namei.c 35 KB

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  1. /*
  2. * namei.c
  3. *
  4. * PURPOSE
  5. * Inode name handling routines for the OSTA-UDF(tm) filesystem.
  6. *
  7. * COPYRIGHT
  8. * This file is distributed under the terms of the GNU General Public
  9. * License (GPL). Copies of the GPL can be obtained from:
  10. * ftp://prep.ai.mit.edu/pub/gnu/GPL
  11. * Each contributing author retains all rights to their own work.
  12. *
  13. * (C) 1998-2004 Ben Fennema
  14. * (C) 1999-2000 Stelias Computing Inc
  15. *
  16. * HISTORY
  17. *
  18. * 12/12/98 blf Created. Split out the lookup code from dir.c
  19. * 04/19/99 blf link, mknod, symlink support
  20. */
  21. #include "udfdecl.h"
  22. #include "udf_i.h"
  23. #include "udf_sb.h"
  24. #include <linux/string.h>
  25. #include <linux/errno.h>
  26. #include <linux/mm.h>
  27. #include <linux/slab.h>
  28. #include <linux/smp_lock.h>
  29. #include <linux/buffer_head.h>
  30. #include <linux/sched.h>
  31. #include <linux/crc-itu-t.h>
  32. #include <linux/exportfs.h>
  33. static inline int udf_match(int len1, const unsigned char *name1, int len2,
  34. const unsigned char *name2)
  35. {
  36. if (len1 != len2)
  37. return 0;
  38. return !memcmp(name1, name2, len1);
  39. }
  40. int udf_write_fi(struct inode *inode, struct fileIdentDesc *cfi,
  41. struct fileIdentDesc *sfi, struct udf_fileident_bh *fibh,
  42. uint8_t *impuse, uint8_t *fileident)
  43. {
  44. uint16_t crclen = fibh->eoffset - fibh->soffset - sizeof(struct tag);
  45. uint16_t crc;
  46. int offset;
  47. uint16_t liu = le16_to_cpu(cfi->lengthOfImpUse);
  48. uint8_t lfi = cfi->lengthFileIdent;
  49. int padlen = fibh->eoffset - fibh->soffset - liu - lfi -
  50. sizeof(struct fileIdentDesc);
  51. int adinicb = 0;
  52. if (UDF_I(inode)->i_alloc_type == ICBTAG_FLAG_AD_IN_ICB)
  53. adinicb = 1;
  54. offset = fibh->soffset + sizeof(struct fileIdentDesc);
  55. if (impuse) {
  56. if (adinicb || (offset + liu < 0)) {
  57. memcpy((uint8_t *)sfi->impUse, impuse, liu);
  58. } else if (offset >= 0) {
  59. memcpy(fibh->ebh->b_data + offset, impuse, liu);
  60. } else {
  61. memcpy((uint8_t *)sfi->impUse, impuse, -offset);
  62. memcpy(fibh->ebh->b_data, impuse - offset,
  63. liu + offset);
  64. }
  65. }
  66. offset += liu;
  67. if (fileident) {
  68. if (adinicb || (offset + lfi < 0)) {
  69. memcpy((uint8_t *)sfi->fileIdent + liu, fileident, lfi);
  70. } else if (offset >= 0) {
  71. memcpy(fibh->ebh->b_data + offset, fileident, lfi);
  72. } else {
  73. memcpy((uint8_t *)sfi->fileIdent + liu, fileident,
  74. -offset);
  75. memcpy(fibh->ebh->b_data, fileident - offset,
  76. lfi + offset);
  77. }
  78. }
  79. offset += lfi;
  80. if (adinicb || (offset + padlen < 0)) {
  81. memset((uint8_t *)sfi->padding + liu + lfi, 0x00, padlen);
  82. } else if (offset >= 0) {
  83. memset(fibh->ebh->b_data + offset, 0x00, padlen);
  84. } else {
  85. memset((uint8_t *)sfi->padding + liu + lfi, 0x00, -offset);
  86. memset(fibh->ebh->b_data, 0x00, padlen + offset);
  87. }
  88. crc = crc_itu_t(0, (uint8_t *)cfi + sizeof(struct tag),
  89. sizeof(struct fileIdentDesc) - sizeof(struct tag));
  90. if (fibh->sbh == fibh->ebh) {
  91. crc = crc_itu_t(crc, (uint8_t *)sfi->impUse,
  92. crclen + sizeof(struct tag) -
  93. sizeof(struct fileIdentDesc));
  94. } else if (sizeof(struct fileIdentDesc) >= -fibh->soffset) {
  95. crc = crc_itu_t(crc, fibh->ebh->b_data +
  96. sizeof(struct fileIdentDesc) +
  97. fibh->soffset,
  98. crclen + sizeof(struct tag) -
  99. sizeof(struct fileIdentDesc));
  100. } else {
  101. crc = crc_itu_t(crc, (uint8_t *)sfi->impUse,
  102. -fibh->soffset - sizeof(struct fileIdentDesc));
  103. crc = crc_itu_t(crc, fibh->ebh->b_data, fibh->eoffset);
  104. }
  105. cfi->descTag.descCRC = cpu_to_le16(crc);
  106. cfi->descTag.descCRCLength = cpu_to_le16(crclen);
  107. cfi->descTag.tagChecksum = udf_tag_checksum(&cfi->descTag);
  108. if (adinicb || (sizeof(struct fileIdentDesc) <= -fibh->soffset)) {
  109. memcpy((uint8_t *)sfi, (uint8_t *)cfi,
  110. sizeof(struct fileIdentDesc));
  111. } else {
  112. memcpy((uint8_t *)sfi, (uint8_t *)cfi, -fibh->soffset);
  113. memcpy(fibh->ebh->b_data, (uint8_t *)cfi - fibh->soffset,
  114. sizeof(struct fileIdentDesc) + fibh->soffset);
  115. }
  116. if (adinicb) {
  117. mark_inode_dirty(inode);
  118. } else {
  119. if (fibh->sbh != fibh->ebh)
  120. mark_buffer_dirty_inode(fibh->ebh, inode);
  121. mark_buffer_dirty_inode(fibh->sbh, inode);
  122. }
  123. return 0;
  124. }
  125. static struct fileIdentDesc *udf_find_entry(struct inode *dir,
  126. const struct qstr *child,
  127. struct udf_fileident_bh *fibh,
  128. struct fileIdentDesc *cfi)
  129. {
  130. struct fileIdentDesc *fi = NULL;
  131. loff_t f_pos;
  132. int block, flen;
  133. unsigned char *fname = NULL;
  134. unsigned char *nameptr;
  135. uint8_t lfi;
  136. uint16_t liu;
  137. loff_t size;
  138. struct kernel_lb_addr eloc;
  139. uint32_t elen;
  140. sector_t offset;
  141. struct extent_position epos = {};
  142. struct udf_inode_info *dinfo = UDF_I(dir);
