dir.c 23 KB

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  1. /*
  2. * JFFS2 -- Journalling Flash File System, Version 2.
  3. *
  4. * Copyright © 2001-2007 Red Hat, Inc.
  5. * Copyright © 2004-2010 David Woodhouse <dwmw2@infradead.org>
  6. *
  7. * Created by David Woodhouse <dwmw2@infradead.org>
  8. *
  9. * For licensing information, see the file 'LICENCE' in this directory.
  10. *
  11. */
  12. #include <linux/kernel.h>
  13. #include <linux/slab.h>
  14. #include <linux/fs.h>
  15. #include <linux/crc32.h>
  16. #include <linux/jffs2.h>
  17. #include "jffs2_fs_i.h"
  18. #include "jffs2_fs_sb.h"
  19. #include <linux/time.h>
  20. #include "nodelist.h"
  21. static int jffs2_readdir (struct file *, void *, filldir_t);
  22. static int jffs2_create (struct inode *,struct dentry *,umode_t,
  23. struct nameidata *);
  24. static struct dentry *jffs2_lookup (struct inode *,struct dentry *,
  25. struct nameidata *);
  26. static int jffs2_link (struct dentry *,struct inode *,struct dentry *);
  27. static int jffs2_unlink (struct inode *,struct dentry *);
  28. static int jffs2_symlink (struct inode *,struct dentry *,const char *);
  29. static int jffs2_mkdir (struct inode *,struct dentry *,umode_t);
  30. static int jffs2_rmdir (struct inode *,struct dentry *);
  31. static int jffs2_mknod (struct inode *,struct dentry *,umode_t,dev_t);
  32. static int jffs2_rename (struct inode *, struct dentry *,
  33. struct inode *, struct dentry *);
  34. const struct file_operations jffs2_dir_operations =
  35. {
  36. .read = generic_read_dir,
  37. .readdir = jffs2_readdir,
  38. .unlocked_ioctl=jffs2_ioctl,
  39. .fsync = jffs2_fsync,
  40. .llseek = generic_file_llseek,
  41. };
  42. const struct inode_operations jffs2_dir_inode_operations =
  43. {
  44. .create = jffs2_create,
  45. .lookup = jffs2_lookup,
  46. .link = jffs2_link,
  47. .unlink = jffs2_unlink,
  48. .symlink = jffs2_symlink,
  49. .mkdir = jffs2_mkdir,
  50. .rmdir = jffs2_rmdir,
  51. .mknod = jffs2_mknod,
  52. .rename = jffs2_rename,
  53. .get_acl = jffs2_get_acl,
  54. .setattr = jffs2_setattr,
  55. .setxattr = jffs2_setxattr,
  56. .getxattr = jffs2_getxattr,
  57. .listxattr = jffs2_listxattr,
  58. .removexattr = jffs2_removexattr
  59. };
  60. /***********************************************************************/
  61. /* We keep the dirent list sorted in increasing order of name hash,
  62. and we use the same hash function as the dentries. Makes this
  63. nice and simple
  64. */
  65. static struct dentry *jffs2_lookup(struct inode *dir_i, struct dentry *target,
  66. struct nameidata *nd)
  67. {
  68. struct jffs2_inode_info *dir_f;
  69. struct jffs2_full_dirent *fd = NULL, *fd_list;
  70. uint32_t ino = 0;
  71. struct inode *inode = NULL;
  72. jffs2_dbg(1, "jffs2_lookup()\n");
  73. if (target->d_name.len > JFFS2_MAX_NAME_LEN)
  74. return ERR_PTR(-ENAMETOOLONG);
  75. dir_f = JFFS2_INODE_INFO(dir_i);
  76. mutex_lock(&dir_f->sem);
  77. /* NB: The 2.2 backport will need to explicitly check for '.' and '..' here */
  78. for (fd_list = dir_f->dents; fd_list && fd_list->nhash <= target->d_name.hash; fd_list = fd_list->next) {
  79. if (fd_list->nhash == target->d_name.hash &&
  80. (!fd || fd_list->version > fd->version) &&
  81. strlen(fd_list->name) == target->d_name.len &&
  82. !strncmp(fd_list->name, target->d_name.name, target->d_name.len)) {
