inode.c 33 KB

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  1. /*
  2. * Copyright (C) 2005, 2006
  3. * Avishay Traeger (avishay@gmail.com)
  4. * Copyright (C) 2008, 2009
  5. * Boaz Harrosh <bharrosh@panasas.com>
  6. *
  7. * Copyrights for code taken from ext2:
  8. * Copyright (C) 1992, 1993, 1994, 1995
  9. * Remy Card (card@masi.ibp.fr)
  10. * Laboratoire MASI - Institut Blaise Pascal
  11. * Universite Pierre et Marie Curie (Paris VI)
  12. * from
  13. * linux/fs/minix/inode.c
  14. * Copyright (C) 1991, 1992 Linus Torvalds
  15. *
  16. * This file is part of exofs.
  17. *
  18. * exofs is free software; you can redistribute it and/or modify
  19. * it under the terms of the GNU General Public License as published by
  20. * the Free Software Foundation. Since it is based on ext2, and the only
  21. * valid version of GPL for the Linux kernel is version 2, the only valid
  22. * version of GPL for exofs is version 2.
  23. *
  24. * exofs is distributed in the hope that it will be useful,
  25. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  26. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  27. * GNU General Public License for more details.
  28. *
  29. * You should have received a copy of the GNU General Public License
  30. * along with exofs; if not, write to the Free Software
  31. * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
  32. */
  33. #include <linux/slab.h>
  34. #include "exofs.h"
  35. #define EXOFS_DBGMSG2(M...) do {} while (0)
  36. enum { BIO_MAX_PAGES_KMALLOC =
  37. (PAGE_SIZE - sizeof(struct bio)) / sizeof(struct bio_vec),
  38. MAX_PAGES_KMALLOC =
  39. PAGE_SIZE / sizeof(struct page *),
  40. };
  41. struct page_collect {
  42. struct exofs_sb_info *sbi;
  43. struct inode *inode;
  44. unsigned expected_pages;
  45. struct exofs_io_state *ios;
  46. struct page **pages;
  47. unsigned alloc_pages;
  48. unsigned nr_pages;
  49. unsigned long length;
  50. loff_t pg_first; /* keep 64bit also in 32-arches */
  51. bool read_4_write; /* This means two things: that the read is sync
  52. * And the pages should not be unlocked.
  53. */
  54. };
  55. static void _pcol_init(struct page_collect *pcol, unsigned expected_pages,
  56. struct inode *inode)
  57. {
  58. struct exofs_sb_info *sbi = inode->i_sb->s_fs_info;
  59. pcol->sbi = sbi;
  60. pcol->inode = inode;
  61. pcol->expected_pages = expected_pages;
  62. pcol->ios = NULL;
  63. pcol->pages = NULL;
  64. pcol->alloc_pages = 0;
  65. pcol->nr_pages = 0;
  66. pcol->length = 0;
  67. pcol->pg_first = -1;
  68. pcol->read_4_write = false;
  69. }
  70. static void _pcol_reset(struct page_collect *pcol)
  71. {
  72. pcol->expected_pages -= min(pcol->nr_pages, pcol->expected_pages);
  73. pcol->pages = NULL;
  74. pcol->alloc_pages = 0;
  75. pcol->nr_pages = 0;
  76. pcol->length = 0;
  77. pcol->pg_first = -1;
  78. pcol->ios = NULL;
  79. /* this is probably the end of the loop but in writes
  80. * it might not end here. don't be left with nothing
  81. */
  82. if (!pcol->expected_pages)
  83. pcol->expected_pages = MAX_PAGES_KMALLOC;
  84. }
  85. static int pcol_try_alloc(struct page_collect *pcol)
  86. {
  87. unsigned pages = min_t(unsigned, pcol->expected_pages,
  88. MAX_PAGES_KMALLOC);
  89. if (!pcol->ios) { /* First time allocate io_state */
  90. int ret = exofs_get_io_state(&pcol->sbi->layout, &pcol->ios);
  91. if (ret)
  92. return ret;
  93. }
  94. /* TODO: easily support bio chaining */
  95. pages = min_t(unsigned, pages,
  96. pcol->sbi->layout.group_width * BIO_MAX_PAGES_KMALLOC);
  97. for (; pages; pages >>= 1) {
  98. pcol->pages = kmalloc(pages * sizeof(struct page *),
  99. GFP_KERNEL);
  100. if (likely(pcol->pages)) {
  101. pcol->alloc_pages = pages;
  102. return 0;
  103. }
  104. }
  105. EXOFS_ERR("Failed to kmalloc expected_pages=%u\n",
  106. pcol->expected_pages);
  107. return -ENOMEM;
  108. }
  109. static void pcol_free(struct page_collect *pcol)
  110. {
  111. kfree(pcol->pages);
  112. pcol->pages = NULL;
  113. if (pcol->ios) {
  114. exofs_put_io_state(pcol->ios);
  115. pcol->ios = NULL;
  116. }
  117. }
  118. static int pcol_add_page(struct page_collect *pcol, struct page *page,
  119. unsigned len)
  120. {
  121. if (unlikely(pcol->nr_pages >= pcol->alloc_pages))
  122. return -ENOMEM;
  123. pcol->pages[pcol->nr_pages++] = page;
  124. pcol->length += len;
  125. return 0;
  126. }
  127. static int update_read_page(struct page *page, int ret)
  128. {
  129. if (ret == 0) {
  130. /* Everything is OK */
  131. SetPageUptodate(page);
  132. if (PageError(page))
  133. ClearPageError(page);
  134. } else if (ret == -EFAULT) {
  135. /* In this case we were trying to read something that wasn't on
  136. * disk yet - return a page full of zeroes. This should be OK,
  137. * because the object should be empty (if there was a write
  138. * before this read, the read would be waiting with the page
  139. * locked */
  140. clear_highpage(page);
  141. SetPageUptodate(page);
  142. if (PageError(page))
  143. ClearPageError(page);
  144. ret = 0; /* recovered error */
  145. EXOFS_DBGMSG("recovered read error\n");
  146. } else /* Error */
  147. SetPageError(page);
  148. return ret;
  149. }
  150. static void update_write_page(struct page *page, int ret)
  151. {
  152. if (ret) {
  153. mapping_set_error(page->mapping, ret);
  154. SetPageError(page);
  155. }
  156. end_page_writeback(page);
  157. }
  158. /* Called at the end of reads, to optionally unlock pages and update their
  159. * status.