  143. int isdotdot = child->len == 2 &&
  144. child->name[0] == '.' && child->name[1] == '.';
  145. size = udf_ext0_offset(dir) + dir->i_size;
  146. f_pos = udf_ext0_offset(dir);
  147. fibh->sbh = fibh->ebh = NULL;
  148. fibh->soffset = fibh->eoffset = f_pos & (dir->i_sb->s_blocksize - 1);
  149. if (dinfo->i_alloc_type != ICBTAG_FLAG_AD_IN_ICB) {
  150. if (inode_bmap(dir, f_pos >> dir->i_sb->s_blocksize_bits, &epos,
  151. &eloc, &elen, &offset) != (EXT_RECORDED_ALLOCATED >> 30))
  152. goto out_err;
  153. block = udf_get_lb_pblock(dir->i_sb, &eloc, offset);
  154. if ((++offset << dir->i_sb->s_blocksize_bits) < elen) {
  155. if (dinfo->i_alloc_type == ICBTAG_FLAG_AD_SHORT)
  156. epos.offset -= sizeof(struct short_ad);
  157. else if (dinfo->i_alloc_type == ICBTAG_FLAG_AD_LONG)
  158. epos.offset -= sizeof(struct long_ad);
  159. } else
  160. offset = 0;
  161. fibh->sbh = fibh->ebh = udf_tread(dir->i_sb, block);
  162. if (!fibh->sbh)
  163. goto out_err;
  164. }
  165. fname = kmalloc(UDF_NAME_LEN, GFP_NOFS);
  166. if (!fname)
  167. goto out_err;
  168. while (f_pos < size) {
  169. fi = udf_fileident_read(dir, &f_pos, fibh, cfi, &epos, &eloc,
  170. &elen, &offset);
  171. if (!fi)
  172. goto out_err;
  173. liu = le16_to_cpu(cfi->lengthOfImpUse);
  174. lfi = cfi->lengthFileIdent;
  175. if (fibh->sbh == fibh->ebh) {
  176. nameptr = fi->fileIdent + liu;
  177. } else {
  178. int poffset; /* Unpaded ending offset */
  179. poffset = fibh->soffset + sizeof(struct fileIdentDesc) +
  180. liu + lfi;
  181. if (poffset >= lfi)
  182. nameptr = (uint8_t *)(fibh->ebh->b_data +
  183. poffset - lfi);
  184. else {
  185. nameptr = fname;
  186. memcpy(nameptr, fi->fileIdent + liu,
  187. lfi - poffset);
  188. memcpy(nameptr + lfi - poffset,
  189. fibh->ebh->b_data, poffset);
  190. }
  191. }
  192. if ((cfi->fileCharacteristics & FID_FILE_CHAR_DELETED) != 0) {
  193. if (!UDF_QUERY_FLAG(dir->i_sb, UDF_FLAG_UNDELETE))
  194. continue;
  195. }
  196. if ((cfi->fileCharacteristics & FID_FILE_CHAR_HIDDEN) != 0) {
  197. if (!UDF_QUERY_FLAG(dir->i_sb, UDF_FLAG_UNHIDE))
  198. continue;
  199. }
  200. if ((cfi->fileCharacteristics & FID_FILE_CHAR_PARENT) &&
  201. isdotdot) {
  202. brelse(epos.bh);
  203. return fi;
  204. }
  205. if (!lfi)
  206. continue;
  207. flen = udf_get_filename(dir->i_sb, nameptr, fname, lfi);
  208. if (flen && udf_match(flen, fname, child->len, child->name))
  209. goto out_ok;
  210. }
  211. out_err:
  212. fi = NULL;
  213. if (fibh->sbh != fibh->ebh)
  214. brelse(fibh->ebh);
  215. brelse(fibh->sbh);
  216. out_ok:
  217. brelse(epos.bh);
  218. kfree(fname);
  219. return fi;
  220. }
  221. static struct dentry *udf_lookup(struct inode *dir, struct dentry *dentry,
  222. struct nameidata *nd)
  223. {
  224. struct inode *inode = NULL;
  225. struct fileIdentDesc cfi;
  226. struct udf_fileident_bh fibh;
  227. if (dentry->d_name.len > UDF_NAME_LEN - 2)
  228. return ERR_PTR(-ENAMETOOLONG);
  229. lock_kernel();
  230. #ifdef UDF_RECOVERY
  231. /* temporary shorthand for specifying files by inode number */
  232. if (!strncmp(dentry->d_name.name, ".B=", 3)) {
  233. struct kernel_lb_addr lb = {
  234. .logicalBlockNum = 0,
  235. .partitionReferenceNum =
  236. simple_strtoul(dentry->d_name.name + 3,
  237. NULL, 0),
  238. };
  239. inode = udf_iget(dir->i_sb, lb);
  240. if (!inode) {
  241. unlock_kernel();
  242. return ERR_PTR(-EACCES);
  243. }
  244. } else
  245. #endif /* UDF_RECOVERY */
  246. if (udf_find_entry(dir, &dentry->d_name, &fibh, &cfi)) {
  247. struct kernel_lb_addr loc;
  248. if (fibh.sbh != fibh.ebh)
  249. brelse(fibh.ebh);
  250. brelse(fibh.sbh);
  251. loc = lelb_to_cpu(cfi.icb.extLocation);
  252. inode = udf_iget(dir->i_sb, &loc);
  253. if (!inode) {
  254. unlock_kernel();
  255. return ERR_PTR(-EACCES);
  256. }
  257. }
  258. unlock_kernel();
  259. return d_splice_alias(inode, dentry);
  260. }
  261. static struct fileIdentDesc *udf_add_entry(struct inode *dir,
  262. struct dentry *dentry,
  263. struct udf_fileident_bh *fibh,
  264. struct fileIdentDesc *cfi, int *err)
  265. {
  266. struct super_block *sb = dir->i_sb;
  267. struct fileIdentDesc *fi = NULL;
  268. unsigned char *name = NULL;
  269. int namelen;
  270. loff_t f_pos;
  271. loff_t size = udf_ext0_offset(dir) + dir->i_size;
  272. int nfidlen;
  273. uint8_t lfi;
  274. uint16_t liu;
  275. int block;
  276. struct kernel_lb_addr eloc;
  277. uint32_t elen = 0;
  278. sector_t offset;
  279. struct extent_position epos = {};
  280. struct udf_inode_info *dinfo;
  281. fibh->sbh = fibh->ebh = NULL;
  282. name = kmalloc(UDF_NAME_LEN, GFP_NOFS);
  283. if (!name) {
  284. *err = -ENOMEM;
  285. goto out_err;
  286. }
  287. if (dentry) {
  288. if (!dentry->d_name.len) {
  289. *err = -EINVAL;
  290. goto out_err;
  291. }
  292. namelen = udf_put_filename(sb, dentry->d_name.name, name,
  293. dentry->d_name.len);
  294. if (!namelen) {
  295. *err = -ENAMETOOLONG;
  296. goto out_err;
  297. }
  298. } else {
  299. namelen = 0;
  300. }
  301. nfidlen = (sizeof(struct fileIdentDesc) + namelen + 3) & ~3;
