xfs_sb.c 24 KB

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  1. /*
  2. * Copyright (c) 2000-2005 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_shared.h"
  21. #include "xfs_format.h"
  22. #include "xfs_log_format.h"
  23. #include "xfs_trans_resv.h"
  24. #include "xfs_bit.h"
  25. #include "xfs_sb.h"
  26. #include "xfs_ag.h"
  27. #include "xfs_mount.h"
  28. #include "xfs_inode.h"
  29. #include "xfs_ialloc.h"
  30. #include "xfs_alloc.h"
  31. #include "xfs_error.h"
  32. #include "xfs_trace.h"
  33. #include "xfs_cksum.h"
  34. #include "xfs_trans.h"
  35. #include "xfs_buf_item.h"
  36. #include "xfs_dinode.h"
  37. #include "xfs_bmap_btree.h"
  38. #include "xfs_alloc_btree.h"
  39. #include "xfs_ialloc_btree.h"
  40. /*
  41. * Physical superblock buffer manipulations. Shared with libxfs in userspace.
  42. */
  43. static const struct {
  44. short offset;
  45. short type; /* 0 = integer
  46. * 1 = binary / string (no translation)
  47. */
  48. } xfs_sb_info[] = {
  49. { offsetof(xfs_sb_t, sb_magicnum), 0 },
  50. { offsetof(xfs_sb_t, sb_blocksize), 0 },
  51. { offsetof(xfs_sb_t, sb_dblocks), 0 },
  52. { offsetof(xfs_sb_t, sb_rblocks), 0 },
  53. { offsetof(xfs_sb_t, sb_rextents), 0 },
  54. { offsetof(xfs_sb_t, sb_uuid), 1 },
  55. { offsetof(xfs_sb_t, sb_logstart), 0 },
  56. { offsetof(xfs_sb_t, sb_rootino), 0 },
  57. { offsetof(xfs_sb_t, sb_rbmino), 0 },
  58. { offsetof(xfs_sb_t, sb_rsumino), 0 },
  59. { offsetof(xfs_sb_t, sb_rextsize), 0 },
  60. { offsetof(xfs_sb_t, sb_agblocks), 0 },
  61. { offsetof(xfs_sb_t, sb_agcount), 0 },
  62. { offsetof(xfs_sb_t, sb_rbmblocks), 0 },
  63. { offsetof(xfs_sb_t, sb_logblocks), 0 },
  64. { offsetof(xfs_sb_t, sb_versionnum), 0 },
  65. { offsetof(xfs_sb_t, sb_sectsize), 0 },
  66. { offsetof(xfs_sb_t, sb_inodesize), 0 },
  67. { offsetof(xfs_sb_t, sb_inopblock), 0 },
  68. { offsetof(xfs_sb_t, sb_fname[0]), 1 },
  69. { offsetof(xfs_sb_t, sb_blocklog), 0 },
  70. { offsetof(xfs_sb_t, sb_sectlog), 0 },
  71. { offsetof(xfs_sb_t, sb_inodelog), 0 },
  72. { offsetof(xfs_sb_t, sb_inopblog), 0 },
  73. { offsetof(xfs_sb_t, sb_agblklog), 0 },
  74. { offsetof(xfs_sb_t, sb_rextslog), 0 },
  75. { offsetof(xfs_sb_t, sb_inprogress), 0 },
  76. { offsetof(xfs_sb_t, sb_imax_pct), 0 },
  77. { offsetof(xfs_sb_t, sb_icount), 0 },
  78. { offsetof(xfs_sb_t, sb_ifree), 0 },
  79. { offsetof(xfs_sb_t, sb_fdblocks), 0 },
  80. { offsetof(xfs_sb_t, sb_frextents), 0 },
  81. { offsetof(xfs_sb_t, sb_uquotino), 0 },
  82. { offsetof(xfs_sb_t, sb_gquotino), 0 },
  83. { offsetof(xfs_sb_t, sb_qflags), 0 },
  84. { offsetof(xfs_sb_t, sb_flags), 0 },
  85. { offsetof(xfs_sb_t, sb_shared_vn), 0 },
  86. { offsetof(xfs_sb_t, sb_inoalignmt), 0 },
  87. { offsetof(xfs_sb_t, sb_unit), 0 },
  88. { offsetof(xfs_sb_t, sb_width), 0 },
  89. { offsetof(xfs_sb_t, sb_dirblklog), 0 },
  90. { offsetof(xfs_sb_t, sb_logsectlog), 0 },
  91. { offsetof(xfs_sb_t, sb_logsectsize), 0 },
  92. { offsetof(xfs_sb_t, sb_logsunit), 0 },
  93. { offsetof(xfs_sb_t, sb_features2), 0 },
  94. { offsetof(xfs_sb_t, sb_bad_features2), 0 },
  95. { offsetof(xfs_sb_t, sb_features_compat), 0 },
  96. { offsetof(xfs_sb_t, sb_features_ro_compat), 0 },
  97. { offsetof(xfs_sb_t, sb_features_incompat), 0 },
  98. { offsetof(xfs_sb_t, sb_features_log_incompat), 0 },
  99. { offsetof(xfs_sb_t, sb_crc), 0 },
  100. { offsetof(xfs_sb_t, sb_pad), 0 },
  101. { offsetof(xfs_sb_t, sb_pquotino), 0 },
  102. { offsetof(xfs_sb_t, sb_lsn), 0 },
  103. { sizeof(xfs_sb_t), 0 }
  104. };
  105. /*
  106. * Reference counting access wrappers to the perag structures.
