inode.c 97 KB

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  1. /**
  2. * inode.c - NTFS kernel inode handling.
  3. *
  4. * Copyright (c) 2001-2014 Anton Altaparmakov and Tuxera Inc.
  5. *
  6. * This program/include file is free software; you can redistribute it and/or
  7. * modify it under the terms of the GNU General Public License as published
  8. * by the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This program/include file is distributed in the hope that it will be
  12. * useful, but WITHOUT ANY WARRANTY; without even the implied warranty
  13. * of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program (in the main directory of the Linux-NTFS
  18. * distribution in the file COPYING); if not, write to the Free Software
  19. * Foundation,Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  20. */
  21. #include <linux/buffer_head.h>
  22. #include <linux/fs.h>
  23. #include <linux/mm.h>
  24. #include <linux/mount.h>
  25. #include <linux/mutex.h>
  26. #include <linux/pagemap.h>
  27. #include <linux/quotaops.h>
  28. #include <linux/slab.h>
  29. #include <linux/log2.h>
  30. #include "aops.h"
  31. #include "attrib.h"
  32. #include "bitmap.h"
  33. #include "dir.h"
  34. #include "debug.h"
  35. #include "inode.h"
  36. #include "lcnalloc.h"
  37. #include "malloc.h"
  38. #include "mft.h"
  39. #include "time.h"
  40. #include "ntfs.h"
  41. /**
  42. * ntfs_test_inode - compare two (possibly fake) inodes for equality
  43. * @vi: vfs inode which to test
  44. * @na: ntfs attribute which is being tested with
  45. *
  46. * Compare the ntfs attribute embedded in the ntfs specific part of the vfs
  47. * inode @vi for equality with the ntfs attribute @na.
  48. *
  49. * If searching for the normal file/directory inode, set @na->type to AT_UNUSED.
  50. * @na->name and @na->name_len are then ignored.
  51. *
  52. * Return 1 if the attributes match and 0 if not.
  53. *
  54. * NOTE: This function runs with the inode_hash_lock spin lock held so it is not
  55. * allowed to sleep.
  56. */
  57. int ntfs_test_inode(struct inode *vi, ntfs_attr *na)
  58. {
  59. ntfs_inode *ni;
  60. if (vi->i_ino != na->mft_no)
  61. return 0;
  62. ni = NTFS_I(vi);
  63. /* If !NInoAttr(ni), @vi is a normal file or directory inode. */
  64. if (likely(!NInoAttr(ni))) {
  65. /* If not looking for a normal inode this is a mismatch. */
  66. if (unlikely(na->type != AT_UNUSED))
  67. return 0;
  68. } else {
  69. /* A fake inode describing an attribute. */
  70. if (ni->type != na->type)
  71. return 0;
  72. if (ni->name_len != na->name_len)
  73. return 0;
  74. if (na->name_len && memcmp(ni->name, na->name,
  75. na->name_len * sizeof(ntfschar)))
  76. return 0;
  77. }
  78. /* Match! */
  79. return 1;
  80. }
  81. /**
  82. * ntfs_init_locked_inode - initialize an inode
  83. * @vi: vfs inode to initialize
  84. * @na: ntfs attribute which to initialize @vi to
  85. *
  86. * Initialize the vfs inode @vi with the values from the ntfs attribute @na in
  87. * order to enable ntfs_test_inode() to do its work.
  88. *
  89. * If initializing the normal file/directory inode, set @na->type to AT_UNUSED.
  90. * In that case, @na->name and @na->name_len should be set to NULL and 0,
  91. * respectively. Although that is not strictly necessary as
  92. * ntfs_read_locked_inode() will fill them in later.
  93. *
  94. * Return 0 on success and -errno on error.
  95. *
  96. * NOTE: This function runs with the inode->i_lock spin lock held so it is not
  97. * allowed to sleep. (Hence the GFP_ATOMIC allocation.)
  98. */
  99. static int ntfs_init_locked_inode(struct inode *vi, ntfs_attr *na)
  100. {
  101. ntfs_inode *ni = NTFS_I(vi);
  102. vi->i_ino = na->mft_no;
  103. ni->type = na->type;
  104. if (na->type == AT_INDEX_ALLOCATION)
  105. NInoSetMstProtected(ni);
  106. ni->name = na->name;
  107. ni->name_len = na->name_len;
  108. /* If initializing a normal inode, we are done. */
  109. if (likely(na->type == AT_UNUSED)) {
  110. BUG_ON(na->name);
  111. BUG_ON(na->name_len);
  112. return 0;
  113. }
  114. /* It is a fake inode. */
  115. NInoSetAttr(ni);
  116. /*
  117. * We have I30 global constant as an optimization as it is the name
  118. * in >99.9% of named attributes! The other <0.1% incur a GFP_ATOMIC
  119. * allocation but that is ok. And most attributes are unnamed anyway,
  120. * thus the fraction of named attributes with name != I30 is actually
  121. * absolutely tiny.
  122. */
  123. if (na->name_len && na->name != I30) {
  124. unsigned int i;
  125. BUG_ON(!na->name);
  126. i = na->name_len * sizeof(ntfschar);
  127. ni->name = kmalloc(i + sizeof(ntfschar), GFP_ATOMIC);
  128. if (!ni->name)
  129. return -ENOMEM;
  130. memcpy(ni->name, na->name, i);
  131. ni->name[na->name_len] = 0;
  132. }
  133. return 0;
  134. }
  135. typedef int (*set_t)(struct inode *, void *);
  136. static int ntfs_read_locked_inode(struct inode *vi);
  137. static int ntfs_read_locked_attr_inode(struct inode *base_vi, struct inode *vi);
  138. static int ntfs_read_locked_index_inode(struct inode *base_vi,
  139. struct inode *vi);
  140. /**
  141. * ntfs_iget - obtain a struct inode corresponding to a specific normal inode
  142. * @sb: super block of mounted volume
  143. * @mft_no: mft record number / inode number to obtain
  144. *
  145. * Obtain the struct inode corresponding to a specific normal inode (i.e. a
  146. * file or directory).
  147. *
  148. * If the inode is in the cache, it is just returned with an increased
  149. * reference count. Otherwise, a new struct inode is allocated and initialized,
  150. * and finally ntfs_read_locked_inode() is called to read in the inode and
  151. * fill in the remainder of the inode structure.
  152. *
  153. * Return the struct inode on success. Check the return value with IS_ERR() and
  154. * if true, the function failed and the error code is obtained from PTR_ERR().
  155. */
  156. struct inode *ntfs_iget(struct super_block *sb, unsigned long mft_no)
  157. {
  158. struct inode *vi;
  159. int err;
  160. ntfs_attr na;
  161. na.mft_no = mft_no;
  162. na.type = AT_UNUSED;
  163. na.name = NULL;
  164. na.name_len = 0;
  165. vi = iget5_locked(sb, mft_no, (test_t)ntfs_test_inode,
  166. (set_t)ntfs_init_locked_inode, &na);
  167. if (unlikely(!vi))
  168. return ERR_PTR(-ENOMEM);
  169. err = 0;
  170. /* If this is a freshly allocated inode, need to read it now. */
  171. if (vi->i_state & I_NEW) {
  172. err = ntfs_read_locked_inode(vi);
  173. unlock_new_inode(vi);
  174. }
  175. /*
  176. * There is no point in keeping bad inodes around if the failure was
  177. * due to ENOMEM. We want to be able to retry again later.
  178. */
  179. if (unlikely(err == -ENOMEM)) {
  180. iput(vi);
  181. vi = ERR_PTR(err);
  182. }
  183. return vi;
  184. }
  185. /**
  186. * ntfs_attr_iget - obtain a struct inode corresponding to an attribute
  187. * @base_vi: vfs base inode containing the attribute
  188. * @type: attribute type
  189. * @name: Unicode name of the attribute (NULL if unnamed)
  190. * @name_len: length of @name in Unicode characters (0 if unnamed)
  191. *
  192. * Obtain the (fake) struct inode corresponding to the attribute specified by
  193. * @type, @name, and @name_len, which is present in the base mft record
  194. * specified by the vfs inode @base_vi.
  195. *
  196. * If the attribute inode is in the cache, it is just returned with an
  197. * increased reference count. Otherwise, a new struct inode is allocated and
  198. * initialized, and finally ntfs_read_locked_attr_inode() is called to read the
  199. * attribute and fill in the inode structure.
  200. *
  201. * Note, for index allocation attributes, you need to use ntfs_index_iget()
  202. * instead of ntfs_attr_iget() as working with indices is a lot more complex.
  203. *
  204. * Return the struct inode of the attribute inode on success. Check the return
  205. * value with IS_ERR() and if true, the function failed and the error code is
  206. * obtained from PTR_ERR().
  207. */
  208. struct inode *ntfs_attr_iget(struct inode *base_vi, ATTR_TYPE type,
  209. ntfschar *name, u32 name_len)
  210. {
  211. struct inode *vi;
  212. int err;
  213. ntfs_attr na;
  214. /* Make sure no one calls ntfs_attr_iget() for indices. */
  215. BUG_ON(type == AT_INDEX_ALLOCATION);
  216. na.mft_no = base_vi->i_ino;
  217. na.type = type;
  218. na.name = name;
  219. na.name_len = name_len;
  220. vi = iget5_locked(base_vi->i_sb, na.mft_no, (test_t)ntfs_test_inode,
  221. (set_t)ntfs_init_locked_inode, &na);
  222. if (unlikely(!vi))
  223. return ERR_PTR(-ENOMEM);
  224. err = 0;
  225. /* If this is a freshly allocated inode, need to read it now. */
  226. if (vi->i_state & I_NEW) {
  227. err = ntfs_read_locked_attr_inode(base_vi, vi);
  228. unlock_new_inode(vi);
  229. }
  230. /*
  231. * There is no point in keeping bad attribute inodes around. This also
  232. * simplifies things in that we never need to check for bad attribute
  233. * inodes elsewhere.
  234. */
  235. if (unlikely(err)) {
  236. iput(vi);
  237. vi = ERR_PTR(err);
  238. }
  239. return vi;
  240. }
  241. /**
  242. * ntfs_index_iget - obtain a struct inode corresponding to an index
  243. * @base_vi: vfs base inode containing the index related attributes
  244. * @name: Unicode name of the index
  245. * @name_len: length of @name in Unicode characters
  246. *
  247. * Obtain the (fake) struct inode corresponding to the index specified by @name
  248. * and @name_len, which is present in the base mft record specified by the vfs
  249. * inode @base_vi.
  250. *
  251. * If the index inode is in the cache, it is just returned with an increased
  252. * reference count. Otherwise, a new struct inode is allocated and
  253. * initialized, and finally ntfs_read_locked_index_inode() is called to read
  254. * the index related attributes and fill in the inode structure.
  255. *
  256. * Return the struct inode of the index inode on success. Check the return
  257. * value with IS_ERR() and if true, the function failed and the error code is
  258. * obtained from PTR_ERR().
  259. */
  260. struct inode *ntfs_index_iget(struct inode *base_vi, ntfschar *name,
  261. u32 name_len)
  262. {
  263. struct inode *vi;
  264. int err;
  265. ntfs_attr na;
  266. na.mft_no = base_vi->i_ino;
  267. na.type = AT_INDEX_ALLOCATION;
  268. na.name = name;
  269. na.name_len = name_len;
  270. vi = iget5_locked(base_vi->i_sb, na.mft_no, (test_t)ntfs_test_inode,
  271. (set_t)ntfs_init_locked_inode, &na);
  272. if (unlikely(!vi))
  273. return ERR_PTR(-ENOMEM);
  274. err = 0;
  275. /* If this is a freshly allocated inode, need to read it now. */
  276. if (vi->i_state & I_NEW) {
  277. err = ntfs_read_locked_index_inode(base_vi, vi);
  278. unlock_new_inode(vi);
  279. }
  280. /*
  281. * There is no point in keeping bad index inodes around. This also
  282. * simplifies things in that we never need to check for bad index
  283. * inodes elsewhere.
  284. */
  285. if (unlikely(err)) {
  286. iput(vi);
  287. vi = ERR_PTR(err);
  288. }
  289. return vi;
  290. }
  291. struct inode *ntfs_alloc_big_inode(struct super_block *sb)
  292. {
  293. ntfs_inode *ni;
  294. ntfs_debug("Entering.");
  295. ni = kmem_cache_alloc(ntfs_big_inode_cache, GFP_NOFS);
  296. if (likely(ni != NULL)) {
  297. ni->state = 0;
  298. return VFS_I(ni);
  299. }
  300. ntfs_error(sb, "Allocation of NTFS big inode structure failed.");
  301. return NULL;
  302. }
  303. static void ntfs_i_callback(struct rcu_head *head)
  304. {
  305. struct inode *inode = container_of(head, struct inode, i_rcu);
  306. kmem_cache_free(ntfs_big_inode_cache, NTFS_I(inode));
  307. }
  308. void ntfs_destroy_big_inode(struct inode *inode)
  309. {
  310. ntfs_inode *ni = NTFS_I(inode);
  311. ntfs_debug("Entering.");
  312. BUG_ON(ni->page);
  313. if (!atomic_dec_and_test(&ni->count))
  314. BUG();
  315. call_rcu(&inode->i_rcu, ntfs_i_callback);
  316. }
  317. static inline ntfs_inode *ntfs_alloc_extent_inode(void)
  318. {
  319. ntfs_inode *ni;
  320. ntfs_debug("Entering.");
  321. ni = kmem_cache_alloc(ntfs_inode_cache, GFP_NOFS);
  322. if (likely(ni != NULL)) {
  323. ni->state = 0;
  324. return ni;
  325. }
  326. ntfs_error(NULL, "Allocation of NTFS inode structure failed.");
  327. return NULL;
  328. }
  329. static void ntfs_destroy_extent_inode(ntfs_inode *ni)
  330. {
  331. ntfs_debug("Entering.");
  332. BUG_ON(ni->page);
  333. if (!atomic_dec_and_test(&ni->count))
  334. BUG();
  335. kmem_cache_free(ntfs_inode_cache, ni);
  336. }
  337. /*
  338. * The attribute runlist lock has separate locking rules from the
  339. * normal runlist lock, so split the two lock-classes:
  340. */
  341. static struct lock_class_key attr_list_rl_lock_class;
  342. /**
  343. * __ntfs_init_inode - initialize ntfs specific part of an inode
  344. * @sb: super block of mounted volume
  345. * @ni: freshly allocated ntfs inode which to initialize
  346. *
  347. * Initialize an ntfs inode to defaults.
  348. *
  349. * NOTE: ni->mft_no, ni->state, ni->type, ni->name, and ni->name_len are left
  350. * untouched. Make sure to initialize them elsewhere.
  351. *
  352. * Return zero on success and -ENOMEM on error.
  353. */
  354. void __ntfs_init_inode(struct super_block *sb, ntfs_inode *ni)
  355. {
  356. ntfs_debug("Entering.");
  357. rwlock_init(&ni->size_lock);
  358. ni->initialized_size = ni->allocated_size = 0;
  359. ni->seq_no = 0;
  360. atomic_set(&ni->count, 1);
  361. ni->vol = NTFS_SB(sb);
  362. ntfs_init_runlist(&ni->runlist);
  363. mutex_init(&ni->mrec_lock);
  364. ni->page = NULL;
  365. ni->page_ofs = 0;
  366. ni->attr_list_size = 0;
  367. ni->attr_list = NULL;
  368. ntfs_init_runlist(&ni->attr_list_rl);
  369. lockdep_set_class(&ni->attr_list_rl.lock,
  370. &attr_list_rl_lock_class);
  371. ni->itype.index.block_size = 0;
  372. ni->itype.index.vcn_size = 0;
  373. ni->itype.index.collation_rule = 0;
  374. ni->itype.index.block_size_bits = 0;
  375. ni->itype.index.vcn_size_bits = 0;
  376. mutex_init(&ni->extent_lock);
  377. ni->nr_extents = 0;
  378. ni->ext.base_ntfs_ino = NULL;
  379. }
  380. /*
  381. * Extent inodes get MFT-mapped in a nested way, while the base inode
  382. * is still mapped. Teach this nesting to the lock validator by creating
  383. * a separate class for nested inode's mrec_lock's:
  384. */
  385. static struct lock_class_key extent_inode_mrec_lock_key;
  386. inline ntfs_inode *ntfs_new_extent_inode(struct super_block *sb,
  387. unsigned long mft_no)
  388. {
  389. ntfs_inode *ni = ntfs_alloc_extent_inode();
  390. ntfs_debug("Entering.");
  391. if (likely(ni != NULL)) {
  392. __ntfs_init_inode(sb, ni);
  393. lockdep_set_class(&ni->mrec_lock, &extent_inode_mrec_lock_key);
  394. ni->mft_no = mft_no;
  395. ni->type = AT_UNUSED;
  396. ni->name = NULL;
  397. ni->name_len = 0;
  398. }
  399. return ni;
  400. }
  401. /**
  402. * ntfs_is_extended_system_file - check if a file is in the $Extend directory
  403. * @ctx: initialized attribute search context
  404. *
  405. * Search all file name attributes in the inode described by the attribute
  406. * search context @ctx and check if any of the names are in the $Extend system
  407. * directory.