  302. f_pos = udf_ext0_offset(dir);
  303. fibh->soffset = fibh->eoffset = f_pos & (dir->i_sb->s_blocksize - 1);
  304. dinfo = UDF_I(dir);
  305. if (dinfo->i_alloc_type != ICBTAG_FLAG_AD_IN_ICB) {
  306. if (inode_bmap(dir, f_pos >> dir->i_sb->s_blocksize_bits, &epos,
  307. &eloc, &elen, &offset) != (EXT_RECORDED_ALLOCATED >> 30)) {
  308. block = udf_get_lb_pblock(dir->i_sb,
  309. &dinfo->i_location, 0);
  310. fibh->soffset = fibh->eoffset = sb->s_blocksize;
  311. goto add;
  312. }
  313. block = udf_get_lb_pblock(dir->i_sb, &eloc, offset);
  314. if ((++offset << dir->i_sb->s_blocksize_bits) < elen) {
  315. if (dinfo->i_alloc_type == ICBTAG_FLAG_AD_SHORT)
  316. epos.offset -= sizeof(struct short_ad);
  317. else if (dinfo->i_alloc_type == ICBTAG_FLAG_AD_LONG)
  318. epos.offset -= sizeof(struct long_ad);
  319. } else
  320. offset = 0;
  321. fibh->sbh = fibh->ebh = udf_tread(dir->i_sb, block);
  322. if (!fibh->sbh) {
  323. *err = -EIO;
  324. goto out_err;
  325. }
  326. block = dinfo->i_location.logicalBlockNum;
  327. }
  328. while (f_pos < size) {
  329. fi = udf_fileident_read(dir, &f_pos, fibh, cfi, &epos, &eloc,
  330. &elen, &offset);
  331. if (!fi) {
  332. *err = -EIO;
  333. goto out_err;
  334. }
  335. liu = le16_to_cpu(cfi->lengthOfImpUse);
  336. lfi = cfi->lengthFileIdent;
  337. if ((cfi->fileCharacteristics & FID_FILE_CHAR_DELETED) != 0) {
  338. if (((sizeof(struct fileIdentDesc) +
  339. liu + lfi + 3) & ~3) == nfidlen) {
  340. cfi->descTag.tagSerialNum = cpu_to_le16(1);
  341. cfi->fileVersionNum = cpu_to_le16(1);
  342. cfi->fileCharacteristics = 0;
  343. cfi->lengthFileIdent = namelen;
  344. cfi->lengthOfImpUse = cpu_to_le16(0);
  345. if (!udf_write_fi(dir, cfi, fi, fibh, NULL,
  346. name))
  347. goto out_ok;
  348. else {
  349. *err = -EIO;
  350. goto out_err;
  351. }
  352. }
  353. }
  354. }
  355. add:
  356. f_pos += nfidlen;
  357. if (dinfo->i_alloc_type == ICBTAG_FLAG_AD_IN_ICB &&
  358. sb->s_blocksize - fibh->eoffset < nfidlen) {
  359. brelse(epos.bh);
  360. epos.bh = NULL;
  361. fibh->soffset -= udf_ext0_offset(dir);
  362. fibh->eoffset -= udf_ext0_offset(dir);
  363. f_pos -= udf_ext0_offset(dir);
  364. if (fibh->sbh != fibh->ebh)
  365. brelse(fibh->ebh);
  366. brelse(fibh->sbh);
  367. fibh->sbh = fibh->ebh =
  368. udf_expand_dir_adinicb(dir, &block, err);
  369. if (!fibh->sbh)
  370. goto out_err;
  371. epos.block = dinfo->i_location;
  372. epos.offset = udf_file_entry_alloc_offset(dir);
  373. /* Load extent udf_expand_dir_adinicb() has created */
  374. udf_current_aext(dir, &epos, &eloc, &elen, 1);
  375. }
  376. /* Entry fits into current block? */
  377. if (sb->s_blocksize - fibh->eoffset >= nfidlen) {
  378. fibh->soffset = fibh->eoffset;
  379. fibh->eoffset += nfidlen;
  380. if (fibh->sbh != fibh->ebh) {
  381. brelse(fibh->sbh);
  382. fibh->sbh = fibh->ebh;
  383. }
  384. if (dinfo->i_alloc_type == ICBTAG_FLAG_AD_IN_ICB) {
  385. block = dinfo->i_location.logicalBlockNum;
  386. fi = (struct fileIdentDesc *)
  387. (dinfo->i_ext.i_data +
  388. fibh->soffset -
  389. udf_ext0_offset(dir) +
  390. dinfo->i_lenEAttr);
  391. } else {
  392. block = eloc.logicalBlockNum +
  393. ((elen - 1) >>
  394. dir->i_sb->s_blocksize_bits);
  395. fi = (struct fileIdentDesc *)
  396. (fibh->sbh->b_data + fibh->soffset);
  397. }
  398. } else {
  399. /* Round up last extent in the file */
  400. elen = (elen + sb->s_blocksize - 1) & ~(sb->s_blocksize - 1);
  401. if (dinfo->i_alloc_type == ICBTAG_FLAG_AD_SHORT)
  402. epos.offset -= sizeof(struct short_ad);
  403. else if (dinfo->i_alloc_type == ICBTAG_FLAG_AD_LONG)
  404. epos.offset -= sizeof(struct long_ad);
  405. udf_write_aext(dir, &epos, &eloc, elen, 1);
  406. dinfo->i_lenExtents = (dinfo->i_lenExtents + sb->s_blocksize
  407. - 1) & ~(sb->s_blocksize - 1);
  408. fibh->soffset = fibh->eoffset - sb->s_blocksize;
  409. fibh->eoffset += nfidlen - sb->s_blocksize;
  410. if (fibh->sbh != fibh->ebh) {
  411. brelse(fibh->sbh);
  412. fibh->sbh = fibh->ebh;
  413. }
  414. block = eloc.logicalBlockNum + ((elen - 1) >>
  415. dir->i_sb->s_blocksize_bits);
  416. fibh->ebh = udf_bread(dir,
  417. f_pos >> dir->i_sb->s_blocksize_bits, 1, err);
  418. if (!fibh->ebh)
  419. goto out_err;
  420. if (!fibh->soffset) {
  421. if (udf_next_aext(dir, &epos, &eloc, &elen, 1) ==
  422. (EXT_RECORDED_ALLOCATED >> 30)) {
  423. block = eloc.logicalBlockNum + ((elen - 1) >>
  424. dir->i_sb->s_blocksize_bits);
  425. } else
  426. block++;
  427. brelse(fibh->sbh);
  428. fibh->sbh = fibh->ebh;
  429. fi = (struct fileIdentDesc *)(fibh->sbh->b_data);
  430. } else {
  431. fi = (struct fileIdentDesc *)
  432. (fibh->sbh->b_data + sb->s_blocksize +
  433. fibh->soffset);
  434. }
  435. }
  436. memset(cfi, 0, sizeof(struct fileIdentDesc));
  437. if (UDF_SB(sb)->s_udfrev >= 0x0200)
  438. udf_new_tag((char *)cfi, TAG_IDENT_FID, 3, 1, block,
  439. sizeof(struct tag));
  440. else
  441. udf_new_tag((char *)cfi, TAG_IDENT_FID, 2, 1, block,
  442. sizeof(struct tag));
  443. cfi->fileVersionNum = cpu_to_le16(1);
  444. cfi->lengthFileIdent = namelen;
