namei.c 17 KB

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  1. /*
  2. * fs/f2fs/namei.c
  3. *
  4. * Copyright (c) 2012 Samsung Electronics Co., Ltd.
  5. * http://www.samsung.com/
  6. *
  7. * This program is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License version 2 as
  9. * published by the Free Software Foundation.
  10. */
  11. #include <linux/fs.h>
  12. #include <linux/f2fs_fs.h>
  13. #include <linux/pagemap.h>
  14. #include <linux/sched.h>
  15. #include <linux/ctype.h>
  16. #include <linux/dcache.h>
  17. #include "f2fs.h"
  18. #include "node.h"
  19. #include "xattr.h"
  20. #include "acl.h"
  21. #include <trace/events/f2fs.h>
  22. static struct inode *f2fs_new_inode(struct inode *dir, umode_t mode)
  23. {
  24. struct f2fs_sb_info *sbi = F2FS_SB(dir->i_sb);
  25. nid_t ino;
  26. struct inode *inode;
  27. bool nid_free = false;
  28. int err;
  29. inode = new_inode(dir->i_sb);
  30. if (!inode)
  31. return ERR_PTR(-ENOMEM);
  32. f2fs_lock_op(sbi);
  33. if (!alloc_nid(sbi, &ino)) {
  34. f2fs_unlock_op(sbi);
  35. err = -ENOSPC;
  36. goto fail;
  37. }
  38. f2fs_unlock_op(sbi);
  39. inode_init_owner(inode, dir, mode);
  40. inode->i_ino = ino;
  41. inode->i_blocks = 0;
  42. inode->i_mtime = inode->i_atime = inode->i_ctime = CURRENT_TIME;
  43. inode->i_generation = sbi->s_next_generation++;
  44. err = insert_inode_locked(inode);
  45. if (err) {
  46. err = -EINVAL;
  47. nid_free = true;
  48. goto out;
  49. }
  50. trace_f2fs_new_inode(inode, 0);
  51. mark_inode_dirty(inode);
  52. return inode;
  53. out:
  54. clear_nlink(inode);
  55. unlock_new_inode(inode);
  56. fail:
  57. trace_f2fs_new_inode(inode, err);
  58. make_bad_inode(inode);
  59. iput(inode);
  60. if (nid_free)
  61. alloc_nid_failed(sbi, ino);
  62. return ERR_PTR(err);
  63. }
  64. static int is_multimedia_file(const unsigned char *s, const char *sub)
  65. {
  66. size_t slen = strlen(s);
  67. size_t sublen = strlen(sub);
  68. if (sublen > slen)
  69. return 0;
  70. return !strncasecmp(s + slen - sublen, sub, sublen);
  71. }
  72. /*
  73. * Set multimedia files as cold files for hot/cold data separation
  74. */
  75. static inline void set_cold_files(struct f2fs_sb_info *sbi, struct inode *inode,
  76. const unsigned char *name)
  77. {
  78. int i;
  79. __u8 (*extlist)[8] = sbi->raw_super->extension_list;
  80. int count = le32_to_cpu(sbi->raw_super->extension_count);
  81. for (i = 0; i < count; i++) {
  82. if (is_multimedia_file(name, extlist[i])) {
  83. file_set_cold(inode);
  84. break;
  85. }
  86. }
  87. }
  88. static int f2fs_create(struct inode *dir, struct dentry *dentry, umode_t mode,
  89. bool excl)
  90. {
  91. struct f2fs_sb_info *sbi = F2FS_SB(dir->i_sb);
  92. struct inode *inode;
  93. nid_t ino = 0;
  94. int err;
  95. f2fs_balance_fs(sbi);