  160. */
  161. static int __readpages_done(struct page_collect *pcol)
  162. {
  163. int i;
  164. u64 resid;
  165. u64 good_bytes;
  166. u64 length = 0;
  167. int ret = exofs_check_io(pcol->ios, &resid);
  168. if (likely(!ret))
  169. good_bytes = pcol->length;
  170. else
  171. good_bytes = pcol->length - resid;
  172. EXOFS_DBGMSG2("readpages_done(0x%lx) good_bytes=0x%llx"
  173. " length=0x%lx nr_pages=%u\n",
  174. pcol->inode->i_ino, _LLU(good_bytes), pcol->length,
  175. pcol->nr_pages);
  176. for (i = 0; i < pcol->nr_pages; i++) {
  177. struct page *page = pcol->pages[i];
  178. struct inode *inode = page->mapping->host;
  179. int page_stat;
  180. if (inode != pcol->inode)
  181. continue; /* osd might add more pages at end */
  182. if (likely(length < good_bytes))
  183. page_stat = 0;
  184. else
  185. page_stat = ret;
  186. EXOFS_DBGMSG2(" readpages_done(0x%lx, 0x%lx) %s\n",
  187. inode->i_ino, page->index,
  188. page_stat ? "bad_bytes" : "good_bytes");
  189. ret = update_read_page(page, page_stat);
  190. if (!pcol->read_4_write)
  191. unlock_page(page);
  192. length += PAGE_SIZE;
  193. }
  194. pcol_free(pcol);
  195. EXOFS_DBGMSG2("readpages_done END\n");
  196. return ret;
  197. }
  198. /* callback of async reads */
  199. static void readpages_done(struct exofs_io_state *ios, void *p)
  200. {
  201. struct page_collect *pcol = p;
  202. __readpages_done(pcol);
  203. atomic_dec(&pcol->sbi->s_curr_pending);
  204. kfree(pcol);
  205. }
  206. static void _unlock_pcol_pages(struct page_collect *pcol, int ret, int rw)
  207. {
  208. int i;
  209. for (i = 0; i < pcol->nr_pages; i++) {
  210. struct page *page = pcol->pages[i];
  211. if (rw == READ)
  212. update_read_page(page, ret);
  213. else
  214. update_write_page(page, ret);
  215. unlock_page(page);
  216. }
  217. }
  218. static int read_exec(struct page_collect *pcol)
  219. {
  220. struct exofs_i_info *oi = exofs_i(pcol->inode);
  221. struct exofs_io_state *ios = pcol->ios;
  222. struct page_collect *pcol_copy = NULL;
  223. int ret;
  224. if (!pcol->pages)
  225. return 0;
  226. ios->pages = pcol->pages;
  227. ios->nr_pages = pcol->nr_pages;
  228. ios->length = pcol->length;
  229. ios->offset = pcol->pg_first << PAGE_CACHE_SHIFT;
  230. if (pcol->read_4_write) {
  231. exofs_oi_read(oi, pcol->ios);
  232. return __readpages_done(pcol);
  233. }
  234. pcol_copy = kmalloc(sizeof(*pcol_copy), GFP_KERNEL);
  235. if (!pcol_copy) {
  236. ret = -ENOMEM;
  237. goto err;
  238. }
  239. *pcol_copy = *pcol;
  240. ios->done = readpages_done;
  241. ios->private = pcol_copy;
  242. ret = exofs_oi_read(oi, ios);
  243. if (unlikely(ret))
  244. goto err;
  245. atomic_inc(&pcol->sbi->s_curr_pending);
  246. EXOFS_DBGMSG2("read_exec obj=0x%llx start=0x%llx length=0x%lx\n",
  247. ios->obj.id, _LLU(ios->offset), pcol->length);
  248. /* pages ownership was passed to pcol_copy */
  249. _pcol_reset(pcol);
  250. return 0;
  251. err:
  252. if (!pcol->read_4_write)
  253. _unlock_pcol_pages(pcol, ret, READ);
  254. pcol_free(pcol);
  255. kfree(pcol_copy);
  256. return ret;
  257. }
  258. /* readpage_strip is called either directly from readpage() or by the VFS from
  259. * within read_cache_pages(), to add one more page to be read. It will try to
  260. * collect as many contiguous pages as posible. If a discontinuity is
  261. * encountered, or it runs out of resources, it will submit the previous segment
  262. * and will start a new collection. Eventually caller must submit the last
  263. * segment if present.
  264. */
  265. static int readpage_strip(void *data, struct page *page)
  266. {
  267. struct page_collect *pcol = data;
  268. struct inode *inode = pcol->inode;
  269. struct exofs_i_info *oi = exofs_i(inode);
  270. loff_t i_size = i_size_read(inode);
  271. pgoff_t end_index = i_size >> PAGE_CACHE_SHIFT;
  272. size_t len;
  273. int ret;
  274. /* FIXME: Just for debugging, will be removed */
  275. if (PageUptodate(page))
  276. EXOFS_ERR("PageUptodate(0x%lx, 0x%lx)\n", pcol->inode->i_ino,
  277. page->index);
  278. if (page->index < end_index)
  279. len = PAGE_CACHE_SIZE;
  280. else if (page->index == end_index)
  281. len = i_size & ~PAGE_CACHE_MASK;
  282. else
  283. len = 0;
  284. if (!len || !obj_created(oi)) {
  285. /* this will be out of bounds, or doesn't exist yet.
