inode.c 18 KB

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  1. /*
  2. * linux/fs/minix/inode.c
  3. *
  4. * Copyright (C) 1991, 1992 Linus Torvalds
  5. *
  6. * Copyright (C) 1996 Gertjan van Wingerde
  7. * Minix V2 fs support.
  8. *
  9. * Modified for 680x0 by Andreas Schwab
  10. * Updated to filesystem version 3 by Daniel Aragones
  11. */
  12. #include <linux/module.h>
  13. #include "minix.h"
  14. #include <linux/buffer_head.h>
  15. #include <linux/slab.h>
  16. #include <linux/init.h>
  17. #include <linux/highuid.h>
  18. #include <linux/vfs.h>
  19. #include <linux/writeback.h>
  20. static int minix_write_inode(struct inode *inode,
  21. struct writeback_control *wbc);
  22. static int minix_statfs(struct dentry *dentry, struct kstatfs *buf);
  23. static int minix_remount (struct super_block * sb, int * flags, char * data);
  24. static void minix_evict_inode(struct inode *inode)
  25. {
  26. truncate_inode_pages(&inode->i_data, 0);
  27. if (!inode->i_nlink) {
  28. inode->i_size = 0;
  29. minix_truncate(inode);
  30. }
  31. invalidate_inode_buffers(inode);
  32. end_writeback(inode);
  33. if (!inode->i_nlink)
  34. minix_free_inode(inode);
  35. }
  36. static void minix_put_super(struct super_block *sb)
  37. {
  38. int i;
  39. struct minix_sb_info *sbi = minix_sb(sb);
  40. if (!(sb->s_flags & MS_RDONLY)) {
  41. if (sbi->s_version != MINIX_V3) /* s_state is now out from V3 sb */
  42. sbi->s_ms->s_state = sbi->s_mount_state;
  43. mark_buffer_dirty(sbi->s_sbh);
  44. }
  45. for (i = 0; i < sbi->s_imap_blocks; i++)
  46. brelse(sbi->s_imap[i]);
  47. for (i = 0; i < sbi->s_zmap_blocks; i++)
  48. brelse(sbi->s_zmap[i]);
  49. brelse (sbi->s_sbh);
  50. kfree(sbi->s_imap);
  51. sb->s_fs_info = NULL;
  52. kfree(sbi);
  53. }
  54. static struct kmem_cache * minix_inode_cachep;
  55. static struct inode *minix_alloc_inode(struct super_block *sb)
  56. {
  57. struct minix_inode_info *ei;
  58. ei = (struct minix_inode_info *)kmem_cache_alloc(minix_inode_cachep, GFP_KERNEL);
  59. if (!ei)
  60. return NULL;
  61. return &ei->vfs_inode;
  62. }
  63. static void minix_i_callback(struct rcu_head *head)
  64. {
  65. struct inode *inode = container_of(head, struct inode, i_rcu);
  66. kmem_cache_free(minix_inode_cachep, minix_i(inode));
  67. }
  68. static void minix_destroy_inode(struct inode *inode)
  69. {
  70. call_rcu(&inode->i_rcu, minix_i_callback);
  71. }
  72. static void init_once(void *foo)
  73. {
  74. struct minix_inode_info *ei = (struct minix_inode_info *) foo;
  75. inode_init_once(&ei->vfs_inode);
  76. }
  77. static int init_inodecache(void)
  78. {
  79. minix_inode_cachep = kmem_cache_create("minix_inode_cache",
  80. sizeof(struct minix_inode_info),
  81. 0, (SLAB_RECLAIM_ACCOUNT|
  82. SLAB_MEM_SPREAD),
  83. init_once);
  84. if (minix_inode_cachep == NULL)