  96. inode = f2fs_new_inode(dir, mode);
  97. if (IS_ERR(inode))
  98. return PTR_ERR(inode);
  99. if (!test_opt(sbi, DISABLE_EXT_IDENTIFY))
  100. set_cold_files(sbi, inode, dentry->d_name.name);
  101. inode->i_op = &f2fs_file_inode_operations;
  102. inode->i_fop = &f2fs_file_operations;
  103. inode->i_mapping->a_ops = &f2fs_dblock_aops;
  104. ino = inode->i_ino;
  105. f2fs_lock_op(sbi);
  106. err = f2fs_add_link(dentry, inode);
  107. f2fs_unlock_op(sbi);
  108. if (err)
  109. goto out;
  110. alloc_nid_done(sbi, ino);
  111. d_instantiate(dentry, inode);
  112. unlock_new_inode(inode);
  113. return 0;
  114. out:
  115. clear_nlink(inode);
  116. unlock_new_inode(inode);
  117. make_bad_inode(inode);
  118. iput(inode);
  119. alloc_nid_failed(sbi, ino);
  120. return err;
  121. }
  122. static int f2fs_link(struct dentry *old_dentry, struct inode *dir,
  123. struct dentry *dentry)
  124. {
  125. struct inode *inode = old_dentry->d_inode;
  126. struct f2fs_sb_info *sbi = F2FS_SB(dir->i_sb);
  127. int err;
  128. f2fs_balance_fs(sbi);
  129. inode->i_ctime = CURRENT_TIME;
  130. ihold(inode);
  131. set_inode_flag(F2FS_I(inode), FI_INC_LINK);
  132. f2fs_lock_op(sbi);
  133. err = f2fs_add_link(dentry, inode);
  134. f2fs_unlock_op(sbi);
  135. if (err)
  136. goto out;
  137. d_instantiate(dentry, inode);
  138. return 0;
  139. out:
  140. clear_inode_flag(F2FS_I(inode), FI_INC_LINK);
  141. iput(inode);
  142. return err;
  143. }
  144. struct dentry *f2fs_get_parent(struct dentry *child)
  145. {
  146. struct qstr dotdot = QSTR_INIT("..", 2);
  147. unsigned long ino = f2fs_inode_by_name(child->d_inode, &dotdot);
  148. if (!ino)
  149. return ERR_PTR(-ENOENT);
  150. return d_obtain_alias(f2fs_iget(child->d_inode->i_sb, ino));
  151. }
  152. static struct dentry *f2fs_lookup(struct inode *dir, struct dentry *dentry,
  153. unsigned int flags)
  154. {
  155. struct inode *inode = NULL;
  156. struct f2fs_dir_entry *de;
  157. struct page *page;
  158. if (dentry->d_name.len > F2FS_NAME_LEN)
  159. return ERR_PTR(-ENAMETOOLONG);
  160. de = f2fs_find_entry(dir, &dentry->d_name, &page);
  161. if (de) {
  162. nid_t ino = le32_to_cpu(de->ino);
  163. kunmap(page);
  164. f2fs_put_page(page, 0);
  165. inode = f2fs_iget(dir->i_sb, ino);
  166. if (IS_ERR(inode))
  167. return ERR_CAST(inode);
  168. stat_inc_inline_inode(inode);
  169. }
  170. return d_splice_alias(inode, dentry);
  171. }
  172. static int f2fs_unlink(struct inode *dir, struct dentry *dentry)
  173. {
  174. struct f2fs_sb_info *sbi = F2FS_SB(dir->i_sb);
  175. struct inode *inode = dentry->d_inode;
  176. struct f2fs_dir_entry *de;
  177. struct page *page;
  178. int err = -ENOENT;
  179. trace_f2fs_unlink_enter(dir, dentry);
  180. f2fs_balance_fs(sbi);
  181. de = f2fs_find_entry(dir, &dentry->d_name, &page);