  286. * Current page is cleared and the request is split
  287. */
  288. clear_highpage(page);
  289. SetPageUptodate(page);
  290. if (PageError(page))
  291. ClearPageError(page);
  292. if (!pcol->read_4_write)
  293. unlock_page(page);
  294. EXOFS_DBGMSG("readpage_strip(0x%lx, 0x%lx) empty page,"
  295. " splitting\n", inode->i_ino, page->index);
  296. return read_exec(pcol);
  297. }
  298. try_again:
  299. if (unlikely(pcol->pg_first == -1)) {
  300. pcol->pg_first = page->index;
  301. } else if (unlikely((pcol->pg_first + pcol->nr_pages) !=
  302. page->index)) {
  303. /* Discontinuity detected, split the request */
  304. ret = read_exec(pcol);
  305. if (unlikely(ret))
  306. goto fail;
  307. goto try_again;
  308. }
  309. if (!pcol->pages) {
  310. ret = pcol_try_alloc(pcol);
  311. if (unlikely(ret))
  312. goto fail;
  313. }
  314. if (len != PAGE_CACHE_SIZE)
  315. zero_user(page, len, PAGE_CACHE_SIZE - len);
  316. EXOFS_DBGMSG2(" readpage_strip(0x%lx, 0x%lx) len=0x%zx\n",
  317. inode->i_ino, page->index, len);
  318. ret = pcol_add_page(pcol, page, len);
  319. if (ret) {
  320. EXOFS_DBGMSG2("Failed pcol_add_page pages[i]=%p "
  321. "this_len=0x%zx nr_pages=%u length=0x%lx\n",
  322. page, len, pcol->nr_pages, pcol->length);
  323. /* split the request, and start again with current page */
  324. ret = read_exec(pcol);
  325. if (unlikely(ret))
  326. goto fail;
  327. goto try_again;
  328. }
  329. return 0;
  330. fail:
  331. /* SetPageError(page); ??? */
  332. unlock_page(page);
  333. return ret;
  334. }
  335. static int exofs_readpages(struct file *file, struct address_space *mapping,
  336. struct list_head *pages, unsigned nr_pages)
  337. {
  338. struct page_collect pcol;
  339. int ret;
  340. _pcol_init(&pcol, nr_pages, mapping->host);
  341. ret = read_cache_pages(mapping, pages, readpage_strip, &pcol);
  342. if (ret) {
  343. EXOFS_ERR("read_cache_pages => %d\n", ret);
  344. return ret;
  345. }
  346. return read_exec(&pcol);
  347. }
  348. static int _readpage(struct page *page, bool read_4_write)
  349. {
  350. struct page_collect pcol;
  351. int ret;
  352. _pcol_init(&pcol, 1, page->mapping->host);
  353. pcol.read_4_write = read_4_write;
  354. ret = readpage_strip(&pcol, page);
  355. if (ret) {
  356. EXOFS_ERR("_readpage => %d\n", ret);
  357. return ret;
  358. }
  359. return read_exec(&pcol);
  360. }
  361. /*
  362. * We don't need the file
  363. */
  364. static int exofs_readpage(struct file *file, struct page *page)
  365. {
  366. return _readpage(page, false);
  367. }
  368. /* Callback for osd_write. All writes are asynchronous */
  369. static void writepages_done(struct exofs_io_state *ios, void *p)
  370. {
  371. struct page_collect *pcol = p;
  372. int i;
  373. u64 resid;
  374. u64 good_bytes;
  375. u64 length = 0;
  376. int ret = exofs_check_io(ios, &resid);
  377. atomic_dec(&pcol->sbi->s_curr_pending);
  378. if (likely(!ret))
  379. good_bytes = pcol->length;
  380. else
  381. good_bytes = pcol->length - resid;
  382. EXOFS_DBGMSG2("writepages_done(0x%lx) good_bytes=0x%llx"
  383. " length=0x%lx nr_pages=%u\n",
  384. pcol->inode->i_ino, _LLU(good_bytes), pcol->length,
  385. pcol->nr_pages);
  386. for (i = 0; i < pcol->nr_pages; i++) {
  387. struct page *page = pcol->pages[i];
  388. struct inode *inode = page->mapping->host;
  389. int page_stat;
  390. if (inode != pcol->inode)
  391. continue; /* osd might add more pages to a bio */
  392. if (likely(length < good_bytes))
  393. page_stat = 0;
  394. else
  395. page_stat = ret;
  396. update_write_page(page, page_stat);
  397. unlock_page(page);
  398. EXOFS_DBGMSG2(" writepages_done(0x%lx, 0x%lx) status=%d\n",
  399. inode->i_ino, page->index, page_stat);
  400. length += PAGE_SIZE;
  401. }
  402. pcol_free(pcol);
  403. kfree(pcol);
  404. EXOFS_DBGMSG2("writepages_done END\n");
  405. }
  406. static int write_exec(struct page_collect *pcol)
  407. {
  408. struct exofs_i_info *oi = exofs_i(pcol->inode);
  409. struct exofs_io_state *ios = pcol->ios;
  410. struct page_collect *pcol_copy = NULL;
  411. int ret;
  412. if (!pcol->pages)
  413. return 0;
  414. pcol_copy = kmalloc(sizeof(*pcol_copy), GFP_KERNEL);
  415. if (!pcol_copy) {
  416. EXOFS_ERR("write_exec: Failed to kmalloc(pcol)\n");
  417. ret = -ENOMEM;
  418. goto err;
  419. }
  420. *pcol_copy = *pcol;
  421. ios->pages = pcol_copy->pages;
  422. ios->nr_pages = pcol_copy->nr_pages;
  423. ios->offset = pcol_copy->pg_first << PAGE_CACHE_SHIFT;
  424. ios->length = pcol_copy->length;
  425. ios->done = writepages_done;
  426. ios->private = pcol_copy;
  427. ret = exofs_oi_write(oi, ios);
  428. if (unlikely(ret)) {
  429. EXOFS_ERR("write_exec: exofs_oi_write() Failed\n");
  430. goto err;
  431. }
  432. atomic_inc(&pcol->sbi->s_curr_pending);
  433. EXOFS_DBGMSG2("write_exec(0x%lx, 0x%llx) start=0x%llx length=0x%lx\n",
  434. pcol->inode->i_ino, pcol->pg_first, _LLU(ios->offset),
  435. pcol->length);
  436. /* pages ownership was passed to pcol_copy */
  437. _pcol_reset(pcol);
  438. return 0;
  439. err:
  440. _unlock_pcol_pages(pcol, ret, WRITE);
  441. pcol_free(pcol);
  442. kfree(pcol_copy);
  443. return ret;
  444. }
  445. /* writepage_strip is called either directly from writepage() or by the VFS from
  446. * within write_cache_pages(), to add one more page to be written to storage.
