xfs_vnodeops.c 116 KB

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  1. /*
  2. * Copyright (c) 2000-2006 Silicon Graphics, Inc.
  3. * All Rights Reserved.
  4. *
  5. * This program is free software; you can redistribute it and/or
  6. * modify it under the terms of the GNU General Public License as
  7. * published by the Free Software Foundation.
  8. *
  9. * This program is distributed in the hope that it would be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. * GNU General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU General Public License
  15. * along with this program; if not, write the Free Software Foundation,
  16. * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
  17. */
  18. #include "xfs.h"
  19. #include "xfs_fs.h"
  20. #include "xfs_types.h"
  21. #include "xfs_bit.h"
  22. #include "xfs_log.h"
  23. #include "xfs_inum.h"
  24. #include "xfs_trans.h"
  25. #include "xfs_sb.h"
  26. #include "xfs_ag.h"
  27. #include "xfs_dir2.h"
  28. #include "xfs_dmapi.h"
  29. #include "xfs_mount.h"
  30. #include "xfs_da_btree.h"
  31. #include "xfs_bmap_btree.h"
  32. #include "xfs_alloc_btree.h"
  33. #include "xfs_ialloc_btree.h"
  34. #include "xfs_dir2_sf.h"
  35. #include "xfs_attr_sf.h"
  36. #include "xfs_dinode.h"
  37. #include "xfs_inode.h"
  38. #include "xfs_inode_item.h"
  39. #include "xfs_itable.h"
  40. #include "xfs_btree.h"
  41. #include "xfs_ialloc.h"
  42. #include "xfs_alloc.h"
  43. #include "xfs_bmap.h"
  44. #include "xfs_attr.h"
  45. #include "xfs_rw.h"
  46. #include "xfs_error.h"
  47. #include "xfs_quota.h"
  48. #include "xfs_utils.h"
  49. #include "xfs_rtalloc.h"
  50. #include "xfs_refcache.h"
  51. #include "xfs_trans_space.h"
  52. #include "xfs_log_priv.h"
  53. #include "xfs_filestream.h"
  54. STATIC int
  55. xfs_open(
  56. bhv_desc_t *bdp,
  57. cred_t *credp)
  58. {
  59. int mode;
  60. bhv_vnode_t *vp = BHV_TO_VNODE(bdp);
  61. xfs_inode_t *ip = XFS_BHVTOI(bdp);
  62. if (XFS_FORCED_SHUTDOWN(ip->i_mount))
  63. return XFS_ERROR(EIO);
  64. /*
  65. * If it's a directory with any blocks, read-ahead block 0
  66. * as we're almost certain to have the next operation be a read there.
  67. */
  68. if (VN_ISDIR(vp) && ip->i_d.di_nextents > 0) {
  69. mode = xfs_ilock_map_shared(ip);
  70. if (ip->i_d.di_nextents > 0)
  71. (void)xfs_da_reada_buf(NULL, ip, 0, XFS_DATA_FORK);
  72. xfs_iunlock(ip, mode);
  73. }
  74. return 0;
  75. }
  76. /*
  77. * xfs_getattr
  78. */
  79. STATIC int
  80. xfs_getattr(
  81. bhv_desc_t *bdp,
  82. bhv_vattr_t *vap,
  83. int flags,
  84. cred_t *credp)
  85. {
  86. xfs_inode_t *ip;
  87. xfs_mount_t *mp;
  88. bhv_vnode_t *vp;
  89. vp = BHV_TO_VNODE(bdp);
  90. vn_trace_entry(vp, __FUNCTION__, (inst_t *)__return_address);
  91. ip = XFS_BHVTOI(bdp);
  92. mp = ip->i_mount;
  93. if (XFS_FORCED_SHUTDOWN(mp))
  94. return XFS_ERROR(EIO);
  95. if (!(flags & ATTR_LAZY))
  96. xfs_ilock(ip, XFS_ILOCK_SHARED);
  97. vap->va_size = XFS_ISIZE(ip);
  98. if (vap->va_mask == XFS_AT_SIZE)
  99. goto all_done;
  100. vap->va_nblocks =
  101. XFS_FSB_TO_BB(mp, ip->i_d.di_nblocks + ip->i_delayed_blks);
  102. vap->va_nodeid = ip->i_ino;
  103. #if XFS_BIG_INUMS
  104. vap->va_nodeid += mp->m_inoadd;
  105. #endif
  106. vap->va_nlink = ip->i_d.di_nlink;
  107. /*
  108. * Quick exit for non-stat callers
  109. */
  110. if ((vap->va_mask &
  111. ~(XFS_AT_SIZE|XFS_AT_FSID|XFS_AT_NODEID|
  112. XFS_AT_NLINK|XFS_AT_BLKSIZE)) == 0)
  113. goto all_done;
  114. /*
  115. * Copy from in-core inode.
  116. */
  117. vap->va_mode = ip->i_d.di_mode;
  118. vap->va_uid = ip->i_d.di_uid;
  119. vap->va_gid = ip->i_d.di_gid;
  120. vap->va_projid = ip->i_d.di_projid;
  121. /*
  122. * Check vnode type block/char vs. everything else.
  123. */
  124. switch (ip->i_d.di_mode & S_IFMT) {
  125. case S_IFBLK:
  126. case S_IFCHR:
  127. vap->va_rdev = ip->i_df.if_u2.if_rdev;
  128. vap->va_blocksize = BLKDEV_IOSIZE;
  129. break;
  130. default:
  131. vap->va_rdev = 0;
  132. if (!(ip->i_d.di_flags & XFS_DIFLAG_REALTIME)) {
  133. vap->va_blocksize = xfs_preferred_iosize(mp);
  134. } else {
  135. /*
  136. * If the file blocks are being allocated from a
  137. * realtime partition, then return the inode's
  138. * realtime extent size or the realtime volume's
  139. * extent size.
  140. */
  141. vap->va_blocksize =
  142. xfs_get_extsz_hint(ip) << mp->m_sb.sb_blocklog;
  143. }
  144. break;
  145. }
  146. vn_atime_to_timespec(vp, &vap->va_atime);
  147. vap->va_mtime.tv_sec = ip->i_d.di_mtime.t_sec;
  148. vap->va_mtime.tv_nsec = ip->i_d.di_mtime.t_nsec;
  149. vap->va_ctime.tv_sec = ip->i_d.di_ctime.t_sec;
  150. vap->va_ctime.tv_nsec = ip->i_d.di_ctime.t_nsec;
  151. /*
  152. * Exit for stat callers. See if any of the rest of the fields
  153. * to be filled in are needed.
  154. */
  155. if ((vap->va_mask &
  156. (XFS_AT_XFLAGS|XFS_AT_EXTSIZE|XFS_AT_NEXTENTS|XFS_AT_ANEXTENTS|
  157. XFS_AT_GENCOUNT|XFS_AT_VCODE)) == 0)
  158. goto all_done;
  159. /*
  160. * Convert di_flags to xflags.
  161. */
  162. vap->va_xflags = xfs_ip2xflags(ip);
  163. /*
  164. * Exit for inode revalidate. See if any of the rest of
  165. * the fields to be filled in are needed.
  166. */
  167. if ((vap->va_mask &
  168. (XFS_AT_EXTSIZE|XFS_AT_NEXTENTS|XFS_AT_ANEXTENTS|
  169. XFS_AT_GENCOUNT|XFS_AT_VCODE)) == 0)
  170. goto all_done;
  171. vap->va_extsize = ip->i_d.di_extsize << mp->m_sb.sb_blocklog;
  172. vap->va_nextents =
  173. (ip->i_df.if_flags & XFS_IFEXTENTS) ?
  174. ip->i_df.if_bytes / sizeof(xfs_bmbt_rec_t) :
  175. ip->i_d.di_nextents;
  176. if (ip->i_afp)
  177. vap->va_anextents =
  178. (ip->i_afp->if_flags & XFS_IFEXTENTS) ?
  179. ip->i_afp->if_bytes / sizeof(xfs_bmbt_rec_t) :
  180. ip->i_d.di_anextents;
  181. else
  182. vap->va_anextents = 0;
  183. vap->va_gen = ip->i_d.di_gen;
  184. all_done:
  185. if (!(flags & ATTR_LAZY))
  186. xfs_iunlock(ip, XFS_ILOCK_SHARED);
  187. return 0;
  188. }
  189. /*
  190. * xfs_setattr
  191. */
  192. int
  193. xfs_setattr(
  194. bhv_desc_t *bdp,
  195. bhv_vattr_t *vap,
  196. int flags,
  197. cred_t *credp)
  198. {
  199. xfs_inode_t *ip;
  200. xfs_trans_t *tp;
  201. xfs_mount_t *mp;
  202. int mask;
  203. int code;
  204. uint lock_flags;
  205. uint commit_flags=0;
  206. uid_t uid=0, iuid=0;
  207. gid_t gid=0, igid=0;
  208. int timeflags = 0;
  209. bhv_vnode_t *vp;
  210. xfs_prid_t projid=0, iprojid=0;
  211. int mandlock_before, mandlock_after;
  212. struct xfs_dquot *udqp, *gdqp, *olddquot1, *olddquot2;
  213. int file_owner;
  214. int need_iolock = 1;
  215. vp = BHV_TO_VNODE(bdp);
  216. vn_trace_entry(vp, __FUNCTION__, (inst_t *)__return_address);
  217. if (vp->v_vfsp->vfs_flag & VFS_RDONLY)
  218. return XFS_ERROR(EROFS);
  219. /*
  220. * Cannot set certain attributes.
  221. */
  222. mask = vap->va_mask;
  223. if (mask & XFS_AT_NOSET) {
  224. return XFS_ERROR(EINVAL);
  225. }
  226. ip = XFS_BHVTOI(bdp);
  227. mp = ip->i_mount;
  228. if (XFS_FORCED_SHUTDOWN(mp))
  229. return XFS_ERROR(EIO);
  230. /*
  231. * Timestamps do not need to be logged and hence do not
  232. * need to be done within a transaction.
  233. */
  234. if (mask & XFS_AT_UPDTIMES) {
  235. ASSERT((mask & ~XFS_AT_UPDTIMES) == 0);
  236. timeflags = ((mask & XFS_AT_UPDATIME) ? XFS_ICHGTIME_ACC : 0) |
  237. ((mask & XFS_AT_UPDCTIME) ? XFS_ICHGTIME_CHG : 0) |
  238. ((mask & XFS_AT_UPDMTIME) ? XFS_ICHGTIME_MOD : 0);
  239. xfs_ichgtime(ip, timeflags);
  240. return 0;
  241. }
  242. olddquot1 = olddquot2 = NULL;
  243. udqp = gdqp = NULL;
  244. /*
  245. * If disk quotas is on, we make sure that the dquots do exist on disk,
  246. * before we start any other transactions. Trying to do this later
  247. * is messy. We don't care to take a readlock to look at the ids
  248. * in inode here, because we can't hold it across the trans_reserve.
  249. * If the IDs do change before we take the ilock, we're covered
  250. * because the i_*dquot fields will get updated anyway.
  251. */
  252. if (XFS_IS_QUOTA_ON(mp) &&
  253. (mask & (XFS_AT_UID|XFS_AT_GID|XFS_AT_PROJID))) {
  254. uint qflags = 0;
  255. if ((mask & XFS_AT_UID) && XFS_IS_UQUOTA_ON(mp)) {
  256. uid = vap->va_uid;
  257. qflags |= XFS_QMOPT_UQUOTA;
  258. } else {
  259. uid = ip->i_d.di_uid;
  260. }
  261. if ((mask & XFS_AT_GID) && XFS_IS_GQUOTA_ON(mp)) {
  262. gid = vap->va_gid;
  263. qflags |= XFS_QMOPT_GQUOTA;
  264. } else {
  265. gid = ip->i_d.di_gid;
  266. }
  267. if ((mask & XFS_AT_PROJID) && XFS_IS_PQUOTA_ON(mp)) {
  268. projid = vap->va_projid;
  269. qflags |= XFS_QMOPT_PQUOTA;
  270. } else {
  271. projid = ip->i_d.di_projid;
  272. }
  273. /*
  274. * We take a reference when we initialize udqp and gdqp,
  275. * so it is important that we never blindly double trip on
  276. * the same variable. See xfs_create() for an example.
  277. */
  278. ASSERT(udqp == NULL);
  279. ASSERT(gdqp == NULL);
  280. code = XFS_QM_DQVOPALLOC(mp, ip, uid, gid, projid, qflags,
  281. &udqp, &gdqp);
  282. if (code)
  283. return code;
  284. }
  285. /*
  286. * For the other attributes, we acquire the inode lock and
  287. * first do an error checking pass.
  288. */
  289. tp = NULL;
  290. lock_flags = XFS_ILOCK_EXCL;
  291. if (flags & ATTR_NOLOCK)
  292. need_iolock = 0;
  293. if (!(mask & XFS_AT_SIZE)) {
  294. if ((mask != (XFS_AT_CTIME|XFS_AT_ATIME|XFS_AT_MTIME)) ||
  295. (mp->m_flags & XFS_MOUNT_WSYNC)) {
  296. tp = xfs_trans_alloc(mp, XFS_TRANS_SETATTR_NOT_SIZE);
  297. commit_flags = 0;
  298. if ((code = xfs_trans_reserve(tp, 0,
  299. XFS_ICHANGE_LOG_RES(mp), 0,
  300. 0, 0))) {
  301. lock_flags = 0;
  302. goto error_return;
  303. }
  304. }
  305. } else {
  306. if (DM_EVENT_ENABLED(ip, DM_EVENT_TRUNCATE) &&
  307. !(flags & ATTR_DMI)) {
  308. int dmflags = AT_DELAY_FLAG(flags) | DM_SEM_FLAG_WR;
  309. code = XFS_SEND_DATA(mp, DM_EVENT_TRUNCATE, vp,
  310. vap->va_size, 0, dmflags, NULL);
  311. if (code) {
  312. lock_flags = 0;
  313. goto error_return;
  314. }
  315. }
  316. if (need_iolock)
  317. lock_flags |= XFS_IOLOCK_EXCL;
  318. }
  319. xfs_ilock(ip, lock_flags);
  320. /* boolean: are we the file owner? */
  321. file_owner = (current_fsuid(credp) == ip->i_d.di_uid);
  322. /*
  323. * Change various properties of a file.
  324. * Only the owner or users with CAP_FOWNER
  325. * capability may do these things.
  326. */
  327. if (mask &
  328. (XFS_AT_MODE|XFS_AT_XFLAGS|XFS_AT_EXTSIZE|XFS_AT_UID|
  329. XFS_AT_GID|XFS_AT_PROJID)) {
  330. /*
  331. * CAP_FOWNER overrides the following restrictions:
  332. *
  333. * The user ID of the calling process must be equal
  334. * to the file owner ID, except in cases where the
  335. * CAP_FSETID capability is applicable.
  336. */
  337. if (!file_owner && !capable(CAP_FOWNER)) {
  338. code = XFS_ERROR(EPERM);
  339. goto error_return;
  340. }
  341. /*
  342. * CAP_FSETID overrides the following restrictions:
  343. *
  344. * The effective user ID of the calling process shall match
  345. * the file owner when setting the set-user-ID and
  346. * set-group-ID bits on that file.
  347. *
  348. * The effective group ID or one of the supplementary group
  349. * IDs of the calling process shall match the group owner of
  350. * the file when setting the set-group-ID bit on that file
  351. */
  352. if (mask & XFS_AT_MODE) {
  353. mode_t m = 0;
  354. if ((vap->va_mode & S_ISUID) && !file_owner)
  355. m |= S_ISUID;
  356. if ((vap->va_mode & S_ISGID) &&
  357. !in_group_p((gid_t)ip->i_d.di_gid))
  358. m |= S_ISGID;
  359. #if 0
  360. /* Linux allows this, Irix doesn't. */
  361. if ((vap->va_mode & S_ISVTX) && !VN_ISDIR(vp))
  362. m |= S_ISVTX;
  363. #endif
  364. if (m && !capable(CAP_FSETID))
  365. vap->va_mode &= ~m;
  366. }
  367. }
  368. /*
  369. * Change file ownership. Must be the owner or privileged.
  370. * If the system was configured with the "restricted_chown"
  371. * option, the owner is not permitted to give away the file,
  372. * and can change the group id only to a group of which he
  373. * or she is a member.
  374. */
  375. if (mask & (XFS_AT_UID|XFS_AT_GID|XFS_AT_PROJID)) {
  376. /*
  377. * These IDs could have changed since we last looked at them.
  378. * But, we're assured that if the ownership did change
  379. * while we didn't have the inode locked, inode's dquot(s)
  380. * would have changed also.
  381. */
  382. iuid = ip->i_d.di_uid;
  383. iprojid = ip->i_d.di_projid;
  384. igid = ip->i_d.di_gid;
  385. gid = (mask & XFS_AT_GID) ? vap->va_gid : igid;
  386. uid = (mask & XFS_AT_UID) ? vap->va_uid : iuid;
  387. projid = (mask & XFS_AT_PROJID) ? (xfs_prid_t)vap->va_projid :
  388. iprojid;
  389. /*
  390. * CAP_CHOWN overrides the following restrictions:
  391. *
  392. * If _POSIX_CHOWN_RESTRICTED is defined, this capability
  393. * shall override the restriction that a process cannot
  394. * change the user ID of a file it owns and the restriction
  395. * that the group ID supplied to the chown() function
  396. * shall be equal to either the group ID or one of the
  397. * supplementary group IDs of the calling process.
  398. */
  399. if (restricted_chown &&
  400. (iuid != uid || (igid != gid &&
  401. !in_group_p((gid_t)gid))) &&
  402. !capable(CAP_CHOWN)) {
  403. code = XFS_ERROR(EPERM);
  404. goto error_return;
  405. }
  406. /*
  407. * Do a quota reservation only if uid/projid/gid is actually
  408. * going to change.
  409. */
  410. if ((XFS_IS_UQUOTA_ON(mp) && iuid != uid) ||
  411. (XFS_IS_PQUOTA_ON(mp) && iprojid != projid) ||
  412. (XFS_IS_GQUOTA_ON(mp) && igid != gid)) {
  413. ASSERT(tp);
  414. code = XFS_QM_DQVOPCHOWNRESV(mp, tp, ip, udqp, gdqp,
  415. capable(CAP_FOWNER) ?
  416. XFS_QMOPT_FORCE_RES : 0);
  417. if (code) /* out of quota */
  418. goto error_return;
  419. }
  420. }
  421. /*
  422. * Truncate file. Must have write permission and not be a directory.
  423. */
  424. if (mask & XFS_AT_SIZE) {
  425. /* Short circuit the truncate case for zero length files */
  426. if ((vap->va_size == 0) &&
  427. (ip->i_size == 0) && (ip->i_d.di_nextents == 0)) {
  428. xfs_iunlock(ip, XFS_ILOCK_EXCL);
  429. lock_flags &= ~XFS_ILOCK_EXCL;
  430. if (mask & XFS_AT_CTIME)
  431. xfs_ichgtime(ip, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
  432. code = 0;
  433. goto error_return;
  434. }
  435. if (VN_ISDIR(vp)) {
  436. code = XFS_ERROR(EISDIR);
  437. goto error_return;
  438. } else if (!VN_ISREG(vp)) {
  439. code = XFS_ERROR(EINVAL);
  440. goto error_return;
  441. }
  442. /*
  443. * Make sure that the dquots are attached to the inode.
  444. */
  445. if ((code = XFS_QM_DQATTACH(mp, ip, XFS_QMOPT_ILOCKED)))
  446. goto error_return;
  447. }
  448. /*
  449. * Change file access or modified times.
  450. */
  451. if (mask & (XFS_AT_ATIME|XFS_AT_MTIME)) {
  452. if (!file_owner) {
  453. if ((flags & ATTR_UTIME) &&
  454. !capable(CAP_FOWNER)) {
  455. code = XFS_ERROR(EPERM);
  456. goto error_return;
  457. }
  458. }
  459. }
  460. /*
  461. * Change extent size or realtime flag.
  462. */
  463. if (mask & (XFS_AT_EXTSIZE|XFS_AT_XFLAGS)) {
  464. /*
  465. * Can't change extent size if any extents are allocated.
  466. */
  467. if (ip->i_d.di_nextents && (mask & XFS_AT_EXTSIZE) &&
  468. ((ip->i_d.di_extsize << mp->m_sb.sb_blocklog) !=
  469. vap->va_extsize) ) {
  470. code = XFS_ERROR(EINVAL); /* EFBIG? */
  471. goto error_return;
  472. }
  473. /*
  474. * Can't change realtime flag if any extents are allocated.
  475. */
  476. if ((ip->i_d.di_nextents || ip->i_delayed_blks) &&
  477. (mask & XFS_AT_XFLAGS) &&
  478. (ip->i_d.di_flags & XFS_DIFLAG_REALTIME) !=
  479. (vap->va_xflags & XFS_XFLAG_REALTIME)) {
  480. code = XFS_ERROR(EINVAL); /* EFBIG? */
  481. goto error_return;
  482. }
  483. /*
  484. * Extent size must be a multiple of the appropriate block
  485. * size, if set at all.
  486. */
  487. if ((mask & XFS_AT_EXTSIZE) && vap->va_extsize != 0) {
  488. xfs_extlen_t size;
  489. if ((ip->i_d.di_flags & XFS_DIFLAG_REALTIME) ||
  490. ((mask & XFS_AT_XFLAGS) &&
  491. (vap->va_xflags & XFS_XFLAG_REALTIME))) {
  492. size = mp->m_sb.sb_rextsize <<
  493. mp->m_sb.sb_blocklog;
  494. } else {
  495. size = mp->m_sb.sb_blocksize;
  496. }
  497. if (vap->va_extsize % size) {
  498. code = XFS_ERROR(EINVAL);
  499. goto error_return;
  500. }
  501. }
  502. /*
  503. * If realtime flag is set then must have realtime data.
  504. */
  505. if ((mask & XFS_AT_XFLAGS) &&
  506. (vap->va_xflags & XFS_XFLAG_REALTIME)) {
  507. if ((mp->m_sb.sb_rblocks == 0) ||
  508. (mp->m_sb.sb_rextsize == 0) ||
  509. (ip->i_d.di_extsize % mp->m_sb.sb_rextsize)) {
  510. code = XFS_ERROR(EINVAL);
  511. goto error_return;
  512. }
  513. }
  514. /*
  515. * Can't modify an immutable/append-only file unless
  516. * we have appropriate permission.
  517. */
  518. if ((mask & XFS_AT_XFLAGS) &&
  519. (ip->i_d.di_flags &
  520. (XFS_DIFLAG_IMMUTABLE|XFS_DIFLAG_APPEND) ||
  521. (vap->va_xflags &
  522. (XFS_XFLAG_IMMUTABLE | XFS_XFLAG_APPEND))) &&
  523. !capable(CAP_LINUX_IMMUTABLE)) {
  524. code = XFS_ERROR(EPERM);
  525. goto error_return;
  526. }
  527. }
  528. /*
  529. * Now we can make the changes. Before we join the inode
  530. * to the transaction, if XFS_AT_SIZE is set then take care of
  531. * the part of the truncation that must be done without the
  532. * inode lock. This needs to be done before joining the inode
  533. * to the transaction, because the inode cannot be unlocked
  534. * once it is a part of the transaction.
