inode.c 17 KB

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  1. /*
  2. * linux/fs/hfsplus/inode.c
  3. *
  4. * Copyright (C) 2001
  5. * Brad Boyer (flar@allandria.com)
  6. * (C) 2003 Ardis Technologies <roman@ardistech.com>
  7. *
  8. * Inode handling routines
  9. */
  10. #include <linux/mm.h>
  11. #include <linux/fs.h>
  12. #include <linux/pagemap.h>
  13. #include <linux/mpage.h>
  14. #include <linux/sched.h>
  15. #include "hfsplus_fs.h"
  16. #include "hfsplus_raw.h"
  17. static int hfsplus_readpage(struct file *file, struct page *page)
  18. {
  19. return block_read_full_page(page, hfsplus_get_block);
  20. }
  21. static int hfsplus_writepage(struct page *page, struct writeback_control *wbc)
  22. {
  23. return block_write_full_page(page, hfsplus_get_block, wbc);
  24. }
  25. static int hfsplus_write_begin(struct file *file, struct address_space *mapping,
  26. loff_t pos, unsigned len, unsigned flags,
  27. struct page **pagep, void **fsdata)
  28. {
  29. int ret;
  30. *pagep = NULL;
  31. ret = cont_write_begin(file, mapping, pos, len, flags, pagep, fsdata,
  32. hfsplus_get_block,
  33. &HFSPLUS_I(mapping->host)->phys_size);
  34. if (unlikely(ret)) {
  35. loff_t isize = mapping->host->i_size;
  36. if (pos + len > isize)
  37. vmtruncate(mapping->host, isize);
  38. }
  39. return ret;
  40. }
  41. static sector_t hfsplus_bmap(struct address_space *mapping, sector_t block)
  42. {
  43. return generic_block_bmap(mapping, block, hfsplus_get_block);
  44. }
  45. static int hfsplus_releasepage(struct page *page, gfp_t mask)
  46. {
  47. struct inode *inode = page->mapping->host;
  48. struct super_block *sb = inode->i_sb;
  49. struct hfs_btree *tree;
  50. struct hfs_bnode *node;
  51. u32 nidx;
  52. int i, res = 1;
  53. switch (inode->i_ino) {
  54. case HFSPLUS_EXT_CNID:
  55. tree = HFSPLUS_SB(sb)->ext_tree;
  56. break;
  57. case HFSPLUS_CAT_CNID:
  58. tree = HFSPLUS_SB(sb)->cat_tree;
  59. break;
  60. case HFSPLUS_ATTR_CNID:
  61. tree = HFSPLUS_SB(sb)->attr_tree;
  62. break;
  63. default:
  64. BUG();
  65. return 0;
  66. }
  67. if (!tree)
  68. return 0;
  69. if (tree->node_size >= PAGE_CACHE_SIZE) {
  70. nidx = page->index >> (tree->node_size_shift - PAGE_CACHE_SHIFT);
  71. spin_lock(&tree->hash_lock);
  72. node = hfs_bnode_findhash(tree, nidx);
  73. if (!node)
  74. ;
  75. else if (atomic_read(&node->refcnt))
  76. res = 0;
  77. if (res && node) {
  78. hfs_bnode_unhash(node);
  79. hfs_bnode_free(node);
  80. }
  81. spin_unlock(&tree->hash_lock);
  82. } else {
  83. nidx = page->index << (PAGE_CACHE_SHIFT - tree->node_size_shift);
  84. i = 1 << (PAGE_CACHE_SHIFT - tree->node_size_shift);
  85. spin_lock(&tree->hash_lock);
  86. do {
  87. node = hfs_bnode_findhash(tree, nidx++);
  88. if (!node)
  89. continue;
  90. if (atomic_read(&node->refcnt)) {
  91. res = 0;
  92. break;
  93. }
  94. hfs_bnode_unhash(node);
  95. hfs_bnode_free(node);
  96. } while (--i && nidx < tree->node_count);
  97. spin_unlock(&tree->hash_lock);
  98. }
  99. return res ? try_to_free_buffers(page) : 0;
  100. }
  101. static ssize_t hfsplus_direct_IO(int rw, struct kiocb *iocb,
  102. const struct iovec *iov, loff_t offset, unsigned long nr_segs)
  103. {
  104. struct file *file = iocb->ki_filp;
  105. struct inode *inode = file->f_path.dentry->d_inode->i_mapping->host;
  106. ssize_t ret;
  107. ret = blockdev_direct_IO(rw, iocb, inode, inode->i_sb->s_bdev, iov,
  108. offset, nr_segs, hfsplus_get_block, NULL);
  109. /*
  110. * In case of error extending write may have instantiated a few
  111. * blocks outside i_size. Trim these off again.