  408. *
  409. * Return values:
  410. * 1: file is in $Extend directory
  411. * 0: file is not in $Extend directory
  412. * -errno: failed to determine if the file is in the $Extend directory
  413. */
  414. static int ntfs_is_extended_system_file(ntfs_attr_search_ctx *ctx)
  415. {
  416. int nr_links, err;
  417. /* Restart search. */
  418. ntfs_attr_reinit_search_ctx(ctx);
  419. /* Get number of hard links. */
  420. nr_links = le16_to_cpu(ctx->mrec->link_count);
  421. /* Loop through all hard links. */
  422. while (!(err = ntfs_attr_lookup(AT_FILE_NAME, NULL, 0, 0, 0, NULL, 0,
  423. ctx))) {
  424. FILE_NAME_ATTR *file_name_attr;
  425. ATTR_RECORD *attr = ctx->attr;
  426. u8 *p, *p2;
  427. nr_links--;
  428. /*
  429. * Maximum sanity checking as we are called on an inode that
  430. * we suspect might be corrupt.
  431. */
  432. p = (u8*)attr + le32_to_cpu(attr->length);
  433. if (p < (u8*)ctx->mrec || (u8*)p > (u8*)ctx->mrec +
  434. le32_to_cpu(ctx->mrec->bytes_in_use)) {
  435. err_corrupt_attr:
  436. ntfs_error(ctx->ntfs_ino->vol->sb, "Corrupt file name "
  437. "attribute. You should run chkdsk.");
  438. return -EIO;
  439. }
  440. if (attr->non_resident) {
  441. ntfs_error(ctx->ntfs_ino->vol->sb, "Non-resident file "
  442. "name. You should run chkdsk.");
  443. return -EIO;
  444. }
  445. if (attr->flags) {
  446. ntfs_error(ctx->ntfs_ino->vol->sb, "File name with "
  447. "invalid flags. You should run "
  448. "chkdsk.");
  449. return -EIO;
  450. }
  451. if (!(attr->data.resident.flags & RESIDENT_ATTR_IS_INDEXED)) {
  452. ntfs_error(ctx->ntfs_ino->vol->sb, "Unindexed file "
  453. "name. You should run chkdsk.");
  454. return -EIO;
  455. }
  456. file_name_attr = (FILE_NAME_ATTR*)((u8*)attr +
  457. le16_to_cpu(attr->data.resident.value_offset));
  458. p2 = (u8*)attr + le32_to_cpu(attr->data.resident.value_length);
  459. if (p2 < (u8*)attr || p2 > p)
  460. goto err_corrupt_attr;
  461. /* This attribute is ok, but is it in the $Extend directory? */
  462. if (MREF_LE(file_name_attr->parent_directory) == FILE_Extend)
  463. return 1; /* YES, it's an extended system file. */
  464. }
  465. if (unlikely(err != -ENOENT))
  466. return err;
  467. if (unlikely(nr_links)) {
  468. ntfs_error(ctx->ntfs_ino->vol->sb, "Inode hard link count "
  469. "doesn't match number of name attributes. You "
  470. "should run chkdsk.");
  471. return -EIO;
  472. }
  473. return 0; /* NO, it is not an extended system file. */
  474. }
  475. /**
  476. * ntfs_read_locked_inode - read an inode from its device
  477. * @vi: inode to read
  478. *
  479. * ntfs_read_locked_inode() is called from ntfs_iget() to read the inode
  480. * described by @vi into memory from the device.
  481. *
  482. * The only fields in @vi that we need to/can look at when the function is
  483. * called are i_sb, pointing to the mounted device's super block, and i_ino,
  484. * the number of the inode to load.
  485. *
  486. * ntfs_read_locked_inode() maps, pins and locks the mft record number i_ino
  487. * for reading and sets up the necessary @vi fields as well as initializing
  488. * the ntfs inode.
  489. *
  490. * Q: What locks are held when the function is called?
  491. * A: i_state has I_NEW set, hence the inode is locked, also
  492. * i_count is set to 1, so it is not going to go away
  493. * i_flags is set to 0 and we have no business touching it. Only an ioctl()
  494. * is allowed to write to them. We should of course be honouring them but
  495. * we need to do that using the IS_* macros defined in include/linux/fs.h.
  496. * In any case ntfs_read_locked_inode() has nothing to do with i_flags.
  497. *
  498. * Return 0 on success and -errno on error. In the error case, the inode will
  499. * have had make_bad_inode() executed on it.
  500. */
  501. static int ntfs_read_locked_inode(struct inode *vi)
  502. {
  503. ntfs_volume *vol = NTFS_SB(vi->i_sb);
  504. ntfs_inode *ni;
  505. struct inode *bvi;
  506. MFT_RECORD *m;
  507. ATTR_RECORD *a;
  508. STANDARD_INFORMATION *si;
  509. ntfs_attr_search_ctx *ctx;
  510. int err = 0;
  511. ntfs_debug("Entering for i_ino 0x%lx.", vi->i_ino);
  512. /* Setup the generic vfs inode parts now. */
  513. vi->i_uid = vol->uid;
  514. vi->i_gid = vol->gid;
  515. vi->i_mode = 0;
  516. /*
  517. * Initialize the ntfs specific part of @vi special casing
  518. * FILE_MFT which we need to do at mount time.
  519. */
  520. if (vi->i_ino != FILE_MFT)
  521. ntfs_init_big_inode(vi);
  522. ni = NTFS_I(vi);
  523. m = map_mft_record(ni);
  524. if (IS_ERR(m)) {
  525. err = PTR_ERR(m);
  526. goto err_out;
  527. }
  528. ctx = ntfs_attr_get_search_ctx(ni, m);
  529. if (!ctx) {
  530. err = -ENOMEM;
  531. goto unm_err_out;
  532. }
  533. if (!(m->flags & MFT_RECORD_IN_USE)) {
  534. ntfs_error(vi->i_sb, "Inode is not in use!");
  535. goto unm_err_out;
  536. }
  537. if (m->base_mft_record) {
  538. ntfs_error(vi->i_sb, "Inode is an extent inode!");
  539. goto unm_err_out;
  540. }
  541. /* Transfer information from mft record into vfs and ntfs inodes. */
  542. vi->i_generation = ni->seq_no = le16_to_cpu(m->sequence_number);
  543. /*
  544. * FIXME: Keep in mind that link_count is two for files which have both
  545. * a long file name and a short file name as separate entries, so if
  546. * we are hiding short file names this will be too high. Either we need
  547. * to account for the short file names by subtracting them or we need
  548. * to make sure we delete files even though i_nlink is not zero which
  549. * might be tricky due to vfs interactions. Need to think about this
  550. * some more when implementing the unlink command.
  551. */
  552. set_nlink(vi, le16_to_cpu(m->link_count));
  553. /*
  554. * FIXME: Reparse points can have the directory bit set even though
  555. * they would be S_IFLNK. Need to deal with this further below when we
  556. * implement reparse points / symbolic links but it will do for now.
  557. * Also if not a directory, it could be something else, rather than
  558. * a regular file. But again, will do for now.
  559. */
  560. /* Everyone gets all permissions. */
  561. vi->i_mode |= S_IRWXUGO;
  562. /* If read-only, no one gets write permissions. */
  563. if (IS_RDONLY(vi))
  564. vi->i_mode &= ~S_IWUGO;
  565. if (m->flags & MFT_RECORD_IS_DIRECTORY) {
  566. vi->i_mode |= S_IFDIR;
  567. /*
  568. * Apply the directory permissions mask set in the mount
  569. * options.
  570. */
  571. vi->i_mode &= ~vol->dmask;
  572. /* Things break without this kludge! */
  573. if (vi->i_nlink > 1)
  574. set_nlink(vi, 1);
  575. } else {
  576. vi->i_mode |= S_IFREG;
  577. /* Apply the file permissions mask set in the mount options. */
  578. vi->i_mode &= ~vol->fmask;
  579. }
  580. /*
  581. * Find the standard information attribute in the mft record. At this
  582. * stage we haven't setup the attribute list stuff yet, so this could
  583. * in fact fail if the standard information is in an extent record, but
  584. * I don't think this actually ever happens.
  585. */
  586. err = ntfs_attr_lookup(AT_STANDARD_INFORMATION, NULL, 0, 0, 0, NULL, 0,
  587. ctx);
  588. if (unlikely(err)) {
  589. if (err == -ENOENT) {
  590. /*
  591. * TODO: We should be performing a hot fix here (if the
  592. * recover mount option is set) by creating a new
  593. * attribute.
  594. */
  595. ntfs_error(vi->i_sb, "$STANDARD_INFORMATION attribute "
  596. "is missing.");
  597. }
  598. goto unm_err_out;
  599. }
  600. a = ctx->attr;
  601. /* Get the standard information attribute value. */
  602. if ((u8 *)a + le16_to_cpu(a->data.resident.value_offset)
  603. + le32_to_cpu(a->data.resident.value_length) >
  604. (u8 *)ctx->mrec + vol->mft_record_size) {
  605. ntfs_error(vi->i_sb, "Corrupt standard information attribute in inode.");
  606. goto unm_err_out;
  607. }
  608. si = (STANDARD_INFORMATION*)((u8*)a +
  609. le16_to_cpu(a->data.resident.value_offset));
  610. /* Transfer information from the standard information into vi. */
  611. /*
  612. * Note: The i_?times do not quite map perfectly onto the NTFS times,
  613. * but they are close enough, and in the end it doesn't really matter
  614. * that much...
  615. */
  616. /*
  617. * mtime is the last change of the data within the file. Not changed
  618. * when only metadata is changed, e.g. a rename doesn't affect mtime.
  619. */
  620. vi->i_mtime = ntfs2utc(si->last_data_change_time);
  621. /*
  622. * ctime is the last change of the metadata of the file. This obviously
  623. * always changes, when mtime is changed. ctime can be changed on its
  624. * own, mtime is then not changed, e.g. when a file is renamed.
  625. */
  626. vi->i_ctime = ntfs2utc(si->last_mft_change_time);
  627. /*
  628. * Last access to the data within the file. Not changed during a rename
  629. * for example but changed whenever the file is written to.
  630. */
  631. vi->i_atime = ntfs2utc(si->last_access_time);
  632. /* Find the attribute list attribute if present. */
  633. ntfs_attr_reinit_search_ctx(ctx);
  634. err = ntfs_attr_lookup(AT_ATTRIBUTE_LIST, NULL, 0, 0, 0, NULL, 0, ctx);
  635. if (err) {
  636. if (unlikely(err != -ENOENT)) {
  637. ntfs_error(vi->i_sb, "Failed to lookup attribute list "
  638. "attribute.");
  639. goto unm_err_out;
  640. }
  641. } else /* if (!err) */ {
  642. if (vi->i_ino == FILE_MFT)
  643. goto skip_attr_list_load;
  644. ntfs_debug("Attribute list found in inode 0x%lx.", vi->i_ino);
  645. NInoSetAttrList(ni);
  646. a = ctx->attr;
  647. if (a->flags & ATTR_COMPRESSION_MASK) {
  648. ntfs_error(vi->i_sb, "Attribute list attribute is "
  649. "compressed.");
  650. goto unm_err_out;
  651. }
  652. if (a->flags & ATTR_IS_ENCRYPTED ||
  653. a->flags & ATTR_IS_SPARSE) {
  654. if (a->non_resident) {
  655. ntfs_error(vi->i_sb, "Non-resident attribute "
  656. "list attribute is encrypted/"
  657. "sparse.");
  658. goto unm_err_out;
  659. }
  660. ntfs_warning(vi->i_sb, "Resident attribute list "
  661. "attribute in inode 0x%lx is marked "
  662. "encrypted/sparse which is not true. "
  663. "However, Windows allows this and "
  664. "chkdsk does not detect or correct it "
  665. "so we will just ignore the invalid "
  666. "flags and pretend they are not set.",
  667. vi->i_ino);
  668. }
  669. /* Now allocate memory for the attribute list. */
  670. ni->attr_list_size = (u32)ntfs_attr_size(a);
  671. ni->attr_list = ntfs_malloc_nofs(ni->attr_list_size);
  672. if (!ni->attr_list) {
  673. ntfs_error(vi->i_sb, "Not enough memory to allocate "
  674. "buffer for attribute list.");
  675. err = -ENOMEM;
  676. goto unm_err_out;
  677. }
  678. if (a->non_resident) {
  679. NInoSetAttrListNonResident(ni);
  680. if (a->data.non_resident.lowest_vcn) {
  681. ntfs_error(vi->i_sb, "Attribute list has non "
  682. "zero lowest_vcn.");
  683. goto unm_err_out;
  684. }
  685. /*
  686. * Setup the runlist. No need for locking as we have
  687. * exclusive access to the inode at this time.
  688. */
  689. ni->attr_list_rl.rl = ntfs_mapping_pairs_decompress(vol,
  690. a, NULL);
  691. if (IS_ERR(ni->attr_list_rl.rl)) {
  692. err = PTR_ERR(ni->attr_list_rl.rl);
  693. ni->attr_list_rl.rl = NULL;
  694. ntfs_error(vi->i_sb, "Mapping pairs "
  695. "decompression failed.");
  696. goto unm_err_out;
  697. }
  698. /* Now load the attribute list. */
  699. if ((err = load_attribute_list(vol, &ni->attr_list_rl,
  700. ni->attr_list, ni->attr_list_size,
  701. sle64_to_cpu(a->data.non_resident.
  702. initialized_size)))) {
  703. ntfs_error(vi->i_sb, "Failed to load "
  704. "attribute list attribute.");
  705. goto unm_err_out;
  706. }
  707. } else /* if (!a->non_resident) */ {
  708. if ((u8*)a + le16_to_cpu(a->data.resident.value_offset)
  709. + le32_to_cpu(
  710. a->data.resident.value_length) >
  711. (u8*)ctx->mrec + vol->mft_record_size) {
  712. ntfs_error(vi->i_sb, "Corrupt attribute list "
  713. "in inode.");
  714. goto unm_err_out;
  715. }
  716. /* Now copy the attribute list. */
  717. memcpy(ni->attr_list, (u8*)a + le16_to_cpu(
  718. a->data.resident.value_offset),
  719. le32_to_cpu(
  720. a->data.resident.value_length));
  721. }
  722. }
  723. skip_attr_list_load:
  724. /*
  725. * If an attribute list is present we now have the attribute list value
  726. * in ntfs_ino->attr_list and it is ntfs_ino->attr_list_size bytes.
  727. */
  728. if (S_ISDIR(vi->i_mode)) {
  729. loff_t bvi_size;
  730. ntfs_inode *bni;
  731. INDEX_ROOT *ir;
  732. u8 *ir_end, *index_end;
  733. /* It is a directory, find index root attribute. */
  734. ntfs_attr_reinit_search_ctx(ctx);
  735. err = ntfs_attr_lookup(AT_INDEX_ROOT, I30, 4, CASE_SENSITIVE,
  736. 0, NULL, 0, ctx);
  737. if (unlikely(err)) {
  738. if (err == -ENOENT) {
  739. // FIXME: File is corrupt! Hot-fix with empty
  740. // index root attribute if recovery option is
  741. // set.
  742. ntfs_error(vi->i_sb, "$INDEX_ROOT attribute "
  743. "is missing.");
  744. }
  745. goto unm_err_out;
  746. }
  747. a = ctx->attr;
  748. /* Set up the state. */
  749. if (unlikely(a->non_resident)) {
  750. ntfs_error(vol->sb, "$INDEX_ROOT attribute is not "
  751. "resident.");
  752. goto unm_err_out;
  753. }
  754. /* Ensure the attribute name is placed before the value. */
  755. if (unlikely(a->name_length && (le16_to_cpu(a->name_offset) >=
  756. le16_to_cpu(a->data.resident.value_offset)))) {
  757. ntfs_error(vol->sb, "$INDEX_ROOT attribute name is "
  758. "placed after the attribute value.");
  759. goto unm_err_out;
  760. }
  761. /*
  762. * Compressed/encrypted index root just means that the newly
  763. * created files in that directory should be created compressed/
  764. * encrypted. However index root cannot be both compressed and
  765. * encrypted.