  85. return -ENOMEM;
  86. return 0;
  87. }
  88. static void destroy_inodecache(void)
  89. {
  90. kmem_cache_destroy(minix_inode_cachep);
  91. }
  92. static const struct super_operations minix_sops = {
  93. .alloc_inode = minix_alloc_inode,
  94. .destroy_inode = minix_destroy_inode,
  95. .write_inode = minix_write_inode,
  96. .evict_inode = minix_evict_inode,
  97. .put_super = minix_put_super,
  98. .statfs = minix_statfs,
  99. .remount_fs = minix_remount,
  100. };
  101. static int minix_remount (struct super_block * sb, int * flags, char * data)
  102. {
  103. struct minix_sb_info * sbi = minix_sb(sb);
  104. struct minix_super_block * ms;
  105. ms = sbi->s_ms;
  106. if ((*flags & MS_RDONLY) == (sb->s_flags & MS_RDONLY))
  107. return 0;
  108. if (*flags & MS_RDONLY) {
  109. if (ms->s_state & MINIX_VALID_FS ||
  110. !(sbi->s_mount_state & MINIX_VALID_FS))
  111. return 0;
  112. /* Mounting a rw partition read-only. */
  113. if (sbi->s_version != MINIX_V3)
  114. ms->s_state = sbi->s_mount_state;
  115. mark_buffer_dirty(sbi->s_sbh);
  116. } else {
  117. /* Mount a partition which is read-only, read-write. */
  118. if (sbi->s_version != MINIX_V3) {
  119. sbi->s_mount_state = ms->s_state;
  120. ms->s_state &= ~MINIX_VALID_FS;
  121. } else {
  122. sbi->s_mount_state = MINIX_VALID_FS;
  123. }
  124. mark_buffer_dirty(sbi->s_sbh);
  125. if (!(sbi->s_mount_state & MINIX_VALID_FS))
  126. printk("MINIX-fs warning: remounting unchecked fs, "
  127. "running fsck is recommended\n");
  128. else if ((sbi->s_mount_state & MINIX_ERROR_FS))
  129. printk("MINIX-fs warning: remounting fs with errors, "
  130. "running fsck is recommended\n");
  131. }
  132. return 0;
  133. }
  134. static int minix_fill_super(struct super_block *s, void *data, int silent)
  135. {
  136. struct buffer_head *bh;
  137. struct buffer_head **map;
  138. struct minix_super_block *ms;
  139. struct minix3_super_block *m3s = NULL;
  140. unsigned long i, block;
  141. struct inode *root_inode;
  142. struct minix_sb_info *sbi;
  143. int ret = -EINVAL;
  144. sbi = kzalloc(sizeof(struct minix_sb_info), GFP_KERNEL);
  145. if (!sbi)
  146. return -ENOMEM;
  147. s->s_fs_info = sbi;
  148. BUILD_BUG_ON(32 != sizeof (struct minix_inode));
  149. BUILD_BUG_ON(64 != sizeof(struct minix2_inode));
  150. if (!sb_set_blocksize(s, BLOCK_SIZE))
  151. goto out_bad_hblock;
  152. if (!(bh = sb_bread(s, 1)))
  153. goto out_bad_sb;
  154. ms = (struct minix_super_block *) bh->b_data;
  155. sbi->s_ms = ms;
  156. sbi->s_sbh = bh;
  157. sbi->s_mount_state = ms->s_state;
  158. sbi->s_ninodes = ms->s_ninodes;
  159. sbi->s_nzones = ms->s_nzones;
  160. sbi->s_imap_blocks = ms->s_imap_blocks;
  161. sbi->s_zmap_blocks = ms->s_zmap_blocks;
  162. sbi->s_firstdatazone = ms->s_firstdatazone;
  163. sbi->s_log_zone_size = ms->s_log_zone_size;