  83. fd = fd_list;
  84. }
  85. }
  86. if (fd)
  87. ino = fd->ino;
  88. mutex_unlock(&dir_f->sem);
  89. if (ino) {
  90. inode = jffs2_iget(dir_i->i_sb, ino);
  91. if (IS_ERR(inode))
  92. printk(KERN_WARNING "iget() failed for ino #%u\n", ino);
  93. }
  94. return d_splice_alias(inode, target);
  95. }
  96. /***********************************************************************/
  97. static int jffs2_readdir(struct file *filp, void *dirent, filldir_t filldir)
  98. {
  99. struct jffs2_inode_info *f;
  100. struct inode *inode = filp->f_path.dentry->d_inode;
  101. struct jffs2_full_dirent *fd;
  102. unsigned long offset, curofs;
  103. jffs2_dbg(1, "jffs2_readdir() for dir_i #%lu\n",
  104. filp->f_path.dentry->d_inode->i_ino);
  105. f = JFFS2_INODE_INFO(inode);
  106. offset = filp->f_pos;
  107. if (offset == 0) {
  108. jffs2_dbg(1, "Dirent 0: \".\", ino #%lu\n", inode->i_ino);
  109. if (filldir(dirent, ".", 1, 0, inode->i_ino, DT_DIR) < 0)
  110. goto out;
  111. offset++;
  112. }
  113. if (offset == 1) {
  114. unsigned long pino = parent_ino(filp->f_path.dentry);
  115. jffs2_dbg(1, "Dirent 1: \"..\", ino #%lu\n", pino);
  116. if (filldir(dirent, "..", 2, 1, pino, DT_DIR) < 0)
  117. goto out;
  118. offset++;
  119. }
  120. curofs=1;
  121. mutex_lock(&f->sem);
  122. for (fd = f->dents; fd; fd = fd->next) {
  123. curofs++;
  124. /* First loop: curofs = 2; offset = 2 */
  125. if (curofs < offset) {
  126. jffs2_dbg(2, "Skipping dirent: \"%s\", ino #%u, type %d, because curofs %ld < offset %ld\n",
  127. fd->name, fd->ino, fd->type, curofs, offset);
  128. continue;
  129. }
  130. if (!fd->ino) {
  131. jffs2_dbg(2, "Skipping deletion dirent \"%s\"\n",
  132. fd->name);
  133. offset++;
  134. continue;
  135. }
  136. jffs2_dbg(2, "Dirent %ld: \"%s\", ino #%u, type %d\n",
  137. offset, fd->name, fd->ino, fd->type);
  138. if (filldir(dirent, fd->name, strlen(fd->name), offset, fd->ino, fd->type) < 0)
  139. break;
  140. offset++;
  141. }
  142. mutex_unlock(&f->sem);
  143. out:
  144. filp->f_pos = offset;
  145. return 0;
  146. }
  147. /***********************************************************************/
  148. static int jffs2_create(struct inode *dir_i, struct dentry *dentry,
  149. umode_t mode, struct nameidata *nd)
  150. {
  151. struct jffs2_raw_inode *ri;
  152. struct jffs2_inode_info *f, *dir_f;
  153. struct jffs2_sb_info *c;
  154. struct inode *inode;
  155. int ret;
  156. ri = jffs2_alloc_raw_inode();
  157. if (!ri)
  158. return -ENOMEM;
  159. c = JFFS2_SB_INFO(dir_i->i_sb);
  160. jffs2_dbg(1, "%s()\n", __func__);
  161. inode = jffs2_new_inode(dir_i, mode, ri);
  162. if (IS_ERR(inode)) {
  163. jffs2_dbg(1, "jffs2_new_inode() failed\n");
  164. jffs2_free_raw_inode(ri);
  165. return PTR_ERR(inode);
  166. }
  167. inode->i_op = &jffs2_file_inode_operations;
  168. inode->i_fop = &jffs2_file_operations;
  169. inode->i_mapping->a_ops = &jffs2_file_address_operations;
  170. inode->i_mapping->nrpages = 0;
  171. f = JFFS2_INODE_INFO(inode);
  172. dir_f = JFFS2_INODE_INFO(dir_i);
  173. /* jffs2_do_create() will want to lock it, _after_ reserving
  174. space and taking c-alloc_sem. If we keep it locked here,
  175. lockdep gets unhappy (although it's a false positive;
  176. nothing else will be looking at this inode yet so there's
  177. no chance of AB-BA deadlock involving its f->sem). */
