ops_address.c 19 KB

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  1. /*
  2. * Copyright (C) Sistina Software, Inc. 1997-2003 All rights reserved.
  3. * Copyright (C) 2004-2007 Red Hat, Inc. All rights reserved.
  4. *
  5. * This copyrighted material is made available to anyone wishing to use,
  6. * modify, copy, or redistribute it subject to the terms and conditions
  7. * of the GNU General Public License version 2.
  8. */
  9. #include <linux/sched.h>
  10. #include <linux/slab.h>
  11. #include <linux/spinlock.h>
  12. #include <linux/completion.h>
  13. #include <linux/buffer_head.h>
  14. #include <linux/pagemap.h>
  15. #include <linux/pagevec.h>
  16. #include <linux/mpage.h>
  17. #include <linux/fs.h>
  18. #include <linux/writeback.h>
  19. #include <linux/gfs2_ondisk.h>
  20. #include <linux/lm_interface.h>
  21. #include "gfs2.h"
  22. #include "incore.h"
  23. #include "bmap.h"
  24. #include "glock.h"
  25. #include "inode.h"
  26. #include "log.h"
  27. #include "meta_io.h"
  28. #include "ops_address.h"
  29. #include "quota.h"
  30. #include "trans.h"
  31. #include "rgrp.h"
  32. #include "ops_file.h"
  33. #include "super.h"
  34. #include "util.h"
  35. #include "glops.h"
  36. static void gfs2_page_add_databufs(struct gfs2_inode *ip, struct page *page,
  37. unsigned int from, unsigned int to)
  38. {
  39. struct buffer_head *head = page_buffers(page);
  40. unsigned int bsize = head->b_size;
  41. struct buffer_head *bh;
  42. unsigned int start, end;
  43. for (bh = head, start = 0; bh != head || !start;
  44. bh = bh->b_this_page, start = end) {
  45. end = start + bsize;
  46. if (end <= from || start >= to)
  47. continue;
  48. if (gfs2_is_jdata(ip))
  49. set_buffer_uptodate(bh);
  50. gfs2_trans_add_bh(ip->i_gl, bh, 0);
  51. }
  52. }
  53. /**
  54. * gfs2_get_block - Fills in a buffer head with details about a block
  55. * @inode: The inode
  56. * @lblock: The block number to look up
  57. * @bh_result: The buffer head to return the result in
  58. * @create: Non-zero if we may add block to the file
  59. *
  60. * Returns: errno
  61. */
  62. int gfs2_get_block(struct inode *inode, sector_t lblock,
  63. struct buffer_head *bh_result, int create)
  64. {
  65. return gfs2_block_map(inode, lblock, create, bh_result);
  66. }
  67. /**
  68. * gfs2_get_block_noalloc - Fills in a buffer head with details about a block
  69. * @inode: The inode
  70. * @lblock: The block number to look up
  71. * @bh_result: The buffer head to return the result in
  72. * @create: Non-zero if we may add block to the file
  73. *
  74. * Returns: errno
  75. */
  76. static int gfs2_get_block_noalloc(struct inode *inode, sector_t lblock,
  77. struct buffer_head *bh_result, int create)
  78. {
  79. int error;
  80. error = gfs2_block_map(inode, lblock, 0, bh_result);
  81. if (error)
  82. return error;
  83. if (bh_result->b_blocknr == 0)
  84. return -EIO;
  85. return 0;
  86. }
  87. static int gfs2_get_block_direct(struct inode *inode, sector_t lblock,
  88. struct buffer_head *bh_result, int create)
  89. {
  90. return gfs2_block_map(inode, lblock, 0, bh_result);
  91. }
  92. /**
  93. * gfs2_writepage - Write complete page
  94. * @page: Page to write
  95. *
  96. * Returns: errno
  97. *
  98. * Some of this is copied from block_write_full_page() although we still
  99. * call it to do most of the work.