  107. * Because we never free per-ag structures, the only thing we
  108. * have to protect against changes is the tree structure itself.
  109. */
  110. struct xfs_perag *
  111. xfs_perag_get(
  112. struct xfs_mount *mp,
  113. xfs_agnumber_t agno)
  114. {
  115. struct xfs_perag *pag;
  116. int ref = 0;
  117. rcu_read_lock();
  118. pag = radix_tree_lookup(&mp->m_perag_tree, agno);
  119. if (pag) {
  120. ASSERT(atomic_read(&pag->pag_ref) >= 0);
  121. ref = atomic_inc_return(&pag->pag_ref);
  122. }
  123. rcu_read_unlock();
  124. trace_xfs_perag_get(mp, agno, ref, _RET_IP_);
  125. return pag;
  126. }
  127. /*
  128. * search from @first to find the next perag with the given tag set.
  129. */
  130. struct xfs_perag *
  131. xfs_perag_get_tag(
  132. struct xfs_mount *mp,
  133. xfs_agnumber_t first,
  134. int tag)
  135. {
  136. struct xfs_perag *pag;
  137. int found;
  138. int ref;
  139. rcu_read_lock();
  140. found = radix_tree_gang_lookup_tag(&mp->m_perag_tree,
  141. (void **)&pag, first, 1, tag);
  142. if (found <= 0) {
  143. rcu_read_unlock();
  144. return NULL;
  145. }
  146. ref = atomic_inc_return(&pag->pag_ref);
  147. rcu_read_unlock();
  148. trace_xfs_perag_get_tag(mp, pag->pag_agno, ref, _RET_IP_);
  149. return pag;
  150. }
  151. void
  152. xfs_perag_put(
  153. struct xfs_perag *pag)
  154. {
  155. int ref;
  156. ASSERT(atomic_read(&pag->pag_ref) > 0);
  157. ref = atomic_dec_return(&pag->pag_ref);
  158. trace_xfs_perag_put(pag->pag_mount, pag->pag_agno, ref, _RET_IP_);
  159. }
  160. /*
  161. * Check the validity of the SB found.
  162. */
  163. STATIC int
  164. xfs_mount_validate_sb(
  165. xfs_mount_t *mp,
  166. xfs_sb_t *sbp,
  167. bool check_inprogress,
  168. bool check_version)
  169. {
  170. /*
  171. * If the log device and data device have the
  172. * same device number, the log is internal.
  173. * Consequently, the sb_logstart should be non-zero. If
  174. * we have a zero sb_logstart in this case, we may be trying to mount
  175. * a volume filesystem in a non-volume manner.
  176. */
  177. if (sbp->sb_magicnum != XFS_SB_MAGIC) {
  178. xfs_warn(mp, "bad magic number");
  179. return XFS_ERROR(EWRONGFS);
  180. }
  181. if (!xfs_sb_good_version(sbp)) {
  182. xfs_warn(mp, "bad version");
  183. return XFS_ERROR(EWRONGFS);
  184. }
  185. /*
  186. * Version 5 superblock feature mask validation. Reject combinations the
  187. * kernel cannot support up front before checking anything else. For
  188. * write validation, we don't need to check feature masks.
