nfs4filelayout.c 36 KB

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  1. /*
  2. * Module for the pnfs nfs4 file layout driver.
  3. * Defines all I/O and Policy interface operations, plus code
  4. * to register itself with the pNFS client.
  5. *
  6. * Copyright (c) 2002
  7. * The Regents of the University of Michigan
  8. * All Rights Reserved
  9. *
  10. * Dean Hildebrand <dhildebz@umich.edu>
  11. *
  12. * Permission is granted to use, copy, create derivative works, and
  13. * redistribute this software and such derivative works for any purpose,
  14. * so long as the name of the University of Michigan is not used in
  15. * any advertising or publicity pertaining to the use or distribution
  16. * of this software without specific, written prior authorization. If
  17. * the above copyright notice or any other identification of the
  18. * University of Michigan is included in any copy of any portion of
  19. * this software, then the disclaimer below must also be included.
  20. *
  21. * This software is provided as is, without representation or warranty
  22. * of any kind either express or implied, including without limitation
  23. * the implied warranties of merchantability, fitness for a particular
  24. * purpose, or noninfringement. The Regents of the University of
  25. * Michigan shall not be liable for any damages, including special,
  26. * indirect, incidental, or consequential damages, with respect to any
  27. * claim arising out of or in connection with the use of the software,
  28. * even if it has been or is hereafter advised of the possibility of
  29. * such damages.
  30. */
  31. #include <linux/nfs_fs.h>
  32. #include <linux/nfs_page.h>
  33. #include <linux/module.h>
  34. #include <linux/sunrpc/metrics.h>
  35. #include "internal.h"
  36. #include "delegation.h"
  37. #include "nfs4filelayout.h"
  38. #define NFSDBG_FACILITY NFSDBG_PNFS_LD
  39. MODULE_LICENSE("GPL");
  40. MODULE_AUTHOR("Dean Hildebrand <dhildebz@umich.edu>");
  41. MODULE_DESCRIPTION("The NFSv4 file layout driver");
  42. #define FILELAYOUT_POLL_RETRY_MAX (15*HZ)
  43. static loff_t
  44. filelayout_get_dense_offset(struct nfs4_filelayout_segment *flseg,
  45. loff_t offset)
  46. {
  47. u32 stripe_width = flseg->stripe_unit * flseg->dsaddr->stripe_count;
  48. u64 stripe_no;
  49. u32 rem;
  50. offset -= flseg->pattern_offset;
  51. stripe_no = div_u64(offset, stripe_width);
  52. div_u64_rem(offset, flseg->stripe_unit, &rem);
  53. return stripe_no * flseg->stripe_unit + rem;
  54. }
  55. /* This function is used by the layout driver to calculate the
  56. * offset of the file on the dserver based on whether the
  57. * layout type is STRIPE_DENSE or STRIPE_SPARSE
  58. */
  59. static loff_t
  60. filelayout_get_dserver_offset(struct pnfs_layout_segment *lseg, loff_t offset)
  61. {
  62. struct nfs4_filelayout_segment *flseg = FILELAYOUT_LSEG(lseg);
  63. switch (flseg->stripe_type) {
  64. case STRIPE_SPARSE:
  65. return offset;
  66. case STRIPE_DENSE:
  67. return filelayout_get_dense_offset(flseg, offset);
  68. }
  69. BUG();
  70. }
  71. static void filelayout_reset_write(struct nfs_write_data *data)
  72. {
  73. struct nfs_pgio_header *hdr = data->header;
  74. struct rpc_task *task = &data->task;
  75. if (!test_and_set_bit(NFS_IOHDR_REDO, &hdr->flags)) {
