super.c 15 KB

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  1. /*
  2. * linux/fs/hfsplus/super.c
  3. *
  4. * Copyright (C) 2001
  5. * Brad Boyer (flar@allandria.com)
  6. * (C) 2003 Ardis Technologies <roman@ardistech.com>
  7. *
  8. */
  9. #include <linux/module.h>
  10. #include <linux/init.h>
  11. #include <linux/pagemap.h>
  12. #include <linux/fs.h>
  13. #include <linux/slab.h>
  14. #include <linux/vfs.h>
  15. #include <linux/nls.h>
  16. static struct inode *hfsplus_alloc_inode(struct super_block *sb);
  17. static void hfsplus_destroy_inode(struct inode *inode);
  18. #include "hfsplus_fs.h"
  19. struct inode *hfsplus_iget(struct super_block *sb, unsigned long ino)
  20. {
  21. struct hfs_find_data fd;
  22. struct hfsplus_vh *vhdr;
  23. struct inode *inode;
  24. long err = -EIO;
  25. inode = iget_locked(sb, ino);
  26. if (!inode)
  27. return ERR_PTR(-ENOMEM);
  28. if (!(inode->i_state & I_NEW))
  29. return inode;
  30. INIT_LIST_HEAD(&HFSPLUS_I(inode).open_dir_list);
  31. mutex_init(&HFSPLUS_I(inode).extents_lock);
  32. HFSPLUS_I(inode).flags = 0;
  33. HFSPLUS_I(inode).rsrc_inode = NULL;
  34. atomic_set(&HFSPLUS_I(inode).opencnt, 0);
  35. if (inode->i_ino >= HFSPLUS_FIRSTUSER_CNID) {
  36. read_inode:
  37. hfs_find_init(HFSPLUS_SB(inode->i_sb)->cat_tree, &fd);
  38. err = hfsplus_find_cat(inode->i_sb, inode->i_ino, &fd);
  39. if (!err)
  40. err = hfsplus_cat_read_inode(inode, &fd);
  41. hfs_find_exit(&fd);
  42. if (err)
  43. goto bad_inode;
  44. goto done;
  45. }
  46. vhdr = HFSPLUS_SB(inode->i_sb)->s_vhdr;
  47. switch(inode->i_ino) {
  48. case HFSPLUS_ROOT_CNID:
  49. goto read_inode;
  50. case HFSPLUS_EXT_CNID:
  51. hfsplus_inode_read_fork(inode, &vhdr->ext_file);
  52. inode->i_mapping->a_ops = &hfsplus_btree_aops;
  53. break;
  54. case HFSPLUS_CAT_CNID:
  55. hfsplus_inode_read_fork(inode, &vhdr->cat_file);
  56. inode->i_mapping->a_ops = &hfsplus_btree_aops;
  57. break;
  58. case HFSPLUS_ALLOC_CNID:
  59. hfsplus_inode_read_fork(inode, &vhdr->alloc_file);
  60. inode->i_mapping->a_ops = &hfsplus_aops;
  61. break;
  62. case HFSPLUS_START_CNID:
  63. hfsplus_inode_read_fork(inode, &vhdr->start_file);
  64. break;
  65. case HFSPLUS_ATTR_CNID:
  66. hfsplus_inode_read_fork(inode, &vhdr->attr_file);
  67. inode->i_mapping->a_ops = &hfsplus_btree_aops;
  68. break;
  69. default:
  70. goto bad_inode;
  71. }
  72. done:
  73. unlock_new_inode(inode);
  74. return inode;
  75. bad_inode:
  76. iget_failed(inode);
  77. return ERR_PTR(err);
  78. }
  79. static int hfsplus_write_inode(struct inode *inode,
  80. struct writeback_control *wbc)
  81. {
  82. struct hfsplus_sb_info *sbi = HFSPLUS_SB(inode->i_sb);
  83. struct hfsplus_vh *vhdr;
  84. int ret = 0;
  85. dprint(DBG_INODE, "hfsplus_write_inode: %lu\n", inode->i_ino);
  86. hfsplus_ext_write_extent(inode);
  87. if (inode->i_ino >= HFSPLUS_FIRSTUSER_CNID) {
  88. return hfsplus_cat_write_inode(inode);