  766. */
  767. if (a->flags & ATTR_COMPRESSION_MASK)
  768. NInoSetCompressed(ni);
  769. if (a->flags & ATTR_IS_ENCRYPTED) {
  770. if (a->flags & ATTR_COMPRESSION_MASK) {
  771. ntfs_error(vi->i_sb, "Found encrypted and "
  772. "compressed attribute.");
  773. goto unm_err_out;
  774. }
  775. NInoSetEncrypted(ni);
  776. }
  777. if (a->flags & ATTR_IS_SPARSE)
  778. NInoSetSparse(ni);
  779. ir = (INDEX_ROOT*)((u8*)a +
  780. le16_to_cpu(a->data.resident.value_offset));
  781. ir_end = (u8*)ir + le32_to_cpu(a->data.resident.value_length);
  782. if (ir_end > (u8*)ctx->mrec + vol->mft_record_size) {
  783. ntfs_error(vi->i_sb, "$INDEX_ROOT attribute is "
  784. "corrupt.");
  785. goto unm_err_out;
  786. }
  787. index_end = (u8*)&ir->index +
  788. le32_to_cpu(ir->index.index_length);
  789. if (index_end > ir_end) {
  790. ntfs_error(vi->i_sb, "Directory index is corrupt.");
  791. goto unm_err_out;
  792. }
  793. if (ir->type != AT_FILE_NAME) {
  794. ntfs_error(vi->i_sb, "Indexed attribute is not "
  795. "$FILE_NAME.");
  796. goto unm_err_out;
  797. }
  798. if (ir->collation_rule != COLLATION_FILE_NAME) {
  799. ntfs_error(vi->i_sb, "Index collation rule is not "
  800. "COLLATION_FILE_NAME.");
  801. goto unm_err_out;
  802. }
  803. ni->itype.index.collation_rule = ir->collation_rule;
  804. ni->itype.index.block_size = le32_to_cpu(ir->index_block_size);
  805. if (ni->itype.index.block_size &
  806. (ni->itype.index.block_size - 1)) {
  807. ntfs_error(vi->i_sb, "Index block size (%u) is not a "
  808. "power of two.",
  809. ni->itype.index.block_size);
  810. goto unm_err_out;
  811. }
  812. if (ni->itype.index.block_size > PAGE_SIZE) {
  813. ntfs_error(vi->i_sb, "Index block size (%u) > "
  814. "PAGE_SIZE (%ld) is not "
  815. "supported. Sorry.",
  816. ni->itype.index.block_size,
  817. PAGE_SIZE);
  818. err = -EOPNOTSUPP;
  819. goto unm_err_out;
  820. }
  821. if (ni->itype.index.block_size < NTFS_BLOCK_SIZE) {
  822. ntfs_error(vi->i_sb, "Index block size (%u) < "
  823. "NTFS_BLOCK_SIZE (%i) is not "
  824. "supported. Sorry.",
  825. ni->itype.index.block_size,
  826. NTFS_BLOCK_SIZE);
  827. err = -EOPNOTSUPP;
  828. goto unm_err_out;
  829. }
  830. ni->itype.index.block_size_bits =
  831. ffs(ni->itype.index.block_size) - 1;
  832. /* Determine the size of a vcn in the directory index. */
  833. if (vol->cluster_size <= ni->itype.index.block_size) {
  834. ni->itype.index.vcn_size = vol->cluster_size;
  835. ni->itype.index.vcn_size_bits = vol->cluster_size_bits;
  836. } else {
  837. ni->itype.index.vcn_size = vol->sector_size;
  838. ni->itype.index.vcn_size_bits = vol->sector_size_bits;
  839. }
  840. /* Setup the index allocation attribute, even if not present. */
  841. NInoSetMstProtected(ni);
  842. ni->type = AT_INDEX_ALLOCATION;
  843. ni->name = I30;
  844. ni->name_len = 4;
  845. if (!(ir->index.flags & LARGE_INDEX)) {
  846. /* No index allocation. */
  847. vi->i_size = ni->initialized_size =
  848. ni->allocated_size = 0;
  849. /* We are done with the mft record, so we release it. */
  850. ntfs_attr_put_search_ctx(ctx);
  851. unmap_mft_record(ni);
  852. m = NULL;
  853. ctx = NULL;
  854. goto skip_large_dir_stuff;
  855. } /* LARGE_INDEX: Index allocation present. Setup state. */
  856. NInoSetIndexAllocPresent(ni);
  857. /* Find index allocation attribute. */
  858. ntfs_attr_reinit_search_ctx(ctx);
  859. err = ntfs_attr_lookup(AT_INDEX_ALLOCATION, I30, 4,
  860. CASE_SENSITIVE, 0, NULL, 0, ctx);
  861. if (unlikely(err)) {
  862. if (err == -ENOENT)
  863. ntfs_error(vi->i_sb, "$INDEX_ALLOCATION "
  864. "attribute is not present but "
  865. "$INDEX_ROOT indicated it is.");
  866. else
  867. ntfs_error(vi->i_sb, "Failed to lookup "
  868. "$INDEX_ALLOCATION "
  869. "attribute.");
  870. goto unm_err_out;
  871. }
  872. a = ctx->attr;
  873. if (!a->non_resident) {
  874. ntfs_error(vi->i_sb, "$INDEX_ALLOCATION attribute "
  875. "is resident.");
  876. goto unm_err_out;
  877. }
  878. /*
  879. * Ensure the attribute name is placed before the mapping pairs
  880. * array.
  881. */
  882. if (unlikely(a->name_length && (le16_to_cpu(a->name_offset) >=
  883. le16_to_cpu(
  884. a->data.non_resident.mapping_pairs_offset)))) {
  885. ntfs_error(vol->sb, "$INDEX_ALLOCATION attribute name "
  886. "is placed after the mapping pairs "
  887. "array.");
  888. goto unm_err_out;
  889. }
  890. if (a->flags & ATTR_IS_ENCRYPTED) {
  891. ntfs_error(vi->i_sb, "$INDEX_ALLOCATION attribute "
  892. "is encrypted.");
  893. goto unm_err_out;
  894. }
  895. if (a->flags & ATTR_IS_SPARSE) {
  896. ntfs_error(vi->i_sb, "$INDEX_ALLOCATION attribute "
  897. "is sparse.");
  898. goto unm_err_out;
  899. }
  900. if (a->flags & ATTR_COMPRESSION_MASK) {
  901. ntfs_error(vi->i_sb, "$INDEX_ALLOCATION attribute "
  902. "is compressed.");
  903. goto unm_err_out;
  904. }
  905. if (a->data.non_resident.lowest_vcn) {
  906. ntfs_error(vi->i_sb, "First extent of "
  907. "$INDEX_ALLOCATION attribute has non "
  908. "zero lowest_vcn.");
  909. goto unm_err_out;
  910. }
  911. vi->i_size = sle64_to_cpu(a->data.non_resident.data_size);
  912. ni->initialized_size = sle64_to_cpu(
  913. a->data.non_resident.initialized_size);
  914. ni->allocated_size = sle64_to_cpu(
  915. a->data.non_resident.allocated_size);
  916. /*
  917. * We are done with the mft record, so we release it. Otherwise
  918. * we would deadlock in ntfs_attr_iget().
  919. */
  920. ntfs_attr_put_search_ctx(ctx);
  921. unmap_mft_record(ni);
  922. m = NULL;
  923. ctx = NULL;
  924. /* Get the index bitmap attribute inode. */
  925. bvi = ntfs_attr_iget(vi, AT_BITMAP, I30, 4);
  926. if (IS_ERR(bvi)) {
  927. ntfs_error(vi->i_sb, "Failed to get bitmap attribute.");
  928. err = PTR_ERR(bvi);
  929. goto unm_err_out;
  930. }
  931. bni = NTFS_I(bvi);
  932. if (NInoCompressed(bni) || NInoEncrypted(bni) ||
  933. NInoSparse(bni)) {
  934. ntfs_error(vi->i_sb, "$BITMAP attribute is compressed "
  935. "and/or encrypted and/or sparse.");
  936. goto iput_unm_err_out;
  937. }
  938. /* Consistency check bitmap size vs. index allocation size. */
  939. bvi_size = i_size_read(bvi);
  940. if ((bvi_size << 3) < (vi->i_size >>
  941. ni->itype.index.block_size_bits)) {
  942. ntfs_error(vi->i_sb, "Index bitmap too small (0x%llx) "
  943. "for index allocation (0x%llx).",
  944. bvi_size << 3, vi->i_size);
  945. goto iput_unm_err_out;
  946. }
  947. /* No longer need the bitmap attribute inode. */
  948. iput(bvi);
  949. skip_large_dir_stuff:
  950. /* Setup the operations for this inode. */
  951. vi->i_op = &ntfs_dir_inode_ops;
  952. vi->i_fop = &ntfs_dir_ops;
  953. vi->i_mapping->a_ops = &ntfs_mst_aops;
  954. } else {
  955. /* It is a file. */
  956. ntfs_attr_reinit_search_ctx(ctx);
  957. /* Setup the data attribute, even if not present. */
  958. ni->type = AT_DATA;
  959. ni->name = NULL;
  960. ni->name_len = 0;
  961. /* Find first extent of the unnamed data attribute. */
  962. err = ntfs_attr_lookup(AT_DATA, NULL, 0, 0, 0, NULL, 0, ctx);
  963. if (unlikely(err)) {
  964. vi->i_size = ni->initialized_size =
  965. ni->allocated_size = 0;
  966. if (err != -ENOENT) {
  967. ntfs_error(vi->i_sb, "Failed to lookup $DATA "
  968. "attribute.");
  969. goto unm_err_out;
  970. }
  971. /*
  972. * FILE_Secure does not have an unnamed $DATA
  973. * attribute, so we special case it here.
  974. */
  975. if (vi->i_ino == FILE_Secure)
  976. goto no_data_attr_special_case;
  977. /*
  978. * Most if not all the system files in the $Extend
  979. * system directory do not have unnamed data
  980. * attributes so we need to check if the parent
  981. * directory of the file is FILE_Extend and if it is
  982. * ignore this error. To do this we need to get the
  983. * name of this inode from the mft record as the name
  984. * contains the back reference to the parent directory.
  985. */
  986. if (ntfs_is_extended_system_file(ctx) > 0)
  987. goto no_data_attr_special_case;
  988. // FIXME: File is corrupt! Hot-fix with empty data
  989. // attribute if recovery option is set.
  990. ntfs_error(vi->i_sb, "$DATA attribute is missing.");
  991. goto unm_err_out;
  992. }
  993. a = ctx->attr;
  994. /* Setup the state. */
  995. if (a->flags & (ATTR_COMPRESSION_MASK | ATTR_IS_SPARSE)) {
  996. if (a->flags & ATTR_COMPRESSION_MASK) {
  997. NInoSetCompressed(ni);
  998. if (vol->cluster_size > 4096) {
  999. ntfs_error(vi->i_sb, "Found "
  1000. "compressed data but "
  1001. "compression is "
  1002. "disabled due to "
  1003. "cluster size (%i) > "
  1004. "4kiB.",
  1005. vol->cluster_size);
  1006. goto unm_err_out;
  1007. }
  1008. if ((a->flags & ATTR_COMPRESSION_MASK)
  1009. != ATTR_IS_COMPRESSED) {
  1010. ntfs_error(vi->i_sb, "Found unknown "
  1011. "compression method "
  1012. "or corrupt file.");
  1013. goto unm_err_out;
  1014. }
  1015. }
  1016. if (a->flags & ATTR_IS_SPARSE)
  1017. NInoSetSparse(ni);
  1018. }
  1019. if (a->flags & ATTR_IS_ENCRYPTED) {
  1020. if (NInoCompressed(ni)) {
  1021. ntfs_error(vi->i_sb, "Found encrypted and "
  1022. "compressed data.");
  1023. goto unm_err_out;
  1024. }
  1025. NInoSetEncrypted(ni);
  1026. }
  1027. if (a->non_resident) {
  1028. NInoSetNonResident(ni);
  1029. if (NInoCompressed(ni) || NInoSparse(ni)) {
  1030. if (NInoCompressed(ni) && a->data.non_resident.
  1031. compression_unit != 4) {
  1032. ntfs_error(vi->i_sb, "Found "
  1033. "non-standard "
  1034. "compression unit (%u "
  1035. "instead of 4). "
  1036. "Cannot handle this.",
  1037. a->data.non_resident.
  1038. compression_unit);
  1039. err = -EOPNOTSUPP;
  1040. goto unm_err_out;
  1041. }
  1042. if (a->data.non_resident.compression_unit) {
  1043. ni->itype.compressed.block_size = 1U <<
  1044. (a->data.non_resident.
  1045. compression_unit +
  1046. vol->cluster_size_bits);
  1047. ni->itype.compressed.block_size_bits =
  1048. ffs(ni->itype.
  1049. compressed.
  1050. block_size) - 1;
  1051. ni->itype.compressed.block_clusters =
  1052. 1U << a->data.
  1053. non_resident.
  1054. compression_unit;
  1055. } else {
  1056. ni->itype.compressed.block_size = 0;
  1057. ni->itype.compressed.block_size_bits =
  1058. 0;
  1059. ni->itype.compressed.block_clusters =
  1060. 0;
  1061. }
  1062. ni->itype.compressed.size = sle64_to_cpu(
  1063. a->data.non_resident.
  1064. compressed_size);
  1065. }
  1066. if (a->data.non_resident.lowest_vcn) {
  1067. ntfs_error(vi->i_sb, "First extent of $DATA "
  1068. "attribute has non zero "
  1069. "lowest_vcn.");
  1070. goto unm_err_out;
  1071. }
  1072. vi->i_size = sle64_to_cpu(
  1073. a->data.non_resident.data_size);
  1074. ni->initialized_size = sle64_to_cpu(
  1075. a->data.non_resident.initialized_size);
  1076. ni->allocated_size = sle64_to_cpu(
  1077. a->data.non_resident.allocated_size);
  1078. } else { /* Resident attribute. */
  1079. vi->i_size = ni->initialized_size = le32_to_cpu(
  1080. a->data.resident.value_length);
  1081. ni->allocated_size = le32_to_cpu(a->length) -
  1082. le16_to_cpu(
  1083. a->data.resident.value_offset);
  1084. if (vi->i_size > ni->allocated_size) {
  1085. ntfs_error(vi->i_sb, "Resident data attribute "
  1086. "is corrupt (size exceeds "
  1087. "allocation).");
  1088. goto unm_err_out;
  1089. }
  1090. }
  1091. no_data_attr_special_case:
  1092. /* We are done with the mft record, so we release it. */
  1093. ntfs_attr_put_search_ctx(ctx);
  1094. unmap_mft_record(ni);
  1095. m = NULL;
  1096. ctx = NULL;
  1097. /* Setup the operations for this inode. */
  1098. vi->i_op = &ntfs_file_inode_ops;
  1099. vi->i_fop = &ntfs_file_ops;
  1100. vi->i_mapping->a_ops = &ntfs_normal_aops;
  1101. if (NInoMstProtected(ni))
  1102. vi->i_mapping->a_ops = &ntfs_mst_aops;
  1103. else if (NInoCompressed(ni))
  1104. vi->i_mapping->a_ops = &ntfs_compressed_aops;
  1105. }
  1106. /*
  1107. * The number of 512-byte blocks used on disk (for stat). This is in so
  1108. * far inaccurate as it doesn't account for any named streams or other
  1109. * special non-resident attributes, but that is how Windows works, too,
  1110. * so we are at least consistent with Windows, if not entirely
  1111. * consistent with the Linux Way. Doing it the Linux Way would cause a
  1112. * significant slowdown as it would involve iterating over all
  1113. * attributes in the mft record and adding the allocated/compressed
  1114. * sizes of all non-resident attributes present to give us the Linux
  1115. * correct size that should go into i_blocks (after division by 512).
  1116. */
  1117. if (S_ISREG(vi->i_mode) && (NInoCompressed(ni) || NInoSparse(ni)))
  1118. vi->i_blocks = ni->itype.compressed.size >> 9;
  1119. else
  1120. vi->i_blocks = ni->allocated_size >> 9;
  1121. ntfs_debug("Done.");
  1122. return 0;
  1123. iput_unm_err_out:
  1124. iput(bvi);
  1125. unm_err_out:
  1126. if (!err)
  1127. err = -EIO;
  1128. if (ctx)
  1129. ntfs_attr_put_search_ctx(ctx);
  1130. if (m)
  1131. unmap_mft_record(ni);
  1132. err_out:
  1133. ntfs_error(vol->sb, "Failed with error code %i. Marking corrupt "
  1134. "inode 0x%lx as bad. Run chkdsk.", err, vi->i_ino);
  1135. make_bad_inode(vi);
  1136. if (err != -EOPNOTSUPP && err != -ENOMEM)
  1137. NVolSetErrors(vol);
  1138. return err;
  1139. }
  1140. /**
  1141. * ntfs_read_locked_attr_inode - read an attribute inode from its base inode
  1142. * @base_vi: base inode
  1143. * @vi: attribute inode to read
  1144. *
  1145. * ntfs_read_locked_attr_inode() is called from ntfs_attr_iget() to read the
  1146. * attribute inode described by @vi into memory from the base mft record
  1147. * described by @base_ni.
  1148. *
  1149. * ntfs_read_locked_attr_inode() maps, pins and locks the base inode for
  1150. * reading and looks up the attribute described by @vi before setting up the
  1151. * necessary fields in @vi as well as initializing the ntfs inode.
  1152. *
  1153. * Q: What locks are held when the function is called?
  1154. * A: i_state has I_NEW set, hence the inode is locked, also
  1155. * i_count is set to 1, so it is not going to go away
  1156. *
  1157. * Return 0 on success and -errno on error. In the error case, the inode will
  1158. * have had make_bad_inode() executed on it.
  1159. *
  1160. * Note this cannot be called for AT_INDEX_ALLOCATION.
