pnfs.c 35 KB

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  1. /*
  2. * pNFS functions to call and manage layout drivers.
  3. *
  4. * Copyright (c) 2002 [year of first publication]
  5. * The Regents of the University of Michigan
  6. * All Rights Reserved
  7. *
  8. * Dean Hildebrand <dhildebz@umich.edu>
  9. *
  10. * Permission is granted to use, copy, create derivative works, and
  11. * redistribute this software and such derivative works for any purpose,
  12. * so long as the name of the University of Michigan is not used in
  13. * any advertising or publicity pertaining to the use or distribution
  14. * of this software without specific, written prior authorization. If
  15. * the above copyright notice or any other identification of the
  16. * University of Michigan is included in any copy of any portion of
  17. * this software, then the disclaimer below must also be included.
  18. *
  19. * This software is provided as is, without representation or warranty
  20. * of any kind either express or implied, including without limitation
  21. * the implied warranties of merchantability, fitness for a particular
  22. * purpose, or noninfringement. The Regents of the University of
  23. * Michigan shall not be liable for any damages, including special,
  24. * indirect, incidental, or consequential damages, with respect to any
  25. * claim arising out of or in connection with the use of the software,
  26. * even if it has been or is hereafter advised of the possibility of
  27. * such damages.
  28. */
  29. #include <linux/nfs_fs.h>
  30. #include "internal.h"
  31. #include "pnfs.h"
  32. #include "iostat.h"
  33. #define NFSDBG_FACILITY NFSDBG_PNFS
  34. /* Locking:
  35. *
  36. * pnfs_spinlock:
  37. * protects pnfs_modules_tbl.
  38. */
  39. static DEFINE_SPINLOCK(pnfs_spinlock);
  40. /*
  41. * pnfs_modules_tbl holds all pnfs modules
  42. */
  43. static LIST_HEAD(pnfs_modules_tbl);
  44. /* Return the registered pnfs layout driver module matching given id */
  45. static struct pnfs_layoutdriver_type *
  46. find_pnfs_driver_locked(u32 id)
  47. {
  48. struct pnfs_layoutdriver_type *local;
  49. list_for_each_entry(local, &pnfs_modules_tbl, pnfs_tblid)
  50. if (local->id == id)
  51. goto out;
  52. local = NULL;
  53. out:
  54. dprintk("%s: Searching for id %u, found %p\n", __func__, id, local);
  55. return local;
  56. }
  57. static struct pnfs_layoutdriver_type *
  58. find_pnfs_driver(u32 id)
  59. {
  60. struct pnfs_layoutdriver_type *local;
  61. spin_lock(&pnfs_spinlock);
  62. local = find_pnfs_driver_locked(id);
  63. spin_unlock(&pnfs_spinlock);
  64. return local;
  65. }
  66. void
  67. unset_pnfs_layoutdriver(struct nfs_server *nfss)
  68. {
  69. if (nfss->pnfs_curr_ld)
  70. module_put(nfss->pnfs_curr_ld->owner);
  71. nfss->pnfs_curr_ld = NULL;
  72. }
  73. /*
  74. * Try to set the server's pnfs module to the pnfs layout type specified by id.
  75. * Currently only one pNFS layout driver per filesystem is supported.
  76. *
  77. * @id layout type. Zero (illegal layout type) indicates pNFS not in use.
  78. */
  79. void
  80. set_pnfs_layoutdriver(struct nfs_server *server, u32 id)
  81. {
  82. struct pnfs_layoutdriver_type *ld_type = NULL;
  83. if (id == 0)
  84. goto out_no_driver;
  85. if (!(server->nfs_client->cl_exchange_flags &
  86. (EXCHGID4_FLAG_USE_NON_PNFS | EXCHGID4_FLAG_USE_PNFS_MDS))) {
  87. printk(KERN_ERR "%s: id %u cl_exchange_flags 0x%x\n", __func__,
  88. id, server->nfs_client->cl_exchange_flags);
  89. goto out_no_driver;
  90. }
  91. ld_type = find_pnfs_driver(id);
  92. if (!ld_type) {
  93. request_module("%s-%u", LAYOUT_NFSV4_1_MODULE_PREFIX, id);
  94. ld_type = find_pnfs_driver(id);
  95. if (!ld_type) {
  96. dprintk("%s: No pNFS module found for %u.\n",
  97. __func__, id);
  98. goto out_no_driver;
  99. }
  100. }
  101. if (!try_module_get(ld_type->owner)) {
  102. dprintk("%s: Could not grab reference on module\n", __func__);
  103. goto out_no_driver;
  104. }
  105. server->pnfs_curr_ld = ld_type;
  106. dprintk("%s: pNFS module for %u set\n", __func__, id);
  107. return;
  108. out_no_driver:
  109. dprintk("%s: Using NFSv4 I/O\n", __func__);
  110. server->pnfs_curr_ld = NULL;
  111. }
  112. int
  113. pnfs_register_layoutdriver(struct pnfs_layoutdriver_type *ld_type)
  114. {
  115. int status = -EINVAL;
  116. struct pnfs_layoutdriver_type *tmp;
  117. if (ld_type->id == 0) {
  118. printk(KERN_ERR "%s id 0 is reserved\n", __func__);
  119. return status;
  120. }
  121. if (!ld_type->alloc_lseg || !ld_type->free_lseg) {
  122. printk(KERN_ERR "%s Layout driver must provide "
  123. "alloc_lseg and free_lseg.\n", __func__);
  124. return status;
  125. }
  126. spin_lock(&pnfs_spinlock);
  127. tmp = find_pnfs_driver_locked(ld_type->id);
  128. if (!tmp) {
  129. list_add(&ld_type->pnfs_tblid, &pnfs_modules_tbl);
  130. status = 0;
  131. dprintk("%s Registering id:%u name:%s\n", __func__, ld_type->id,
  132. ld_type->name);
  133. } else {
  134. printk(KERN_ERR "%s Module with id %d already loaded!\n",
  135. __func__, ld_type->id);
  136. }
  137. spin_unlock(&pnfs_spinlock);
  138. return status;
  139. }
  140. EXPORT_SYMBOL_GPL(pnfs_register_layoutdriver);
  141. void
  142. pnfs_unregister_layoutdriver(struct pnfs_layoutdriver_type *ld_type)
  143. {
  144. dprintk("%s Deregistering id:%u\n", __func__, ld_type->id);
  145. spin_lock(&pnfs_spinlock);
  146. list_del(&ld_type->pnfs_tblid);
  147. spin_unlock(&pnfs_spinlock);
  148. }
  149. EXPORT_SYMBOL_GPL(pnfs_unregister_layoutdriver);