  100. */
  101. static int gfs2_writepage(struct page *page, struct writeback_control *wbc)
  102. {
  103. struct inode *inode = page->mapping->host;
  104. struct gfs2_inode *ip = GFS2_I(inode);
  105. struct gfs2_sbd *sdp = GFS2_SB(inode);
  106. loff_t i_size = i_size_read(inode);
  107. pgoff_t end_index = i_size >> PAGE_CACHE_SHIFT;
  108. unsigned offset;
  109. int error;
  110. int done_trans = 0;
  111. if (gfs2_assert_withdraw(sdp, gfs2_glock_is_held_excl(ip->i_gl))) {
  112. unlock_page(page);
  113. return -EIO;
  114. }
  115. if (current->journal_info)
  116. goto out_ignore;
  117. /* Is the page fully outside i_size? (truncate in progress) */
  118. offset = i_size & (PAGE_CACHE_SIZE-1);
  119. if (page->index > end_index || (page->index == end_index && !offset)) {
  120. page->mapping->a_ops->invalidatepage(page, 0);
  121. unlock_page(page);
  122. return 0; /* don't care */
  123. }
  124. if ((sdp->sd_args.ar_data == GFS2_DATA_ORDERED || gfs2_is_jdata(ip)) &&
  125. PageChecked(page)) {
  126. ClearPageChecked(page);
  127. error = gfs2_trans_begin(sdp, RES_DINODE + 1, 0);
  128. if (error)
  129. goto out_ignore;
  130. if (!page_has_buffers(page)) {
  131. create_empty_buffers(page, inode->i_sb->s_blocksize,
  132. (1 << BH_Dirty)|(1 << BH_Uptodate));
  133. }
  134. gfs2_page_add_databufs(ip, page, 0, sdp->sd_vfs->s_blocksize-1);
  135. done_trans = 1;
  136. }
  137. error = block_write_full_page(page, gfs2_get_block_noalloc, wbc);
  138. if (done_trans)
  139. gfs2_trans_end(sdp);
  140. gfs2_meta_cache_flush(ip);
  141. return error;
  142. out_ignore:
  143. redirty_page_for_writepage(wbc, page);
  144. unlock_page(page);
  145. return 0;
  146. }
  147. /**
  148. * gfs2_writepages - Write a bunch of dirty pages back to disk
  149. * @mapping: The mapping to write
  150. * @wbc: Write-back control
  151. *
  152. * For journaled files and/or ordered writes this just falls back to the
  153. * kernel's default writepages path for now. We will probably want to change
  154. * that eventually (i.e. when we look at allocate on flush).
  155. *
  156. * For the data=writeback case though we can already ignore buffer heads
  157. * and write whole extents at once. This is a big reduction in the
  158. * number of I/O requests we send and the bmap calls we make in this case.
  159. */
  160. static int gfs2_writepages(struct address_space *mapping,
  161. struct writeback_control *wbc)
  162. {
  163. struct inode *inode = mapping->host;
  164. struct gfs2_inode *ip = GFS2_I(inode);
  165. struct gfs2_sbd *sdp = GFS2_SB(inode);
  166. if (sdp->sd_args.ar_data == GFS2_DATA_WRITEBACK && !gfs2_is_jdata(ip))
  167. return mpage_writepages(mapping, wbc, gfs2_get_block_noalloc);
  168. return generic_writepages(mapping, wbc);
  169. }
  170. /**
  171. * stuffed_readpage - Fill in a Linux page with stuffed file data
  172. * @ip: the inode
  173. * @page: the page
  174. *
  175. * Returns: errno
  176. */
  177. static int stuffed_readpage(struct gfs2_inode *ip, struct page *page)
  178. {
  179. struct buffer_head *dibh;
  180. void *kaddr;
  181. int error;
  182. /*
  183. * Due to the order of unstuffing files and ->nopage(), we can be
  184. * asked for a zero page in the case of a stuffed file being extended,
  185. * so we need to supply one here. It doesn't happen often.
  186. */
  187. if (unlikely(page->index)) {
  188. zero_user_page(page, 0, PAGE_CACHE_SIZE, KM_USER0);
  189. return 0;
  190. }
  191. error = gfs2_meta_inode_buffer(ip, &dibh);
  192. if (error)
  193. return error;
  194. kaddr = kmap_atomic(page, KM_USER0);
  195. memcpy(kaddr, dibh->b_data + sizeof(struct gfs2_dinode),
  196. ip->i_di.di_size);
  197. memset(kaddr + ip->i_di.di_size, 0, PAGE_CACHE_SIZE - ip->i_di.di_size);
  198. kunmap_atomic(kaddr, KM_USER0);
  199. flush_dcache_page(page);
  200. brelse(dibh);
  201. SetPageUptodate(page);
  202. return 0;
  203. }
  204. /**
  205. * gfs2_readpage - readpage with locking
  206. * @file: The file to read a page for. N.B. This may be NULL if we are
  207. * reading an internal file.