  189. */
  190. if (check_version && XFS_SB_VERSION_NUM(sbp) == XFS_SB_VERSION_5) {
  191. if (xfs_sb_has_compat_feature(sbp,
  192. XFS_SB_FEAT_COMPAT_UNKNOWN)) {
  193. xfs_warn(mp,
  194. "Superblock has unknown compatible features (0x%x) enabled.\n"
  195. "Using a more recent kernel is recommended.",
  196. (sbp->sb_features_compat &
  197. XFS_SB_FEAT_COMPAT_UNKNOWN));
  198. }
  199. if (xfs_sb_has_ro_compat_feature(sbp,
  200. XFS_SB_FEAT_RO_COMPAT_UNKNOWN)) {
  201. xfs_alert(mp,
  202. "Superblock has unknown read-only compatible features (0x%x) enabled.",
  203. (sbp->sb_features_ro_compat &
  204. XFS_SB_FEAT_RO_COMPAT_UNKNOWN));
  205. if (!(mp->m_flags & XFS_MOUNT_RDONLY)) {
  206. xfs_warn(mp,
  207. "Attempted to mount read-only compatible filesystem read-write.\n"
  208. "Filesystem can only be safely mounted read only.");
  209. return XFS_ERROR(EINVAL);
  210. }
  211. }
  212. if (xfs_sb_has_incompat_feature(sbp,
  213. XFS_SB_FEAT_INCOMPAT_UNKNOWN)) {
  214. xfs_warn(mp,
  215. "Superblock has unknown incompatible features (0x%x) enabled.\n"
  216. "Filesystem can not be safely mounted by this kernel.",
  217. (sbp->sb_features_incompat &
  218. XFS_SB_FEAT_INCOMPAT_UNKNOWN));
  219. return XFS_ERROR(EINVAL);
  220. }
  221. }
  222. if (xfs_sb_version_has_pquotino(sbp)) {
  223. if (sbp->sb_qflags & (XFS_OQUOTA_ENFD | XFS_OQUOTA_CHKD)) {
  224. xfs_notice(mp,
  225. "Version 5 of Super block has XFS_OQUOTA bits.");
  226. return XFS_ERROR(EFSCORRUPTED);
  227. }
  228. } else if (sbp->sb_qflags & (XFS_PQUOTA_ENFD | XFS_GQUOTA_ENFD |
  229. XFS_PQUOTA_CHKD | XFS_GQUOTA_CHKD)) {
  230. xfs_notice(mp,
  231. "Superblock earlier than Version 5 has XFS_[PQ]UOTA_{ENFD|CHKD} bits.");
  232. return XFS_ERROR(EFSCORRUPTED);
  233. }
  234. if (unlikely(
  235. sbp->sb_logstart == 0 && mp->m_logdev_targp == mp->m_ddev_targp)) {
  236. xfs_warn(mp,
  237. "filesystem is marked as having an external log; "
  238. "specify logdev on the mount command line.");
  239. return XFS_ERROR(EINVAL);
  240. }
  241. if (unlikely(
  242. sbp->sb_logstart != 0 && mp->m_logdev_targp != mp->m_ddev_targp)) {
  243. xfs_warn(mp,
  244. "filesystem is marked as having an internal log; "
  245. "do not specify logdev on the mount command line.");
  246. return XFS_ERROR(EINVAL);
  247. }
  248. /*
  249. * More sanity checking. Most of these were stolen directly from
  250. * xfs_repair.
  251. */
  252. if (unlikely(
  253. sbp->sb_agcount <= 0 ||
  254. sbp->sb_sectsize < XFS_MIN_SECTORSIZE ||
  255. sbp->sb_sectsize > XFS_MAX_SECTORSIZE ||
  256. sbp->sb_sectlog < XFS_MIN_SECTORSIZE_LOG ||
  257. sbp->sb_sectlog > XFS_MAX_SECTORSIZE_LOG ||
  258. sbp->sb_sectsize != (1 << sbp->sb_sectlog) ||
  259. sbp->sb_blocksize < XFS_MIN_BLOCKSIZE ||
  260. sbp->sb_blocksize > XFS_MAX_BLOCKSIZE ||
  261. sbp->sb_blocklog < XFS_MIN_BLOCKSIZE_LOG ||
  262. sbp->sb_blocklog > XFS_MAX_BLOCKSIZE_LOG ||
  263. sbp->sb_blocksize != (1 << sbp->sb_blocklog) ||
  264. sbp->sb_inodesize < XFS_DINODE_MIN_SIZE ||
  265. sbp->sb_inodesize > XFS_DINODE_MAX_SIZE ||
  266. sbp->sb_inodelog < XFS_DINODE_MIN_LOG ||
  267. sbp->sb_inodelog > XFS_DINODE_MAX_LOG ||
  268. sbp->sb_inodesize != (1 << sbp->sb_inodelog) ||
  269. sbp->sb_inopblock != howmany(sbp->sb_blocksize,sbp->sb_inodesize) ||
  270. (sbp->sb_blocklog - sbp->sb_inodelog != sbp->sb_inopblog) ||
  271. (sbp->sb_rextsize * sbp->sb_blocksize > XFS_MAX_RTEXTSIZE) ||
  272. (sbp->sb_rextsize * sbp->sb_blocksize < XFS_MIN_RTEXTSIZE) ||
  273. (sbp->sb_imax_pct > 100 /* zero sb_imax_pct is valid */) ||
  274. sbp->sb_dblocks == 0 ||
  275. sbp->sb_dblocks > XFS_MAX_DBLOCKS(sbp) ||
  276. sbp->sb_dblocks < XFS_MIN_DBLOCKS(sbp))) {
  277. xfs_notice(mp, "SB sanity check failed");
  278. return XFS_ERROR(EFSCORRUPTED);
  279. }
  280. /*
  281. * Until this is fixed only page-sized or smaller data blocks work.