  535. */
  536. if (mask & XFS_AT_SIZE) {
  537. code = 0;
  538. if ((vap->va_size > ip->i_size) &&
  539. (flags & ATTR_NOSIZETOK) == 0) {
  540. code = xfs_igrow_start(ip, vap->va_size, credp);
  541. }
  542. xfs_iunlock(ip, XFS_ILOCK_EXCL);
  543. /*
  544. * We are going to log the inode size change in this
  545. * transaction so any previous writes that are beyond the on
  546. * disk EOF and the new EOF that have not been written out need
  547. * to be written here. If we do not write the data out, we
  548. * expose ourselves to the null files problem.
  549. *
  550. * Only flush from the on disk size to the smaller of the in
  551. * memory file size or the new size as that's the range we
  552. * really care about here and prevents waiting for other data
  553. * not within the range we care about here.
  554. */
  555. if (!code &&
  556. (ip->i_size != ip->i_d.di_size) &&
  557. (vap->va_size > ip->i_d.di_size)) {
  558. code = bhv_vop_flush_pages(XFS_ITOV(ip),
  559. ip->i_d.di_size, vap->va_size,
  560. XFS_B_ASYNC, FI_NONE);
  561. }
  562. /* wait for all I/O to complete */
  563. vn_iowait(vp);
  564. if (!code)
  565. code = xfs_itruncate_data(ip, vap->va_size);
  566. if (code) {
  567. ASSERT(tp == NULL);
  568. lock_flags &= ~XFS_ILOCK_EXCL;
  569. ASSERT(lock_flags == XFS_IOLOCK_EXCL);
  570. goto error_return;
  571. }
  572. tp = xfs_trans_alloc(mp, XFS_TRANS_SETATTR_SIZE);
  573. if ((code = xfs_trans_reserve(tp, 0,
  574. XFS_ITRUNCATE_LOG_RES(mp), 0,
  575. XFS_TRANS_PERM_LOG_RES,
  576. XFS_ITRUNCATE_LOG_COUNT))) {
  577. xfs_trans_cancel(tp, 0);
  578. if (need_iolock)
  579. xfs_iunlock(ip, XFS_IOLOCK_EXCL);
  580. return code;
  581. }
  582. commit_flags = XFS_TRANS_RELEASE_LOG_RES;
  583. xfs_ilock(ip, XFS_ILOCK_EXCL);
  584. }
  585. if (tp) {
  586. xfs_trans_ijoin(tp, ip, lock_flags);
  587. xfs_trans_ihold(tp, ip);
  588. }
  589. /* determine whether mandatory locking mode changes */
  590. mandlock_before = MANDLOCK(vp, ip->i_d.di_mode);
  591. /*
  592. * Truncate file. Must have write permission and not be a directory.
  593. */
  594. if (mask & XFS_AT_SIZE) {
  595. if (vap->va_size > ip->i_size) {
  596. xfs_igrow_finish(tp, ip, vap->va_size,
  597. !(flags & ATTR_DMI));
  598. } else if ((vap->va_size <= ip->i_size) ||
  599. ((vap->va_size == 0) && ip->i_d.di_nextents)) {
  600. /*
  601. * signal a sync transaction unless
  602. * we're truncating an already unlinked
  603. * file on a wsync filesystem
  604. */
  605. code = xfs_itruncate_finish(&tp, ip,
  606. (xfs_fsize_t)vap->va_size,
  607. XFS_DATA_FORK,
  608. ((ip->i_d.di_nlink != 0 ||
  609. !(mp->m_flags & XFS_MOUNT_WSYNC))
  610. ? 1 : 0));
  611. if (code)
  612. goto abort_return;
  613. /*
  614. * Truncated "down", so we're removing references
  615. * to old data here - if we now delay flushing for
  616. * a long time, we expose ourselves unduly to the
  617. * notorious NULL files problem. So, we mark this
  618. * vnode and flush it when the file is closed, and
  619. * do not wait the usual (long) time for writeout.
  620. */
  621. VTRUNCATE(vp);
  622. }
  623. /*
  624. * Have to do this even if the file's size doesn't change.
  625. */
  626. timeflags |= XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG;
  627. }
  628. /*
  629. * Change file access modes.
  630. */
  631. if (mask & XFS_AT_MODE) {
  632. ip->i_d.di_mode &= S_IFMT;
  633. ip->i_d.di_mode |= vap->va_mode & ~S_IFMT;
  634. xfs_trans_log_inode (tp, ip, XFS_ILOG_CORE);
  635. timeflags |= XFS_ICHGTIME_CHG;
  636. }
  637. /*
  638. * Change file ownership. Must be the owner or privileged.
  639. * If the system was configured with the "restricted_chown"
  640. * option, the owner is not permitted to give away the file,
  641. * and can change the group id only to a group of which he
  642. * or she is a member.
  643. */
  644. if (mask & (XFS_AT_UID|XFS_AT_GID|XFS_AT_PROJID)) {
  645. /*
  646. * CAP_FSETID overrides the following restrictions:
  647. *
  648. * The set-user-ID and set-group-ID bits of a file will be
  649. * cleared upon successful return from chown()
  650. */
  651. if ((ip->i_d.di_mode & (S_ISUID|S_ISGID)) &&
  652. !capable(CAP_FSETID)) {
  653. ip->i_d.di_mode &= ~(S_ISUID|S_ISGID);
  654. }
  655. /*
  656. * Change the ownerships and register quota modifications
  657. * in the transaction.
  658. */
  659. if (iuid != uid) {
  660. if (XFS_IS_UQUOTA_ON(mp)) {
  661. ASSERT(mask & XFS_AT_UID);
  662. ASSERT(udqp);
  663. olddquot1 = XFS_QM_DQVOPCHOWN(mp, tp, ip,
  664. &ip->i_udquot, udqp);
  665. }
  666. ip->i_d.di_uid = uid;
  667. }
  668. if (igid != gid) {
  669. if (XFS_IS_GQUOTA_ON(mp)) {
  670. ASSERT(!XFS_IS_PQUOTA_ON(mp));
  671. ASSERT(mask & XFS_AT_GID);
  672. ASSERT(gdqp);
  673. olddquot2 = XFS_QM_DQVOPCHOWN(mp, tp, ip,
  674. &ip->i_gdquot, gdqp);
  675. }
  676. ip->i_d.di_gid = gid;
  677. }
  678. if (iprojid != projid) {
  679. if (XFS_IS_PQUOTA_ON(mp)) {
  680. ASSERT(!XFS_IS_GQUOTA_ON(mp));
  681. ASSERT(mask & XFS_AT_PROJID);
  682. ASSERT(gdqp);
  683. olddquot2 = XFS_QM_DQVOPCHOWN(mp, tp, ip,
  684. &ip->i_gdquot, gdqp);
  685. }
  686. ip->i_d.di_projid = projid;
  687. /*
  688. * We may have to rev the inode as well as
  689. * the superblock version number since projids didn't
  690. * exist before DINODE_VERSION_2 and SB_VERSION_NLINK.
  691. */
  692. if (ip->i_d.di_version == XFS_DINODE_VERSION_1)
  693. xfs_bump_ino_vers2(tp, ip);
  694. }
  695. xfs_trans_log_inode (tp, ip, XFS_ILOG_CORE);
  696. timeflags |= XFS_ICHGTIME_CHG;
  697. }
  698. /*
  699. * Change file access or modified times.
  700. */
  701. if (mask & (XFS_AT_ATIME|XFS_AT_MTIME)) {
  702. if (mask & XFS_AT_ATIME) {
  703. ip->i_d.di_atime.t_sec = vap->va_atime.tv_sec;
  704. ip->i_d.di_atime.t_nsec = vap->va_atime.tv_nsec;
  705. ip->i_update_core = 1;
  706. timeflags &= ~XFS_ICHGTIME_ACC;
  707. }
  708. if (mask & XFS_AT_MTIME) {
  709. ip->i_d.di_mtime.t_sec = vap->va_mtime.tv_sec;
  710. ip->i_d.di_mtime.t_nsec = vap->va_mtime.tv_nsec;
  711. timeflags &= ~XFS_ICHGTIME_MOD;
  712. timeflags |= XFS_ICHGTIME_CHG;
  713. }
  714. if (tp && (flags & ATTR_UTIME))
  715. xfs_trans_log_inode (tp, ip, XFS_ILOG_CORE);
  716. }
  717. /*
  718. * Change XFS-added attributes.
  719. */
  720. if (mask & (XFS_AT_EXTSIZE|XFS_AT_XFLAGS)) {
  721. if (mask & XFS_AT_EXTSIZE) {
  722. /*
  723. * Converting bytes to fs blocks.
  724. */
  725. ip->i_d.di_extsize = vap->va_extsize >>
  726. mp->m_sb.sb_blocklog;
  727. }
  728. if (mask & XFS_AT_XFLAGS) {
  729. uint di_flags;
  730. /* can't set PREALLOC this way, just preserve it */
  731. di_flags = (ip->i_d.di_flags & XFS_DIFLAG_PREALLOC);
  732. if (vap->va_xflags & XFS_XFLAG_IMMUTABLE)
  733. di_flags |= XFS_DIFLAG_IMMUTABLE;
  734. if (vap->va_xflags & XFS_XFLAG_APPEND)
  735. di_flags |= XFS_DIFLAG_APPEND;
  736. if (vap->va_xflags & XFS_XFLAG_SYNC)
  737. di_flags |= XFS_DIFLAG_SYNC;
  738. if (vap->va_xflags & XFS_XFLAG_NOATIME)
  739. di_flags |= XFS_DIFLAG_NOATIME;
  740. if (vap->va_xflags & XFS_XFLAG_NODUMP)
  741. di_flags |= XFS_DIFLAG_NODUMP;
  742. if (vap->va_xflags & XFS_XFLAG_PROJINHERIT)
  743. di_flags |= XFS_DIFLAG_PROJINHERIT;
  744. if (vap->va_xflags & XFS_XFLAG_NODEFRAG)
  745. di_flags |= XFS_DIFLAG_NODEFRAG;
  746. if (vap->va_xflags & XFS_XFLAG_FILESTREAM)
  747. di_flags |= XFS_DIFLAG_FILESTREAM;
  748. if ((ip->i_d.di_mode & S_IFMT) == S_IFDIR) {
  749. if (vap->va_xflags & XFS_XFLAG_RTINHERIT)
  750. di_flags |= XFS_DIFLAG_RTINHERIT;
  751. if (vap->va_xflags & XFS_XFLAG_NOSYMLINKS)
  752. di_flags |= XFS_DIFLAG_NOSYMLINKS;
  753. if (vap->va_xflags & XFS_XFLAG_EXTSZINHERIT)
  754. di_flags |= XFS_DIFLAG_EXTSZINHERIT;
  755. } else if ((ip->i_d.di_mode & S_IFMT) == S_IFREG) {
  756. if (vap->va_xflags & XFS_XFLAG_REALTIME) {
  757. di_flags |= XFS_DIFLAG_REALTIME;
  758. ip->i_iocore.io_flags |= XFS_IOCORE_RT;
  759. } else {
  760. ip->i_iocore.io_flags &= ~XFS_IOCORE_RT;
  761. }
  762. if (vap->va_xflags & XFS_XFLAG_EXTSIZE)
  763. di_flags |= XFS_DIFLAG_EXTSIZE;
  764. }
  765. ip->i_d.di_flags = di_flags;
  766. }
  767. xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
  768. timeflags |= XFS_ICHGTIME_CHG;
  769. }
  770. /*
  771. * Change file inode change time only if XFS_AT_CTIME set
  772. * AND we have been called by a DMI function.
  773. */
  774. if ( (flags & ATTR_DMI) && (mask & XFS_AT_CTIME) ) {
  775. ip->i_d.di_ctime.t_sec = vap->va_ctime.tv_sec;
  776. ip->i_d.di_ctime.t_nsec = vap->va_ctime.tv_nsec;
  777. ip->i_update_core = 1;
  778. timeflags &= ~XFS_ICHGTIME_CHG;
  779. }
  780. /*
  781. * Send out timestamp changes that need to be set to the
  782. * current time. Not done when called by a DMI function.
  783. */
  784. if (timeflags && !(flags & ATTR_DMI))
  785. xfs_ichgtime(ip, timeflags);
  786. XFS_STATS_INC(xs_ig_attrchg);
  787. /*
  788. * If this is a synchronous mount, make sure that the
  789. * transaction goes to disk before returning to the user.
  790. * This is slightly sub-optimal in that truncates require
  791. * two sync transactions instead of one for wsync filesystems.
  792. * One for the truncate and one for the timestamps since we
  793. * don't want to change the timestamps unless we're sure the
  794. * truncate worked. Truncates are less than 1% of the laddis
  795. * mix so this probably isn't worth the trouble to optimize.
  796. */
  797. code = 0;
  798. if (tp) {
  799. if (mp->m_flags & XFS_MOUNT_WSYNC)
  800. xfs_trans_set_sync(tp);
  801. code = xfs_trans_commit(tp, commit_flags);
  802. }
  803. /*
  804. * If the (regular) file's mandatory locking mode changed, then
  805. * notify the vnode. We do this under the inode lock to prevent
  806. * racing calls to vop_vnode_change.
  807. */
  808. mandlock_after = MANDLOCK(vp, ip->i_d.di_mode);
  809. if (mandlock_before != mandlock_after) {
  810. bhv_vop_vnode_change(vp, VCHANGE_FLAGS_ENF_LOCKING,
  811. mandlock_after);
  812. }
  813. xfs_iunlock(ip, lock_flags);
  814. /*
  815. * Release any dquot(s) the inode had kept before chown.
  816. */
  817. XFS_QM_DQRELE(mp, olddquot1);
  818. XFS_QM_DQRELE(mp, olddquot2);
  819. XFS_QM_DQRELE(mp, udqp);
  820. XFS_QM_DQRELE(mp, gdqp);
  821. if (code) {
  822. return code;
  823. }
  824. if (DM_EVENT_ENABLED(ip, DM_EVENT_ATTRIBUTE) &&
  825. !(flags & ATTR_DMI)) {
  826. (void) XFS_SEND_NAMESP(mp, DM_EVENT_ATTRIBUTE, vp, DM_RIGHT_NULL,
  827. NULL, DM_RIGHT_NULL, NULL, NULL,
  828. 0, 0, AT_DELAY_FLAG(flags));
  829. }
  830. return 0;
  831. abort_return:
  832. commit_flags |= XFS_TRANS_ABORT;
  833. /* FALLTHROUGH */
  834. error_return:
  835. XFS_QM_DQRELE(mp, udqp);
  836. XFS_QM_DQRELE(mp, gdqp);
  837. if (tp) {
  838. xfs_trans_cancel(tp, commit_flags);
  839. }
  840. if (lock_flags != 0) {
  841. xfs_iunlock(ip, lock_flags);
  842. }
  843. return code;
  844. }
  845. /*
  846. * xfs_access
  847. * Null conversion from vnode mode bits to inode mode bits, as in efs.
  848. */
  849. STATIC int
  850. xfs_access(
  851. bhv_desc_t *bdp,
  852. int mode,
  853. cred_t *credp)
  854. {
  855. xfs_inode_t *ip;
  856. int error;
  857. vn_trace_entry(BHV_TO_VNODE(bdp), __FUNCTION__,
  858. (inst_t *)__return_address);
  859. ip = XFS_BHVTOI(bdp);
  860. xfs_ilock(ip, XFS_ILOCK_SHARED);
  861. error = xfs_iaccess(ip, mode, credp);
  862. xfs_iunlock(ip, XFS_ILOCK_SHARED);
  863. return error;
  864. }
  865. /*
  866. * The maximum pathlen is 1024 bytes. Since the minimum file system
  867. * blocksize is 512 bytes, we can get a max of 2 extents back from
  868. * bmapi.
  869. */
  870. #define SYMLINK_MAPS 2
  871. STATIC int
  872. xfs_readlink_bmap(
  873. xfs_inode_t *ip,
  874. char *link)
  875. {
  876. xfs_mount_t *mp = ip->i_mount;
  877. int pathlen = ip->i_d.di_size;
  878. int nmaps = SYMLINK_MAPS;
  879. xfs_bmbt_irec_t mval[SYMLINK_MAPS];
  880. xfs_daddr_t d;
  881. int byte_cnt;
  882. int n;
  883. xfs_buf_t *bp;
  884. int error = 0;
  885. error = xfs_bmapi(NULL, ip, 0, XFS_B_TO_FSB(mp, pathlen), 0, NULL, 0,
  886. mval, &nmaps, NULL, NULL);
  887. if (error)
  888. goto out;
  889. for (n = 0; n < nmaps; n++) {
  890. d = XFS_FSB_TO_DADDR(mp, mval[n].br_startblock);
  891. byte_cnt = XFS_FSB_TO_B(mp, mval[n].br_blockcount);
  892. bp = xfs_buf_read(mp->m_ddev_targp, d, BTOBB(byte_cnt), 0);
  893. error = XFS_BUF_GETERROR(bp);
  894. if (error) {
  895. xfs_ioerror_alert("xfs_readlink",
  896. ip->i_mount, bp, XFS_BUF_ADDR(bp));
  897. xfs_buf_relse(bp);
  898. goto out;
  899. }
  900. if (pathlen < byte_cnt)
  901. byte_cnt = pathlen;
  902. pathlen -= byte_cnt;
  903. memcpy(link, XFS_BUF_PTR(bp), byte_cnt);
  904. xfs_buf_relse(bp);
  905. }
  906. link[ip->i_d.di_size] = '\0';
  907. error = 0;
  908. out:
  909. return error;
  910. }
  911. /*
  912. * xfs_readlink
  913. *
  914. */
  915. STATIC int
  916. xfs_readlink(
  917. bhv_desc_t *bdp,
  918. char *link)
  919. {
  920. xfs_inode_t *ip = XFS_BHVTOI(bdp);
  921. xfs_mount_t *mp = ip->i_mount;
  922. int pathlen;
  923. int error = 0;
  924. vn_trace_entry(XFS_ITOV(ip), __FUNCTION__, (inst_t *)__return_address);
  925. if (XFS_FORCED_SHUTDOWN(mp))
  926. return XFS_ERROR(EIO);
  927. xfs_ilock(ip, XFS_ILOCK_SHARED);
  928. ASSERT((ip->i_d.di_mode & S_IFMT) == S_IFLNK);
  929. ASSERT(ip->i_d.di_size <= MAXPATHLEN);
  930. pathlen = ip->i_d.di_size;
  931. if (!pathlen)
  932. goto out;
  933. if (ip->i_df.if_flags & XFS_IFINLINE) {
  934. memcpy(link, ip->i_df.if_u1.if_data, pathlen);
  935. link[pathlen] = '\0';
  936. } else {
  937. error = xfs_readlink_bmap(ip, link);
  938. }
  939. out:
  940. xfs_iunlock(ip, XFS_ILOCK_SHARED);
  941. return error;
  942. }
  943. /*
  944. * xfs_fsync
  945. *
  946. * This is called to sync the inode and its data out to disk.
  947. * We need to hold the I/O lock while flushing the data, and
  948. * the inode lock while flushing the inode. The inode lock CANNOT
  949. * be held while flushing the data, so acquire after we're done
  950. * with that.
  951. */
  952. STATIC int
  953. xfs_fsync(
  954. bhv_desc_t *bdp,
  955. int flag,
  956. cred_t *credp,
  957. xfs_off_t start,
  958. xfs_off_t stop)
  959. {
  960. xfs_inode_t *ip;
  961. xfs_trans_t *tp;
  962. int error;
  963. int log_flushed = 0, changed = 1;
  964. vn_trace_entry(BHV_TO_VNODE(bdp),
  965. __FUNCTION__, (inst_t *)__return_address);
  966. ip = XFS_BHVTOI(bdp);
  967. ASSERT(start >= 0 && stop >= -1);
  968. if (XFS_FORCED_SHUTDOWN(ip->i_mount))
  969. return XFS_ERROR(EIO);
  970. if (flag & FSYNC_DATA)
  971. filemap_fdatawait(vn_to_inode(XFS_ITOV(ip))->i_mapping);
  972. /*
  973. * We always need to make sure that the required inode state
  974. * is safe on disk. The vnode might be clean but because
  975. * of committed transactions that haven't hit the disk yet.
  976. * Likewise, there could be unflushed non-transactional
  977. * changes to the inode core that have to go to disk.
  978. *
  979. * The following code depends on one assumption: that
  980. * any transaction that changes an inode logs the core
  981. * because it has to change some field in the inode core
  982. * (typically nextents or nblocks). That assumption
  983. * implies that any transactions against an inode will
  984. * catch any non-transactional updates. If inode-altering
  985. * transactions exist that violate this assumption, the
  986. * code breaks. Right now, it figures that if the involved
  987. * update_* field is clear and the inode is unpinned, the
  988. * inode is clean. Either it's been flushed or it's been
  989. * committed and the commit has hit the disk unpinning the inode.
  990. * (Note that xfs_inode_item_format() called at commit clears
  991. * the update_* fields.)
  992. */
  993. xfs_ilock(ip, XFS_ILOCK_SHARED);
  994. /* If we are flushing data then we care about update_size
  995. * being set, otherwise we care about update_core
  996. */
  997. if ((flag & FSYNC_DATA) ?
  998. (ip->i_update_size == 0) :
  999. (ip->i_update_core == 0)) {
  1000. /*
  1001. * Timestamps/size haven't changed since last inode
  1002. * flush or inode transaction commit. That means
  1003. * either nothing got written or a transaction
  1004. * committed which caught the updates. If the
  1005. * latter happened and the transaction hasn't
  1006. * hit the disk yet, the inode will be still
  1007. * be pinned. If it is, force the log.
  1008. */
  1009. xfs_iunlock(ip, XFS_ILOCK_SHARED);
  1010. if (xfs_ipincount(ip)) {
  1011. _xfs_log_force(ip->i_mount, (xfs_lsn_t)0,
  1012. XFS_LOG_FORCE |
  1013. ((flag & FSYNC_WAIT)
  1014. ? XFS_LOG_SYNC : 0),
  1015. &log_flushed);
  1016. } else {
  1017. /*
  1018. * If the inode is not pinned and nothing
  1019. * has changed we don't need to flush the
  1020. * cache.
  1021. */
  1022. changed = 0;
  1023. }
  1024. error = 0;
  1025. } else {
  1026. /*
  1027. * Kick off a transaction to log the inode
  1028. * core to get the updates. Make it
  1029. * sync if FSYNC_WAIT is passed in (which
  1030. * is done by everybody but specfs). The
  1031. * sync transaction will also force the log.
  1032. */
  1033. xfs_iunlock(ip, XFS_ILOCK_SHARED);
  1034. tp = xfs_trans_alloc(ip->i_mount, XFS_TRANS_FSYNC_TS);
  1035. if ((error = xfs_trans_reserve(tp, 0,
  1036. XFS_FSYNC_TS_LOG_RES(ip->i_mount),
  1037. 0, 0, 0))) {
  1038. xfs_trans_cancel(tp, 0);
  1039. return error;
  1040. }
  1041. xfs_ilock(ip, XFS_ILOCK_EXCL);
  1042. /*
  1043. * Note - it's possible that we might have pushed
  1044. * ourselves out of the way during trans_reserve
  1045. * which would flush the inode. But there's no
  1046. * guarantee that the inode buffer has actually
  1047. * gone out yet (it's delwri). Plus the buffer
  1048. * could be pinned anyway if it's part of an
  1049. * inode in another recent transaction. So we
  1050. * play it safe and fire off the transaction anyway.