  89. }
  90. vhdr = sbi->s_vhdr;
  91. switch (inode->i_ino) {
  92. case HFSPLUS_ROOT_CNID:
  93. ret = hfsplus_cat_write_inode(inode);
  94. break;
  95. case HFSPLUS_EXT_CNID:
  96. if (vhdr->ext_file.total_size != cpu_to_be64(inode->i_size)) {
  97. sbi->flags |= HFSPLUS_SB_WRITEBACKUP;
  98. inode->i_sb->s_dirt = 1;
  99. }
  100. hfsplus_inode_write_fork(inode, &vhdr->ext_file);
  101. hfs_btree_write(sbi->ext_tree);
  102. break;
  103. case HFSPLUS_CAT_CNID:
  104. if (vhdr->cat_file.total_size != cpu_to_be64(inode->i_size)) {
  105. sbi->flags |= HFSPLUS_SB_WRITEBACKUP;
  106. inode->i_sb->s_dirt = 1;
  107. }
  108. hfsplus_inode_write_fork(inode, &vhdr->cat_file);
  109. hfs_btree_write(sbi->cat_tree);
  110. break;
  111. case HFSPLUS_ALLOC_CNID:
  112. if (vhdr->alloc_file.total_size != cpu_to_be64(inode->i_size)) {
  113. sbi->flags |= HFSPLUS_SB_WRITEBACKUP;
  114. inode->i_sb->s_dirt = 1;
  115. }
  116. hfsplus_inode_write_fork(inode, &vhdr->alloc_file);
  117. break;
  118. case HFSPLUS_START_CNID:
  119. if (vhdr->start_file.total_size != cpu_to_be64(inode->i_size)) {
  120. sbi->flags |= HFSPLUS_SB_WRITEBACKUP;
  121. inode->i_sb->s_dirt = 1;
  122. }
  123. hfsplus_inode_write_fork(inode, &vhdr->start_file);
  124. break;
  125. case HFSPLUS_ATTR_CNID:
  126. if (vhdr->attr_file.total_size != cpu_to_be64(inode->i_size)) {
  127. sbi->flags |= HFSPLUS_SB_WRITEBACKUP;
  128. inode->i_sb->s_dirt = 1;
  129. }
  130. hfsplus_inode_write_fork(inode, &vhdr->attr_file);
  131. hfs_btree_write(sbi->attr_tree);
  132. break;
  133. }
  134. return ret;
  135. }
  136. static void hfsplus_evict_inode(struct inode *inode)
  137. {
  138. dprint(DBG_INODE, "hfsplus_evict_inode: %lu\n", inode->i_ino);
  139. truncate_inode_pages(&inode->i_data, 0);
  140. end_writeback(inode);
  141. if (HFSPLUS_IS_RSRC(inode)) {
  142. HFSPLUS_I(HFSPLUS_I(inode).rsrc_inode).rsrc_inode = NULL;
  143. iput(HFSPLUS_I(inode).rsrc_inode);
  144. }
  145. }
  146. int hfsplus_sync_fs(struct super_block *sb, int wait)
  147. {
  148. struct hfsplus_sb_info *sbi = HFSPLUS_SB(sb);
  149. struct hfsplus_vh *vhdr = sbi->s_vhdr;
  150. dprint(DBG_SUPER, "hfsplus_write_super\n");
  151. mutex_lock(&sbi->alloc_mutex);
  152. sb->s_dirt = 0;
  153. vhdr->free_blocks = cpu_to_be32(sbi->free_blocks);
  154. vhdr->next_alloc = cpu_to_be32(sbi->next_alloc);
  155. vhdr->next_cnid = cpu_to_be32(sbi->next_cnid);
  156. vhdr->folder_count = cpu_to_be32(sbi->folder_count);
  157. vhdr->file_count = cpu_to_be32(sbi->file_count);
  158. mark_buffer_dirty(sbi->s_vhbh);
  159. if (sbi->flags & HFSPLUS_SB_WRITEBACKUP) {
  160. if (sbi->sect_count) {
  161. struct buffer_head *bh;
  162. u32 block, offset;
  163. block = sbi->blockoffset;
  164. block += (sbi->sect_count - 2) >> (sb->s_blocksize_bits - 9);
  165. offset = ((sbi->sect_count - 2) << 9) & (sb->s_blocksize - 1);
  166. printk(KERN_DEBUG "hfs: backup: %u,%u,%u,%u\n",
  167. sbi->blockoffset, sbi->sect_count,