  1161. */
  1162. static int ntfs_read_locked_attr_inode(struct inode *base_vi, struct inode *vi)
  1163. {
  1164. ntfs_volume *vol = NTFS_SB(vi->i_sb);
  1165. ntfs_inode *ni, *base_ni;
  1166. MFT_RECORD *m;
  1167. ATTR_RECORD *a;
  1168. ntfs_attr_search_ctx *ctx;
  1169. int err = 0;
  1170. ntfs_debug("Entering for i_ino 0x%lx.", vi->i_ino);
  1171. ntfs_init_big_inode(vi);
  1172. ni = NTFS_I(vi);
  1173. base_ni = NTFS_I(base_vi);
  1174. /* Just mirror the values from the base inode. */
  1175. vi->i_uid = base_vi->i_uid;
  1176. vi->i_gid = base_vi->i_gid;
  1177. set_nlink(vi, base_vi->i_nlink);
  1178. vi->i_mtime = base_vi->i_mtime;
  1179. vi->i_ctime = base_vi->i_ctime;
  1180. vi->i_atime = base_vi->i_atime;
  1181. vi->i_generation = ni->seq_no = base_ni->seq_no;
  1182. /* Set inode type to zero but preserve permissions. */
  1183. vi->i_mode = base_vi->i_mode & ~S_IFMT;
  1184. m = map_mft_record(base_ni);
  1185. if (IS_ERR(m)) {
  1186. err = PTR_ERR(m);
  1187. goto err_out;
  1188. }
  1189. ctx = ntfs_attr_get_search_ctx(base_ni, m);
  1190. if (!ctx) {
  1191. err = -ENOMEM;
  1192. goto unm_err_out;
  1193. }
  1194. /* Find the attribute. */
  1195. err = ntfs_attr_lookup(ni->type, ni->name, ni->name_len,
  1196. CASE_SENSITIVE, 0, NULL, 0, ctx);
  1197. if (unlikely(err))
  1198. goto unm_err_out;
  1199. a = ctx->attr;
  1200. if (a->flags & (ATTR_COMPRESSION_MASK | ATTR_IS_SPARSE)) {
  1201. if (a->flags & ATTR_COMPRESSION_MASK) {
  1202. NInoSetCompressed(ni);
  1203. if ((ni->type != AT_DATA) || (ni->type == AT_DATA &&
  1204. ni->name_len)) {
  1205. ntfs_error(vi->i_sb, "Found compressed "
  1206. "non-data or named data "
  1207. "attribute. Please report "
  1208. "you saw this message to "
  1209. "linux-ntfs-dev@lists."
  1210. "sourceforge.net");
  1211. goto unm_err_out;
  1212. }
  1213. if (vol->cluster_size > 4096) {
  1214. ntfs_error(vi->i_sb, "Found compressed "
  1215. "attribute but compression is "
  1216. "disabled due to cluster size "
  1217. "(%i) > 4kiB.",
  1218. vol->cluster_size);
  1219. goto unm_err_out;
  1220. }
  1221. if ((a->flags & ATTR_COMPRESSION_MASK) !=
  1222. ATTR_IS_COMPRESSED) {
  1223. ntfs_error(vi->i_sb, "Found unknown "
  1224. "compression method.");
  1225. goto unm_err_out;
  1226. }
  1227. }
  1228. /*
  1229. * The compressed/sparse flag set in an index root just means
  1230. * to compress all files.
  1231. */
  1232. if (NInoMstProtected(ni) && ni->type != AT_INDEX_ROOT) {
  1233. ntfs_error(vi->i_sb, "Found mst protected attribute "
  1234. "but the attribute is %s. Please "
  1235. "report you saw this message to "
  1236. "linux-ntfs-dev@lists.sourceforge.net",
  1237. NInoCompressed(ni) ? "compressed" :
  1238. "sparse");
  1239. goto unm_err_out;
  1240. }
  1241. if (a->flags & ATTR_IS_SPARSE)
  1242. NInoSetSparse(ni);
  1243. }
  1244. if (a->flags & ATTR_IS_ENCRYPTED) {
  1245. if (NInoCompressed(ni)) {
  1246. ntfs_error(vi->i_sb, "Found encrypted and compressed "
  1247. "data.");
  1248. goto unm_err_out;
  1249. }
  1250. /*
  1251. * The encryption flag set in an index root just means to
  1252. * encrypt all files.
  1253. */
  1254. if (NInoMstProtected(ni) && ni->type != AT_INDEX_ROOT) {
  1255. ntfs_error(vi->i_sb, "Found mst protected attribute "
  1256. "but the attribute is encrypted. "
  1257. "Please report you saw this message "
  1258. "to linux-ntfs-dev@lists.sourceforge."
  1259. "net");
  1260. goto unm_err_out;
  1261. }
  1262. if (ni->type != AT_DATA) {
  1263. ntfs_error(vi->i_sb, "Found encrypted non-data "
  1264. "attribute.");
  1265. goto unm_err_out;
  1266. }
  1267. NInoSetEncrypted(ni);
  1268. }
  1269. if (!a->non_resident) {
  1270. /* Ensure the attribute name is placed before the value. */
  1271. if (unlikely(a->name_length && (le16_to_cpu(a->name_offset) >=
  1272. le16_to_cpu(a->data.resident.value_offset)))) {
  1273. ntfs_error(vol->sb, "Attribute name is placed after "
  1274. "the attribute value.");
  1275. goto unm_err_out;
  1276. }
  1277. if (NInoMstProtected(ni)) {
  1278. ntfs_error(vi->i_sb, "Found mst protected attribute "
  1279. "but the attribute is resident. "
  1280. "Please report you saw this message to "
  1281. "linux-ntfs-dev@lists.sourceforge.net");
  1282. goto unm_err_out;
  1283. }
  1284. vi->i_size = ni->initialized_size = le32_to_cpu(
  1285. a->data.resident.value_length);
  1286. ni->allocated_size = le32_to_cpu(a->length) -
  1287. le16_to_cpu(a->data.resident.value_offset);
  1288. if (vi->i_size > ni->allocated_size) {
  1289. ntfs_error(vi->i_sb, "Resident attribute is corrupt "
  1290. "(size exceeds allocation).");
  1291. goto unm_err_out;
  1292. }
  1293. } else {
  1294. NInoSetNonResident(ni);
  1295. /*
  1296. * Ensure the attribute name is placed before the mapping pairs
  1297. * array.
  1298. */
  1299. if (unlikely(a->name_length && (le16_to_cpu(a->name_offset) >=
  1300. le16_to_cpu(
  1301. a->data.non_resident.mapping_pairs_offset)))) {
  1302. ntfs_error(vol->sb, "Attribute name is placed after "
  1303. "the mapping pairs array.");
  1304. goto unm_err_out;
  1305. }
  1306. if (NInoCompressed(ni) || NInoSparse(ni)) {
  1307. if (NInoCompressed(ni) && a->data.non_resident.
  1308. compression_unit != 4) {
  1309. ntfs_error(vi->i_sb, "Found non-standard "
  1310. "compression unit (%u instead "
  1311. "of 4). Cannot handle this.",
  1312. a->data.non_resident.
  1313. compression_unit);
  1314. err = -EOPNOTSUPP;
  1315. goto unm_err_out;
  1316. }
  1317. if (a->data.non_resident.compression_unit) {
  1318. ni->itype.compressed.block_size = 1U <<
  1319. (a->data.non_resident.
  1320. compression_unit +
  1321. vol->cluster_size_bits);
  1322. ni->itype.compressed.block_size_bits =
  1323. ffs(ni->itype.compressed.
  1324. block_size) - 1;
  1325. ni->itype.compressed.block_clusters = 1U <<
  1326. a->data.non_resident.
  1327. compression_unit;
  1328. } else {
  1329. ni->itype.compressed.block_size = 0;
  1330. ni->itype.compressed.block_size_bits = 0;
  1331. ni->itype.compressed.block_clusters = 0;
  1332. }
  1333. ni->itype.compressed.size = sle64_to_cpu(
  1334. a->data.non_resident.compressed_size);
  1335. }
  1336. if (a->data.non_resident.lowest_vcn) {
  1337. ntfs_error(vi->i_sb, "First extent of attribute has "
  1338. "non-zero lowest_vcn.");
  1339. goto unm_err_out;
  1340. }
  1341. vi->i_size = sle64_to_cpu(a->data.non_resident.data_size);
  1342. ni->initialized_size = sle64_to_cpu(
  1343. a->data.non_resident.initialized_size);
  1344. ni->allocated_size = sle64_to_cpu(
  1345. a->data.non_resident.allocated_size);
  1346. }
  1347. vi->i_mapping->a_ops = &ntfs_normal_aops;
  1348. if (NInoMstProtected(ni))
  1349. vi->i_mapping->a_ops = &ntfs_mst_aops;
  1350. else if (NInoCompressed(ni))
  1351. vi->i_mapping->a_ops = &ntfs_compressed_aops;
  1352. if ((NInoCompressed(ni) || NInoSparse(ni)) && ni->type != AT_INDEX_ROOT)
  1353. vi->i_blocks = ni->itype.compressed.size >> 9;
  1354. else
  1355. vi->i_blocks = ni->allocated_size >> 9;
  1356. /*
  1357. * Make sure the base inode does not go away and attach it to the
  1358. * attribute inode.
  1359. */
  1360. igrab(base_vi);
  1361. ni->ext.base_ntfs_ino = base_ni;
  1362. ni->nr_extents = -1;
  1363. ntfs_attr_put_search_ctx(ctx);
  1364. unmap_mft_record(base_ni);
  1365. ntfs_debug("Done.");
  1366. return 0;
  1367. unm_err_out:
  1368. if (!err)
  1369. err = -EIO;
  1370. if (ctx)
  1371. ntfs_attr_put_search_ctx(ctx);
  1372. unmap_mft_record(base_ni);
  1373. err_out:
  1374. ntfs_error(vol->sb, "Failed with error code %i while reading attribute "
  1375. "inode (mft_no 0x%lx, type 0x%x, name_len %i). "
  1376. "Marking corrupt inode and base inode 0x%lx as bad. "
  1377. "Run chkdsk.", err, vi->i_ino, ni->type, ni->name_len,
  1378. base_vi->i_ino);
  1379. make_bad_inode(vi);
  1380. if (err != -ENOMEM)
  1381. NVolSetErrors(vol);
  1382. return err;
  1383. }
  1384. /**
  1385. * ntfs_read_locked_index_inode - read an index inode from its base inode
  1386. * @base_vi: base inode
  1387. * @vi: index inode to read
  1388. *
  1389. * ntfs_read_locked_index_inode() is called from ntfs_index_iget() to read the
  1390. * index inode described by @vi into memory from the base mft record described
  1391. * by @base_ni.
  1392. *
  1393. * ntfs_read_locked_index_inode() maps, pins and locks the base inode for
  1394. * reading and looks up the attributes relating to the index described by @vi
  1395. * before setting up the necessary fields in @vi as well as initializing the
  1396. * ntfs inode.
  1397. *
  1398. * Note, index inodes are essentially attribute inodes (NInoAttr() is true)
  1399. * with the attribute type set to AT_INDEX_ALLOCATION. Apart from that, they
  1400. * are setup like directory inodes since directories are a special case of
  1401. * indices ao they need to be treated in much the same way. Most importantly,
  1402. * for small indices the index allocation attribute might not actually exist.
  1403. * However, the index root attribute always exists but this does not need to
  1404. * have an inode associated with it and this is why we define a new inode type
  1405. * index. Also, like for directories, we need to have an attribute inode for
  1406. * the bitmap attribute corresponding to the index allocation attribute and we
  1407. * can store this in the appropriate field of the inode, just like we do for
  1408. * normal directory inodes.
  1409. *
  1410. * Q: What locks are held when the function is called?
  1411. * A: i_state has I_NEW set, hence the inode is locked, also
  1412. * i_count is set to 1, so it is not going to go away
  1413. *
  1414. * Return 0 on success and -errno on error. In the error case, the inode will
  1415. * have had make_bad_inode() executed on it.
  1416. */
  1417. static int ntfs_read_locked_index_inode(struct inode *base_vi, struct inode *vi)
  1418. {
  1419. loff_t bvi_size;
  1420. ntfs_volume *vol = NTFS_SB(vi->i_sb);
  1421. ntfs_inode *ni, *base_ni, *bni;
  1422. struct inode *bvi;
  1423. MFT_RECORD *m;
  1424. ATTR_RECORD *a;
  1425. ntfs_attr_search_ctx *ctx;
  1426. INDEX_ROOT *ir;
  1427. u8 *ir_end, *index_end;
  1428. int err = 0;
  1429. ntfs_debug("Entering for i_ino 0x%lx.", vi->i_ino);
  1430. ntfs_init_big_inode(vi);
  1431. ni = NTFS_I(vi);
  1432. base_ni = NTFS_I(base_vi);
  1433. /* Just mirror the values from the base inode. */
  1434. vi->i_uid = base_vi->i_uid;
  1435. vi->i_gid = base_vi->i_gid;
  1436. set_nlink(vi, base_vi->i_nlink);
  1437. vi->i_mtime = base_vi->i_mtime;
  1438. vi->i_ctime = base_vi->i_ctime;
  1439. vi->i_atime = base_vi->i_atime;
  1440. vi->i_generation = ni->seq_no = base_ni->seq_no;
  1441. /* Set inode type to zero but preserve permissions. */
  1442. vi->i_mode = base_vi->i_mode & ~S_IFMT;
  1443. /* Map the mft record for the base inode. */
  1444. m = map_mft_record(base_ni);
  1445. if (IS_ERR(m)) {
  1446. err = PTR_ERR(m);
  1447. goto err_out;
  1448. }
  1449. ctx = ntfs_attr_get_search_ctx(base_ni, m);
  1450. if (!ctx) {
  1451. err = -ENOMEM;
  1452. goto unm_err_out;
  1453. }
  1454. /* Find the index root attribute. */
  1455. err = ntfs_attr_lookup(AT_INDEX_ROOT, ni->name, ni->name_len,
  1456. CASE_SENSITIVE, 0, NULL, 0, ctx);
  1457. if (unlikely(err)) {
  1458. if (err == -ENOENT)
  1459. ntfs_error(vi->i_sb, "$INDEX_ROOT attribute is "
  1460. "missing.");
  1461. goto unm_err_out;
  1462. }
  1463. a = ctx->attr;
  1464. /* Set up the state. */
  1465. if (unlikely(a->non_resident)) {
  1466. ntfs_error(vol->sb, "$INDEX_ROOT attribute is not resident.");
  1467. goto unm_err_out;
  1468. }
  1469. /* Ensure the attribute name is placed before the value. */
  1470. if (unlikely(a->name_length && (le16_to_cpu(a->name_offset) >=
  1471. le16_to_cpu(a->data.resident.value_offset)))) {
  1472. ntfs_error(vol->sb, "$INDEX_ROOT attribute name is placed "
  1473. "after the attribute value.");
  1474. goto unm_err_out;
  1475. }
  1476. /*
  1477. * Compressed/encrypted/sparse index root is not allowed, except for
  1478. * directories of course but those are not dealt with here.
  1479. */
  1480. if (a->flags & (ATTR_COMPRESSION_MASK | ATTR_IS_ENCRYPTED |
  1481. ATTR_IS_SPARSE)) {
  1482. ntfs_error(vi->i_sb, "Found compressed/encrypted/sparse index "
  1483. "root attribute.");
  1484. goto unm_err_out;
  1485. }
  1486. ir = (INDEX_ROOT*)((u8*)a + le16_to_cpu(a->data.resident.value_offset));
  1487. ir_end = (u8*)ir + le32_to_cpu(a->data.resident.value_length);
  1488. if (ir_end > (u8*)ctx->mrec + vol->mft_record_size) {
  1489. ntfs_error(vi->i_sb, "$INDEX_ROOT attribute is corrupt.");
  1490. goto unm_err_out;
  1491. }
  1492. index_end = (u8*)&ir->index + le32_to_cpu(ir->index.index_length);
  1493. if (index_end > ir_end) {
  1494. ntfs_error(vi->i_sb, "Index is corrupt.");
  1495. goto unm_err_out;
  1496. }
  1497. if (ir->type) {
  1498. ntfs_error(vi->i_sb, "Index type is not 0 (type is 0x%x).",
  1499. le32_to_cpu(ir->type));
  1500. goto unm_err_out;
  1501. }
  1502. ni->itype.index.collation_rule = ir->collation_rule;
  1503. ntfs_debug("Index collation rule is 0x%x.",
  1504. le32_to_cpu(ir->collation_rule));
  1505. ni->itype.index.block_size = le32_to_cpu(ir->index_block_size);
  1506. if (!is_power_of_2(ni->itype.index.block_size)) {
  1507. ntfs_error(vi->i_sb, "Index block size (%u) is not a power of "
  1508. "two.", ni->itype.index.block_size);
  1509. goto unm_err_out;
  1510. }
  1511. if (ni->itype.index.block_size > PAGE_SIZE) {
  1512. ntfs_error(vi->i_sb, "Index block size (%u) > PAGE_SIZE "
  1513. "(%ld) is not supported. Sorry.",
  1514. ni->itype.index.block_size, PAGE_SIZE);
  1515. err = -EOPNOTSUPP;
  1516. goto unm_err_out;
  1517. }
  1518. if (ni->itype.index.block_size < NTFS_BLOCK_SIZE) {
  1519. ntfs_error(vi->i_sb, "Index block size (%u) < NTFS_BLOCK_SIZE "
  1520. "(%i) is not supported. Sorry.",
  1521. ni->itype.index.block_size, NTFS_BLOCK_SIZE);
  1522. err = -EOPNOTSUPP;
  1523. goto unm_err_out;
  1524. }
  1525. ni->itype.index.block_size_bits = ffs(ni->itype.index.block_size) - 1;
  1526. /* Determine the size of a vcn in the index. */
  1527. if (vol->cluster_size <= ni->itype.index.block_size) {
  1528. ni->itype.index.vcn_size = vol->cluster_size;
  1529. ni->itype.index.vcn_size_bits = vol->cluster_size_bits;
  1530. } else {
  1531. ni->itype.index.vcn_size = vol->sector_size;
  1532. ni->itype.index.vcn_size_bits = vol->sector_size_bits;
  1533. }
  1534. /* Check for presence of index allocation attribute. */
  1535. if (!(ir->index.flags & LARGE_INDEX)) {
  1536. /* No index allocation. */
  1537. vi->i_size = ni->initialized_size = ni->allocated_size = 0;
  1538. /* We are done with the mft record, so we release it. */
  1539. ntfs_attr_put_search_ctx(ctx);
  1540. unmap_mft_record(base_ni);
  1541. m = NULL;
  1542. ctx = NULL;
  1543. goto skip_large_index_stuff;
  1544. } /* LARGE_INDEX: Index allocation present. Setup state. */
  1545. NInoSetIndexAllocPresent(ni);
  1546. /* Find index allocation attribute. */
  1547. ntfs_attr_reinit_search_ctx(ctx);
  1548. err = ntfs_attr_lookup(AT_INDEX_ALLOCATION, ni->name, ni->name_len,
  1549. CASE_SENSITIVE, 0, NULL, 0, ctx);
  1550. if (unlikely(err)) {
  1551. if (err == -ENOENT)
  1552. ntfs_error(vi->i_sb, "$INDEX_ALLOCATION attribute is "
  1553. "not present but $INDEX_ROOT "
  1554. "indicated it is.");
  1555. else
  1556. ntfs_error(vi->i_sb, "Failed to lookup "
  1557. "$INDEX_ALLOCATION attribute.");
  1558. goto unm_err_out;
  1559. }
  1560. a = ctx->attr;
  1561. if (!a->non_resident) {
  1562. ntfs_error(vi->i_sb, "$INDEX_ALLOCATION attribute is "
  1563. "resident.");
  1564. goto unm_err_out;
  1565. }
  1566. /*
  1567. * Ensure the attribute name is placed before the mapping pairs array.