  1051. */
  1052. xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
  1053. xfs_trans_ihold(tp, ip);
  1054. xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
  1055. if (flag & FSYNC_WAIT)
  1056. xfs_trans_set_sync(tp);
  1057. error = _xfs_trans_commit(tp, 0, &log_flushed);
  1058. xfs_iunlock(ip, XFS_ILOCK_EXCL);
  1059. }
  1060. if ((ip->i_mount->m_flags & XFS_MOUNT_BARRIER) && changed) {
  1061. /*
  1062. * If the log write didn't issue an ordered tag we need
  1063. * to flush the disk cache for the data device now.
  1064. */
  1065. if (!log_flushed)
  1066. xfs_blkdev_issue_flush(ip->i_mount->m_ddev_targp);
  1067. /*
  1068. * If this inode is on the RT dev we need to flush that
  1069. * cache as well.
  1070. */
  1071. if (ip->i_d.di_flags & XFS_DIFLAG_REALTIME)
  1072. xfs_blkdev_issue_flush(ip->i_mount->m_rtdev_targp);
  1073. }
  1074. return error;
  1075. }
  1076. /*
  1077. * This is called by xfs_inactive to free any blocks beyond eof
  1078. * when the link count isn't zero and by xfs_dm_punch_hole() when
  1079. * punching a hole to EOF.
  1080. */
  1081. int
  1082. xfs_free_eofblocks(
  1083. xfs_mount_t *mp,
  1084. xfs_inode_t *ip,
  1085. int flags)
  1086. {
  1087. xfs_trans_t *tp;
  1088. int error;
  1089. xfs_fileoff_t end_fsb;
  1090. xfs_fileoff_t last_fsb;
  1091. xfs_filblks_t map_len;
  1092. int nimaps;
  1093. xfs_bmbt_irec_t imap;
  1094. int use_iolock = (flags & XFS_FREE_EOF_LOCK);
  1095. /*
  1096. * Figure out if there are any blocks beyond the end
  1097. * of the file. If not, then there is nothing to do.
  1098. */
  1099. end_fsb = XFS_B_TO_FSB(mp, ((xfs_ufsize_t)ip->i_size));
  1100. last_fsb = XFS_B_TO_FSB(mp, (xfs_ufsize_t)XFS_MAXIOFFSET(mp));
  1101. map_len = last_fsb - end_fsb;
  1102. if (map_len <= 0)
  1103. return 0;
  1104. nimaps = 1;
  1105. xfs_ilock(ip, XFS_ILOCK_SHARED);
  1106. error = XFS_BMAPI(mp, NULL, &ip->i_iocore, end_fsb, map_len, 0,
  1107. NULL, 0, &imap, &nimaps, NULL, NULL);
  1108. xfs_iunlock(ip, XFS_ILOCK_SHARED);
  1109. if (!error && (nimaps != 0) &&
  1110. (imap.br_startblock != HOLESTARTBLOCK ||
  1111. ip->i_delayed_blks)) {
  1112. /*
  1113. * Attach the dquots to the inode up front.
  1114. */
  1115. if ((error = XFS_QM_DQATTACH(mp, ip, 0)))
  1116. return error;
  1117. /*
  1118. * There are blocks after the end of file.
  1119. * Free them up now by truncating the file to
  1120. * its current size.
  1121. */
  1122. tp = xfs_trans_alloc(mp, XFS_TRANS_INACTIVE);
  1123. /*
  1124. * Do the xfs_itruncate_start() call before
  1125. * reserving any log space because
  1126. * itruncate_start will call into the buffer
  1127. * cache and we can't
  1128. * do that within a transaction.
  1129. */
  1130. if (use_iolock)
  1131. xfs_ilock(ip, XFS_IOLOCK_EXCL);
  1132. error = xfs_itruncate_start(ip, XFS_ITRUNC_DEFINITE,
  1133. ip->i_size);
  1134. if (error) {
  1135. xfs_trans_cancel(tp, 0);
  1136. if (use_iolock)
  1137. xfs_iunlock(ip, XFS_IOLOCK_EXCL);
  1138. return error;
  1139. }
  1140. error = xfs_trans_reserve(tp, 0,
  1141. XFS_ITRUNCATE_LOG_RES(mp),
  1142. 0, XFS_TRANS_PERM_LOG_RES,
  1143. XFS_ITRUNCATE_LOG_COUNT);
  1144. if (error) {
  1145. ASSERT(XFS_FORCED_SHUTDOWN(mp));
  1146. xfs_trans_cancel(tp, 0);
  1147. xfs_iunlock(ip, XFS_IOLOCK_EXCL);
  1148. return error;
  1149. }
  1150. xfs_ilock(ip, XFS_ILOCK_EXCL);
  1151. xfs_trans_ijoin(tp, ip,
  1152. XFS_IOLOCK_EXCL |
  1153. XFS_ILOCK_EXCL);
  1154. xfs_trans_ihold(tp, ip);
  1155. error = xfs_itruncate_finish(&tp, ip,
  1156. ip->i_size,
  1157. XFS_DATA_FORK,
  1158. 0);
  1159. /*
  1160. * If we get an error at this point we
  1161. * simply don't bother truncating the file.
  1162. */
  1163. if (error) {
  1164. xfs_trans_cancel(tp,
  1165. (XFS_TRANS_RELEASE_LOG_RES |
  1166. XFS_TRANS_ABORT));
  1167. } else {
  1168. error = xfs_trans_commit(tp,
  1169. XFS_TRANS_RELEASE_LOG_RES);
  1170. }
  1171. xfs_iunlock(ip, (use_iolock ? (XFS_IOLOCK_EXCL|XFS_ILOCK_EXCL)
  1172. : XFS_ILOCK_EXCL));
  1173. }
  1174. return error;
  1175. }
  1176. /*
  1177. * Free a symlink that has blocks associated with it.
  1178. */
  1179. STATIC int
  1180. xfs_inactive_symlink_rmt(
  1181. xfs_inode_t *ip,
  1182. xfs_trans_t **tpp)
  1183. {
  1184. xfs_buf_t *bp;
  1185. int committed;
  1186. int done;
  1187. int error;
  1188. xfs_fsblock_t first_block;
  1189. xfs_bmap_free_t free_list;
  1190. int i;
  1191. xfs_mount_t *mp;
  1192. xfs_bmbt_irec_t mval[SYMLINK_MAPS];
  1193. int nmaps;
  1194. xfs_trans_t *ntp;
  1195. int size;
  1196. xfs_trans_t *tp;
  1197. tp = *tpp;
  1198. mp = ip->i_mount;
  1199. ASSERT(ip->i_d.di_size > XFS_IFORK_DSIZE(ip));
  1200. /*
  1201. * We're freeing a symlink that has some
  1202. * blocks allocated to it. Free the
  1203. * blocks here. We know that we've got
  1204. * either 1 or 2 extents and that we can
  1205. * free them all in one bunmapi call.
  1206. */
  1207. ASSERT(ip->i_d.di_nextents > 0 && ip->i_d.di_nextents <= 2);
  1208. if ((error = xfs_trans_reserve(tp, 0, XFS_ITRUNCATE_LOG_RES(mp), 0,
  1209. XFS_TRANS_PERM_LOG_RES, XFS_ITRUNCATE_LOG_COUNT))) {
  1210. ASSERT(XFS_FORCED_SHUTDOWN(mp));
  1211. xfs_trans_cancel(tp, 0);
  1212. *tpp = NULL;
  1213. return error;
  1214. }
  1215. /*
  1216. * Lock the inode, fix the size, and join it to the transaction.
  1217. * Hold it so in the normal path, we still have it locked for
  1218. * the second transaction. In the error paths we need it
  1219. * held so the cancel won't rele it, see below.
  1220. */
  1221. xfs_ilock(ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
  1222. size = (int)ip->i_d.di_size;
  1223. ip->i_d.di_size = 0;
  1224. xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL | XFS_IOLOCK_EXCL);
  1225. xfs_trans_ihold(tp, ip);
  1226. xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
  1227. /*
  1228. * Find the block(s) so we can inval and unmap them.
  1229. */
  1230. done = 0;
  1231. XFS_BMAP_INIT(&free_list, &first_block);
  1232. nmaps = ARRAY_SIZE(mval);
  1233. if ((error = xfs_bmapi(tp, ip, 0, XFS_B_TO_FSB(mp, size),
  1234. XFS_BMAPI_METADATA, &first_block, 0, mval, &nmaps,
  1235. &free_list, NULL)))
  1236. goto error0;
  1237. /*
  1238. * Invalidate the block(s).
  1239. */
  1240. for (i = 0; i < nmaps; i++) {
  1241. bp = xfs_trans_get_buf(tp, mp->m_ddev_targp,
  1242. XFS_FSB_TO_DADDR(mp, mval[i].br_startblock),
  1243. XFS_FSB_TO_BB(mp, mval[i].br_blockcount), 0);
  1244. xfs_trans_binval(tp, bp);
  1245. }
  1246. /*
  1247. * Unmap the dead block(s) to the free_list.
  1248. */
  1249. if ((error = xfs_bunmapi(tp, ip, 0, size, XFS_BMAPI_METADATA, nmaps,
  1250. &first_block, &free_list, NULL, &done)))
  1251. goto error1;
  1252. ASSERT(done);
  1253. /*
  1254. * Commit the first transaction. This logs the EFI and the inode.
  1255. */
  1256. if ((error = xfs_bmap_finish(&tp, &free_list, &committed)))
  1257. goto error1;
  1258. /*
  1259. * The transaction must have been committed, since there were
  1260. * actually extents freed by xfs_bunmapi. See xfs_bmap_finish.
  1261. * The new tp has the extent freeing and EFDs.
  1262. */
  1263. ASSERT(committed);
  1264. /*
  1265. * The first xact was committed, so add the inode to the new one.
  1266. * Mark it dirty so it will be logged and moved forward in the log as
  1267. * part of every commit.
  1268. */
  1269. xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL | XFS_IOLOCK_EXCL);
  1270. xfs_trans_ihold(tp, ip);
  1271. xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
  1272. /*
  1273. * Get a new, empty transaction to return to our caller.
  1274. */
  1275. ntp = xfs_trans_dup(tp);
  1276. /*
  1277. * Commit the transaction containing extent freeing and EFDs.
  1278. * If we get an error on the commit here or on the reserve below,
  1279. * we need to unlock the inode since the new transaction doesn't
  1280. * have the inode attached.
  1281. */
  1282. error = xfs_trans_commit(tp, 0);
  1283. tp = ntp;
  1284. if (error) {
  1285. ASSERT(XFS_FORCED_SHUTDOWN(mp));
  1286. goto error0;
  1287. }
  1288. /*
  1289. * Remove the memory for extent descriptions (just bookkeeping).
  1290. */
  1291. if (ip->i_df.if_bytes)
  1292. xfs_idata_realloc(ip, -ip->i_df.if_bytes, XFS_DATA_FORK);
  1293. ASSERT(ip->i_df.if_bytes == 0);
  1294. /*
  1295. * Put an itruncate log reservation in the new transaction
  1296. * for our caller.
  1297. */
  1298. if ((error = xfs_trans_reserve(tp, 0, XFS_ITRUNCATE_LOG_RES(mp), 0,
  1299. XFS_TRANS_PERM_LOG_RES, XFS_ITRUNCATE_LOG_COUNT))) {
  1300. ASSERT(XFS_FORCED_SHUTDOWN(mp));
  1301. goto error0;
  1302. }
  1303. /*
  1304. * Return with the inode locked but not joined to the transaction.
  1305. */
  1306. *tpp = tp;
  1307. return 0;
  1308. error1:
  1309. xfs_bmap_cancel(&free_list);
  1310. error0:
  1311. /*
  1312. * Have to come here with the inode locked and either
  1313. * (held and in the transaction) or (not in the transaction).
  1314. * If the inode isn't held then cancel would iput it, but
  1315. * that's wrong since this is inactive and the vnode ref
  1316. * count is 0 already.
  1317. * Cancel won't do anything to the inode if held, but it still
  1318. * needs to be locked until the cancel is done, if it was
  1319. * joined to the transaction.
  1320. */
  1321. xfs_trans_cancel(tp, XFS_TRANS_RELEASE_LOG_RES | XFS_TRANS_ABORT);
  1322. xfs_iunlock(ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
  1323. *tpp = NULL;
  1324. return error;
  1325. }
  1326. STATIC int
  1327. xfs_inactive_symlink_local(
  1328. xfs_inode_t *ip,
  1329. xfs_trans_t **tpp)
  1330. {
  1331. int error;
  1332. ASSERT(ip->i_d.di_size <= XFS_IFORK_DSIZE(ip));
  1333. /*
  1334. * We're freeing a symlink which fit into
  1335. * the inode. Just free the memory used
  1336. * to hold the old symlink.
  1337. */
  1338. error = xfs_trans_reserve(*tpp, 0,
  1339. XFS_ITRUNCATE_LOG_RES(ip->i_mount),
  1340. 0, XFS_TRANS_PERM_LOG_RES,
  1341. XFS_ITRUNCATE_LOG_COUNT);
  1342. if (error) {
  1343. xfs_trans_cancel(*tpp, 0);
  1344. *tpp = NULL;
  1345. return error;
  1346. }
  1347. xfs_ilock(ip, XFS_ILOCK_EXCL | XFS_IOLOCK_EXCL);
  1348. /*
  1349. * Zero length symlinks _can_ exist.
  1350. */
  1351. if (ip->i_df.if_bytes > 0) {
  1352. xfs_idata_realloc(ip,
  1353. -(ip->i_df.if_bytes),
  1354. XFS_DATA_FORK);
  1355. ASSERT(ip->i_df.if_bytes == 0);
  1356. }
  1357. return 0;
  1358. }
  1359. STATIC int
  1360. xfs_inactive_attrs(
  1361. xfs_inode_t *ip,
  1362. xfs_trans_t **tpp)
  1363. {
  1364. xfs_trans_t *tp;
  1365. int error;
  1366. xfs_mount_t *mp;
  1367. ASSERT(ismrlocked(&ip->i_iolock, MR_UPDATE));
  1368. tp = *tpp;
  1369. mp = ip->i_mount;
  1370. ASSERT(ip->i_d.di_forkoff != 0);
  1371. xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES);
  1372. xfs_iunlock(ip, XFS_ILOCK_EXCL);
  1373. error = xfs_attr_inactive(ip);
  1374. if (error) {
  1375. *tpp = NULL;
  1376. xfs_iunlock(ip, XFS_IOLOCK_EXCL);
  1377. return error; /* goto out */
  1378. }
  1379. tp = xfs_trans_alloc(mp, XFS_TRANS_INACTIVE);
  1380. error = xfs_trans_reserve(tp, 0,
  1381. XFS_IFREE_LOG_RES(mp),
  1382. 0, XFS_TRANS_PERM_LOG_RES,
  1383. XFS_INACTIVE_LOG_COUNT);
  1384. if (error) {
  1385. ASSERT(XFS_FORCED_SHUTDOWN(mp));
  1386. xfs_trans_cancel(tp, 0);
  1387. *tpp = NULL;
  1388. xfs_iunlock(ip, XFS_IOLOCK_EXCL);
  1389. return error;
  1390. }
  1391. xfs_ilock(ip, XFS_ILOCK_EXCL);
  1392. xfs_trans_ijoin(tp, ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
  1393. xfs_trans_ihold(tp, ip);
  1394. xfs_idestroy_fork(ip, XFS_ATTR_FORK);
  1395. ASSERT(ip->i_d.di_anextents == 0);
  1396. *tpp = tp;
  1397. return 0;
  1398. }
  1399. STATIC int
  1400. xfs_release(
  1401. bhv_desc_t *bdp)
  1402. {
  1403. xfs_inode_t *ip;
  1404. bhv_vnode_t *vp;
  1405. xfs_mount_t *mp;
  1406. int error;
  1407. vp = BHV_TO_VNODE(bdp);
  1408. ip = XFS_BHVTOI(bdp);
  1409. mp = ip->i_mount;
  1410. if (!VN_ISREG(vp) || (ip->i_d.di_mode == 0))
  1411. return 0;
  1412. /* If this is a read-only mount, don't do this (would generate I/O) */
  1413. if (vp->v_vfsp->vfs_flag & VFS_RDONLY)
  1414. return 0;
  1415. if (!XFS_FORCED_SHUTDOWN(mp)) {
  1416. /*
  1417. * If we are using filestreams, and we have an unlinked
  1418. * file that we are processing the last close on, then nothing
  1419. * will be able to reopen and write to this file. Purge this
  1420. * inode from the filestreams cache so that it doesn't delay
  1421. * teardown of the inode.
  1422. */
  1423. if ((ip->i_d.di_nlink == 0) && xfs_inode_is_filestream(ip))
  1424. xfs_filestream_deassociate(ip);
  1425. /*
  1426. * If we previously truncated this file and removed old data
  1427. * in the process, we want to initiate "early" writeout on
  1428. * the last close. This is an attempt to combat the notorious
  1429. * NULL files problem which is particularly noticable from a
  1430. * truncate down, buffered (re-)write (delalloc), followed by
  1431. * a crash. What we are effectively doing here is
  1432. * significantly reducing the time window where we'd otherwise
  1433. * be exposed to that problem.
  1434. */
  1435. if (VUNTRUNCATE(vp) && VN_DIRTY(vp) && ip->i_delayed_blks > 0)
  1436. bhv_vop_flush_pages(vp, 0, -1, XFS_B_ASYNC, FI_NONE);
  1437. }
  1438. #ifdef HAVE_REFCACHE
  1439. /* If we are in the NFS reference cache then don't do this now */
  1440. if (ip->i_refcache)
  1441. return 0;
  1442. #endif
  1443. if (ip->i_d.di_nlink != 0) {
  1444. if ((((ip->i_d.di_mode & S_IFMT) == S_IFREG) &&
  1445. ((ip->i_size > 0) || (VN_CACHED(vp) > 0 ||
  1446. ip->i_delayed_blks > 0)) &&
  1447. (ip->i_df.if_flags & XFS_IFEXTENTS)) &&
  1448. (!(ip->i_d.di_flags &
  1449. (XFS_DIFLAG_PREALLOC | XFS_DIFLAG_APPEND)))) {
  1450. error = xfs_free_eofblocks(mp, ip, XFS_FREE_EOF_LOCK);
  1451. if (error)
  1452. return error;
  1453. /* Update linux inode block count after free above */
  1454. vn_to_inode(vp)->i_blocks = XFS_FSB_TO_BB(mp,
  1455. ip->i_d.di_nblocks + ip->i_delayed_blks);
  1456. }
  1457. }
  1458. return 0;
  1459. }
  1460. /*
  1461. * xfs_inactive
  1462. *
  1463. * This is called when the vnode reference count for the vnode
  1464. * goes to zero. If the file has been unlinked, then it must
  1465. * now be truncated. Also, we clear all of the read-ahead state
  1466. * kept for the inode here since the file is now closed.
  1467. */
  1468. STATIC int
  1469. xfs_inactive(
  1470. bhv_desc_t *bdp,
  1471. cred_t *credp)
  1472. {
  1473. xfs_inode_t *ip;
  1474. bhv_vnode_t *vp;
  1475. xfs_bmap_free_t free_list;
  1476. xfs_fsblock_t first_block;
  1477. int committed;
  1478. xfs_trans_t *tp;
  1479. xfs_mount_t *mp;
  1480. int error;
  1481. int truncate;
  1482. vp = BHV_TO_VNODE(bdp);
  1483. vn_trace_entry(vp, __FUNCTION__, (inst_t *)__return_address);
  1484. ip = XFS_BHVTOI(bdp);
  1485. /*
  1486. * If the inode is already free, then there can be nothing
  1487. * to clean up here.
  1488. */
  1489. if (ip->i_d.di_mode == 0 || VN_BAD(vp)) {
  1490. ASSERT(ip->i_df.if_real_bytes == 0);
  1491. ASSERT(ip->i_df.if_broot_bytes == 0);
  1492. return VN_INACTIVE_CACHE;
  1493. }
  1494. /*
  1495. * Only do a truncate if it's a regular file with
  1496. * some actual space in it. It's OK to look at the
  1497. * inode's fields without the lock because we're the
  1498. * only one with a reference to the inode.
  1499. */
  1500. truncate = ((ip->i_d.di_nlink == 0) &&
  1501. ((ip->i_d.di_size != 0) || (ip->i_size != 0) ||
  1502. (ip->i_d.di_nextents > 0) || (ip->i_delayed_blks > 0)) &&
  1503. ((ip->i_d.di_mode & S_IFMT) == S_IFREG));
  1504. mp = ip->i_mount;
  1505. if (ip->i_d.di_nlink == 0 && DM_EVENT_ENABLED(ip, DM_EVENT_DESTROY)) {
  1506. (void) XFS_SEND_DESTROY(mp, vp, DM_RIGHT_NULL);
  1507. }
  1508. error = 0;
  1509. /* If this is a read-only mount, don't do this (would generate I/O) */
  1510. if (vp->v_vfsp->vfs_flag & VFS_RDONLY)
  1511. goto out;
  1512. if (ip->i_d.di_nlink != 0) {
  1513. if ((((ip->i_d.di_mode & S_IFMT) == S_IFREG) &&
  1514. ((ip->i_size > 0) || (VN_CACHED(vp) > 0 ||
  1515. ip->i_delayed_blks > 0)) &&
  1516. (ip->i_df.if_flags & XFS_IFEXTENTS) &&
  1517. (!(ip->i_d.di_flags &
  1518. (XFS_DIFLAG_PREALLOC | XFS_DIFLAG_APPEND)) ||
  1519. (ip->i_delayed_blks != 0)))) {
  1520. error = xfs_free_eofblocks(mp, ip, XFS_FREE_EOF_LOCK);
  1521. if (error)
  1522. return VN_INACTIVE_CACHE;
  1523. /* Update linux inode block count after free above */
  1524. vn_to_inode(vp)->i_blocks = XFS_FSB_TO_BB(mp,
  1525. ip->i_d.di_nblocks + ip->i_delayed_blks);
  1526. }
  1527. goto out;
  1528. }
  1529. ASSERT(ip->i_d.di_nlink == 0);
  1530. if ((error = XFS_QM_DQATTACH(mp, ip, 0)))
  1531. return VN_INACTIVE_CACHE;
  1532. tp = xfs_trans_alloc(mp, XFS_TRANS_INACTIVE);
  1533. if (truncate) {
  1534. /*
  1535. * Do the xfs_itruncate_start() call before
  1536. * reserving any log space because itruncate_start
  1537. * will call into the buffer cache and we can't
  1538. * do that within a transaction.
  1539. */
  1540. xfs_ilock(ip, XFS_IOLOCK_EXCL);
  1541. error = xfs_itruncate_start(ip, XFS_ITRUNC_DEFINITE, 0);
  1542. if (error) {
  1543. xfs_trans_cancel(tp, 0);
  1544. xfs_iunlock(ip, XFS_IOLOCK_EXCL);
  1545. return VN_INACTIVE_CACHE;
  1546. }
  1547. error = xfs_trans_reserve(tp, 0,
  1548. XFS_ITRUNCATE_LOG_RES(mp),
  1549. 0, XFS_TRANS_PERM_LOG_RES,
  1550. XFS_ITRUNCATE_LOG_COUNT);
  1551. if (error) {
  1552. /* Don't call itruncate_cleanup */
  1553. ASSERT(XFS_FORCED_SHUTDOWN(mp));
  1554. xfs_trans_cancel(tp, 0);
  1555. xfs_iunlock(ip, XFS_IOLOCK_EXCL);
  1556. return VN_INACTIVE_CACHE;
  1557. }
  1558. xfs_ilock(ip, XFS_ILOCK_EXCL);
  1559. xfs_trans_ijoin(tp, ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
  1560. xfs_trans_ihold(tp, ip);
  1561. /*
  1562. * normally, we have to run xfs_itruncate_finish sync.