  208. * @page: The page to read
  209. *
  210. * Returns: errno
  211. */
  212. static int gfs2_readpage(struct file *file, struct page *page)
  213. {
  214. struct gfs2_inode *ip = GFS2_I(page->mapping->host);
  215. struct gfs2_sbd *sdp = GFS2_SB(page->mapping->host);
  216. struct gfs2_file *gf = NULL;
  217. struct gfs2_holder gh;
  218. int error;
  219. int do_unlock = 0;
  220. if (likely(file != &gfs2_internal_file_sentinel)) {
  221. if (file) {
  222. gf = file->private_data;
  223. if (test_bit(GFF_EXLOCK, &gf->f_flags))
  224. /* gfs2_sharewrite_fault has grabbed the ip->i_gl already */
  225. goto skip_lock;
  226. }
  227. gfs2_holder_init(ip->i_gl, LM_ST_SHARED, GL_ATIME|LM_FLAG_TRY_1CB, &gh);
  228. do_unlock = 1;
  229. error = gfs2_glock_nq_atime(&gh);
  230. if (unlikely(error))
  231. goto out_unlock;
  232. }
  233. skip_lock:
  234. if (gfs2_is_stuffed(ip)) {
  235. error = stuffed_readpage(ip, page);
  236. unlock_page(page);
  237. } else
  238. error = mpage_readpage(page, gfs2_get_block);
  239. if (unlikely(test_bit(SDF_SHUTDOWN, &sdp->sd_flags)))
  240. error = -EIO;
  241. if (do_unlock) {
  242. gfs2_glock_dq_m(1, &gh);
  243. gfs2_holder_uninit(&gh);
  244. }
  245. out:
  246. return error;
  247. out_unlock:
  248. unlock_page(page);
  249. if (error == GLR_TRYFAILED) {
  250. error = AOP_TRUNCATED_PAGE;
  251. yield();
  252. }
  253. if (do_unlock)
  254. gfs2_holder_uninit(&gh);
  255. goto out;
  256. }
  257. /**
  258. * gfs2_readpages - Read a bunch of pages at once
  259. *
  260. * Some notes:
  261. * 1. This is only for readahead, so we can simply ignore any things
  262. * which are slightly inconvenient (such as locking conflicts between
  263. * the page lock and the glock) and return having done no I/O. Its
  264. * obviously not something we'd want to do on too regular a basis.
  265. * Any I/O we ignore at this time will be done via readpage later.
  266. * 2. We don't handle stuffed files here we let readpage do the honours.
  267. * 3. mpage_readpages() does most of the heavy lifting in the common case.
  268. * 4. gfs2_get_block() is relied upon to set BH_Boundary in the right places.
  269. * 5. We use LM_FLAG_TRY_1CB here, effectively we then have lock-ahead as
  270. * well as read-ahead.