  1568. */
  1569. if (unlikely(a->name_length && (le16_to_cpu(a->name_offset) >=
  1570. le16_to_cpu(
  1571. a->data.non_resident.mapping_pairs_offset)))) {
  1572. ntfs_error(vol->sb, "$INDEX_ALLOCATION attribute name is "
  1573. "placed after the mapping pairs array.");
  1574. goto unm_err_out;
  1575. }
  1576. if (a->flags & ATTR_IS_ENCRYPTED) {
  1577. ntfs_error(vi->i_sb, "$INDEX_ALLOCATION attribute is "
  1578. "encrypted.");
  1579. goto unm_err_out;
  1580. }
  1581. if (a->flags & ATTR_IS_SPARSE) {
  1582. ntfs_error(vi->i_sb, "$INDEX_ALLOCATION attribute is sparse.");
  1583. goto unm_err_out;
  1584. }
  1585. if (a->flags & ATTR_COMPRESSION_MASK) {
  1586. ntfs_error(vi->i_sb, "$INDEX_ALLOCATION attribute is "
  1587. "compressed.");
  1588. goto unm_err_out;
  1589. }
  1590. if (a->data.non_resident.lowest_vcn) {
  1591. ntfs_error(vi->i_sb, "First extent of $INDEX_ALLOCATION "
  1592. "attribute has non zero lowest_vcn.");
  1593. goto unm_err_out;
  1594. }
  1595. vi->i_size = sle64_to_cpu(a->data.non_resident.data_size);
  1596. ni->initialized_size = sle64_to_cpu(
  1597. a->data.non_resident.initialized_size);
  1598. ni->allocated_size = sle64_to_cpu(a->data.non_resident.allocated_size);
  1599. /*
  1600. * We are done with the mft record, so we release it. Otherwise
  1601. * we would deadlock in ntfs_attr_iget().
  1602. */
  1603. ntfs_attr_put_search_ctx(ctx);
  1604. unmap_mft_record(base_ni);
  1605. m = NULL;
  1606. ctx = NULL;
  1607. /* Get the index bitmap attribute inode. */
  1608. bvi = ntfs_attr_iget(base_vi, AT_BITMAP, ni->name, ni->name_len);
  1609. if (IS_ERR(bvi)) {
  1610. ntfs_error(vi->i_sb, "Failed to get bitmap attribute.");
  1611. err = PTR_ERR(bvi);
  1612. goto unm_err_out;
  1613. }
  1614. bni = NTFS_I(bvi);
  1615. if (NInoCompressed(bni) || NInoEncrypted(bni) ||
  1616. NInoSparse(bni)) {
  1617. ntfs_error(vi->i_sb, "$BITMAP attribute is compressed and/or "
  1618. "encrypted and/or sparse.");
  1619. goto iput_unm_err_out;
  1620. }
  1621. /* Consistency check bitmap size vs. index allocation size. */
  1622. bvi_size = i_size_read(bvi);
  1623. if ((bvi_size << 3) < (vi->i_size >> ni->itype.index.block_size_bits)) {
  1624. ntfs_error(vi->i_sb, "Index bitmap too small (0x%llx) for "
  1625. "index allocation (0x%llx).", bvi_size << 3,
  1626. vi->i_size);
  1627. goto iput_unm_err_out;
  1628. }
  1629. iput(bvi);
  1630. skip_large_index_stuff:
  1631. /* Setup the operations for this index inode. */
  1632. vi->i_mapping->a_ops = &ntfs_mst_aops;
  1633. vi->i_blocks = ni->allocated_size >> 9;
  1634. /*
  1635. * Make sure the base inode doesn't go away and attach it to the
  1636. * index inode.
  1637. */
  1638. igrab(base_vi);
  1639. ni->ext.base_ntfs_ino = base_ni;
  1640. ni->nr_extents = -1;
  1641. ntfs_debug("Done.");
  1642. return 0;
  1643. iput_unm_err_out:
  1644. iput(bvi);
  1645. unm_err_out:
  1646. if (!err)
  1647. err = -EIO;
  1648. if (ctx)
  1649. ntfs_attr_put_search_ctx(ctx);
  1650. if (m)
  1651. unmap_mft_record(base_ni);
  1652. err_out:
  1653. ntfs_error(vi->i_sb, "Failed with error code %i while reading index "
  1654. "inode (mft_no 0x%lx, name_len %i.", err, vi->i_ino,
  1655. ni->name_len);
  1656. make_bad_inode(vi);
  1657. if (err != -EOPNOTSUPP && err != -ENOMEM)
  1658. NVolSetErrors(vol);
  1659. return err;
  1660. }
  1661. /*
  1662. * The MFT inode has special locking, so teach the lock validator
  1663. * about this by splitting off the locking rules of the MFT from
  1664. * the locking rules of other inodes. The MFT inode can never be
  1665. * accessed from the VFS side (or even internally), only by the
  1666. * map_mft functions.
  1667. */
  1668. static struct lock_class_key mft_ni_runlist_lock_key, mft_ni_mrec_lock_key;
  1669. /**
  1670. * ntfs_read_inode_mount - special read_inode for mount time use only
  1671. * @vi: inode to read
  1672. *
  1673. * Read inode FILE_MFT at mount time, only called with super_block lock
  1674. * held from within the read_super() code path.
  1675. *
  1676. * This function exists because when it is called the page cache for $MFT/$DATA
  1677. * is not initialized and hence we cannot get at the contents of mft records
  1678. * by calling map_mft_record*().
  1679. *
  1680. * Further it needs to cope with the circular references problem, i.e. cannot
  1681. * load any attributes other than $ATTRIBUTE_LIST until $DATA is loaded, because
  1682. * we do not know where the other extent mft records are yet and again, because
  1683. * we cannot call map_mft_record*() yet. Obviously this applies only when an
  1684. * attribute list is actually present in $MFT inode.
  1685. *
  1686. * We solve these problems by starting with the $DATA attribute before anything
  1687. * else and iterating using ntfs_attr_lookup($DATA) over all extents. As each
  1688. * extent is found, we ntfs_mapping_pairs_decompress() including the implied
  1689. * ntfs_runlists_merge(). Each step of the iteration necessarily provides
  1690. * sufficient information for the next step to complete.
  1691. *
  1692. * This should work but there are two possible pit falls (see inline comments
  1693. * below), but only time will tell if they are real pits or just smoke...
  1694. */
  1695. int ntfs_read_inode_mount(struct inode *vi)
  1696. {
  1697. VCN next_vcn, last_vcn, highest_vcn;
  1698. s64 block;
  1699. struct super_block *sb = vi->i_sb;
  1700. ntfs_volume *vol = NTFS_SB(sb);
  1701. struct buffer_head *bh;
  1702. ntfs_inode *ni;
  1703. MFT_RECORD *m = NULL;
  1704. ATTR_RECORD *a;
  1705. ntfs_attr_search_ctx *ctx;
  1706. unsigned int i, nr_blocks;
  1707. int err;
  1708. ntfs_debug("Entering.");
  1709. /* Initialize the ntfs specific part of @vi. */
  1710. ntfs_init_big_inode(vi);
  1711. ni = NTFS_I(vi);
  1712. /* Setup the data attribute. It is special as it is mst protected. */
  1713. NInoSetNonResident(ni);
  1714. NInoSetMstProtected(ni);
  1715. NInoSetSparseDisabled(ni);
  1716. ni->type = AT_DATA;
  1717. ni->name = NULL;
  1718. ni->name_len = 0;
  1719. /*
  1720. * This sets up our little cheat allowing us to reuse the async read io
  1721. * completion handler for directories.
  1722. */
  1723. ni->itype.index.block_size = vol->mft_record_size;
  1724. ni->itype.index.block_size_bits = vol->mft_record_size_bits;
  1725. /* Very important! Needed to be able to call map_mft_record*(). */
  1726. vol->mft_ino = vi;
  1727. /* Allocate enough memory to read the first mft record. */
  1728. if (vol->mft_record_size > 64 * 1024) {
  1729. ntfs_error(sb, "Unsupported mft record size %i (max 64kiB).",
  1730. vol->mft_record_size);
  1731. goto err_out;
  1732. }
  1733. i = vol->mft_record_size;
  1734. if (i < sb->s_blocksize)
  1735. i = sb->s_blocksize;
  1736. m = (MFT_RECORD*)ntfs_malloc_nofs(i);
  1737. if (!m) {
  1738. ntfs_error(sb, "Failed to allocate buffer for $MFT record 0.");
  1739. goto err_out;
  1740. }
  1741. /* Determine the first block of the $MFT/$DATA attribute. */
  1742. block = vol->mft_lcn << vol->cluster_size_bits >>
  1743. sb->s_blocksize_bits;
  1744. nr_blocks = vol->mft_record_size >> sb->s_blocksize_bits;
  1745. if (!nr_blocks)
  1746. nr_blocks = 1;
  1747. /* Load $MFT/$DATA's first mft record. */
  1748. for (i = 0; i < nr_blocks; i++) {
  1749. bh = sb_bread(sb, block++);
  1750. if (!bh) {
  1751. ntfs_error(sb, "Device read failed.");
  1752. goto err_out;
  1753. }
  1754. memcpy((char*)m + (i << sb->s_blocksize_bits), bh->b_data,
  1755. sb->s_blocksize);
  1756. brelse(bh);
  1757. }
  1758. if (le32_to_cpu(m->bytes_allocated) != vol->mft_record_size) {
  1759. ntfs_error(sb, "Incorrect mft record size %u in superblock, should be %u.",
  1760. le32_to_cpu(m->bytes_allocated), vol->mft_record_size);
  1761. goto err_out;
  1762. }
  1763. /* Apply the mst fixups. */
  1764. if (post_read_mst_fixup((NTFS_RECORD*)m, vol->mft_record_size)) {
  1765. /* FIXME: Try to use the $MFTMirr now. */
  1766. ntfs_error(sb, "MST fixup failed. $MFT is corrupt.");
  1767. goto err_out;
  1768. }
  1769. /* Need this to sanity check attribute list references to $MFT. */
  1770. vi->i_generation = ni->seq_no = le16_to_cpu(m->sequence_number);
  1771. /* Provides readpage() for map_mft_record(). */
  1772. vi->i_mapping->a_ops = &ntfs_mst_aops;
  1773. ctx = ntfs_attr_get_search_ctx(ni, m);
  1774. if (!ctx) {
  1775. err = -ENOMEM;
  1776. goto err_out;
  1777. }
  1778. /* Find the attribute list attribute if present. */
  1779. err = ntfs_attr_lookup(AT_ATTRIBUTE_LIST, NULL, 0, 0, 0, NULL, 0, ctx);
  1780. if (err) {
  1781. if (unlikely(err != -ENOENT)) {
  1782. ntfs_error(sb, "Failed to lookup attribute list "
  1783. "attribute. You should run chkdsk.");
  1784. goto put_err_out;
  1785. }
  1786. } else /* if (!err) */ {
  1787. ATTR_LIST_ENTRY *al_entry, *next_al_entry;
  1788. u8 *al_end;
  1789. static const char *es = " Not allowed. $MFT is corrupt. "
  1790. "You should run chkdsk.";
  1791. ntfs_debug("Attribute list attribute found in $MFT.");
  1792. NInoSetAttrList(ni);
  1793. a = ctx->attr;
  1794. if (a->flags & ATTR_COMPRESSION_MASK) {
  1795. ntfs_error(sb, "Attribute list attribute is "
  1796. "compressed.%s", es);
  1797. goto put_err_out;
  1798. }
  1799. if (a->flags & ATTR_IS_ENCRYPTED ||
  1800. a->flags & ATTR_IS_SPARSE) {
  1801. if (a->non_resident) {
  1802. ntfs_error(sb, "Non-resident attribute list "
  1803. "attribute is encrypted/"
  1804. "sparse.%s", es);
  1805. goto put_err_out;
  1806. }
  1807. ntfs_warning(sb, "Resident attribute list attribute "
  1808. "in $MFT system file is marked "
  1809. "encrypted/sparse which is not true. "
  1810. "However, Windows allows this and "
  1811. "chkdsk does not detect or correct it "
  1812. "so we will just ignore the invalid "
  1813. "flags and pretend they are not set.");
  1814. }
  1815. /* Now allocate memory for the attribute list. */
  1816. ni->attr_list_size = (u32)ntfs_attr_size(a);
  1817. ni->attr_list = ntfs_malloc_nofs(ni->attr_list_size);
  1818. if (!ni->attr_list) {
  1819. ntfs_error(sb, "Not enough memory to allocate buffer "
  1820. "for attribute list.");
  1821. goto put_err_out;
  1822. }
  1823. if (a->non_resident) {
  1824. NInoSetAttrListNonResident(ni);
  1825. if (a->data.non_resident.lowest_vcn) {
  1826. ntfs_error(sb, "Attribute list has non zero "
  1827. "lowest_vcn. $MFT is corrupt. "
  1828. "You should run chkdsk.");
  1829. goto put_err_out;
  1830. }
  1831. /* Setup the runlist. */
  1832. ni->attr_list_rl.rl = ntfs_mapping_pairs_decompress(vol,
  1833. a, NULL);
  1834. if (IS_ERR(ni->attr_list_rl.rl)) {
  1835. err = PTR_ERR(ni->attr_list_rl.rl);
  1836. ni->attr_list_rl.rl = NULL;
  1837. ntfs_error(sb, "Mapping pairs decompression "
  1838. "failed with error code %i.",
  1839. -err);
  1840. goto put_err_out;
  1841. }
  1842. /* Now load the attribute list. */
  1843. if ((err = load_attribute_list(vol, &ni->attr_list_rl,
  1844. ni->attr_list, ni->attr_list_size,
  1845. sle64_to_cpu(a->data.
  1846. non_resident.initialized_size)))) {
  1847. ntfs_error(sb, "Failed to load attribute list "
  1848. "attribute with error code %i.",
  1849. -err);
  1850. goto put_err_out;
  1851. }
  1852. } else /* if (!ctx.attr->non_resident) */ {
  1853. if ((u8*)a + le16_to_cpu(
  1854. a->data.resident.value_offset) +
  1855. le32_to_cpu(
  1856. a->data.resident.value_length) >
  1857. (u8*)ctx->mrec + vol->mft_record_size) {
  1858. ntfs_error(sb, "Corrupt attribute list "
  1859. "attribute.");
  1860. goto put_err_out;
  1861. }
  1862. /* Now copy the attribute list. */
  1863. memcpy(ni->attr_list, (u8*)a + le16_to_cpu(
  1864. a->data.resident.value_offset),
  1865. le32_to_cpu(
  1866. a->data.resident.value_length));
  1867. }
  1868. /* The attribute list is now setup in memory. */
  1869. /*
  1870. * FIXME: I don't know if this case is actually possible.
