xfs_fsops.c 18 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_types.h"
  21. #include "xfs_bit.h"
  22. #include "xfs_inum.h"
  23. #include "xfs_log.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_bmap_btree.h"
  31. #include "xfs_alloc_btree.h"
  32. #include "xfs_ialloc_btree.h"
  33. #include "xfs_dir2_sf.h"
  34. #include "xfs_attr_sf.h"
  35. #include "xfs_dinode.h"
  36. #include "xfs_inode.h"
  37. #include "xfs_inode_item.h"
  38. #include "xfs_btree.h"
  39. #include "xfs_error.h"
  40. #include "xfs_alloc.h"
  41. #include "xfs_ialloc.h"
  42. #include "xfs_fsops.h"
  43. #include "xfs_itable.h"
  44. #include "xfs_trans_space.h"
  45. #include "xfs_rtalloc.h"
  46. #include "xfs_rw.h"
  47. #include "xfs_filestream.h"
  48. #include "xfs_trace.h"
  49. /*
  50. * File system operations
  51. */
  52. int
  53. xfs_fs_geometry(
  54. xfs_mount_t *mp,
  55. xfs_fsop_geom_t *geo,
  56. int new_version)
  57. {
  58. geo->blocksize = mp->m_sb.sb_blocksize;
  59. geo->rtextsize = mp->m_sb.sb_rextsize;
  60. geo->agblocks = mp->m_sb.sb_agblocks;
  61. geo->agcount = mp->m_sb.sb_agcount;
  62. geo->logblocks = mp->m_sb.sb_logblocks;
  63. geo->sectsize = mp->m_sb.sb_sectsize;
  64. geo->inodesize = mp->m_sb.sb_inodesize;
  65. geo->imaxpct = mp->m_sb.sb_imax_pct;
  66. geo->datablocks = mp->m_sb.sb_dblocks;
  67. geo->rtblocks = mp->m_sb.sb_rblocks;
  68. geo->rtextents = mp->m_sb.sb_rextents;
  69. geo->logstart = mp->m_sb.sb_logstart;
  70. ASSERT(sizeof(geo->uuid)==sizeof(mp->m_sb.sb_uuid));
  71. memcpy(geo->uuid, &mp->m_sb.sb_uuid, sizeof(mp->m_sb.sb_uuid));
  72. if (new_version >= 2) {
  73. geo->sunit = mp->m_sb.sb_unit;
  74. geo->swidth = mp->m_sb.sb_width;
  75. }
  76. if (new_version >= 3) {
  77. geo->version = XFS_FSOP_GEOM_VERSION;
  78. geo->flags =
  79. (xfs_sb_version_hasattr(&mp->m_sb) ?
  80. XFS_FSOP_GEOM_FLAGS_ATTR : 0) |
  81. (xfs_sb_version_hasnlink(&mp->m_sb) ?
  82. XFS_FSOP_GEOM_FLAGS_NLINK : 0) |
  83. (xfs_sb_version_hasquota(&mp->m_sb) ?
  84. XFS_FSOP_GEOM_FLAGS_QUOTA : 0) |
  85. (xfs_sb_version_hasalign(&mp->m_sb) ?
  86. XFS_FSOP_GEOM_FLAGS_IALIGN : 0) |
  87. (xfs_sb_version_hasdalign(&mp->m_sb) ?
  88. XFS_FSOP_GEOM_FLAGS_DALIGN : 0) |
  89. (xfs_sb_version_hasshared(&mp->m_sb) ?
  90. XFS_FSOP_GEOM_FLAGS_SHARED : 0) |
  91. (xfs_sb_version_hasextflgbit(&mp->m_sb) ?
  92. XFS_FSOP_GEOM_FLAGS_EXTFLG : 0) |
  93. (xfs_sb_version_hasdirv2(&mp->m_sb) ?
  94. XFS_FSOP_GEOM_FLAGS_DIRV2 : 0) |
  95. (xfs_sb_version_hassector(&mp->m_sb) ?
  96. XFS_FSOP_GEOM_FLAGS_SECTOR : 0) |
  97. (xfs_sb_version_hasasciici(&mp->m_sb) ?
  98. XFS_FSOP_GEOM_FLAGS_DIRV2CI : 0) |
  99. (xfs_sb_version_haslazysbcount(&mp->m_sb) ?