  178. mutex_unlock(&f->sem);
  179. ret = jffs2_do_create(c, dir_f, f, ri, &dentry->d_name);
  180. if (ret)
  181. goto fail;
  182. dir_i->i_mtime = dir_i->i_ctime = ITIME(je32_to_cpu(ri->ctime));
  183. jffs2_free_raw_inode(ri);
  184. jffs2_dbg(1, "%s(): Created ino #%lu with mode %o, nlink %d(%d). nrpages %ld\n",
  185. __func__, inode->i_ino, inode->i_mode, inode->i_nlink,
  186. f->inocache->pino_nlink, inode->i_mapping->nrpages);
  187. d_instantiate(dentry, inode);
  188. unlock_new_inode(inode);
  189. return 0;
  190. fail:
  191. iget_failed(inode);
  192. jffs2_free_raw_inode(ri);
  193. return ret;
  194. }
  195. /***********************************************************************/
  196. static int jffs2_unlink(struct inode *dir_i, struct dentry *dentry)
  197. {
  198. struct jffs2_sb_info *c = JFFS2_SB_INFO(dir_i->i_sb);
  199. struct jffs2_inode_info *dir_f = JFFS2_INODE_INFO(dir_i);
  200. struct jffs2_inode_info *dead_f = JFFS2_INODE_INFO(dentry->d_inode);
  201. int ret;
  202. uint32_t now = get_seconds();
  203. ret = jffs2_do_unlink(c, dir_f, dentry->d_name.name,
  204. dentry->d_name.len, dead_f, now);
  205. if (dead_f->inocache)
  206. set_nlink(dentry->d_inode, dead_f->inocache->pino_nlink);
  207. if (!ret)
  208. dir_i->i_mtime = dir_i->i_ctime = ITIME(now);
  209. return ret;
  210. }
  211. /***********************************************************************/
  212. static int jffs2_link (struct dentry *old_dentry, struct inode *dir_i, struct dentry *dentry)
  213. {
  214. struct jffs2_sb_info *c = JFFS2_SB_INFO(old_dentry->d_inode->i_sb);
  215. struct jffs2_inode_info *f = JFFS2_INODE_INFO(old_dentry->d_inode);
  216. struct jffs2_inode_info *dir_f = JFFS2_INODE_INFO(dir_i);
  217. int ret;
  218. uint8_t type;
  219. uint32_t now;
  220. /* Don't let people make hard links to bad inodes. */
  221. if (!f->inocache)
  222. return -EIO;
  223. if (S_ISDIR(old_dentry->d_inode->i_mode))
  224. return -EPERM;
  225. /* XXX: This is ugly */
  226. type = (old_dentry->d_inode->i_mode & S_IFMT) >> 12;
  227. if (!type) type = DT_REG;
  228. now = get_seconds();
  229. ret = jffs2_do_link(c, dir_f, f->inocache->ino, type, dentry->d_name.name, dentry->d_name.len, now);
  230. if (!ret) {
  231. mutex_lock(&f->sem);
  232. set_nlink(old_dentry->d_inode, ++f->inocache->pino_nlink);
  233. mutex_unlock(&f->sem);
  234. d_instantiate(dentry, old_dentry->d_inode);
  235. dir_i->i_mtime = dir_i->i_ctime = ITIME(now);
  236. ihold(old_dentry->d_inode);
  237. }
  238. return ret;
  239. }
  240. /***********************************************************************/
  241. static int jffs2_symlink (struct inode *dir_i, struct dentry *dentry, const char *target)
  242. {
  243. struct jffs2_inode_info *f, *dir_f;
  244. struct jffs2_sb_info *c;
  245. struct inode *inode;
  246. struct jffs2_raw_inode *ri;
  247. struct jffs2_raw_dirent *rd;
  248. struct jffs2_full_dnode *fn;
  249. struct jffs2_full_dirent *fd;
  250. int namelen;
  251. uint32_t alloclen;
  252. int ret, targetlen = strlen(target);
  253. /* FIXME: If you care. We'd need to use frags for the target
  254. if it grows much more than this */
  255. if (targetlen > 254)
  256. return -ENAMETOOLONG;
  257. ri = jffs2_alloc_raw_inode();
  258. if (!ri)
  259. return -ENOMEM;
  260. c = JFFS2_SB_INFO(dir_i->i_sb);
  261. /* Try to reserve enough space for both node and dirent.