  282. */
  283. if (unlikely(sbp->sb_blocksize > PAGE_SIZE)) {
  284. xfs_warn(mp,
  285. "File system with blocksize %d bytes. "
  286. "Only pagesize (%ld) or less will currently work.",
  287. sbp->sb_blocksize, PAGE_SIZE);
  288. return XFS_ERROR(ENOSYS);
  289. }
  290. /*
  291. * Currently only very few inode sizes are supported.
  292. */
  293. switch (sbp->sb_inodesize) {
  294. case 256:
  295. case 512:
  296. case 1024:
  297. case 2048:
  298. break;
  299. default:
  300. xfs_warn(mp, "inode size of %d bytes not supported",
  301. sbp->sb_inodesize);
  302. return XFS_ERROR(ENOSYS);
  303. }
  304. if (xfs_sb_validate_fsb_count(sbp, sbp->sb_dblocks) ||
  305. xfs_sb_validate_fsb_count(sbp, sbp->sb_rblocks)) {
  306. xfs_warn(mp,
  307. "file system too large to be mounted on this system.");
  308. return XFS_ERROR(EFBIG);
  309. }
  310. if (check_inprogress && sbp->sb_inprogress) {
  311. xfs_warn(mp, "Offline file system operation in progress!");
  312. return XFS_ERROR(EFSCORRUPTED);
  313. }
  314. /*
  315. * Version 1 directory format has never worked on Linux.
  316. */
  317. if (unlikely(!xfs_sb_version_hasdirv2(sbp))) {
  318. xfs_warn(mp, "file system using version 1 directory format");
  319. return XFS_ERROR(ENOSYS);
  320. }
  321. return 0;
  322. }
  323. void
  324. xfs_sb_quota_from_disk(struct xfs_sb *sbp)
  325. {
  326. /*
  327. * older mkfs doesn't initialize quota inodes to NULLFSINO. This
  328. * leads to in-core values having two different values for a quota
  329. * inode to be invalid: 0 and NULLFSINO. Change it to a single value
  330. * NULLFSINO.
  331. *
  332. * Note that this change affect only the in-core values. These
  333. * values are not written back to disk unless any quota information
  334. * is written to the disk. Even in that case, sb_pquotino field is
  335. * not written to disk unless the superblock supports pquotino.
  336. */
  337. if (sbp->sb_uquotino == 0)
  338. sbp->sb_uquotino = NULLFSINO;
  339. if (sbp->sb_gquotino == 0)
  340. sbp->sb_gquotino = NULLFSINO;
  341. if (sbp->sb_pquotino == 0)
  342. sbp->sb_pquotino = NULLFSINO;
  343. /*
  344. * We need to do these manipilations only if we are working
  345. * with an older version of on-disk superblock.
  346. */
  347. if (xfs_sb_version_has_pquotino(sbp))
  348. return;
  349. if (sbp->sb_qflags & XFS_OQUOTA_ENFD)
  350. sbp->sb_qflags |= (sbp->sb_qflags & XFS_PQUOTA_ACCT) ?
  351. XFS_PQUOTA_ENFD : XFS_GQUOTA_ENFD;
  352. if (sbp->sb_qflags & XFS_OQUOTA_CHKD)
  353. sbp->sb_qflags |= (sbp->sb_qflags & XFS_PQUOTA_ACCT) ?
  354. XFS_PQUOTA_CHKD : XFS_GQUOTA_CHKD;
  355. sbp->sb_qflags &= ~(XFS_OQUOTA_ENFD | XFS_OQUOTA_CHKD);
  356. if (sbp->sb_qflags & XFS_PQUOTA_ACCT) {
  357. /*
  358. * In older version of superblock, on-disk superblock only
  359. * has sb_gquotino, and in-core superblock has both sb_gquotino
  360. * and sb_pquotino. But, only one of them is supported at any
  361. * point of time. So, if PQUOTA is set in disk superblock,
  362. * copy over sb_gquotino to sb_pquotino.