  100. XFS_FSOP_GEOM_FLAGS_LAZYSB : 0) |
  101. (xfs_sb_version_hasattr2(&mp->m_sb) ?
  102. XFS_FSOP_GEOM_FLAGS_ATTR2 : 0);
  103. geo->logsectsize = xfs_sb_version_hassector(&mp->m_sb) ?
  104. mp->m_sb.sb_logsectsize : BBSIZE;
  105. geo->rtsectsize = mp->m_sb.sb_blocksize;
  106. geo->dirblocksize = mp->m_dirblksize;
  107. }
  108. if (new_version >= 4) {
  109. geo->flags |=
  110. (xfs_sb_version_haslogv2(&mp->m_sb) ?
  111. XFS_FSOP_GEOM_FLAGS_LOGV2 : 0);
  112. geo->logsunit = mp->m_sb.sb_logsunit;
  113. }
  114. return 0;
  115. }
  116. static int
  117. xfs_growfs_data_private(
  118. xfs_mount_t *mp, /* mount point for filesystem */
  119. xfs_growfs_data_t *in) /* growfs data input struct */
  120. {
  121. xfs_agf_t *agf;
  122. xfs_agi_t *agi;
  123. xfs_agnumber_t agno;
  124. xfs_extlen_t agsize;
  125. xfs_extlen_t tmpsize;
  126. xfs_alloc_rec_t *arec;
  127. struct xfs_btree_block *block;
  128. xfs_buf_t *bp;
  129. int bucket;
  130. int dpct;
  131. int error;
  132. xfs_agnumber_t nagcount;
  133. xfs_agnumber_t nagimax = 0;
  134. xfs_rfsblock_t nb, nb_mod;
  135. xfs_rfsblock_t new;
  136. xfs_rfsblock_t nfree;
  137. xfs_agnumber_t oagcount;
  138. int pct;
  139. xfs_trans_t *tp;
  140. nb = in->newblocks;
  141. pct = in->imaxpct;
  142. if (nb < mp->m_sb.sb_dblocks || pct < 0 || pct > 100)
  143. return XFS_ERROR(EINVAL);
  144. if ((error = xfs_sb_validate_fsb_count(&mp->m_sb, nb)))
  145. return error;
  146. dpct = pct - mp->m_sb.sb_imax_pct;
  147. error = xfs_read_buf(mp, mp->m_ddev_targp,
  148. XFS_FSB_TO_BB(mp, nb) - XFS_FSS_TO_BB(mp, 1),
  149. XFS_FSS_TO_BB(mp, 1), 0, &bp);
  150. if (error)
  151. return error;
  152. ASSERT(bp);
  153. xfs_buf_relse(bp);
  154. new = nb; /* use new as a temporary here */
  155. nb_mod = do_div(new, mp->m_sb.sb_agblocks);
  156. nagcount = new + (nb_mod != 0);
  157. if (nb_mod && nb_mod < XFS_MIN_AG_BLOCKS) {
  158. nagcount--;
  159. nb = (xfs_rfsblock_t)nagcount * mp->m_sb.sb_agblocks;
  160. if (nb < mp->m_sb.sb_dblocks)
  161. return XFS_ERROR(EINVAL);
  162. }
  163. new = nb - mp->m_sb.sb_dblocks;
  164. oagcount = mp->m_sb.sb_agcount;
  165. /* allocate the new per-ag structures */
  166. if (nagcount > oagcount) {
  167. error = xfs_initialize_perag(mp, nagcount, &nagimax);
  168. if (error)
  169. return error;
  170. }
  171. tp = xfs_trans_alloc(mp, XFS_TRANS_GROWFS);
  172. tp->t_flags |= XFS_TRANS_RESERVE;
  173. if ((error = xfs_trans_reserve(tp, XFS_GROWFS_SPACE_RES(mp),
  174. XFS_GROWDATA_LOG_RES(mp), 0, 0, 0))) {
  175. xfs_trans_cancel(tp, 0);
  176. return error;
  177. }
  178. /*
  179. * Write new AG headers to disk. Non-transactional, but written
  180. * synchronously so they are completed prior to the growfs transaction
  181. * being logged.