  150. /*
  151. * pNFS client layout cache
  152. */
  153. /* Need to hold i_lock if caller does not already hold reference */
  154. void
  155. get_layout_hdr(struct pnfs_layout_hdr *lo)
  156. {
  157. atomic_inc(&lo->plh_refcount);
  158. }
  159. static struct pnfs_layout_hdr *
  160. pnfs_alloc_layout_hdr(struct inode *ino, gfp_t gfp_flags)
  161. {
  162. struct pnfs_layoutdriver_type *ld = NFS_SERVER(ino)->pnfs_curr_ld;
  163. return ld->alloc_layout_hdr ? ld->alloc_layout_hdr(ino, gfp_flags) :
  164. kzalloc(sizeof(struct pnfs_layout_hdr), gfp_flags);
  165. }
  166. static void
  167. pnfs_free_layout_hdr(struct pnfs_layout_hdr *lo)
  168. {
  169. struct pnfs_layoutdriver_type *ld = NFS_SERVER(lo->plh_inode)->pnfs_curr_ld;
  170. return ld->alloc_layout_hdr ? ld->free_layout_hdr(lo) : kfree(lo);
  171. }
  172. static void
  173. destroy_layout_hdr(struct pnfs_layout_hdr *lo)
  174. {
  175. dprintk("%s: freeing layout cache %p\n", __func__, lo);
  176. BUG_ON(!list_empty(&lo->plh_layouts));
  177. NFS_I(lo->plh_inode)->layout = NULL;
  178. pnfs_free_layout_hdr(lo);
  179. }
  180. static void
  181. put_layout_hdr_locked(struct pnfs_layout_hdr *lo)
  182. {
  183. if (atomic_dec_and_test(&lo->plh_refcount))
  184. destroy_layout_hdr(lo);
  185. }
  186. void
  187. put_layout_hdr(struct pnfs_layout_hdr *lo)
  188. {
  189. struct inode *inode = lo->plh_inode;
  190. if (atomic_dec_and_lock(&lo->plh_refcount, &inode->i_lock)) {
  191. destroy_layout_hdr(lo);
  192. spin_unlock(&inode->i_lock);
  193. }
  194. }
  195. static void
  196. init_lseg(struct pnfs_layout_hdr *lo, struct pnfs_layout_segment *lseg)
  197. {
  198. INIT_LIST_HEAD(&lseg->pls_list);
  199. atomic_set(&lseg->pls_refcount, 1);
  200. smp_mb();
  201. set_bit(NFS_LSEG_VALID, &lseg->pls_flags);
  202. lseg->pls_layout = lo;
  203. }
  204. static void free_lseg(struct pnfs_layout_segment *lseg)
  205. {
  206. struct inode *ino = lseg->pls_layout->plh_inode;
  207. NFS_SERVER(ino)->pnfs_curr_ld->free_lseg(lseg);
  208. /* Matched by get_layout_hdr in pnfs_insert_layout */
  209. put_layout_hdr(NFS_I(ino)->layout);
  210. }
  211. static void
  212. put_lseg_common(struct pnfs_layout_segment *lseg)
  213. {
  214. struct inode *inode = lseg->pls_layout->plh_inode;
  215. WARN_ON(test_bit(NFS_LSEG_VALID, &lseg->pls_flags));
  216. list_del_init(&lseg->pls_list);
  217. if (list_empty(&lseg->pls_layout->plh_segs)) {
  218. set_bit(NFS_LAYOUT_DESTROYED, &lseg->pls_layout->plh_flags);
  219. /* Matched by initial refcount set in alloc_init_layout_hdr */
  220. put_layout_hdr_locked(lseg->pls_layout);
  221. }
  222. rpc_wake_up(&NFS_SERVER(inode)->roc_rpcwaitq);
  223. }
  224. void
  225. put_lseg(struct pnfs_layout_segment *lseg)
  226. {
  227. struct inode *inode;
  228. if (!lseg)
  229. return;
  230. dprintk("%s: lseg %p ref %d valid %d\n", __func__, lseg,
  231. atomic_read(&lseg->pls_refcount),
  232. test_bit(NFS_LSEG_VALID, &lseg->pls_flags));
  233. inode = lseg->pls_layout->plh_inode;
  234. if (atomic_dec_and_lock(&lseg->pls_refcount, &inode->i_lock)) {
  235. LIST_HEAD(free_me);
  236. put_lseg_common(lseg);
  237. list_add(&lseg->pls_list, &free_me);
  238. spin_unlock(&inode->i_lock);
  239. pnfs_free_lseg_list(&free_me);
  240. }
  241. }
  242. EXPORT_SYMBOL_GPL(put_lseg);
  243. static inline u64
  244. end_offset(u64 start, u64 len)
  245. {
  246. u64 end;
  247. end = start + len;
  248. return end >= start ? end : NFS4_MAX_UINT64;
  249. }
  250. /* last octet in a range */
  251. static inline u64
  252. last_byte_offset(u64 start, u64 len)
  253. {
  254. u64 end;
  255. BUG_ON(!len);
  256. end = start + len;
  257. return end > start ? end - 1 : NFS4_MAX_UINT64;
  258. }
  259. /*
  260. * is l2 fully contained in l1?
  261. * start1 end1
  262. * [----------------------------------)
  263. * start2 end2
  264. * [----------------)
  265. */
  266. static inline int
  267. lo_seg_contained(struct pnfs_layout_range *l1,
  268. struct pnfs_layout_range *l2)
  269. {
  270. u64 start1 = l1->offset;
  271. u64 end1 = end_offset(start1, l1->length);
  272. u64 start2 = l2->offset;
  273. u64 end2 = end_offset(start2, l2->length);
  274. return (start1 <= start2) && (end1 >= end2);
  275. }
  276. /*
  277. * is l1 and l2 intersecting?
  278. * start1 end1
  279. * [----------------------------------)
  280. * start2 end2
  281. * [----------------)
  282. */
  283. static inline int
  284. lo_seg_intersecting(struct pnfs_layout_range *l1,
  285. struct pnfs_layout_range *l2)
  286. {
  287. u64 start1 = l1->offset;
  288. u64 end1 = end_offset(start1, l1->length);
  289. u64 start2 = l2->offset;
  290. u64 end2 = end_offset(start2, l2->length);
  291. return (end1 == NFS4_MAX_UINT64 || end1 > start2) &&
  292. (end2 == NFS4_MAX_UINT64 || end2 > start1);
  293. }
  294. static bool
  295. should_free_lseg(struct pnfs_layout_range *lseg_range,
  296. struct pnfs_layout_range *recall_range)
  297. {
  298. return (recall_range->iomode == IOMODE_ANY ||
  299. lseg_range->iomode == recall_range->iomode) &&
  300. lo_seg_intersecting(lseg_range, recall_range);
  301. }
  302. /* Returns 1 if lseg is removed from list, 0 otherwise */
  303. static int mark_lseg_invalid(struct pnfs_layout_segment *lseg,
  304. struct list_head *tmp_list)
  305. {
  306. int rv = 0;
  307. if (test_and_clear_bit(NFS_LSEG_VALID, &lseg->pls_flags)) {
  308. /* Remove the reference keeping the lseg in the
  309. * list. It will now be removed when all
  310. * outstanding io is finished.