  1563. * But if filesystem is wsync and we're in the inactive
  1564. * path, then we know that nlink == 0, and that the
  1565. * xaction that made nlink == 0 is permanently committed
  1566. * since xfs_remove runs as a synchronous transaction.
  1567. */
  1568. error = xfs_itruncate_finish(&tp, ip, 0, XFS_DATA_FORK,
  1569. (!(mp->m_flags & XFS_MOUNT_WSYNC) ? 1 : 0));
  1570. if (error) {
  1571. xfs_trans_cancel(tp,
  1572. XFS_TRANS_RELEASE_LOG_RES | XFS_TRANS_ABORT);
  1573. xfs_iunlock(ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
  1574. return VN_INACTIVE_CACHE;
  1575. }
  1576. } else if ((ip->i_d.di_mode & S_IFMT) == S_IFLNK) {
  1577. /*
  1578. * If we get an error while cleaning up a
  1579. * symlink we bail out.
  1580. */
  1581. error = (ip->i_d.di_size > XFS_IFORK_DSIZE(ip)) ?
  1582. xfs_inactive_symlink_rmt(ip, &tp) :
  1583. xfs_inactive_symlink_local(ip, &tp);
  1584. if (error) {
  1585. ASSERT(tp == NULL);
  1586. return VN_INACTIVE_CACHE;
  1587. }
  1588. xfs_trans_ijoin(tp, ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
  1589. xfs_trans_ihold(tp, ip);
  1590. } else {
  1591. error = xfs_trans_reserve(tp, 0,
  1592. XFS_IFREE_LOG_RES(mp),
  1593. 0, XFS_TRANS_PERM_LOG_RES,
  1594. XFS_INACTIVE_LOG_COUNT);
  1595. if (error) {
  1596. ASSERT(XFS_FORCED_SHUTDOWN(mp));
  1597. xfs_trans_cancel(tp, 0);
  1598. return VN_INACTIVE_CACHE;
  1599. }
  1600. xfs_ilock(ip, XFS_ILOCK_EXCL | XFS_IOLOCK_EXCL);
  1601. xfs_trans_ijoin(tp, ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
  1602. xfs_trans_ihold(tp, ip);
  1603. }
  1604. /*
  1605. * If there are attributes associated with the file
  1606. * then blow them away now. The code calls a routine
  1607. * that recursively deconstructs the attribute fork.
  1608. * We need to just commit the current transaction
  1609. * because we can't use it for xfs_attr_inactive().
  1610. */
  1611. if (ip->i_d.di_anextents > 0) {
  1612. error = xfs_inactive_attrs(ip, &tp);
  1613. /*
  1614. * If we got an error, the transaction is already
  1615. * cancelled, and the inode is unlocked. Just get out.
  1616. */
  1617. if (error)
  1618. return VN_INACTIVE_CACHE;
  1619. } else if (ip->i_afp) {
  1620. xfs_idestroy_fork(ip, XFS_ATTR_FORK);
  1621. }
  1622. /*
  1623. * Free the inode.
  1624. */
  1625. XFS_BMAP_INIT(&free_list, &first_block);
  1626. error = xfs_ifree(tp, ip, &free_list);
  1627. if (error) {
  1628. /*
  1629. * If we fail to free the inode, shut down. The cancel
  1630. * might do that, we need to make sure. Otherwise the
  1631. * inode might be lost for a long time or forever.
  1632. */
  1633. if (!XFS_FORCED_SHUTDOWN(mp)) {
  1634. cmn_err(CE_NOTE,
  1635. "xfs_inactive: xfs_ifree() returned an error = %d on %s",
  1636. error, mp->m_fsname);
  1637. xfs_force_shutdown(mp, SHUTDOWN_META_IO_ERROR);
  1638. }
  1639. xfs_trans_cancel(tp, XFS_TRANS_RELEASE_LOG_RES|XFS_TRANS_ABORT);
  1640. } else {
  1641. /*
  1642. * Credit the quota account(s). The inode is gone.
  1643. */
  1644. XFS_TRANS_MOD_DQUOT_BYINO(mp, tp, ip, XFS_TRANS_DQ_ICOUNT, -1);
  1645. /*
  1646. * Just ignore errors at this point. There is
  1647. * nothing we can do except to try to keep going.
  1648. */
  1649. (void) xfs_bmap_finish(&tp, &free_list, &committed);
  1650. (void) xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES);
  1651. }
  1652. /*
  1653. * Release the dquots held by inode, if any.
  1654. */
  1655. XFS_QM_DQDETACH(mp, ip);
  1656. xfs_iunlock(ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
  1657. out:
  1658. return VN_INACTIVE_CACHE;
  1659. }
  1660. /*
  1661. * xfs_lookup
  1662. */
  1663. STATIC int
  1664. xfs_lookup(
  1665. bhv_desc_t *dir_bdp,
  1666. bhv_vname_t *dentry,
  1667. bhv_vnode_t **vpp,
  1668. int flags,
  1669. bhv_vnode_t *rdir,
  1670. cred_t *credp)
  1671. {
  1672. xfs_inode_t *dp, *ip;
  1673. xfs_ino_t e_inum;
  1674. int error;
  1675. uint lock_mode;
  1676. bhv_vnode_t *dir_vp;
  1677. dir_vp = BHV_TO_VNODE(dir_bdp);
  1678. vn_trace_entry(dir_vp, __FUNCTION__, (inst_t *)__return_address);
  1679. dp = XFS_BHVTOI(dir_bdp);
  1680. if (XFS_FORCED_SHUTDOWN(dp->i_mount))
  1681. return XFS_ERROR(EIO);
  1682. lock_mode = xfs_ilock_map_shared(dp);
  1683. error = xfs_dir_lookup_int(dir_bdp, lock_mode, dentry, &e_inum, &ip);
  1684. if (!error) {
  1685. *vpp = XFS_ITOV(ip);
  1686. ITRACE(ip);
  1687. }
  1688. xfs_iunlock_map_shared(dp, lock_mode);
  1689. return error;
  1690. }
  1691. /*
  1692. * xfs_create (create a new file).
  1693. */
  1694. STATIC int
  1695. xfs_create(
  1696. bhv_desc_t *dir_bdp,
  1697. bhv_vname_t *dentry,
  1698. bhv_vattr_t *vap,
  1699. bhv_vnode_t **vpp,
  1700. cred_t *credp)
  1701. {
  1702. char *name = VNAME(dentry);
  1703. bhv_vnode_t *dir_vp;
  1704. xfs_inode_t *dp, *ip;
  1705. bhv_vnode_t *vp = NULL;
  1706. xfs_trans_t *tp;
  1707. xfs_mount_t *mp;
  1708. xfs_dev_t rdev;
  1709. int error;
  1710. xfs_bmap_free_t free_list;
  1711. xfs_fsblock_t first_block;
  1712. boolean_t dp_joined_to_trans;
  1713. int dm_event_sent = 0;
  1714. uint cancel_flags;
  1715. int committed;
  1716. xfs_prid_t prid;
  1717. struct xfs_dquot *udqp, *gdqp;
  1718. uint resblks;
  1719. int dm_di_mode;
  1720. int namelen;
  1721. ASSERT(!*vpp);
  1722. dir_vp = BHV_TO_VNODE(dir_bdp);
  1723. vn_trace_entry(dir_vp, __FUNCTION__, (inst_t *)__return_address);
  1724. dp = XFS_BHVTOI(dir_bdp);
  1725. mp = dp->i_mount;
  1726. dm_di_mode = vap->va_mode;
  1727. namelen = VNAMELEN(dentry);
  1728. if (DM_EVENT_ENABLED(dp, DM_EVENT_CREATE)) {
  1729. error = XFS_SEND_NAMESP(mp, DM_EVENT_CREATE,
  1730. dir_vp, DM_RIGHT_NULL, NULL,
  1731. DM_RIGHT_NULL, name, NULL,
  1732. dm_di_mode, 0, 0);
  1733. if (error)
  1734. return error;
  1735. dm_event_sent = 1;
  1736. }
  1737. if (XFS_FORCED_SHUTDOWN(mp))
  1738. return XFS_ERROR(EIO);
  1739. /* Return through std_return after this point. */
  1740. udqp = gdqp = NULL;
  1741. if (dp->i_d.di_flags & XFS_DIFLAG_PROJINHERIT)
  1742. prid = dp->i_d.di_projid;
  1743. else if (vap->va_mask & XFS_AT_PROJID)
  1744. prid = (xfs_prid_t)vap->va_projid;
  1745. else
  1746. prid = (xfs_prid_t)dfltprid;
  1747. /*
  1748. * Make sure that we have allocated dquot(s) on disk.
  1749. */
  1750. error = XFS_QM_DQVOPALLOC(mp, dp,
  1751. current_fsuid(credp), current_fsgid(credp), prid,
  1752. XFS_QMOPT_QUOTALL|XFS_QMOPT_INHERIT, &udqp, &gdqp);
  1753. if (error)
  1754. goto std_return;
  1755. ip = NULL;
  1756. dp_joined_to_trans = B_FALSE;
  1757. tp = xfs_trans_alloc(mp, XFS_TRANS_CREATE);
  1758. cancel_flags = XFS_TRANS_RELEASE_LOG_RES;
  1759. resblks = XFS_CREATE_SPACE_RES(mp, namelen);
  1760. /*
  1761. * Initially assume that the file does not exist and
  1762. * reserve the resources for that case. If that is not
  1763. * the case we'll drop the one we have and get a more
  1764. * appropriate transaction later.
  1765. */
  1766. error = xfs_trans_reserve(tp, resblks, XFS_CREATE_LOG_RES(mp), 0,
  1767. XFS_TRANS_PERM_LOG_RES, XFS_CREATE_LOG_COUNT);
  1768. if (error == ENOSPC) {
  1769. resblks = 0;
  1770. error = xfs_trans_reserve(tp, 0, XFS_CREATE_LOG_RES(mp), 0,
  1771. XFS_TRANS_PERM_LOG_RES, XFS_CREATE_LOG_COUNT);
  1772. }
  1773. if (error) {
  1774. cancel_flags = 0;
  1775. dp = NULL;
  1776. goto error_return;
  1777. }
  1778. xfs_ilock(dp, XFS_ILOCK_EXCL | XFS_ILOCK_PARENT);
  1779. XFS_BMAP_INIT(&free_list, &first_block);
  1780. ASSERT(ip == NULL);
  1781. /*
  1782. * Reserve disk quota and the inode.
  1783. */
  1784. error = XFS_TRANS_RESERVE_QUOTA(mp, tp, udqp, gdqp, resblks, 1, 0);
  1785. if (error)
  1786. goto error_return;
  1787. if (resblks == 0 && (error = xfs_dir_canenter(tp, dp, name, namelen)))
  1788. goto error_return;
  1789. rdev = (vap->va_mask & XFS_AT_RDEV) ? vap->va_rdev : 0;
  1790. error = xfs_dir_ialloc(&tp, dp, vap->va_mode, 1,
  1791. rdev, credp, prid, resblks > 0,
  1792. &ip, &committed);
  1793. if (error) {
  1794. if (error == ENOSPC)
  1795. goto error_return;
  1796. goto abort_return;
  1797. }
  1798. ITRACE(ip);
  1799. /*
  1800. * At this point, we've gotten a newly allocated inode.
  1801. * It is locked (and joined to the transaction).
  1802. */
  1803. ASSERT(ismrlocked (&ip->i_lock, MR_UPDATE));
  1804. /*
  1805. * Now we join the directory inode to the transaction.
  1806. * We do not do it earlier because xfs_dir_ialloc
  1807. * might commit the previous transaction (and release
  1808. * all the locks).
  1809. */
  1810. VN_HOLD(dir_vp);
  1811. xfs_trans_ijoin(tp, dp, XFS_ILOCK_EXCL);
  1812. dp_joined_to_trans = B_TRUE;
  1813. error = xfs_dir_createname(tp, dp, name, namelen, ip->i_ino,
  1814. &first_block, &free_list, resblks ?
  1815. resblks - XFS_IALLOC_SPACE_RES(mp) : 0);
  1816. if (error) {
  1817. ASSERT(error != ENOSPC);
  1818. goto abort_return;
  1819. }
  1820. xfs_ichgtime(dp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
  1821. xfs_trans_log_inode(tp, dp, XFS_ILOG_CORE);
  1822. /*
  1823. * If this is a synchronous mount, make sure that the
  1824. * create transaction goes to disk before returning to
  1825. * the user.
  1826. */
  1827. if (mp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC)) {
  1828. xfs_trans_set_sync(tp);
  1829. }
  1830. dp->i_gen++;
  1831. /*
  1832. * Attach the dquot(s) to the inodes and modify them incore.
  1833. * These ids of the inode couldn't have changed since the new
  1834. * inode has been locked ever since it was created.
  1835. */
  1836. XFS_QM_DQVOPCREATE(mp, tp, ip, udqp, gdqp);
  1837. /*
  1838. * xfs_trans_commit normally decrements the vnode ref count
  1839. * when it unlocks the inode. Since we want to return the
  1840. * vnode to the caller, we bump the vnode ref count now.
  1841. */
  1842. IHOLD(ip);
  1843. vp = XFS_ITOV(ip);
  1844. error = xfs_bmap_finish(&tp, &free_list, &committed);
  1845. if (error) {
  1846. xfs_bmap_cancel(&free_list);
  1847. goto abort_rele;
  1848. }
  1849. error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES);
  1850. if (error) {
  1851. IRELE(ip);
  1852. tp = NULL;
  1853. goto error_return;
  1854. }
  1855. XFS_QM_DQRELE(mp, udqp);
  1856. XFS_QM_DQRELE(mp, gdqp);
  1857. /*
  1858. * Propagate the fact that the vnode changed after the
  1859. * xfs_inode locks have been released.
  1860. */
  1861. bhv_vop_vnode_change(vp, VCHANGE_FLAGS_TRUNCATED, 3);
  1862. *vpp = vp;
  1863. /* Fallthrough to std_return with error = 0 */
  1864. std_return:
  1865. if ((*vpp || (error != 0 && dm_event_sent != 0)) &&
  1866. DM_EVENT_ENABLED(XFS_BHVTOI(dir_bdp), DM_EVENT_POSTCREATE)) {
  1867. (void) XFS_SEND_NAMESP(mp, DM_EVENT_POSTCREATE,
  1868. dir_vp, DM_RIGHT_NULL,
  1869. *vpp ? vp:NULL,
  1870. DM_RIGHT_NULL, name, NULL,
  1871. dm_di_mode, error, 0);
  1872. }
  1873. return error;
  1874. abort_return:
  1875. cancel_flags |= XFS_TRANS_ABORT;
  1876. /* FALLTHROUGH */
  1877. error_return:
  1878. if (tp != NULL)
  1879. xfs_trans_cancel(tp, cancel_flags);
  1880. if (!dp_joined_to_trans && (dp != NULL))
  1881. xfs_iunlock(dp, XFS_ILOCK_EXCL);
  1882. XFS_QM_DQRELE(mp, udqp);
  1883. XFS_QM_DQRELE(mp, gdqp);
  1884. goto std_return;
  1885. abort_rele:
  1886. /*
  1887. * Wait until after the current transaction is aborted to
  1888. * release the inode. This prevents recursive transactions
  1889. * and deadlocks from xfs_inactive.
  1890. */
  1891. cancel_flags |= XFS_TRANS_ABORT;
  1892. xfs_trans_cancel(tp, cancel_flags);
  1893. IRELE(ip);
  1894. XFS_QM_DQRELE(mp, udqp);
  1895. XFS_QM_DQRELE(mp, gdqp);
  1896. goto std_return;
  1897. }
  1898. #ifdef DEBUG
  1899. /*
  1900. * Some counters to see if (and how often) we are hitting some deadlock
  1901. * prevention code paths.
  1902. */
  1903. int xfs_rm_locks;
  1904. int xfs_rm_lock_delays;
  1905. int xfs_rm_attempts;
  1906. #endif
  1907. /*
  1908. * The following routine will lock the inodes associated with the
  1909. * directory and the named entry in the directory. The locks are
  1910. * acquired in increasing inode number.
  1911. *
  1912. * If the entry is "..", then only the directory is locked. The
  1913. * vnode ref count will still include that from the .. entry in
  1914. * this case.
  1915. *
  1916. * There is a deadlock we need to worry about. If the locked directory is
  1917. * in the AIL, it might be blocking up the log. The next inode we lock
  1918. * could be already locked by another thread waiting for log space (e.g
  1919. * a permanent log reservation with a long running transaction (see
  1920. * xfs_itruncate_finish)). To solve this, we must check if the directory
  1921. * is in the ail and use lock_nowait. If we can't lock, we need to
  1922. * drop the inode lock on the directory and try again. xfs_iunlock will
  1923. * potentially push the tail if we were holding up the log.
  1924. */
  1925. STATIC int
  1926. xfs_lock_dir_and_entry(
  1927. xfs_inode_t *dp,
  1928. xfs_inode_t *ip) /* inode of entry 'name' */
  1929. {
  1930. int attempts;
  1931. xfs_ino_t e_inum;
  1932. xfs_inode_t *ips[2];
  1933. xfs_log_item_t *lp;
  1934. #ifdef DEBUG
  1935. xfs_rm_locks++;
  1936. #endif
  1937. attempts = 0;
  1938. again:
  1939. xfs_ilock(dp, XFS_ILOCK_EXCL | XFS_ILOCK_PARENT);
  1940. e_inum = ip->i_ino;
  1941. ITRACE(ip);
  1942. /*
  1943. * We want to lock in increasing inum. Since we've already
  1944. * acquired the lock on the directory, we may need to release
  1945. * if if the inum of the entry turns out to be less.
  1946. */
  1947. if (e_inum > dp->i_ino) {
  1948. /*
  1949. * We are already in the right order, so just
  1950. * lock on the inode of the entry.
  1951. * We need to use nowait if dp is in the AIL.
  1952. */
  1953. lp = (xfs_log_item_t *)dp->i_itemp;
  1954. if (lp && (lp->li_flags & XFS_LI_IN_AIL)) {
  1955. if (!xfs_ilock_nowait(ip, XFS_ILOCK_EXCL)) {
  1956. attempts++;
  1957. #ifdef DEBUG
  1958. xfs_rm_attempts++;
  1959. #endif
  1960. /*
  1961. * Unlock dp and try again.
  1962. * xfs_iunlock will try to push the tail
  1963. * if the inode is in the AIL.
  1964. */
  1965. xfs_iunlock(dp, XFS_ILOCK_EXCL);
  1966. if ((attempts % 5) == 0) {
  1967. delay(1); /* Don't just spin the CPU */
  1968. #ifdef DEBUG
  1969. xfs_rm_lock_delays++;
  1970. #endif
  1971. }
  1972. goto again;
  1973. }
  1974. } else {
  1975. xfs_ilock(ip, XFS_ILOCK_EXCL);
  1976. }
  1977. } else if (e_inum < dp->i_ino) {
  1978. xfs_iunlock(dp, XFS_ILOCK_EXCL);
  1979. ips[0] = ip;
  1980. ips[1] = dp;
  1981. xfs_lock_inodes(ips, 2, 0, XFS_ILOCK_EXCL);
  1982. }
  1983. /* else e_inum == dp->i_ino */
  1984. /* This can happen if we're asked to lock /x/..
  1985. * the entry is "..", which is also the parent directory.
  1986. */
  1987. return 0;
  1988. }
  1989. #ifdef DEBUG
  1990. int xfs_locked_n;
  1991. int xfs_small_retries;
  1992. int xfs_middle_retries;
  1993. int xfs_lots_retries;
  1994. int xfs_lock_delays;
  1995. #endif
  1996. /*
  1997. * Bump the subclass so xfs_lock_inodes() acquires each lock with
  1998. * a different value
  1999. */
  2000. static inline int
  2001. xfs_lock_inumorder(int lock_mode, int subclass)
  2002. {
  2003. if (lock_mode & (XFS_IOLOCK_SHARED|XFS_IOLOCK_EXCL))
  2004. lock_mode |= (subclass + XFS_LOCK_INUMORDER) << XFS_IOLOCK_SHIFT;
  2005. if (lock_mode & (XFS_ILOCK_SHARED|XFS_ILOCK_EXCL))
  2006. lock_mode |= (subclass + XFS_LOCK_INUMORDER) << XFS_ILOCK_SHIFT;
  2007. return lock_mode;
  2008. }
  2009. /*
  2010. * The following routine will lock n inodes in exclusive mode.
  2011. * We assume the caller calls us with the inodes in i_ino order.
  2012. *
  2013. * We need to detect deadlock where an inode that we lock
  2014. * is in the AIL and we start waiting for another inode that is locked
  2015. * by a thread in a long running transaction (such as truncate). This can
  2016. * result in deadlock since the long running trans might need to wait
  2017. * for the inode we just locked in order to push the tail and free space
  2018. * in the log.
  2019. */
  2020. void
  2021. xfs_lock_inodes(
  2022. xfs_inode_t **ips,
  2023. int inodes,
  2024. int first_locked,
  2025. uint lock_mode)
  2026. {
  2027. int attempts = 0, i, j, try_lock;
  2028. xfs_log_item_t *lp;
  2029. ASSERT(ips && (inodes >= 2)); /* we need at least two */
  2030. if (first_locked) {
  2031. try_lock = 1;
  2032. i = 1;
  2033. } else {
  2034. try_lock = 0;
  2035. i = 0;
  2036. }
  2037. again:
  2038. for (; i < inodes; i++) {
  2039. ASSERT(ips[i]);
  2040. if (i && (ips[i] == ips[i-1])) /* Already locked */
  2041. continue;
  2042. /*
  2043. * If try_lock is not set yet, make sure all locked inodes
  2044. * are not in the AIL.
  2045. * If any are, set try_lock to be used later.
  2046. */
  2047. if (!try_lock) {
  2048. for (j = (i - 1); j >= 0 && !try_lock; j--) {
  2049. lp = (xfs_log_item_t *)ips[j]->i_itemp;
  2050. if (lp && (lp->li_flags & XFS_LI_IN_AIL)) {
  2051. try_lock++;
  2052. }
  2053. }
  2054. }
  2055. /*
  2056. * If any of the previous locks we have locked is in the AIL,
  2057. * we must TRY to get the second and subsequent locks. If
  2058. * we can't get any, we must release all we have
  2059. * and try again.
  2060. */
  2061. if (try_lock) {
  2062. /* try_lock must be 0 if i is 0. */
  2063. /*
  2064. * try_lock means we have an inode locked
  2065. * that is in the AIL.
  2066. */
  2067. ASSERT(i != 0);
  2068. if (!xfs_ilock_nowait(ips[i], xfs_lock_inumorder(lock_mode, i))) {
  2069. attempts++;
  2070. /*
  2071. * Unlock all previous guys and try again.
  2072. * xfs_iunlock will try to push the tail
  2073. * if the inode is in the AIL.
  2074. */
  2075. for(j = i - 1; j >= 0; j--) {
  2076. /*
  2077. * Check to see if we've already
  2078. * unlocked this one.
  2079. * Not the first one going back,
  2080. * and the inode ptr is the same.