  168. block, offset);
  169. bh = sb_bread(sb, block);
  170. if (bh) {
  171. vhdr = (struct hfsplus_vh *)(bh->b_data + offset);
  172. if (be16_to_cpu(vhdr->signature) == HFSPLUS_VOLHEAD_SIG) {
  173. memcpy(vhdr, sbi->s_vhdr, sizeof(*vhdr));
  174. mark_buffer_dirty(bh);
  175. brelse(bh);
  176. } else
  177. printk(KERN_WARNING "hfs: backup not found!\n");
  178. }
  179. }
  180. sbi->flags &= ~HFSPLUS_SB_WRITEBACKUP;
  181. }
  182. mutex_unlock(&sbi->alloc_mutex);
  183. return 0;
  184. }
  185. static void hfsplus_write_super(struct super_block *sb)
  186. {
  187. if (!(sb->s_flags & MS_RDONLY))
  188. hfsplus_sync_fs(sb, 1);
  189. else
  190. sb->s_dirt = 0;
  191. }
  192. static void hfsplus_put_super(struct super_block *sb)
  193. {
  194. struct hfsplus_sb_info *sbi = HFSPLUS_SB(sb);
  195. dprint(DBG_SUPER, "hfsplus_put_super\n");
  196. if (!sb->s_fs_info)
  197. return;
  198. if (sb->s_dirt)
  199. hfsplus_write_super(sb);
  200. if (!(sb->s_flags & MS_RDONLY) && sbi->s_vhdr) {
  201. struct hfsplus_vh *vhdr = sbi->s_vhdr;
  202. vhdr->modify_date = hfsp_now2mt();
  203. vhdr->attributes |= cpu_to_be32(HFSPLUS_VOL_UNMNT);
  204. vhdr->attributes &= cpu_to_be32(~HFSPLUS_VOL_INCNSTNT);
  205. mark_buffer_dirty(sbi->s_vhbh);
  206. sync_dirty_buffer(sbi->s_vhbh);
  207. }
  208. hfs_btree_close(sbi->cat_tree);
  209. hfs_btree_close(sbi->ext_tree);
  210. iput(sbi->alloc_file);
  211. iput(sbi->hidden_dir);
  212. brelse(sbi->s_vhbh);
  213. unload_nls(sbi->nls);
  214. kfree(sb->s_fs_info);
  215. sb->s_fs_info = NULL;
  216. }
  217. static int hfsplus_statfs(struct dentry *dentry, struct kstatfs *buf)
  218. {
  219. struct super_block *sb = dentry->d_sb;
  220. struct hfsplus_sb_info *sbi = HFSPLUS_SB(sb);
  221. u64 id = huge_encode_dev(sb->s_bdev->bd_dev);
  222. buf->f_type = HFSPLUS_SUPER_MAGIC;
  223. buf->f_bsize = sb->s_blocksize;
  224. buf->f_blocks = sbi->total_blocks << sbi->fs_shift;
  225. buf->f_bfree = sbi->free_blocks << sbi->fs_shift;
  226. buf->f_bavail = buf->f_bfree;
  227. buf->f_files = 0xFFFFFFFF;
  228. buf->f_ffree = 0xFFFFFFFF - sbi->next_cnid;
  229. buf->f_fsid.val[0] = (u32)id;
  230. buf->f_fsid.val[1] = (u32)(id >> 32);
  231. buf->f_namelen = HFSPLUS_MAX_STRLEN;
  232. return 0;
  233. }
  234. static int hfsplus_remount(struct super_block *sb, int *flags, char *data)
  235. {
  236. if ((*flags & MS_RDONLY) == (sb->s_flags & MS_RDONLY))
  237. return 0;
  238. if (!(*flags & MS_RDONLY)) {
  239. struct hfsplus_vh *vhdr = HFSPLUS_SB(sb)->s_vhdr;
  240. struct hfsplus_sb_info sbi;
  241. memset(&sbi, 0, sizeof(struct hfsplus_sb_info));
  242. sbi.nls = HFSPLUS_SB(sb)->nls;
  243. if (!hfsplus_parse_options(data, &sbi))
  244. return -EINVAL;
  245. if (!(vhdr->attributes & cpu_to_be32(HFSPLUS_VOL_UNMNT))) {
  246. printk(KERN_WARNING "hfs: filesystem was not cleanly unmounted, "
  247. "running fsck.hfsplus is recommended. leaving read-only.\n");