  271. */
  272. static int gfs2_readpages(struct file *file, struct address_space *mapping,
  273. struct list_head *pages, unsigned nr_pages)
  274. {
  275. struct inode *inode = mapping->host;
  276. struct gfs2_inode *ip = GFS2_I(inode);
  277. struct gfs2_sbd *sdp = GFS2_SB(inode);
  278. struct gfs2_holder gh;
  279. int ret = 0;
  280. int do_unlock = 0;
  281. if (likely(file != &gfs2_internal_file_sentinel)) {
  282. if (file) {
  283. struct gfs2_file *gf = file->private_data;
  284. if (test_bit(GFF_EXLOCK, &gf->f_flags))
  285. goto skip_lock;
  286. }
  287. gfs2_holder_init(ip->i_gl, LM_ST_SHARED,
  288. LM_FLAG_TRY_1CB|GL_ATIME, &gh);
  289. do_unlock = 1;
  290. ret = gfs2_glock_nq_atime(&gh);
  291. if (ret == GLR_TRYFAILED)
  292. goto out_noerror;
  293. if (unlikely(ret))
  294. goto out_unlock;
  295. }
  296. skip_lock:
  297. if (!gfs2_is_stuffed(ip))
  298. ret = mpage_readpages(mapping, pages, nr_pages, gfs2_get_block);
  299. if (do_unlock) {
  300. gfs2_glock_dq_m(1, &gh);
  301. gfs2_holder_uninit(&gh);
  302. }
  303. out:
  304. if (unlikely(test_bit(SDF_SHUTDOWN, &sdp->sd_flags)))
  305. ret = -EIO;
  306. return ret;
  307. out_noerror:
  308. ret = 0;
  309. out_unlock:
  310. if (do_unlock)
  311. gfs2_holder_uninit(&gh);
  312. goto out;
  313. }
  314. /**
  315. * gfs2_prepare_write - Prepare to write a page to a file
  316. * @file: The file to write to
  317. * @page: The page which is to be prepared for writing
  318. * @from: From (byte range within page)
  319. * @to: To (byte range within page)
  320. *
  321. * Returns: errno
  322. */
  323. static int gfs2_prepare_write(struct file *file, struct page *page,
  324. unsigned from, unsigned to)
  325. {
  326. struct gfs2_inode *ip = GFS2_I(page->mapping->host);
  327. struct gfs2_sbd *sdp = GFS2_SB(page->mapping->host);
  328. unsigned int data_blocks, ind_blocks, rblocks;
  329. int alloc_required;
  330. int error = 0;
  331. loff_t pos = ((loff_t)page->index << PAGE_CACHE_SHIFT) + from;
  332. loff_t end = ((loff_t)page->index << PAGE_CACHE_SHIFT) + to;
  333. struct gfs2_alloc *al;
  334. unsigned int write_len = to - from;
  335. gfs2_holder_init(ip->i_gl, LM_ST_EXCLUSIVE, GL_ATIME|LM_FLAG_TRY_1CB, &ip->i_gh);
  336. error = gfs2_glock_nq_atime(&ip->i_gh);
  337. if (unlikely(error)) {
  338. if (error == GLR_TRYFAILED) {
  339. unlock_page(page);
  340. error = AOP_TRUNCATED_PAGE;
  341. yield();
  342. }
  343. goto out_uninit;
  344. }
  345. gfs2_write_calc_reserv(ip, write_len, &data_blocks, &ind_blocks);
  346. error = gfs2_write_alloc_required(ip, pos, write_len, &alloc_required);
  347. if (error)
  348. goto out_unlock;
  349. ip->i_alloc.al_requested = 0;
  350. if (alloc_required) {
  351. al = gfs2_alloc_get(ip);
  352. error = gfs2_quota_lock(ip, NO_QUOTA_CHANGE, NO_QUOTA_CHANGE);
  353. if (error)
  354. goto out_alloc_put;
  355. error = gfs2_quota_check(ip, ip->i_inode.i_uid, ip->i_inode.i_gid);
  356. if (error)
  357. goto out_qunlock;
  358. al->al_requested = data_blocks + ind_blocks;
  359. error = gfs2_inplace_reserve(ip);
  360. if (error)
  361. goto out_qunlock;
  362. }
  363. rblocks = RES_DINODE + ind_blocks;
  364. if (gfs2_is_jdata(ip))
  365. rblocks += data_blocks ? data_blocks : 1;
  366. if (ind_blocks || data_blocks)
  367. rblocks += RES_STATFS + RES_QUOTA;