  182. if (!de)
  183. goto fail;
  184. f2fs_lock_op(sbi);
  185. err = acquire_orphan_inode(sbi);
  186. if (err) {
  187. f2fs_unlock_op(sbi);
  188. kunmap(page);
  189. f2fs_put_page(page, 0);
  190. goto fail;
  191. }
  192. f2fs_delete_entry(de, page, inode);
  193. f2fs_unlock_op(sbi);
  194. /* In order to evict this inode, we set it dirty */
  195. mark_inode_dirty(inode);
  196. fail:
  197. trace_f2fs_unlink_exit(inode, err);
  198. return err;
  199. }
  200. static int f2fs_symlink(struct inode *dir, struct dentry *dentry,
  201. const char *symname)
  202. {
  203. struct f2fs_sb_info *sbi = F2FS_SB(dir->i_sb);
  204. struct inode *inode;
  205. size_t symlen = strlen(symname) + 1;
  206. int err;
  207. f2fs_balance_fs(sbi);
  208. inode = f2fs_new_inode(dir, S_IFLNK | S_IRWXUGO);
  209. if (IS_ERR(inode))
  210. return PTR_ERR(inode);
  211. inode->i_op = &f2fs_symlink_inode_operations;
  212. inode->i_mapping->a_ops = &f2fs_dblock_aops;
  213. f2fs_lock_op(sbi);
  214. err = f2fs_add_link(dentry, inode);
  215. f2fs_unlock_op(sbi);
  216. if (err)
  217. goto out;
  218. err = page_symlink(inode, symname, symlen);
  219. alloc_nid_done(sbi, inode->i_ino);
  220. d_instantiate(dentry, inode);
  221. unlock_new_inode(inode);
  222. return err;
  223. out:
  224. clear_nlink(inode);
  225. unlock_new_inode(inode);
  226. make_bad_inode(inode);
  227. iput(inode);
  228. alloc_nid_failed(sbi, inode->i_ino);
  229. return err;
  230. }
  231. static int f2fs_mkdir(struct inode *dir, struct dentry *dentry, umode_t mode)
  232. {
  233. struct f2fs_sb_info *sbi = F2FS_SB(dir->i_sb);
  234. struct inode *inode;
  235. int err;
  236. f2fs_balance_fs(sbi);
  237. inode = f2fs_new_inode(dir, S_IFDIR | mode);
  238. if (IS_ERR(inode))
  239. return PTR_ERR(inode);
  240. inode->i_op = &f2fs_dir_inode_operations;
  241. inode->i_fop = &f2fs_dir_operations;
  242. inode->i_mapping->a_ops = &f2fs_dblock_aops;
  243. mapping_set_gfp_mask(inode->i_mapping, GFP_F2FS_ZERO);
  244. set_inode_flag(F2FS_I(inode), FI_INC_LINK);
  245. f2fs_lock_op(sbi);
  246. err = f2fs_add_link(dentry, inode);
  247. f2fs_unlock_op(sbi);
  248. if (err)
  249. goto out_fail;
  250. alloc_nid_done(sbi, inode->i_ino);
  251. d_instantiate(dentry, inode);
  252. unlock_new_inode(inode);
  253. return 0;
  254. out_fail:
  255. clear_inode_flag(F2FS_I(inode), FI_INC_LINK);
  256. clear_nlink(inode);
  257. unlock_new_inode(inode);
  258. make_bad_inode(inode);
  259. iput(inode);
  260. alloc_nid_failed(sbi, inode->i_ino);
  261. return err;
  262. }
  263. static int f2fs_rmdir(struct inode *dir, struct dentry *dentry)
  264. {
  265. struct inode *inode = dentry->d_inode;
  266. if (f2fs_empty_dir(inode))
  267. return f2fs_unlink(dir, dentry);
  268. return -ENOTEMPTY;
  269. }
  270. static int f2fs_mknod(struct inode *dir, struct dentry *dentry,