  164. sbi->s_max_size = ms->s_max_size;
  165. s->s_magic = ms->s_magic;
  166. if (s->s_magic == MINIX_SUPER_MAGIC) {
  167. sbi->s_version = MINIX_V1;
  168. sbi->s_dirsize = 16;
  169. sbi->s_namelen = 14;
  170. sbi->s_link_max = MINIX_LINK_MAX;
  171. } else if (s->s_magic == MINIX_SUPER_MAGIC2) {
  172. sbi->s_version = MINIX_V1;
  173. sbi->s_dirsize = 32;
  174. sbi->s_namelen = 30;
  175. sbi->s_link_max = MINIX_LINK_MAX;
  176. } else if (s->s_magic == MINIX2_SUPER_MAGIC) {
  177. sbi->s_version = MINIX_V2;
  178. sbi->s_nzones = ms->s_zones;
  179. sbi->s_dirsize = 16;
  180. sbi->s_namelen = 14;
  181. sbi->s_link_max = MINIX2_LINK_MAX;
  182. } else if (s->s_magic == MINIX2_SUPER_MAGIC2) {
  183. sbi->s_version = MINIX_V2;
  184. sbi->s_nzones = ms->s_zones;
  185. sbi->s_dirsize = 32;
  186. sbi->s_namelen = 30;
  187. sbi->s_link_max = MINIX2_LINK_MAX;
  188. } else if ( *(__u16 *)(bh->b_data + 24) == MINIX3_SUPER_MAGIC) {
  189. m3s = (struct minix3_super_block *) bh->b_data;
  190. s->s_magic = m3s->s_magic;
  191. sbi->s_imap_blocks = m3s->s_imap_blocks;
  192. sbi->s_zmap_blocks = m3s->s_zmap_blocks;
  193. sbi->s_firstdatazone = m3s->s_firstdatazone;
  194. sbi->s_log_zone_size = m3s->s_log_zone_size;
  195. sbi->s_max_size = m3s->s_max_size;
  196. sbi->s_ninodes = m3s->s_ninodes;
  197. sbi->s_nzones = m3s->s_zones;
  198. sbi->s_dirsize = 64;
  199. sbi->s_namelen = 60;
  200. sbi->s_version = MINIX_V3;
  201. sbi->s_link_max = MINIX2_LINK_MAX;
  202. sbi->s_mount_state = MINIX_VALID_FS;
  203. sb_set_blocksize(s, m3s->s_blocksize);
  204. } else
  205. goto out_no_fs;
  206. /*
  207. * Allocate the buffer map to keep the superblock small.
  208. */
  209. if (sbi->s_imap_blocks == 0 || sbi->s_zmap_blocks == 0)
  210. goto out_illegal_sb;
  211. i = (sbi->s_imap_blocks + sbi->s_zmap_blocks) * sizeof(bh);
  212. map = kzalloc(i, GFP_KERNEL);
  213. if (!map)
  214. goto out_no_map;
  215. sbi->s_imap = &map[0];
  216. sbi->s_zmap = &map[sbi->s_imap_blocks];
  217. block=2;
  218. for (i=0 ; i < sbi->s_imap_blocks ; i++) {
  219. if (!(sbi->s_imap[i]=sb_bread(s, block)))
  220. goto out_no_bitmap;
  221. block++;
  222. }
  223. for (i=0 ; i < sbi->s_zmap_blocks ; i++) {
  224. if (!(sbi->s_zmap[i]=sb_bread(s, block)))
  225. goto out_no_bitmap;
  226. block++;
  227. }
  228. minix_set_bit(0,sbi->s_imap[0]->b_data);
  229. minix_set_bit(0,sbi->s_zmap[0]->b_data);
  230. /* set up enough so that it can read an inode */
  231. s->s_op = &minix_sops;
  232. root_inode = minix_iget(s, MINIX_ROOT_INO);
  233. if (IS_ERR(root_inode)) {
  234. ret = PTR_ERR(root_inode);
  235. goto out_no_root;
  236. }
  237. /* Apparently minix can create filesystems that allocate more blocks for
  238. * the bitmaps than needed. We simply ignore that, but verify it didn't
  239. * create one with not enough blocks and bail out if so.