  368. error = gfs2_trans_begin(sdp, rblocks, 0);
  369. if (error)
  370. goto out_trans_fail;
  371. if (gfs2_is_stuffed(ip)) {
  372. if (end > sdp->sd_sb.sb_bsize - sizeof(struct gfs2_dinode)) {
  373. error = gfs2_unstuff_dinode(ip, page);
  374. if (error == 0)
  375. goto prepare_write;
  376. } else if (!PageUptodate(page))
  377. error = stuffed_readpage(ip, page);
  378. goto out;
  379. }
  380. prepare_write:
  381. error = block_prepare_write(page, from, to, gfs2_get_block);
  382. out:
  383. if (error) {
  384. gfs2_trans_end(sdp);
  385. out_trans_fail:
  386. if (alloc_required) {
  387. gfs2_inplace_release(ip);
  388. out_qunlock:
  389. gfs2_quota_unlock(ip);
  390. out_alloc_put:
  391. gfs2_alloc_put(ip);
  392. }
  393. out_unlock:
  394. gfs2_glock_dq_m(1, &ip->i_gh);
  395. out_uninit:
  396. gfs2_holder_uninit(&ip->i_gh);
  397. }
  398. return error;
  399. }
  400. /**
  401. * adjust_fs_space - Adjusts the free space available due to gfs2_grow
  402. * @inode: the rindex inode
  403. */
  404. static void adjust_fs_space(struct inode *inode)
  405. {
  406. struct gfs2_sbd *sdp = inode->i_sb->s_fs_info;
  407. struct gfs2_statfs_change_host *m_sc = &sdp->sd_statfs_master;
  408. struct gfs2_statfs_change_host *l_sc = &sdp->sd_statfs_local;
  409. u64 fs_total, new_free;
  410. /* Total up the file system space, according to the latest rindex. */
  411. fs_total = gfs2_ri_total(sdp);
  412. spin_lock(&sdp->sd_statfs_spin);
  413. if (fs_total > (m_sc->sc_total + l_sc->sc_total))
  414. new_free = fs_total - (m_sc->sc_total + l_sc->sc_total);
  415. else
  416. new_free = 0;
  417. spin_unlock(&sdp->sd_statfs_spin);
  418. fs_warn(sdp, "File system extended by %llu blocks.\n",
  419. (unsigned long long)new_free);
  420. gfs2_statfs_change(sdp, new_free, new_free, 0);
  421. }
  422. /**
  423. * gfs2_commit_write - Commit write to a file
  424. * @file: The file to write to
  425. * @page: The page containing the data
  426. * @from: From (byte range within page)
  427. * @to: To (byte range within page)
  428. *
  429. * Returns: errno
  430. */
  431. static int gfs2_commit_write(struct file *file, struct page *page,
  432. unsigned from, unsigned to)
  433. {
  434. struct inode *inode = page->mapping->host;
  435. struct gfs2_inode *ip = GFS2_I(inode);
  436. struct gfs2_sbd *sdp = GFS2_SB(inode);
  437. int error = -EOPNOTSUPP;
  438. struct buffer_head *dibh;
  439. struct gfs2_alloc *al = &ip->i_alloc;
  440. struct gfs2_dinode *di;
  441. if (gfs2_assert_withdraw(sdp, gfs2_glock_is_locked_by_me(ip->i_gl)))
  442. goto fail_nounlock;
  443. error = gfs2_meta_inode_buffer(ip, &dibh);
  444. if (error)
  445. goto fail_endtrans;
  446. gfs2_trans_add_bh(ip->i_gl, dibh, 1);
  447. di = (struct gfs2_dinode *)dibh->b_data;
  448. if (gfs2_is_stuffed(ip)) {
  449. u64 file_size;
  450. void *kaddr;
  451. file_size = ((u64)page->index << PAGE_CACHE_SHIFT) + to;
  452. kaddr = kmap_atomic(page, KM_USER0);
  453. memcpy(dibh->b_data + sizeof(struct gfs2_dinode) + from,
  454. kaddr + from, to - from);
  455. kunmap_atomic(kaddr, KM_USER0);
  456. SetPageUptodate(page);
  457. if (inode->i_size < file_size) {
  458. i_size_write(inode, file_size);
  459. mark_inode_dirty(inode);
  460. }
  461. } else {
  462. if (sdp->sd_args.ar_data == GFS2_DATA_ORDERED ||