  311. */
  312. dprintk("%s: lseg %p ref %d\n", __func__, lseg,
  313. atomic_read(&lseg->pls_refcount));
  314. if (atomic_dec_and_test(&lseg->pls_refcount)) {
  315. put_lseg_common(lseg);
  316. list_add(&lseg->pls_list, tmp_list);
  317. rv = 1;
  318. }
  319. }
  320. return rv;
  321. }
  322. /* Returns count of number of matching invalid lsegs remaining in list
  323. * after call.
  324. */
  325. int
  326. mark_matching_lsegs_invalid(struct pnfs_layout_hdr *lo,
  327. struct list_head *tmp_list,
  328. struct pnfs_layout_range *recall_range)
  329. {
  330. struct pnfs_layout_segment *lseg, *next;
  331. int invalid = 0, removed = 0;
  332. dprintk("%s:Begin lo %p\n", __func__, lo);
  333. if (list_empty(&lo->plh_segs)) {
  334. if (!test_and_set_bit(NFS_LAYOUT_DESTROYED, &lo->plh_flags))
  335. put_layout_hdr_locked(lo);
  336. return 0;
  337. }
  338. list_for_each_entry_safe(lseg, next, &lo->plh_segs, pls_list)
  339. if (!recall_range ||
  340. should_free_lseg(&lseg->pls_range, recall_range)) {
  341. dprintk("%s: freeing lseg %p iomode %d "
  342. "offset %llu length %llu\n", __func__,
  343. lseg, lseg->pls_range.iomode, lseg->pls_range.offset,
  344. lseg->pls_range.length);
  345. invalid++;
  346. removed += mark_lseg_invalid(lseg, tmp_list);
  347. }
  348. dprintk("%s:Return %i\n", __func__, invalid - removed);
  349. return invalid - removed;
  350. }
  351. /* note free_me must contain lsegs from a single layout_hdr */
  352. void
  353. pnfs_free_lseg_list(struct list_head *free_me)
  354. {
  355. struct pnfs_layout_segment *lseg, *tmp;
  356. struct pnfs_layout_hdr *lo;
  357. if (list_empty(free_me))
  358. return;
  359. lo = list_first_entry(free_me, struct pnfs_layout_segment,
  360. pls_list)->pls_layout;
  361. if (test_bit(NFS_LAYOUT_DESTROYED, &lo->plh_flags)) {
  362. struct nfs_client *clp;
  363. clp = NFS_SERVER(lo->plh_inode)->nfs_client;
  364. spin_lock(&clp->cl_lock);
  365. list_del_init(&lo->plh_layouts);
  366. spin_unlock(&clp->cl_lock);
  367. }
  368. list_for_each_entry_safe(lseg, tmp, free_me, pls_list) {
  369. list_del(&lseg->pls_list);
  370. free_lseg(lseg);
  371. }
  372. }
  373. void
  374. pnfs_destroy_layout(struct nfs_inode *nfsi)
  375. {
  376. struct pnfs_layout_hdr *lo;
  377. LIST_HEAD(tmp_list);
  378. spin_lock(&nfsi->vfs_inode.i_lock);
  379. lo = nfsi->layout;
  380. if (lo) {
  381. lo->plh_block_lgets++; /* permanently block new LAYOUTGETs */
  382. mark_matching_lsegs_invalid(lo, &tmp_list, NULL);
  383. }
  384. spin_unlock(&nfsi->vfs_inode.i_lock);
  385. pnfs_free_lseg_list(&tmp_list);
  386. }
  387. /*
  388. * Called by the state manger to remove all layouts established under an
  389. * expired lease.
  390. */
  391. void
  392. pnfs_destroy_all_layouts(struct nfs_client *clp)
  393. {
  394. struct nfs_server *server;
  395. struct pnfs_layout_hdr *lo;
  396. LIST_HEAD(tmp_list);
  397. spin_lock(&clp->cl_lock);
  398. rcu_read_lock();
  399. list_for_each_entry_rcu(server, &clp->cl_superblocks, client_link) {
  400. if (!list_empty(&server->layouts))
  401. list_splice_init(&server->layouts, &tmp_list);
  402. }
  403. rcu_read_unlock();
  404. spin_unlock(&clp->cl_lock);
  405. while (!list_empty(&tmp_list)) {
  406. lo = list_entry(tmp_list.next, struct pnfs_layout_hdr,
  407. plh_layouts);
  408. dprintk("%s freeing layout for inode %lu\n", __func__,
  409. lo->plh_inode->i_ino);
  410. list_del_init(&lo->plh_layouts);
  411. pnfs_destroy_layout(NFS_I(lo->plh_inode));
  412. }
  413. }
  414. /* update lo->plh_stateid with new if is more recent */
  415. void
  416. pnfs_set_layout_stateid(struct pnfs_layout_hdr *lo, const nfs4_stateid *new,
  417. bool update_barrier)
  418. {
  419. u32 oldseq, newseq;
  420. oldseq = be32_to_cpu(lo->plh_stateid.stateid.seqid);
  421. newseq = be32_to_cpu(new->stateid.seqid);
  422. if ((int)(newseq - oldseq) > 0) {
  423. memcpy(&lo->plh_stateid, &new->stateid, sizeof(new->stateid));
  424. if (update_barrier) {
  425. u32 new_barrier = be32_to_cpu(new->stateid.seqid);
  426. if ((int)(new_barrier - lo->plh_barrier))
  427. lo->plh_barrier = new_barrier;
  428. } else {
  429. /* Because of wraparound, we want to keep the barrier
  430. * "close" to the current seqids. It needs to be
  431. * within 2**31 to count as "behind", so if it
  432. * gets too near that limit, give us a litle leeway
  433. * and bring it to within 2**30.
  434. * NOTE - and yes, this is all unsigned arithmetic.