  445. cfi->lengthOfImpUse = cpu_to_le16(0);
  446. if (!udf_write_fi(dir, cfi, fi, fibh, NULL, name)) {
  447. dir->i_size += nfidlen;
  448. if (dinfo->i_alloc_type == ICBTAG_FLAG_AD_IN_ICB)
  449. dinfo->i_lenAlloc += nfidlen;
  450. else {
  451. /* Find the last extent and truncate it to proper size */
  452. while (udf_next_aext(dir, &epos, &eloc, &elen, 1) ==
  453. (EXT_RECORDED_ALLOCATED >> 30))
  454. ;
  455. elen -= dinfo->i_lenExtents - dir->i_size;
  456. if (dinfo->i_alloc_type == ICBTAG_FLAG_AD_SHORT)
  457. epos.offset -= sizeof(struct short_ad);
  458. else if (dinfo->i_alloc_type == ICBTAG_FLAG_AD_LONG)
  459. epos.offset -= sizeof(struct long_ad);
  460. udf_write_aext(dir, &epos, &eloc, elen, 1);
  461. dinfo->i_lenExtents = dir->i_size;
  462. }
  463. mark_inode_dirty(dir);
  464. goto out_ok;
  465. } else {
  466. *err = -EIO;
  467. goto out_err;
  468. }
  469. out_err:
  470. fi = NULL;
  471. if (fibh->sbh != fibh->ebh)
  472. brelse(fibh->ebh);
  473. brelse(fibh->sbh);
  474. out_ok:
  475. brelse(epos.bh);
  476. kfree(name);
  477. return fi;
  478. }
  479. static int udf_delete_entry(struct inode *inode, struct fileIdentDesc *fi,
  480. struct udf_fileident_bh *fibh,
  481. struct fileIdentDesc *cfi)
  482. {
  483. cfi->fileCharacteristics |= FID_FILE_CHAR_DELETED;
  484. if (UDF_QUERY_FLAG(inode->i_sb, UDF_FLAG_STRICT))
  485. memset(&(cfi->icb), 0x00, sizeof(struct long_ad));
  486. return udf_write_fi(inode, cfi, fi, fibh, NULL, NULL);
  487. }
  488. static int udf_create(struct inode *dir, struct dentry *dentry, int mode,
  489. struct nameidata *nd)
  490. {
  491. struct udf_fileident_bh fibh;
  492. struct inode *inode;
  493. struct fileIdentDesc cfi, *fi;
  494. int err;
  495. struct udf_inode_info *iinfo;
  496. lock_kernel();
  497. inode = udf_new_inode(dir, mode, &err);
  498. if (!inode) {
  499. unlock_kernel();
  500. return err;
  501. }
  502. iinfo = UDF_I(inode);
  503. if (iinfo->i_alloc_type == ICBTAG_FLAG_AD_IN_ICB)
  504. inode->i_data.a_ops = &udf_adinicb_aops;
  505. else
  506. inode->i_data.a_ops = &udf_aops;
  507. inode->i_op = &udf_file_inode_operations;
  508. inode->i_fop = &udf_file_operations;
  509. mark_inode_dirty(inode);
  510. fi = udf_add_entry(dir, dentry, &fibh, &cfi, &err);
  511. if (!fi) {
  512. inode->i_nlink--;
  513. mark_inode_dirty(inode);
  514. iput(inode);
  515. unlock_kernel();
  516. return err;
  517. }
  518. cfi.icb.extLength = cpu_to_le32(inode->i_sb->s_blocksize);
  519. cfi.icb.extLocation = cpu_to_lelb(iinfo->i_location);
  520. *(__le32 *)((struct allocDescImpUse *)cfi.icb.impUse)->impUse =
  521. cpu_to_le32(iinfo->i_unique & 0x00000000FFFFFFFFUL);
  522. udf_write_fi(dir, &cfi, fi, &fibh, NULL, NULL);
  523. if (UDF_I(dir)->i_alloc_type == ICBTAG_FLAG_AD_IN_ICB)
  524. mark_inode_dirty(dir);
  525. if (fibh.sbh != fibh.ebh)
  526. brelse(fibh.ebh);
  527. brelse(fibh.sbh);
  528. unlock_kernel();
  529. d_instantiate(dentry, inode);
  530. return 0;
  531. }
  532. static int udf_mknod(struct inode *dir, struct dentry *dentry, int mode,
  533. dev_t rdev)
  534. {
  535. struct inode *inode;
  536. struct udf_fileident_bh fibh;
  537. struct fileIdentDesc cfi, *fi;
  538. int err;
  539. struct udf_inode_info *iinfo;
  540. if (!old_valid_dev(rdev))
  541. return -EINVAL;
  542. lock_kernel();
  543. err = -EIO;
  544. inode = udf_new_inode(dir, mode, &err);
  545. if (!inode)
  546. goto out;
  547. iinfo = UDF_I(inode);
  548. init_special_inode(inode, mode, rdev);
  549. fi = udf_add_entry(dir, dentry, &fibh, &cfi, &err);
  550. if (!fi) {
  551. inode->i_nlink--;
  552. mark_inode_dirty(inode);
  553. iput(inode);
  554. unlock_kernel();
  555. return err;
  556. }
  557. cfi.icb.extLength = cpu_to_le32(inode->i_sb->s_blocksize);
  558. cfi.icb.extLocation = cpu_to_lelb(iinfo->i_location);
  559. *(__le32 *)((struct allocDescImpUse *)cfi.icb.impUse)->impUse =
  560. cpu_to_le32(iinfo->i_unique & 0x00000000FFFFFFFFUL);
  561. udf_write_fi(dir, &cfi, fi, &fibh, NULL, NULL);
  562. if (UDF_I(dir)->i_alloc_type == ICBTAG_FLAG_AD_IN_ICB)
  563. mark_inode_dirty(dir);
  564. mark_inode_dirty(inode);
  565. if (fibh.sbh != fibh.ebh)
  566. brelse(fibh.ebh);
  567. brelse(fibh.sbh);
  568. d_instantiate(dentry, inode);
  569. err = 0;
  570. out:
  571. unlock_kernel();
  572. return err;
  573. }
  574. static int udf_mkdir(struct inode *dir, struct dentry *dentry, int mode)
  575. {
  576. struct inode *inode;
  577. struct udf_fileident_bh fibh;
  578. struct fileIdentDesc cfi, *fi;
  579. int err;
  580. struct udf_inode_info *dinfo = UDF_I(dir);
  581. struct udf_inode_info *iinfo;
  582. lock_kernel();
  583. err = -EMLINK;
  584. if (dir->i_nlink >= (256 << sizeof(dir->i_nlink)) - 1)
  585. goto out;
  586. err = -EIO;
  587. inode = udf_new_inode(dir, S_IFDIR | mode, &err);
  588. if (!inode)
  589. goto out;
  590. iinfo = UDF_I(inode);
  591. inode->i_op = &udf_dir_inode_operations;
  592. inode->i_fop = &udf_dir_operations;
  593. fi = udf_add_entry(inode, NULL, &fibh, &cfi, &err);
  594. if (!fi) {
  595. inode->i_nlink--;
  596. mark_inode_dirty(inode);
  597. iput(inode);