  463. gfs2_is_jdata(ip))
  464. gfs2_page_add_databufs(ip, page, from, to);
  465. error = generic_commit_write(file, page, from, to);
  466. if (error)
  467. goto fail;
  468. }
  469. if (ip->i_di.di_size < inode->i_size) {
  470. ip->i_di.di_size = inode->i_size;
  471. di->di_size = cpu_to_be64(inode->i_size);
  472. }
  473. if (inode == sdp->sd_rindex)
  474. adjust_fs_space(inode);
  475. brelse(dibh);
  476. gfs2_trans_end(sdp);
  477. if (al->al_requested) {
  478. gfs2_inplace_release(ip);
  479. gfs2_quota_unlock(ip);
  480. gfs2_alloc_put(ip);
  481. }
  482. unlock_page(page);
  483. gfs2_glock_dq_m(1, &ip->i_gh);
  484. lock_page(page);
  485. gfs2_holder_uninit(&ip->i_gh);
  486. return 0;
  487. fail:
  488. brelse(dibh);
  489. fail_endtrans:
  490. gfs2_trans_end(sdp);
  491. if (al->al_requested) {
  492. gfs2_inplace_release(ip);
  493. gfs2_quota_unlock(ip);
  494. gfs2_alloc_put(ip);
  495. }
  496. unlock_page(page);
  497. gfs2_glock_dq_m(1, &ip->i_gh);
  498. lock_page(page);
  499. gfs2_holder_uninit(&ip->i_gh);
  500. fail_nounlock:
  501. ClearPageUptodate(page);
  502. return error;
  503. }
  504. /**
  505. * gfs2_set_page_dirty - Page dirtying function
  506. * @page: The page to dirty
  507. *
  508. * Returns: 1 if it dirtyed the page, or 0 otherwise
  509. */
  510. static int gfs2_set_page_dirty(struct page *page)
  511. {
  512. struct gfs2_inode *ip = GFS2_I(page->mapping->host);
  513. struct gfs2_sbd *sdp = GFS2_SB(page->mapping->host);
  514. if (sdp->sd_args.ar_data == GFS2_DATA_ORDERED || gfs2_is_jdata(ip))
  515. SetPageChecked(page);
  516. return __set_page_dirty_buffers(page);
  517. }
  518. /**
  519. * gfs2_bmap - Block map function
  520. * @mapping: Address space info
  521. * @lblock: The block to map
  522. *
  523. * Returns: The disk address for the block or 0 on hole or error
  524. */
  525. static sector_t gfs2_bmap(struct address_space *mapping, sector_t lblock)
  526. {
  527. struct gfs2_inode *ip = GFS2_I(mapping->host);
  528. struct gfs2_holder i_gh;
  529. sector_t dblock = 0;
  530. int error;
  531. error = gfs2_glock_nq_init(ip->i_gl, LM_ST_SHARED, LM_FLAG_ANY, &i_gh);
  532. if (error)
  533. return 0;
  534. if (!gfs2_is_stuffed(ip))
  535. dblock = generic_block_bmap(mapping, lblock, gfs2_get_block);
  536. gfs2_glock_dq_uninit(&i_gh);
  537. return dblock;
  538. }
  539. static void gfs2_invalidatepage(struct page *page, unsigned long offset)
  540. {
  541. BUG_ON(!PageLocked(page));
  542. if (offset == 0)
  543. ClearPageChecked(page);
  544. block_invalidatepage(page, offset);
  545. }
  546. /**
  547. * gfs2_ok_for_dio - check that dio is valid on this file
  548. * @ip: The inode
  549. * @rw: READ or WRITE
  550. * @offset: The offset at which we are reading or writing
  551. *
  552. * Returns: 0 (to ignore the i/o request and thus fall back to buffered i/o)
  553. * 1 (to accept the i/o request)
  554. */
  555. static int gfs2_ok_for_dio(struct gfs2_inode *ip, int rw, loff_t offset)
  556. {
  557. /*
  558. * Should we return an error here? I can't see that O_DIRECT for
  559. * a journaled file makes any sense. For now we'll silently fall
  560. * back to buffered I/O, likewise we do the same for stuffed
  561. * files since they are (a) small and (b) unaligned.