  435. */
  436. if (unlikely((newseq - lo->plh_barrier) > (3 << 29)))
  437. lo->plh_barrier = newseq - (1 << 30);
  438. }
  439. }
  440. }
  441. /* lget is set to 1 if called from inside send_layoutget call chain */
  442. static bool
  443. pnfs_layoutgets_blocked(struct pnfs_layout_hdr *lo, nfs4_stateid *stateid,
  444. int lget)
  445. {
  446. if ((stateid) &&
  447. (int)(lo->plh_barrier - be32_to_cpu(stateid->stateid.seqid)) >= 0)
  448. return true;
  449. return lo->plh_block_lgets ||
  450. test_bit(NFS_LAYOUT_DESTROYED, &lo->plh_flags) ||
  451. test_bit(NFS_LAYOUT_BULK_RECALL, &lo->plh_flags) ||
  452. (list_empty(&lo->plh_segs) &&
  453. (atomic_read(&lo->plh_outstanding) > lget));
  454. }
  455. int
  456. pnfs_choose_layoutget_stateid(nfs4_stateid *dst, struct pnfs_layout_hdr *lo,
  457. struct nfs4_state *open_state)
  458. {
  459. int status = 0;
  460. dprintk("--> %s\n", __func__);
  461. spin_lock(&lo->plh_inode->i_lock);
  462. if (pnfs_layoutgets_blocked(lo, NULL, 1)) {
  463. status = -EAGAIN;
  464. } else if (list_empty(&lo->plh_segs)) {
  465. int seq;
  466. do {
  467. seq = read_seqbegin(&open_state->seqlock);
  468. memcpy(dst->data, open_state->stateid.data,
  469. sizeof(open_state->stateid.data));
  470. } while (read_seqretry(&open_state->seqlock, seq));
  471. } else
  472. memcpy(dst->data, lo->plh_stateid.data, sizeof(lo->plh_stateid.data));
  473. spin_unlock(&lo->plh_inode->i_lock);
  474. dprintk("<-- %s\n", __func__);
  475. return status;
  476. }
  477. /*
  478. * Get layout from server.
  479. * for now, assume that whole file layouts are requested.
  480. * arg->offset: 0
  481. * arg->length: all ones
  482. */
  483. static struct pnfs_layout_segment *
  484. send_layoutget(struct pnfs_layout_hdr *lo,
  485. struct nfs_open_context *ctx,
  486. struct pnfs_layout_range *range,
  487. gfp_t gfp_flags)
  488. {
  489. struct inode *ino = lo->plh_inode;
  490. struct nfs_server *server = NFS_SERVER(ino);
  491. struct nfs4_layoutget *lgp;
  492. struct pnfs_layout_segment *lseg = NULL;
  493. struct page **pages = NULL;
  494. int i;
  495. u32 max_resp_sz, max_pages;
  496. dprintk("--> %s\n", __func__);
  497. BUG_ON(ctx == NULL);
  498. lgp = kzalloc(sizeof(*lgp), gfp_flags);
  499. if (lgp == NULL)
  500. return NULL;
  501. /* allocate pages for xdr post processing */
  502. max_resp_sz = server->nfs_client->cl_session->fc_attrs.max_resp_sz;
  503. max_pages = max_resp_sz >> PAGE_SHIFT;
  504. pages = kzalloc(max_pages * sizeof(struct page *), gfp_flags);
  505. if (!pages)
  506. goto out_err_free;
  507. for (i = 0; i < max_pages; i++) {
  508. pages[i] = alloc_page(gfp_flags);
  509. if (!pages[i])
  510. goto out_err_free;
  511. }
  512. lgp->args.minlength = PAGE_CACHE_SIZE;
  513. if (lgp->args.minlength > range->length)
  514. lgp->args.minlength = range->length;
  515. lgp->args.maxcount = PNFS_LAYOUT_MAXSIZE;
  516. lgp->args.range = *range;
  517. lgp->args.type = server->pnfs_curr_ld->id;
  518. lgp->args.inode = ino;
  519. lgp->args.ctx = get_nfs_open_context(ctx);
  520. lgp->args.layout.pages = pages;
  521. lgp->args.layout.pglen = max_pages * PAGE_SIZE;
  522. lgp->lsegpp = &lseg;
  523. lgp->gfp_flags = gfp_flags;
  524. /* Synchronously retrieve layout information from server and
  525. * store in lseg.
  526. */
  527. nfs4_proc_layoutget(lgp);
  528. if (!lseg) {
  529. /* remember that LAYOUTGET failed and suspend trying */
  530. set_bit(lo_fail_bit(range->iomode), &lo->plh_flags);
  531. }
  532. /* free xdr pages */
  533. for (i = 0; i < max_pages; i++)
  534. __free_page(pages[i]);
  535. kfree(pages);
  536. return lseg;
  537. out_err_free:
  538. /* free any allocated xdr pages, lgp as it's not used */
  539. if (pages) {
  540. for (i = 0; i < max_pages; i++) {
  541. if (!pages[i])
  542. break;
  543. __free_page(pages[i]);
  544. }
  545. kfree(pages);
  546. }
  547. kfree(lgp);
  548. return NULL;
  549. }
  550. /* Initiates a LAYOUTRETURN(FILE) */
  551. int
  552. _pnfs_return_layout(struct inode *ino)
  553. {
  554. struct pnfs_layout_hdr *lo = NULL;
  555. struct nfs_inode *nfsi = NFS_I(ino);
  556. LIST_HEAD(tmp_list);
  557. struct nfs4_layoutreturn *lrp;
  558. nfs4_stateid stateid;
  559. int status = 0;
  560. dprintk("--> %s\n", __func__);
  561. spin_lock(&ino->i_lock);
  562. lo = nfsi->layout;
  563. if (!lo) {
  564. spin_unlock(&ino->i_lock);
  565. dprintk("%s: no layout to return\n", __func__);
  566. return status;
  567. }
  568. stateid = nfsi->layout->plh_stateid;
  569. /* Reference matched in nfs4_layoutreturn_release */
  570. get_layout_hdr(lo);
  571. mark_matching_lsegs_invalid(lo, &tmp_list, NULL);
  572. lo->plh_block_lgets++;
  573. spin_unlock(&ino->i_lock);
  574. pnfs_free_lseg_list(&tmp_list);
  575. WARN_ON(test_bit(NFS_INO_LAYOUTCOMMIT, &nfsi->flags));
  576. lrp = kzalloc(sizeof(*lrp), GFP_KERNEL);
  577. if (unlikely(lrp == NULL)) {
  578. status = -ENOMEM;
  579. set_bit(NFS_LAYOUT_RW_FAILED, &lo->plh_flags);
  580. set_bit(NFS_LAYOUT_RO_FAILED, &lo->plh_flags);
  581. put_layout_hdr(lo);
  582. goto out;
  583. }
  584. lrp->args.stateid = stateid;
  585. lrp->args.layout_type = NFS_SERVER(ino)->pnfs_curr_ld->id;
  586. lrp->args.inode = ino;
  587. lrp->clp = NFS_SERVER(ino)->nfs_client;
  588. status = nfs4_proc_layoutreturn(lrp);
  589. out:
  590. dprintk("<-- %s status: %d\n", __func__, status);
  591. return status;
  592. }
  593. bool pnfs_roc(struct inode *ino)
  594. {
  595. struct pnfs_layout_hdr *lo;
  596. struct pnfs_layout_segment *lseg, *tmp;
  597. LIST_HEAD(tmp_list);
  598. bool found = false;
  599. spin_lock(&ino->i_lock);
  600. lo = NFS_I(ino)->layout;
  601. if (!lo || !test_and_clear_bit(NFS_LAYOUT_ROC, &lo->plh_flags) ||
  602. test_bit(NFS_LAYOUT_BULK_RECALL, &lo->plh_flags))
  603. goto out_nolayout;
  604. list_for_each_entry_safe(lseg, tmp, &lo->plh_segs, pls_list)
  605. if (test_bit(NFS_LSEG_ROC, &lseg->pls_flags)) {
  606. mark_lseg_invalid(lseg, &tmp_list);
  607. found = true;
  608. }
  609. if (!found)
  610. goto out_nolayout;
  611. lo->plh_block_lgets++;