  240. */
  241. block = minix_blocks_needed(sbi->s_ninodes, s->s_blocksize);
  242. if (sbi->s_imap_blocks < block) {
  243. printk("MINIX-fs: file system does not have enough "
  244. "imap blocks allocated. Refusing to mount\n");
  245. goto out_iput;
  246. }
  247. block = minix_blocks_needed(
  248. (sbi->s_nzones - (sbi->s_firstdatazone + 1)),
  249. s->s_blocksize);
  250. if (sbi->s_zmap_blocks < block) {
  251. printk("MINIX-fs: file system does not have enough "
  252. "zmap blocks allocated. Refusing to mount.\n");
  253. goto out_iput;
  254. }
  255. ret = -ENOMEM;
  256. s->s_root = d_alloc_root(root_inode);
  257. if (!s->s_root)
  258. goto out_iput;
  259. if (!(s->s_flags & MS_RDONLY)) {
  260. if (sbi->s_version != MINIX_V3) /* s_state is now out from V3 sb */
  261. ms->s_state &= ~MINIX_VALID_FS;
  262. mark_buffer_dirty(bh);
  263. }
  264. if (!(sbi->s_mount_state & MINIX_VALID_FS))
  265. printk("MINIX-fs: mounting unchecked file system, "
  266. "running fsck is recommended\n");
  267. else if (sbi->s_mount_state & MINIX_ERROR_FS)
  268. printk("MINIX-fs: mounting file system with errors, "
  269. "running fsck is recommended\n");
  270. return 0;
  271. out_iput:
  272. iput(root_inode);
  273. goto out_freemap;
  274. out_no_root:
  275. if (!silent)
  276. printk("MINIX-fs: get root inode failed\n");
  277. goto out_freemap;
  278. out_no_bitmap:
  279. printk("MINIX-fs: bad superblock or unable to read bitmaps\n");
  280. out_freemap:
  281. for (i = 0; i < sbi->s_imap_blocks; i++)
  282. brelse(sbi->s_imap[i]);
  283. for (i = 0; i < sbi->s_zmap_blocks; i++)
  284. brelse(sbi->s_zmap[i]);
  285. kfree(sbi->s_imap);
  286. goto out_release;
  287. out_no_map:
  288. ret = -ENOMEM;
  289. if (!silent)
  290. printk("MINIX-fs: can't allocate map\n");
  291. goto out_release;
  292. out_illegal_sb:
  293. if (!silent)
  294. printk("MINIX-fs: bad superblock\n");
  295. goto out_release;
  296. out_no_fs:
  297. if (!silent)
  298. printk("VFS: Can't find a Minix filesystem V1 | V2 | V3 "
  299. "on device %s.\n", s->s_id);
  300. out_release:
  301. brelse(bh);
  302. goto out;
  303. out_bad_hblock:
  304. printk("MINIX-fs: blocksize too small for device\n");
  305. goto out;
  306. out_bad_sb:
  307. printk("MINIX-fs: unable to read superblock\n");
  308. out:
  309. s->s_fs_info = NULL;
  310. kfree(sbi);
  311. return ret;
  312. }
  313. static int minix_statfs(struct dentry *dentry, struct kstatfs *buf)
  314. {
  315. struct super_block *sb = dentry->d_sb;
  316. struct minix_sb_info *sbi = minix_sb(sb);
  317. u64 id = huge_encode_dev(sb->s_bdev->bd_dev);
  318. buf->f_type = sb->s_magic;
  319. buf->f_bsize = sb->s_blocksize;
  320. buf->f_blocks = (sbi->s_nzones - sbi->s_firstdatazone) << sbi->s_log_zone_size;
  321. buf->f_bfree = minix_count_free_blocks(sb);
  322. buf->f_bavail = buf->f_bfree;
  323. buf->f_files = sbi->s_ninodes;
  324. buf->f_ffree = minix_count_free_inodes(sb);
  325. buf->f_namelen = sbi->s_namelen;
  326. buf->f_fsid.val[0] = (u32)id;
  327. buf->f_fsid.val[1] = (u32)(id >> 32);
  328. return 0;
  329. }
  330. static int minix_get_block(struct inode *inode, sector_t block,
  331. struct buffer_head *bh_result, int create)
  332. {
  333. if (INODE_VERSION(inode) == MINIX_V1)
  334. return V1_minix_get_block(inode, block, bh_result, create);
  335. else
  336. return V2_minix_get_block(inode, block, bh_result, create);
  337. }