  76. dprintk("%s Reset task %5u for i/o through MDS "
  77. "(req %s/%lld, %u bytes @ offset %llu)\n", __func__,
  78. data->task.tk_pid,
  79. hdr->inode->i_sb->s_id,
  80. (long long)NFS_FILEID(hdr->inode),
  81. data->args.count,
  82. (unsigned long long)data->args.offset);
  83. task->tk_status = pnfs_write_done_resend_to_mds(hdr->inode,
  84. &hdr->pages,
  85. hdr->completion_ops);
  86. }
  87. }
  88. static void filelayout_reset_read(struct nfs_read_data *data)
  89. {
  90. struct nfs_pgio_header *hdr = data->header;
  91. struct rpc_task *task = &data->task;
  92. if (!test_and_set_bit(NFS_IOHDR_REDO, &hdr->flags)) {
  93. dprintk("%s Reset task %5u for i/o through MDS "
  94. "(req %s/%lld, %u bytes @ offset %llu)\n", __func__,
  95. data->task.tk_pid,
  96. hdr->inode->i_sb->s_id,
  97. (long long)NFS_FILEID(hdr->inode),
  98. data->args.count,
  99. (unsigned long long)data->args.offset);
  100. task->tk_status = pnfs_read_done_resend_to_mds(hdr->inode,
  101. &hdr->pages,
  102. hdr->completion_ops);
  103. }
  104. }
  105. static int filelayout_async_handle_error(struct rpc_task *task,
  106. struct nfs4_state *state,
  107. struct nfs_client *clp,
  108. struct pnfs_layout_segment *lseg)
  109. {
  110. struct inode *inode = lseg->pls_layout->plh_inode;
  111. struct nfs_server *mds_server = NFS_SERVER(inode);
  112. struct nfs4_deviceid_node *devid = FILELAYOUT_DEVID_NODE(lseg);
  113. struct nfs_client *mds_client = mds_server->nfs_client;
  114. struct nfs4_slot_table *tbl = &clp->cl_session->fc_slot_table;
  115. if (task->tk_status >= 0)
  116. return 0;
  117. switch (task->tk_status) {
  118. /* MDS state errors */
  119. case -NFS4ERR_DELEG_REVOKED:
  120. case -NFS4ERR_ADMIN_REVOKED:
  121. case -NFS4ERR_BAD_STATEID:
  122. if (state == NULL)
  123. break;
  124. nfs_remove_bad_delegation(state->inode);
  125. case -NFS4ERR_OPENMODE:
  126. if (state == NULL)
  127. break;
  128. nfs4_schedule_stateid_recovery(mds_server, state);
  129. goto wait_on_recovery;
  130. case -NFS4ERR_EXPIRED:
  131. if (state != NULL)
  132. nfs4_schedule_stateid_recovery(mds_server, state);
  133. nfs4_schedule_lease_recovery(mds_client);
  134. goto wait_on_recovery;
  135. /* DS session errors */
  136. case -NFS4ERR_BADSESSION:
  137. case -NFS4ERR_BADSLOT:
  138. case -NFS4ERR_BAD_HIGH_SLOT:
  139. case -NFS4ERR_DEADSESSION:
  140. case -NFS4ERR_CONN_NOT_BOUND_TO_SESSION:
  141. case -NFS4ERR_SEQ_FALSE_RETRY:
  142. case -NFS4ERR_SEQ_MISORDERED:
  143. dprintk("%s ERROR %d, Reset session. Exchangeid "
  144. "flags 0x%x\n", __func__, task->tk_status,
  145. clp->cl_exchange_flags);
  146. nfs4_schedule_session_recovery(clp->cl_session, task->tk_status);
  147. break;
  148. case -NFS4ERR_DELAY:
  149. case -NFS4ERR_GRACE:
  150. case -EKEYEXPIRED:
  151. rpc_delay(task, FILELAYOUT_POLL_RETRY_MAX);
  152. break;
  153. case -NFS4ERR_RETRY_UNCACHED_REP:
  154. break;
  155. /* Invalidate Layout errors */
  156. case -NFS4ERR_PNFS_NO_LAYOUT:
  157. case -ESTALE: /* mapped NFS4ERR_STALE */
  158. case -EBADHANDLE: /* mapped NFS4ERR_BADHANDLE */
  159. case -EISDIR: /* mapped NFS4ERR_ISDIR */
  160. case -NFS4ERR_FHEXPIRED:
  161. case -NFS4ERR_WRONG_TYPE:
  162. dprintk("%s Invalid layout error %d\n", __func__,
  163. task->tk_status);
  164. /*
  165. * Destroy layout so new i/o will get a new layout.