  112. */
  113. if (unlikely((rw & WRITE) && ret < 0)) {
  114. loff_t isize = i_size_read(inode);
  115. loff_t end = offset + iov_length(iov, nr_segs);
  116. if (end > isize)
  117. vmtruncate(inode, isize);
  118. }
  119. return ret;
  120. }
  121. static int hfsplus_writepages(struct address_space *mapping,
  122. struct writeback_control *wbc)
  123. {
  124. return mpage_writepages(mapping, wbc, hfsplus_get_block);
  125. }
  126. const struct address_space_operations hfsplus_btree_aops = {
  127. .readpage = hfsplus_readpage,
  128. .writepage = hfsplus_writepage,
  129. .sync_page = block_sync_page,
  130. .write_begin = hfsplus_write_begin,
  131. .write_end = generic_write_end,
  132. .bmap = hfsplus_bmap,
  133. .releasepage = hfsplus_releasepage,
  134. };
  135. const struct address_space_operations hfsplus_aops = {
  136. .readpage = hfsplus_readpage,
  137. .writepage = hfsplus_writepage,
  138. .sync_page = block_sync_page,
  139. .write_begin = hfsplus_write_begin,
  140. .write_end = generic_write_end,
  141. .bmap = hfsplus_bmap,
  142. .direct_IO = hfsplus_direct_IO,
  143. .writepages = hfsplus_writepages,
  144. };
  145. const struct dentry_operations hfsplus_dentry_operations = {
  146. .d_hash = hfsplus_hash_dentry,
  147. .d_compare = hfsplus_compare_dentry,
  148. };
  149. static struct dentry *hfsplus_file_lookup(struct inode *dir, struct dentry *dentry,
  150. struct nameidata *nd)
  151. {
  152. struct hfs_find_data fd;
  153. struct super_block *sb = dir->i_sb;
  154. struct inode *inode = NULL;
  155. struct hfsplus_inode_info *hip;
  156. int err;
  157. if (HFSPLUS_IS_RSRC(dir) || strcmp(dentry->d_name.name, "rsrc"))
  158. goto out;
  159. inode = HFSPLUS_I(dir)->rsrc_inode;
  160. if (inode)
  161. goto out;
  162. inode = new_inode(sb);
  163. if (!inode)
  164. return ERR_PTR(-ENOMEM);
  165. hip = HFSPLUS_I(inode);
  166. inode->i_ino = dir->i_ino;
  167. INIT_LIST_HEAD(&hip->open_dir_list);
  168. mutex_init(&hip->extents_lock);
  169. hip->flags = HFSPLUS_FLG_RSRC;
  170. hfs_find_init(HFSPLUS_SB(sb)->cat_tree, &fd);
  171. err = hfsplus_find_cat(sb, dir->i_ino, &fd);
  172. if (!err)
  173. err = hfsplus_cat_read_inode(inode, &fd);
  174. hfs_find_exit(&fd);
  175. if (err) {
  176. iput(inode);
  177. return ERR_PTR(err);
  178. }
  179. hip->rsrc_inode = dir;
  180. HFSPLUS_I(dir)->rsrc_inode = inode;
  181. igrab(dir);
  182. /*
  183. * __mark_inode_dirty expects inodes to be hashed. Since we don't
  184. * want resource fork inodes in the regular inode space, we make them
  185. * appear hashed, but do not put on any lists. hlist_del()
  186. * will work fine and require no locking.