  182. */
  183. nfree = 0;
  184. for (agno = nagcount - 1; agno >= oagcount; agno--, new -= agsize) {
  185. /*
  186. * AG freelist header block
  187. */
  188. bp = xfs_buf_get(mp->m_ddev_targp,
  189. XFS_AG_DADDR(mp, agno, XFS_AGF_DADDR(mp)),
  190. XFS_FSS_TO_BB(mp, 1), XBF_LOCK | XBF_MAPPED);
  191. agf = XFS_BUF_TO_AGF(bp);
  192. memset(agf, 0, mp->m_sb.sb_sectsize);
  193. agf->agf_magicnum = cpu_to_be32(XFS_AGF_MAGIC);
  194. agf->agf_versionnum = cpu_to_be32(XFS_AGF_VERSION);
  195. agf->agf_seqno = cpu_to_be32(agno);
  196. if (agno == nagcount - 1)
  197. agsize =
  198. nb -
  199. (agno * (xfs_rfsblock_t)mp->m_sb.sb_agblocks);
  200. else
  201. agsize = mp->m_sb.sb_agblocks;
  202. agf->agf_length = cpu_to_be32(agsize);
  203. agf->agf_roots[XFS_BTNUM_BNOi] = cpu_to_be32(XFS_BNO_BLOCK(mp));
  204. agf->agf_roots[XFS_BTNUM_CNTi] = cpu_to_be32(XFS_CNT_BLOCK(mp));
  205. agf->agf_levels[XFS_BTNUM_BNOi] = cpu_to_be32(1);
  206. agf->agf_levels[XFS_BTNUM_CNTi] = cpu_to_be32(1);
  207. agf->agf_flfirst = 0;
  208. agf->agf_fllast = cpu_to_be32(XFS_AGFL_SIZE(mp) - 1);
  209. agf->agf_flcount = 0;
  210. tmpsize = agsize - XFS_PREALLOC_BLOCKS(mp);
  211. agf->agf_freeblks = cpu_to_be32(tmpsize);
  212. agf->agf_longest = cpu_to_be32(tmpsize);
  213. error = xfs_bwrite(mp, bp);
  214. if (error) {
  215. goto error0;
  216. }
  217. /*
  218. * AG inode header block
  219. */
  220. bp = xfs_buf_get(mp->m_ddev_targp,
  221. XFS_AG_DADDR(mp, agno, XFS_AGI_DADDR(mp)),
  222. XFS_FSS_TO_BB(mp, 1), XBF_LOCK | XBF_MAPPED);
  223. agi = XFS_BUF_TO_AGI(bp);
  224. memset(agi, 0, mp->m_sb.sb_sectsize);
  225. agi->agi_magicnum = cpu_to_be32(XFS_AGI_MAGIC);
  226. agi->agi_versionnum = cpu_to_be32(XFS_AGI_VERSION);
  227. agi->agi_seqno = cpu_to_be32(agno);
  228. agi->agi_length = cpu_to_be32(agsize);
  229. agi->agi_count = 0;
  230. agi->agi_root = cpu_to_be32(XFS_IBT_BLOCK(mp));
  231. agi->agi_level = cpu_to_be32(1);
  232. agi->agi_freecount = 0;
  233. agi->agi_newino = cpu_to_be32(NULLAGINO);
  234. agi->agi_dirino = cpu_to_be32(NULLAGINO);
  235. for (bucket = 0; bucket < XFS_AGI_UNLINKED_BUCKETS; bucket++)
  236. agi->agi_unlinked[bucket] = cpu_to_be32(NULLAGINO);
  237. error = xfs_bwrite(mp, bp);
  238. if (error) {
  239. goto error0;
  240. }
  241. /*
  242. * BNO btree root block
  243. */
  244. bp = xfs_buf_get(mp->m_ddev_targp,
  245. XFS_AGB_TO_DADDR(mp, agno, XFS_BNO_BLOCK(mp)),
  246. BTOBB(mp->m_sb.sb_blocksize),
  247. XBF_LOCK | XBF_MAPPED);
  248. block = XFS_BUF_TO_BLOCK(bp);
  249. memset(block, 0, mp->m_sb.sb_blocksize);
  250. block->bb_magic = cpu_to_be32(XFS_ABTB_MAGIC);
  251. block->bb_level = 0;
  252. block->bb_numrecs = cpu_to_be16(1);
  253. block->bb_u.s.bb_leftsib = cpu_to_be32(NULLAGBLOCK);