  262. * Just the node will do for now, though
  263. */
  264. namelen = dentry->d_name.len;
  265. ret = jffs2_reserve_space(c, sizeof(*ri) + targetlen, &alloclen,
  266. ALLOC_NORMAL, JFFS2_SUMMARY_INODE_SIZE);
  267. if (ret) {
  268. jffs2_free_raw_inode(ri);
  269. return ret;
  270. }
  271. inode = jffs2_new_inode(dir_i, S_IFLNK | S_IRWXUGO, ri);
  272. if (IS_ERR(inode)) {
  273. jffs2_free_raw_inode(ri);
  274. jffs2_complete_reservation(c);
  275. return PTR_ERR(inode);
  276. }
  277. inode->i_op = &jffs2_symlink_inode_operations;
  278. f = JFFS2_INODE_INFO(inode);
  279. inode->i_size = targetlen;
  280. ri->isize = ri->dsize = ri->csize = cpu_to_je32(inode->i_size);
  281. ri->totlen = cpu_to_je32(sizeof(*ri) + inode->i_size);
  282. ri->hdr_crc = cpu_to_je32(crc32(0, ri, sizeof(struct jffs2_unknown_node)-4));
  283. ri->compr = JFFS2_COMPR_NONE;
  284. ri->data_crc = cpu_to_je32(crc32(0, target, targetlen));
  285. ri->node_crc = cpu_to_je32(crc32(0, ri, sizeof(*ri)-8));
  286. fn = jffs2_write_dnode(c, f, ri, target, targetlen, ALLOC_NORMAL);
  287. jffs2_free_raw_inode(ri);
  288. if (IS_ERR(fn)) {
  289. /* Eeek. Wave bye bye */
  290. mutex_unlock(&f->sem);
  291. jffs2_complete_reservation(c);
  292. ret = PTR_ERR(fn);
  293. goto fail;
  294. }
  295. /* We use f->target field to store the target path. */
  296. f->target = kmemdup(target, targetlen + 1, GFP_KERNEL);
  297. if (!f->target) {
  298. printk(KERN_WARNING "Can't allocate %d bytes of memory\n", targetlen + 1);
  299. mutex_unlock(&f->sem);
  300. jffs2_complete_reservation(c);
  301. ret = -ENOMEM;
  302. goto fail;
  303. }
  304. jffs2_dbg(1, "%s(): symlink's target '%s' cached\n",
  305. __func__, (char *)f->target);
  306. /* No data here. Only a metadata node, which will be
  307. obsoleted by the first data write
  308. */
  309. f->metadata = fn;
  310. mutex_unlock(&f->sem);
  311. jffs2_complete_reservation(c);
  312. ret = jffs2_init_security(inode, dir_i, &dentry->d_name);
  313. if (ret)
  314. goto fail;
  315. ret = jffs2_init_acl_post(inode);
  316. if (ret)
  317. goto fail;
  318. ret = jffs2_reserve_space(c, sizeof(*rd)+namelen, &alloclen,
  319. ALLOC_NORMAL, JFFS2_SUMMARY_DIRENT_SIZE(namelen));
  320. if (ret)
  321. goto fail;
  322. rd = jffs2_alloc_raw_dirent();
  323. if (!rd) {
  324. /* Argh. Now we treat it like a normal delete */
  325. jffs2_complete_reservation(c);
  326. ret = -ENOMEM;
  327. goto fail;
  328. }
  329. dir_f = JFFS2_INODE_INFO(dir_i);
  330. mutex_lock(&dir_f->sem);
  331. rd->magic = cpu_to_je16(JFFS2_MAGIC_BITMASK);
  332. rd->nodetype = cpu_to_je16(JFFS2_NODETYPE_DIRENT);
  333. rd->totlen = cpu_to_je32(sizeof(*rd) + namelen);
  334. rd->hdr_crc = cpu_to_je32(crc32(0, rd, sizeof(struct jffs2_unknown_node)-4));
  335. rd->pino = cpu_to_je32(dir_i->i_ino);
  336. rd->version = cpu_to_je32(++dir_f->highest_version);
  337. rd->ino = cpu_to_je32(inode->i_ino);
  338. rd->mctime = cpu_to_je32(get_seconds());
  339. rd->nsize = namelen;
  340. rd->type = DT_LNK;
  341. rd->node_crc = cpu_to_je32(crc32(0, rd, sizeof(*rd)-8));
  342. rd->name_crc = cpu_to_je32(crc32(0, dentry->d_name.name, namelen));