  363. */
  364. sbp->sb_pquotino = sbp->sb_gquotino;
  365. sbp->sb_gquotino = NULLFSINO;
  366. }
  367. }
  368. void
  369. xfs_sb_from_disk(
  370. struct xfs_sb *to,
  371. xfs_dsb_t *from)
  372. {
  373. to->sb_magicnum = be32_to_cpu(from->sb_magicnum);
  374. to->sb_blocksize = be32_to_cpu(from->sb_blocksize);
  375. to->sb_dblocks = be64_to_cpu(from->sb_dblocks);
  376. to->sb_rblocks = be64_to_cpu(from->sb_rblocks);
  377. to->sb_rextents = be64_to_cpu(from->sb_rextents);
  378. memcpy(&to->sb_uuid, &from->sb_uuid, sizeof(to->sb_uuid));
  379. to->sb_logstart = be64_to_cpu(from->sb_logstart);
  380. to->sb_rootino = be64_to_cpu(from->sb_rootino);
  381. to->sb_rbmino = be64_to_cpu(from->sb_rbmino);
  382. to->sb_rsumino = be64_to_cpu(from->sb_rsumino);
  383. to->sb_rextsize = be32_to_cpu(from->sb_rextsize);
  384. to->sb_agblocks = be32_to_cpu(from->sb_agblocks);
  385. to->sb_agcount = be32_to_cpu(from->sb_agcount);
  386. to->sb_rbmblocks = be32_to_cpu(from->sb_rbmblocks);
  387. to->sb_logblocks = be32_to_cpu(from->sb_logblocks);
  388. to->sb_versionnum = be16_to_cpu(from->sb_versionnum);
  389. to->sb_sectsize = be16_to_cpu(from->sb_sectsize);
  390. to->sb_inodesize = be16_to_cpu(from->sb_inodesize);
  391. to->sb_inopblock = be16_to_cpu(from->sb_inopblock);
  392. memcpy(&to->sb_fname, &from->sb_fname, sizeof(to->sb_fname));
  393. to->sb_blocklog = from->sb_blocklog;
  394. to->sb_sectlog = from->sb_sectlog;
  395. to->sb_inodelog = from->sb_inodelog;
  396. to->sb_inopblog = from->sb_inopblog;
  397. to->sb_agblklog = from->sb_agblklog;
  398. to->sb_rextslog = from->sb_rextslog;
  399. to->sb_inprogress = from->sb_inprogress;
  400. to->sb_imax_pct = from->sb_imax_pct;
  401. to->sb_icount = be64_to_cpu(from->sb_icount);
  402. to->sb_ifree = be64_to_cpu(from->sb_ifree);
  403. to->sb_fdblocks = be64_to_cpu(from->sb_fdblocks);
  404. to->sb_frextents = be64_to_cpu(from->sb_frextents);
  405. to->sb_uquotino = be64_to_cpu(from->sb_uquotino);
  406. to->sb_gquotino = be64_to_cpu(from->sb_gquotino);
  407. to->sb_qflags = be16_to_cpu(from->sb_qflags);
  408. to->sb_flags = from->sb_flags;
  409. to->sb_shared_vn = from->sb_shared_vn;
  410. to->sb_inoalignmt = be32_to_cpu(from->sb_inoalignmt);
  411. to->sb_unit = be32_to_cpu(from->sb_unit);
  412. to->sb_width = be32_to_cpu(from->sb_width);
  413. to->sb_dirblklog = from->sb_dirblklog;
  414. to->sb_logsectlog = from->sb_logsectlog;
  415. to->sb_logsectsize = be16_to_cpu(from->sb_logsectsize);
  416. to->sb_logsunit = be32_to_cpu(from->sb_logsunit);
  417. to->sb_features2 = be32_to_cpu(from->sb_features2);
  418. to->sb_bad_features2 = be32_to_cpu(from->sb_bad_features2);
  419. to->sb_features_compat = be32_to_cpu(from->sb_features_compat);
  420. to->sb_features_ro_compat = be32_to_cpu(from->sb_features_ro_compat);
  421. to->sb_features_incompat = be32_to_cpu(from->sb_features_incompat);
  422. to->sb_features_log_incompat =
  423. be32_to_cpu(from->sb_features_log_incompat);
  424. to->sb_pad = 0;
  425. to->sb_pquotino = be64_to_cpu(from->sb_pquotino);
  426. to->sb_lsn = be64_to_cpu(from->sb_lsn);
  427. }
  428. static inline void
  429. xfs_sb_quota_to_disk(
  430. xfs_dsb_t *to,
  431. xfs_sb_t *from,
  432. __int64_t *fields)
  433. {
  434. __uint16_t qflags = from->sb_qflags;
  435. /*
  436. * We need to do these manipilations only if we are working
  437. * with an older version of on-disk superblock.
  438. */
  439. if (xfs_sb_version_has_pquotino(from))
  440. return;
  441. if (*fields & XFS_SB_QFLAGS) {
  442. /*
  443. * The in-core version of sb_qflags do not have
  444. * XFS_OQUOTA_* flags, whereas the on-disk version
  445. * does. So, convert incore XFS_{PG}QUOTA_* flags
  446. * to on-disk XFS_OQUOTA_* flags.