  248. sb->s_flags |= MS_RDONLY;
  249. *flags |= MS_RDONLY;
  250. } else if (sbi.flags & HFSPLUS_SB_FORCE) {
  251. /* nothing */
  252. } else if (vhdr->attributes & cpu_to_be32(HFSPLUS_VOL_SOFTLOCK)) {
  253. printk(KERN_WARNING "hfs: filesystem is marked locked, leaving read-only.\n");
  254. sb->s_flags |= MS_RDONLY;
  255. *flags |= MS_RDONLY;
  256. } else if (vhdr->attributes & cpu_to_be32(HFSPLUS_VOL_JOURNALED)) {
  257. printk(KERN_WARNING "hfs: filesystem is marked journaled, leaving read-only.\n");
  258. sb->s_flags |= MS_RDONLY;
  259. *flags |= MS_RDONLY;
  260. }
  261. }
  262. return 0;
  263. }
  264. static const struct super_operations hfsplus_sops = {
  265. .alloc_inode = hfsplus_alloc_inode,
  266. .destroy_inode = hfsplus_destroy_inode,
  267. .write_inode = hfsplus_write_inode,
  268. .evict_inode = hfsplus_evict_inode,
  269. .put_super = hfsplus_put_super,
  270. .write_super = hfsplus_write_super,
  271. .sync_fs = hfsplus_sync_fs,
  272. .statfs = hfsplus_statfs,
  273. .remount_fs = hfsplus_remount,
  274. .show_options = hfsplus_show_options,
  275. };
  276. static int hfsplus_fill_super(struct super_block *sb, void *data, int silent)
  277. {
  278. struct hfsplus_vh *vhdr;
  279. struct hfsplus_sb_info *sbi;
  280. hfsplus_cat_entry entry;
  281. struct hfs_find_data fd;
  282. struct inode *root, *inode;
  283. struct qstr str;
  284. struct nls_table *nls = NULL;
  285. int err = -EINVAL;
  286. sbi = kzalloc(sizeof(*sbi), GFP_KERNEL);
  287. if (!sbi)
  288. return -ENOMEM;
  289. sb->s_fs_info = sbi;
  290. INIT_HLIST_HEAD(&sbi->rsrc_inodes);
  291. mutex_init(&sbi->alloc_mutex);
  292. hfsplus_fill_defaults(sbi);
  293. if (!hfsplus_parse_options(data, sbi)) {
  294. printk(KERN_ERR "hfs: unable to parse mount options\n");
  295. err = -EINVAL;
  296. goto cleanup;
  297. }
  298. /* temporarily use utf8 to correctly find the hidden dir below */
  299. nls = sbi->nls;
  300. sbi->nls = load_nls("utf8");
  301. if (!sbi->nls) {
  302. printk(KERN_ERR "hfs: unable to load nls for utf8\n");
  303. err = -EINVAL;
  304. goto cleanup;
  305. }
  306. /* Grab the volume header */
  307. if (hfsplus_read_wrapper(sb)) {
  308. if (!silent)
  309. printk(KERN_WARNING "hfs: unable to find HFS+ superblock\n");
  310. err = -EINVAL;
  311. goto cleanup;
  312. }
  313. vhdr = sbi->s_vhdr;
  314. /* Copy parts of the volume header into the superblock */
  315. sb->s_magic = HFSPLUS_VOLHEAD_SIG;
  316. if (be16_to_cpu(vhdr->version) < HFSPLUS_MIN_VERSION ||
  317. be16_to_cpu(vhdr->version) > HFSPLUS_CURRENT_VERSION) {
  318. printk(KERN_ERR "hfs: wrong filesystem version\n");
  319. goto cleanup;
  320. }
  321. sbi->total_blocks = be32_to_cpu(vhdr->total_blocks);
  322. sbi->free_blocks = be32_to_cpu(vhdr->free_blocks);
  323. sbi->next_alloc = be32_to_cpu(vhdr->next_alloc);
  324. sbi->next_cnid = be32_to_cpu(vhdr->next_cnid);
  325. sbi->file_count = be32_to_cpu(vhdr->file_count);