  166. * Layout will not be destroyed until all current lseg
  167. * references are put. Mark layout as invalid to resend failed
  168. * i/o and all i/o waiting on the slot table to the MDS until
  169. * layout is destroyed and a new valid layout is obtained.
  170. */
  171. pnfs_destroy_layout(NFS_I(inode));
  172. rpc_wake_up(&tbl->slot_tbl_waitq);
  173. goto reset;
  174. /* RPC connection errors */
  175. case -ECONNREFUSED:
  176. case -EHOSTDOWN:
  177. case -EHOSTUNREACH:
  178. case -ENETUNREACH:
  179. case -EIO:
  180. case -ETIMEDOUT:
  181. case -EPIPE:
  182. dprintk("%s DS connection error %d\n", __func__,
  183. task->tk_status);
  184. nfs4_mark_deviceid_unavailable(devid);
  185. clear_bit(NFS_INO_LAYOUTCOMMIT, &NFS_I(inode)->flags);
  186. _pnfs_return_layout(inode);
  187. rpc_wake_up(&tbl->slot_tbl_waitq);
  188. nfs4_ds_disconnect(clp);
  189. /* fall through */
  190. default:
  191. reset:
  192. dprintk("%s Retry through MDS. Error %d\n", __func__,
  193. task->tk_status);
  194. return -NFS4ERR_RESET_TO_MDS;
  195. }
  196. out:
  197. task->tk_status = 0;
  198. return -EAGAIN;
  199. wait_on_recovery:
  200. rpc_sleep_on(&mds_client->cl_rpcwaitq, task, NULL);
  201. if (test_bit(NFS4CLNT_MANAGER_RUNNING, &mds_client->cl_state) == 0)
  202. rpc_wake_up_queued_task(&mds_client->cl_rpcwaitq, task);
  203. goto out;
  204. }
  205. /* NFS_PROTO call done callback routines */
  206. static int filelayout_read_done_cb(struct rpc_task *task,
  207. struct nfs_read_data *data)
  208. {
  209. struct nfs_pgio_header *hdr = data->header;
  210. int err;
  211. err = filelayout_async_handle_error(task, data->args.context->state,
  212. data->ds_clp, hdr->lseg);
  213. switch (err) {
  214. case -NFS4ERR_RESET_TO_MDS:
  215. filelayout_reset_read(data);
  216. return task->tk_status;
  217. case -EAGAIN:
  218. rpc_restart_call_prepare(task);
  219. return -EAGAIN;
  220. }
  221. return 0;
  222. }
  223. /*
  224. * We reference the rpc_cred of the first WRITE that triggers the need for
  225. * a LAYOUTCOMMIT, and use it to send the layoutcommit compound.
  226. * rfc5661 is not clear about which credential should be used.
  227. */
  228. static void
  229. filelayout_set_layoutcommit(struct nfs_write_data *wdata)
  230. {
  231. struct nfs_pgio_header *hdr = wdata->header;
  232. if (FILELAYOUT_LSEG(hdr->lseg)->commit_through_mds ||
  233. wdata->res.verf->committed == NFS_FILE_SYNC)
  234. return;
  235. pnfs_set_layoutcommit(wdata);
  236. dprintk("%s ionde %lu pls_end_pos %lu\n", __func__, hdr->inode->i_ino,
  237. (unsigned long) NFS_I(hdr->inode)->layout->plh_lwb);
  238. }
  239. bool
  240. filelayout_test_devid_unavailable(struct nfs4_deviceid_node *node)
  241. {
  242. return filelayout_test_devid_invalid(node) ||
  243. nfs4_test_deviceid_unavailable(node);
  244. }
  245. static bool
  246. filelayout_reset_to_mds(struct pnfs_layout_segment *lseg)
  247. {
  248. struct nfs4_deviceid_node *node = FILELAYOUT_DEVID_NODE(lseg);
  249. return pnfs_test_layout_destroyed(lseg->pls_layout) ||
  250. filelayout_test_devid_unavailable(node);
  251. }
  252. /*
  253. * Call ops for the async read/write cases
  254. * In the case of dense layouts, the offset needs to be reset to its
  255. * original value.