  447. */
  448. qflags &= ~(XFS_PQUOTA_ENFD | XFS_PQUOTA_CHKD |
  449. XFS_GQUOTA_ENFD | XFS_GQUOTA_CHKD);
  450. if (from->sb_qflags &
  451. (XFS_PQUOTA_ENFD | XFS_GQUOTA_ENFD))
  452. qflags |= XFS_OQUOTA_ENFD;
  453. if (from->sb_qflags &
  454. (XFS_PQUOTA_CHKD | XFS_GQUOTA_CHKD))
  455. qflags |= XFS_OQUOTA_CHKD;
  456. to->sb_qflags = cpu_to_be16(qflags);
  457. *fields &= ~XFS_SB_QFLAGS;
  458. }
  459. /*
  460. * GQUOTINO and PQUOTINO cannot be used together in versions
  461. * of superblock that do not have pquotino. from->sb_flags
  462. * tells us which quota is active and should be copied to
  463. * disk.
  464. */
  465. if ((*fields & XFS_SB_GQUOTINO) &&
  466. (from->sb_qflags & XFS_GQUOTA_ACCT))
  467. to->sb_gquotino = cpu_to_be64(from->sb_gquotino);
  468. else if ((*fields & XFS_SB_PQUOTINO) &&
  469. (from->sb_qflags & XFS_PQUOTA_ACCT))
  470. to->sb_gquotino = cpu_to_be64(from->sb_pquotino);
  471. *fields &= ~(XFS_SB_PQUOTINO | XFS_SB_GQUOTINO);
  472. }
  473. /*
  474. * Copy in core superblock to ondisk one.
  475. *
  476. * The fields argument is mask of superblock fields to copy.
  477. */
  478. void
  479. xfs_sb_to_disk(
  480. xfs_dsb_t *to,
  481. xfs_sb_t *from,
  482. __int64_t fields)
  483. {
  484. xfs_caddr_t to_ptr = (xfs_caddr_t)to;
  485. xfs_caddr_t from_ptr = (xfs_caddr_t)from;
  486. xfs_sb_field_t f;
  487. int first;
  488. int size;
  489. ASSERT(fields);
  490. if (!fields)
  491. return;
  492. xfs_sb_quota_to_disk(to, from, &fields);
  493. while (fields) {
  494. f = (xfs_sb_field_t)xfs_lowbit64((__uint64_t)fields);
  495. first = xfs_sb_info[f].offset;
  496. size = xfs_sb_info[f + 1].offset - first;
  497. ASSERT(xfs_sb_info[f].type == 0 || xfs_sb_info[f].type == 1);
  498. if (size == 1 || xfs_sb_info[f].type == 1) {
  499. memcpy(to_ptr + first, from_ptr + first, size);
  500. } else {
  501. switch (size) {
  502. case 2:
  503. *(__be16 *)(to_ptr + first) =
  504. cpu_to_be16(*(__u16 *)(from_ptr + first));
  505. break;
  506. case 4:
  507. *(__be32 *)(to_ptr + first) =
  508. cpu_to_be32(*(__u32 *)(from_ptr + first));
  509. break;
  510. case 8:
  511. *(__be64 *)(to_ptr + first) =
  512. cpu_to_be64(*(__u64 *)(from_ptr + first));
  513. break;
  514. default:
  515. ASSERT(0);
  516. }
  517. }
  518. fields &= ~(1LL << f);
  519. }
  520. }
  521. static int
  522. xfs_sb_verify(
  523. struct xfs_buf *bp,
  524. bool check_version)
  525. {
  526. struct xfs_mount *mp = bp->b_target->bt_mount;
  527. struct xfs_sb sb;
  528. xfs_sb_from_disk(&sb, XFS_BUF_TO_SBP(bp));
  529. /*
  530. * Only check the in progress field for the primary superblock as
  531. * mkfs.xfs doesn't clear it from secondary superblocks.
  532. */
  533. return xfs_mount_validate_sb(mp, &sb, bp->b_bn == XFS_SB_DADDR,
  534. check_version);
  535. }
  536. /*
  537. * If the superblock has the CRC feature bit set or the CRC field is non-null,
  538. * check that the CRC is valid. We check the CRC field is non-null because a
  539. * single bit error could clear the feature bit and unused parts of the
  540. * superblock are supposed to be zero. Hence a non-null crc field indicates that
  541. * we've potentially lost a feature bit and we should check it anyway.
  542. *
  543. * However, past bugs (i.e. in growfs) left non-zeroed regions beyond the
  544. * last field in V4 secondary superblocks. So for secondary superblocks,
  545. * we are more forgiving, and ignore CRC failures if the primary doesn't
  546. * indicate that the fs version is V5.