  271. umode_t mode, dev_t rdev)
  272. {
  273. struct f2fs_sb_info *sbi = F2FS_SB(dir->i_sb);
  274. struct inode *inode;
  275. int err = 0;
  276. if (!new_valid_dev(rdev))
  277. return -EINVAL;
  278. f2fs_balance_fs(sbi);
  279. inode = f2fs_new_inode(dir, mode);
  280. if (IS_ERR(inode))
  281. return PTR_ERR(inode);
  282. init_special_inode(inode, inode->i_mode, rdev);
  283. inode->i_op = &f2fs_special_inode_operations;
  284. f2fs_lock_op(sbi);
  285. err = f2fs_add_link(dentry, inode);
  286. f2fs_unlock_op(sbi);
  287. if (err)
  288. goto out;
  289. alloc_nid_done(sbi, inode->i_ino);
  290. d_instantiate(dentry, inode);
  291. unlock_new_inode(inode);
  292. return 0;
  293. out:
  294. clear_nlink(inode);
  295. unlock_new_inode(inode);
  296. make_bad_inode(inode);
  297. iput(inode);
  298. alloc_nid_failed(sbi, inode->i_ino);
  299. return err;
  300. }
  301. static int f2fs_rename(struct inode *old_dir, struct dentry *old_dentry,
  302. struct inode *new_dir, struct dentry *new_dentry)
  303. {
  304. struct f2fs_sb_info *sbi = F2FS_SB(old_dir->i_sb);
  305. struct inode *old_inode = old_dentry->d_inode;
  306. struct inode *new_inode = new_dentry->d_inode;
  307. struct page *old_dir_page;
  308. struct page *old_page, *new_page;
  309. struct f2fs_dir_entry *old_dir_entry = NULL;
  310. struct f2fs_dir_entry *old_entry;
  311. struct f2fs_dir_entry *new_entry;
  312. int err = -ENOENT;
  313. f2fs_balance_fs(sbi);
  314. old_entry = f2fs_find_entry(old_dir, &old_dentry->d_name, &old_page);
  315. if (!old_entry)
  316. goto out;
  317. if (S_ISDIR(old_inode->i_mode)) {
  318. err = -EIO;
  319. old_dir_entry = f2fs_parent_dir(old_inode, &old_dir_page);
  320. if (!old_dir_entry)
  321. goto out_old;
  322. }
  323. if (new_inode) {
  324. err = -ENOTEMPTY;
  325. if (old_dir_entry && !f2fs_empty_dir(new_inode))
  326. goto out_dir;
  327. err = -ENOENT;
  328. new_entry = f2fs_find_entry(new_dir, &new_dentry->d_name,
  329. &new_page);
  330. if (!new_entry)
  331. goto out_dir;
  332. f2fs_lock_op(sbi);
  333. err = acquire_orphan_inode(sbi);
  334. if (err)
  335. goto put_out_dir;
  336. if (update_dent_inode(old_inode, &new_dentry->d_name)) {
  337. release_orphan_inode(sbi);
  338. goto put_out_dir;
  339. }
  340. f2fs_set_link(new_dir, new_entry, new_page, old_inode);
  341. new_inode->i_ctime = CURRENT_TIME;
  342. down_write(&F2FS_I(new_inode)->i_sem);
  343. if (old_dir_entry)
  344. drop_nlink(new_inode);
  345. drop_nlink(new_inode);
  346. up_write(&F2FS_I(new_inode)->i_sem);
  347. mark_inode_dirty(new_inode);
  348. if (!new_inode->i_nlink)
  349. add_orphan_inode(sbi, new_inode->i_ino);
  350. else
  351. release_orphan_inode(sbi);
  352. update_inode_page(old_inode);
  353. update_inode_page(new_inode);
  354. } else {
  355. f2fs_lock_op(sbi);