  187. */
  188. inode->i_hash.pprev = &inode->i_hash.next;
  189. mark_inode_dirty(inode);
  190. out:
  191. d_add(dentry, inode);
  192. return NULL;
  193. }
  194. static void hfsplus_get_perms(struct inode *inode, struct hfsplus_perm *perms, int dir)
  195. {
  196. struct hfsplus_sb_info *sbi = HFSPLUS_SB(inode->i_sb);
  197. u16 mode;
  198. mode = be16_to_cpu(perms->mode);
  199. inode->i_uid = be32_to_cpu(perms->owner);
  200. if (!inode->i_uid && !mode)
  201. inode->i_uid = sbi->uid;
  202. inode->i_gid = be32_to_cpu(perms->group);
  203. if (!inode->i_gid && !mode)
  204. inode->i_gid = sbi->gid;
  205. if (dir) {
  206. mode = mode ? (mode & S_IALLUGO) : (S_IRWXUGO & ~(sbi->umask));
  207. mode |= S_IFDIR;
  208. } else if (!mode)
  209. mode = S_IFREG | ((S_IRUGO|S_IWUGO) & ~(sbi->umask));
  210. inode->i_mode = mode;
  211. HFSPLUS_I(inode)->rootflags = perms->rootflags;
  212. HFSPLUS_I(inode)->userflags = perms->userflags;
  213. if (perms->rootflags & HFSPLUS_FLG_IMMUTABLE)
  214. inode->i_flags |= S_IMMUTABLE;
  215. else
  216. inode->i_flags &= ~S_IMMUTABLE;
  217. if (perms->rootflags & HFSPLUS_FLG_APPEND)
  218. inode->i_flags |= S_APPEND;
  219. else
  220. inode->i_flags &= ~S_APPEND;
  221. }
  222. static void hfsplus_set_perms(struct inode *inode, struct hfsplus_perm *perms)
  223. {
  224. if (inode->i_flags & S_IMMUTABLE)
  225. perms->rootflags |= HFSPLUS_FLG_IMMUTABLE;
  226. else
  227. perms->rootflags &= ~HFSPLUS_FLG_IMMUTABLE;
  228. if (inode->i_flags & S_APPEND)
  229. perms->rootflags |= HFSPLUS_FLG_APPEND;
  230. else
  231. perms->rootflags &= ~HFSPLUS_FLG_APPEND;
  232. perms->userflags = HFSPLUS_I(inode)->userflags;
  233. perms->mode = cpu_to_be16(inode->i_mode);
  234. perms->owner = cpu_to_be32(inode->i_uid);
  235. perms->group = cpu_to_be32(inode->i_gid);
  236. perms->dev = cpu_to_be32(HFSPLUS_I(inode)->dev);
  237. }
  238. static int hfsplus_file_open(struct inode *inode, struct file *file)
  239. {
  240. if (HFSPLUS_IS_RSRC(inode))
  241. inode = HFSPLUS_I(inode)->rsrc_inode;
  242. if (!(file->f_flags & O_LARGEFILE) && i_size_read(inode) > MAX_NON_LFS)
  243. return -EOVERFLOW;
  244. atomic_inc(&HFSPLUS_I(inode)->opencnt);
  245. return 0;
  246. }
  247. static int hfsplus_file_release(struct inode *inode, struct file *file)
  248. {
  249. struct super_block *sb = inode->i_sb;
  250. if (HFSPLUS_IS_RSRC(inode))
  251. inode = HFSPLUS_I(inode)->rsrc_inode;
  252. if (atomic_dec_and_test(&HFSPLUS_I(inode)->opencnt)) {
  253. mutex_lock(&inode->i_mutex);
  254. hfsplus_file_truncate(inode);
  255. if (inode->i_flags & S_DEAD) {
  256. hfsplus_delete_cat(inode->i_ino,
  257. HFSPLUS_SB(sb)->hidden_dir, NULL);
  258. hfsplus_delete_inode(inode);
  259. }
  260. mutex_unlock(&inode->i_mutex);
  261. }
  262. return 0;
  263. }
  264. static int hfsplus_setattr(struct dentry *dentry, struct iattr *attr)
  265. {
  266. struct inode *inode = dentry->d_inode;
  267. int error;
  268. error = inode_change_ok(inode, attr);
  269. if (error)
  270. return error;
  271. if ((attr->ia_valid & ATTR_SIZE) &&
  272. attr->ia_size != i_size_read(inode)) {
  273. error = vmtruncate(inode, attr->ia_size);
  274. if (error)
  275. return error;
  276. }
  277. setattr_copy(inode, attr);
  278. mark_inode_dirty(inode);
  279. return 0;
  280. }