  343. fd = jffs2_write_dirent(c, dir_f, rd, dentry->d_name.name, namelen, ALLOC_NORMAL);
  344. if (IS_ERR(fd)) {
  345. /* dirent failed to write. Delete the inode normally
  346. as if it were the final unlink() */
  347. jffs2_complete_reservation(c);
  348. jffs2_free_raw_dirent(rd);
  349. mutex_unlock(&dir_f->sem);
  350. ret = PTR_ERR(fd);
  351. goto fail;
  352. }
  353. dir_i->i_mtime = dir_i->i_ctime = ITIME(je32_to_cpu(rd->mctime));
  354. jffs2_free_raw_dirent(rd);
  355. /* Link the fd into the inode's list, obsoleting an old
  356. one if necessary. */
  357. jffs2_add_fd_to_list(c, fd, &dir_f->dents);
  358. mutex_unlock(&dir_f->sem);
  359. jffs2_complete_reservation(c);
  360. d_instantiate(dentry, inode);
  361. unlock_new_inode(inode);
  362. return 0;
  363. fail:
  364. iget_failed(inode);
  365. return ret;
  366. }
  367. static int jffs2_mkdir (struct inode *dir_i, struct dentry *dentry, umode_t mode)
  368. {
  369. struct jffs2_inode_info *f, *dir_f;
  370. struct jffs2_sb_info *c;
  371. struct inode *inode;
  372. struct jffs2_raw_inode *ri;
  373. struct jffs2_raw_dirent *rd;
  374. struct jffs2_full_dnode *fn;
  375. struct jffs2_full_dirent *fd;
  376. int namelen;
  377. uint32_t alloclen;
  378. int ret;
  379. mode |= S_IFDIR;
  380. ri = jffs2_alloc_raw_inode();
  381. if (!ri)
  382. return -ENOMEM;
  383. c = JFFS2_SB_INFO(dir_i->i_sb);
  384. /* Try to reserve enough space for both node and dirent.
  385. * Just the node will do for now, though
  386. */
  387. namelen = dentry->d_name.len;
  388. ret = jffs2_reserve_space(c, sizeof(*ri), &alloclen, ALLOC_NORMAL,
  389. JFFS2_SUMMARY_INODE_SIZE);
  390. if (ret) {
  391. jffs2_free_raw_inode(ri);
  392. return ret;
  393. }
  394. inode = jffs2_new_inode(dir_i, mode, ri);
  395. if (IS_ERR(inode)) {
  396. jffs2_free_raw_inode(ri);
  397. jffs2_complete_reservation(c);
  398. return PTR_ERR(inode);
  399. }
  400. inode->i_op = &jffs2_dir_inode_operations;
  401. inode->i_fop = &jffs2_dir_operations;
  402. f = JFFS2_INODE_INFO(inode);
  403. /* Directories get nlink 2 at start */
  404. set_nlink(inode, 2);
  405. /* but ic->pino_nlink is the parent ino# */
  406. f->inocache->pino_nlink = dir_i->i_ino;
  407. ri->data_crc = cpu_to_je32(0);
  408. ri->node_crc = cpu_to_je32(crc32(0, ri, sizeof(*ri)-8));
  409. fn = jffs2_write_dnode(c, f, ri, NULL, 0, ALLOC_NORMAL);
  410. jffs2_free_raw_inode(ri);
  411. if (IS_ERR(fn)) {
  412. /* Eeek. Wave bye bye */
  413. mutex_unlock(&f->sem);
  414. jffs2_complete_reservation(c);
  415. ret = PTR_ERR(fn);
  416. goto fail;
  417. }
  418. /* No data here. Only a metadata node, which will be
  419. obsoleted by the first data write
  420. */
  421. f->metadata = fn;
  422. mutex_unlock(&f->sem);
  423. jffs2_complete_reservation(c);
  424. ret = jffs2_init_security(inode, dir_i, &dentry->d_name);
  425. if (ret)
  426. goto fail;
  427. ret = jffs2_init_acl_post(inode);
  428. if (ret)
  429. goto fail;
  430. ret = jffs2_reserve_space(c, sizeof(*rd)+namelen, &alloclen,
  431. ALLOC_NORMAL, JFFS2_SUMMARY_DIRENT_SIZE(namelen));
  432. if (ret)
  433. goto fail;
  434. rd = jffs2_alloc_raw_dirent();
  435. if (!rd) {
  436. /* Argh. Now we treat it like a normal delete */