  612. get_layout_hdr(lo); /* matched in pnfs_roc_release */
  613. spin_unlock(&ino->i_lock);
  614. pnfs_free_lseg_list(&tmp_list);
  615. return true;
  616. out_nolayout:
  617. spin_unlock(&ino->i_lock);
  618. return false;
  619. }
  620. void pnfs_roc_release(struct inode *ino)
  621. {
  622. struct pnfs_layout_hdr *lo;
  623. spin_lock(&ino->i_lock);
  624. lo = NFS_I(ino)->layout;
  625. lo->plh_block_lgets--;
  626. put_layout_hdr_locked(lo);
  627. spin_unlock(&ino->i_lock);
  628. }
  629. void pnfs_roc_set_barrier(struct inode *ino, u32 barrier)
  630. {
  631. struct pnfs_layout_hdr *lo;
  632. spin_lock(&ino->i_lock);
  633. lo = NFS_I(ino)->layout;
  634. if ((int)(barrier - lo->plh_barrier) > 0)
  635. lo->plh_barrier = barrier;
  636. spin_unlock(&ino->i_lock);
  637. }
  638. bool pnfs_roc_drain(struct inode *ino, u32 *barrier)
  639. {
  640. struct nfs_inode *nfsi = NFS_I(ino);
  641. struct pnfs_layout_segment *lseg;
  642. bool found = false;
  643. spin_lock(&ino->i_lock);
  644. list_for_each_entry(lseg, &nfsi->layout->plh_segs, pls_list)
  645. if (test_bit(NFS_LSEG_ROC, &lseg->pls_flags)) {
  646. found = true;
  647. break;
  648. }
  649. if (!found) {
  650. struct pnfs_layout_hdr *lo = nfsi->layout;
  651. u32 current_seqid = be32_to_cpu(lo->plh_stateid.stateid.seqid);
  652. /* Since close does not return a layout stateid for use as
  653. * a barrier, we choose the worst-case barrier.
  654. */
  655. *barrier = current_seqid + atomic_read(&lo->plh_outstanding);
  656. }
  657. spin_unlock(&ino->i_lock);
  658. return found;
  659. }
  660. /*
  661. * Compare two layout segments for sorting into layout cache.
  662. * We want to preferentially return RW over RO layouts, so ensure those
  663. * are seen first.
  664. */
  665. static s64
  666. cmp_layout(struct pnfs_layout_range *l1,
  667. struct pnfs_layout_range *l2)
  668. {
  669. s64 d;
  670. /* high offset > low offset */
  671. d = l1->offset - l2->offset;
  672. if (d)
  673. return d;
  674. /* short length > long length */
  675. d = l2->length - l1->length;
  676. if (d)
  677. return d;
  678. /* read > read/write */
  679. return (int)(l1->iomode == IOMODE_READ) - (int)(l2->iomode == IOMODE_READ);
  680. }
  681. static void
  682. pnfs_insert_layout(struct pnfs_layout_hdr *lo,
  683. struct pnfs_layout_segment *lseg)
  684. {
  685. struct pnfs_layout_segment *lp;
  686. dprintk("%s:Begin\n", __func__);
  687. assert_spin_locked(&lo->plh_inode->i_lock);
  688. list_for_each_entry(lp, &lo->plh_segs, pls_list) {
  689. if (cmp_layout(&lseg->pls_range, &lp->pls_range) > 0)
  690. continue;
  691. list_add_tail(&lseg->pls_list, &lp->pls_list);
  692. dprintk("%s: inserted lseg %p "
  693. "iomode %d offset %llu length %llu before "
  694. "lp %p iomode %d offset %llu length %llu\n",
  695. __func__, lseg, lseg->pls_range.iomode,
  696. lseg->pls_range.offset, lseg->pls_range.length,
  697. lp, lp->pls_range.iomode, lp->pls_range.offset,
  698. lp->pls_range.length);
  699. goto out;
  700. }
  701. list_add_tail(&lseg->pls_list, &lo->plh_segs);
  702. dprintk("%s: inserted lseg %p "
  703. "iomode %d offset %llu length %llu at tail\n",
  704. __func__, lseg, lseg->pls_range.iomode,
  705. lseg->pls_range.offset, lseg->pls_range.length);
  706. out:
  707. get_layout_hdr(lo);
  708. dprintk("%s:Return\n", __func__);
  709. }
  710. static struct pnfs_layout_hdr *
  711. alloc_init_layout_hdr(struct inode *ino, gfp_t gfp_flags)
  712. {
  713. struct pnfs_layout_hdr *lo;
  714. lo = pnfs_alloc_layout_hdr(ino, gfp_flags);
  715. if (!lo)
  716. return NULL;
  717. atomic_set(&lo->plh_refcount, 1);
  718. INIT_LIST_HEAD(&lo->plh_layouts);
  719. INIT_LIST_HEAD(&lo->plh_segs);
  720. INIT_LIST_HEAD(&lo->plh_bulk_recall);
  721. lo->plh_inode = ino;
  722. return lo;
  723. }
  724. static struct pnfs_layout_hdr *
  725. pnfs_find_alloc_layout(struct inode *ino, gfp_t gfp_flags)
  726. {
  727. struct nfs_inode *nfsi = NFS_I(ino);
  728. struct pnfs_layout_hdr *new = NULL;
  729. dprintk("%s Begin ino=%p layout=%p\n", __func__, ino, nfsi->layout);
  730. assert_spin_locked(&ino->i_lock);
  731. if (nfsi->layout) {
  732. if (test_bit(NFS_LAYOUT_DESTROYED, &nfsi->layout->plh_flags))
  733. return NULL;
  734. else
  735. return nfsi->layout;
  736. }
  737. spin_unlock(&ino->i_lock);
  738. new = alloc_init_layout_hdr(ino, gfp_flags);
  739. spin_lock(&ino->i_lock);
  740. if (likely(nfsi->layout == NULL)) /* Won the race? */
  741. nfsi->layout = new;
  742. else
  743. pnfs_free_layout_hdr(new);
  744. return nfsi->layout;
  745. }
  746. /*
  747. * iomode matching rules:
  748. * iomode lseg match
  749. * ----- ----- -----
  750. * ANY READ true
  751. * ANY RW true
  752. * RW READ false
  753. * RW RW true
  754. * READ READ true
  755. * READ RW true
  756. */
  757. static int
  758. is_matching_lseg(struct pnfs_layout_range *ls_range,
  759. struct pnfs_layout_range *range)
  760. {
  761. struct pnfs_layout_range range1;
  762. if ((range->iomode == IOMODE_RW &&
  763. ls_range->iomode != IOMODE_RW) ||
  764. !lo_seg_intersecting(ls_range, range))
  765. return 0;
  766. /* range1 covers only the first byte in the range */
  767. range1 = *range;
  768. range1.length = 1;
  769. return lo_seg_contained(ls_range, &range1);
  770. }
  771. /*
  772. * lookup range in layout
  773. */
  774. static struct pnfs_layout_segment *
  775. pnfs_find_lseg(struct pnfs_layout_hdr *lo,
  776. struct pnfs_layout_range *range)
  777. {
  778. struct pnfs_layout_segment *lseg, *ret = NULL;
  779. dprintk("%s:Begin\n", __func__);
  780. assert_spin_locked(&lo->plh_inode->i_lock);
  781. list_for_each_entry(lseg, &lo->plh_segs, pls_list) {
  782. if (test_bit(NFS_LSEG_VALID, &lseg->pls_flags) &&
  783. is_matching_lseg(&lseg->pls_range, range)) {
  784. ret = get_lseg(lseg);
  785. break;
  786. }
  787. if (lseg->pls_range.offset > range->offset)
  788. break;
  789. }
  790. dprintk("%s:Return lseg %p ref %d\n",
  791. __func__, ret, ret ? atomic_read(&ret->pls_refcount) : 0);
  792. return ret;
  793. }
  794. /*
  795. * Layout segment is retreived from the server if not cached.
