to_cpu(b->total_sect);
  1119. total_clusters = (total_sectors - sbi->data_start) / sbi->sec_per_clus;
  1120. if (sbi->fat_bits != 32)
  1121. sbi->fat_bits = (total_clusters > MAX_FAT12) ? 16 : 12;
  1122. /* check that FAT table does not overflow */
  1123. fat_clusters = sbi->fat_length * sb->s_blocksize * 8 / sbi->fat_bits;
  1124. total_clusters = min(total_clusters, fat_clusters - FAT_START_ENT);
  1125. if (total_clusters > MAX_FAT(sb)) {
  1126. if (!silent)
  1127. printk(KERN_ERR "FAT: count of clusters too big (%u)\n",
  1128. total_clusters);
  1129. brelse(bh);
  1130. goto out_invalid;
  1131. }
  1132. sbi->max_cluster = total_clusters + FAT_START_ENT;
  1133. /* check the free_clusters, it's not necessarily correct */
  1134. if (sbi->free_clusters != -1 && sbi->free_clusters > total_clusters)
  1135. sbi->free_clusters = -1;
  1136. /* check the prev_free, it's not necessarily correct */
  1137. sbi->prev_free %= sbi->max_cluster;
  1138. if (sbi->prev_free < FAT_START_ENT)
  1139. sbi->prev_free = FAT_START_ENT;
  1140. brelse(bh);
  1141. /* set up enough so that it can read an inode */
  1142. fat_hash_init(sb);
  1143. fat_ent_access_init(sb);
  1144. /*
  1145. * The low byte of FAT's first entry must have same value with
  1146. * media-field. But in real world, too many devices is
  1147. * writing wrong value. So, removed that validity check.
  1148. *
  1149. * if (FAT_FIRST_ENT(sb, media) != first)
  1150. */
  1151. error = -EINVAL;
  1152. sprintf(buf, "cp%d", sbi->options.codepage);
  1153. sbi->nls_disk = load_nls(buf);
  1154. if (!sbi->nls_disk) {
  1155. printk(KERN_ERR "FAT: codepage %s not found\n", buf);
  1156. goto out_fail;
  1157. }
  1158. /* FIXME: utf8 is using iocharset for upper/lower conversion */
  1159. if (sbi->options.isvfat) {
  1160. sbi->nls_io = load_nls(sbi->options.iocharset);
  1161. if (!sbi->nls_io) {
  1162. printk(KERN_ERR "FAT: IO charset %s not found\n",
  1163. sbi->options.iocharset);
  1164. goto out_fail;
  1165. }
  1166. }
  1167. error = -ENOMEM;
  1168. root_inode = new_inode(sb);
  1169. if (!root_inode)
  1170. goto out_fail;
  1171. root_inode->i_ino = MSDOS_ROOT_INO;
  1172. root_inode->i_version = 1;
  1173. error = fat_read_root(root_inode);
  1174. if (error < 0)
  1175. goto out_fail;
  1176. error = -ENOMEM;
  1177. insert_inode_hash(root_inode);
  1178. sb->s_root = d_alloc_root(root_inode);
  1179. if (!sb->s_root) {
  1180. printk(KERN_ERR "FAT: get root inode failed\n");
  1181. goto out_fail;
  1182. }
  1183. return 0;
  1184. out_invalid:
  1185. error = -EINVAL;
  1186. if (!silent)
  1187. printk(KERN_INFO "VFS: Can't find a valid FAT filesystem"
  1188. " on dev %s.\n", sb->s_id);
  1189. out_fail:
  1190. if (root_inode)
  1191. iput(root_inode);
  1192. if (sbi->nls_io)
  1193. unload_nls(sbi->nls_io);
  1194. if (sbi->nls_disk)
  1195. unload_nls(sbi->nls_disk);
  1196. if (sbi->options.iocharset != fat_default_iocharset)
  1197. kfree(sbi->options.iocharset);
  1198. sb->s_fs_info = NULL;
  1199. kfree(sbi);
  1200. return error;
  1201. }
  1202. EXPORT_SYMBOL(fat_fill_super);
  1203. int __init fat_cache_init(void);
  1204. void fat_cache_destroy(void);
  1205. static int __init init_fat_fs(void)
  1206. {
  1207. int err;
  1208. err = fat_cache_init();
  1209. if (err)
  1210. return err;
  1211. err = fat_init_inodecache();
  1212. if (err)
  1213. goto failed;
  1214. return 0;
  1215. failed:
  1216. fat_cache_destroy();
  1217. return err;
  1218. }
  1219. static void __exit exit_fat_fs(void)
  1220. {
  1221. fat_cache_destroy();
  1222. fat_destroy_inodecache();
  1223. }
  1224. module_init(init_fat_fs)
  1225. module_exit(exit_fat_fs)
  1226. MODULE_LICENSE("GPL");