  254. block->bb_u.s.bb_rightsib = cpu_to_be32(NULLAGBLOCK);
  255. arec = XFS_ALLOC_REC_ADDR(mp, block, 1);
  256. arec->ar_startblock = cpu_to_be32(XFS_PREALLOC_BLOCKS(mp));
  257. arec->ar_blockcount = cpu_to_be32(
  258. agsize - be32_to_cpu(arec->ar_startblock));
  259. error = xfs_bwrite(mp, bp);
  260. if (error) {
  261. goto error0;
  262. }
  263. /*
  264. * CNT btree root block
  265. */
  266. bp = xfs_buf_get(mp->m_ddev_targp,
  267. XFS_AGB_TO_DADDR(mp, agno, XFS_CNT_BLOCK(mp)),
  268. BTOBB(mp->m_sb.sb_blocksize),
  269. XBF_LOCK | XBF_MAPPED);
  270. block = XFS_BUF_TO_BLOCK(bp);
  271. memset(block, 0, mp->m_sb.sb_blocksize);
  272. block->bb_magic = cpu_to_be32(XFS_ABTC_MAGIC);
  273. block->bb_level = 0;
  274. block->bb_numrecs = cpu_to_be16(1);
  275. block->bb_u.s.bb_leftsib = cpu_to_be32(NULLAGBLOCK);
  276. block->bb_u.s.bb_rightsib = cpu_to_be32(NULLAGBLOCK);
  277. arec = XFS_ALLOC_REC_ADDR(mp, block, 1);
  278. arec->ar_startblock = cpu_to_be32(XFS_PREALLOC_BLOCKS(mp));
  279. arec->ar_blockcount = cpu_to_be32(
  280. agsize - be32_to_cpu(arec->ar_startblock));
  281. nfree += be32_to_cpu(arec->ar_blockcount);
  282. error = xfs_bwrite(mp, bp);
  283. if (error) {
  284. goto error0;
  285. }
  286. /*
  287. * INO btree root block
  288. */
  289. bp = xfs_buf_get(mp->m_ddev_targp,
  290. XFS_AGB_TO_DADDR(mp, agno, XFS_IBT_BLOCK(mp)),
  291. BTOBB(mp->m_sb.sb_blocksize),
  292. XBF_LOCK | XBF_MAPPED);
  293. block = XFS_BUF_TO_BLOCK(bp);
  294. memset(block, 0, mp->m_sb.sb_blocksize);
  295. block->bb_magic = cpu_to_be32(XFS_IBT_MAGIC);
  296. block->bb_level = 0;
  297. block->bb_numrecs = 0;
  298. block->bb_u.s.bb_leftsib = cpu_to_be32(NULLAGBLOCK);
  299. block->bb_u.s.bb_rightsib = cpu_to_be32(NULLAGBLOCK);
  300. error = xfs_bwrite(mp, bp);
  301. if (error) {
  302. goto error0;
  303. }
  304. }
  305. xfs_trans_agblocks_delta(tp, nfree);
  306. /*
  307. * There are new blocks in the old last a.g.
  308. */
  309. if (new) {
  310. /*
  311. * Change the agi length.
  312. */
  313. error = xfs_ialloc_read_agi(mp, tp, agno, &bp);
  314. if (error) {
  315. goto error0;
  316. }
  317. ASSERT(bp);
  318. agi = XFS_BUF_TO_AGI(bp);
  319. be32_add_cpu(&agi->agi_length, new);
  320. ASSERT(nagcount == oagcount ||
  321. be32_to_cpu(agi->agi_length) == mp->m_sb.sb_agblocks);
  322. xfs_ialloc_log_agi(tp, bp, XFS_AGI_LENGTH);
  323. /*
  324. * Change agf length.
  325. */
  326. error = xfs_alloc_read_agf(mp, tp, agno, 0, &bp);
  327. if (error) {
  328. goto error0;
  329. }
  330. ASSERT(bp);
  331. agf = XFS_BUF_TO_AGF(bp);
  332. be32_add_cpu(&agf->agf_length, new);
  333. ASSERT(be32_to_cpu(agf->agf_length) ==
  334. be32_to_cpu(agi->agi_length));
  335. xfs_alloc_log_agf(tp, bp, XFS_AGF_LENGTH);
  336. /*
  337. * Free the new space.