  547. */
  548. static void
  549. xfs_sb_read_verify(
  550. struct xfs_buf *bp)
  551. {
  552. struct xfs_mount *mp = bp->b_target->bt_mount;
  553. struct xfs_dsb *dsb = XFS_BUF_TO_SBP(bp);
  554. int error;
  555. /*
  556. * open code the version check to avoid needing to convert the entire
  557. * superblock from disk order just to check the version number
  558. */
  559. if (dsb->sb_magicnum == cpu_to_be32(XFS_SB_MAGIC) &&
  560. (((be16_to_cpu(dsb->sb_versionnum) & XFS_SB_VERSION_NUMBITS) ==
  561. XFS_SB_VERSION_5) ||
  562. dsb->sb_crc != 0)) {
  563. if (!xfs_buf_verify_cksum(bp, XFS_SB_CRC_OFF)) {
  564. /* Only fail bad secondaries on a known V5 filesystem */
  565. if (bp->b_bn == XFS_SB_DADDR ||
  566. xfs_sb_version_hascrc(&mp->m_sb)) {
  567. error = EFSBADCRC;
  568. goto out_error;
  569. }
  570. }
  571. }
  572. error = xfs_sb_verify(bp, true);
  573. out_error:
  574. if (error) {
  575. xfs_buf_ioerror(bp, error);
  576. if (error == EFSCORRUPTED || error == EFSBADCRC)
  577. xfs_verifier_error(bp);
  578. }
  579. }
  580. /*
  581. * We may be probed for a filesystem match, so we may not want to emit
  582. * messages when the superblock buffer is not actually an XFS superblock.
  583. * If we find an XFS superblock, then run a normal, noisy mount because we are
  584. * really going to mount it and want to know about errors.
  585. */
  586. static void
  587. xfs_sb_quiet_read_verify(
  588. struct xfs_buf *bp)
  589. {
  590. struct xfs_dsb *dsb = XFS_BUF_TO_SBP(bp);
  591. if (dsb->sb_magicnum == cpu_to_be32(XFS_SB_MAGIC)) {
  592. /* XFS filesystem, verify noisily! */
  593. xfs_sb_read_verify(bp);
  594. return;
  595. }
  596. /* quietly fail */
  597. xfs_buf_ioerror(bp, EWRONGFS);
  598. }
  599. static void
  600. xfs_sb_write_verify(
  601. struct xfs_buf *bp)
  602. {
  603. struct xfs_mount *mp = bp->b_target->bt_mount;
  604. struct xfs_buf_log_item *bip = bp->b_fspriv;
  605. int error;
  606. error = xfs_sb_verify(bp, false);
  607. if (error) {
  608. xfs_buf_ioerror(bp, error);
  609. xfs_verifier_error(bp);
  610. return;
  611. }
  612. if (!xfs_sb_version_hascrc(&mp->m_sb))
  613. return;
  614. if (bip)
  615. XFS_BUF_TO_SBP(bp)->sb_lsn = cpu_to_be64(bip->bli_item.li_lsn);
  616. xfs_buf_update_cksum(bp, XFS_SB_CRC_OFF);
  617. }
  618. const struct xfs_buf_ops xfs_sb_buf_ops = {
  619. .verify_read = xfs_sb_read_verify,
  620. .verify_write = xfs_sb_write_verify,
  621. };
  622. const struct xfs_buf_ops xfs_sb_quiet_buf_ops = {
  623. .verify_read = xfs_sb_quiet_read_verify,
  624. .verify_write = xfs_sb_write_verify,
  625. };
  626. /*
  627. * xfs_mount_common
  628. *
  629. * Mount initialization code establishing various mount
  630. * fields from the superblock associated with the given
  631. * mount structure
  632. */
  633. void
  634. xfs_sb_mount_common(
  635. struct xfs_mount *mp,
  636. struct xfs_sb *sbp)
  637. {
  638. mp->m_agfrotor = mp->m_agirotor = 0;
  639. spin_lock_init(&mp->m_agirotor_lock);
  640. mp->m_maxagi = mp->m_sb.sb_agcount;
  641. mp->m_blkbit_log = sbp->sb_blocklog + XFS_NBBYLOG;
  642. mp->m_blkbb_log = sbp->sb_blocklog - BBSHIFT;
  643. mp->m_sectbb_log = sbp->sb_sectlog - BBSHIFT;
  644. mp->m_agno_log = xfs_highbit32(sbp->sb_agcount - 1) + 1;
  645. mp->m_agino_log = sbp->sb_inopblog + sbp->sb_agblklog;
  646. mp->m_blockmask = sbp->sb_blocksize - 1;
  647. mp->m_blockwsize = sbp->sb_blocksize >> XFS_WORDLOG;
  648. mp->m_blockwmask = mp->m_blockwsize - 1;
  649. mp->m_alloc_mxr[0] = xfs_allocbt_maxrecs(mp, sbp->sb_blocksize, 1);
  650. mp->m_alloc_mxr[1] = xfs_allocbt_maxrecs(mp, sbp->sb_blocksize, 0);
  651. mp->m_alloc_mnr[0] = mp->m_alloc_mxr[0] / 2;
  652. mp->m_alloc_mnr[1] = mp->m_alloc_mxr[1] / 2;
  653. mp->m_inobt_mxr[0] = xfs_inobt_maxrecs(mp, sbp->sb_blocksize, 1);
  654. mp->m_inobt_mxr[1] = xfs_inobt_maxrecs(mp, sbp->sb_blocksize, 0);
  655. mp->m_inobt_mnr[0] = mp->m_inobt_mxr[0] / 2;
  656. mp->m_inobt_mnr[1] = mp->m_inobt_mxr[1] / 2;
  657. mp->m_bmap_dmxr[0] = xfs_bmbt_maxrecs(mp, sbp->sb_blocksize, 1);
  658. mp->m_bmap_dmxr[1] = xfs_bmbt_maxrecs(mp, sbp->sb_blocksize, 0);
  659. mp->m_bmap_dmnr[0] = mp->m_bmap_dmxr[0] / 2;
  660. mp->m_bmap_dmnr[1] = mp->m_bmap_dmxr[1] / 2;
  661. mp->m_bsize = XFS_FSB_TO_BB(mp, 1);
  662. mp->m_ialloc_inos = (int)MAX((__uint16_t)XFS_INODES_PER_CHUNK,
  663. sbp->sb_inopblock);
  664. mp->m_ialloc_blks = mp->m_ialloc_inos >> sbp->sb_inopblog;
  665. }
  666. /*
  667. * xfs_initialize_perag_data
  668. *
  669. * Read in each per-ag structure so we can count up the number of
  670. * allocated inodes, free inodes and used filesystem blocks as this
  671. * information is no longer persistent in the superblock. Once we have
  672. * this information, write it into the in-core superblock structure.