  447. * It will try to collect as many contiguous pages as possible. If a
  448. * discontinuity is encountered or it runs out of resources it will submit the
  449. * previous segment and will start a new collection.
  450. * Eventually caller must submit the last segment if present.
  451. */
  452. static int writepage_strip(struct page *page,
  453. struct writeback_control *wbc_unused, void *data)
  454. {
  455. struct page_collect *pcol = data;
  456. struct inode *inode = pcol->inode;
  457. struct exofs_i_info *oi = exofs_i(inode);
  458. loff_t i_size = i_size_read(inode);
  459. pgoff_t end_index = i_size >> PAGE_CACHE_SHIFT;
  460. size_t len;
  461. int ret;
  462. BUG_ON(!PageLocked(page));
  463. ret = wait_obj_created(oi);
  464. if (unlikely(ret))
  465. goto fail;
  466. if (page->index < end_index)
  467. /* in this case, the page is within the limits of the file */
  468. len = PAGE_CACHE_SIZE;
  469. else {
  470. len = i_size & ~PAGE_CACHE_MASK;
  471. if (page->index > end_index || !len) {
  472. /* in this case, the page is outside the limits
  473. * (truncate in progress)
  474. */
  475. ret = write_exec(pcol);
  476. if (unlikely(ret))
  477. goto fail;
  478. if (PageError(page))
  479. ClearPageError(page);
  480. unlock_page(page);
  481. EXOFS_DBGMSG("writepage_strip(0x%lx, 0x%lx) "
  482. "outside the limits\n",
  483. inode->i_ino, page->index);
  484. return 0;
  485. }
  486. }
  487. try_again:
  488. if (unlikely(pcol->pg_first == -1)) {
  489. pcol->pg_first = page->index;
  490. } else if (unlikely((pcol->pg_first + pcol->nr_pages) !=
  491. page->index)) {
  492. /* Discontinuity detected, split the request */
  493. ret = write_exec(pcol);
  494. if (unlikely(ret))
  495. goto fail;
  496. EXOFS_DBGMSG("writepage_strip(0x%lx, 0x%lx) Discontinuity\n",
  497. inode->i_ino, page->index);
  498. goto try_again;
  499. }
  500. if (!pcol->pages) {
  501. ret = pcol_try_alloc(pcol);
  502. if (unlikely(ret))
  503. goto fail;
  504. }
  505. EXOFS_DBGMSG2(" writepage_strip(0x%lx, 0x%lx) len=0x%zx\n",
  506. inode->i_ino, page->index, len);
  507. ret = pcol_add_page(pcol, page, len);
  508. if (unlikely(ret)) {
  509. EXOFS_DBGMSG2("Failed pcol_add_page "
  510. "nr_pages=%u total_length=0x%lx\n",
  511. pcol->nr_pages, pcol->length);
  512. /* split the request, next loop will start again */
  513. ret = write_exec(pcol);
  514. if (unlikely(ret)) {
  515. EXOFS_DBGMSG("write_exec failed => %d", ret);
  516. goto fail;
  517. }
  518. goto try_again;
  519. }
  520. BUG_ON(PageWriteback(page));
  521. set_page_writeback(page);
  522. return 0;
  523. fail:
  524. EXOFS_DBGMSG("Error: writepage_strip(0x%lx, 0x%lx)=>%d\n",
  525. inode->i_ino, page->index, ret);
  526. set_bit(AS_EIO, &page->mapping->flags);
  527. unlock_page(page);
  528. return ret;
  529. }
  530. static int exofs_writepages(struct address_space *mapping,
  531. struct writeback_control *wbc)
  532. {
  533. struct page_collect pcol;
  534. long start, end, expected_pages;
  535. int ret;
  536. start = wbc->range_start >> PAGE_CACHE_SHIFT;
  537. end = (wbc->range_end == LLONG_MAX) ?
  538. start + mapping->nrpages :
  539. wbc->range_end >> PAGE_CACHE_SHIFT;
  540. if (start || end)
  541. expected_pages = end - start + 1;
  542. else
  543. expected_pages = mapping->nrpages;
  544. if (expected_pages < 32L)
  545. expected_pages = 32L;
  546. EXOFS_DBGMSG2("inode(0x%lx) wbc->start=0x%llx wbc->end=0x%llx "
  547. "nrpages=%lu start=0x%lx end=0x%lx expected_pages=%ld\n",
  548. mapping->host->i_ino, wbc->range_start, wbc->range_end,
  549. mapping->nrpages, start, end, expected_pages);
  550. _pcol_init(&pcol, expected_pages, mapping->host);
  551. ret = write_cache_pages(mapping, wbc, writepage_strip, &pcol);
  552. if (ret) {
  553. EXOFS_ERR("write_cache_pages => %d\n", ret);
  554. return ret;
  555. }
  556. return write_exec(&pcol);
  557. }
  558. static int exofs_writepage(struct page *page, struct writeback_control *wbc)
  559. {
  560. struct page_collect pcol;
  561. int ret;
  562. _pcol_init(&pcol, 1, page->mapping->host);
  563. ret = writepage_strip(page, NULL, &pcol);
  564. if (ret) {
  565. EXOFS_ERR("exofs_writepage => %d\n", ret);
  566. return ret;
  567. }
  568. return write_exec(&pcol);
  569. }
  570. /* i_mutex held using inode->i_size directly */
  571. static void _write_failed(struct inode *inode, loff_t to)
  572. {
  573. if (to > inode->i_size)
  574. truncate_pagecache(inode, to, inode->i_size);
  575. }
  576. int exofs_write_begin(struct file *file, struct address_space *mapping,
  577. loff_t pos, unsigned len, unsigned flags,
  578. struct page **pagep, void **fsdata)
  579. {
  580. int ret = 0;
  581. struct page *page;
  582. page = *pagep;
  583. if (page == NULL) {
  584. ret = simple_write_begin(file, mapping, pos, len, flags, pagep,
  585. fsdata);
  586. if (ret) {
  587. EXOFS_DBGMSG("simple_write_begin failed\n");
  588. goto out;
  589. }
  590. page = *pagep;