  338. */
  339. error = xfs_free_extent(tp, XFS_AGB_TO_FSB(mp, agno,
  340. be32_to_cpu(agf->agf_length) - new), new);
  341. if (error) {
  342. goto error0;
  343. }
  344. }
  345. /*
  346. * Update changed superblock fields transactionally. These are not
  347. * seen by the rest of the world until the transaction commit applies
  348. * them atomically to the superblock.
  349. */
  350. if (nagcount > oagcount)
  351. xfs_trans_mod_sb(tp, XFS_TRANS_SB_AGCOUNT, nagcount - oagcount);
  352. if (nb > mp->m_sb.sb_dblocks)
  353. xfs_trans_mod_sb(tp, XFS_TRANS_SB_DBLOCKS,
  354. nb - mp->m_sb.sb_dblocks);
  355. if (nfree)
  356. xfs_trans_mod_sb(tp, XFS_TRANS_SB_FDBLOCKS, nfree);
  357. if (dpct)
  358. xfs_trans_mod_sb(tp, XFS_TRANS_SB_IMAXPCT, dpct);
  359. error = xfs_trans_commit(tp, 0);
  360. if (error)
  361. return error;
  362. /* New allocation groups fully initialized, so update mount struct */
  363. if (nagimax)
  364. mp->m_maxagi = nagimax;
  365. if (mp->m_sb.sb_imax_pct) {
  366. __uint64_t icount = mp->m_sb.sb_dblocks * mp->m_sb.sb_imax_pct;
  367. do_div(icount, 100);
  368. mp->m_maxicount = icount << mp->m_sb.sb_inopblog;
  369. } else
  370. mp->m_maxicount = 0;
  371. /* update secondary superblocks. */
  372. for (agno = 1; agno < nagcount; agno++) {
  373. error = xfs_read_buf(mp, mp->m_ddev_targp,
  374. XFS_AGB_TO_DADDR(mp, agno, XFS_SB_BLOCK(mp)),
  375. XFS_FSS_TO_BB(mp, 1), 0, &bp);
  376. if (error) {
  377. xfs_fs_cmn_err(CE_WARN, mp,
  378. "error %d reading secondary superblock for ag %d",
  379. error, agno);
  380. break;
  381. }
  382. xfs_sb_to_disk(XFS_BUF_TO_SBP(bp), &mp->m_sb, XFS_SB_ALL_BITS);
  383. /*
  384. * If we get an error writing out the alternate superblocks,
  385. * just issue a warning and continue. The real work is
  386. * already done and committed.
  387. */
  388. if (!(error = xfs_bwrite(mp, bp))) {
  389. continue;
  390. } else {
  391. xfs_fs_cmn_err(CE_WARN, mp,
  392. "write error %d updating secondary superblock for ag %d",
  393. error, agno);
  394. break; /* no point in continuing */
  395. }
  396. }
  397. return 0;
  398. error0:
  399. xfs_trans_cancel(tp, XFS_TRANS_ABORT);
  400. return error;
  401. }
  402. static int
  403. xfs_growfs_log_private(
  404. xfs_mount_t *mp, /* mount point for filesystem */
  405. xfs_growfs_log_t *in) /* growfs log input struct */
  406. {
  407. xfs_extlen_t nb;
  408. nb = in->newblocks;
  409. if (nb < XFS_MIN_LOG_BLOCKS || nb < XFS_B_TO_FSB(mp, XFS_MIN_LOG_BYTES))
  410. return XFS_ERROR(EINVAL);
  411. if (nb == mp->m_sb.sb_logblocks &&
  412. in->isint == (mp->m_sb.sb_logstart != 0))
  413. return XFS_ERROR(EINVAL);
  414. /*
  415. * Moving the log is hard, need new interfaces to sync
  416. * the log first, hold off all activity while moving it.
  417. * Can have shorter or longer log in the same space,
  418. * or transform internal to external log or vice versa.