  2081. */
  2082. if ((j != (i - 1)) && ips[j] ==
  2083. ips[j+1])
  2084. continue;
  2085. xfs_iunlock(ips[j], lock_mode);
  2086. }
  2087. if ((attempts % 5) == 0) {
  2088. delay(1); /* Don't just spin the CPU */
  2089. #ifdef DEBUG
  2090. xfs_lock_delays++;
  2091. #endif
  2092. }
  2093. i = 0;
  2094. try_lock = 0;
  2095. goto again;
  2096. }
  2097. } else {
  2098. xfs_ilock(ips[i], xfs_lock_inumorder(lock_mode, i));
  2099. }
  2100. }
  2101. #ifdef DEBUG
  2102. if (attempts) {
  2103. if (attempts < 5) xfs_small_retries++;
  2104. else if (attempts < 100) xfs_middle_retries++;
  2105. else xfs_lots_retries++;
  2106. } else {
  2107. xfs_locked_n++;
  2108. }
  2109. #endif
  2110. }
  2111. #ifdef DEBUG
  2112. #define REMOVE_DEBUG_TRACE(x) {remove_which_error_return = (x);}
  2113. int remove_which_error_return = 0;
  2114. #else /* ! DEBUG */
  2115. #define REMOVE_DEBUG_TRACE(x)
  2116. #endif /* ! DEBUG */
  2117. /*
  2118. * xfs_remove
  2119. *
  2120. */
  2121. STATIC int
  2122. xfs_remove(
  2123. bhv_desc_t *dir_bdp,
  2124. bhv_vname_t *dentry,
  2125. cred_t *credp)
  2126. {
  2127. bhv_vnode_t *dir_vp;
  2128. char *name = VNAME(dentry);
  2129. xfs_inode_t *dp, *ip;
  2130. xfs_trans_t *tp = NULL;
  2131. xfs_mount_t *mp;
  2132. int error = 0;
  2133. xfs_bmap_free_t free_list;
  2134. xfs_fsblock_t first_block;
  2135. int cancel_flags;
  2136. int committed;
  2137. int dm_di_mode = 0;
  2138. int link_zero;
  2139. uint resblks;
  2140. int namelen;
  2141. dir_vp = BHV_TO_VNODE(dir_bdp);
  2142. vn_trace_entry(dir_vp, __FUNCTION__, (inst_t *)__return_address);
  2143. dp = XFS_BHVTOI(dir_bdp);
  2144. mp = dp->i_mount;
  2145. if (XFS_FORCED_SHUTDOWN(mp))
  2146. return XFS_ERROR(EIO);
  2147. namelen = VNAMELEN(dentry);
  2148. if (!xfs_get_dir_entry(dentry, &ip)) {
  2149. dm_di_mode = ip->i_d.di_mode;
  2150. IRELE(ip);
  2151. }
  2152. if (DM_EVENT_ENABLED(dp, DM_EVENT_REMOVE)) {
  2153. error = XFS_SEND_NAMESP(mp, DM_EVENT_REMOVE, dir_vp,
  2154. DM_RIGHT_NULL, NULL, DM_RIGHT_NULL,
  2155. name, NULL, dm_di_mode, 0, 0);
  2156. if (error)
  2157. return error;
  2158. }
  2159. /* From this point on, return through std_return */
  2160. ip = NULL;
  2161. /*
  2162. * We need to get a reference to ip before we get our log
  2163. * reservation. The reason for this is that we cannot call
  2164. * xfs_iget for an inode for which we do not have a reference
  2165. * once we've acquired a log reservation. This is because the
  2166. * inode we are trying to get might be in xfs_inactive going
  2167. * for a log reservation. Since we'll have to wait for the
  2168. * inactive code to complete before returning from xfs_iget,
  2169. * we need to make sure that we don't have log space reserved
  2170. * when we call xfs_iget. Instead we get an unlocked reference
  2171. * to the inode before getting our log reservation.
  2172. */
  2173. error = xfs_get_dir_entry(dentry, &ip);
  2174. if (error) {
  2175. REMOVE_DEBUG_TRACE(__LINE__);
  2176. goto std_return;
  2177. }
  2178. dm_di_mode = ip->i_d.di_mode;
  2179. vn_trace_entry(XFS_ITOV(ip), __FUNCTION__, (inst_t *)__return_address);
  2180. ITRACE(ip);
  2181. error = XFS_QM_DQATTACH(mp, dp, 0);
  2182. if (!error && dp != ip)
  2183. error = XFS_QM_DQATTACH(mp, ip, 0);
  2184. if (error) {
  2185. REMOVE_DEBUG_TRACE(__LINE__);
  2186. IRELE(ip);
  2187. goto std_return;
  2188. }
  2189. tp = xfs_trans_alloc(mp, XFS_TRANS_REMOVE);
  2190. cancel_flags = XFS_TRANS_RELEASE_LOG_RES;
  2191. /*
  2192. * We try to get the real space reservation first,
  2193. * allowing for directory btree deletion(s) implying
  2194. * possible bmap insert(s). If we can't get the space
  2195. * reservation then we use 0 instead, and avoid the bmap
  2196. * btree insert(s) in the directory code by, if the bmap
  2197. * insert tries to happen, instead trimming the LAST
  2198. * block from the directory.
  2199. */
  2200. resblks = XFS_REMOVE_SPACE_RES(mp);
  2201. error = xfs_trans_reserve(tp, resblks, XFS_REMOVE_LOG_RES(mp), 0,
  2202. XFS_TRANS_PERM_LOG_RES, XFS_REMOVE_LOG_COUNT);
  2203. if (error == ENOSPC) {
  2204. resblks = 0;
  2205. error = xfs_trans_reserve(tp, 0, XFS_REMOVE_LOG_RES(mp), 0,
  2206. XFS_TRANS_PERM_LOG_RES, XFS_REMOVE_LOG_COUNT);
  2207. }
  2208. if (error) {
  2209. ASSERT(error != ENOSPC);
  2210. REMOVE_DEBUG_TRACE(__LINE__);
  2211. xfs_trans_cancel(tp, 0);
  2212. IRELE(ip);
  2213. return error;
  2214. }
  2215. error = xfs_lock_dir_and_entry(dp, ip);
  2216. if (error) {
  2217. REMOVE_DEBUG_TRACE(__LINE__);
  2218. xfs_trans_cancel(tp, cancel_flags);
  2219. IRELE(ip);
  2220. goto std_return;
  2221. }
  2222. /*
  2223. * At this point, we've gotten both the directory and the entry
  2224. * inodes locked.
  2225. */
  2226. xfs_trans_ijoin(tp, dp, XFS_ILOCK_EXCL);
  2227. if (dp != ip) {
  2228. /*
  2229. * Increment vnode ref count only in this case since
  2230. * there's an extra vnode reference in the case where
  2231. * dp == ip.
  2232. */
  2233. IHOLD(dp);
  2234. xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
  2235. }
  2236. /*
  2237. * Entry must exist since we did a lookup in xfs_lock_dir_and_entry.
  2238. */
  2239. XFS_BMAP_INIT(&free_list, &first_block);
  2240. error = xfs_dir_removename(tp, dp, name, namelen, ip->i_ino,
  2241. &first_block, &free_list, 0);
  2242. if (error) {
  2243. ASSERT(error != ENOENT);
  2244. REMOVE_DEBUG_TRACE(__LINE__);
  2245. goto error1;
  2246. }
  2247. xfs_ichgtime(dp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
  2248. dp->i_gen++;
  2249. xfs_trans_log_inode(tp, dp, XFS_ILOG_CORE);
  2250. error = xfs_droplink(tp, ip);
  2251. if (error) {
  2252. REMOVE_DEBUG_TRACE(__LINE__);
  2253. goto error1;
  2254. }
  2255. /* Determine if this is the last link while
  2256. * we are in the transaction.
  2257. */
  2258. link_zero = (ip)->i_d.di_nlink==0;
  2259. /*
  2260. * Take an extra ref on the inode so that it doesn't
  2261. * go to xfs_inactive() from within the commit.
  2262. */
  2263. IHOLD(ip);
  2264. /*
  2265. * If this is a synchronous mount, make sure that the
  2266. * remove transaction goes to disk before returning to
  2267. * the user.
  2268. */
  2269. if (mp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC)) {
  2270. xfs_trans_set_sync(tp);
  2271. }
  2272. error = xfs_bmap_finish(&tp, &free_list, &committed);
  2273. if (error) {
  2274. REMOVE_DEBUG_TRACE(__LINE__);
  2275. goto error_rele;
  2276. }
  2277. error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES);
  2278. if (error) {
  2279. IRELE(ip);
  2280. goto std_return;
  2281. }
  2282. /*
  2283. * Before we drop our extra reference to the inode, purge it
  2284. * from the refcache if it is there. By waiting until afterwards
  2285. * to do the IRELE, we ensure that we won't go inactive in the
  2286. * xfs_refcache_purge_ip routine (although that would be OK).
  2287. */
  2288. xfs_refcache_purge_ip(ip);
  2289. /*
  2290. * If we are using filestreams, kill the stream association.
  2291. * If the file is still open it may get a new one but that
  2292. * will get killed on last close in xfs_close() so we don't
  2293. * have to worry about that.
  2294. */
  2295. if (link_zero && xfs_inode_is_filestream(ip))
  2296. xfs_filestream_deassociate(ip);
  2297. vn_trace_exit(XFS_ITOV(ip), __FUNCTION__, (inst_t *)__return_address);
  2298. /*
  2299. * Let interposed file systems know about removed links.
  2300. */
  2301. bhv_vop_link_removed(XFS_ITOV(ip), dir_vp, link_zero);
  2302. IRELE(ip);
  2303. /* Fall through to std_return with error = 0 */
  2304. std_return:
  2305. if (DM_EVENT_ENABLED(dp, DM_EVENT_POSTREMOVE)) {
  2306. (void) XFS_SEND_NAMESP(mp, DM_EVENT_POSTREMOVE,
  2307. dir_vp, DM_RIGHT_NULL,
  2308. NULL, DM_RIGHT_NULL,
  2309. name, NULL, dm_di_mode, error, 0);
  2310. }
  2311. return error;
  2312. error1:
  2313. xfs_bmap_cancel(&free_list);
  2314. cancel_flags |= XFS_TRANS_ABORT;
  2315. xfs_trans_cancel(tp, cancel_flags);
  2316. goto std_return;
  2317. error_rele:
  2318. /*
  2319. * In this case make sure to not release the inode until after
  2320. * the current transaction is aborted. Releasing it beforehand
  2321. * can cause us to go to xfs_inactive and start a recursive
  2322. * transaction which can easily deadlock with the current one.
  2323. */
  2324. xfs_bmap_cancel(&free_list);
  2325. cancel_flags |= XFS_TRANS_ABORT;
  2326. xfs_trans_cancel(tp, cancel_flags);
  2327. /*
  2328. * Before we drop our extra reference to the inode, purge it
  2329. * from the refcache if it is there. By waiting until afterwards
  2330. * to do the IRELE, we ensure that we won't go inactive in the
  2331. * xfs_refcache_purge_ip routine (although that would be OK).
  2332. */
  2333. xfs_refcache_purge_ip(ip);
  2334. IRELE(ip);
  2335. goto std_return;
  2336. }
  2337. /*
  2338. * xfs_link
  2339. *
  2340. */
  2341. STATIC int
  2342. xfs_link(
  2343. bhv_desc_t *target_dir_bdp,
  2344. bhv_vnode_t *src_vp,
  2345. bhv_vname_t *dentry,
  2346. cred_t *credp)
  2347. {
  2348. xfs_inode_t *tdp, *sip;
  2349. xfs_trans_t *tp;
  2350. xfs_mount_t *mp;
  2351. xfs_inode_t *ips[2];
  2352. int error;
  2353. xfs_bmap_free_t free_list;
  2354. xfs_fsblock_t first_block;
  2355. int cancel_flags;
  2356. int committed;
  2357. bhv_vnode_t *target_dir_vp;
  2358. int resblks;
  2359. char *target_name = VNAME(dentry);
  2360. int target_namelen;
  2361. target_dir_vp = BHV_TO_VNODE(target_dir_bdp);
  2362. vn_trace_entry(target_dir_vp, __FUNCTION__, (inst_t *)__return_address);
  2363. vn_trace_entry(src_vp, __FUNCTION__, (inst_t *)__return_address);
  2364. target_namelen = VNAMELEN(dentry);
  2365. ASSERT(!VN_ISDIR(src_vp));
  2366. sip = xfs_vtoi(src_vp);
  2367. tdp = XFS_BHVTOI(target_dir_bdp);
  2368. mp = tdp->i_mount;
  2369. if (XFS_FORCED_SHUTDOWN(mp))
  2370. return XFS_ERROR(EIO);
  2371. if (DM_EVENT_ENABLED(tdp, DM_EVENT_LINK)) {
  2372. error = XFS_SEND_NAMESP(mp, DM_EVENT_LINK,
  2373. target_dir_vp, DM_RIGHT_NULL,
  2374. src_vp, DM_RIGHT_NULL,
  2375. target_name, NULL, 0, 0, 0);
  2376. if (error)
  2377. return error;
  2378. }
  2379. /* Return through std_return after this point. */
  2380. error = XFS_QM_DQATTACH(mp, sip, 0);
  2381. if (!error && sip != tdp)
  2382. error = XFS_QM_DQATTACH(mp, tdp, 0);
  2383. if (error)
  2384. goto std_return;
  2385. tp = xfs_trans_alloc(mp, XFS_TRANS_LINK);
  2386. cancel_flags = XFS_TRANS_RELEASE_LOG_RES;
  2387. resblks = XFS_LINK_SPACE_RES(mp, target_namelen);
  2388. error = xfs_trans_reserve(tp, resblks, XFS_LINK_LOG_RES(mp), 0,
  2389. XFS_TRANS_PERM_LOG_RES, XFS_LINK_LOG_COUNT);
  2390. if (error == ENOSPC) {
  2391. resblks = 0;
  2392. error = xfs_trans_reserve(tp, 0, XFS_LINK_LOG_RES(mp), 0,
  2393. XFS_TRANS_PERM_LOG_RES, XFS_LINK_LOG_COUNT);
  2394. }
  2395. if (error) {
  2396. cancel_flags = 0;
  2397. goto error_return;
  2398. }
  2399. if (sip->i_ino < tdp->i_ino) {
  2400. ips[0] = sip;
  2401. ips[1] = tdp;
  2402. } else {
  2403. ips[0] = tdp;
  2404. ips[1] = sip;
  2405. }
  2406. xfs_lock_inodes(ips, 2, 0, XFS_ILOCK_EXCL);
  2407. /*
  2408. * Increment vnode ref counts since xfs_trans_commit &
  2409. * xfs_trans_cancel will both unlock the inodes and
  2410. * decrement the associated ref counts.
  2411. */
  2412. VN_HOLD(src_vp);
  2413. VN_HOLD(target_dir_vp);
  2414. xfs_trans_ijoin(tp, sip, XFS_ILOCK_EXCL);
  2415. xfs_trans_ijoin(tp, tdp, XFS_ILOCK_EXCL);
  2416. /*
  2417. * If the source has too many links, we can't make any more to it.
  2418. */
  2419. if (sip->i_d.di_nlink >= XFS_MAXLINK) {
  2420. error = XFS_ERROR(EMLINK);
  2421. goto error_return;
  2422. }
  2423. /*
  2424. * If we are using project inheritance, we only allow hard link
  2425. * creation in our tree when the project IDs are the same; else
  2426. * the tree quota mechanism could be circumvented.
  2427. */
  2428. if (unlikely((tdp->i_d.di_flags & XFS_DIFLAG_PROJINHERIT) &&
  2429. (tdp->i_d.di_projid != sip->i_d.di_projid))) {
  2430. error = XFS_ERROR(EXDEV);
  2431. goto error_return;
  2432. }
  2433. if (resblks == 0 &&
  2434. (error = xfs_dir_canenter(tp, tdp, target_name, target_namelen)))
  2435. goto error_return;
  2436. XFS_BMAP_INIT(&free_list, &first_block);
  2437. error = xfs_dir_createname(tp, tdp, target_name, target_namelen,
  2438. sip->i_ino, &first_block, &free_list,
  2439. resblks);
  2440. if (error)
  2441. goto abort_return;
  2442. xfs_ichgtime(tdp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
  2443. tdp->i_gen++;
  2444. xfs_trans_log_inode(tp, tdp, XFS_ILOG_CORE);
  2445. error = xfs_bumplink(tp, sip);
  2446. if (error)
  2447. goto abort_return;
  2448. /*
  2449. * If this is a synchronous mount, make sure that the
  2450. * link transaction goes to disk before returning to
  2451. * the user.
  2452. */
  2453. if (mp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC)) {
  2454. xfs_trans_set_sync(tp);
  2455. }
  2456. error = xfs_bmap_finish (&tp, &free_list, &committed);
  2457. if (error) {
  2458. xfs_bmap_cancel(&free_list);
  2459. goto abort_return;
  2460. }
  2461. error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES);
  2462. if (error)
  2463. goto std_return;
  2464. /* Fall through to std_return with error = 0. */
  2465. std_return:
  2466. if (DM_EVENT_ENABLED(sip, DM_EVENT_POSTLINK)) {
  2467. (void) XFS_SEND_NAMESP(mp, DM_EVENT_POSTLINK,
  2468. target_dir_vp, DM_RIGHT_NULL,
  2469. src_vp, DM_RIGHT_NULL,
  2470. target_name, NULL, 0, error, 0);
  2471. }
  2472. return error;
  2473. abort_return:
  2474. cancel_flags |= XFS_TRANS_ABORT;
  2475. /* FALLTHROUGH */
  2476. error_return:
  2477. xfs_trans_cancel(tp, cancel_flags);
  2478. goto std_return;
  2479. }
  2480. /*
  2481. * xfs_mkdir
  2482. *
  2483. */
  2484. STATIC int
  2485. xfs_mkdir(
  2486. bhv_desc_t *dir_bdp,
  2487. bhv_vname_t *dentry,
  2488. bhv_vattr_t *vap,
  2489. bhv_vnode_t **vpp,
  2490. cred_t *credp)
  2491. {
  2492. char *dir_name = VNAME(dentry);
  2493. xfs_inode_t *dp;
  2494. xfs_inode_t *cdp; /* inode of created dir */
  2495. bhv_vnode_t *cvp; /* vnode of created dir */
  2496. xfs_trans_t *tp;
  2497. xfs_mount_t *mp;
  2498. int cancel_flags;
  2499. int error;
  2500. int committed;
  2501. xfs_bmap_free_t free_list;
  2502. xfs_fsblock_t first_block;
  2503. bhv_vnode_t *dir_vp;
  2504. boolean_t dp_joined_to_trans;
  2505. boolean_t created = B_FALSE;
  2506. int dm_event_sent = 0;
  2507. xfs_prid_t prid;
  2508. struct xfs_dquot *udqp, *gdqp;
  2509. uint resblks;
  2510. int dm_di_mode;
  2511. int dir_namelen;
  2512. dir_vp = BHV_TO_VNODE(dir_bdp);
  2513. dp = XFS_BHVTOI(dir_bdp);
  2514. mp = dp->i_mount;
  2515. if (XFS_FORCED_SHUTDOWN(mp))
  2516. return XFS_ERROR(EIO);
  2517. dir_namelen = VNAMELEN(dentry);
  2518. tp = NULL;
  2519. dp_joined_to_trans = B_FALSE;
  2520. dm_di_mode = vap->va_mode;
  2521. if (DM_EVENT_ENABLED(dp, DM_EVENT_CREATE)) {
  2522. error = XFS_SEND_NAMESP(mp, DM_EVENT_CREATE,
  2523. dir_vp, DM_RIGHT_NULL, NULL,
  2524. DM_RIGHT_NULL, dir_name, NULL,
  2525. dm_di_mode, 0, 0);
  2526. if (error)
  2527. return error;
  2528. dm_event_sent = 1;
  2529. }
  2530. /* Return through std_return after this point. */
  2531. vn_trace_entry(dir_vp, __FUNCTION__, (inst_t *)__return_address);
  2532. mp = dp->i_mount;
  2533. udqp = gdqp = NULL;
  2534. if (dp->i_d.di_flags & XFS_DIFLAG_PROJINHERIT)
  2535. prid = dp->i_d.di_projid;
  2536. else if (vap->va_mask & XFS_AT_PROJID)
  2537. prid = (xfs_prid_t)vap->va_projid;
  2538. else
  2539. prid = (xfs_prid_t)dfltprid;
  2540. /*
  2541. * Make sure that we have allocated dquot(s) on disk.
  2542. */
  2543. error = XFS_QM_DQVOPALLOC(mp, dp,
  2544. current_fsuid(credp), current_fsgid(credp), prid,
  2545. XFS_QMOPT_QUOTALL | XFS_QMOPT_INHERIT, &udqp, &gdqp);
  2546. if (error)
  2547. goto std_return;
  2548. tp = xfs_trans_alloc(mp, XFS_TRANS_MKDIR);
  2549. cancel_flags = XFS_TRANS_RELEASE_LOG_RES;
  2550. resblks = XFS_MKDIR_SPACE_RES(mp, dir_namelen);
  2551. error = xfs_trans_reserve(tp, resblks, XFS_MKDIR_LOG_RES(mp), 0,
  2552. XFS_TRANS_PERM_LOG_RES, XFS_MKDIR_LOG_COUNT);
  2553. if (error == ENOSPC) {
  2554. resblks = 0;
  2555. error = xfs_trans_reserve(tp, 0, XFS_MKDIR_LOG_RES(mp), 0,
  2556. XFS_TRANS_PERM_LOG_RES,
  2557. XFS_MKDIR_LOG_COUNT);
  2558. }
  2559. if (error) {
  2560. cancel_flags = 0;
  2561. dp = NULL;
  2562. goto error_return;
  2563. }
  2564. xfs_ilock(dp, XFS_ILOCK_EXCL | XFS_ILOCK_PARENT);
  2565. /*
  2566. * Check for directory link count overflow.
  2567. */
  2568. if (dp->i_d.di_nlink >= XFS_MAXLINK) {
  2569. error = XFS_ERROR(EMLINK);
  2570. goto error_return;
  2571. }
  2572. /*
  2573. * Reserve disk quota and the inode.
  2574. */
  2575. error = XFS_TRANS_RESERVE_QUOTA(mp, tp, udqp, gdqp, resblks, 1, 0);
  2576. if (error)
  2577. goto error_return;
  2578. if (resblks == 0 &&
  2579. (error = xfs_dir_canenter(tp, dp, dir_name, dir_namelen)))
  2580. goto error_return;
  2581. /*
  2582. * create the directory inode.
  2583. */
  2584. error = xfs_dir_ialloc(&tp, dp, vap->va_mode, 2,
  2585. 0, credp, prid, resblks > 0,
  2586. &cdp, NULL);
  2587. if (error) {
  2588. if (error == ENOSPC)
  2589. goto error_return;
  2590. goto abort_return;
  2591. }
  2592. ITRACE(cdp);
  2593. /*
  2594. * Now we add the directory inode to the transaction.
  2595. * We waited until now since xfs_dir_ialloc might start
  2596. * a new transaction. Had we joined the transaction
  2597. * earlier, the locks might have gotten released.