  796. * The appropriate layout segment is referenced and returned to the caller.
  797. */
  798. static struct pnfs_layout_segment *
  799. pnfs_update_layout(struct inode *ino,
  800. struct nfs_open_context *ctx,
  801. loff_t pos,
  802. u64 count,
  803. enum pnfs_iomode iomode,
  804. gfp_t gfp_flags)
  805. {
  806. struct pnfs_layout_range arg = {
  807. .iomode = iomode,
  808. .offset = pos,
  809. .length = count,
  810. };
  811. unsigned pg_offset;
  812. struct nfs_inode *nfsi = NFS_I(ino);
  813. struct nfs_server *server = NFS_SERVER(ino);
  814. struct nfs_client *clp = server->nfs_client;
  815. struct pnfs_layout_hdr *lo;
  816. struct pnfs_layout_segment *lseg = NULL;
  817. bool first = false;
  818. if (!pnfs_enabled_sb(NFS_SERVER(ino)))
  819. return NULL;
  820. spin_lock(&ino->i_lock);
  821. lo = pnfs_find_alloc_layout(ino, gfp_flags);
  822. if (lo == NULL) {
  823. dprintk("%s ERROR: can't get pnfs_layout_hdr\n", __func__);
  824. goto out_unlock;
  825. }
  826. /* Do we even need to bother with this? */
  827. if (test_bit(NFS4CLNT_LAYOUTRECALL, &clp->cl_state) ||
  828. test_bit(NFS_LAYOUT_BULK_RECALL, &lo->plh_flags)) {
  829. dprintk("%s matches recall, use MDS\n", __func__);
  830. goto out_unlock;
  831. }
  832. /* if LAYOUTGET already failed once we don't try again */
  833. if (test_bit(lo_fail_bit(iomode), &nfsi->layout->plh_flags))
  834. goto out_unlock;
  835. /* Check to see if the layout for the given range already exists */
  836. lseg = pnfs_find_lseg(lo, &arg);
  837. if (lseg)
  838. goto out_unlock;
  839. if (pnfs_layoutgets_blocked(lo, NULL, 0))
  840. goto out_unlock;
  841. atomic_inc(&lo->plh_outstanding);
  842. get_layout_hdr(lo);
  843. if (list_empty(&lo->plh_segs))
  844. first = true;
  845. spin_unlock(&ino->i_lock);
  846. if (first) {
  847. /* The lo must be on the clp list if there is any
  848. * chance of a CB_LAYOUTRECALL(FILE) coming in.
  849. */
  850. spin_lock(&clp->cl_lock);
  851. BUG_ON(!list_empty(&lo->plh_layouts));
  852. list_add_tail(&lo->plh_layouts, &server->layouts);
  853. spin_unlock(&clp->cl_lock);
  854. }
  855. pg_offset = arg.offset & ~PAGE_CACHE_MASK;
  856. if (pg_offset) {
  857. arg.offset -= pg_offset;
  858. arg.length += pg_offset;
  859. }
  860. arg.length = PAGE_CACHE_ALIGN(arg.length);
  861. lseg = send_layoutget(lo, ctx, &arg, gfp_flags);
  862. if (!lseg && first) {
  863. spin_lock(&clp->cl_lock);
  864. list_del_init(&lo->plh_layouts);
  865. spin_unlock(&clp->cl_lock);
  866. }
  867. atomic_dec(&lo->plh_outstanding);
  868. put_layout_hdr(lo);
  869. out:
  870. dprintk("%s end, state 0x%lx lseg %p\n", __func__,
  871. nfsi->layout ? nfsi->layout->plh_flags : -1, lseg);
  872. return lseg;
  873. out_unlock:
  874. spin_unlock(&ino->i_lock);
  875. goto out;
  876. }
  877. int
  878. pnfs_layout_process(struct nfs4_layoutget *lgp)
  879. {
  880. struct pnfs_layout_hdr *lo = NFS_I(lgp->args.inode)->layout;
  881. struct nfs4_layoutget_res *res = &lgp->res;
  882. struct pnfs_layout_segment *lseg;
  883. struct inode *ino = lo->plh_inode;
  884. struct nfs_client *clp = NFS_SERVER(ino)->nfs_client;
  885. int status = 0;
  886. /* Inject layout blob into I/O device driver */
  887. lseg = NFS_SERVER(ino)->pnfs_curr_ld->alloc_lseg(lo, res, lgp->gfp_flags);
  888. if (!lseg || IS_ERR(lseg)) {
  889. if (!lseg)
  890. status = -ENOMEM;
  891. else
  892. status = PTR_ERR(lseg);
  893. dprintk("%s: Could not allocate layout: error %d\n",
  894. __func__, status);
  895. goto out;
  896. }
  897. spin_lock(&ino->i_lock);
  898. if (test_bit(NFS4CLNT_LAYOUTRECALL, &clp->cl_state) ||
  899. test_bit(NFS_LAYOUT_BULK_RECALL, &lo->plh_flags)) {
  900. dprintk("%s forget reply due to recall\n", __func__);
  901. goto out_forget_reply;
  902. }
  903. if (pnfs_layoutgets_blocked(lo, &res->stateid, 1)) {
  904. dprintk("%s forget reply due to state\n", __func__);
  905. goto out_forget_reply;
  906. }
  907. init_lseg(lo, lseg);
  908. lseg->pls_range = res->range;
  909. *lgp->lsegpp = get_lseg(lseg);
  910. pnfs_insert_layout(lo, lseg);
  911. if (res->return_on_close) {
  912. set_bit(NFS_LSEG_ROC, &lseg->pls_flags);
  913. set_bit(NFS_LAYOUT_ROC, &lo->plh_flags);
  914. }
  915. /* Done processing layoutget. Set the layout stateid */
  916. pnfs_set_layout_stateid(lo, &res->stateid, false);
  917. spin_unlock(&ino->i_lock);
  918. out:
  919. return status;
  920. out_forget_reply:
  921. spin_unlock(&ino->i_lock);
  922. lseg->pls_layout = lo;
  923. NFS_SERVER(ino)->pnfs_curr_ld->free_lseg(lseg);
  924. goto out;
  925. }
  926. void
  927. pnfs_generic_pg_init_read(struct nfs_pageio_descriptor *pgio, struct nfs_page *req)
  928. {
  929. BUG_ON(pgio->pg_lseg != NULL);
  930. pgio->pg_lseg = pnfs_update_layout(pgio->pg_inode,