  281. static int hfsplus_file_fsync(struct file *filp, int datasync)
  282. {
  283. struct inode *inode = filp->f_mapping->host;
  284. struct super_block * sb;
  285. int ret, err;
  286. /* sync the inode to buffers */
  287. ret = write_inode_now(inode, 0);
  288. /* sync the superblock to buffers */
  289. sb = inode->i_sb;
  290. if (sb->s_dirt) {
  291. if (!(sb->s_flags & MS_RDONLY))
  292. hfsplus_sync_fs(sb, 1);
  293. else
  294. sb->s_dirt = 0;
  295. }
  296. /* .. finally sync the buffers to disk */
  297. err = sync_blockdev(sb->s_bdev);
  298. if (!ret)
  299. ret = err;
  300. return ret;
  301. }
  302. static const struct inode_operations hfsplus_file_inode_operations = {
  303. .lookup = hfsplus_file_lookup,
  304. .truncate = hfsplus_file_truncate,
  305. .setattr = hfsplus_setattr,
  306. .setxattr = hfsplus_setxattr,
  307. .getxattr = hfsplus_getxattr,
  308. .listxattr = hfsplus_listxattr,
  309. };
  310. static const struct file_operations hfsplus_file_operations = {
  311. .llseek = generic_file_llseek,
  312. .read = do_sync_read,
  313. .aio_read = generic_file_aio_read,
  314. .write = do_sync_write,
  315. .aio_write = generic_file_aio_write,
  316. .mmap = generic_file_mmap,
  317. .splice_read = generic_file_splice_read,
  318. .fsync = hfsplus_file_fsync,
  319. .open = hfsplus_file_open,
  320. .release = hfsplus_file_release,
  321. .unlocked_ioctl = hfsplus_ioctl,
  322. };
  323. struct inode *hfsplus_new_inode(struct super_block *sb, int mode)
  324. {
  325. struct hfsplus_sb_info *sbi = HFSPLUS_SB(sb);
  326. struct inode *inode = new_inode(sb);
  327. struct hfsplus_inode_info *hip;
  328. if (!inode)
  329. return NULL;
  330. inode->i_ino = sbi->next_cnid++;
  331. inode->i_mode = mode;
  332. inode->i_uid = current_fsuid();
  333. inode->i_gid = current_fsgid();
  334. inode->i_nlink = 1;
  335. inode->i_mtime = inode->i_atime = inode->i_ctime = CURRENT_TIME_SEC;
  336. hip = HFSPLUS_I(inode);
  337. INIT_LIST_HEAD(&hip->open_dir_list);
  338. mutex_init(&hip->extents_lock);
  339. atomic_set(&hip->opencnt, 0);
  340. hip->flags = 0;
  341. memset(hip->first_extents, 0, sizeof(hfsplus_extent_rec));
  342. memset(hip->cached_extents, 0, sizeof(hfsplus_extent_rec));
  343. hip->alloc_blocks = 0;
  344. hip->first_blocks = 0;
  345. hip->cached_start = 0;
  346. hip->cached_blocks = 0;
  347. hip->phys_size = 0;
  348. hip->fs_blocks = 0;
  349. hip->rsrc_inode = NULL;
  350. if (S_ISDIR(inode->i_mode)) {
  351. inode->i_size = 2;
  352. sbi->folder_count++;
  353. inode->i_op = &hfsplus_dir_inode_operations;
  354. inode->i_fop = &hfsplus_dir_operations;
  355. } else if (S_ISREG(inode->i_mode)) {
  356. sbi->file_count++;
  357. inode->i_op = &hfsplus_file_inode_operations;
  358. inode->i_fop = &hfsplus_file_operations;
  359. inode->i_mapping->a_ops = &hfsplus_aops;
  360. hip->clump_blocks = sbi->data_clump_blocks;
  361. } else if (S_ISLNK(inode->i_mode)) {
  362. sbi->file_count++;
  363. inode->i_op = &page_symlink_inode_operations;
  364. inode->i_mapping->a_ops = &hfsplus_aops;
  365. hip->clump_blocks = 1;
  366. } else
  367. sbi->file_count++;
  368. insert_inode_hash(inode);
  369. mark_inode_dirty(inode);
  370. sb->s_dirt = 1;
  371. return inode;
  372. }
  373. void hfsplus_delete_inode(struct inode *inode)
  374. {
  375. struct super_block *sb = inode->i_sb;