  256. */
  257. static void filelayout_read_prepare(struct rpc_task *task, void *data)
  258. {
  259. struct nfs_read_data *rdata = data;
  260. if (filelayout_reset_to_mds(rdata->header->lseg)) {
  261. dprintk("%s task %u reset io to MDS\n", __func__, task->tk_pid);
  262. filelayout_reset_read(rdata);
  263. rpc_exit(task, 0);
  264. return;
  265. }
  266. rdata->read_done_cb = filelayout_read_done_cb;
  267. if (nfs41_setup_sequence(rdata->ds_clp->cl_session,
  268. &rdata->args.seq_args, &rdata->res.seq_res,
  269. task))
  270. return;
  271. rpc_call_start(task);
  272. }
  273. static void filelayout_read_call_done(struct rpc_task *task, void *data)
  274. {
  275. struct nfs_read_data *rdata = data;
  276. dprintk("--> %s task->tk_status %d\n", __func__, task->tk_status);
  277. if (test_bit(NFS_IOHDR_REDO, &rdata->header->flags) &&
  278. task->tk_status == 0)
  279. return;
  280. /* Note this may cause RPC to be resent */
  281. rdata->header->mds_ops->rpc_call_done(task, data);
  282. }
  283. static void filelayout_read_count_stats(struct rpc_task *task, void *data)
  284. {
  285. struct nfs_read_data *rdata = data;
  286. rpc_count_iostats(task, NFS_SERVER(rdata->header->inode)->client->cl_metrics);
  287. }
  288. static void filelayout_read_release(void *data)
  289. {
  290. struct nfs_read_data *rdata = data;
  291. nfs_put_client(rdata->ds_clp);
  292. rdata->header->mds_ops->rpc_release(data);
  293. }
  294. static int filelayout_write_done_cb(struct rpc_task *task,
  295. struct nfs_write_data *data)
  296. {
  297. struct nfs_pgio_header *hdr = data->header;
  298. int err;
  299. err = filelayout_async_handle_error(task, data->args.context->state,
  300. data->ds_clp, hdr->lseg);
  301. switch (err) {
  302. case -NFS4ERR_RESET_TO_MDS:
  303. filelayout_reset_write(data);
  304. return task->tk_status;
  305. case -EAGAIN:
  306. rpc_restart_call_prepare(task);
  307. return -EAGAIN;
  308. }
  309. filelayout_set_layoutcommit(data);
  310. return 0;
  311. }
  312. /* Fake up some data that will cause nfs_commit_release to retry the writes. */
  313. static void prepare_to_resend_writes(struct nfs_commit_data *data)
  314. {
  315. struct nfs_page *first = nfs_list_entry(data->pages.next);
  316. data->task.tk_status = 0;
  317. memcpy(&data->verf.verifier, &first->wb_verf,
  318. sizeof(data->verf.verifier));
  319. data->verf.verifier.data[0]++; /* ensure verifier mismatch */
  320. }
  321. static int filelayout_commit_done_cb(struct rpc_task *task,
  322. struct nfs_commit_data *data)
  323. {
  324. int err;
  325. err = filelayout_async_handle_error(task, NULL, data->ds_clp,
  326. data->lseg);
  327. switch (err) {
  328. case -NFS4ERR_RESET_TO_MDS:
  329. prepare_to_resend_writes(data);
  330. return -EAGAIN;
  331. case -EAGAIN:
  332. rpc_restart_call_prepare(task);
  333. return -EAGAIN;
  334. }
  335. return 0;
  336. }
  337. static void filelayout_write_prepare(struct rpc_task *task, void *data)
  338. {
  339. struct nfs_write_data *wdata = data;
  340. if (filelayout_reset_to_mds(wdata->header->lseg)) {