  419. */
  420. return XFS_ERROR(ENOSYS);
  421. }
  422. /*
  423. * protected versions of growfs function acquire and release locks on the mount
  424. * point - exported through ioctls: XFS_IOC_FSGROWFSDATA, XFS_IOC_FSGROWFSLOG,
  425. * XFS_IOC_FSGROWFSRT
  426. */
  427. int
  428. xfs_growfs_data(
  429. xfs_mount_t *mp,
  430. xfs_growfs_data_t *in)
  431. {
  432. int error;
  433. if (!capable(CAP_SYS_ADMIN))
  434. return XFS_ERROR(EPERM);
  435. if (!mutex_trylock(&mp->m_growlock))
  436. return XFS_ERROR(EWOULDBLOCK);
  437. error = xfs_growfs_data_private(mp, in);
  438. mutex_unlock(&mp->m_growlock);
  439. return error;
  440. }
  441. int
  442. xfs_growfs_log(
  443. xfs_mount_t *mp,
  444. xfs_growfs_log_t *in)
  445. {
  446. int error;
  447. if (!capable(CAP_SYS_ADMIN))
  448. return XFS_ERROR(EPERM);
  449. if (!mutex_trylock(&mp->m_growlock))
  450. return XFS_ERROR(EWOULDBLOCK);
  451. error = xfs_growfs_log_private(mp, in);
  452. mutex_unlock(&mp->m_growlock);
  453. return error;
  454. }
  455. /*
  456. * exported through ioctl XFS_IOC_FSCOUNTS
  457. */
  458. int
  459. xfs_fs_counts(
  460. xfs_mount_t *mp,
  461. xfs_fsop_counts_t *cnt)
  462. {
  463. xfs_icsb_sync_counters(mp, XFS_ICSB_LAZY_COUNT);
  464. spin_lock(&mp->m_sb_lock);
  465. cnt->freedata = mp->m_sb.sb_fdblocks - XFS_ALLOC_SET_ASIDE(mp);
  466. cnt->freertx = mp->m_sb.sb_frextents;
  467. cnt->freeino = mp->m_sb.sb_ifree;
  468. cnt->allocino = mp->m_sb.sb_icount;
  469. spin_unlock(&mp->m_sb_lock);
  470. return 0;
  471. }
  472. /*
  473. * exported through ioctl XFS_IOC_SET_RESBLKS & XFS_IOC_GET_RESBLKS
  474. *
  475. * xfs_reserve_blocks is called to set m_resblks
  476. * in the in-core mount table. The number of unused reserved blocks
  477. * is kept in m_resblks_avail.
  478. *
  479. * Reserve the requested number of blocks if available. Otherwise return
  480. * as many as possible to satisfy the request. The actual number
  481. * reserved are returned in outval
  482. *
  483. * A null inval pointer indicates that only the current reserved blocks
  484. * available should be returned no settings are changed.
  485. */
  486. int
  487. xfs_reserve_blocks(
  488. xfs_mount_t *mp,
  489. __uint64_t *inval,
  490. xfs_fsop_resblks_t *outval)
  491. {
  492. __int64_t lcounter, delta, fdblks_delta;
  493. __uint64_t request;
  494. /* If inval is null, report current values and return */
  495. if (inval == (__uint64_t *)NULL) {
  496. if (!outval)
  497. return EINVAL;
  498. outval->resblks = mp->m_resblks;
  499. outval->resblks_avail = mp->m_resblks_avail;
  500. return 0;
  501. }
  502. request = *inval;
  503. /*
  504. * With per-cpu counters, this becomes an interesting
  505. * problem. we needto work out if we are freeing or allocation
  506. * blocks first, then we can do the modification as necessary.
  507. *
  508. * We do this under the m_sb_lock so that if we are near
  509. * ENOSPC, we will hold out any changes while we work out
  510. * what to do. This means that the amount of free space can
  511. * change while we do this, so we need to retry if we end up
  512. * trying to reserve more space than is available.
  513. *
  514. * We also use the xfs_mod_incore_sb() interface so that we
  515. * don't have to care about whether per cpu counter are
  516. * enabled, disabled or even compiled in....
  517. */
  518. retry:
  519. spin_lock(&mp->m_sb_lock);
  520. xfs_icsb_sync_counters_locked(mp, 0);
  521. /*
  522. * If our previous reservation was larger than the current value,
  523. * then move any unused blocks back to the free pool.