  326. sbi->folder_count = be32_to_cpu(vhdr->folder_count);
  327. sbi->data_clump_blocks =
  328. be32_to_cpu(vhdr->data_clump_sz) >> sbi->alloc_blksz_shift;
  329. if (!sbi->data_clump_blocks)
  330. sbi->data_clump_blocks = 1;
  331. sbi->rsrc_clump_blocks =
  332. be32_to_cpu(vhdr->rsrc_clump_sz) >> sbi->alloc_blksz_shift;
  333. if (!sbi->rsrc_clump_blocks)
  334. sbi->rsrc_clump_blocks = 1;
  335. /* Set up operations so we can load metadata */
  336. sb->s_op = &hfsplus_sops;
  337. sb->s_maxbytes = MAX_LFS_FILESIZE;
  338. if (!(vhdr->attributes & cpu_to_be32(HFSPLUS_VOL_UNMNT))) {
  339. printk(KERN_WARNING "hfs: Filesystem was not cleanly unmounted, "
  340. "running fsck.hfsplus is recommended. mounting read-only.\n");
  341. sb->s_flags |= MS_RDONLY;
  342. } else if (sbi->flags & HFSPLUS_SB_FORCE) {
  343. /* nothing */
  344. } else if (vhdr->attributes & cpu_to_be32(HFSPLUS_VOL_SOFTLOCK)) {
  345. printk(KERN_WARNING "hfs: Filesystem is marked locked, mounting read-only.\n");
  346. sb->s_flags |= MS_RDONLY;
  347. } else if ((vhdr->attributes & cpu_to_be32(HFSPLUS_VOL_JOURNALED)) && !(sb->s_flags & MS_RDONLY)) {
  348. printk(KERN_WARNING "hfs: write access to a journaled filesystem is not supported, "
  349. "use the force option at your own risk, mounting read-only.\n");
  350. sb->s_flags |= MS_RDONLY;
  351. }
  352. sbi->flags &= ~HFSPLUS_SB_FORCE;
  353. /* Load metadata objects (B*Trees) */
  354. sbi->ext_tree = hfs_btree_open(sb, HFSPLUS_EXT_CNID);
  355. if (!sbi->ext_tree) {
  356. printk(KERN_ERR "hfs: failed to load extents file\n");
  357. goto cleanup;
  358. }
  359. sbi->cat_tree = hfs_btree_open(sb, HFSPLUS_CAT_CNID);
  360. if (!sbi->cat_tree) {
  361. printk(KERN_ERR "hfs: failed to load catalog file\n");
  362. goto cleanup;
  363. }
  364. inode = hfsplus_iget(sb, HFSPLUS_ALLOC_CNID);
  365. if (IS_ERR(inode)) {
  366. printk(KERN_ERR "hfs: failed to load allocation file\n");
  367. err = PTR_ERR(inode);
  368. goto cleanup;
  369. }
  370. sbi->alloc_file = inode;
  371. /* Load the root directory */
  372. root = hfsplus_iget(sb, HFSPLUS_ROOT_CNID);
  373. if (IS_ERR(root)) {
  374. printk(KERN_ERR "hfs: failed to load root directory\n");
  375. err = PTR_ERR(root);
  376. goto cleanup;
  377. }
  378. sb->s_root = d_alloc_root(root);
  379. if (!sb->s_root) {
  380. iput(root);
  381. err = -ENOMEM;
  382. goto cleanup;
  383. }
  384. sb->s_root->d_op = &hfsplus_dentry_operations;
  385. str.len = sizeof(HFSP_HIDDENDIR_NAME) - 1;
  386. str.name = HFSP_HIDDENDIR_NAME;
  387. hfs_find_init(sbi->cat_tree, &fd);
  388. hfsplus_cat_build_key(sb, fd.search_key, HFSPLUS_ROOT_CNID, &str);
  389. if (!hfs_brec_read(&fd, &entry, sizeof(entry))) {
  390. hfs_find_exit(&fd);
  391. if (entry.type != cpu_to_be16(HFSPLUS_FOLDER))
  392. goto cleanup;
  393. inode = hfsplus_iget(sb, be32_to_cpu(entry.folder.id));
  394. if (IS_ERR(inode)) {
  395. err = PTR_ERR(inode);
  396. goto cleanup;
  397. }
  398. sbi->hidden_dir = inode;