  1871. * According to logic it is not possible but I have seen too
  1872. * many weird things in MS software to rely on logic... Thus we
  1873. * perform a manual search and make sure the first $MFT/$DATA
  1874. * extent is in the base inode. If it is not we abort with an
  1875. * error and if we ever see a report of this error we will need
  1876. * to do some magic in order to have the necessary mft record
  1877. * loaded and in the right place in the page cache. But
  1878. * hopefully logic will prevail and this never happens...
  1879. */
  1880. al_entry = (ATTR_LIST_ENTRY*)ni->attr_list;
  1881. al_end = (u8*)al_entry + ni->attr_list_size;
  1882. for (;; al_entry = next_al_entry) {
  1883. /* Out of bounds check. */
  1884. if ((u8*)al_entry < ni->attr_list ||
  1885. (u8*)al_entry > al_end)
  1886. goto em_put_err_out;
  1887. /* Catch the end of the attribute list. */
  1888. if ((u8*)al_entry == al_end)
  1889. goto em_put_err_out;
  1890. if (!al_entry->length)
  1891. goto em_put_err_out;
  1892. if ((u8*)al_entry + 6 > al_end || (u8*)al_entry +
  1893. le16_to_cpu(al_entry->length) > al_end)
  1894. goto em_put_err_out;
  1895. next_al_entry = (ATTR_LIST_ENTRY*)((u8*)al_entry +
  1896. le16_to_cpu(al_entry->length));
  1897. if (le32_to_cpu(al_entry->type) > le32_to_cpu(AT_DATA))
  1898. goto em_put_err_out;
  1899. if (AT_DATA != al_entry->type)
  1900. continue;
  1901. /* We want an unnamed attribute. */
  1902. if (al_entry->name_length)
  1903. goto em_put_err_out;
  1904. /* Want the first entry, i.e. lowest_vcn == 0. */
  1905. if (al_entry->lowest_vcn)
  1906. goto em_put_err_out;
  1907. /* First entry has to be in the base mft record. */
  1908. if (MREF_LE(al_entry->mft_reference) != vi->i_ino) {
  1909. /* MFT references do not match, logic fails. */
  1910. ntfs_error(sb, "BUG: The first $DATA extent "
  1911. "of $MFT is not in the base "
  1912. "mft record. Please report "
  1913. "you saw this message to "
  1914. "linux-ntfs-dev@lists."
  1915. "sourceforge.net");
  1916. goto put_err_out;
  1917. } else {
  1918. /* Sequence numbers must match. */
  1919. if (MSEQNO_LE(al_entry->mft_reference) !=
  1920. ni->seq_no)
  1921. goto em_put_err_out;
  1922. /* Got it. All is ok. We can stop now. */
  1923. break;
  1924. }
  1925. }
  1926. }
  1927. ntfs_attr_reinit_search_ctx(ctx);
  1928. /* Now load all attribute extents. */
  1929. a = NULL;
  1930. next_vcn = last_vcn = highest_vcn = 0;
  1931. while (!(err = ntfs_attr_lookup(AT_DATA, NULL, 0, 0, next_vcn, NULL, 0,
  1932. ctx))) {
  1933. runlist_element *nrl;
  1934. /* Cache the current attribute. */
  1935. a = ctx->attr;
  1936. /* $MFT must be non-resident. */
  1937. if (!a->non_resident) {
  1938. ntfs_error(sb, "$MFT must be non-resident but a "
  1939. "resident extent was found. $MFT is "
  1940. "corrupt. Run chkdsk.");
  1941. goto put_err_out;
  1942. }
  1943. /* $MFT must be uncompressed and unencrypted. */
  1944. if (a->flags & ATTR_COMPRESSION_MASK ||
  1945. a->flags & ATTR_IS_ENCRYPTED ||
  1946. a->flags & ATTR_IS_SPARSE) {
  1947. ntfs_error(sb, "$MFT must be uncompressed, "
  1948. "non-sparse, and unencrypted but a "
  1949. "compressed/sparse/encrypted extent "
  1950. "was found. $MFT is corrupt. Run "
  1951. "chkdsk.");
  1952. goto put_err_out;
  1953. }
  1954. /*
  1955. * Decompress the mapping pairs array of this extent and merge
  1956. * the result into the existing runlist. No need for locking
  1957. * as we have exclusive access to the inode at this time and we
  1958. * are a mount in progress task, too.
  1959. */
  1960. nrl = ntfs_mapping_pairs_decompress(vol, a, ni->runlist.rl);
  1961. if (IS_ERR(nrl)) {
  1962. ntfs_error(sb, "ntfs_mapping_pairs_decompress() "
  1963. "failed with error code %ld. $MFT is "
  1964. "corrupt.", PTR_ERR(nrl));
  1965. goto put_err_out;
  1966. }
  1967. ni->runlist.rl = nrl;
  1968. /* Are we in the first extent? */
  1969. if (!next_vcn) {
  1970. if (a->data.non_resident.lowest_vcn) {
  1971. ntfs_error(sb, "First extent of $DATA "
  1972. "attribute has non zero "
  1973. "lowest_vcn. $MFT is corrupt. "
  1974. "You should run chkdsk.");
  1975. goto put_err_out;
  1976. }
  1977. /* Get the last vcn in the $DATA attribute. */
  1978. last_vcn = sle64_to_cpu(
  1979. a->data.non_resident.allocated_size)
  1980. >> vol->cluster_size_bits;
  1981. /* Fill in the inode size. */
  1982. vi->i_size = sle64_to_cpu(
  1983. a->data.non_resident.data_size);
  1984. ni->initialized_size = sle64_to_cpu(
  1985. a->data.non_resident.initialized_size);
  1986. ni->allocated_size = sle64_to_cpu(
  1987. a->data.non_resident.allocated_size);
  1988. /*
  1989. * Verify the number of mft records does not exceed
  1990. * 2^32 - 1.
  1991. */
  1992. if ((vi->i_size >> vol->mft_record_size_bits) >=
  1993. (1ULL << 32)) {
  1994. ntfs_error(sb, "$MFT is too big! Aborting.");
  1995. goto put_err_out;
  1996. }
  1997. /*
  1998. * We have got the first extent of the runlist for
  1999. * $MFT which means it is now relatively safe to call
  2000. * the normal ntfs_read_inode() function.
  2001. * Complete reading the inode, this will actually
  2002. * re-read the mft record for $MFT, this time entering
  2003. * it into the page cache with which we complete the
  2004. * kick start of the volume. It should be safe to do
  2005. * this now as the first extent of $MFT/$DATA is
  2006. * already known and we would hope that we don't need
  2007. * further extents in order to find the other
  2008. * attributes belonging to $MFT. Only time will tell if
  2009. * this is really the case. If not we will have to play
  2010. * magic at this point, possibly duplicating a lot of
  2011. * ntfs_read_inode() at this point. We will need to
  2012. * ensure we do enough of its work to be able to call
  2013. * ntfs_read_inode() on extents of $MFT/$DATA. But lets
  2014. * hope this never happens...
  2015. */
  2016. ntfs_read_locked_inode(vi);
  2017. if (is_bad_inode(vi)) {
  2018. ntfs_error(sb, "ntfs_read_inode() of $MFT "
  2019. "failed. BUG or corrupt $MFT. "
  2020. "Run chkdsk and if no errors "
  2021. "are found, please report you "
  2022. "saw this message to "
  2023. "linux-ntfs-dev@lists."
  2024. "sourceforge.net");
  2025. ntfs_attr_put_search_ctx(ctx);
  2026. /* Revert to the safe super operations. */
  2027. ntfs_free(m);
  2028. return -1;
  2029. }
  2030. /*
  2031. * Re-initialize some specifics about $MFT's inode as
  2032. * ntfs_read_inode() will have set up the default ones.
  2033. */
  2034. /* Set uid and gid to root. */
  2035. vi->i_uid = GLOBAL_ROOT_UID;
  2036. vi->i_gid = GLOBAL_ROOT_GID;
  2037. /* Regular file. No access for anyone. */
  2038. vi->i_mode = S_IFREG;
  2039. /* No VFS initiated operations allowed for $MFT. */
  2040. vi->i_op = &ntfs_empty_inode_ops;
  2041. vi->i_fop = &ntfs_empty_file_ops;
  2042. }
  2043. /* Get the lowest vcn for the next extent. */
  2044. highest_vcn = sle64_to_cpu(a->data.non_resident.highest_vcn);
  2045. next_vcn = highest_vcn + 1;
  2046. /* Only one extent or error, which we catch below. */
  2047. if (next_vcn <= 0)
  2048. break;
  2049. /* Avoid endless loops due to corruption. */
  2050. if (next_vcn < sle64_to_cpu(
  2051. a->data.non_resident.lowest_vcn)) {
  2052. ntfs_error(sb, "$MFT has corrupt attribute list "
  2053. "attribute. Run chkdsk.");
  2054. goto put_err_out;
  2055. }
  2056. }
  2057. if (err != -ENOENT) {
  2058. ntfs_error(sb, "Failed to lookup $MFT/$DATA attribute extent. "
  2059. "$MFT is corrupt. Run chkdsk.");
  2060. goto put_err_out;
  2061. }
  2062. if (!a) {
  2063. ntfs_error(sb, "$MFT/$DATA attribute not found. $MFT is "
  2064. "corrupt. Run chkdsk.");
  2065. goto put_err_out;
  2066. }
  2067. if (highest_vcn && highest_vcn != last_vcn - 1) {
  2068. ntfs_error(sb, "Failed to load the complete runlist for "
  2069. "$MFT/$DATA. Driver bug or corrupt $MFT. "
  2070. "Run chkdsk.");
  2071. ntfs_debug("highest_vcn = 0x%llx, last_vcn - 1 = 0x%llx",
  2072. (unsigned long long)highest_vcn,
  2073. (unsigned long long)last_vcn - 1);
  2074. goto put_err_out;
  2075. }
  2076. ntfs_attr_put_search_ctx(ctx);
  2077. ntfs_debug("Done.");
  2078. ntfs_free(m);
  2079. /*
  2080. * Split the locking rules of the MFT inode from the
  2081. * locking rules of other inodes:
  2082. */
  2083. lockdep_set_class(&ni->runlist.lock, &mft_ni_runlist_lock_key);
  2084. lockdep_set_class(&ni->mrec_lock, &mft_ni_mrec_lock_key);
  2085. return 0;
  2086. em_put_err_out:
  2087. ntfs_error(sb, "Couldn't find first extent of $DATA attribute in "
  2088. "attribute list. $MFT is corrupt. Run chkdsk.");
  2089. put_err_out:
  2090. ntfs_attr_put_search_ctx(ctx);
  2091. err_out:
  2092. ntfs_error(sb, "Failed. Marking inode as bad.");
  2093. make_bad_inode(vi);
  2094. ntfs_free(m);
  2095. return -1;
  2096. }
  2097. static void __ntfs_clear_inode(ntfs_inode *ni)
  2098. {
  2099. /* Free all alocated memory. */
  2100. down_write(&ni->runlist.lock);
  2101. if (ni->runlist.rl) {
  2102. ntfs_free(ni->runlist.rl);
  2103. ni->runlist.rl = NULL;
  2104. }
  2105. up_write(&ni->runlist.lock);
  2106. if (ni->attr_list) {
  2107. ntfs_free(ni->attr_list);
  2108. ni->attr_list = NULL;
  2109. }
  2110. down_write(&ni->attr_list_rl.lock);
  2111. if (ni->attr_list_rl.rl) {
  2112. ntfs_free(ni->attr_list_rl.rl);
  2113. ni->attr_list_rl.rl = NULL;
  2114. }
  2115. up_write(&ni->attr_list_rl.lock);
  2116. if (ni->name_len && ni->name != I30) {
  2117. /* Catch bugs... */
  2118. BUG_ON(!ni->name);
  2119. kfree(ni->name);
  2120. }
  2121. }
  2122. void ntfs_clear_extent_inode(ntfs_inode *ni)
  2123. {
  2124. ntfs_debug("Entering for inode 0x%lx.", ni->mft_no);
  2125. BUG_ON(NInoAttr(ni));
  2126. BUG_ON(ni->nr_extents != -1);
  2127. #ifdef NTFS_RW
  2128. if (NInoDirty(ni)) {
  2129. if (!is_bad_inode(VFS_I(ni->ext.base_ntfs_ino)))
  2130. ntfs_error(ni->vol->sb, "Clearing dirty extent inode! "
  2131. "Losing data! This is a BUG!!!");
  2132. // FIXME: Do something!!!
  2133. }
  2134. #endif /* NTFS_RW */
  2135. __ntfs_clear_inode(ni);
  2136. /* Bye, bye... */
  2137. ntfs_destroy_extent_inode(ni);
  2138. }
  2139. /**
  2140. * ntfs_evict_big_inode - clean up the ntfs specific part of an inode
  2141. * @vi: vfs inode pending annihilation
  2142. *
  2143. * When the VFS is going to remove an inode from memory, ntfs_clear_big_inode()
  2144. * is called, which deallocates all memory belonging to the NTFS specific part
  2145. * of the inode and returns.
  2146. *
  2147. * If the MFT record is dirty, we commit it before doing anything else.
  2148. */
  2149. void ntfs_evict_big_inode(struct inode *vi)
  2150. {
  2151. ntfs_inode *ni = NTFS_I(vi);
  2152. truncate_inode_pages_final(&vi->i_data);
  2153. clear_inode(vi);
  2154. #ifdef NTFS_RW
  2155. if (NInoDirty(ni)) {
  2156. bool was_bad = (is_bad_inode(vi));
  2157. /* Committing the inode also commits all extent inodes. */
  2158. ntfs_commit_inode(vi);
  2159. if (!was_bad && (is_bad_inode(vi) || NInoDirty(ni))) {
  2160. ntfs_error(vi->i_sb, "Failed to commit dirty inode "
  2161. "0x%lx. Losing data!", vi->i_ino);
  2162. // FIXME: Do something!!!
  2163. }
  2164. }
  2165. #endif /* NTFS_RW */
  2166. /* No need to lock at this stage as no one else has a reference. */
  2167. if (ni->nr_extents > 0) {
  2168. int i;
  2169. for (i = 0; i < ni->nr_extents; i++)
  2170. ntfs_clear_extent_inode(ni->ext.extent_ntfs_inos[i]);
  2171. kfree(ni->ext.extent_ntfs_inos);
  2172. }
  2173. __ntfs_clear_inode(ni);
  2174. if (NInoAttr(ni)) {
  2175. /* Release the base inode if we are holding it. */
  2176. if (ni->nr_extents == -1) {
  2177. iput(VFS_I(ni->ext.base_ntfs_ino));
  2178. ni->nr_extents = 0;
  2179. ni->ext.base_ntfs_ino = NULL;
  2180. }
  2181. }
  2182. return;
  2183. }
  2184. /**
  2185. * ntfs_show_options - show mount options in /proc/mounts
  2186. * @sf: seq_file in which to write our mount options
  2187. * @root: root of the mounted tree whose mount options to display
  2188. *
  2189. * Called by the VFS once for each mounted ntfs volume when someone reads
  2190. * /proc/mounts in order to display the NTFS specific mount options of each
  2191. * mount. The mount options of fs specified by @root are written to the seq file
  2192. * @sf and success is returned.
  2193. */
  2194. int ntfs_show_options(struct seq_file *sf, struct dentry *root)
  2195. {
  2196. ntfs_volume *vol = NTFS_SB(root->d_sb);
  2197. int i;
  2198. seq_printf(sf, ",uid=%i", from_kuid_munged(&init_user_ns, vol->uid));
  2199. seq_printf(sf, ",gid=%i", from_kgid_munged(&init_user_ns, vol->gid));
  2200. if (vol->fmask == vol->dmask)
  2201. seq_printf(sf, ",umask=0%o", vol->fmask);
  2202. else {
  2203. seq_printf(sf, ",fmask=0%o", vol->fmask);
  2204. seq_printf(sf, ",dmask=0%o", vol->dmask);
  2205. }
  2206. seq_printf(sf, ",nls=%s", vol->nls_map->charset);
  2207. if (NVolCaseSensitive(vol))
  2208. seq_printf(sf, ",case_sensitive");
  2209. if (NVolShowSystemFiles(vol))
  2210. seq_printf(sf, ",show_sys_files");
  2211. if (!NVolSparseEnabled(vol))
  2212. seq_printf(sf, ",disable_sparse");
  2213. for (i = 0; on_errors_arr[i].val; i++) {
  2214. if (on_errors_arr[i].val & vol->on_errors)
  2215. seq_printf(sf, ",errors=%s", on_errors_arr[i].str);
  2216. }
  2217. seq_printf(sf, ",mft_zone_multiplier=%i", vol->mft_zone_multiplier);
  2218. return 0;
  2219. }
  2220. #ifdef NTFS_RW
  2221. static const char *es = " Leaving inconsistent metadata. Unmount and run "
  2222. "chkdsk.";
  2223. /**
  2224. * ntfs_truncate - called when the i_size of an ntfs inode is changed
  2225. * @vi: inode for which the i_size was changed
  2226. *
  2227. * We only support i_size changes for normal files at present, i.e. not
  2228. * compressed and not encrypted. This is enforced in ntfs_setattr(), see
  2229. * below.
  2230. *
  2231. * The kernel guarantees that @vi is a regular file (S_ISREG() is true) and
  2232. * that the change is allowed.