  356. err = f2fs_add_link(new_dentry, old_inode);
  357. if (err) {
  358. f2fs_unlock_op(sbi);
  359. goto out_dir;
  360. }
  361. if (old_dir_entry) {
  362. inc_nlink(new_dir);
  363. update_inode_page(new_dir);
  364. }
  365. }
  366. down_write(&F2FS_I(old_inode)->i_sem);
  367. file_lost_pino(old_inode);
  368. up_write(&F2FS_I(old_inode)->i_sem);
  369. old_inode->i_ctime = CURRENT_TIME;
  370. mark_inode_dirty(old_inode);
  371. f2fs_delete_entry(old_entry, old_page, NULL);
  372. if (old_dir_entry) {
  373. if (old_dir != new_dir) {
  374. f2fs_set_link(old_inode, old_dir_entry,
  375. old_dir_page, new_dir);
  376. update_inode_page(old_inode);
  377. } else {
  378. kunmap(old_dir_page);
  379. f2fs_put_page(old_dir_page, 0);
  380. }
  381. drop_nlink(old_dir);
  382. mark_inode_dirty(old_dir);
  383. update_inode_page(old_dir);
  384. }
  385. f2fs_unlock_op(sbi);
  386. return 0;
  387. put_out_dir:
  388. f2fs_unlock_op(sbi);
  389. kunmap(new_page);
  390. f2fs_put_page(new_page, 0);
  391. out_dir:
  392. if (old_dir_entry) {
  393. kunmap(old_dir_page);
  394. f2fs_put_page(old_dir_page, 0);
  395. }
  396. out_old:
  397. kunmap(old_page);
  398. f2fs_put_page(old_page, 0);
  399. out:
  400. return err;
  401. }
  402. static int f2fs_cross_rename(struct inode *old_dir, struct dentry *old_dentry,
  403. struct inode *new_dir, struct dentry *new_dentry)
  404. {
  405. struct super_block *sb = old_dir->i_sb;
  406. struct f2fs_sb_info *sbi = F2FS_SB(sb);
  407. struct inode *old_inode = old_dentry->d_inode;
  408. struct inode *new_inode = new_dentry->d_inode;
  409. struct page *old_dir_page, *new_dir_page;
  410. struct page *old_page, *new_page;
  411. struct f2fs_dir_entry *old_dir_entry = NULL, *new_dir_entry = NULL;
  412. struct f2fs_dir_entry *old_entry, *new_entry;
  413. int old_nlink = 0, new_nlink = 0;
  414. int err = -ENOENT;
  415. f2fs_balance_fs(sbi);
  416. old_entry = f2fs_find_entry(old_dir, &old_dentry->d_name, &old_page);
  417. if (!old_entry)
  418. goto out;
  419. new_entry = f2fs_find_entry(new_dir, &new_dentry->d_name, &new_page);
  420. if (!new_entry)
  421. goto out_old;
  422. /* prepare for updating ".." directory entry info later */
  423. if (old_dir != new_dir) {
  424. if (S_ISDIR(old_inode->i_mode)) {
  425. err = -EIO;
  426. old_dir_entry = f2fs_parent_dir(old_inode,
  427. &old_dir_page);
  428. if (!old_dir_entry)
  429. goto out_new;
  430. }
  431. if (S_ISDIR(new_inode->i_mode)) {
  432. err = -EIO;
  433. new_dir_entry = f2fs_parent_dir(new_inode,
  434. &new_dir_page);
  435. if (!new_dir_entry)
  436. goto out_old_dir;
  437. }
  438. }
  439. /*
  440. * If cross rename between file and directory those are not
  441. * in the same directory, we will inc nlink of file's parent
  442. * later, so we should check upper boundary of its nlink.