  376. if (S_ISDIR(inode->i_mode)) {
  377. HFSPLUS_SB(sb)->folder_count--;
  378. sb->s_dirt = 1;
  379. return;
  380. }
  381. HFSPLUS_SB(sb)->file_count--;
  382. if (S_ISREG(inode->i_mode)) {
  383. if (!inode->i_nlink) {
  384. inode->i_size = 0;
  385. hfsplus_file_truncate(inode);
  386. }
  387. } else if (S_ISLNK(inode->i_mode)) {
  388. inode->i_size = 0;
  389. hfsplus_file_truncate(inode);
  390. }
  391. sb->s_dirt = 1;
  392. }
  393. void hfsplus_inode_read_fork(struct inode *inode, struct hfsplus_fork_raw *fork)
  394. {
  395. struct super_block *sb = inode->i_sb;
  396. struct hfsplus_sb_info *sbi = HFSPLUS_SB(sb);
  397. struct hfsplus_inode_info *hip = HFSPLUS_I(inode);
  398. u32 count;
  399. int i;
  400. memcpy(&hip->first_extents, &fork->extents, sizeof(hfsplus_extent_rec));
  401. for (count = 0, i = 0; i < 8; i++)
  402. count += be32_to_cpu(fork->extents[i].block_count);
  403. hip->first_blocks = count;
  404. memset(hip->cached_extents, 0, sizeof(hfsplus_extent_rec));
  405. hip->cached_start = 0;
  406. hip->cached_blocks = 0;
  407. hip->alloc_blocks = be32_to_cpu(fork->total_blocks);
  408. hip->phys_size = inode->i_size = be64_to_cpu(fork->total_size);
  409. hip->fs_blocks =
  410. (inode->i_size + sb->s_blocksize - 1) >> sb->s_blocksize_bits;
  411. inode_set_bytes(inode, hip->fs_blocks << sb->s_blocksize_bits);
  412. hip->clump_blocks =
  413. be32_to_cpu(fork->clump_size) >> sbi->alloc_blksz_shift;
  414. if (!hip->clump_blocks) {
  415. hip->clump_blocks = HFSPLUS_IS_RSRC(inode) ?
  416. sbi->rsrc_clump_blocks :
  417. sbi->data_clump_blocks;
  418. }
  419. }
  420. void hfsplus_inode_write_fork(struct inode *inode, struct hfsplus_fork_raw *fork)
  421. {
  422. memcpy(&fork->extents, &HFSPLUS_I(inode)->first_extents,
  423. sizeof(hfsplus_extent_rec));
  424. fork->total_size = cpu_to_be64(inode->i_size);
  425. fork->total_blocks = cpu_to_be32(HFSPLUS_I(inode)->alloc_blocks);
  426. }
  427. int hfsplus_cat_read_inode(struct inode *inode, struct hfs_find_data *fd)
  428. {
  429. hfsplus_cat_entry entry;
  430. int res = 0;
  431. u16 type;
  432. type = hfs_bnode_read_u16(fd->bnode, fd->entryoffset);
  433. HFSPLUS_I(inode)->dev = 0;
  434. if (type == HFSPLUS_FOLDER) {
  435. struct hfsplus_cat_folder *folder = &entry.folder;
  436. if (fd->entrylength < sizeof(struct hfsplus_cat_folder))
  437. /* panic? */;
  438. hfs_bnode_read(fd->bnode, &entry, fd->entryoffset,
  439. sizeof(struct hfsplus_cat_folder));
  440. hfsplus_get_perms(inode, &folder->permissions, 1);
  441. inode->i_nlink = 1;
  442. inode->i_size = 2 + be32_to_cpu(folder->valence);
  443. inode->i_atime = hfsp_mt2ut(folder->access_date);
  444. inode->i_mtime = hfsp_mt2ut(folder->content_mod_date);
  445. inode->i_ctime = hfsp_mt2ut(folder->attribute_mod_date);
  446. HFSPLUS_I(inode)->create_date = folder->create_date;
  447. HFSPLUS_I(inode)->fs_blocks = 0;
  448. inode->i_op = &hfsplus_dir_inode_operations;
  449. inode->i_fop = &hfsplus_dir_operations;
  450. } else if (type == HFSPLUS_FILE) {
  451. struct hfsplus_cat_file *file = &entry.file;
  452. if (fd->entrylength < sizeof(struct hfsplus_cat_file))
  453. /* panic? */;
  454. hfs_bnode_read(fd->bnode, &entry, fd->entryoffset,
  455. sizeof(struct hfsplus_cat_file));
  456. hfsplus_inode_read_fork(inode, HFSPLUS_IS_DATA(inode) ?