  524. */
  525. fdblks_delta = 0;
  526. if (mp->m_resblks > request) {
  527. lcounter = mp->m_resblks_avail - request;
  528. if (lcounter > 0) { /* release unused blocks */
  529. fdblks_delta = lcounter;
  530. mp->m_resblks_avail -= lcounter;
  531. }
  532. mp->m_resblks = request;
  533. } else {
  534. __int64_t free;
  535. free = mp->m_sb.sb_fdblocks - XFS_ALLOC_SET_ASIDE(mp);
  536. if (!free)
  537. goto out; /* ENOSPC and fdblks_delta = 0 */
  538. delta = request - mp->m_resblks;
  539. lcounter = free - delta;
  540. if (lcounter < 0) {
  541. /* We can't satisfy the request, just get what we can */
  542. mp->m_resblks += free;
  543. mp->m_resblks_avail += free;
  544. fdblks_delta = -free;
  545. } else {
  546. fdblks_delta = -delta;
  547. mp->m_resblks = request;
  548. mp->m_resblks_avail += delta;
  549. }
  550. }
  551. out:
  552. if (outval) {
  553. outval->resblks = mp->m_resblks;
  554. outval->resblks_avail = mp->m_resblks_avail;
  555. }
  556. spin_unlock(&mp->m_sb_lock);
  557. if (fdblks_delta) {
  558. /*
  559. * If we are putting blocks back here, m_resblks_avail is
  560. * already at its max so this will put it in the free pool.
  561. *
  562. * If we need space, we'll either succeed in getting it
  563. * from the free block count or we'll get an enospc. If
  564. * we get a ENOSPC, it means things changed while we were
  565. * calculating fdblks_delta and so we should try again to
  566. * see if there is anything left to reserve.
  567. *
  568. * Don't set the reserved flag here - we don't want to reserve
  569. * the extra reserve blocks from the reserve.....
  570. */
  571. int error;
  572. error = xfs_mod_incore_sb(mp, XFS_SBS_FDBLOCKS, fdblks_delta, 0);
  573. if (error == ENOSPC)
  574. goto retry;
  575. }
  576. return 0;
  577. }
  578. int
  579. xfs_fs_log_dummy(
  580. xfs_mount_t *mp)
  581. {
  582. xfs_trans_t *tp;
  583. xfs_inode_t *ip;
  584. int error;
  585. tp = _xfs_trans_alloc(mp, XFS_TRANS_DUMMY1, KM_SLEEP);
  586. error = xfs_trans_reserve(tp, 0, XFS_ICHANGE_LOG_RES(mp), 0, 0, 0);
  587. if (error) {
  588. xfs_trans_cancel(tp, 0);
  589. return error;
  590. }
  591. ip = mp->m_rootip;
  592. xfs_ilock(ip, XFS_ILOCK_EXCL);
  593. xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
  594. xfs_trans_ihold(tp, ip);
  595. xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
  596. xfs_trans_set_sync(tp);
  597. error = xfs_trans_commit(tp, 0);
  598. xfs_iunlock(ip, XFS_ILOCK_EXCL);
  599. return error;
  600. }
  601. int
  602. xfs_fs_goingdown(
  603. xfs_mount_t *mp,
  604. __uint32_t inflags)
  605. {
  606. switch (inflags) {
  607. case XFS_FSOP_GOING_FLAGS_DEFAULT: {
  608. struct super_block *sb = freeze_bdev(mp->m_super->s_bdev);
  609. if (sb && !IS_ERR(sb)) {
  610. xfs_force_shutdown(mp, SHUTDOWN_FORCE_UMOUNT);
  611. thaw_bdev(sb->s_bdev, sb);
  612. }
  613. break;
  614. }
  615. case XFS_FSOP_GOING_FLAGS_LOGFLUSH:
  616. xfs_force_shutdown(mp, SHUTDOWN_FORCE_UMOUNT);
  617. break;
  618. case XFS_FSOP_GOING_FLAGS_NOLOGFLUSH:
  619. xfs_force_shutdown(mp,
  620. SHUTDOWN_FORCE_UMOUNT | SHUTDOWN_LOG_IO_ERROR);
  621. break;
  622. default:
  623. return XFS_ERROR(EINVAL);
  624. }
  625. return 0;
  626. }