  437. jffs2_complete_reservation(c);
  438. ret = -ENOMEM;
  439. goto fail;
  440. }
  441. dir_f = JFFS2_INODE_INFO(dir_i);
  442. mutex_lock(&dir_f->sem);
  443. rd->magic = cpu_to_je16(JFFS2_MAGIC_BITMASK);
  444. rd->nodetype = cpu_to_je16(JFFS2_NODETYPE_DIRENT);
  445. rd->totlen = cpu_to_je32(sizeof(*rd) + namelen);
  446. rd->hdr_crc = cpu_to_je32(crc32(0, rd, sizeof(struct jffs2_unknown_node)-4));
  447. rd->pino = cpu_to_je32(dir_i->i_ino);
  448. rd->version = cpu_to_je32(++dir_f->highest_version);
  449. rd->ino = cpu_to_je32(inode->i_ino);
  450. rd->mctime = cpu_to_je32(get_seconds());
  451. rd->nsize = namelen;
  452. rd->type = DT_DIR;
  453. rd->node_crc = cpu_to_je32(crc32(0, rd, sizeof(*rd)-8));
  454. rd->name_crc = cpu_to_je32(crc32(0, dentry->d_name.name, namelen));
  455. fd = jffs2_write_dirent(c, dir_f, rd, dentry->d_name.name, namelen, ALLOC_NORMAL);
  456. if (IS_ERR(fd)) {
  457. /* dirent failed to write. Delete the inode normally
  458. as if it were the final unlink() */
  459. jffs2_complete_reservation(c);
  460. jffs2_free_raw_dirent(rd);
  461. mutex_unlock(&dir_f->sem);
  462. ret = PTR_ERR(fd);
  463. goto fail;
  464. }
  465. dir_i->i_mtime = dir_i->i_ctime = ITIME(je32_to_cpu(rd->mctime));
  466. inc_nlink(dir_i);
  467. jffs2_free_raw_dirent(rd);
  468. /* Link the fd into the inode's list, obsoleting an old
  469. one if necessary. */
  470. jffs2_add_fd_to_list(c, fd, &dir_f->dents);
  471. mutex_unlock(&dir_f->sem);
  472. jffs2_complete_reservation(c);
  473. d_instantiate(dentry, inode);
  474. unlock_new_inode(inode);
  475. return 0;
  476. fail:
  477. iget_failed(inode);
  478. return ret;
  479. }
  480. static int jffs2_rmdir (struct inode *dir_i, struct dentry *dentry)
  481. {
  482. struct jffs2_sb_info *c = JFFS2_SB_INFO(dir_i->i_sb);
  483. struct jffs2_inode_info *dir_f = JFFS2_INODE_INFO(dir_i);
  484. struct jffs2_inode_info *f = JFFS2_INODE_INFO(dentry->d_inode);
  485. struct jffs2_full_dirent *fd;
  486. int ret;
  487. uint32_t now = get_seconds();
  488. for (fd = f->dents ; fd; fd = fd->next) {
  489. if (fd->ino)
  490. return -ENOTEMPTY;
  491. }
  492. ret = jffs2_do_unlink(c, dir_f, dentry->d_name.name,
  493. dentry->d_name.len, f, now);
  494. if (!ret) {
  495. dir_i->i_mtime = dir_i->i_ctime = ITIME(now);
  496. clear_nlink(dentry->d_inode);
  497. drop_nlink(dir_i);
  498. }
  499. return ret;
  500. }
  501. static int jffs2_mknod (struct inode *dir_i, struct dentry *dentry, umode_t mode, dev_t rdev)
  502. {
  503. struct jffs2_inode_info *f, *dir_f;
  504. struct jffs2_sb_info *c;
  505. struct inode *inode;
  506. struct jffs2_raw_inode *ri;
  507. struct jffs2_raw_dirent *rd;
  508. struct jffs2_full_dnode *fn;
  509. struct jffs2_full_dirent *fd;
  510. int namelen;
  511. union jffs2_device_node dev;
  512. int devlen = 0;
  513. uint32_t alloclen;
  514. int ret;
  515. if (!new_valid_dev(rdev))
  516. return -EINVAL;
  517. ri = jffs2_alloc_raw_inode();
  518. if (!ri)
  519. return -ENOMEM;
  520. c = JFFS2_SB_INFO(dir_i->i_sb);
  521. if (S_ISBLK(mode) || S_ISCHR(mode))
  522. devlen = jffs2_encode_dev(&dev, rdev);
  523. /* Try to reserve enough space for both node and dirent.