  457. &file->data_fork : &file->rsrc_fork);
  458. hfsplus_get_perms(inode, &file->permissions, 0);
  459. inode->i_nlink = 1;
  460. if (S_ISREG(inode->i_mode)) {
  461. if (file->permissions.dev)
  462. inode->i_nlink = be32_to_cpu(file->permissions.dev);
  463. inode->i_op = &hfsplus_file_inode_operations;
  464. inode->i_fop = &hfsplus_file_operations;
  465. inode->i_mapping->a_ops = &hfsplus_aops;
  466. } else if (S_ISLNK(inode->i_mode)) {
  467. inode->i_op = &page_symlink_inode_operations;
  468. inode->i_mapping->a_ops = &hfsplus_aops;
  469. } else {
  470. init_special_inode(inode, inode->i_mode,
  471. be32_to_cpu(file->permissions.dev));
  472. }
  473. inode->i_atime = hfsp_mt2ut(file->access_date);
  474. inode->i_mtime = hfsp_mt2ut(file->content_mod_date);
  475. inode->i_ctime = hfsp_mt2ut(file->attribute_mod_date);
  476. HFSPLUS_I(inode)->create_date = file->create_date;
  477. } else {
  478. printk(KERN_ERR "hfs: bad catalog entry used to create inode\n");
  479. res = -EIO;
  480. }
  481. return res;
  482. }
  483. int hfsplus_cat_write_inode(struct inode *inode)
  484. {
  485. struct inode *main_inode = inode;
  486. struct hfs_find_data fd;
  487. hfsplus_cat_entry entry;
  488. if (HFSPLUS_IS_RSRC(inode))
  489. main_inode = HFSPLUS_I(inode)->rsrc_inode;
  490. if (!main_inode->i_nlink)
  491. return 0;
  492. if (hfs_find_init(HFSPLUS_SB(main_inode->i_sb)->cat_tree, &fd))
  493. /* panic? */
  494. return -EIO;
  495. if (hfsplus_find_cat(main_inode->i_sb, main_inode->i_ino, &fd))
  496. /* panic? */
  497. goto out;
  498. if (S_ISDIR(main_inode->i_mode)) {
  499. struct hfsplus_cat_folder *folder = &entry.folder;
  500. if (fd.entrylength < sizeof(struct hfsplus_cat_folder))
  501. /* panic? */;
  502. hfs_bnode_read(fd.bnode, &entry, fd.entryoffset,
  503. sizeof(struct hfsplus_cat_folder));
  504. /* simple node checks? */
  505. hfsplus_set_perms(inode, &folder->permissions);
  506. folder->access_date = hfsp_ut2mt(inode->i_atime);
  507. folder->content_mod_date = hfsp_ut2mt(inode->i_mtime);
  508. folder->attribute_mod_date = hfsp_ut2mt(inode->i_ctime);
  509. folder->valence = cpu_to_be32(inode->i_size - 2);
  510. hfs_bnode_write(fd.bnode, &entry, fd.entryoffset,
  511. sizeof(struct hfsplus_cat_folder));
  512. } else if (HFSPLUS_IS_RSRC(inode)) {
  513. struct hfsplus_cat_file *file = &entry.file;
  514. hfs_bnode_read(fd.bnode, &entry, fd.entryoffset,
  515. sizeof(struct hfsplus_cat_file));
  516. hfsplus_inode_write_fork(inode, &file->rsrc_fork);
  517. hfs_bnode_write(fd.bnode, &entry, fd.entryoffset,
  518. sizeof(struct hfsplus_cat_file));
  519. } else {
  520. struct hfsplus_cat_file *file = &entry.file;
  521. if (fd.entrylength < sizeof(struct hfsplus_cat_file))
  522. /* panic? */;
  523. hfs_bnode_read(fd.bnode, &entry, fd.entryoffset,
  524. sizeof(struct hfsplus_cat_file));
  525. hfsplus_inode_write_fork(inode, &file->data_fork);
  526. if (S_ISREG(inode->i_mode))
  527. HFSPLUS_I(inode)->dev = inode->i_nlink;
  528. if (S_ISCHR(inode->i_mode) || S_ISBLK(inode->i_mode))
  529. HFSPLUS_I(inode)->dev = kdev_t_to_nr(inode->i_rdev);
  530. hfsplus_set_perms(inode, &file->permissions);
  531. if ((file->permissions.rootflags | file->permissions.userflags) & HFSPLUS_FLG_IMMUTABLE)
  532. file->flags |= cpu_to_be16(HFSPLUS_FILE_LOCKED);
  533. else
  534. file->flags &= cpu_to_be16(~HFSPLUS_FILE_LOCKED);
  535. file->access_date = hfsp_ut2mt(inode->i_atime);
  536. file->content_mod_date = hfsp_ut2mt(inode->i_mtime);
  537. file->attribute_mod_date = hfsp_ut2mt(inode->i_ctime);
  538. hfs_bnode_write(fd.bnode, &entry, fd.entryoffset,
  539. sizeof(struct hfsplus_cat_file));
  540. }
  541. out:
  542. hfs_find_exit(&fd);
  543. return 0;
  544. }