  931. req->wb_context,
  932. req_offset(req),
  933. req->wb_bytes,
  934. IOMODE_READ,
  935. GFP_KERNEL);
  936. /* If no lseg, fall back to read through mds */
  937. if (pgio->pg_lseg == NULL)
  938. nfs_pageio_init_read_mds(pgio, pgio->pg_inode);
  939. }
  940. EXPORT_SYMBOL_GPL(pnfs_generic_pg_init_read);
  941. void
  942. pnfs_generic_pg_init_write(struct nfs_pageio_descriptor *pgio, struct nfs_page *req)
  943. {
  944. BUG_ON(pgio->pg_lseg != NULL);
  945. pgio->pg_lseg = pnfs_update_layout(pgio->pg_inode,
  946. req->wb_context,
  947. req_offset(req),
  948. req->wb_bytes,
  949. IOMODE_RW,
  950. GFP_NOFS);
  951. /* If no lseg, fall back to write through mds */
  952. if (pgio->pg_lseg == NULL)
  953. nfs_pageio_init_write_mds(pgio, pgio->pg_inode, pgio->pg_ioflags);
  954. }
  955. EXPORT_SYMBOL_GPL(pnfs_generic_pg_init_write);
  956. bool
  957. pnfs_pageio_init_read(struct nfs_pageio_descriptor *pgio, struct inode *inode)
  958. {
  959. struct nfs_server *server = NFS_SERVER(inode);
  960. struct pnfs_layoutdriver_type *ld = server->pnfs_curr_ld;
  961. if (ld == NULL)
  962. return false;
  963. nfs_pageio_init(pgio, inode, ld->pg_read_ops, server->rsize, 0);
  964. return true;
  965. }
  966. bool
  967. pnfs_pageio_init_write(struct nfs_pageio_descriptor *pgio, struct inode *inode, int ioflags)
  968. {
  969. struct nfs_server *server = NFS_SERVER(inode);
  970. struct pnfs_layoutdriver_type *ld = server->pnfs_curr_ld;
  971. if (ld == NULL)
  972. return false;
  973. nfs_pageio_init(pgio, inode, ld->pg_write_ops, server->wsize, ioflags);
  974. return true;
  975. }
  976. bool
  977. pnfs_generic_pg_test(struct nfs_pageio_descriptor *pgio, struct nfs_page *prev,
  978. struct nfs_page *req)
  979. {
  980. if (pgio->pg_lseg == NULL)
  981. return nfs_generic_pg_test(pgio, prev, req);
  982. /*
  983. * Test if a nfs_page is fully contained in the pnfs_layout_range.
  984. * Note that this test makes several assumptions:
  985. * - that the previous nfs_page in the struct nfs_pageio_descriptor
  986. * is known to lie within the range.
  987. * - that the nfs_page being tested is known to be contiguous with the
  988. * previous nfs_page.
  989. * - Layout ranges are page aligned, so we only have to test the
  990. * start offset of the request.
  991. *
  992. * Please also note that 'end_offset' is actually the offset of the
  993. * first byte that lies outside the pnfs_layout_range. FIXME?
  994. *
  995. */
  996. return req_offset(req) < end_offset(pgio->pg_lseg->pls_range.offset,
  997. pgio->pg_lseg->pls_range.length);
  998. }
  999. EXPORT_SYMBOL_GPL(pnfs_generic_pg_test);
  1000. /*
  1001. * Called by non rpc-based layout drivers
  1002. */
  1003. int
  1004. pnfs_ld_write_done(struct nfs_write_data *data)
  1005. {
  1006. int status;
  1007. if (!data->pnfs_error) {
  1008. pnfs_set_layoutcommit(data);
  1009. data->mds_ops->rpc_call_done(&data->task, data);
  1010. data->mds_ops->rpc_release(data);
  1011. return 0;
  1012. }
  1013. dprintk("%s: pnfs_error=%d, retry via MDS\n", __func__,
  1014. data->pnfs_error);
  1015. status = nfs_initiate_write(data, NFS_CLIENT(data->inode),
  1016. data->mds_ops, NFS_FILE_SYNC);
  1017. return status ? : -EAGAIN;
  1018. }
  1019. EXPORT_SYMBOL_GPL(pnfs_ld_write_done);
  1020. enum pnfs_try_status
  1021. pnfs_try_to_write_data(struct nfs_write_data *wdata,
  1022. const struct rpc_call_ops *call_ops, int how)
  1023. {
  1024. struct inode *inode = wdata->inode;
  1025. enum pnfs_try_status trypnfs;
  1026. struct nfs_server *nfss = NFS_SERVER(inode);
  1027. wdata->mds_ops = call_ops;
  1028. dprintk("%s: Writing ino:%lu %u@%llu (how %d)\n", __func__,
  1029. inode->i_ino, wdata->args.count, wdata->args.offset, how);
  1030. trypnfs = nfss->pnfs_curr_ld->write_pagelist(wdata, how);
  1031. if (trypnfs == PNFS_NOT_ATTEMPTED) {
  1032. put_lseg(wdata->lseg);
  1033. wdata->lseg = NULL;
  1034. } else
  1035. nfs_inc_stats(inode, NFSIOS_PNFS_WRITE);
  1036. dprintk("%s End (trypnfs:%d)\n", __func__, trypnfs);
  1037. return trypnfs;
  1038. }
  1039. /*
  1040. * Called by non rpc-based layout drivers
  1041. */
  1042. int
  1043. pnfs_ld_read_done(struct nfs_read_data *data)
  1044. {
  1045. int status;
  1046. if (!data->pnfs_error) {
  1047. __nfs4_read_done_cb(data);
  1048. data->mds_ops->rpc_call_done(&data->task, data);
  1049. data->mds_ops->rpc_release(data);
  1050. return 0;
  1051. }
  1052. dprintk("%s: pnfs_error=%d, retry via MDS\n", __func__,
  1053. data->pnfs_error);
  1054. status = nfs_initiate_read(data, NFS_CLIENT(data->inode),
  1055. data->mds_ops);
  1056. return status ? : -EAGAIN;
  1057. }
  1058. EXPORT_SYMBOL_GPL(pnfs_ld_read_done);
  1059. /*
  1060. * Call the appropriate parallel I/O subsystem read function.