  443. */
  444. if ((!old_dir_entry || !new_dir_entry) &&
  445. old_dir_entry != new_dir_entry) {
  446. old_nlink = old_dir_entry ? -1 : 1;
  447. new_nlink = -old_nlink;
  448. err = -EMLINK;
  449. if ((old_nlink > 0 && old_inode->i_nlink >= F2FS_LINK_MAX) ||
  450. (new_nlink > 0 && new_inode->i_nlink >= F2FS_LINK_MAX))
  451. goto out_new_dir;
  452. }
  453. f2fs_lock_op(sbi);
  454. err = update_dent_inode(old_inode, &new_dentry->d_name);
  455. if (err)
  456. goto out_unlock;
  457. err = update_dent_inode(new_inode, &old_dentry->d_name);
  458. if (err)
  459. goto out_undo;
  460. /* update ".." directory entry info of old dentry */
  461. if (old_dir_entry)
  462. f2fs_set_link(old_inode, old_dir_entry, old_dir_page, new_dir);
  463. /* update ".." directory entry info of new dentry */
  464. if (new_dir_entry)
  465. f2fs_set_link(new_inode, new_dir_entry, new_dir_page, old_dir);
  466. /* update directory entry info of old dir inode */
  467. f2fs_set_link(old_dir, old_entry, old_page, new_inode);
  468. down_write(&F2FS_I(old_inode)->i_sem);
  469. file_lost_pino(old_inode);
  470. up_write(&F2FS_I(old_inode)->i_sem);
  471. update_inode_page(old_inode);
  472. old_dir->i_ctime = CURRENT_TIME;
  473. if (old_nlink) {
  474. down_write(&F2FS_I(old_dir)->i_sem);
  475. if (old_nlink < 0)
  476. drop_nlink(old_dir);
  477. else
  478. inc_nlink(old_dir);
  479. up_write(&F2FS_I(old_dir)->i_sem);
  480. }
  481. mark_inode_dirty(old_dir);
  482. update_inode_page(old_dir);
  483. /* update directory entry info of new dir inode */
  484. f2fs_set_link(new_dir, new_entry, new_page, old_inode);
  485. down_write(&F2FS_I(new_inode)->i_sem);
  486. file_lost_pino(new_inode);
  487. up_write(&F2FS_I(new_inode)->i_sem);
  488. update_inode_page(new_inode);
  489. new_dir->i_ctime = CURRENT_TIME;
  490. if (new_nlink) {
  491. down_write(&F2FS_I(new_dir)->i_sem);
  492. if (new_nlink < 0)
  493. drop_nlink(new_dir);
  494. else
  495. inc_nlink(new_dir);
  496. up_write(&F2FS_I(new_dir)->i_sem);
  497. }
  498. mark_inode_dirty(new_dir);
  499. update_inode_page(new_dir);
  500. f2fs_unlock_op(sbi);
  501. return 0;
  502. out_undo:
  503. /* Still we may fail to recover name info of f2fs_inode here */
  504. update_dent_inode(old_inode, &old_dentry->d_name);
  505. out_unlock:
  506. f2fs_unlock_op(sbi);
  507. out_new_dir:
  508. if (new_dir_entry) {
  509. kunmap(new_dir_page);
  510. f2fs_put_page(new_dir_page, 0);
  511. }
  512. out_old_dir:
  513. if (old_dir_entry) {
  514. kunmap(old_dir_page);
  515. f2fs_put_page(old_dir_page, 0);
  516. }
  517. out_new:
  518. kunmap(new_page);
  519. f2fs_put_page(new_page, 0);
  520. out_old:
  521. kunmap(old_page);
  522. f2fs_put_page(old_page, 0);
  523. out:
  524. return err;
  525. }
  526. static int f2fs_rename2(struct inode *old_dir, struct dentry *old_dentry,
  527. struct inode *new_dir, struct dentry *new_dentry,
  528. unsigned int flags)
  529. {
  530. if (flags & ~(RENAME_NOREPLACE | RENAME_EXCHANGE))
  531. return -EINVAL;
  532. if (flags & RENAME_EXCHANGE) {
  533. return f2fs_cross_rename(old_dir, old_dentry,
  534. new_dir, new_dentry);
  535. }
  536. /*
  537. * VFS has already handled the new dentry existence case,
  538. * here, we just deal with "RENAME_NOREPLACE" as regular rename.