  591. }
  592. /* read modify write */
  593. if (!PageUptodate(page) && (len != PAGE_CACHE_SIZE)) {
  594. ret = _readpage(page, true);
  595. if (ret) {
  596. /*SetPageError was done by _readpage. Is it ok?*/
  597. unlock_page(page);
  598. EXOFS_DBGMSG("__readpage_filler failed\n");
  599. }
  600. }
  601. out:
  602. if (unlikely(ret))
  603. _write_failed(mapping->host, pos + len);
  604. return ret;
  605. }
  606. static int exofs_write_begin_export(struct file *file,
  607. struct address_space *mapping,
  608. loff_t pos, unsigned len, unsigned flags,
  609. struct page **pagep, void **fsdata)
  610. {
  611. *pagep = NULL;
  612. return exofs_write_begin(file, mapping, pos, len, flags, pagep,
  613. fsdata);
  614. }
  615. static int exofs_write_end(struct file *file, struct address_space *mapping,
  616. loff_t pos, unsigned len, unsigned copied,
  617. struct page *page, void *fsdata)
  618. {
  619. struct inode *inode = mapping->host;
  620. /* According to comment in simple_write_end i_mutex is held */
  621. loff_t i_size = inode->i_size;
  622. int ret;
  623. ret = simple_write_end(file, mapping,pos, len, copied, page, fsdata);
  624. if (unlikely(ret))
  625. _write_failed(inode, pos + len);
  626. /* TODO: once simple_write_end marks inode dirty remove */
  627. if (i_size != inode->i_size)
  628. mark_inode_dirty(inode);
  629. return ret;
  630. }
  631. static int exofs_releasepage(struct page *page, gfp_t gfp)
  632. {
  633. EXOFS_DBGMSG("page 0x%lx\n", page->index);
  634. WARN_ON(1);
  635. return 0;
  636. }
  637. static void exofs_invalidatepage(struct page *page, unsigned long offset)
  638. {
  639. EXOFS_DBGMSG("page 0x%lx offset 0x%lx\n", page->index, offset);
  640. WARN_ON(1);
  641. }
  642. const struct address_space_operations exofs_aops = {
  643. .readpage = exofs_readpage,
  644. .readpages = exofs_readpages,
  645. .writepage = exofs_writepage,
  646. .writepages = exofs_writepages,
  647. .write_begin = exofs_write_begin_export,
  648. .write_end = exofs_write_end,
  649. .releasepage = exofs_releasepage,
  650. .set_page_dirty = __set_page_dirty_nobuffers,
  651. .invalidatepage = exofs_invalidatepage,
  652. /* Not implemented Yet */
  653. .bmap = NULL, /* TODO: use osd's OSD_ACT_READ_MAP */
  654. .direct_IO = NULL, /* TODO: Should be trivial to do */
  655. /* With these NULL has special meaning or default is not exported */
  656. .sync_page = NULL,
  657. .get_xip_mem = NULL,
  658. .migratepage = NULL,
  659. .launder_page = NULL,
  660. .is_partially_uptodate = NULL,
  661. .error_remove_page = NULL,
  662. };
  663. /******************************************************************************
  664. * INODE OPERATIONS
  665. *****************************************************************************/
  666. /*
  667. * Test whether an inode is a fast symlink.
  668. */
  669. static inline int exofs_inode_is_fast_symlink(struct inode *inode)
  670. {
  671. struct exofs_i_info *oi = exofs_i(inode);
  672. return S_ISLNK(inode->i_mode) && (oi->i_data[0] != 0);
  673. }
  674. const struct osd_attr g_attr_logical_length = ATTR_DEF(
  675. OSD_APAGE_OBJECT_INFORMATION, OSD_ATTR_OI_LOGICAL_LENGTH, 8);
  676. static int _do_truncate(struct inode *inode, loff_t newsize)
  677. {
  678. struct exofs_i_info *oi = exofs_i(inode);
  679. int ret;
  680. inode->i_mtime = inode->i_ctime = CURRENT_TIME;
  681. ret = exofs_oi_truncate(oi, (u64)newsize);
  682. if (likely(!ret))
  683. truncate_setsize(inode, newsize);
  684. EXOFS_DBGMSG("(0x%lx) size=0x%llx ret=>%d\n",
  685. inode->i_ino, newsize, ret);
  686. return ret;
  687. }
  688. /*
  689. * Set inode attributes - update size attribute on OSD if needed,
  690. * otherwise just call generic functions.
  691. */
  692. int exofs_setattr(struct dentry *dentry, struct iattr *iattr)
  693. {
  694. struct inode *inode = dentry->d_inode;
  695. int error;
  696. /* if we are about to modify an object, and it hasn't been
  697. * created yet, wait
  698. */
  699. error = wait_obj_created(exofs_i(inode));
  700. if (unlikely(error))
  701. return error;
  702. error = inode_change_ok(inode, iattr);
  703. if (unlikely(error))
  704. return error;
  705. if ((iattr->ia_valid & ATTR_SIZE) &&
  706. iattr->ia_size != i_size_read(inode)) {
  707. error = _do_truncate(inode, iattr->ia_size);
  708. if (unlikely(error))
  709. return error;
  710. }
  711. setattr_copy(inode, iattr);
  712. mark_inode_dirty(inode);
  713. return 0;
  714. }
  715. static const struct osd_attr g_attr_inode_file_layout = ATTR_DEF(
  716. EXOFS_APAGE_FS_DATA,
  717. EXOFS_ATTR_INODE_FILE_LAYOUT,
  718. 0);
  719. static const struct osd_attr g_attr_inode_dir_layout = ATTR_DEF(
  720. EXOFS_APAGE_FS_DATA,
  721. EXOFS_ATTR_INODE_DIR_LAYOUT,
  722. 0);
  723. /*
  724. * Read the Linux inode info from the OSD, and return it as is. In exofs the
  725. * inode info is in an application specific page/attribute of the osd-object.