  341. dprintk("%s task %u reset io to MDS\n", __func__, task->tk_pid);
  342. filelayout_reset_write(wdata);
  343. rpc_exit(task, 0);
  344. return;
  345. }
  346. if (nfs41_setup_sequence(wdata->ds_clp->cl_session,
  347. &wdata->args.seq_args, &wdata->res.seq_res,
  348. task))
  349. return;
  350. rpc_call_start(task);
  351. }
  352. static void filelayout_write_call_done(struct rpc_task *task, void *data)
  353. {
  354. struct nfs_write_data *wdata = data;
  355. if (test_bit(NFS_IOHDR_REDO, &wdata->header->flags) &&
  356. task->tk_status == 0)
  357. return;
  358. /* Note this may cause RPC to be resent */
  359. wdata->header->mds_ops->rpc_call_done(task, data);
  360. }
  361. static void filelayout_write_count_stats(struct rpc_task *task, void *data)
  362. {
  363. struct nfs_write_data *wdata = data;
  364. rpc_count_iostats(task, NFS_SERVER(wdata->header->inode)->client->cl_metrics);
  365. }
  366. static void filelayout_write_release(void *data)
  367. {
  368. struct nfs_write_data *wdata = data;
  369. nfs_put_client(wdata->ds_clp);
  370. wdata->header->mds_ops->rpc_release(data);
  371. }
  372. static void filelayout_commit_prepare(struct rpc_task *task, void *data)
  373. {
  374. struct nfs_commit_data *wdata = data;
  375. if (nfs41_setup_sequence(wdata->ds_clp->cl_session,
  376. &wdata->args.seq_args, &wdata->res.seq_res,
  377. task))
  378. return;
  379. rpc_call_start(task);
  380. }
  381. static void filelayout_write_commit_done(struct rpc_task *task, void *data)
  382. {
  383. struct nfs_commit_data *wdata = data;
  384. /* Note this may cause RPC to be resent */
  385. wdata->mds_ops->rpc_call_done(task, data);
  386. }
  387. static void filelayout_commit_count_stats(struct rpc_task *task, void *data)
  388. {
  389. struct nfs_commit_data *cdata = data;
  390. rpc_count_iostats(task, NFS_SERVER(cdata->inode)->client->cl_metrics);
  391. }
  392. static void filelayout_commit_release(void *calldata)
  393. {
  394. struct nfs_commit_data *data = calldata;
  395. data->completion_ops->completion(data);
  396. pnfs_put_lseg(data->lseg);
  397. nfs_put_client(data->ds_clp);
  398. nfs_commitdata_release(data);
  399. }
  400. static const struct rpc_call_ops filelayout_read_call_ops = {
  401. .rpc_call_prepare = filelayout_read_prepare,
  402. .rpc_call_done = filelayout_read_call_done,
  403. .rpc_count_stats = filelayout_read_count_stats,
  404. .rpc_release = filelayout_read_release,
  405. };
  406. static const struct rpc_call_ops filelayout_write_call_ops = {
  407. .rpc_call_prepare = filelayout_write_prepare,
  408. .rpc_call_done = filelayout_write_call_done,
  409. .rpc_count_stats = filelayout_write_count_stats,
  410. .rpc_release = filelayout_write_release,
  411. };
  412. static const struct rpc_call_ops filelayout_commit_call_ops = {
  413. .rpc_call_prepare = filelayout_commit_prepare,
  414. .rpc_call_done = filelayout_write_commit_done,
  415. .rpc_count_stats = filelayout_commit_count_stats,
  416. .rpc_release = filelayout_commit_release,
  417. };
  418. static enum pnfs_try_status
  419. filelayout_read_pagelist(struct nfs_read_data *data)