  562. */
  563. if (gfs2_is_jdata(ip))
  564. return 0;
  565. if (gfs2_is_stuffed(ip))
  566. return 0;
  567. if (offset > i_size_read(&ip->i_inode))
  568. return 0;
  569. return 1;
  570. }
  571. static ssize_t gfs2_direct_IO(int rw, struct kiocb *iocb,
  572. const struct iovec *iov, loff_t offset,
  573. unsigned long nr_segs)
  574. {
  575. struct file *file = iocb->ki_filp;
  576. struct inode *inode = file->f_mapping->host;
  577. struct gfs2_inode *ip = GFS2_I(inode);
  578. struct gfs2_holder gh;
  579. int rv;
  580. /*
  581. * Deferred lock, even if its a write, since we do no allocation
  582. * on this path. All we need change is atime, and this lock mode
  583. * ensures that other nodes have flushed their buffered read caches
  584. * (i.e. their page cache entries for this inode). We do not,
  585. * unfortunately have the option of only flushing a range like
  586. * the VFS does.
  587. */
  588. gfs2_holder_init(ip->i_gl, LM_ST_DEFERRED, GL_ATIME, &gh);
  589. rv = gfs2_glock_nq_atime(&gh);
  590. if (rv)
  591. return rv;
  592. rv = gfs2_ok_for_dio(ip, rw, offset);
  593. if (rv != 1)
  594. goto out; /* dio not valid, fall back to buffered i/o */
  595. rv = blockdev_direct_IO_no_locking(rw, iocb, inode, inode->i_sb->s_bdev,
  596. iov, offset, nr_segs,
  597. gfs2_get_block_direct, NULL);
  598. out:
  599. gfs2_glock_dq_m(1, &gh);
  600. gfs2_holder_uninit(&gh);
  601. return rv;
  602. }
  603. /**
  604. * gfs2_releasepage - free the metadata associated with a page
  605. * @page: the page that's being released
  606. * @gfp_mask: passed from Linux VFS, ignored by us
  607. *
  608. * Call try_to_free_buffers() if the buffers in this page can be
  609. * released.
  610. *
  611. * Returns: 0
  612. */
  613. int gfs2_releasepage(struct page *page, gfp_t gfp_mask)
  614. {
  615. struct inode *aspace = page->mapping->host;
  616. struct gfs2_sbd *sdp = aspace->i_sb->s_fs_info;
  617. struct buffer_head *bh, *head;
  618. struct gfs2_bufdata *bd;
  619. if (!page_has_buffers(page))
  620. goto out;
  621. gfs2_log_lock(sdp);
  622. head = bh = page_buffers(page);
  623. do {
  624. if (atomic_read(&bh->b_count))
  625. goto cannot_release;
  626. bd = bh->b_private;
  627. if (bd && bd->bd_ail)
  628. goto cannot_release;
  629. gfs2_assert_warn(sdp, !buffer_pinned(bh));
  630. gfs2_assert_warn(sdp, !buffer_dirty(bh));
  631. bh = bh->b_this_page;
  632. } while(bh != head);
  633. gfs2_log_unlock(sdp);
  634. head = bh = page_buffers(page);
  635. do {
  636. gfs2_log_lock(sdp);
  637. bd = bh->b_private;
  638. if (bd) {
  639. gfs2_assert_warn(sdp, bd->bd_bh == bh);
  640. gfs2_assert_warn(sdp, list_empty(&bd->bd_list_tr));
  641. bd->bd_bh = NULL;
  642. if (!list_empty(&bd->bd_le.le_list))
  643. bd = NULL;
  644. bh->b_private = NULL;
  645. }
  646. gfs2_log_unlock(sdp);
  647. if (bd)
  648. kmem_cache_free(gfs2_bufdata_cachep, bd);
  649. bh = bh->b_this_page;
  650. } while (bh != head);
  651. out:
  652. return try_to_free_buffers(page);
  653. cannot_release:
  654. gfs2_log_unlock(sdp);
  655. return 0;
  656. }
  657. const struct address_space_operations gfs2_file_aops = {
  658. .writepage = gfs2_writepage,
  659. .writepages = gfs2_writepages,
  660. .readpage = gfs2_readpage,
  661. .readpages = gfs2_readpages,
  662. .sync_page = block_sync_page,
  663. .prepare_write = gfs2_prepare_write,
  664. .commit_write = gfs2_commit_write,
  665. .set_page_dirty = gfs2_set_page_dirty,
  666. .bmap = gfs2_bmap,
  667. .invalidatepage = gfs2_invalidatepage,
  668. .releasepage = gfs2_releasepage,
  669. .direct_IO = gfs2_direct_IO,
  670. };