  726. */
  727. static int exofs_get_inode(struct super_block *sb, struct exofs_i_info *oi,
  728. struct exofs_fcb *inode)
  729. {
  730. struct exofs_sb_info *sbi = sb->s_fs_info;
  731. struct osd_attr attrs[] = {
  732. [0] = g_attr_inode_data,
  733. [1] = g_attr_inode_file_layout,
  734. [2] = g_attr_inode_dir_layout,
  735. };
  736. struct exofs_io_state *ios;
  737. struct exofs_on_disk_inode_layout *layout;
  738. int ret;
  739. ret = exofs_get_io_state(&sbi->layout, &ios);
  740. if (unlikely(ret)) {
  741. EXOFS_ERR("%s: exofs_get_io_state failed.\n", __func__);
  742. return ret;
  743. }
  744. ios->obj.id = exofs_oi_objno(oi);
  745. exofs_make_credential(oi->i_cred, &ios->obj);
  746. ios->cred = oi->i_cred;
  747. attrs[1].len = exofs_on_disk_inode_layout_size(sbi->layout.s_numdevs);
  748. attrs[2].len = exofs_on_disk_inode_layout_size(sbi->layout.s_numdevs);
  749. ios->in_attr = attrs;
  750. ios->in_attr_len = ARRAY_SIZE(attrs);
  751. ret = exofs_sbi_read(ios);
  752. if (unlikely(ret)) {
  753. EXOFS_ERR("object(0x%llx) corrupted, return empty file=>%d\n",
  754. _LLU(ios->obj.id), ret);
  755. memset(inode, 0, sizeof(*inode));
  756. inode->i_mode = 0040000 | (0777 & ~022);
  757. /* If object is lost on target we might as well enable it's
  758. * delete.
  759. */
  760. if ((ret == -ENOENT) || (ret == -EINVAL))
  761. ret = 0;
  762. goto out;
  763. }
  764. ret = extract_attr_from_ios(ios, &attrs[0]);
  765. if (ret) {
  766. EXOFS_ERR("%s: extract_attr of inode_data failed\n", __func__);
  767. goto out;
  768. }
  769. WARN_ON(attrs[0].len != EXOFS_INO_ATTR_SIZE);
  770. memcpy(inode, attrs[0].val_ptr, EXOFS_INO_ATTR_SIZE);
  771. ret = extract_attr_from_ios(ios, &attrs[1]);
  772. if (ret) {
  773. EXOFS_ERR("%s: extract_attr of inode_data failed\n", __func__);
  774. goto out;
  775. }
  776. if (attrs[1].len) {
  777. layout = attrs[1].val_ptr;
  778. if (layout->gen_func != cpu_to_le16(LAYOUT_MOVING_WINDOW)) {
  779. EXOFS_ERR("%s: unsupported files layout %d\n",
  780. __func__, layout->gen_func);
  781. ret = -ENOTSUPP;
  782. goto out;
  783. }
  784. }
  785. ret = extract_attr_from_ios(ios, &attrs[2]);
  786. if (ret) {
  787. EXOFS_ERR("%s: extract_attr of inode_data failed\n", __func__);
  788. goto out;
  789. }
  790. if (attrs[2].len) {
  791. layout = attrs[2].val_ptr;
  792. if (layout->gen_func != cpu_to_le16(LAYOUT_MOVING_WINDOW)) {
  793. EXOFS_ERR("%s: unsupported meta-data layout %d\n",
  794. __func__, layout->gen_func);
  795. ret = -ENOTSUPP;
  796. goto out;
  797. }
  798. }
  799. out:
  800. exofs_put_io_state(ios);
  801. return ret;
  802. }
  803. static void __oi_init(struct exofs_i_info *oi)
  804. {
  805. init_waitqueue_head(&oi->i_wq);
  806. oi->i_flags = 0;
  807. }
  808. /*
  809. * Fill in an inode read from the OSD and set it up for use
  810. */
  811. struct inode *exofs_iget(struct super_block *sb, unsigned long ino)
  812. {
  813. struct exofs_i_info *oi;
  814. struct exofs_fcb fcb;
  815. struct inode *inode;
  816. int ret;
  817. inode = iget_locked(sb, ino);
  818. if (!inode)
  819. return ERR_PTR(-ENOMEM);
  820. if (!(inode->i_state & I_NEW))
  821. return inode;
  822. oi = exofs_i(inode);
  823. __oi_init(oi);
  824. /* read the inode from the osd */
  825. ret = exofs_get_inode(sb, oi, &fcb);
  826. if (ret)
  827. goto bad_inode;
  828. set_obj_created(oi);
  829. /* copy stuff from on-disk struct to in-memory struct */
  830. inode->i_mode = le16_to_cpu(fcb.i_mode);
  831. inode->i_uid = le32_to_cpu(fcb.i_uid);
  832. inode->i_gid = le32_to_cpu(fcb.i_gid);
  833. inode->i_nlink = le16_to_cpu(fcb.i_links_count);
  834. inode->i_ctime.tv_sec = (signed)le32_to_cpu(fcb.i_ctime);
  835. inode->i_atime.tv_sec = (signed)le32_to_cpu(fcb.i_atime);
  836. inode->i_mtime.tv_sec = (signed)le32_to_cpu(fcb.i_mtime);
  837. inode->i_ctime.tv_nsec =
  838. inode->i_atime.tv_nsec = inode->i_mtime.tv_nsec = 0;
  839. oi->i_commit_size = le64_to_cpu(fcb.i_size);
  840. i_size_write(inode, oi->i_commit_size);
  841. inode->i_blkbits = EXOFS_BLKSHIFT;
  842. inode->i_generation = le32_to_cpu(fcb.i_generation);
  843. oi->i_dir_start_lookup = 0;
  844. if ((inode->i_nlink == 0) && (inode->i_mode == 0)) {
  845. ret = -ESTALE;
  846. goto bad_inode;
  847. }
  848. if (S_ISCHR(inode->i_mode) || S_ISBLK(inode->i_mode)) {
  849. if (fcb.i_data[0])
  850. inode->i_rdev =
  851. old_decode_dev(le32_to_cpu(fcb.i_data[0]));
  852. else
  853. inode->i_rdev =
  854. new_decode_dev(le32_to_cpu(fcb.i_data[1]));
  855. } else {
  856. memcpy(oi->i_data, fcb.i_data, sizeof(fcb.i_data));
  857. }
  858. inode->i_mapping->backing_dev_info = sb->s_bdi;
  859. if (S_ISREG(inode->i_mode)) {