  420. {
  421. struct nfs_pgio_header *hdr = data->header;
  422. struct pnfs_layout_segment *lseg = hdr->lseg;
  423. struct nfs4_pnfs_ds *ds;
  424. loff_t offset = data->args.offset;
  425. u32 j, idx;
  426. struct nfs_fh *fh;
  427. int status;
  428. dprintk("--> %s ino %lu pgbase %u req %Zu@%llu\n",
  429. __func__, hdr->inode->i_ino,
  430. data->args.pgbase, (size_t)data->args.count, offset);
  431. /* Retrieve the correct rpc_client for the byte range */
  432. j = nfs4_fl_calc_j_index(lseg, offset);
  433. idx = nfs4_fl_calc_ds_index(lseg, j);
  434. ds = nfs4_fl_prepare_ds(lseg, idx);
  435. if (!ds)
  436. return PNFS_NOT_ATTEMPTED;
  437. dprintk("%s USE DS: %s cl_count %d\n", __func__,
  438. ds->ds_remotestr, atomic_read(&ds->ds_clp->cl_count));
  439. /* No multipath support. Use first DS */
  440. atomic_inc(&ds->ds_clp->cl_count);
  441. data->ds_clp = ds->ds_clp;
  442. fh = nfs4_fl_select_ds_fh(lseg, j);
  443. if (fh)
  444. data->args.fh = fh;
  445. data->args.offset = filelayout_get_dserver_offset(lseg, offset);
  446. data->mds_offset = offset;
  447. /* Perform an asynchronous read to ds */
  448. status = nfs_initiate_read(ds->ds_clp->cl_rpcclient, data,
  449. &filelayout_read_call_ops, RPC_TASK_SOFTCONN);
  450. BUG_ON(status != 0);
  451. return PNFS_ATTEMPTED;
  452. }
  453. /* Perform async writes. */
  454. static enum pnfs_try_status
  455. filelayout_write_pagelist(struct nfs_write_data *data, int sync)
  456. {
  457. struct nfs_pgio_header *hdr = data->header;
  458. struct pnfs_layout_segment *lseg = hdr->lseg;
  459. struct nfs4_pnfs_ds *ds;
  460. loff_t offset = data->args.offset;
  461. u32 j, idx;
  462. struct nfs_fh *fh;
  463. int status;
  464. /* Retrieve the correct rpc_client for the byte range */
  465. j = nfs4_fl_calc_j_index(lseg, offset);
  466. idx = nfs4_fl_calc_ds_index(lseg, j);
  467. ds = nfs4_fl_prepare_ds(lseg, idx);
  468. if (!ds)
  469. return PNFS_NOT_ATTEMPTED;
  470. dprintk("%s ino %lu sync %d req %Zu@%llu DS: %s cl_count %d\n",
  471. __func__, hdr->inode->i_ino, sync, (size_t) data->args.count,
  472. offset, ds->ds_remotestr, atomic_read(&ds->ds_clp->cl_count));
  473. data->write_done_cb = filelayout_write_done_cb;
  474. atomic_inc(&ds->ds_clp->cl_count);
  475. data->ds_clp = ds->ds_clp;
  476. fh = nfs4_fl_select_ds_fh(lseg, j);
  477. if (fh)
  478. data->args.fh = fh;
  479. /*
  480. * Get the file offset on the dserver. Set the write offset to
  481. * this offset and save the original offset.
  482. */
  483. data->args.offset = filelayout_get_dserver_offset(lseg, offset);
  484. /* Perform an asynchronous write */
  485. status = nfs_initiate_write(ds->ds_clp->cl_rpcclient, data,
  486. &filelayout_write_call_ops, sync,
  487. RPC_TASK_SOFTCONN);
  488. BUG_ON(status != 0);
  489. return PNFS_ATTEMPTED;
  490. }
  491. /*
  492. * filelayout_check_layout()
  493. *
  494. * Make sure layout segment parameters are sane WRT the device.
  495. * At this point no generic layer initialization of the lseg has occurred,
  496. * and nothing has been added to the layout_hdr cache.