  2598. */
  2599. VN_HOLD(dir_vp);
  2600. xfs_trans_ijoin(tp, dp, XFS_ILOCK_EXCL);
  2601. dp_joined_to_trans = B_TRUE;
  2602. XFS_BMAP_INIT(&free_list, &first_block);
  2603. error = xfs_dir_createname(tp, dp, dir_name, dir_namelen, cdp->i_ino,
  2604. &first_block, &free_list, resblks ?
  2605. resblks - XFS_IALLOC_SPACE_RES(mp) : 0);
  2606. if (error) {
  2607. ASSERT(error != ENOSPC);
  2608. goto error1;
  2609. }
  2610. xfs_ichgtime(dp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
  2611. /*
  2612. * Bump the in memory version number of the parent directory
  2613. * so that other processes accessing it will recognize that
  2614. * the directory has changed.
  2615. */
  2616. dp->i_gen++;
  2617. error = xfs_dir_init(tp, cdp, dp);
  2618. if (error)
  2619. goto error2;
  2620. cdp->i_gen = 1;
  2621. error = xfs_bumplink(tp, dp);
  2622. if (error)
  2623. goto error2;
  2624. cvp = XFS_ITOV(cdp);
  2625. created = B_TRUE;
  2626. *vpp = cvp;
  2627. IHOLD(cdp);
  2628. /*
  2629. * Attach the dquots to the new inode and modify the icount incore.
  2630. */
  2631. XFS_QM_DQVOPCREATE(mp, tp, cdp, udqp, gdqp);
  2632. /*
  2633. * If this is a synchronous mount, make sure that the
  2634. * mkdir transaction goes to disk before returning to
  2635. * the user.
  2636. */
  2637. if (mp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC)) {
  2638. xfs_trans_set_sync(tp);
  2639. }
  2640. error = xfs_bmap_finish(&tp, &free_list, &committed);
  2641. if (error) {
  2642. IRELE(cdp);
  2643. goto error2;
  2644. }
  2645. error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES);
  2646. XFS_QM_DQRELE(mp, udqp);
  2647. XFS_QM_DQRELE(mp, gdqp);
  2648. if (error) {
  2649. IRELE(cdp);
  2650. }
  2651. /* Fall through to std_return with error = 0 or errno from
  2652. * xfs_trans_commit. */
  2653. std_return:
  2654. if ((created || (error != 0 && dm_event_sent != 0)) &&
  2655. DM_EVENT_ENABLED(XFS_BHVTOI(dir_bdp), DM_EVENT_POSTCREATE)) {
  2656. (void) XFS_SEND_NAMESP(mp, DM_EVENT_POSTCREATE,
  2657. dir_vp, DM_RIGHT_NULL,
  2658. created ? XFS_ITOV(cdp):NULL,
  2659. DM_RIGHT_NULL,
  2660. dir_name, NULL,
  2661. dm_di_mode, error, 0);
  2662. }
  2663. return error;
  2664. error2:
  2665. error1:
  2666. xfs_bmap_cancel(&free_list);
  2667. abort_return:
  2668. cancel_flags |= XFS_TRANS_ABORT;
  2669. error_return:
  2670. xfs_trans_cancel(tp, cancel_flags);
  2671. XFS_QM_DQRELE(mp, udqp);
  2672. XFS_QM_DQRELE(mp, gdqp);
  2673. if (!dp_joined_to_trans && (dp != NULL)) {
  2674. xfs_iunlock(dp, XFS_ILOCK_EXCL);
  2675. }
  2676. goto std_return;
  2677. }
  2678. /*
  2679. * xfs_rmdir
  2680. *
  2681. */
  2682. STATIC int
  2683. xfs_rmdir(
  2684. bhv_desc_t *dir_bdp,
  2685. bhv_vname_t *dentry,
  2686. cred_t *credp)
  2687. {
  2688. char *name = VNAME(dentry);
  2689. xfs_inode_t *dp;
  2690. xfs_inode_t *cdp; /* child directory */
  2691. xfs_trans_t *tp;
  2692. xfs_mount_t *mp;
  2693. int error;
  2694. xfs_bmap_free_t free_list;
  2695. xfs_fsblock_t first_block;
  2696. int cancel_flags;
  2697. int committed;
  2698. bhv_vnode_t *dir_vp;
  2699. int dm_di_mode = S_IFDIR;
  2700. int last_cdp_link;
  2701. int namelen;
  2702. uint resblks;
  2703. dir_vp = BHV_TO_VNODE(dir_bdp);
  2704. dp = XFS_BHVTOI(dir_bdp);
  2705. mp = dp->i_mount;
  2706. vn_trace_entry(dir_vp, __FUNCTION__, (inst_t *)__return_address);
  2707. if (XFS_FORCED_SHUTDOWN(XFS_BHVTOI(dir_bdp)->i_mount))
  2708. return XFS_ERROR(EIO);
  2709. namelen = VNAMELEN(dentry);
  2710. if (!xfs_get_dir_entry(dentry, &cdp)) {
  2711. dm_di_mode = cdp->i_d.di_mode;
  2712. IRELE(cdp);
  2713. }
  2714. if (DM_EVENT_ENABLED(dp, DM_EVENT_REMOVE)) {
  2715. error = XFS_SEND_NAMESP(mp, DM_EVENT_REMOVE,
  2716. dir_vp, DM_RIGHT_NULL,
  2717. NULL, DM_RIGHT_NULL,
  2718. name, NULL, dm_di_mode, 0, 0);
  2719. if (error)
  2720. return XFS_ERROR(error);
  2721. }
  2722. /* Return through std_return after this point. */
  2723. cdp = NULL;
  2724. /*
  2725. * We need to get a reference to cdp before we get our log
  2726. * reservation. The reason for this is that we cannot call
  2727. * xfs_iget for an inode for which we do not have a reference
  2728. * once we've acquired a log reservation. This is because the
  2729. * inode we are trying to get might be in xfs_inactive going
  2730. * for a log reservation. Since we'll have to wait for the
  2731. * inactive code to complete before returning from xfs_iget,
  2732. * we need to make sure that we don't have log space reserved
  2733. * when we call xfs_iget. Instead we get an unlocked reference
  2734. * to the inode before getting our log reservation.
  2735. */
  2736. error = xfs_get_dir_entry(dentry, &cdp);
  2737. if (error) {
  2738. REMOVE_DEBUG_TRACE(__LINE__);
  2739. goto std_return;
  2740. }
  2741. mp = dp->i_mount;
  2742. dm_di_mode = cdp->i_d.di_mode;
  2743. /*
  2744. * Get the dquots for the inodes.
  2745. */
  2746. error = XFS_QM_DQATTACH(mp, dp, 0);
  2747. if (!error && dp != cdp)
  2748. error = XFS_QM_DQATTACH(mp, cdp, 0);
  2749. if (error) {
  2750. IRELE(cdp);
  2751. REMOVE_DEBUG_TRACE(__LINE__);
  2752. goto std_return;
  2753. }
  2754. tp = xfs_trans_alloc(mp, XFS_TRANS_RMDIR);
  2755. cancel_flags = XFS_TRANS_RELEASE_LOG_RES;
  2756. /*
  2757. * We try to get the real space reservation first,
  2758. * allowing for directory btree deletion(s) implying
  2759. * possible bmap insert(s). If we can't get the space
  2760. * reservation then we use 0 instead, and avoid the bmap
  2761. * btree insert(s) in the directory code by, if the bmap
  2762. * insert tries to happen, instead trimming the LAST
  2763. * block from the directory.
  2764. */
  2765. resblks = XFS_REMOVE_SPACE_RES(mp);
  2766. error = xfs_trans_reserve(tp, resblks, XFS_REMOVE_LOG_RES(mp), 0,
  2767. XFS_TRANS_PERM_LOG_RES, XFS_DEFAULT_LOG_COUNT);
  2768. if (error == ENOSPC) {
  2769. resblks = 0;
  2770. error = xfs_trans_reserve(tp, 0, XFS_REMOVE_LOG_RES(mp), 0,
  2771. XFS_TRANS_PERM_LOG_RES, XFS_DEFAULT_LOG_COUNT);
  2772. }
  2773. if (error) {
  2774. ASSERT(error != ENOSPC);
  2775. cancel_flags = 0;
  2776. IRELE(cdp);
  2777. goto error_return;
  2778. }
  2779. XFS_BMAP_INIT(&free_list, &first_block);
  2780. /*
  2781. * Now lock the child directory inode and the parent directory
  2782. * inode in the proper order. This will take care of validating
  2783. * that the directory entry for the child directory inode has
  2784. * not changed while we were obtaining a log reservation.
  2785. */
  2786. error = xfs_lock_dir_and_entry(dp, cdp);
  2787. if (error) {
  2788. xfs_trans_cancel(tp, cancel_flags);
  2789. IRELE(cdp);
  2790. goto std_return;
  2791. }
  2792. xfs_trans_ijoin(tp, dp, XFS_ILOCK_EXCL);
  2793. if (dp != cdp) {
  2794. /*
  2795. * Only increment the parent directory vnode count if
  2796. * we didn't bump it in looking up cdp. The only time
  2797. * we don't bump it is when we're looking up ".".
  2798. */
  2799. VN_HOLD(dir_vp);
  2800. }
  2801. ITRACE(cdp);
  2802. xfs_trans_ijoin(tp, cdp, XFS_ILOCK_EXCL);
  2803. ASSERT(cdp->i_d.di_nlink >= 2);
  2804. if (cdp->i_d.di_nlink != 2) {
  2805. error = XFS_ERROR(ENOTEMPTY);
  2806. goto error_return;
  2807. }
  2808. if (!xfs_dir_isempty(cdp)) {
  2809. error = XFS_ERROR(ENOTEMPTY);
  2810. goto error_return;
  2811. }
  2812. error = xfs_dir_removename(tp, dp, name, namelen, cdp->i_ino,
  2813. &first_block, &free_list, resblks);
  2814. if (error)
  2815. goto error1;
  2816. xfs_ichgtime(dp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
  2817. /*
  2818. * Bump the in memory generation count on the parent
  2819. * directory so that other can know that it has changed.
  2820. */
  2821. dp->i_gen++;
  2822. /*
  2823. * Drop the link from cdp's "..".
  2824. */
  2825. error = xfs_droplink(tp, dp);
  2826. if (error) {
  2827. goto error1;
  2828. }
  2829. /*
  2830. * Drop the link from dp to cdp.
  2831. */
  2832. error = xfs_droplink(tp, cdp);
  2833. if (error) {
  2834. goto error1;
  2835. }
  2836. /*
  2837. * Drop the "." link from cdp to self.
  2838. */
  2839. error = xfs_droplink(tp, cdp);
  2840. if (error) {
  2841. goto error1;
  2842. }
  2843. /* Determine these before committing transaction */
  2844. last_cdp_link = (cdp)->i_d.di_nlink==0;
  2845. /*
  2846. * Take an extra ref on the child vnode so that it
  2847. * does not go to xfs_inactive() from within the commit.
  2848. */
  2849. IHOLD(cdp);
  2850. /*
  2851. * If this is a synchronous mount, make sure that the
  2852. * rmdir transaction goes to disk before returning to
  2853. * the user.
  2854. */
  2855. if (mp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC)) {
  2856. xfs_trans_set_sync(tp);
  2857. }
  2858. error = xfs_bmap_finish (&tp, &free_list, &committed);
  2859. if (error) {
  2860. xfs_bmap_cancel(&free_list);
  2861. xfs_trans_cancel(tp, (XFS_TRANS_RELEASE_LOG_RES |
  2862. XFS_TRANS_ABORT));
  2863. IRELE(cdp);
  2864. goto std_return;
  2865. }
  2866. error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES);
  2867. if (error) {
  2868. IRELE(cdp);
  2869. goto std_return;
  2870. }
  2871. /*
  2872. * Let interposed file systems know about removed links.
  2873. */
  2874. bhv_vop_link_removed(XFS_ITOV(cdp), dir_vp, last_cdp_link);
  2875. IRELE(cdp);
  2876. /* Fall through to std_return with error = 0 or the errno
  2877. * from xfs_trans_commit. */
  2878. std_return:
  2879. if (DM_EVENT_ENABLED(dp, DM_EVENT_POSTREMOVE)) {
  2880. (void) XFS_SEND_NAMESP(mp, DM_EVENT_POSTREMOVE,
  2881. dir_vp, DM_RIGHT_NULL,
  2882. NULL, DM_RIGHT_NULL,
  2883. name, NULL, dm_di_mode,
  2884. error, 0);
  2885. }
  2886. return error;
  2887. error1:
  2888. xfs_bmap_cancel(&free_list);
  2889. cancel_flags |= XFS_TRANS_ABORT;
  2890. /* FALLTHROUGH */
  2891. error_return:
  2892. xfs_trans_cancel(tp, cancel_flags);
  2893. goto std_return;
  2894. }
  2895. STATIC int
  2896. xfs_symlink(
  2897. bhv_desc_t *dir_bdp,
  2898. bhv_vname_t *dentry,
  2899. bhv_vattr_t *vap,
  2900. char *target_path,
  2901. bhv_vnode_t **vpp,
  2902. cred_t *credp)
  2903. {
  2904. xfs_trans_t *tp;
  2905. xfs_mount_t *mp;
  2906. xfs_inode_t *dp;
  2907. xfs_inode_t *ip;
  2908. int error;
  2909. int pathlen;
  2910. xfs_bmap_free_t free_list;
  2911. xfs_fsblock_t first_block;
  2912. boolean_t dp_joined_to_trans;
  2913. bhv_vnode_t *dir_vp;
  2914. uint cancel_flags;
  2915. int committed;
  2916. xfs_fileoff_t first_fsb;
  2917. xfs_filblks_t fs_blocks;
  2918. int nmaps;
  2919. xfs_bmbt_irec_t mval[SYMLINK_MAPS];
  2920. xfs_daddr_t d;
  2921. char *cur_chunk;
  2922. int byte_cnt;
  2923. int n;
  2924. xfs_buf_t *bp;
  2925. xfs_prid_t prid;
  2926. struct xfs_dquot *udqp, *gdqp;
  2927. uint resblks;
  2928. char *link_name = VNAME(dentry);
  2929. int link_namelen;
  2930. *vpp = NULL;
  2931. dir_vp = BHV_TO_VNODE(dir_bdp);
  2932. dp = XFS_BHVTOI(dir_bdp);
  2933. dp_joined_to_trans = B_FALSE;
  2934. error = 0;
  2935. ip = NULL;
  2936. tp = NULL;
  2937. vn_trace_entry(dir_vp, __FUNCTION__, (inst_t *)__return_address);
  2938. mp = dp->i_mount;
  2939. if (XFS_FORCED_SHUTDOWN(mp))
  2940. return XFS_ERROR(EIO);
  2941. link_namelen = VNAMELEN(dentry);
  2942. /*
  2943. * Check component lengths of the target path name.
  2944. */
  2945. pathlen = strlen(target_path);
  2946. if (pathlen >= MAXPATHLEN) /* total string too long */
  2947. return XFS_ERROR(ENAMETOOLONG);
  2948. if (pathlen >= MAXNAMELEN) { /* is any component too long? */
  2949. int len, total;
  2950. char *path;
  2951. for (total = 0, path = target_path; total < pathlen;) {
  2952. /*
  2953. * Skip any slashes.
  2954. */
  2955. while(*path == '/') {
  2956. total++;
  2957. path++;
  2958. }
  2959. /*
  2960. * Count up to the next slash or end of path.
  2961. * Error out if the component is bigger than MAXNAMELEN.
  2962. */
  2963. for(len = 0; *path != '/' && total < pathlen;total++, path++) {
  2964. if (++len >= MAXNAMELEN) {
  2965. error = ENAMETOOLONG;
  2966. return error;
  2967. }
  2968. }
  2969. }
  2970. }
  2971. if (DM_EVENT_ENABLED(dp, DM_EVENT_SYMLINK)) {
  2972. error = XFS_SEND_NAMESP(mp, DM_EVENT_SYMLINK, dir_vp,
  2973. DM_RIGHT_NULL, NULL, DM_RIGHT_NULL,
  2974. link_name, target_path, 0, 0, 0);
  2975. if (error)
  2976. return error;
  2977. }
  2978. /* Return through std_return after this point. */
  2979. udqp = gdqp = NULL;
  2980. if (dp->i_d.di_flags & XFS_DIFLAG_PROJINHERIT)
  2981. prid = dp->i_d.di_projid;
  2982. else if (vap->va_mask & XFS_AT_PROJID)
  2983. prid = (xfs_prid_t)vap->va_projid;
  2984. else
  2985. prid = (xfs_prid_t)dfltprid;
  2986. /*
  2987. * Make sure that we have allocated dquot(s) on disk.
  2988. */
  2989. error = XFS_QM_DQVOPALLOC(mp, dp,
  2990. current_fsuid(credp), current_fsgid(credp), prid,
  2991. XFS_QMOPT_QUOTALL | XFS_QMOPT_INHERIT, &udqp, &gdqp);
  2992. if (error)
  2993. goto std_return;
  2994. tp = xfs_trans_alloc(mp, XFS_TRANS_SYMLINK);
  2995. cancel_flags = XFS_TRANS_RELEASE_LOG_RES;
  2996. /*
  2997. * The symlink will fit into the inode data fork?
  2998. * There can't be any attributes so we get the whole variable part.
  2999. */
  3000. if (pathlen <= XFS_LITINO(mp))
  3001. fs_blocks = 0;
  3002. else
  3003. fs_blocks = XFS_B_TO_FSB(mp, pathlen);
  3004. resblks = XFS_SYMLINK_SPACE_RES(mp, link_namelen, fs_blocks);
  3005. error = xfs_trans_reserve(tp, resblks, XFS_SYMLINK_LOG_RES(mp), 0,
  3006. XFS_TRANS_PERM_LOG_RES, XFS_SYMLINK_LOG_COUNT);
  3007. if (error == ENOSPC && fs_blocks == 0) {
  3008. resblks = 0;
  3009. error = xfs_trans_reserve(tp, 0, XFS_SYMLINK_LOG_RES(mp), 0,
  3010. XFS_TRANS_PERM_LOG_RES, XFS_SYMLINK_LOG_COUNT);
  3011. }
  3012. if (error) {
  3013. cancel_flags = 0;
  3014. dp = NULL;
  3015. goto error_return;
  3016. }
  3017. xfs_ilock(dp, XFS_ILOCK_EXCL | XFS_ILOCK_PARENT);
  3018. /*
  3019. * Check whether the directory allows new symlinks or not.
  3020. */
  3021. if (dp->i_d.di_flags & XFS_DIFLAG_NOSYMLINKS) {
  3022. error = XFS_ERROR(EPERM);
  3023. goto error_return;
  3024. }
  3025. /*
  3026. * Reserve disk quota : blocks and inode.
  3027. */
  3028. error = XFS_TRANS_RESERVE_QUOTA(mp, tp, udqp, gdqp, resblks, 1, 0);
  3029. if (error)
  3030. goto error_return;
  3031. /*
  3032. * Check for ability to enter directory entry, if no space reserved.
  3033. */
  3034. if (resblks == 0 &&
  3035. (error = xfs_dir_canenter(tp, dp, link_name, link_namelen)))
  3036. goto error_return;
  3037. /*
  3038. * Initialize the bmap freelist prior to calling either
  3039. * bmapi or the directory create code.
  3040. */
  3041. XFS_BMAP_INIT(&free_list, &first_block);
  3042. /*
  3043. * Allocate an inode for the symlink.
  3044. */
  3045. error = xfs_dir_ialloc(&tp, dp, S_IFLNK | (vap->va_mode&~S_IFMT),
  3046. 1, 0, credp, prid, resblks > 0, &ip, NULL);
  3047. if (error) {
  3048. if (error == ENOSPC)
  3049. goto error_return;
  3050. goto error1;
  3051. }
  3052. ITRACE(ip);
  3053. VN_HOLD(dir_vp);
  3054. xfs_trans_ijoin(tp, dp, XFS_ILOCK_EXCL);
  3055. dp_joined_to_trans = B_TRUE;
  3056. /*
  3057. * Also attach the dquot(s) to it, if applicable.
  3058. */
  3059. XFS_QM_DQVOPCREATE(mp, tp, ip, udqp, gdqp);
  3060. if (resblks)
  3061. resblks -= XFS_IALLOC_SPACE_RES(mp);
  3062. /*
  3063. * If the symlink will fit into the inode, write it inline.
  3064. */
  3065. if (pathlen <= XFS_IFORK_DSIZE(ip)) {
  3066. xfs_idata_realloc(ip, pathlen, XFS_DATA_FORK);
  3067. memcpy(ip->i_df.if_u1.if_data, target_path, pathlen);
  3068. ip->i_d.di_size = pathlen;
  3069. /*
  3070. * The inode was initially created in extent format.
  3071. */
  3072. ip->i_df.if_flags &= ~(XFS_IFEXTENTS | XFS_IFBROOT);
  3073. ip->i_df.if_flags |= XFS_IFINLINE;
  3074. ip->i_d.di_format = XFS_DINODE_FMT_LOCAL;
  3075. xfs_trans_log_inode(tp, ip, XFS_ILOG_DDATA | XFS_ILOG_CORE);
  3076. } else {
  3077. first_fsb = 0;
  3078. nmaps = SYMLINK_MAPS;
  3079. error = xfs_bmapi(tp, ip, first_fsb, fs_blocks,
  3080. XFS_BMAPI_WRITE | XFS_BMAPI_METADATA,
  3081. &first_block, resblks, mval, &nmaps,
  3082. &free_list, NULL);
  3083. if (error) {
  3084. goto error1;
  3085. }
  3086. if (resblks)
  3087. resblks -= fs_blocks;
  3088. ip->i_d.di_size = pathlen;
  3089. xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
  3090. cur_chunk = target_path;
  3091. for (n = 0; n < nmaps; n++) {
  3092. d = XFS_FSB_TO_DADDR(mp, mval[n].br_startblock);
  3093. byte_cnt = XFS_FSB_TO_B(mp, mval[n].br_blockcount);
  3094. bp = xfs_trans_get_buf(tp, mp->m_ddev_targp, d,
  3095. BTOBB(byte_cnt), 0);
  3096. ASSERT(bp && !XFS_BUF_GETERROR(bp));
  3097. if (pathlen < byte_cnt) {
  3098. byte_cnt = pathlen;
  3099. }
  3100. pathlen -= byte_cnt;
  3101. memcpy(XFS_BUF_PTR(bp), cur_chunk, byte_cnt);
  3102. cur_chunk += byte_cnt;
  3103. xfs_trans_log_buf(tp, bp, 0, byte_cnt - 1);
  3104. }
  3105. }
  3106. /*
  3107. * Create the directory entry for the symlink.
  3108. */
  3109. error = xfs_dir_createname(tp, dp, link_name, link_namelen, ip->i_ino,
  3110. &first_block, &free_list, resblks);
  3111. if (error)
  3112. goto error1;
  3113. xfs_ichgtime(dp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
  3114. xfs_trans_log_inode(tp, dp, XFS_ILOG_CORE);
  3115. /*
  3116. * Bump the in memory version number of the parent directory
  3117. * so that other processes accessing it will recognize that
  3118. * the directory has changed.
  3119. */
  3120. dp->i_gen++;
  3121. /*
  3122. * If this is a synchronous mount, make sure that the
  3123. * symlink transaction goes to disk before returning to
  3124. * the user.
  3125. */
  3126. if (mp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC)) {
  3127. xfs_trans_set_sync(tp);
  3128. }
  3129. /*
  3130. * xfs_trans_commit normally decrements the vnode ref count
  3131. * when it unlocks the inode. Since we want to return the
  3132. * vnode to the caller, we bump the vnode ref count now.