  524. * Just the node will do for now, though
  525. */
  526. namelen = dentry->d_name.len;
  527. ret = jffs2_reserve_space(c, sizeof(*ri) + devlen, &alloclen,
  528. ALLOC_NORMAL, JFFS2_SUMMARY_INODE_SIZE);
  529. if (ret) {
  530. jffs2_free_raw_inode(ri);
  531. return ret;
  532. }
  533. inode = jffs2_new_inode(dir_i, mode, ri);
  534. if (IS_ERR(inode)) {
  535. jffs2_free_raw_inode(ri);
  536. jffs2_complete_reservation(c);
  537. return PTR_ERR(inode);
  538. }
  539. inode->i_op = &jffs2_file_inode_operations;
  540. init_special_inode(inode, inode->i_mode, rdev);
  541. f = JFFS2_INODE_INFO(inode);
  542. ri->dsize = ri->csize = cpu_to_je32(devlen);
  543. ri->totlen = cpu_to_je32(sizeof(*ri) + devlen);
  544. ri->hdr_crc = cpu_to_je32(crc32(0, ri, sizeof(struct jffs2_unknown_node)-4));
  545. ri->compr = JFFS2_COMPR_NONE;
  546. ri->data_crc = cpu_to_je32(crc32(0, &dev, devlen));
  547. ri->node_crc = cpu_to_je32(crc32(0, ri, sizeof(*ri)-8));
  548. fn = jffs2_write_dnode(c, f, ri, (char *)&dev, devlen, ALLOC_NORMAL);
  549. jffs2_free_raw_inode(ri);
  550. if (IS_ERR(fn)) {
  551. /* Eeek. Wave bye bye */
  552. mutex_unlock(&f->sem);
  553. jffs2_complete_reservation(c);
  554. ret = PTR_ERR(fn);
  555. goto fail;
  556. }
  557. /* No data here. Only a metadata node, which will be
  558. obsoleted by the first data write
  559. */
  560. f->metadata = fn;
  561. mutex_unlock(&f->sem);
  562. jffs2_complete_reservation(c);
  563. ret = jffs2_init_security(inode, dir_i, &dentry->d_name);
  564. if (ret)
  565. goto fail;
  566. ret = jffs2_init_acl_post(inode);
  567. if (ret)
  568. goto fail;
  569. ret = jffs2_reserve_space(c, sizeof(*rd)+namelen, &alloclen,
  570. ALLOC_NORMAL, JFFS2_SUMMARY_DIRENT_SIZE(namelen));
  571. if (ret)
  572. goto fail;
  573. rd = jffs2_alloc_raw_dirent();
  574. if (!rd) {
  575. /* Argh. Now we treat it like a normal delete */
  576. jffs2_complete_reservation(c);
  577. ret = -ENOMEM;
  578. goto fail;
  579. }
  580. dir_f = JFFS2_INODE_INFO(dir_i);
  581. mutex_lock(&dir_f->sem);
  582. rd->magic = cpu_to_je16(JFFS2_MAGIC_BITMASK);
  583. rd->nodetype = cpu_to_je16(JFFS2_NODETYPE_DIRENT);
  584. rd->totlen = cpu_to_je32(sizeof(*rd) + namelen);
  585. rd->hdr_crc = cpu_to_je32(crc32(0, rd, sizeof(struct jffs2_unknown_node)-4));
  586. rd->pino = cpu_to_je32(dir_i->i_ino);
  587. rd->version = cpu_to_je32(++dir_f->highest_version);
  588. rd->ino = cpu_to_je32(inode->i_ino);
  589. rd->mctime = cpu_to_je32(get_seconds());
  590. rd->nsize = namelen;
  591. /* XXX: This is ugly. */
  592. rd->type = (mode & S_IFMT) >> 12;
  593. rd->node_crc = cpu_to_je32(crc32(0, rd, sizeof(*rd)-8));
  594. rd->name_crc = cpu_to_je32(crc32(0, dentry->d_name.name, namelen));
  595. fd = jffs2_write_dirent(c, dir_f, rd, dentry->d_name.name, namelen, ALLOC_NORMAL);
  596. if (IS_ERR(fd)) {
  597. /* dirent failed to write. Delete the inode normally
  598. as if it were the final unlink() */
  599. jffs2_complete_reservation(c);
  600. jffs2_free_raw_dirent(rd);
  601. mutex_unlock(&dir_f->sem);
  602. ret = PTR_ERR(fd);
  603. goto fail;
  604. }
  605. dir_i->i_mtime = dir_i->i_ctime = ITIME(je32_to_cpu(rd->mctime));
  606. jffs2_free_raw_dirent(rd);
  607. /* Link the fd into the inode's list, obsoleting an old
  608. one if necessary. */
  609. jffs2_add_fd_to_list(c, fd, &dir_f->dents);
  610. mutex_unlock(&dir_f->sem);
  611. jffs2_complete_reservation(c);
  612. d_instantiate(dentry, inode);
  613. unlock_new_inode(inode);
  614. return 0;
  615. fail:
  616. iget_failed(inode);
  617. return ret;
  618. }
  619. static int jffs2_rename (struct inode *old_dir_i, struct dentry *old_dentry,
  620. struct inode *new_dir_i, struct dentry *new_dentry)
  621. {
  622. int ret;
  623. struct jffs2_sb_info *c = JFFS2_SB_INFO(old_dir_i->i_sb);
  624. struct jffs2_inode_info *victim_f = NULL;
  625. uint8_t type;
  626. uint32_t now;
  627. /* The VFS will check for us and prevent trying to rename a
  628. * file over a directory and vice versa, but if it's a directory,
  629. * the VFS can't check whether the victim is empty. The filesystem
  630. * needs to do that for itself.