  1061. */
  1062. enum pnfs_try_status
  1063. pnfs_try_to_read_data(struct nfs_read_data *rdata,
  1064. const struct rpc_call_ops *call_ops)
  1065. {
  1066. struct inode *inode = rdata->inode;
  1067. struct nfs_server *nfss = NFS_SERVER(inode);
  1068. enum pnfs_try_status trypnfs;
  1069. rdata->mds_ops = call_ops;
  1070. dprintk("%s: Reading ino:%lu %u@%llu\n",
  1071. __func__, inode->i_ino, rdata->args.count, rdata->args.offset);
  1072. trypnfs = nfss->pnfs_curr_ld->read_pagelist(rdata);
  1073. if (trypnfs == PNFS_NOT_ATTEMPTED) {
  1074. put_lseg(rdata->lseg);
  1075. rdata->lseg = NULL;
  1076. } else {
  1077. nfs_inc_stats(inode, NFSIOS_PNFS_READ);
  1078. }
  1079. dprintk("%s End (trypnfs:%d)\n", __func__, trypnfs);
  1080. return trypnfs;
  1081. }
  1082. /*
  1083. * Currently there is only one (whole file) write lseg.
  1084. */
  1085. static struct pnfs_layout_segment *pnfs_list_write_lseg(struct inode *inode)
  1086. {
  1087. struct pnfs_layout_segment *lseg, *rv = NULL;
  1088. list_for_each_entry(lseg, &NFS_I(inode)->layout->plh_segs, pls_list)
  1089. if (lseg->pls_range.iomode == IOMODE_RW)
  1090. rv = lseg;
  1091. return rv;
  1092. }
  1093. void
  1094. pnfs_set_layoutcommit(struct nfs_write_data *wdata)
  1095. {
  1096. struct nfs_inode *nfsi = NFS_I(wdata->inode);
  1097. loff_t end_pos = wdata->mds_offset + wdata->res.count;
  1098. bool mark_as_dirty = false;
  1099. spin_lock(&nfsi->vfs_inode.i_lock);
  1100. if (!test_and_set_bit(NFS_INO_LAYOUTCOMMIT, &nfsi->flags)) {
  1101. /* references matched in nfs4_layoutcommit_release */
  1102. get_lseg(wdata->lseg);
  1103. wdata->lseg->pls_lc_cred =
  1104. get_rpccred(wdata->args.context->state->owner->so_cred);
  1105. mark_as_dirty = true;
  1106. dprintk("%s: Set layoutcommit for inode %lu ",
  1107. __func__, wdata->inode->i_ino);
  1108. }
  1109. if (end_pos > wdata->lseg->pls_end_pos)
  1110. wdata->lseg->pls_end_pos = end_pos;
  1111. spin_unlock(&nfsi->vfs_inode.i_lock);
  1112. /* if pnfs_layoutcommit_inode() runs between inode locks, the next one
  1113. * will be a noop because NFS_INO_LAYOUTCOMMIT will not be set */
  1114. if (mark_as_dirty)
  1115. mark_inode_dirty_sync(wdata->inode);
  1116. }
  1117. EXPORT_SYMBOL_GPL(pnfs_set_layoutcommit);
  1118. /*
  1119. * For the LAYOUT4_NFSV4_1_FILES layout type, NFS_DATA_SYNC WRITEs and
  1120. * NFS_UNSTABLE WRITEs with a COMMIT to data servers must store enough
  1121. * data to disk to allow the server to recover the data if it crashes.
  1122. * LAYOUTCOMMIT is only needed when the NFL4_UFLG_COMMIT_THRU_MDS flag
  1123. * is off, and a COMMIT is sent to a data server, or
  1124. * if WRITEs to a data server return NFS_DATA_SYNC.
  1125. */
  1126. int
  1127. pnfs_layoutcommit_inode(struct inode *inode, bool sync)
  1128. {
  1129. struct nfs4_layoutcommit_data *data;
  1130. struct nfs_inode *nfsi = NFS_I(inode);
  1131. struct pnfs_layout_segment *lseg;
  1132. struct rpc_cred *cred;
  1133. loff_t end_pos;
  1134. int status = 0;
  1135. dprintk("--> %s inode %lu\n", __func__, inode->i_ino);
  1136. if (!test_bit(NFS_INO_LAYOUTCOMMIT, &nfsi->flags))
  1137. return 0;
  1138. /* Note kzalloc ensures data->res.seq_res.sr_slot == NULL */
  1139. data = kzalloc(sizeof(*data), GFP_NOFS);
  1140. if (!data) {
  1141. mark_inode_dirty_sync(inode);
  1142. status = -ENOMEM;
  1143. goto out;
  1144. }
  1145. spin_lock(&inode->i_lock);
  1146. if (!test_and_clear_bit(NFS_INO_LAYOUTCOMMIT, &nfsi->flags)) {
  1147. spin_unlock(&inode->i_lock);
  1148. kfree(data);
  1149. goto out;
  1150. }
  1151. /*
  1152. * Currently only one (whole file) write lseg which is referenced
  1153. * in pnfs_set_layoutcommit and will be found.
  1154. */
  1155. lseg = pnfs_list_write_lseg(inode);
  1156. end_pos = lseg->pls_end_pos;
  1157. cred = lseg->pls_lc_cred;
  1158. lseg->pls_end_pos = 0;
  1159. lseg->pls_lc_cred = NULL;
  1160. memcpy(&data->args.stateid.data, nfsi->layout->plh_stateid.data,
  1161. sizeof(nfsi->layout->plh_stateid.data));
  1162. spin_unlock(&inode->i_lock);
  1163. data->args.inode = inode;
  1164. data->lseg = lseg;
  1165. data->cred = cred;
  1166. nfs_fattr_init(&data->fattr);
  1167. data->args.bitmask = NFS_SERVER(inode)->cache_consistency_bitmask;
  1168. data->res.fattr = &data->fattr;
  1169. data->args.lastbytewritten = end_pos - 1;
  1170. data->res.server = NFS_SERVER(inode);
  1171. status = nfs4_proc_layoutcommit(data, sync);
  1172. out:
  1173. dprintk("<-- %s status %d\n", __func__, status);
  1174. return status;
  1175. }