  860. inode->i_op = &exofs_file_inode_operations;
  861. inode->i_fop = &exofs_file_operations;
  862. inode->i_mapping->a_ops = &exofs_aops;
  863. } else if (S_ISDIR(inode->i_mode)) {
  864. inode->i_op = &exofs_dir_inode_operations;
  865. inode->i_fop = &exofs_dir_operations;
  866. inode->i_mapping->a_ops = &exofs_aops;
  867. } else if (S_ISLNK(inode->i_mode)) {
  868. if (exofs_inode_is_fast_symlink(inode))
  869. inode->i_op = &exofs_fast_symlink_inode_operations;
  870. else {
  871. inode->i_op = &exofs_symlink_inode_operations;
  872. inode->i_mapping->a_ops = &exofs_aops;
  873. }
  874. } else {
  875. inode->i_op = &exofs_special_inode_operations;
  876. if (fcb.i_data[0])
  877. init_special_inode(inode, inode->i_mode,
  878. old_decode_dev(le32_to_cpu(fcb.i_data[0])));
  879. else
  880. init_special_inode(inode, inode->i_mode,
  881. new_decode_dev(le32_to_cpu(fcb.i_data[1])));
  882. }
  883. unlock_new_inode(inode);
  884. return inode;
  885. bad_inode:
  886. iget_failed(inode);
  887. return ERR_PTR(ret);
  888. }
  889. int __exofs_wait_obj_created(struct exofs_i_info *oi)
  890. {
  891. if (!obj_created(oi)) {
  892. EXOFS_DBGMSG("!obj_created\n");
  893. BUG_ON(!obj_2bcreated(oi));
  894. wait_event(oi->i_wq, obj_created(oi));
  895. EXOFS_DBGMSG("wait_event done\n");
  896. }
  897. return unlikely(is_bad_inode(&oi->vfs_inode)) ? -EIO : 0;
  898. }
  899. /*
  900. * Callback function from exofs_new_inode(). The important thing is that we
  901. * set the obj_created flag so that other methods know that the object exists on
  902. * the OSD.
  903. */
  904. static void create_done(struct exofs_io_state *ios, void *p)
  905. {
  906. struct inode *inode = p;
  907. struct exofs_i_info *oi = exofs_i(inode);
  908. struct exofs_sb_info *sbi = inode->i_sb->s_fs_info;
  909. int ret;
  910. ret = exofs_check_io(ios, NULL);
  911. exofs_put_io_state(ios);
  912. atomic_dec(&sbi->s_curr_pending);
  913. if (unlikely(ret)) {
  914. EXOFS_ERR("object=0x%llx creation failed in pid=0x%llx",
  915. _LLU(exofs_oi_objno(oi)), _LLU(sbi->layout.s_pid));
  916. /*TODO: When FS is corrupted creation can fail, object already
  917. * exist. Get rid of this asynchronous creation, if exist
  918. * increment the obj counter and try the next object. Until we
  919. * succeed. All these dangling objects will be made into lost
  920. * files by chkfs.exofs
  921. */
  922. }
  923. set_obj_created(oi);
  924. wake_up(&oi->i_wq);
  925. }
  926. /*
  927. * Set up a new inode and create an object for it on the OSD
  928. */
  929. struct inode *exofs_new_inode(struct inode *dir, int mode)
  930. {
  931. struct super_block *sb;
  932. struct inode *inode;
  933. struct exofs_i_info *oi;
  934. struct exofs_sb_info *sbi;
  935. struct exofs_io_state *ios;
  936. int ret;
  937. sb = dir->i_sb;
  938. inode = new_inode(sb);
  939. if (!inode)
  940. return ERR_PTR(-ENOMEM);
  941. oi = exofs_i(inode);
  942. __oi_init(oi);
  943. set_obj_2bcreated(oi);
  944. sbi = sb->s_fs_info;
  945. inode->i_mapping->backing_dev_info = sb->s_bdi;
  946. sb->s_dirt = 1;
  947. inode_init_owner(inode, dir, mode);
  948. inode->i_ino = sbi->s_nextid++;
  949. inode->i_blkbits = EXOFS_BLKSHIFT;
  950. inode->i_mtime = inode->i_atime = inode->i_ctime = CURRENT_TIME;
  951. oi->i_commit_size = inode->i_size = 0;
  952. spin_lock(&sbi->s_next_gen_lock);
  953. inode->i_generation = sbi->s_next_generation++;
  954. spin_unlock(&sbi->s_next_gen_lock);
  955. insert_inode_hash(inode);
  956. mark_inode_dirty(inode);
  957. ret = exofs_get_io_state(&sbi->layout, &ios);
  958. if (unlikely(ret)) {
  959. EXOFS_ERR("exofs_new_inode: exofs_get_io_state failed\n");
  960. return ERR_PTR(ret);
  961. }
  962. ios->obj.id = exofs_oi_objno(oi);
  963. exofs_make_credential(oi->i_cred, &ios->obj);
  964. ios->done = create_done;
  965. ios->private = inode;
  966. ios->cred = oi->i_cred;
  967. ret = exofs_sbi_create(ios);
  968. if (ret) {
  969. exofs_put_io_state(ios);
  970. return ERR_PTR(ret);
  971. }
  972. atomic_inc(&sbi->s_curr_pending);
  973. return inode;
  974. }
  975. /*
  976. * struct to pass two arguments to update_inode's callback
  977. */
  978. struct updatei_args {
  979. struct exofs_sb_info *sbi;
  980. struct exofs_fcb fcb;
  981. };
  982. /*
  983. * Callback function from exofs_update_inode().
  984. */
  985. static void updatei_done(struct exofs_io_state *ios, void *p)
  986. {
  987. struct updatei_args *args = p;
  988. exofs_put_io_state(ios);
  989. atomic_dec(&args->sbi->s_curr_pending);
  990. kfree(args);
  991. }
  992. /*
  993. * Write the inode to the OSD. Just fill up the struct, and set the attribute
  994. * synchronously or asynchronously depending on the do_sync flag.