  2233. *
  2234. * This implies for us that @vi is a file inode rather than a directory, index,
  2235. * or attribute inode as well as that @vi is a base inode.
  2236. *
  2237. * Returns 0 on success or -errno on error.
  2238. *
  2239. * Called with ->i_mutex held.
  2240. */
  2241. int ntfs_truncate(struct inode *vi)
  2242. {
  2243. s64 new_size, old_size, nr_freed, new_alloc_size, old_alloc_size;
  2244. VCN highest_vcn;
  2245. unsigned long flags;
  2246. ntfs_inode *base_ni, *ni = NTFS_I(vi);
  2247. ntfs_volume *vol = ni->vol;
  2248. ntfs_attr_search_ctx *ctx;
  2249. MFT_RECORD *m;
  2250. ATTR_RECORD *a;
  2251. const char *te = " Leaving file length out of sync with i_size.";
  2252. int err, mp_size, size_change, alloc_change;
  2253. u32 attr_len;
  2254. ntfs_debug("Entering for inode 0x%lx.", vi->i_ino);
  2255. BUG_ON(NInoAttr(ni));
  2256. BUG_ON(S_ISDIR(vi->i_mode));
  2257. BUG_ON(NInoMstProtected(ni));
  2258. BUG_ON(ni->nr_extents < 0);
  2259. retry_truncate:
  2260. /*
  2261. * Lock the runlist for writing and map the mft record to ensure it is
  2262. * safe to mess with the attribute runlist and sizes.
  2263. */
  2264. down_write(&ni->runlist.lock);
  2265. if (!NInoAttr(ni))
  2266. base_ni = ni;
  2267. else
  2268. base_ni = ni->ext.base_ntfs_ino;
  2269. m = map_mft_record(base_ni);
  2270. if (IS_ERR(m)) {
  2271. err = PTR_ERR(m);
  2272. ntfs_error(vi->i_sb, "Failed to map mft record for inode 0x%lx "
  2273. "(error code %d).%s", vi->i_ino, err, te);
  2274. ctx = NULL;
  2275. m = NULL;
  2276. goto old_bad_out;
  2277. }
  2278. ctx = ntfs_attr_get_search_ctx(base_ni, m);
  2279. if (unlikely(!ctx)) {
  2280. ntfs_error(vi->i_sb, "Failed to allocate a search context for "
  2281. "inode 0x%lx (not enough memory).%s",
  2282. vi->i_ino, te);
  2283. err = -ENOMEM;
  2284. goto old_bad_out;
  2285. }
  2286. err = ntfs_attr_lookup(ni->type, ni->name, ni->name_len,
  2287. CASE_SENSITIVE, 0, NULL, 0, ctx);
  2288. if (unlikely(err)) {
  2289. if (err == -ENOENT) {
  2290. ntfs_error(vi->i_sb, "Open attribute is missing from "
  2291. "mft record. Inode 0x%lx is corrupt. "
  2292. "Run chkdsk.%s", vi->i_ino, te);
  2293. err = -EIO;
  2294. } else
  2295. ntfs_error(vi->i_sb, "Failed to lookup attribute in "
  2296. "inode 0x%lx (error code %d).%s",
  2297. vi->i_ino, err, te);
  2298. goto old_bad_out;
  2299. }
  2300. m = ctx->mrec;
  2301. a = ctx->attr;
  2302. /*
  2303. * The i_size of the vfs inode is the new size for the attribute value.
  2304. */
  2305. new_size = i_size_read(vi);
  2306. /* The current size of the attribute value is the old size. */
  2307. old_size = ntfs_attr_size(a);
  2308. /* Calculate the new allocated size. */
  2309. if (NInoNonResident(ni))
  2310. new_alloc_size = (new_size + vol->cluster_size - 1) &
  2311. ~(s64)vol->cluster_size_mask;
  2312. else
  2313. new_alloc_size = (new_size + 7) & ~7;
  2314. /* The current allocated size is the old allocated size. */
  2315. read_lock_irqsave(&ni->size_lock, flags);
  2316. old_alloc_size = ni->allocated_size;
  2317. read_unlock_irqrestore(&ni->size_lock, flags);
  2318. /*
  2319. * The change in the file size. This will be 0 if no change, >0 if the
  2320. * size is growing, and <0 if the size is shrinking.
  2321. */
  2322. size_change = -1;
  2323. if (new_size - old_size >= 0) {
  2324. size_change = 1;
  2325. if (new_size == old_size)
  2326. size_change = 0;
  2327. }
  2328. /* As above for the allocated size. */
  2329. alloc_change = -1;
  2330. if (new_alloc_size - old_alloc_size >= 0) {
  2331. alloc_change = 1;
  2332. if (new_alloc_size == old_alloc_size)
  2333. alloc_change = 0;
  2334. }
  2335. /*
  2336. * If neither the size nor the allocation are being changed there is
  2337. * nothing to do.
  2338. */
  2339. if (!size_change && !alloc_change)
  2340. goto unm_done;
  2341. /* If the size is changing, check if new size is allowed in $AttrDef. */
  2342. if (size_change) {
  2343. err = ntfs_attr_size_bounds_check(vol, ni->type, new_size);
  2344. if (unlikely(err)) {
  2345. if (err == -ERANGE) {
  2346. ntfs_error(vol->sb, "Truncate would cause the "
  2347. "inode 0x%lx to %simum size "
  2348. "for its attribute type "
  2349. "(0x%x). Aborting truncate.",
  2350. vi->i_ino,
  2351. new_size > old_size ? "exceed "
  2352. "the max" : "go under the min",
  2353. le32_to_cpu(ni->type));
  2354. err = -EFBIG;
  2355. } else {
  2356. ntfs_error(vol->sb, "Inode 0x%lx has unknown "
  2357. "attribute type 0x%x. "
  2358. "Aborting truncate.",
  2359. vi->i_ino,
  2360. le32_to_cpu(ni->type));
  2361. err = -EIO;
  2362. }
  2363. /* Reset the vfs inode size to the old size. */
  2364. i_size_write(vi, old_size);
  2365. goto err_out;
  2366. }
  2367. }
  2368. if (NInoCompressed(ni) || NInoEncrypted(ni)) {
  2369. ntfs_warning(vi->i_sb, "Changes in inode size are not "
  2370. "supported yet for %s files, ignoring.",
  2371. NInoCompressed(ni) ? "compressed" :
  2372. "encrypted");
  2373. err = -EOPNOTSUPP;
  2374. goto bad_out;
  2375. }
  2376. if (a->non_resident)
  2377. goto do_non_resident_truncate;
  2378. BUG_ON(NInoNonResident(ni));
  2379. /* Resize the attribute record to best fit the new attribute size. */
  2380. if (new_size < vol->mft_record_size &&
  2381. !ntfs_resident_attr_value_resize(m, a, new_size)) {
  2382. /* The resize succeeded! */
  2383. flush_dcache_mft_record_page(ctx->ntfs_ino);
  2384. mark_mft_record_dirty(ctx->ntfs_ino);
  2385. write_lock_irqsave(&ni->size_lock, flags);
  2386. /* Update the sizes in the ntfs inode and all is done. */
  2387. ni->allocated_size = le32_to_cpu(a->length) -
  2388. le16_to_cpu(a->data.resident.value_offset);
  2389. /*
  2390. * Note ntfs_resident_attr_value_resize() has already done any
  2391. * necessary data clearing in the attribute record. When the
  2392. * file is being shrunk vmtruncate() will already have cleared
  2393. * the top part of the last partial page, i.e. since this is
  2394. * the resident case this is the page with index 0. However,
  2395. * when the file is being expanded, the page cache page data
  2396. * between the old data_size, i.e. old_size, and the new_size
  2397. * has not been zeroed. Fortunately, we do not need to zero it
  2398. * either since on one hand it will either already be zero due
  2399. * to both readpage and writepage clearing partial page data
  2400. * beyond i_size in which case there is nothing to do or in the
  2401. * case of the file being mmap()ped at the same time, POSIX
  2402. * specifies that the behaviour is unspecified thus we do not
  2403. * have to do anything. This means that in our implementation
  2404. * in the rare case that the file is mmap()ped and a write
  2405. * occurred into the mmap()ped region just beyond the file size
  2406. * and writepage has not yet been called to write out the page
  2407. * (which would clear the area beyond the file size) and we now
  2408. * extend the file size to incorporate this dirty region
  2409. * outside the file size, a write of the page would result in
  2410. * this data being written to disk instead of being cleared.
  2411. * Given both POSIX and the Linux mmap(2) man page specify that
  2412. * this corner case is undefined, we choose to leave it like
  2413. * that as this is much simpler for us as we cannot lock the
  2414. * relevant page now since we are holding too many ntfs locks
  2415. * which would result in a lock reversal deadlock.
  2416. */
  2417. ni->initialized_size = new_size;
  2418. write_unlock_irqrestore(&ni->size_lock, flags);
  2419. goto unm_done;
  2420. }
  2421. /* If the above resize failed, this must be an attribute extension. */
  2422. BUG_ON(size_change < 0);
  2423. /*
  2424. * We have to drop all the locks so we can call
  2425. * ntfs_attr_make_non_resident(). This could be optimised by try-
  2426. * locking the first page cache page and only if that fails dropping
  2427. * the locks, locking the page, and redoing all the locking and
  2428. * lookups. While this would be a huge optimisation, it is not worth
  2429. * it as this is definitely a slow code path as it only ever can happen
  2430. * once for any given file.
  2431. */
  2432. ntfs_attr_put_search_ctx(ctx);
  2433. unmap_mft_record(base_ni);
  2434. up_write(&ni->runlist.lock);
  2435. /*
  2436. * Not enough space in the mft record, try to make the attribute
  2437. * non-resident and if successful restart the truncation process.
  2438. */
  2439. err = ntfs_attr_make_non_resident(ni, old_size);
  2440. if (likely(!err))
  2441. goto retry_truncate;
  2442. /*
  2443. * Could not make non-resident. If this is due to this not being
  2444. * permitted for this attribute type or there not being enough space,
  2445. * try to make other attributes non-resident. Otherwise fail.
  2446. */
  2447. if (unlikely(err != -EPERM && err != -ENOSPC)) {
  2448. ntfs_error(vol->sb, "Cannot truncate inode 0x%lx, attribute "
  2449. "type 0x%x, because the conversion from "
  2450. "resident to non-resident attribute failed "
  2451. "with error code %i.", vi->i_ino,
  2452. (unsigned)le32_to_cpu(ni->type), err);
  2453. if (err != -ENOMEM)
  2454. err = -EIO;
  2455. goto conv_err_out;
  2456. }
  2457. /* TODO: Not implemented from here, abort. */
  2458. if (err == -ENOSPC)
  2459. ntfs_error(vol->sb, "Not enough space in the mft record/on "
  2460. "disk for the non-resident attribute value. "
  2461. "This case is not implemented yet.");
  2462. else /* if (err == -EPERM) */
  2463. ntfs_error(vol->sb, "This attribute type may not be "
  2464. "non-resident. This case is not implemented "
  2465. "yet.");
  2466. err = -EOPNOTSUPP;
  2467. goto conv_err_out;
  2468. #if 0
  2469. // TODO: Attempt to make other attributes non-resident.
  2470. if (!err)
  2471. goto do_resident_extend;
  2472. /*
  2473. * Both the attribute list attribute and the standard information
  2474. * attribute must remain in the base inode. Thus, if this is one of
  2475. * these attributes, we have to try to move other attributes out into
  2476. * extent mft records instead.
  2477. */
  2478. if (ni->type == AT_ATTRIBUTE_LIST ||
  2479. ni->type == AT_STANDARD_INFORMATION) {
  2480. // TODO: Attempt to move other attributes into extent mft
  2481. // records.
  2482. err = -EOPNOTSUPP;
  2483. if (!err)
  2484. goto do_resident_extend;
  2485. goto err_out;
  2486. }
  2487. // TODO: Attempt to move this attribute to an extent mft record, but
  2488. // only if it is not already the only attribute in an mft record in
  2489. // which case there would be nothing to gain.
  2490. err = -EOPNOTSUPP;
  2491. if (!err)
  2492. goto do_resident_extend;
  2493. /* There is nothing we can do to make enough space. )-: */
  2494. goto err_out;
  2495. #endif
  2496. do_non_resident_truncate:
  2497. BUG_ON(!NInoNonResident(ni));
  2498. if (alloc_change < 0) {
  2499. highest_vcn = sle64_to_cpu(a->data.non_resident.highest_vcn);
  2500. if (highest_vcn > 0 &&
  2501. old_alloc_size >> vol->cluster_size_bits >
  2502. highest_vcn + 1) {
  2503. /*
  2504. * This attribute has multiple extents. Not yet
  2505. * supported.
  2506. */
  2507. ntfs_error(vol->sb, "Cannot truncate inode 0x%lx, "
  2508. "attribute type 0x%x, because the "
  2509. "attribute is highly fragmented (it "
  2510. "consists of multiple extents) and "
  2511. "this case is not implemented yet.",
  2512. vi->i_ino,
  2513. (unsigned)le32_to_cpu(ni->type));
  2514. err = -EOPNOTSUPP;
  2515. goto bad_out;
  2516. }
  2517. }
  2518. /*
  2519. * If the size is shrinking, need to reduce the initialized_size and
  2520. * the data_size before reducing the allocation.
  2521. */
  2522. if (size_change < 0) {
  2523. /*
  2524. * Make the valid size smaller (i_size is already up-to-date).
  2525. */
  2526. write_lock_irqsave(&ni->size_lock, flags);
  2527. if (new_size < ni->initialized_size) {
  2528. ni->initialized_size = new_size;
  2529. a->data.non_resident.initialized_size =
  2530. cpu_to_sle64(new_size);
  2531. }
  2532. a->data.non_resident.data_size = cpu_to_sle64(new_size);
  2533. write_unlock_irqrestore(&ni->size_lock, flags);
  2534. flush_dcache_mft_record_page(ctx->ntfs_ino);
  2535. mark_mft_record_dirty(ctx->ntfs_ino);
  2536. /* If the allocated size is not changing, we are done. */
  2537. if (!alloc_change)
  2538. goto unm_done;
  2539. /*
  2540. * If the size is shrinking it makes no sense for the
  2541. * allocation to be growing.
  2542. */
  2543. BUG_ON(alloc_change > 0);
  2544. } else /* if (size_change >= 0) */ {
  2545. /*
  2546. * The file size is growing or staying the same but the
  2547. * allocation can be shrinking, growing or staying the same.
  2548. */
  2549. if (alloc_change > 0) {
  2550. /*
  2551. * We need to extend the allocation and possibly update
  2552. * the data size. If we are updating the data size,
  2553. * since we are not touching the initialized_size we do
  2554. * not need to worry about the actual data on disk.
  2555. * And as far as the page cache is concerned, there
  2556. * will be no pages beyond the old data size and any
  2557. * partial region in the last page between the old and
  2558. * new data size (or the end of the page if the new
  2559. * data size is outside the page) does not need to be
  2560. * modified as explained above for the resident
  2561. * attribute truncate case. To do this, we simply drop
  2562. * the locks we hold and leave all the work to our
  2563. * friendly helper ntfs_attr_extend_allocation().
  2564. */
  2565. ntfs_attr_put_search_ctx(ctx);
  2566. unmap_mft_record(base_ni);
  2567. up_write(&ni->runlist.lock);
  2568. err = ntfs_attr_extend_allocation(ni, new_size,
  2569. size_change > 0 ? new_size : -1, -1);
  2570. /*
  2571. * ntfs_attr_extend_allocation() will have done error
  2572. * output already.
  2573. */
  2574. goto done;
  2575. }
  2576. if (!alloc_change)
  2577. goto alloc_done;
  2578. }
  2579. /* alloc_change < 0 */
  2580. /* Free the clusters. */
  2581. nr_freed = ntfs_cluster_free(ni, new_alloc_size >>
  2582. vol->cluster_size_bits, -1, ctx);
  2583. m = ctx->mrec;
  2584. a = ctx->attr;
  2585. if (unlikely(nr_freed < 0)) {
  2586. ntfs_error(vol->sb, "Failed to release cluster(s) (error code "
  2587. "%lli). Unmount and run chkdsk to recover "
  2588. "the lost cluster(s).", (long long)nr_freed);
  2589. NVolSetErrors(vol);
  2590. nr_freed = 0;
  2591. }
  2592. /* Truncate the runlist. */
  2593. err = ntfs_rl_truncate_nolock(vol, &ni->runlist,
  2594. new_alloc_size >> vol->cluster_size_bits);
  2595. /*
  2596. * If the runlist truncation failed and/or the search context is no
  2597. * longer valid, we cannot resize the attribute record or build the
  2598. * mapping pairs array thus we mark the inode bad so that no access to
  2599. * the freed clusters can happen.