  598. goto out;
  599. }
  600. inode->i_nlink = 2;
  601. cfi.icb.extLength = cpu_to_le32(inode->i_sb->s_blocksize);
  602. cfi.icb.extLocation = cpu_to_lelb(dinfo->i_location);
  603. *(__le32 *)((struct allocDescImpUse *)cfi.icb.impUse)->impUse =
  604. cpu_to_le32(dinfo->i_unique & 0x00000000FFFFFFFFUL);
  605. cfi.fileCharacteristics =
  606. FID_FILE_CHAR_DIRECTORY | FID_FILE_CHAR_PARENT;
  607. udf_write_fi(inode, &cfi, fi, &fibh, NULL, NULL);
  608. brelse(fibh.sbh);
  609. mark_inode_dirty(inode);
  610. fi = udf_add_entry(dir, dentry, &fibh, &cfi, &err);
  611. if (!fi) {
  612. inode->i_nlink = 0;
  613. mark_inode_dirty(inode);
  614. iput(inode);
  615. goto out;
  616. }
  617. cfi.icb.extLength = cpu_to_le32(inode->i_sb->s_blocksize);
  618. cfi.icb.extLocation = cpu_to_lelb(iinfo->i_location);
  619. *(__le32 *)((struct allocDescImpUse *)cfi.icb.impUse)->impUse =
  620. cpu_to_le32(iinfo->i_unique & 0x00000000FFFFFFFFUL);
  621. cfi.fileCharacteristics |= FID_FILE_CHAR_DIRECTORY;
  622. udf_write_fi(dir, &cfi, fi, &fibh, NULL, NULL);
  623. inc_nlink(dir);
  624. mark_inode_dirty(dir);
  625. d_instantiate(dentry, inode);
  626. if (fibh.sbh != fibh.ebh)
  627. brelse(fibh.ebh);
  628. brelse(fibh.sbh);
  629. err = 0;
  630. out:
  631. unlock_kernel();
  632. return err;
  633. }
  634. static int empty_dir(struct inode *dir)
  635. {
  636. struct fileIdentDesc *fi, cfi;
  637. struct udf_fileident_bh fibh;
  638. loff_t f_pos;
  639. loff_t size = udf_ext0_offset(dir) + dir->i_size;
  640. int block;
  641. struct kernel_lb_addr eloc;
  642. uint32_t elen;
  643. sector_t offset;
  644. struct extent_position epos = {};
  645. struct udf_inode_info *dinfo = UDF_I(dir);
  646. f_pos = udf_ext0_offset(dir);
  647. fibh.soffset = fibh.eoffset = f_pos & (dir->i_sb->s_blocksize - 1);
  648. if (dinfo->i_alloc_type == ICBTAG_FLAG_AD_IN_ICB)
  649. fibh.sbh = fibh.ebh = NULL;
  650. else if (inode_bmap(dir, f_pos >> dir->i_sb->s_blocksize_bits,
  651. &epos, &eloc, &elen, &offset) ==
  652. (EXT_RECORDED_ALLOCATED >> 30)) {
  653. block = udf_get_lb_pblock(dir->i_sb, &eloc, offset);
  654. if ((++offset << dir->i_sb->s_blocksize_bits) < elen) {
  655. if (dinfo->i_alloc_type == ICBTAG_FLAG_AD_SHORT)
  656. epos.offset -= sizeof(struct short_ad);
  657. else if (dinfo->i_alloc_type == ICBTAG_FLAG_AD_LONG)
  658. epos.offset -= sizeof(struct long_ad);
  659. } else
  660. offset = 0;
  661. fibh.sbh = fibh.ebh = udf_tread(dir->i_sb, block);
  662. if (!fibh.sbh) {
  663. brelse(epos.bh);
  664. return 0;
  665. }
  666. } else {
  667. brelse(epos.bh);
  668. return 0;
  669. }
  670. while (f_pos < size) {
  671. fi = udf_fileident_read(dir, &f_pos, &fibh, &cfi, &epos, &eloc,
  672. &elen, &offset);
  673. if (!fi) {
  674. if (fibh.sbh != fibh.ebh)
  675. brelse(fibh.ebh);
  676. brelse(fibh.sbh);
  677. brelse(epos.bh);
  678. return 0;
  679. }
  680. if (cfi.lengthFileIdent &&
  681. (cfi.fileCharacteristics & FID_FILE_CHAR_DELETED) == 0) {
  682. if (fibh.sbh != fibh.ebh)
  683. brelse(fibh.ebh);
  684. brelse(fibh.sbh);
  685. brelse(epos.bh);
  686. return 0;
  687. }
  688. }
  689. if (fibh.sbh != fibh.ebh)
  690. brelse(fibh.ebh);
  691. brelse(fibh.sbh);
  692. brelse(epos.bh);
  693. return 1;
  694. }
  695. static int udf_rmdir(struct inode *dir, struct dentry *dentry)
  696. {
  697. int retval;
  698. struct inode *inode = dentry->d_inode;
  699. struct udf_fileident_bh fibh;
  700. struct fileIdentDesc *fi, cfi;
  701. struct kernel_lb_addr tloc;
  702. retval = -ENOENT;
  703. lock_kernel();
  704. fi = udf_find_entry(dir, &dentry->d_name, &fibh, &cfi);
  705. if (!fi)
  706. goto out;
  707. retval = -EIO;
  708. tloc = lelb_to_cpu(cfi.icb.extLocation);
  709. if (udf_get_lb_pblock(dir->i_sb, &tloc, 0) != inode->i_ino)
  710. goto end_rmdir;
  711. retval = -ENOTEMPTY;
  712. if (!empty_dir(inode))
  713. goto end_rmdir;
  714. retval = udf_delete_entry(dir, fi, &fibh, &cfi);
  715. if (retval)
  716. goto end_rmdir;
  717. if (inode->i_nlink != 2)
  718. udf_warning(inode->i_sb, "udf_rmdir",
  719. "empty directory has nlink != 2 (%d)",
  720. inode->i_nlink);
  721. clear_nlink(inode);
  722. inode->i_size = 0;
  723. inode_dec_link_count(dir);
  724. inode->i_ctime = dir->i_ctime = dir->i_mtime =
  725. current_fs_time(dir->i_sb);
  726. mark_inode_dirty(dir);
  727. end_rmdir:
  728. if (fibh.sbh != fibh.ebh)
  729. brelse(fibh.ebh);
  730. brelse(fibh.sbh);
  731. out:
  732. unlock_kernel();
  733. return retval;
  734. }
  735. static int udf_unlink(struct inode *dir, struct dentry *dentry)
  736. {
  737. int retval;
  738. struct inode *inode = dentry->d_inode;
  739. struct udf_fileident_bh fibh;
  740. struct fileIdentDesc *fi;
  741. struct fileIdentDesc cfi;
  742. struct kernel_lb_addr tloc;
  743. retval = -ENOENT;
  744. lock_kernel();
  745. fi = udf_find_entry(dir, &dentry->d_name, &fibh, &cfi);
  746. if (!fi)
  747. goto out;
  748. retval = -EIO;
  749. tloc = lelb_to_cpu(cfi.icb.extLocation);
  750. if (udf_get_lb_pblock(dir->i_sb, &tloc, 0) != inode->i_ino)
  751. goto end_unlink;
  752. if (!inode->i_nlink) {