  399. } else
  400. hfs_find_exit(&fd);
  401. if (sb->s_flags & MS_RDONLY)
  402. goto out;
  403. /* H+LX == hfsplusutils, H+Lx == this driver, H+lx is unused
  404. * all three are registered with Apple for our use
  405. */
  406. vhdr->last_mount_vers = cpu_to_be32(HFSP_MOUNT_VERSION);
  407. vhdr->modify_date = hfsp_now2mt();
  408. be32_add_cpu(&vhdr->write_count, 1);
  409. vhdr->attributes &= cpu_to_be32(~HFSPLUS_VOL_UNMNT);
  410. vhdr->attributes |= cpu_to_be32(HFSPLUS_VOL_INCNSTNT);
  411. mark_buffer_dirty(sbi->s_vhbh);
  412. sync_dirty_buffer(sbi->s_vhbh);
  413. if (!sbi->hidden_dir) {
  414. printk(KERN_DEBUG "hfs: create hidden dir...\n");
  415. sbi->hidden_dir = hfsplus_new_inode(sb, S_IFDIR);
  416. hfsplus_create_cat(sbi->hidden_dir->i_ino, sb->s_root->d_inode,
  417. &str, sbi->hidden_dir);
  418. mark_inode_dirty(sbi->hidden_dir);
  419. }
  420. out:
  421. unload_nls(sbi->nls);
  422. sbi->nls = nls;
  423. return 0;
  424. cleanup:
  425. hfsplus_put_super(sb);
  426. unload_nls(nls);
  427. return err;
  428. }
  429. MODULE_AUTHOR("Brad Boyer");
  430. MODULE_DESCRIPTION("Extended Macintosh Filesystem");
  431. MODULE_LICENSE("GPL");
  432. static struct kmem_cache *hfsplus_inode_cachep;
  433. static struct inode *hfsplus_alloc_inode(struct super_block *sb)
  434. {
  435. struct hfsplus_inode_info *i;
  436. i = kmem_cache_alloc(hfsplus_inode_cachep, GFP_KERNEL);
  437. return i ? &i->vfs_inode : NULL;
  438. }
  439. static void hfsplus_destroy_inode(struct inode *inode)
  440. {
  441. kmem_cache_free(hfsplus_inode_cachep, &HFSPLUS_I(inode));
  442. }
  443. #define HFSPLUS_INODE_SIZE sizeof(struct hfsplus_inode_info)
  444. static int hfsplus_get_sb(struct file_system_type *fs_type,
  445. int flags, const char *dev_name, void *data,
  446. struct vfsmount *mnt)
  447. {
  448. return get_sb_bdev(fs_type, flags, dev_name, data, hfsplus_fill_super,
  449. mnt);
  450. }
  451. static struct file_system_type hfsplus_fs_type = {
  452. .owner = THIS_MODULE,
  453. .name = "hfsplus",
  454. .get_sb = hfsplus_get_sb,
  455. .kill_sb = kill_block_super,
  456. .fs_flags = FS_REQUIRES_DEV,
  457. };
  458. static void hfsplus_init_once(void *p)
  459. {
  460. struct hfsplus_inode_info *i = p;
  461. inode_init_once(&i->vfs_inode);
  462. }
  463. static int __init init_hfsplus_fs(void)
  464. {
  465. int err;
  466. hfsplus_inode_cachep = kmem_cache_create("hfsplus_icache",
  467. HFSPLUS_INODE_SIZE, 0, SLAB_HWCACHE_ALIGN,
  468. hfsplus_init_once);
  469. if (!hfsplus_inode_cachep)
  470. return -ENOMEM;
  471. err = register_filesystem(&hfsplus_fs_type);
  472. if (err)
  473. kmem_cache_destroy(hfsplus_inode_cachep);
  474. return err;
  475. }
  476. static void __exit exit_hfsplus_fs(void)
  477. {
  478. unregister_filesystem(&hfsplus_fs_type);
  479. kmem_cache_destroy(hfsplus_inode_cachep);
  480. }
  481. module_init(init_hfsplus_fs)
  482. module_exit(exit_hfsplus_fs)