  2600. */
  2601. if (unlikely(err || IS_ERR(m))) {
  2602. ntfs_error(vol->sb, "Failed to %s (error code %li).%s",
  2603. IS_ERR(m) ?
  2604. "restore attribute search context" :
  2605. "truncate attribute runlist",
  2606. IS_ERR(m) ? PTR_ERR(m) : err, es);
  2607. err = -EIO;
  2608. goto bad_out;
  2609. }
  2610. /* Get the size for the shrunk mapping pairs array for the runlist. */
  2611. mp_size = ntfs_get_size_for_mapping_pairs(vol, ni->runlist.rl, 0, -1);
  2612. if (unlikely(mp_size <= 0)) {
  2613. ntfs_error(vol->sb, "Cannot shrink allocation of inode 0x%lx, "
  2614. "attribute type 0x%x, because determining the "
  2615. "size for the mapping pairs failed with error "
  2616. "code %i.%s", vi->i_ino,
  2617. (unsigned)le32_to_cpu(ni->type), mp_size, es);
  2618. err = -EIO;
  2619. goto bad_out;
  2620. }
  2621. /*
  2622. * Shrink the attribute record for the new mapping pairs array. Note,
  2623. * this cannot fail since we are making the attribute smaller thus by
  2624. * definition there is enough space to do so.
  2625. */
  2626. attr_len = le32_to_cpu(a->length);
  2627. err = ntfs_attr_record_resize(m, a, mp_size +
  2628. le16_to_cpu(a->data.non_resident.mapping_pairs_offset));
  2629. BUG_ON(err);
  2630. /*
  2631. * Generate the mapping pairs array directly into the attribute record.
  2632. */
  2633. err = ntfs_mapping_pairs_build(vol, (u8*)a +
  2634. le16_to_cpu(a->data.non_resident.mapping_pairs_offset),
  2635. mp_size, ni->runlist.rl, 0, -1, NULL);
  2636. if (unlikely(err)) {
  2637. ntfs_error(vol->sb, "Cannot shrink allocation of inode 0x%lx, "
  2638. "attribute type 0x%x, because building the "
  2639. "mapping pairs failed with error code %i.%s",
  2640. vi->i_ino, (unsigned)le32_to_cpu(ni->type),
  2641. err, es);
  2642. err = -EIO;
  2643. goto bad_out;
  2644. }
  2645. /* Update the allocated/compressed size as well as the highest vcn. */
  2646. a->data.non_resident.highest_vcn = cpu_to_sle64((new_alloc_size >>
  2647. vol->cluster_size_bits) - 1);
  2648. write_lock_irqsave(&ni->size_lock, flags);
  2649. ni->allocated_size = new_alloc_size;
  2650. a->data.non_resident.allocated_size = cpu_to_sle64(new_alloc_size);
  2651. if (NInoSparse(ni) || NInoCompressed(ni)) {
  2652. if (nr_freed) {
  2653. ni->itype.compressed.size -= nr_freed <<
  2654. vol->cluster_size_bits;
  2655. BUG_ON(ni->itype.compressed.size < 0);
  2656. a->data.non_resident.compressed_size = cpu_to_sle64(
  2657. ni->itype.compressed.size);
  2658. vi->i_blocks = ni->itype.compressed.size >> 9;
  2659. }
  2660. } else
  2661. vi->i_blocks = new_alloc_size >> 9;
  2662. write_unlock_irqrestore(&ni->size_lock, flags);
  2663. /*
  2664. * We have shrunk the allocation. If this is a shrinking truncate we
  2665. * have already dealt with the initialized_size and the data_size above
  2666. * and we are done. If the truncate is only changing the allocation
  2667. * and not the data_size, we are also done. If this is an extending
  2668. * truncate, need to extend the data_size now which is ensured by the
  2669. * fact that @size_change is positive.
  2670. */
  2671. alloc_done:
  2672. /*
  2673. * If the size is growing, need to update it now. If it is shrinking,
  2674. * we have already updated it above (before the allocation change).
  2675. */
  2676. if (size_change > 0)
  2677. a->data.non_resident.data_size = cpu_to_sle64(new_size);
  2678. /* Ensure the modified mft record is written out. */
  2679. flush_dcache_mft_record_page(ctx->ntfs_ino);
  2680. mark_mft_record_dirty(ctx->ntfs_ino);
  2681. unm_done:
  2682. ntfs_attr_put_search_ctx(ctx);
  2683. unmap_mft_record(base_ni);
  2684. up_write(&ni->runlist.lock);
  2685. done:
  2686. /* Update the mtime and ctime on the base inode. */
  2687. /* normally ->truncate shouldn't update ctime or mtime,
  2688. * but ntfs did before so it got a copy & paste version
  2689. * of file_update_time. one day someone should fix this
  2690. * for real.
  2691. */
  2692. if (!IS_NOCMTIME(VFS_I(base_ni)) && !IS_RDONLY(VFS_I(base_ni))) {
  2693. struct timespec64 now = current_time(VFS_I(base_ni));
  2694. int sync_it = 0;
  2695. if (!timespec64_equal(&VFS_I(base_ni)->i_mtime, &now) ||
  2696. !timespec64_equal(&VFS_I(base_ni)->i_ctime, &now))
  2697. sync_it = 1;
  2698. VFS_I(base_ni)->i_mtime = now;
  2699. VFS_I(base_ni)->i_ctime = now;
  2700. if (sync_it)
  2701. mark_inode_dirty_sync(VFS_I(base_ni));
  2702. }
  2703. if (likely(!err)) {
  2704. NInoClearTruncateFailed(ni);
  2705. ntfs_debug("Done.");
  2706. }
  2707. return err;
  2708. old_bad_out:
  2709. old_size = -1;
  2710. bad_out:
  2711. if (err != -ENOMEM && err != -EOPNOTSUPP)
  2712. NVolSetErrors(vol);
  2713. if (err != -EOPNOTSUPP)
  2714. NInoSetTruncateFailed(ni);
  2715. else if (old_size >= 0)
  2716. i_size_write(vi, old_size);
  2717. err_out:
  2718. if (ctx)
  2719. ntfs_attr_put_search_ctx(ctx);
  2720. if (m)
  2721. unmap_mft_record(base_ni);
  2722. up_write(&ni->runlist.lock);
  2723. out:
  2724. ntfs_debug("Failed. Returning error code %i.", err);
  2725. return err;
  2726. conv_err_out:
  2727. if (err != -ENOMEM && err != -EOPNOTSUPP)
  2728. NVolSetErrors(vol);
  2729. if (err != -EOPNOTSUPP)
  2730. NInoSetTruncateFailed(ni);
  2731. else
  2732. i_size_write(vi, old_size);
  2733. goto out;
  2734. }
  2735. /**
  2736. * ntfs_truncate_vfs - wrapper for ntfs_truncate() that has no return value
  2737. * @vi: inode for which the i_size was changed
  2738. *
  2739. * Wrapper for ntfs_truncate() that has no return value.
  2740. *
  2741. * See ntfs_truncate() description above for details.
  2742. */
  2743. #ifdef NTFS_RW
  2744. void ntfs_truncate_vfs(struct inode *vi) {
  2745. ntfs_truncate(vi);
  2746. }
  2747. #endif
  2748. /**
  2749. * ntfs_setattr - called from notify_change() when an attribute is being changed
  2750. * @dentry: dentry whose attributes to change
  2751. * @attr: structure describing the attributes and the changes
  2752. *
  2753. * We have to trap VFS attempts to truncate the file described by @dentry as
  2754. * soon as possible, because we do not implement changes in i_size yet. So we
  2755. * abort all i_size changes here.
  2756. *
  2757. * We also abort all changes of user, group, and mode as we do not implement
  2758. * the NTFS ACLs yet.
  2759. *
  2760. * Called with ->i_mutex held.
  2761. */
  2762. int ntfs_setattr(struct dentry *dentry, struct iattr *attr)
  2763. {
  2764. struct inode *vi = d_inode(dentry);
  2765. int err;
  2766. unsigned int ia_valid = attr->ia_valid;
  2767. err = setattr_prepare(dentry, attr);
  2768. if (err)
  2769. goto out;
  2770. /* We do not support NTFS ACLs yet. */
  2771. if (ia_valid & (ATTR_UID | ATTR_GID | ATTR_MODE)) {
  2772. ntfs_warning(vi->i_sb, "Changes in user/group/mode are not "
  2773. "supported yet, ignoring.");
  2774. err = -EOPNOTSUPP;
  2775. goto out;
  2776. }
  2777. if (ia_valid & ATTR_SIZE) {
  2778. if (attr->ia_size != i_size_read(vi)) {
  2779. ntfs_inode *ni = NTFS_I(vi);
  2780. /*
  2781. * FIXME: For now we do not support resizing of
  2782. * compressed or encrypted files yet.
  2783. */
  2784. if (NInoCompressed(ni) || NInoEncrypted(ni)) {
  2785. ntfs_warning(vi->i_sb, "Changes in inode size "
  2786. "are not supported yet for "
  2787. "%s files, ignoring.",
  2788. NInoCompressed(ni) ?
  2789. "compressed" : "encrypted");
  2790. err = -EOPNOTSUPP;
  2791. } else {
  2792. truncate_setsize(vi, attr->ia_size);
  2793. ntfs_truncate_vfs(vi);
  2794. }
  2795. if (err || ia_valid == ATTR_SIZE)
  2796. goto out;
  2797. } else {
  2798. /*
  2799. * We skipped the truncate but must still update
  2800. * timestamps.
  2801. */
  2802. ia_valid |= ATTR_MTIME | ATTR_CTIME;
  2803. }
  2804. }
  2805. if (ia_valid & ATTR_ATIME)
  2806. vi->i_atime = timespec64_trunc(attr->ia_atime,
  2807. vi->i_sb->s_time_gran);
  2808. if (ia_valid & ATTR_MTIME)
  2809. vi->i_mtime = timespec64_trunc(attr->ia_mtime,
  2810. vi->i_sb->s_time_gran);
  2811. if (ia_valid & ATTR_CTIME)
  2812. vi->i_ctime = timespec64_trunc(attr->ia_ctime,
  2813. vi->i_sb->s_time_gran);
  2814. mark_inode_dirty(vi);
  2815. out:
  2816. return err;
  2817. }
  2818. /**
  2819. * ntfs_write_inode - write out a dirty inode
  2820. * @vi: inode to write out
  2821. * @sync: if true, write out synchronously
  2822. *
  2823. * Write out a dirty inode to disk including any extent inodes if present.
  2824. *
  2825. * If @sync is true, commit the inode to disk and wait for io completion. This
  2826. * is done using write_mft_record().
  2827. *
  2828. * If @sync is false, just schedule the write to happen but do not wait for i/o
  2829. * completion. In 2.6 kernels, scheduling usually happens just by virtue of
  2830. * marking the page (and in this case mft record) dirty but we do not implement
  2831. * this yet as write_mft_record() largely ignores the @sync parameter and
  2832. * always performs synchronous writes.
  2833. *
  2834. * Return 0 on success and -errno on error.
  2835. */
  2836. int __ntfs_write_inode(struct inode *vi, int sync)
  2837. {
  2838. sle64 nt;
  2839. ntfs_inode *ni = NTFS_I(vi);
  2840. ntfs_attr_search_ctx *ctx;
  2841. MFT_RECORD *m;
  2842. STANDARD_INFORMATION *si;
  2843. int err = 0;
  2844. bool modified = false;
  2845. ntfs_debug("Entering for %sinode 0x%lx.", NInoAttr(ni) ? "attr " : "",
  2846. vi->i_ino);
  2847. /*
  2848. * Dirty attribute inodes are written via their real inodes so just
  2849. * clean them here. Access time updates are taken care off when the
  2850. * real inode is written.
  2851. */
  2852. if (NInoAttr(ni)) {
  2853. NInoClearDirty(ni);
  2854. ntfs_debug("Done.");
  2855. return 0;
  2856. }
  2857. /* Map, pin, and lock the mft record belonging to the inode. */
  2858. m = map_mft_record(ni);
  2859. if (IS_ERR(m)) {
  2860. err = PTR_ERR(m);
  2861. goto err_out;
  2862. }
  2863. /* Update the access times in the standard information attribute. */
  2864. ctx = ntfs_attr_get_search_ctx(ni, m);
  2865. if (unlikely(!ctx)) {
  2866. err = -ENOMEM;
  2867. goto unm_err_out;
  2868. }
  2869. err = ntfs_attr_lookup(AT_STANDARD_INFORMATION, NULL, 0,
  2870. CASE_SENSITIVE, 0, NULL, 0, ctx);
  2871. if (unlikely(err)) {
  2872. ntfs_attr_put_search_ctx(ctx);
  2873. goto unm_err_out;
  2874. }
  2875. si = (STANDARD_INFORMATION*)((u8*)ctx->attr +
  2876. le16_to_cpu(ctx->attr->data.resident.value_offset));
  2877. /* Update the access times if they have changed. */
  2878. nt = utc2ntfs(vi->i_mtime);
  2879. if (si->last_data_change_time != nt) {
  2880. ntfs_debug("Updating mtime for inode 0x%lx: old = 0x%llx, "
  2881. "new = 0x%llx", vi->i_ino, (long long)
  2882. sle64_to_cpu(si->last_data_change_time),
  2883. (long long)sle64_to_cpu(nt));
  2884. si->last_data_change_time = nt;
  2885. modified = true;
  2886. }
  2887. nt = utc2ntfs(vi->i_ctime);
  2888. if (si->last_mft_change_time != nt) {
  2889. ntfs_debug("Updating ctime for inode 0x%lx: old = 0x%llx, "
  2890. "new = 0x%llx", vi->i_ino, (long long)
  2891. sle64_to_cpu(si->last_mft_change_time),
  2892. (long long)sle64_to_cpu(nt));
  2893. si->last_mft_change_time = nt;
  2894. modified = true;
  2895. }
  2896. nt = utc2ntfs(vi->i_atime);
  2897. if (si->last_access_time != nt) {
  2898. ntfs_debug("Updating atime for inode 0x%lx: old = 0x%llx, "
  2899. "new = 0x%llx", vi->i_ino,
  2900. (long long)sle64_to_cpu(si->last_access_time),
  2901. (long long)sle64_to_cpu(nt));
  2902. si->last_access_time = nt;
  2903. modified = true;
  2904. }
  2905. /*
  2906. * If we just modified the standard information attribute we need to
  2907. * mark the mft record it is in dirty. We do this manually so that
  2908. * mark_inode_dirty() is not called which would redirty the inode and
  2909. * hence result in an infinite loop of trying to write the inode.
  2910. * There is no need to mark the base inode nor the base mft record
  2911. * dirty, since we are going to write this mft record below in any case
  2912. * and the base mft record may actually not have been modified so it
  2913. * might not need to be written out.
  2914. * NOTE: It is not a problem when the inode for $MFT itself is being
  2915. * written out as mark_ntfs_record_dirty() will only set I_DIRTY_PAGES
  2916. * on the $MFT inode and hence ntfs_write_inode() will not be
  2917. * re-invoked because of it which in turn is ok since the dirtied mft
  2918. * record will be cleaned and written out to disk below, i.e. before
  2919. * this function returns.
  2920. */
  2921. if (modified) {
  2922. flush_dcache_mft_record_page(ctx->ntfs_ino);
  2923. if (!NInoTestSetDirty(ctx->ntfs_ino))
  2924. mark_ntfs_record_dirty(ctx->ntfs_ino->page,
  2925. ctx->ntfs_ino->page_ofs);
  2926. }
  2927. ntfs_attr_put_search_ctx(ctx);
  2928. /* Now the access times are updated, write the base mft record. */
  2929. if (NInoDirty(ni))
  2930. err = write_mft_record(ni, m, sync);
  2931. /* Write all attached extent mft records. */
  2932. mutex_lock(&ni->extent_lock);
  2933. if (ni->nr_extents > 0) {
  2934. ntfs_inode **extent_nis = ni->ext.extent_ntfs_inos;
  2935. int i;
  2936. ntfs_debug("Writing %i extent inodes.", ni->nr_extents);
  2937. for (i = 0; i < ni->nr_extents; i++) {
  2938. ntfs_inode *tni = extent_nis[i];
  2939. if (NInoDirty(tni)) {
  2940. MFT_RECORD *tm = map_mft_record(tni);
  2941. int ret;
  2942. if (IS_ERR(tm)) {
  2943. if (!err || err == -ENOMEM)
  2944. err = PTR_ERR(tm);
  2945. continue;
  2946. }
  2947. ret = write_mft_record(tni, tm, sync);
  2948. unmap_mft_record(tni);
  2949. if (unlikely(ret)) {
  2950. if (!err || err == -ENOMEM)
  2951. err = ret;
  2952. }
  2953. }
  2954. }
  2955. }
  2956. mutex_unlock(&ni->extent_lock);
  2957. unmap_mft_record(ni);
  2958. if (unlikely(err))
  2959. goto err_out;
  2960. ntfs_debug("Done.");
  2961. return 0;
  2962. unm_err_out:
  2963. unmap_mft_record(ni);
  2964. err_out:
  2965. if (err == -ENOMEM) {
  2966. ntfs_warning(vi->i_sb, "Not enough memory to write inode. "
  2967. "Marking the inode dirty again, so the VFS "
  2968. "retries later.");
  2969. mark_inode_dirty(vi);
  2970. } else {
  2971. ntfs_error(vi->i_sb, "Failed (error %i): Run chkdsk.", -err);
  2972. NVolSetErrors(ni->vol);
  2973. }
  2974. return err;
  2975. }
  2976. #endif /* NTFS_RW */