  338. static int minix_writepage(struct page *page, struct writeback_control *wbc)
  339. {
  340. return block_write_full_page(page, minix_get_block, wbc);
  341. }
  342. static int minix_readpage(struct file *file, struct page *page)
  343. {
  344. return block_read_full_page(page,minix_get_block);
  345. }
  346. int minix_prepare_chunk(struct page *page, loff_t pos, unsigned len)
  347. {
  348. return __block_write_begin(page, pos, len, minix_get_block);
  349. }
  350. static int minix_write_begin(struct file *file, struct address_space *mapping,
  351. loff_t pos, unsigned len, unsigned flags,
  352. struct page **pagep, void **fsdata)
  353. {
  354. int ret;
  355. ret = block_write_begin(mapping, pos, len, flags, pagep,
  356. minix_get_block);
  357. if (unlikely(ret)) {
  358. loff_t isize = mapping->host->i_size;
  359. if (pos + len > isize)
  360. vmtruncate(mapping->host, isize);
  361. }
  362. return ret;
  363. }
  364. static sector_t minix_bmap(struct address_space *mapping, sector_t block)
  365. {
  366. return generic_block_bmap(mapping,block,minix_get_block);
  367. }
  368. static const struct address_space_operations minix_aops = {
  369. .readpage = minix_readpage,
  370. .writepage = minix_writepage,
  371. .write_begin = minix_write_begin,
  372. .write_end = generic_write_end,
  373. .bmap = minix_bmap
  374. };
  375. static const struct inode_operations minix_symlink_inode_operations = {
  376. .readlink = generic_readlink,
  377. .follow_link = page_follow_link_light,
  378. .put_link = page_put_link,
  379. .getattr = minix_getattr,
  380. };
  381. void minix_set_inode(struct inode *inode, dev_t rdev)
  382. {
  383. if (S_ISREG(inode->i_mode)) {
  384. inode->i_op = &minix_file_inode_operations;
  385. inode->i_fop = &minix_file_operations;
  386. inode->i_mapping->a_ops = &minix_aops;
  387. } else if (S_ISDIR(inode->i_mode)) {
  388. inode->i_op = &minix_dir_inode_operations;
  389. inode->i_fop = &minix_dir_operations;
  390. inode->i_mapping->a_ops = &minix_aops;
  391. } else if (S_ISLNK(inode->i_mode)) {
  392. inode->i_op = &minix_symlink_inode_operations;
  393. inode->i_mapping->a_ops = &minix_aops;
  394. } else
  395. init_special_inode(inode, inode->i_mode, rdev);
  396. }
  397. /*
  398. * The minix V1 function to read an inode.
  399. */
  400. static struct inode *V1_minix_iget(struct inode *inode)
  401. {
  402. struct buffer_head * bh;
  403. struct minix_inode * raw_inode;
  404. struct minix_inode_info *minix_inode = minix_i(inode);
  405. int i;
  406. raw_inode = minix_V1_raw_inode(inode->i_sb, inode->i_ino, &bh);
  407. if (!raw_inode) {
  408. iget_failed(inode);
  409. return ERR_PTR(-EIO);
  410. }
  411. inode->i_mode = raw_inode->i_mode;
  412. inode->i_uid = (uid_t)raw_inode->i_uid;
  413. inode->i_gid = (gid_t)raw_inode->i_gid;
  414. set_nlink(inode, raw_inode->i_nlinks);
  415. inode->i_size = raw_inode->i_size;
  416. inode->i_mtime.tv_sec = inode->i_atime.tv_sec = inode->i_ctime.tv_sec = raw_inode->i_time;
  417. inode->i_mtime.tv_nsec = 0;
  418. inode->i_atime.tv_nsec = 0;
  419. inode->i_ctime.tv_nsec = 0;
  420. inode->i_blocks = 0;
  421. for (i = 0; i < 9; i++)
  422. minix_inode->u.i1_data[i] = raw_inode->i_zone[i];
  423. minix_set_inode(inode, old_decode_dev(raw_inode->i_zone[0]));
  424. brelse(bh);
  425. unlock_new_inode(inode);
  426. return inode;
  427. }
  428. /*
  429. * The minix V2 function to read an inode.