  631. */
  632. if (new_dentry->d_inode) {
  633. victim_f = JFFS2_INODE_INFO(new_dentry->d_inode);
  634. if (S_ISDIR(new_dentry->d_inode->i_mode)) {
  635. struct jffs2_full_dirent *fd;
  636. mutex_lock(&victim_f->sem);
  637. for (fd = victim_f->dents; fd; fd = fd->next) {
  638. if (fd->ino) {
  639. mutex_unlock(&victim_f->sem);
  640. return -ENOTEMPTY;
  641. }
  642. }
  643. mutex_unlock(&victim_f->sem);
  644. }
  645. }
  646. /* XXX: We probably ought to alloc enough space for
  647. both nodes at the same time. Writing the new link,
  648. then getting -ENOSPC, is quite bad :)
  649. */
  650. /* Make a hard link */
  651. /* XXX: This is ugly */
  652. type = (old_dentry->d_inode->i_mode & S_IFMT) >> 12;
  653. if (!type) type = DT_REG;
  654. now = get_seconds();
  655. ret = jffs2_do_link(c, JFFS2_INODE_INFO(new_dir_i),
  656. old_dentry->d_inode->i_ino, type,
  657. new_dentry->d_name.name, new_dentry->d_name.len, now);
  658. if (ret)
  659. return ret;
  660. if (victim_f) {
  661. /* There was a victim. Kill it off nicely */
  662. if (S_ISDIR(new_dentry->d_inode->i_mode))
  663. clear_nlink(new_dentry->d_inode);
  664. else
  665. drop_nlink(new_dentry->d_inode);
  666. /* Don't oops if the victim was a dirent pointing to an
  667. inode which didn't exist. */
  668. if (victim_f->inocache) {
  669. mutex_lock(&victim_f->sem);
  670. if (S_ISDIR(new_dentry->d_inode->i_mode))
  671. victim_f->inocache->pino_nlink = 0;
  672. else
  673. victim_f->inocache->pino_nlink--;
  674. mutex_unlock(&victim_f->sem);
  675. }
  676. }
  677. /* If it was a directory we moved, and there was no victim,
  678. increase i_nlink on its new parent */
  679. if (S_ISDIR(old_dentry->d_inode->i_mode) && !victim_f)
  680. inc_nlink(new_dir_i);
  681. /* Unlink the original */
  682. ret = jffs2_do_unlink(c, JFFS2_INODE_INFO(old_dir_i),
  683. old_dentry->d_name.name, old_dentry->d_name.len, NULL, now);
  684. /* We don't touch inode->i_nlink */
  685. if (ret) {
  686. /* Oh shit. We really ought to make a single node which can do both atomically */
  687. struct jffs2_inode_info *f = JFFS2_INODE_INFO(old_dentry->d_inode);
  688. mutex_lock(&f->sem);
  689. inc_nlink(old_dentry->d_inode);
  690. if (f->inocache && !S_ISDIR(old_dentry->d_inode->i_mode))
  691. f->inocache->pino_nlink++;
  692. mutex_unlock(&f->sem);
  693. printk(KERN_NOTICE "jffs2_rename(): Link succeeded, unlink failed (err %d). You now have a hard link\n", ret);
  694. /* Might as well let the VFS know */
  695. d_instantiate(new_dentry, old_dentry->d_inode);
  696. ihold(old_dentry->d_inode);
  697. new_dir_i->i_mtime = new_dir_i->i_ctime = ITIME(now);
  698. return ret;
  699. }
  700. if (S_ISDIR(old_dentry->d_inode->i_mode))
  701. drop_nlink(old_dir_i);
  702. new_dir_i->i_mtime = new_dir_i->i_ctime = old_dir_i->i_mtime = old_dir_i->i_ctime = ITIME(now);
  703. return 0;
  704. }