  753. udf_debug("Deleting nonexistent file (%lu), %d\n",
  754. inode->i_ino, inode->i_nlink);
  755. inode->i_nlink = 1;
  756. }
  757. retval = udf_delete_entry(dir, fi, &fibh, &cfi);
  758. if (retval)
  759. goto end_unlink;
  760. dir->i_ctime = dir->i_mtime = current_fs_time(dir->i_sb);
  761. mark_inode_dirty(dir);
  762. inode_dec_link_count(inode);
  763. inode->i_ctime = dir->i_ctime;
  764. retval = 0;
  765. end_unlink:
  766. if (fibh.sbh != fibh.ebh)
  767. brelse(fibh.ebh);
  768. brelse(fibh.sbh);
  769. out:
  770. unlock_kernel();
  771. return retval;
  772. }
  773. static int udf_symlink(struct inode *dir, struct dentry *dentry,
  774. const char *symname)
  775. {
  776. struct inode *inode;
  777. struct pathComponent *pc;
  778. const char *compstart;
  779. struct udf_fileident_bh fibh;
  780. struct extent_position epos = {};
  781. int eoffset, elen = 0;
  782. struct fileIdentDesc *fi;
  783. struct fileIdentDesc cfi;
  784. uint8_t *ea;
  785. int err;
  786. int block;
  787. unsigned char *name = NULL;
  788. int namelen;
  789. struct buffer_head *bh;
  790. struct udf_inode_info *iinfo;
  791. lock_kernel();
  792. inode = udf_new_inode(dir, S_IFLNK | S_IRWXUGO, &err);
  793. if (!inode)
  794. goto out;
  795. name = kmalloc(UDF_NAME_LEN, GFP_NOFS);
  796. if (!name) {
  797. err = -ENOMEM;
  798. goto out_no_entry;
  799. }
  800. iinfo = UDF_I(inode);
  801. inode->i_data.a_ops = &udf_symlink_aops;
  802. inode->i_op = &udf_symlink_inode_operations;
  803. if (iinfo->i_alloc_type != ICBTAG_FLAG_AD_IN_ICB) {
  804. struct kernel_lb_addr eloc;
  805. uint32_t bsize;
  806. block = udf_new_block(inode->i_sb, inode,
  807. iinfo->i_location.partitionReferenceNum,
  808. iinfo->i_location.logicalBlockNum, &err);
  809. if (!block)
  810. goto out_no_entry;
  811. epos.block = iinfo->i_location;
  812. epos.offset = udf_file_entry_alloc_offset(inode);
  813. epos.bh = NULL;
  814. eloc.logicalBlockNum = block;
  815. eloc.partitionReferenceNum =
  816. iinfo->i_location.partitionReferenceNum;
  817. bsize = inode->i_sb->s_blocksize;
  818. iinfo->i_lenExtents = bsize;
  819. udf_add_aext(inode, &epos, &eloc, bsize, 0);
  820. brelse(epos.bh);
  821. block = udf_get_pblock(inode->i_sb, block,
  822. iinfo->i_location.partitionReferenceNum,
  823. 0);
  824. epos.bh = udf_tgetblk(inode->i_sb, block);
  825. lock_buffer(epos.bh);
  826. memset(epos.bh->b_data, 0x00, inode->i_sb->s_blocksize);
  827. set_buffer_uptodate(epos.bh);
  828. unlock_buffer(epos.bh);
  829. mark_buffer_dirty_inode(epos.bh, inode);
  830. ea = epos.bh->b_data + udf_ext0_offset(inode);
  831. } else
  832. ea = iinfo->i_ext.i_data + iinfo->i_lenEAttr;
  833. eoffset = inode->i_sb->s_blocksize - udf_ext0_offset(inode);
  834. pc = (struct pathComponent *)ea;
  835. if (*symname == '/') {
  836. do {
  837. symname++;
  838. } while (*symname == '/');
  839. pc->componentType = 1;
  840. pc->lengthComponentIdent = 0;
  841. pc->componentFileVersionNum = 0;
  842. elen += sizeof(struct pathComponent);
  843. }
  844. err = -ENAMETOOLONG;
  845. while (*symname) {
  846. if (elen + sizeof(struct pathComponent) > eoffset)
  847. goto out_no_entry;
  848. pc = (struct pathComponent *)(ea + elen);
  849. compstart = symname;
  850. do {
  851. symname++;
  852. } while (*symname && *symname != '/');
  853. pc->componentType = 5;
  854. pc->lengthComponentIdent = 0;
  855. pc->componentFileVersionNum = 0;
  856. if (compstart[0] == '.') {
  857. if ((symname - compstart) == 1)
  858. pc->componentType = 4;
  859. else if ((symname - compstart) == 2 &&
  860. compstart[1] == '.')
  861. pc->componentType = 3;
  862. }
  863. if (pc->componentType == 5) {
  864. namelen = udf_put_filename(inode->i_sb, compstart, name,
  865. symname - compstart);
  866. if (!namelen)
  867. goto out_no_entry;
  868. if (elen + sizeof(struct pathComponent) + namelen >
  869. eoffset)
  870. goto out_no_entry;
  871. else
  872. pc->lengthComponentIdent = namelen;
  873. memcpy(pc->componentIdent, name, namelen);
  874. }
  875. elen += sizeof(struct pathComponent) + pc->lengthComponentIdent;
  876. if (*symname) {
  877. do {
  878. symname++;
  879. } while (*symname == '/');
  880. }
  881. }
  882. brelse(epos.bh);
  883. inode->i_size = elen;
  884. if (iinfo->i_alloc_type == ICBTAG_FLAG_AD_IN_ICB)
  885. iinfo->i_lenAlloc = inode->i_size;
  886. else
  887. udf_truncate_tail_extent(inode);
  888. mark_inode_dirty(inode);
  889. fi = udf_add_entry(dir, dentry, &fibh, &cfi, &err);
  890. if (!fi)
  891. goto out_no_entry;
  892. cfi.icb.extLength = cpu_to_le32(inode->i_sb->s_blocksize);
  893. cfi.icb.extLocation = cpu_to_lelb(iinfo->i_location);
  894. bh = UDF_SB(inode->i_sb)->s_lvid_bh;
  895. if (bh) {
  896. struct logicalVolIntegrityDesc *lvid =
  897. (struct logicalVolIntegrityDesc *)bh->b_data;
  898. struct logicalVolHeaderDesc *lvhd;
  899. uint64_t uniqueID;
  900. lvhd = (struct logicalVolHeaderDesc *)
  901. lvid->logicalVolContentsUse;
  902. uniqueID = le64_to_cpu(lvhd->uniqueID);
  903. *(__le32 *)((struct allocDescImpUse *)cfi.icb.impUse)->impUse =