  430. */
  431. static struct inode *V2_minix_iget(struct inode *inode)
  432. {
  433. struct buffer_head * bh;
  434. struct minix2_inode * raw_inode;
  435. struct minix_inode_info *minix_inode = minix_i(inode);
  436. int i;
  437. raw_inode = minix_V2_raw_inode(inode->i_sb, inode->i_ino, &bh);
  438. if (!raw_inode) {
  439. iget_failed(inode);
  440. return ERR_PTR(-EIO);
  441. }
  442. inode->i_mode = raw_inode->i_mode;
  443. inode->i_uid = (uid_t)raw_inode->i_uid;
  444. inode->i_gid = (gid_t)raw_inode->i_gid;
  445. set_nlink(inode, raw_inode->i_nlinks);
  446. inode->i_size = raw_inode->i_size;
  447. inode->i_mtime.tv_sec = raw_inode->i_mtime;
  448. inode->i_atime.tv_sec = raw_inode->i_atime;
  449. inode->i_ctime.tv_sec = raw_inode->i_ctime;
  450. inode->i_mtime.tv_nsec = 0;
  451. inode->i_atime.tv_nsec = 0;
  452. inode->i_ctime.tv_nsec = 0;
  453. inode->i_blocks = 0;
  454. for (i = 0; i < 10; i++)
  455. minix_inode->u.i2_data[i] = raw_inode->i_zone[i];
  456. minix_set_inode(inode, old_decode_dev(raw_inode->i_zone[0]));
  457. brelse(bh);
  458. unlock_new_inode(inode);
  459. return inode;
  460. }
  461. /*
  462. * The global function to read an inode.
  463. */
  464. struct inode *minix_iget(struct super_block *sb, unsigned long ino)
  465. {
  466. struct inode *inode;
  467. inode = iget_locked(sb, ino);
  468. if (!inode)
  469. return ERR_PTR(-ENOMEM);
  470. if (!(inode->i_state & I_NEW))
  471. return inode;
  472. if (INODE_VERSION(inode) == MINIX_V1)
  473. return V1_minix_iget(inode);
  474. else
  475. return V2_minix_iget(inode);
  476. }
  477. /*
  478. * The minix V1 function to synchronize an inode.
  479. */
  480. static struct buffer_head * V1_minix_update_inode(struct inode * inode)
  481. {
  482. struct buffer_head * bh;
  483. struct minix_inode * raw_inode;
  484. struct minix_inode_info *minix_inode = minix_i(inode);
  485. int i;
  486. raw_inode = minix_V1_raw_inode(inode->i_sb, inode->i_ino, &bh);
  487. if (!raw_inode)
  488. return NULL;
  489. raw_inode->i_mode = inode->i_mode;
  490. raw_inode->i_uid = fs_high2lowuid(inode->i_uid);
  491. raw_inode->i_gid = fs_high2lowgid(inode->i_gid);
  492. raw_inode->i_nlinks = inode->i_nlink;
  493. raw_inode->i_size = inode->i_size;
  494. raw_inode->i_time = inode->i_mtime.tv_sec;
  495. if (S_ISCHR(inode->i_mode) || S_ISBLK(inode->i_mode))
  496. raw_inode->i_zone[0] = old_encode_dev(inode->i_rdev);
  497. else for (i = 0; i < 9; i++)
  498. raw_inode->i_zone[i] = minix_inode->u.i1_data[i];
  499. mark_buffer_dirty(bh);
  500. return bh;
  501. }
  502. /*
  503. * The minix V2 function to synchronize an inode.