  995. */
  996. static int exofs_update_inode(struct inode *inode, int do_sync)
  997. {
  998. struct exofs_i_info *oi = exofs_i(inode);
  999. struct super_block *sb = inode->i_sb;
  1000. struct exofs_sb_info *sbi = sb->s_fs_info;
  1001. struct exofs_io_state *ios;
  1002. struct osd_attr attr;
  1003. struct exofs_fcb *fcb;
  1004. struct updatei_args *args;
  1005. int ret;
  1006. args = kzalloc(sizeof(*args), GFP_KERNEL);
  1007. if (!args) {
  1008. EXOFS_DBGMSG("Failed kzalloc of args\n");
  1009. return -ENOMEM;
  1010. }
  1011. fcb = &args->fcb;
  1012. fcb->i_mode = cpu_to_le16(inode->i_mode);
  1013. fcb->i_uid = cpu_to_le32(inode->i_uid);
  1014. fcb->i_gid = cpu_to_le32(inode->i_gid);
  1015. fcb->i_links_count = cpu_to_le16(inode->i_nlink);
  1016. fcb->i_ctime = cpu_to_le32(inode->i_ctime.tv_sec);
  1017. fcb->i_atime = cpu_to_le32(inode->i_atime.tv_sec);
  1018. fcb->i_mtime = cpu_to_le32(inode->i_mtime.tv_sec);
  1019. oi->i_commit_size = i_size_read(inode);
  1020. fcb->i_size = cpu_to_le64(oi->i_commit_size);
  1021. fcb->i_generation = cpu_to_le32(inode->i_generation);
  1022. if (S_ISCHR(inode->i_mode) || S_ISBLK(inode->i_mode)) {
  1023. if (old_valid_dev(inode->i_rdev)) {
  1024. fcb->i_data[0] =
  1025. cpu_to_le32(old_encode_dev(inode->i_rdev));
  1026. fcb->i_data[1] = 0;
  1027. } else {
  1028. fcb->i_data[0] = 0;
  1029. fcb->i_data[1] =
  1030. cpu_to_le32(new_encode_dev(inode->i_rdev));
  1031. fcb->i_data[2] = 0;
  1032. }
  1033. } else
  1034. memcpy(fcb->i_data, oi->i_data, sizeof(fcb->i_data));
  1035. ret = exofs_get_io_state(&sbi->layout, &ios);
  1036. if (unlikely(ret)) {
  1037. EXOFS_ERR("%s: exofs_get_io_state failed.\n", __func__);
  1038. goto free_args;
  1039. }
  1040. attr = g_attr_inode_data;
  1041. attr.val_ptr = fcb;
  1042. ios->out_attr_len = 1;
  1043. ios->out_attr = &attr;
  1044. wait_obj_created(oi);
  1045. if (!do_sync) {
  1046. args->sbi = sbi;
  1047. ios->done = updatei_done;
  1048. ios->private = args;
  1049. }
  1050. ret = exofs_oi_write(oi, ios);
  1051. if (!do_sync && !ret) {
  1052. atomic_inc(&sbi->s_curr_pending);
  1053. goto out; /* deallocation in updatei_done */
  1054. }
  1055. exofs_put_io_state(ios);
  1056. free_args:
  1057. kfree(args);
  1058. out:
  1059. EXOFS_DBGMSG("(0x%lx) do_sync=%d ret=>%d\n",
  1060. inode->i_ino, do_sync, ret);
  1061. return ret;
  1062. }
  1063. int exofs_write_inode(struct inode *inode, struct writeback_control *wbc)
  1064. {
  1065. return exofs_update_inode(inode, wbc->sync_mode == WB_SYNC_ALL);
  1066. }
  1067. /*
  1068. * Callback function from exofs_delete_inode() - don't have much cleaning up to
  1069. * do.
  1070. */
  1071. static void delete_done(struct exofs_io_state *ios, void *p)
  1072. {
  1073. struct exofs_sb_info *sbi = p;
  1074. exofs_put_io_state(ios);
  1075. atomic_dec(&sbi->s_curr_pending);
  1076. }
  1077. /*
  1078. * Called when the refcount of an inode reaches zero. We remove the object
  1079. * from the OSD here. We make sure the object was created before we try and
  1080. * delete it.
  1081. */
  1082. void exofs_evict_inode(struct inode *inode)
  1083. {
  1084. struct exofs_i_info *oi = exofs_i(inode);
  1085. struct super_block *sb = inode->i_sb;
  1086. struct exofs_sb_info *sbi = sb->s_fs_info;
  1087. struct exofs_io_state *ios;
  1088. int ret;
  1089. truncate_inode_pages(&inode->i_data, 0);
  1090. /* TODO: should do better here */
  1091. if (inode->i_nlink || is_bad_inode(inode))
  1092. goto no_delete;
  1093. inode->i_size = 0;
  1094. end_writeback(inode);
  1095. /* if we are deleting an obj that hasn't been created yet, wait.
  1096. * This also makes sure that create_done cannot be called with an
  1097. * already evicted inode.
  1098. */
  1099. wait_obj_created(oi);
  1100. /* ignore the error, attempt a remove anyway */
  1101. /* Now Remove the OSD objects */
  1102. ret = exofs_get_io_state(&sbi->layout, &ios);
  1103. if (unlikely(ret)) {
  1104. EXOFS_ERR("%s: exofs_get_io_state failed\n", __func__);
  1105. return;
  1106. }
  1107. ios->obj.id = exofs_oi_objno(oi);
  1108. ios->done = delete_done;
  1109. ios->private = sbi;
  1110. ios->cred = oi->i_cred;
  1111. ret = exofs_sbi_remove(ios);
  1112. if (ret) {
  1113. EXOFS_ERR("%s: exofs_sbi_remove failed\n", __func__);
  1114. exofs_put_io_state(ios);
  1115. return;
  1116. }
  1117. atomic_inc(&sbi->s_curr_pending);
  1118. return;
  1119. no_delete:
  1120. end_writeback(inode);
  1121. }