  904. cpu_to_le32(uniqueID & 0x00000000FFFFFFFFUL);
  905. if (!(++uniqueID & 0x00000000FFFFFFFFUL))
  906. uniqueID += 16;
  907. lvhd->uniqueID = cpu_to_le64(uniqueID);
  908. mark_buffer_dirty(bh);
  909. }
  910. udf_write_fi(dir, &cfi, fi, &fibh, NULL, NULL);
  911. if (UDF_I(dir)->i_alloc_type == ICBTAG_FLAG_AD_IN_ICB)
  912. mark_inode_dirty(dir);
  913. if (fibh.sbh != fibh.ebh)
  914. brelse(fibh.ebh);
  915. brelse(fibh.sbh);
  916. d_instantiate(dentry, inode);
  917. err = 0;
  918. out:
  919. kfree(name);
  920. unlock_kernel();
  921. return err;
  922. out_no_entry:
  923. inode_dec_link_count(inode);
  924. iput(inode);
  925. goto out;
  926. }
  927. static int udf_link(struct dentry *old_dentry, struct inode *dir,
  928. struct dentry *dentry)
  929. {
  930. struct inode *inode = old_dentry->d_inode;
  931. struct udf_fileident_bh fibh;
  932. struct fileIdentDesc cfi, *fi;
  933. int err;
  934. struct buffer_head *bh;
  935. lock_kernel();
  936. if (inode->i_nlink >= (256 << sizeof(inode->i_nlink)) - 1) {
  937. unlock_kernel();
  938. return -EMLINK;
  939. }
  940. fi = udf_add_entry(dir, dentry, &fibh, &cfi, &err);
  941. if (!fi) {
  942. unlock_kernel();
  943. return err;
  944. }
  945. cfi.icb.extLength = cpu_to_le32(inode->i_sb->s_blocksize);
  946. cfi.icb.extLocation = cpu_to_lelb(UDF_I(inode)->i_location);
  947. bh = UDF_SB(inode->i_sb)->s_lvid_bh;
  948. if (bh) {
  949. struct logicalVolIntegrityDesc *lvid =
  950. (struct logicalVolIntegrityDesc *)bh->b_data;
  951. struct logicalVolHeaderDesc *lvhd;
  952. uint64_t uniqueID;
  953. lvhd = (struct logicalVolHeaderDesc *)
  954. (lvid->logicalVolContentsUse);
  955. uniqueID = le64_to_cpu(lvhd->uniqueID);
  956. *(__le32 *)((struct allocDescImpUse *)cfi.icb.impUse)->impUse =
  957. cpu_to_le32(uniqueID & 0x00000000FFFFFFFFUL);
  958. if (!(++uniqueID & 0x00000000FFFFFFFFUL))
  959. uniqueID += 16;
  960. lvhd->uniqueID = cpu_to_le64(uniqueID);
  961. mark_buffer_dirty(bh);
  962. }
  963. udf_write_fi(dir, &cfi, fi, &fibh, NULL, NULL);
  964. if (UDF_I(dir)->i_alloc_type == ICBTAG_FLAG_AD_IN_ICB)
  965. mark_inode_dirty(dir);
  966. if (fibh.sbh != fibh.ebh)
  967. brelse(fibh.ebh);
  968. brelse(fibh.sbh);
  969. inc_nlink(inode);
  970. inode->i_ctime = current_fs_time(inode->i_sb);
  971. mark_inode_dirty(inode);
  972. atomic_inc(&inode->i_count);
  973. d_instantiate(dentry, inode);
  974. unlock_kernel();
  975. return 0;
  976. }
  977. /* Anybody can rename anything with this: the permission checks are left to the
  978. * higher-level routines.
  979. */
  980. static int udf_rename(struct inode *old_dir, struct dentry *old_dentry,
  981. struct inode *new_dir, struct dentry *new_dentry)
  982. {
  983. struct inode *old_inode = old_dentry->d_inode;
  984. struct inode *new_inode = new_dentry->d_inode;
  985. struct udf_fileident_bh ofibh, nfibh;
  986. struct fileIdentDesc *ofi = NULL, *nfi = NULL, *dir_fi = NULL;
  987. struct fileIdentDesc ocfi, ncfi;
  988. struct buffer_head *dir_bh = NULL;
  989. int retval = -ENOENT;
  990. struct kernel_lb_addr tloc;
  991. struct udf_inode_info *old_iinfo = UDF_I(old_inode);
  992. lock_kernel();
  993. ofi = udf_find_entry(old_dir, &old_dentry->d_name, &ofibh, &ocfi);
  994. if (ofi) {
  995. if (ofibh.sbh != ofibh.ebh)
  996. brelse(ofibh.ebh);
  997. brelse(ofibh.sbh);
  998. }
  999. tloc = lelb_to_cpu(ocfi.icb.extLocation);
  1000. if (!ofi || udf_get_lb_pblock(old_dir->i_sb, &tloc, 0)
  1001. != old_inode->i_ino)
  1002. goto end_rename;
  1003. nfi = udf_find_entry(new_dir, &new_dentry->d_name, &nfibh, &ncfi);
  1004. if (nfi) {
  1005. if (!new_inode) {
  1006. if (nfibh.sbh != nfibh.ebh)
  1007. brelse(nfibh.ebh);
  1008. brelse(nfibh.sbh);
  1009. nfi = NULL;
  1010. }
  1011. }
  1012. if (S_ISDIR(old_inode->i_mode)) {
  1013. int offset = udf_ext0_offset(old_inode);
  1014. if (new_inode) {
  1015. retval = -ENOTEMPTY;
  1016. if (!empty_dir(new_inode))
  1017. goto end_rename;
  1018. }
  1019. retval = -EIO;
  1020. if (old_iinfo->i_alloc_type == ICBTAG_FLAG_AD_IN_ICB) {
  1021. dir_fi = udf_get_fileident(
  1022. old_iinfo->i_ext.i_data -
  1023. (old_iinfo->i_efe ?
  1024. sizeof(struct extendedFileEntry) :
  1025. sizeof(struct fileEntry)),
  1026. old_inode->i_sb->s_blocksize, &offset);
  1027. } else {
  1028. dir_bh = udf_bread(old_inode, 0, 0, &retval);
  1029. if (!dir_bh)
  1030. goto end_rename;
  1031. dir_fi = udf_get_fileident(dir_bh->b_data,
  1032. old_inode->i_sb->s_blocksize, &offset);
  1033. }
  1034. if (!dir_fi)
  1035. goto end_rename;
  1036. tloc = lelb_to_cpu(dir_fi->icb.extLocation);
  1037. if (udf_get_lb_pblock(old_inode->i_sb, &tloc, 0) !=
  1038. old_dir->i_ino)
  1039. goto end_rename;
  1040. retval = -EMLINK;
  1041. if (!new_inode &&
  1042. new_dir->i_nlink >=
  1043. (256 << sizeof(new_dir->i_nlink)) - 1)
  1044. goto end_rename;
  1045. }
  1046. if (!nfi) {
  1047. nfi = udf_add_entry(new_dir, new_dentry, &nfibh, &ncfi,
  1048. &retval);
  1049. if (!nfi)
  1050. goto end_rename;
  1051. }
  1052. /*
  1053. * Like most other Unix systems, set the ctime for inodes on a
  1054. * rename.