  3133. */
  3134. IHOLD(ip);
  3135. error = xfs_bmap_finish(&tp, &free_list, &committed);
  3136. if (error) {
  3137. goto error2;
  3138. }
  3139. error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES);
  3140. XFS_QM_DQRELE(mp, udqp);
  3141. XFS_QM_DQRELE(mp, gdqp);
  3142. /* Fall through to std_return with error = 0 or errno from
  3143. * xfs_trans_commit */
  3144. std_return:
  3145. if (DM_EVENT_ENABLED(XFS_BHVTOI(dir_bdp), DM_EVENT_POSTSYMLINK)) {
  3146. (void) XFS_SEND_NAMESP(mp, DM_EVENT_POSTSYMLINK,
  3147. dir_vp, DM_RIGHT_NULL,
  3148. error ? NULL : XFS_ITOV(ip),
  3149. DM_RIGHT_NULL, link_name, target_path,
  3150. 0, error, 0);
  3151. }
  3152. if (!error) {
  3153. bhv_vnode_t *vp;
  3154. ASSERT(ip);
  3155. vp = XFS_ITOV(ip);
  3156. *vpp = vp;
  3157. }
  3158. return error;
  3159. error2:
  3160. IRELE(ip);
  3161. error1:
  3162. xfs_bmap_cancel(&free_list);
  3163. cancel_flags |= XFS_TRANS_ABORT;
  3164. error_return:
  3165. xfs_trans_cancel(tp, cancel_flags);
  3166. XFS_QM_DQRELE(mp, udqp);
  3167. XFS_QM_DQRELE(mp, gdqp);
  3168. if (!dp_joined_to_trans && (dp != NULL)) {
  3169. xfs_iunlock(dp, XFS_ILOCK_EXCL);
  3170. }
  3171. goto std_return;
  3172. }
  3173. /*
  3174. * xfs_fid2
  3175. *
  3176. * A fid routine that takes a pointer to a previously allocated
  3177. * fid structure (like xfs_fast_fid) but uses a 64 bit inode number.
  3178. */
  3179. STATIC int
  3180. xfs_fid2(
  3181. bhv_desc_t *bdp,
  3182. fid_t *fidp)
  3183. {
  3184. xfs_inode_t *ip;
  3185. xfs_fid2_t *xfid;
  3186. vn_trace_entry(BHV_TO_VNODE(bdp), __FUNCTION__,
  3187. (inst_t *)__return_address);
  3188. ASSERT(sizeof(fid_t) >= sizeof(xfs_fid2_t));
  3189. xfid = (xfs_fid2_t *)fidp;
  3190. ip = XFS_BHVTOI(bdp);
  3191. xfid->fid_len = sizeof(xfs_fid2_t) - sizeof(xfid->fid_len);
  3192. xfid->fid_pad = 0;
  3193. /*
  3194. * use memcpy because the inode is a long long and there's no
  3195. * assurance that xfid->fid_ino is properly aligned.
  3196. */
  3197. memcpy(&xfid->fid_ino, &ip->i_ino, sizeof(xfid->fid_ino));
  3198. xfid->fid_gen = ip->i_d.di_gen;
  3199. return 0;
  3200. }
  3201. /*
  3202. * xfs_rwlock
  3203. */
  3204. int
  3205. xfs_rwlock(
  3206. bhv_desc_t *bdp,
  3207. bhv_vrwlock_t locktype)
  3208. {
  3209. xfs_inode_t *ip;
  3210. bhv_vnode_t *vp;
  3211. vp = BHV_TO_VNODE(bdp);
  3212. if (VN_ISDIR(vp))
  3213. return 1;
  3214. ip = XFS_BHVTOI(bdp);
  3215. if (locktype == VRWLOCK_WRITE) {
  3216. xfs_ilock(ip, XFS_IOLOCK_EXCL);
  3217. } else if (locktype == VRWLOCK_TRY_READ) {
  3218. return xfs_ilock_nowait(ip, XFS_IOLOCK_SHARED);
  3219. } else if (locktype == VRWLOCK_TRY_WRITE) {
  3220. return xfs_ilock_nowait(ip, XFS_IOLOCK_EXCL);
  3221. } else {
  3222. ASSERT((locktype == VRWLOCK_READ) ||
  3223. (locktype == VRWLOCK_WRITE_DIRECT));
  3224. xfs_ilock(ip, XFS_IOLOCK_SHARED);
  3225. }
  3226. return 1;
  3227. }
  3228. /*
  3229. * xfs_rwunlock
  3230. */
  3231. void
  3232. xfs_rwunlock(
  3233. bhv_desc_t *bdp,
  3234. bhv_vrwlock_t locktype)
  3235. {
  3236. xfs_inode_t *ip;
  3237. bhv_vnode_t *vp;
  3238. vp = BHV_TO_VNODE(bdp);
  3239. if (VN_ISDIR(vp))
  3240. return;
  3241. ip = XFS_BHVTOI(bdp);
  3242. if (locktype == VRWLOCK_WRITE) {
  3243. /*
  3244. * In the write case, we may have added a new entry to
  3245. * the reference cache. This might store a pointer to
  3246. * an inode to be released in this inode. If it is there,
  3247. * clear the pointer and release the inode after unlocking
  3248. * this one.
  3249. */
  3250. xfs_refcache_iunlock(ip, XFS_IOLOCK_EXCL);
  3251. } else {
  3252. ASSERT((locktype == VRWLOCK_READ) ||
  3253. (locktype == VRWLOCK_WRITE_DIRECT));
  3254. xfs_iunlock(ip, XFS_IOLOCK_SHARED);
  3255. }
  3256. return;
  3257. }
  3258. STATIC int
  3259. xfs_inode_flush(
  3260. bhv_desc_t *bdp,
  3261. int flags)
  3262. {
  3263. xfs_inode_t *ip;
  3264. xfs_mount_t *mp;
  3265. xfs_inode_log_item_t *iip;
  3266. int error = 0;
  3267. ip = XFS_BHVTOI(bdp);
  3268. mp = ip->i_mount;
  3269. iip = ip->i_itemp;
  3270. if (XFS_FORCED_SHUTDOWN(mp))
  3271. return XFS_ERROR(EIO);
  3272. /*
  3273. * Bypass inodes which have already been cleaned by
  3274. * the inode flush clustering code inside xfs_iflush
  3275. */
  3276. if ((ip->i_update_core == 0) &&
  3277. ((iip == NULL) || !(iip->ili_format.ilf_fields & XFS_ILOG_ALL)))
  3278. return 0;
  3279. if (flags & FLUSH_LOG) {
  3280. if (iip && iip->ili_last_lsn) {
  3281. xlog_t *log = mp->m_log;
  3282. xfs_lsn_t sync_lsn;
  3283. int s, log_flags = XFS_LOG_FORCE;
  3284. s = GRANT_LOCK(log);
  3285. sync_lsn = log->l_last_sync_lsn;
  3286. GRANT_UNLOCK(log, s);
  3287. if ((XFS_LSN_CMP(iip->ili_last_lsn, sync_lsn) > 0)) {
  3288. if (flags & FLUSH_SYNC)
  3289. log_flags |= XFS_LOG_SYNC;
  3290. error = xfs_log_force(mp, iip->ili_last_lsn, log_flags);
  3291. if (error)
  3292. return error;
  3293. }
  3294. if (ip->i_update_core == 0)
  3295. return 0;
  3296. }
  3297. }
  3298. /*
  3299. * We make this non-blocking if the inode is contended,
  3300. * return EAGAIN to indicate to the caller that they
  3301. * did not succeed. This prevents the flush path from
  3302. * blocking on inodes inside another operation right
  3303. * now, they get caught later by xfs_sync.
  3304. */
  3305. if (flags & FLUSH_INODE) {
  3306. int flush_flags;
  3307. if (flags & FLUSH_SYNC) {
  3308. xfs_ilock(ip, XFS_ILOCK_SHARED);
  3309. xfs_iflock(ip);
  3310. } else if (xfs_ilock_nowait(ip, XFS_ILOCK_SHARED)) {
  3311. if (xfs_ipincount(ip) || !xfs_iflock_nowait(ip)) {
  3312. xfs_iunlock(ip, XFS_ILOCK_SHARED);
  3313. return EAGAIN;
  3314. }
  3315. } else {
  3316. return EAGAIN;
  3317. }
  3318. if (flags & FLUSH_SYNC)
  3319. flush_flags = XFS_IFLUSH_SYNC;
  3320. else
  3321. flush_flags = XFS_IFLUSH_ASYNC;
  3322. error = xfs_iflush(ip, flush_flags);
  3323. xfs_iunlock(ip, XFS_ILOCK_SHARED);
  3324. }
  3325. return error;
  3326. }
  3327. int
  3328. xfs_set_dmattrs (
  3329. bhv_desc_t *bdp,
  3330. u_int evmask,
  3331. u_int16_t state,
  3332. cred_t *credp)
  3333. {
  3334. xfs_inode_t *ip;
  3335. xfs_trans_t *tp;
  3336. xfs_mount_t *mp;
  3337. int error;
  3338. if (!capable(CAP_SYS_ADMIN))
  3339. return XFS_ERROR(EPERM);
  3340. ip = XFS_BHVTOI(bdp);
  3341. mp = ip->i_mount;
  3342. if (XFS_FORCED_SHUTDOWN(mp))
  3343. return XFS_ERROR(EIO);
  3344. tp = xfs_trans_alloc(mp, XFS_TRANS_SET_DMATTRS);
  3345. error = xfs_trans_reserve(tp, 0, XFS_ICHANGE_LOG_RES (mp), 0, 0, 0);
  3346. if (error) {
  3347. xfs_trans_cancel(tp, 0);
  3348. return error;
  3349. }
  3350. xfs_ilock(ip, XFS_ILOCK_EXCL);
  3351. xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
  3352. ip->i_iocore.io_dmevmask = ip->i_d.di_dmevmask = evmask;
  3353. ip->i_iocore.io_dmstate = ip->i_d.di_dmstate = state;
  3354. xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
  3355. IHOLD(ip);
  3356. error = xfs_trans_commit(tp, 0);
  3357. return error;
  3358. }
  3359. STATIC int
  3360. xfs_reclaim(
  3361. bhv_desc_t *bdp)
  3362. {
  3363. xfs_inode_t *ip;
  3364. bhv_vnode_t *vp;
  3365. vp = BHV_TO_VNODE(bdp);
  3366. ip = XFS_BHVTOI(bdp);
  3367. vn_trace_entry(vp, __FUNCTION__, (inst_t *)__return_address);
  3368. ASSERT(!VN_MAPPED(vp));
  3369. /* bad inode, get out here ASAP */
  3370. if (VN_BAD(vp)) {
  3371. xfs_ireclaim(ip);
  3372. return 0;
  3373. }
  3374. vn_iowait(vp);
  3375. ASSERT(XFS_FORCED_SHUTDOWN(ip->i_mount) || ip->i_delayed_blks == 0);
  3376. /*
  3377. * Make sure the atime in the XFS inode is correct before freeing the
  3378. * Linux inode.
  3379. */
  3380. xfs_synchronize_atime(ip);
  3381. /*
  3382. * If we have nothing to flush with this inode then complete the
  3383. * teardown now, otherwise break the link between the xfs inode and the
  3384. * linux inode and clean up the xfs inode later. This avoids flushing
  3385. * the inode to disk during the delete operation itself.
  3386. *
  3387. * When breaking the link, we need to set the XFS_IRECLAIMABLE flag
  3388. * first to ensure that xfs_iunpin() will never see an xfs inode
  3389. * that has a linux inode being reclaimed. Synchronisation is provided
  3390. * by the i_flags_lock.
  3391. */
  3392. if (!ip->i_update_core && (ip->i_itemp == NULL)) {
  3393. xfs_ilock(ip, XFS_ILOCK_EXCL);
  3394. xfs_iflock(ip);
  3395. return xfs_finish_reclaim(ip, 1, XFS_IFLUSH_DELWRI_ELSE_SYNC);
  3396. } else {
  3397. xfs_mount_t *mp = ip->i_mount;
  3398. /* Protect sync and unpin from us */
  3399. XFS_MOUNT_ILOCK(mp);
  3400. spin_lock(&ip->i_flags_lock);
  3401. __xfs_iflags_set(ip, XFS_IRECLAIMABLE);
  3402. vn_bhv_remove(VN_BHV_HEAD(vp), XFS_ITOBHV(ip));
  3403. spin_unlock(&ip->i_flags_lock);
  3404. list_add_tail(&ip->i_reclaim, &mp->m_del_inodes);
  3405. XFS_MOUNT_IUNLOCK(mp);
  3406. }
  3407. return 0;
  3408. }
  3409. int
  3410. xfs_finish_reclaim(
  3411. xfs_inode_t *ip,
  3412. int locked,
  3413. int sync_mode)
  3414. {
  3415. xfs_ihash_t *ih = ip->i_hash;
  3416. bhv_vnode_t *vp = XFS_ITOV_NULL(ip);
  3417. int error;
  3418. if (vp && VN_BAD(vp))
  3419. goto reclaim;
  3420. /* The hash lock here protects a thread in xfs_iget_core from
  3421. * racing with us on linking the inode back with a vnode.
  3422. * Once we have the XFS_IRECLAIM flag set it will not touch
  3423. * us.
  3424. */
  3425. write_lock(&ih->ih_lock);
  3426. spin_lock(&ip->i_flags_lock);
  3427. if (__xfs_iflags_test(ip, XFS_IRECLAIM) ||
  3428. (!__xfs_iflags_test(ip, XFS_IRECLAIMABLE) && vp == NULL)) {
  3429. spin_unlock(&ip->i_flags_lock);
  3430. write_unlock(&ih->ih_lock);
  3431. if (locked) {
  3432. xfs_ifunlock(ip);
  3433. xfs_iunlock(ip, XFS_ILOCK_EXCL);
  3434. }
  3435. return 1;
  3436. }
  3437. __xfs_iflags_set(ip, XFS_IRECLAIM);
  3438. spin_unlock(&ip->i_flags_lock);
  3439. write_unlock(&ih->ih_lock);
  3440. /*
  3441. * If the inode is still dirty, then flush it out. If the inode
  3442. * is not in the AIL, then it will be OK to flush it delwri as
  3443. * long as xfs_iflush() does not keep any references to the inode.
  3444. * We leave that decision up to xfs_iflush() since it has the
  3445. * knowledge of whether it's OK to simply do a delwri flush of
  3446. * the inode or whether we need to wait until the inode is
  3447. * pulled from the AIL.
  3448. * We get the flush lock regardless, though, just to make sure
  3449. * we don't free it while it is being flushed.
  3450. */
  3451. if (!XFS_FORCED_SHUTDOWN(ip->i_mount)) {
  3452. if (!locked) {
  3453. xfs_ilock(ip, XFS_ILOCK_EXCL);
  3454. xfs_iflock(ip);
  3455. }
  3456. if (ip->i_update_core ||
  3457. ((ip->i_itemp != NULL) &&
  3458. (ip->i_itemp->ili_format.ilf_fields != 0))) {
  3459. error = xfs_iflush(ip, sync_mode);
  3460. /*
  3461. * If we hit an error, typically because of filesystem
  3462. * shutdown, we don't need to let vn_reclaim to know
  3463. * because we're gonna reclaim the inode anyway.
  3464. */
  3465. if (error) {
  3466. xfs_iunlock(ip, XFS_ILOCK_EXCL);
  3467. goto reclaim;
  3468. }
  3469. xfs_iflock(ip); /* synchronize with xfs_iflush_done */
  3470. }
  3471. ASSERT(ip->i_update_core == 0);
  3472. ASSERT(ip->i_itemp == NULL ||
  3473. ip->i_itemp->ili_format.ilf_fields == 0);
  3474. xfs_iunlock(ip, XFS_ILOCK_EXCL);
  3475. } else if (locked) {
  3476. /*
  3477. * We are not interested in doing an iflush if we're
  3478. * in the process of shutting down the filesystem forcibly.
  3479. * So, just reclaim the inode.
  3480. */
  3481. xfs_ifunlock(ip);
  3482. xfs_iunlock(ip, XFS_ILOCK_EXCL);
  3483. }
  3484. reclaim:
  3485. xfs_ireclaim(ip);
  3486. return 0;
  3487. }
  3488. int
  3489. xfs_finish_reclaim_all(xfs_mount_t *mp, int noblock)
  3490. {
  3491. int purged;
  3492. xfs_inode_t *ip, *n;
  3493. int done = 0;
  3494. while (!done) {
  3495. purged = 0;
  3496. XFS_MOUNT_ILOCK(mp);
  3497. list_for_each_entry_safe(ip, n, &mp->m_del_inodes, i_reclaim) {
  3498. if (noblock) {
  3499. if (xfs_ilock_nowait(ip, XFS_ILOCK_EXCL) == 0)
  3500. continue;
  3501. if (xfs_ipincount(ip) ||
  3502. !xfs_iflock_nowait(ip)) {
  3503. xfs_iunlock(ip, XFS_ILOCK_EXCL);
  3504. continue;
  3505. }
  3506. }
  3507. XFS_MOUNT_IUNLOCK(mp);
  3508. if (xfs_finish_reclaim(ip, noblock,
  3509. XFS_IFLUSH_DELWRI_ELSE_ASYNC))
  3510. delay(1);
  3511. purged = 1;
  3512. break;
  3513. }
  3514. done = !purged;
  3515. }
  3516. XFS_MOUNT_IUNLOCK(mp);
  3517. return 0;
  3518. }
  3519. /*
  3520. * xfs_alloc_file_space()
  3521. * This routine allocates disk space for the given file.
  3522. *
  3523. * If alloc_type == 0, this request is for an ALLOCSP type
  3524. * request which will change the file size. In this case, no
  3525. * DMAPI event will be generated by the call. A TRUNCATE event
  3526. * will be generated later by xfs_setattr.
  3527. *
  3528. * If alloc_type != 0, this request is for a RESVSP type
  3529. * request, and a DMAPI DM_EVENT_WRITE will be generated if the
  3530. * lower block boundary byte address is less than the file's
  3531. * length.
  3532. *
  3533. * RETURNS:
  3534. * 0 on success
  3535. * errno on error
  3536. *
  3537. */
  3538. STATIC int
  3539. xfs_alloc_file_space(
  3540. xfs_inode_t *ip,
  3541. xfs_off_t offset,
  3542. xfs_off_t len,
  3543. int alloc_type,
  3544. int attr_flags)
  3545. {
  3546. xfs_mount_t *mp = ip->i_mount;
  3547. xfs_off_t count;
  3548. xfs_filblks_t allocated_fsb;
  3549. xfs_filblks_t allocatesize_fsb;
  3550. xfs_extlen_t extsz, temp;
  3551. xfs_fileoff_t startoffset_fsb;
  3552. xfs_fsblock_t firstfsb;
  3553. int nimaps;
  3554. int bmapi_flag;
  3555. int quota_flag;
  3556. int rt;
  3557. xfs_trans_t *tp;
  3558. xfs_bmbt_irec_t imaps[1], *imapp;
  3559. xfs_bmap_free_t free_list;
  3560. uint qblocks, resblks, resrtextents;
  3561. int committed;
  3562. int error;
  3563. vn_trace_entry(XFS_ITOV(ip), __FUNCTION__, (inst_t *)__return_address);
  3564. if (XFS_FORCED_SHUTDOWN(mp))
  3565. return XFS_ERROR(EIO);
  3566. if ((error = XFS_QM_DQATTACH(mp, ip, 0)))
  3567. return error;
  3568. if (len <= 0)
  3569. return XFS_ERROR(EINVAL);
  3570. rt = XFS_IS_REALTIME_INODE(ip);
  3571. extsz = xfs_get_extsz_hint(ip);
  3572. count = len;
  3573. imapp = &imaps[0];
  3574. nimaps = 1;
  3575. bmapi_flag = XFS_BMAPI_WRITE | (alloc_type ? XFS_BMAPI_PREALLOC : 0);
  3576. startoffset_fsb = XFS_B_TO_FSBT(mp, offset);
  3577. allocatesize_fsb = XFS_B_TO_FSB(mp, count);
  3578. /* Generate a DMAPI event if needed. */
  3579. if (alloc_type != 0 && offset < ip->i_size &&
  3580. (attr_flags&ATTR_DMI) == 0 &&
  3581. DM_EVENT_ENABLED(ip, DM_EVENT_WRITE)) {
  3582. xfs_off_t end_dmi_offset;
  3583. end_dmi_offset = offset+len;
  3584. if (end_dmi_offset > ip->i_size)
  3585. end_dmi_offset = ip->i_size;
  3586. error = XFS_SEND_DATA(mp, DM_EVENT_WRITE, XFS_ITOV(ip),
  3587. offset, end_dmi_offset - offset,
  3588. 0, NULL);
  3589. if (error)
  3590. return error;
  3591. }
  3592. /*
  3593. * Allocate file space until done or until there is an error
  3594. */
  3595. retry:
  3596. while (allocatesize_fsb && !error) {
  3597. xfs_fileoff_t s, e;
  3598. /*
  3599. * Determine space reservations for data/realtime.
  3600. */
  3601. if (unlikely(extsz)) {
  3602. s = startoffset_fsb;
  3603. do_div(s, extsz);
  3604. s *= extsz;
  3605. e = startoffset_fsb + allocatesize_fsb;
  3606. if ((temp = do_mod(startoffset_fsb, extsz)))
  3607. e += temp;
  3608. if ((temp = do_mod(e, extsz)))
  3609. e += extsz - temp;
  3610. } else {
  3611. s = 0;
  3612. e = allocatesize_fsb;
  3613. }
  3614. if (unlikely(rt)) {
  3615. resrtextents = qblocks = (uint)(e - s);
  3616. resrtextents /= mp->m_sb.sb_rextsize;
  3617. resblks = XFS_DIOSTRAT_SPACE_RES(mp, 0);
  3618. quota_flag = XFS_QMOPT_RES_RTBLKS;
  3619. } else {
  3620. resrtextents = 0;
  3621. resblks = qblocks = \
  3622. XFS_DIOSTRAT_SPACE_RES(mp, (uint)(e - s));
  3623. quota_flag = XFS_QMOPT_RES_REGBLKS;
  3624. }
  3625. /*
  3626. * Allocate and setup the transaction.
  3627. */
  3628. tp = xfs_trans_alloc(mp, XFS_TRANS_DIOSTRAT);
  3629. error = xfs_trans_reserve(tp, resblks,
  3630. XFS_WRITE_LOG_RES(mp), resrtextents,
  3631. XFS_TRANS_PERM_LOG_RES,
  3632. XFS_WRITE_LOG_COUNT);
  3633. /*
  3634. * Check for running out of space
  3635. */
  3636. if (error) {
  3637. /*
  3638. * Free the transaction structure.