  539. */
  540. return f2fs_rename(old_dir, old_dentry, new_dir, new_dentry);
  541. }
  542. static int f2fs_tmpfile(struct inode *dir, struct dentry *dentry, umode_t mode)
  543. {
  544. struct f2fs_sb_info *sbi = F2FS_SB(dir->i_sb);
  545. struct inode *inode;
  546. int err;
  547. inode = f2fs_new_inode(dir, mode);
  548. if (IS_ERR(inode))
  549. return PTR_ERR(inode);
  550. inode->i_op = &f2fs_file_inode_operations;
  551. inode->i_fop = &f2fs_file_operations;
  552. inode->i_mapping->a_ops = &f2fs_dblock_aops;
  553. f2fs_lock_op(sbi);
  554. err = acquire_orphan_inode(sbi);
  555. if (err)
  556. goto out;
  557. err = f2fs_do_tmpfile(inode, dir);
  558. if (err)
  559. goto release_out;
  560. /*
  561. * add this non-linked tmpfile to orphan list, in this way we could
  562. * remove all unused data of tmpfile after abnormal power-off.
  563. */
  564. add_orphan_inode(sbi, inode->i_ino);
  565. f2fs_unlock_op(sbi);
  566. alloc_nid_done(sbi, inode->i_ino);
  567. d_tmpfile(dentry, inode);
  568. unlock_new_inode(inode);
  569. return 0;
  570. release_out:
  571. release_orphan_inode(sbi);
  572. out:
  573. f2fs_unlock_op(sbi);
  574. clear_nlink(inode);
  575. unlock_new_inode(inode);
  576. make_bad_inode(inode);
  577. iput(inode);
  578. alloc_nid_failed(sbi, inode->i_ino);
  579. return err;
  580. }
  581. const struct inode_operations f2fs_dir_inode_operations = {
  582. .create = f2fs_create,
  583. .lookup = f2fs_lookup,
  584. .link = f2fs_link,
  585. .unlink = f2fs_unlink,
  586. .symlink = f2fs_symlink,
  587. .mkdir = f2fs_mkdir,
  588. .rmdir = f2fs_rmdir,
  589. .mknod = f2fs_mknod,
  590. .rename = f2fs_rename,
  591. .rename2 = f2fs_rename2,
  592. .tmpfile = f2fs_tmpfile,
  593. .getattr = f2fs_getattr,
  594. .setattr = f2fs_setattr,
  595. .get_acl = f2fs_get_acl,
  596. .set_acl = f2fs_set_acl,
  597. #ifdef CONFIG_F2FS_FS_XATTR
  598. .setxattr = generic_setxattr,
  599. .getxattr = generic_getxattr,
  600. .listxattr = f2fs_listxattr,
  601. .removexattr = generic_removexattr,
  602. #endif
  603. };
  604. const struct inode_operations f2fs_symlink_inode_operations = {
  605. .readlink = generic_readlink,
  606. .follow_link = page_follow_link_light,
  607. .put_link = page_put_link,
  608. .getattr = f2fs_getattr,
  609. .setattr = f2fs_setattr,
  610. #ifdef CONFIG_F2FS_FS_XATTR
  611. .setxattr = generic_setxattr,
  612. .getxattr = generic_getxattr,
  613. .listxattr = f2fs_listxattr,
  614. .removexattr = generic_removexattr,
  615. #endif
  616. };
  617. const struct inode_operations f2fs_special_inode_operations = {
  618. .getattr = f2fs_getattr,
  619. .setattr = f2fs_setattr,
  620. .get_acl = f2fs_get_acl,
  621. .set_acl = f2fs_set_acl,
  622. #ifdef CONFIG_F2FS_FS_XATTR
  623. .setxattr = generic_setxattr,
  624. .getxattr = generic_getxattr,
  625. .listxattr = f2fs_listxattr,
  626. .removexattr = generic_removexattr,
  627. #endif
  628. };