  1055. */
  1056. old_inode->i_ctime = current_fs_time(old_inode->i_sb);
  1057. mark_inode_dirty(old_inode);
  1058. /*
  1059. * ok, that's it
  1060. */
  1061. ncfi.fileVersionNum = ocfi.fileVersionNum;
  1062. ncfi.fileCharacteristics = ocfi.fileCharacteristics;
  1063. memcpy(&(ncfi.icb), &(ocfi.icb), sizeof(struct long_ad));
  1064. udf_write_fi(new_dir, &ncfi, nfi, &nfibh, NULL, NULL);
  1065. /* The old fid may have moved - find it again */
  1066. ofi = udf_find_entry(old_dir, &old_dentry->d_name, &ofibh, &ocfi);
  1067. udf_delete_entry(old_dir, ofi, &ofibh, &ocfi);
  1068. if (new_inode) {
  1069. new_inode->i_ctime = current_fs_time(new_inode->i_sb);
  1070. inode_dec_link_count(new_inode);
  1071. }
  1072. old_dir->i_ctime = old_dir->i_mtime = current_fs_time(old_dir->i_sb);
  1073. mark_inode_dirty(old_dir);
  1074. if (dir_fi) {
  1075. dir_fi->icb.extLocation = cpu_to_lelb(UDF_I(new_dir)->i_location);
  1076. udf_update_tag((char *)dir_fi,
  1077. (sizeof(struct fileIdentDesc) +
  1078. le16_to_cpu(dir_fi->lengthOfImpUse) + 3) & ~3);
  1079. if (old_iinfo->i_alloc_type == ICBTAG_FLAG_AD_IN_ICB)
  1080. mark_inode_dirty(old_inode);
  1081. else
  1082. mark_buffer_dirty_inode(dir_bh, old_inode);
  1083. inode_dec_link_count(old_dir);
  1084. if (new_inode)
  1085. inode_dec_link_count(new_inode);
  1086. else {
  1087. inc_nlink(new_dir);
  1088. mark_inode_dirty(new_dir);
  1089. }
  1090. }
  1091. if (ofi) {
  1092. if (ofibh.sbh != ofibh.ebh)
  1093. brelse(ofibh.ebh);
  1094. brelse(ofibh.sbh);
  1095. }
  1096. retval = 0;
  1097. end_rename:
  1098. brelse(dir_bh);
  1099. if (nfi) {
  1100. if (nfibh.sbh != nfibh.ebh)
  1101. brelse(nfibh.ebh);
  1102. brelse(nfibh.sbh);
  1103. }
  1104. unlock_kernel();
  1105. return retval;
  1106. }
  1107. static struct dentry *udf_get_parent(struct dentry *child)
  1108. {
  1109. struct kernel_lb_addr tloc;
  1110. struct inode *inode = NULL;
  1111. struct qstr dotdot = {.name = "..", .len = 2};
  1112. struct fileIdentDesc cfi;
  1113. struct udf_fileident_bh fibh;
  1114. lock_kernel();
  1115. if (!udf_find_entry(child->d_inode, &dotdot, &fibh, &cfi))
  1116. goto out_unlock;
  1117. if (fibh.sbh != fibh.ebh)
  1118. brelse(fibh.ebh);
  1119. brelse(fibh.sbh);
  1120. tloc = lelb_to_cpu(cfi.icb.extLocation);
  1121. inode = udf_iget(child->d_inode->i_sb, &tloc);
  1122. if (!inode)
  1123. goto out_unlock;
  1124. unlock_kernel();
  1125. return d_obtain_alias(inode);
  1126. out_unlock:
  1127. unlock_kernel();
  1128. return ERR_PTR(-EACCES);
  1129. }
  1130. static struct dentry *udf_nfs_get_inode(struct super_block *sb, u32 block,
  1131. u16 partref, __u32 generation)
  1132. {
  1133. struct inode *inode;
  1134. struct kernel_lb_addr loc;
  1135. if (block == 0)
  1136. return ERR_PTR(-ESTALE);
  1137. loc.logicalBlockNum = block;
  1138. loc.partitionReferenceNum = partref;
  1139. inode = udf_iget(sb, &loc);
  1140. if (inode == NULL)
  1141. return ERR_PTR(-ENOMEM);
  1142. if (generation && inode->i_generation != generation) {
  1143. iput(inode);
  1144. return ERR_PTR(-ESTALE);
  1145. }
  1146. return d_obtain_alias(inode);
  1147. }
  1148. static struct dentry *udf_fh_to_dentry(struct super_block *sb,
  1149. struct fid *fid, int fh_len, int fh_type)
  1150. {
  1151. if ((fh_len != 3 && fh_len != 5) ||
  1152. (fh_type != FILEID_UDF_WITH_PARENT &&
  1153. fh_type != FILEID_UDF_WITHOUT_PARENT))
  1154. return NULL;
  1155. return udf_nfs_get_inode(sb, fid->udf.block, fid->udf.partref,
  1156. fid->udf.generation);
  1157. }
  1158. static struct dentry *udf_fh_to_parent(struct super_block *sb,
  1159. struct fid *fid, int fh_len, int fh_type)
  1160. {
  1161. if (fh_len != 5 || fh_type != FILEID_UDF_WITH_PARENT)
  1162. return NULL;
  1163. return udf_nfs_get_inode(sb, fid->udf.parent_block,
  1164. fid->udf.parent_partref,
  1165. fid->udf.parent_generation);
  1166. }
  1167. static int udf_encode_fh(struct dentry *de, __u32 *fh, int *lenp,
  1168. int connectable)
  1169. {
  1170. int len = *lenp;
  1171. struct inode *inode = de->d_inode;
  1172. struct kernel_lb_addr location = UDF_I(inode)->i_location;
  1173. struct fid *fid = (struct fid *)fh;
  1174. int type = FILEID_UDF_WITHOUT_PARENT;
  1175. if (len < 3 || (connectable && len < 5))
  1176. return 255;
  1177. *lenp = 3;
  1178. fid->udf.block = location.logicalBlockNum;
  1179. fid->udf.partref = location.partitionReferenceNum;
  1180. fid->udf.generation = inode->i_generation;
  1181. if (connectable && !S_ISDIR(inode->i_mode)) {
  1182. spin_lock(&de->d_lock);
  1183. inode = de->d_parent->d_inode;
  1184. location = UDF_I(inode)->i_location;
  1185. fid->udf.parent_block = location.logicalBlockNum;
  1186. fid->udf.parent_partref = location.partitionReferenceNum;
  1187. fid->udf.parent_generation = inode->i_generation;
  1188. spin_unlock(&de->d_lock);
  1189. *lenp = 5;
  1190. type = FILEID_UDF_WITH_PARENT;
  1191. }
  1192. return type;
  1193. }
  1194. const struct export_operations udf_export_ops = {
  1195. .encode_fh = udf_encode_fh,
  1196. .fh_to_dentry = udf_fh_to_dentry,
  1197. .fh_to_parent = udf_fh_to_parent,
  1198. .get_parent = udf_get_parent,
  1199. };
  1200. const struct inode_operations udf_dir_inode_operations = {
  1201. .lookup = udf_lookup,
  1202. .create = udf_create,
  1203. .link = udf_link,
  1204. .unlink = udf_unlink,
  1205. .symlink = udf_symlink,
  1206. .mkdir = udf_mkdir,
  1207. .rmdir = udf_rmdir,
  1208. .mknod = udf_mknod,
  1209. .rename = udf_rename,
  1210. };
  1211. const struct inode_operations udf_symlink_inode_operations = {
  1212. .readlink = generic_readlink,
  1213. .follow_link = page_follow_link_light,
  1214. .put_link = page_put_link,
  1215. };