  3639. */
  3640. ASSERT(error == ENOSPC || XFS_FORCED_SHUTDOWN(mp));
  3641. xfs_trans_cancel(tp, 0);
  3642. break;
  3643. }
  3644. xfs_ilock(ip, XFS_ILOCK_EXCL);
  3645. error = XFS_TRANS_RESERVE_QUOTA_NBLKS(mp, tp, ip,
  3646. qblocks, 0, quota_flag);
  3647. if (error)
  3648. goto error1;
  3649. xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
  3650. xfs_trans_ihold(tp, ip);
  3651. /*
  3652. * Issue the xfs_bmapi() call to allocate the blocks
  3653. */
  3654. XFS_BMAP_INIT(&free_list, &firstfsb);
  3655. error = XFS_BMAPI(mp, tp, &ip->i_iocore, startoffset_fsb,
  3656. allocatesize_fsb, bmapi_flag,
  3657. &firstfsb, 0, imapp, &nimaps,
  3658. &free_list, NULL);
  3659. if (error) {
  3660. goto error0;
  3661. }
  3662. /*
  3663. * Complete the transaction
  3664. */
  3665. error = xfs_bmap_finish(&tp, &free_list, &committed);
  3666. if (error) {
  3667. goto error0;
  3668. }
  3669. error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES);
  3670. xfs_iunlock(ip, XFS_ILOCK_EXCL);
  3671. if (error) {
  3672. break;
  3673. }
  3674. allocated_fsb = imapp->br_blockcount;
  3675. if (nimaps == 0) {
  3676. error = XFS_ERROR(ENOSPC);
  3677. break;
  3678. }
  3679. startoffset_fsb += allocated_fsb;
  3680. allocatesize_fsb -= allocated_fsb;
  3681. }
  3682. dmapi_enospc_check:
  3683. if (error == ENOSPC && (attr_flags & ATTR_DMI) == 0 &&
  3684. DM_EVENT_ENABLED(ip, DM_EVENT_NOSPACE)) {
  3685. error = XFS_SEND_NAMESP(mp, DM_EVENT_NOSPACE,
  3686. XFS_ITOV(ip), DM_RIGHT_NULL,
  3687. XFS_ITOV(ip), DM_RIGHT_NULL,
  3688. NULL, NULL, 0, 0, 0); /* Delay flag intentionally unused */
  3689. if (error == 0)
  3690. goto retry; /* Maybe DMAPI app. has made space */
  3691. /* else fall through with error from XFS_SEND_DATA */
  3692. }
  3693. return error;
  3694. error0: /* Cancel bmap, unlock inode, unreserve quota blocks, cancel trans */
  3695. xfs_bmap_cancel(&free_list);
  3696. XFS_TRANS_UNRESERVE_QUOTA_NBLKS(mp, tp, ip, qblocks, 0, quota_flag);
  3697. error1: /* Just cancel transaction */
  3698. xfs_trans_cancel(tp, XFS_TRANS_RELEASE_LOG_RES | XFS_TRANS_ABORT);
  3699. xfs_iunlock(ip, XFS_ILOCK_EXCL);
  3700. goto dmapi_enospc_check;
  3701. }
  3702. /*
  3703. * Zero file bytes between startoff and endoff inclusive.
  3704. * The iolock is held exclusive and no blocks are buffered.
  3705. */
  3706. STATIC int
  3707. xfs_zero_remaining_bytes(
  3708. xfs_inode_t *ip,
  3709. xfs_off_t startoff,
  3710. xfs_off_t endoff)
  3711. {
  3712. xfs_bmbt_irec_t imap;
  3713. xfs_fileoff_t offset_fsb;
  3714. xfs_off_t lastoffset;
  3715. xfs_off_t offset;
  3716. xfs_buf_t *bp;
  3717. xfs_mount_t *mp = ip->i_mount;
  3718. int nimap;
  3719. int error = 0;
  3720. bp = xfs_buf_get_noaddr(mp->m_sb.sb_blocksize,
  3721. ip->i_d.di_flags & XFS_DIFLAG_REALTIME ?
  3722. mp->m_rtdev_targp : mp->m_ddev_targp);
  3723. for (offset = startoff; offset <= endoff; offset = lastoffset + 1) {
  3724. offset_fsb = XFS_B_TO_FSBT(mp, offset);
  3725. nimap = 1;
  3726. error = XFS_BMAPI(mp, NULL, &ip->i_iocore, offset_fsb, 1, 0,
  3727. NULL, 0, &imap, &nimap, NULL, NULL);
  3728. if (error || nimap < 1)
  3729. break;
  3730. ASSERT(imap.br_blockcount >= 1);
  3731. ASSERT(imap.br_startoff == offset_fsb);
  3732. lastoffset = XFS_FSB_TO_B(mp, imap.br_startoff + 1) - 1;
  3733. if (lastoffset > endoff)
  3734. lastoffset = endoff;
  3735. if (imap.br_startblock == HOLESTARTBLOCK)
  3736. continue;
  3737. ASSERT(imap.br_startblock != DELAYSTARTBLOCK);
  3738. if (imap.br_state == XFS_EXT_UNWRITTEN)
  3739. continue;
  3740. XFS_BUF_UNDONE(bp);
  3741. XFS_BUF_UNWRITE(bp);
  3742. XFS_BUF_READ(bp);
  3743. XFS_BUF_SET_ADDR(bp, XFS_FSB_TO_DB(ip, imap.br_startblock));
  3744. xfsbdstrat(mp, bp);
  3745. if ((error = xfs_iowait(bp))) {
  3746. xfs_ioerror_alert("xfs_zero_remaining_bytes(read)",
  3747. mp, bp, XFS_BUF_ADDR(bp));
  3748. break;
  3749. }
  3750. memset(XFS_BUF_PTR(bp) +
  3751. (offset - XFS_FSB_TO_B(mp, imap.br_startoff)),
  3752. 0, lastoffset - offset + 1);
  3753. XFS_BUF_UNDONE(bp);
  3754. XFS_BUF_UNREAD(bp);
  3755. XFS_BUF_WRITE(bp);
  3756. xfsbdstrat(mp, bp);
  3757. if ((error = xfs_iowait(bp))) {
  3758. xfs_ioerror_alert("xfs_zero_remaining_bytes(write)",
  3759. mp, bp, XFS_BUF_ADDR(bp));
  3760. break;
  3761. }
  3762. }
  3763. xfs_buf_free(bp);
  3764. return error;
  3765. }
  3766. /*
  3767. * xfs_free_file_space()
  3768. * This routine frees disk space for the given file.
  3769. *
  3770. * This routine is only called by xfs_change_file_space
  3771. * for an UNRESVSP type call.
  3772. *
  3773. * RETURNS:
  3774. * 0 on success
  3775. * errno on error
  3776. *
  3777. */
  3778. STATIC int
  3779. xfs_free_file_space(
  3780. xfs_inode_t *ip,
  3781. xfs_off_t offset,
  3782. xfs_off_t len,
  3783. int attr_flags)
  3784. {
  3785. bhv_vnode_t *vp;
  3786. int committed;
  3787. int done;
  3788. xfs_off_t end_dmi_offset;
  3789. xfs_fileoff_t endoffset_fsb;
  3790. int error;
  3791. xfs_fsblock_t firstfsb;
  3792. xfs_bmap_free_t free_list;
  3793. xfs_bmbt_irec_t imap;
  3794. xfs_off_t ioffset;
  3795. xfs_extlen_t mod=0;
  3796. xfs_mount_t *mp;
  3797. int nimap;
  3798. uint resblks;
  3799. uint rounding;
  3800. int rt;
  3801. xfs_fileoff_t startoffset_fsb;
  3802. xfs_trans_t *tp;
  3803. int need_iolock = 1;
  3804. vp = XFS_ITOV(ip);
  3805. mp = ip->i_mount;
  3806. vn_trace_entry(vp, __FUNCTION__, (inst_t *)__return_address);
  3807. if ((error = XFS_QM_DQATTACH(mp, ip, 0)))
  3808. return error;
  3809. error = 0;
  3810. if (len <= 0) /* if nothing being freed */
  3811. return error;
  3812. rt = (ip->i_d.di_flags & XFS_DIFLAG_REALTIME);
  3813. startoffset_fsb = XFS_B_TO_FSB(mp, offset);
  3814. end_dmi_offset = offset + len;
  3815. endoffset_fsb = XFS_B_TO_FSBT(mp, end_dmi_offset);
  3816. if (offset < ip->i_size && (attr_flags & ATTR_DMI) == 0 &&
  3817. DM_EVENT_ENABLED(ip, DM_EVENT_WRITE)) {
  3818. if (end_dmi_offset > ip->i_size)
  3819. end_dmi_offset = ip->i_size;
  3820. error = XFS_SEND_DATA(mp, DM_EVENT_WRITE, vp,
  3821. offset, end_dmi_offset - offset,
  3822. AT_DELAY_FLAG(attr_flags), NULL);
  3823. if (error)
  3824. return error;
  3825. }
  3826. if (attr_flags & ATTR_NOLOCK)
  3827. need_iolock = 0;
  3828. if (need_iolock) {
  3829. xfs_ilock(ip, XFS_IOLOCK_EXCL);
  3830. vn_iowait(vp); /* wait for the completion of any pending DIOs */
  3831. }
  3832. rounding = max_t(uint, 1 << mp->m_sb.sb_blocklog, NBPP);
  3833. ioffset = offset & ~(rounding - 1);
  3834. if (VN_CACHED(vp) != 0) {
  3835. xfs_inval_cached_trace(&ip->i_iocore, ioffset, -1,
  3836. ctooff(offtoct(ioffset)), -1);
  3837. error = bhv_vop_flushinval_pages(vp, ctooff(offtoct(ioffset)),
  3838. -1, FI_REMAPF_LOCKED);
  3839. if (error)
  3840. goto out_unlock_iolock;
  3841. }
  3842. /*
  3843. * Need to zero the stuff we're not freeing, on disk.
  3844. * If its a realtime file & can't use unwritten extents then we
  3845. * actually need to zero the extent edges. Otherwise xfs_bunmapi
  3846. * will take care of it for us.
  3847. */
  3848. if (rt && !XFS_SB_VERSION_HASEXTFLGBIT(&mp->m_sb)) {
  3849. nimap = 1;
  3850. error = XFS_BMAPI(mp, NULL, &ip->i_iocore, startoffset_fsb,
  3851. 1, 0, NULL, 0, &imap, &nimap, NULL, NULL);
  3852. if (error)
  3853. goto out_unlock_iolock;
  3854. ASSERT(nimap == 0 || nimap == 1);
  3855. if (nimap && imap.br_startblock != HOLESTARTBLOCK) {
  3856. xfs_daddr_t block;
  3857. ASSERT(imap.br_startblock != DELAYSTARTBLOCK);
  3858. block = imap.br_startblock;
  3859. mod = do_div(block, mp->m_sb.sb_rextsize);
  3860. if (mod)
  3861. startoffset_fsb += mp->m_sb.sb_rextsize - mod;
  3862. }
  3863. nimap = 1;
  3864. error = XFS_BMAPI(mp, NULL, &ip->i_iocore, endoffset_fsb - 1,
  3865. 1, 0, NULL, 0, &imap, &nimap, NULL, NULL);
  3866. if (error)
  3867. goto out_unlock_iolock;
  3868. ASSERT(nimap == 0 || nimap == 1);
  3869. if (nimap && imap.br_startblock != HOLESTARTBLOCK) {
  3870. ASSERT(imap.br_startblock != DELAYSTARTBLOCK);
  3871. mod++;
  3872. if (mod && (mod != mp->m_sb.sb_rextsize))
  3873. endoffset_fsb -= mod;
  3874. }
  3875. }
  3876. if ((done = (endoffset_fsb <= startoffset_fsb)))
  3877. /*
  3878. * One contiguous piece to clear
  3879. */
  3880. error = xfs_zero_remaining_bytes(ip, offset, offset + len - 1);
  3881. else {
  3882. /*
  3883. * Some full blocks, possibly two pieces to clear
  3884. */
  3885. if (offset < XFS_FSB_TO_B(mp, startoffset_fsb))
  3886. error = xfs_zero_remaining_bytes(ip, offset,
  3887. XFS_FSB_TO_B(mp, startoffset_fsb) - 1);
  3888. if (!error &&
  3889. XFS_FSB_TO_B(mp, endoffset_fsb) < offset + len)
  3890. error = xfs_zero_remaining_bytes(ip,
  3891. XFS_FSB_TO_B(mp, endoffset_fsb),
  3892. offset + len - 1);
  3893. }
  3894. /*
  3895. * free file space until done or until there is an error
  3896. */
  3897. resblks = XFS_DIOSTRAT_SPACE_RES(mp, 0);
  3898. while (!error && !done) {
  3899. /*
  3900. * allocate and setup the transaction. Allow this
  3901. * transaction to dip into the reserve blocks to ensure
  3902. * the freeing of the space succeeds at ENOSPC.
  3903. */
  3904. tp = xfs_trans_alloc(mp, XFS_TRANS_DIOSTRAT);
  3905. tp->t_flags |= XFS_TRANS_RESERVE;
  3906. error = xfs_trans_reserve(tp,
  3907. resblks,
  3908. XFS_WRITE_LOG_RES(mp),
  3909. 0,
  3910. XFS_TRANS_PERM_LOG_RES,
  3911. XFS_WRITE_LOG_COUNT);
  3912. /*
  3913. * check for running out of space
  3914. */
  3915. if (error) {
  3916. /*
  3917. * Free the transaction structure.
  3918. */
  3919. ASSERT(error == ENOSPC || XFS_FORCED_SHUTDOWN(mp));
  3920. xfs_trans_cancel(tp, 0);
  3921. break;
  3922. }
  3923. xfs_ilock(ip, XFS_ILOCK_EXCL);
  3924. error = XFS_TRANS_RESERVE_QUOTA(mp, tp,
  3925. ip->i_udquot, ip->i_gdquot, resblks, 0,
  3926. XFS_QMOPT_RES_REGBLKS);
  3927. if (error)
  3928. goto error1;
  3929. xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
  3930. xfs_trans_ihold(tp, ip);
  3931. /*
  3932. * issue the bunmapi() call to free the blocks
  3933. */
  3934. XFS_BMAP_INIT(&free_list, &firstfsb);
  3935. error = XFS_BUNMAPI(mp, tp, &ip->i_iocore, startoffset_fsb,
  3936. endoffset_fsb - startoffset_fsb,
  3937. 0, 2, &firstfsb, &free_list, NULL, &done);
  3938. if (error) {
  3939. goto error0;
  3940. }
  3941. /*
  3942. * complete the transaction
  3943. */
  3944. error = xfs_bmap_finish(&tp, &free_list, &committed);
  3945. if (error) {
  3946. goto error0;
  3947. }
  3948. error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES);
  3949. xfs_iunlock(ip, XFS_ILOCK_EXCL);
  3950. }
  3951. out_unlock_iolock:
  3952. if (need_iolock)
  3953. xfs_iunlock(ip, XFS_IOLOCK_EXCL);
  3954. return error;
  3955. error0:
  3956. xfs_bmap_cancel(&free_list);
  3957. error1:
  3958. xfs_trans_cancel(tp, XFS_TRANS_RELEASE_LOG_RES | XFS_TRANS_ABORT);
  3959. xfs_iunlock(ip, need_iolock ? (XFS_ILOCK_EXCL | XFS_IOLOCK_EXCL) :
  3960. XFS_ILOCK_EXCL);
  3961. return error;
  3962. }
  3963. /*
  3964. * xfs_change_file_space()
  3965. * This routine allocates or frees disk space for the given file.
  3966. * The user specified parameters are checked for alignment and size
  3967. * limitations.
  3968. *
  3969. * RETURNS:
  3970. * 0 on success
  3971. * errno on error
  3972. *
  3973. */
  3974. int
  3975. xfs_change_file_space(
  3976. bhv_desc_t *bdp,
  3977. int cmd,
  3978. xfs_flock64_t *bf,
  3979. xfs_off_t offset,
  3980. cred_t *credp,
  3981. int attr_flags)
  3982. {
  3983. int clrprealloc;
  3984. int error;
  3985. xfs_fsize_t fsize;
  3986. xfs_inode_t *ip;
  3987. xfs_mount_t *mp;
  3988. int setprealloc;
  3989. xfs_off_t startoffset;
  3990. xfs_off_t llen;
  3991. xfs_trans_t *tp;
  3992. bhv_vattr_t va;
  3993. bhv_vnode_t *vp;
  3994. vp = BHV_TO_VNODE(bdp);
  3995. vn_trace_entry(vp, __FUNCTION__, (inst_t *)__return_address);
  3996. ip = XFS_BHVTOI(bdp);
  3997. mp = ip->i_mount;
  3998. /*
  3999. * must be a regular file and have write permission
  4000. */
  4001. if (!VN_ISREG(vp))
  4002. return XFS_ERROR(EINVAL);
  4003. xfs_ilock(ip, XFS_ILOCK_SHARED);
  4004. if ((error = xfs_iaccess(ip, S_IWUSR, credp))) {
  4005. xfs_iunlock(ip, XFS_ILOCK_SHARED);
  4006. return error;
  4007. }
  4008. xfs_iunlock(ip, XFS_ILOCK_SHARED);
  4009. switch (bf->l_whence) {
  4010. case 0: /*SEEK_SET*/
  4011. break;
  4012. case 1: /*SEEK_CUR*/
  4013. bf->l_start += offset;
  4014. break;
  4015. case 2: /*SEEK_END*/
  4016. bf->l_start += ip->i_size;
  4017. break;
  4018. default:
  4019. return XFS_ERROR(EINVAL);
  4020. }
  4021. llen = bf->l_len > 0 ? bf->l_len - 1 : bf->l_len;
  4022. if ( (bf->l_start < 0)
  4023. || (bf->l_start > XFS_MAXIOFFSET(mp))
  4024. || (bf->l_start + llen < 0)
  4025. || (bf->l_start + llen > XFS_MAXIOFFSET(mp)))
  4026. return XFS_ERROR(EINVAL);
  4027. bf->l_whence = 0;
  4028. startoffset = bf->l_start;
  4029. fsize = ip->i_size;
  4030. /*
  4031. * XFS_IOC_RESVSP and XFS_IOC_UNRESVSP will reserve or unreserve
  4032. * file space.
  4033. * These calls do NOT zero the data space allocated to the file,
  4034. * nor do they change the file size.
  4035. *
  4036. * XFS_IOC_ALLOCSP and XFS_IOC_FREESP will allocate and free file
  4037. * space.
  4038. * These calls cause the new file data to be zeroed and the file
  4039. * size to be changed.
  4040. */
  4041. setprealloc = clrprealloc = 0;
  4042. switch (cmd) {
  4043. case XFS_IOC_RESVSP:
  4044. case XFS_IOC_RESVSP64:
  4045. error = xfs_alloc_file_space(ip, startoffset, bf->l_len,
  4046. 1, attr_flags);
  4047. if (error)
  4048. return error;
  4049. setprealloc = 1;
  4050. break;
  4051. case XFS_IOC_UNRESVSP:
  4052. case XFS_IOC_UNRESVSP64:
  4053. if ((error = xfs_free_file_space(ip, startoffset, bf->l_len,
  4054. attr_flags)))
  4055. return error;
  4056. break;
  4057. case XFS_IOC_ALLOCSP:
  4058. case XFS_IOC_ALLOCSP64:
  4059. case XFS_IOC_FREESP:
  4060. case XFS_IOC_FREESP64:
  4061. if (startoffset > fsize) {
  4062. error = xfs_alloc_file_space(ip, fsize,
  4063. startoffset - fsize, 0, attr_flags);
  4064. if (error)
  4065. break;
  4066. }
  4067. va.va_mask = XFS_AT_SIZE;
  4068. va.va_size = startoffset;
  4069. error = xfs_setattr(bdp, &va, attr_flags, credp);
  4070. if (error)
  4071. return error;
  4072. clrprealloc = 1;
  4073. break;
  4074. default:
  4075. ASSERT(0);
  4076. return XFS_ERROR(EINVAL);
  4077. }
  4078. /*
  4079. * update the inode timestamp, mode, and prealloc flag bits
  4080. */
  4081. tp = xfs_trans_alloc(mp, XFS_TRANS_WRITEID);
  4082. if ((error = xfs_trans_reserve(tp, 0, XFS_WRITEID_LOG_RES(mp),
  4083. 0, 0, 0))) {
  4084. /* ASSERT(0); */
  4085. xfs_trans_cancel(tp, 0);
  4086. return error;
  4087. }
  4088. xfs_ilock(ip, XFS_ILOCK_EXCL);
  4089. xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
  4090. xfs_trans_ihold(tp, ip);
  4091. if ((attr_flags & ATTR_DMI) == 0) {
  4092. ip->i_d.di_mode &= ~S_ISUID;
  4093. /*
  4094. * Note that we don't have to worry about mandatory
  4095. * file locking being disabled here because we only
  4096. * clear the S_ISGID bit if the Group execute bit is
  4097. * on, but if it was on then mandatory locking wouldn't
  4098. * have been enabled.
  4099. */
  4100. if (ip->i_d.di_mode & S_IXGRP)
  4101. ip->i_d.di_mode &= ~S_ISGID;
  4102. xfs_ichgtime(ip, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
  4103. }
  4104. if (setprealloc)
  4105. ip->i_d.di_flags |= XFS_DIFLAG_PREALLOC;
  4106. else if (clrprealloc)
  4107. ip->i_d.di_flags &= ~XFS_DIFLAG_PREALLOC;
  4108. xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
  4109. xfs_trans_set_sync(tp);
  4110. error = xfs_trans_commit(tp, 0);
  4111. xfs_iunlock(ip, XFS_ILOCK_EXCL);
  4112. return error;
  4113. }
  4114. bhv_vnodeops_t xfs_vnodeops = {
  4115. BHV_IDENTITY_INIT(VN_BHV_XFS,VNODE_POSITION_XFS),
  4116. .vop_open = xfs_open,
  4117. .vop_read = xfs_read,
  4118. #ifdef HAVE_SPLICE
  4119. .vop_splice_read = xfs_splice_read,
  4120. .vop_splice_write = xfs_splice_write,
  4121. #endif
  4122. .vop_write = xfs_write,
  4123. .vop_ioctl = xfs_ioctl,
  4124. .vop_getattr = xfs_getattr,
  4125. .vop_setattr = xfs_setattr,
  4126. .vop_access = xfs_access,
  4127. .vop_lookup = xfs_lookup,
  4128. .vop_create = xfs_create,
  4129. .vop_remove = xfs_remove,
  4130. .vop_link = xfs_link,
  4131. .vop_rename = xfs_rename,
  4132. .vop_mkdir = xfs_mkdir,
  4133. .vop_rmdir = xfs_rmdir,
  4134. .vop_readdir = xfs_readdir,
  4135. .vop_symlink = xfs_symlink,
  4136. .vop_readlink = xfs_readlink,
  4137. .vop_fsync = xfs_fsync,
  4138. .vop_inactive = xfs_inactive,
  4139. .vop_fid2 = xfs_fid2,
  4140. .vop_rwlock = xfs_rwlock,
  4141. .vop_rwunlock = xfs_rwunlock,
  4142. .vop_bmap = xfs_bmap,
  4143. .vop_reclaim = xfs_reclaim,
  4144. .vop_attr_get = xfs_attr_get,
  4145. .vop_attr_set = xfs_attr_set,
  4146. .vop_attr_remove = xfs_attr_remove,
  4147. .vop_attr_list = xfs_attr_list,
  4148. .vop_link_removed = (vop_link_removed_t)fs_noval,
  4149. .vop_vnode_change = (vop_vnode_change_t)fs_noval,
  4150. .vop_tosspages = fs_tosspages,
  4151. .vop_flushinval_pages = fs_flushinval_pages,
  4152. .vop_flush_pages = fs_flush_pages,
  4153. .vop_release = xfs_release,
  4154. .vop_iflush = xfs_inode_flush,
  4155. };