  504. */
  505. static struct buffer_head * V2_minix_update_inode(struct inode * inode)
  506. {
  507. struct buffer_head * bh;
  508. struct minix2_inode * raw_inode;
  509. struct minix_inode_info *minix_inode = minix_i(inode);
  510. int i;
  511. raw_inode = minix_V2_raw_inode(inode->i_sb, inode->i_ino, &bh);
  512. if (!raw_inode)
  513. return NULL;
  514. raw_inode->i_mode = inode->i_mode;
  515. raw_inode->i_uid = fs_high2lowuid(inode->i_uid);
  516. raw_inode->i_gid = fs_high2lowgid(inode->i_gid);
  517. raw_inode->i_nlinks = inode->i_nlink;
  518. raw_inode->i_size = inode->i_size;
  519. raw_inode->i_mtime = inode->i_mtime.tv_sec;
  520. raw_inode->i_atime = inode->i_atime.tv_sec;
  521. raw_inode->i_ctime = inode->i_ctime.tv_sec;
  522. if (S_ISCHR(inode->i_mode) || S_ISBLK(inode->i_mode))
  523. raw_inode->i_zone[0] = old_encode_dev(inode->i_rdev);
  524. else for (i = 0; i < 10; i++)
  525. raw_inode->i_zone[i] = minix_inode->u.i2_data[i];
  526. mark_buffer_dirty(bh);
  527. return bh;
  528. }
  529. static int minix_write_inode(struct inode *inode, struct writeback_control *wbc)
  530. {
  531. int err = 0;
  532. struct buffer_head *bh;
  533. if (INODE_VERSION(inode) == MINIX_V1)
  534. bh = V1_minix_update_inode(inode);
  535. else
  536. bh = V2_minix_update_inode(inode);
  537. if (!bh)
  538. return -EIO;
  539. if (wbc->sync_mode == WB_SYNC_ALL && buffer_dirty(bh)) {
  540. sync_dirty_buffer(bh);
  541. if (buffer_req(bh) && !buffer_uptodate(bh)) {
  542. printk("IO error syncing minix inode [%s:%08lx]\n",
  543. inode->i_sb->s_id, inode->i_ino);
  544. err = -EIO;
  545. }
  546. }
  547. brelse (bh);
  548. return err;
  549. }
  550. int minix_getattr(struct vfsmount *mnt, struct dentry *dentry, struct kstat *stat)
  551. {
  552. struct super_block *sb = dentry->d_sb;
  553. generic_fillattr(dentry->d_inode, stat);
  554. if (INODE_VERSION(dentry->d_inode) == MINIX_V1)
  555. stat->blocks = (BLOCK_SIZE / 512) * V1_minix_blocks(stat->size, sb);
  556. else
  557. stat->blocks = (sb->s_blocksize / 512) * V2_minix_blocks(stat->size, sb);
  558. stat->blksize = sb->s_blocksize;
  559. return 0;
  560. }
  561. /*
  562. * The function that is called for file truncation.
  563. */
  564. void minix_truncate(struct inode * inode)
  565. {
  566. if (!(S_ISREG(inode->i_mode) || S_ISDIR(inode->i_mode) || S_ISLNK(inode->i_mode)))
  567. return;
  568. if (INODE_VERSION(inode) == MINIX_V1)
  569. V1_minix_truncate(inode);
  570. else
  571. V2_minix_truncate(inode);
  572. }
  573. static struct dentry *minix_mount(struct file_system_type *fs_type,
  574. int flags, const char *dev_name, void *data)
  575. {
  576. return mount_bdev(fs_type, flags, dev_name, data, minix_fill_super);
  577. }
  578. static struct file_system_type minix_fs_type = {
  579. .owner = THIS_MODULE,
  580. .name = "minix",
  581. .mount = minix_mount,
  582. .kill_sb = kill_block_super,
  583. .fs_flags = FS_REQUIRES_DEV,
  584. };
  585. static int __init init_minix_fs(void)
  586. {
  587. int err = init_inodecache();
  588. if (err)
  589. goto out1;
  590. err = register_filesystem(&minix_fs_type);
  591. if (err)
  592. goto out;
  593. return 0;
  594. out:
  595. destroy_inodecache();
  596. out1:
  597. return err;
  598. }
  599. static void __exit exit_minix_fs(void)
  600. {
  601. unregister_filesystem(&minix_fs_type);
  602. destroy_inodecache();
  603. }
  604. module_init(init_minix_fs)
  605. module_exit(exit_minix_fs)
  606. MODULE_LICENSE("GPL");