  673. */
  674. int
  675. xfs_initialize_perag_data(
  676. struct xfs_mount *mp,
  677. xfs_agnumber_t agcount)
  678. {
  679. xfs_agnumber_t index;
  680. xfs_perag_t *pag;
  681. xfs_sb_t *sbp = &mp->m_sb;
  682. uint64_t ifree = 0;
  683. uint64_t ialloc = 0;
  684. uint64_t bfree = 0;
  685. uint64_t bfreelst = 0;
  686. uint64_t btree = 0;
  687. int error;
  688. for (index = 0; index < agcount; index++) {
  689. /*
  690. * read the agf, then the agi. This gets us
  691. * all the information we need and populates the
  692. * per-ag structures for us.
  693. */
  694. error = xfs_alloc_pagf_init(mp, NULL, index, 0);
  695. if (error)
  696. return error;
  697. error = xfs_ialloc_pagi_init(mp, NULL, index);
  698. if (error)
  699. return error;
  700. pag = xfs_perag_get(mp, index);
  701. ifree += pag->pagi_freecount;
  702. ialloc += pag->pagi_count;
  703. bfree += pag->pagf_freeblks;
  704. bfreelst += pag->pagf_flcount;
  705. btree += pag->pagf_btreeblks;
  706. xfs_perag_put(pag);
  707. }
  708. /*
  709. * Overwrite incore superblock counters with just-read data
  710. */
  711. spin_lock(&mp->m_sb_lock);
  712. sbp->sb_ifree = ifree;
  713. sbp->sb_icount = ialloc;
  714. sbp->sb_fdblocks = bfree + bfreelst + btree;
  715. spin_unlock(&mp->m_sb_lock);
  716. /* Fixup the per-cpu counters as well. */
  717. xfs_icsb_reinit_counters(mp);
  718. return 0;
  719. }
  720. /*
  721. * xfs_mod_sb() can be used to copy arbitrary changes to the
  722. * in-core superblock into the superblock buffer to be logged.
  723. * It does not provide the higher level of locking that is
  724. * needed to protect the in-core superblock from concurrent
  725. * access.
  726. */
  727. void
  728. xfs_mod_sb(xfs_trans_t *tp, __int64_t fields)
  729. {
  730. xfs_buf_t *bp;
  731. int first;
  732. int last;
  733. xfs_mount_t *mp;
  734. xfs_sb_field_t f;
  735. ASSERT(fields);
  736. if (!fields)
  737. return;
  738. mp = tp->t_mountp;
  739. bp = xfs_trans_getsb(tp, mp, 0);
  740. first = sizeof(xfs_sb_t);
  741. last = 0;
  742. /* translate/copy */
  743. xfs_sb_to_disk(XFS_BUF_TO_SBP(bp), &mp->m_sb, fields);
  744. /* find modified range */
  745. f = (xfs_sb_field_t)xfs_highbit64((__uint64_t)fields);
  746. ASSERT((1LL << f) & XFS_SB_MOD_BITS);
  747. last = xfs_sb_info[f + 1].offset - 1;
  748. f = (xfs_sb_field_t)xfs_lowbit64((__uint64_t)fields);
  749. ASSERT((1LL << f) & XFS_SB_MOD_BITS);
  750. first = xfs_sb_info[f].offset;
  751. xfs_trans_buf_set_type(tp, bp, XFS_BLFT_SB_BUF);
  752. xfs_trans_log_buf(tp, bp, first, last);
  753. }