  497. *
  498. */
  499. static int
  500. filelayout_check_layout(struct pnfs_layout_hdr *lo,
  501. struct nfs4_filelayout_segment *fl,
  502. struct nfs4_layoutget_res *lgr,
  503. struct nfs4_deviceid *id,
  504. gfp_t gfp_flags)
  505. {
  506. struct nfs4_deviceid_node *d;
  507. struct nfs4_file_layout_dsaddr *dsaddr;
  508. int status = -EINVAL;
  509. struct nfs_server *nfss = NFS_SERVER(lo->plh_inode);
  510. dprintk("--> %s\n", __func__);
  511. /* FIXME: remove this check when layout segment support is added */
  512. if (lgr->range.offset != 0 ||
  513. lgr->range.length != NFS4_MAX_UINT64) {
  514. dprintk("%s Only whole file layouts supported. Use MDS i/o\n",
  515. __func__);
  516. goto out;
  517. }
  518. if (fl->pattern_offset > lgr->range.offset) {
  519. dprintk("%s pattern_offset %lld too large\n",
  520. __func__, fl->pattern_offset);
  521. goto out;
  522. }
  523. if (!fl->stripe_unit || fl->stripe_unit % PAGE_SIZE) {
  524. dprintk("%s Invalid stripe unit (%u)\n",
  525. __func__, fl->stripe_unit);
  526. goto out;
  527. }
  528. /* find and reference the deviceid */
  529. d = nfs4_find_get_deviceid(NFS_SERVER(lo->plh_inode)->pnfs_curr_ld,
  530. NFS_SERVER(lo->plh_inode)->nfs_client, id);
  531. if (d == NULL) {
  532. dsaddr = filelayout_get_device_info(lo->plh_inode, id, gfp_flags);
  533. if (dsaddr == NULL)
  534. goto out;
  535. } else
  536. dsaddr = container_of(d, struct nfs4_file_layout_dsaddr, id_node);
  537. /* Found deviceid is unavailable */
  538. if (filelayout_test_devid_unavailable(&dsaddr->id_node))
  539. goto out_put;
  540. fl->dsaddr = dsaddr;
  541. if (fl->first_stripe_index >= dsaddr->stripe_count) {
  542. dprintk("%s Bad first_stripe_index %u\n",
  543. __func__, fl->first_stripe_index);
  544. goto out_put;
  545. }
  546. if ((fl->stripe_type == STRIPE_SPARSE &&
  547. fl->num_fh > 1 && fl->num_fh != dsaddr->ds_num) ||
  548. (fl->stripe_type == STRIPE_DENSE &&
  549. fl->num_fh != dsaddr->stripe_count)) {
  550. dprintk("%s num_fh %u not valid for given packing\n",
  551. __func__, fl->num_fh);
  552. goto out_put;
  553. }
  554. if (fl->stripe_unit % nfss->rsize || fl->stripe_unit % nfss->wsize) {
  555. dprintk("%s Stripe unit (%u) not aligned with rsize %u "
  556. "wsize %u\n", __func__, fl->stripe_unit, nfss->rsize,
  557. nfss->wsize);
  558. }
  559. status = 0;
  560. out:
  561. dprintk("--> %s returns %d\n", __func__, status);
  562. return status;
  563. out_put:
  564. nfs4_fl_put_deviceid(dsaddr);
  565. goto out;
  566. }
  567. static void filelayout_free_fh_array(struct nfs4_filelayout_segment *fl)
  568. {
  569. int i;
  570. for (i = 0; i < fl->num_fh; i++) {
  571. if (!fl->fh_array[i])
  572. break;
  573. kfree(fl->fh_array[i]);
  574. }
  575. kfree(fl->fh_array);
  576. fl->fh_array = NULL;
  577. }
  578. static void
  579. _filelayout_free_lseg(struct nfs4_filelayout_segment *fl)
  580. {
  581. filelayout_free_fh_array(fl);
  582. kfree(fl);
  583. }
  584. static int
  585. filelayout_decode_layout(struct pnfs_layout_hdr *flo,
  586. struct nfs4_filelayout_segment *fl,
  587. struct nfs4_layoutget_res *lgr,
  588. struct nfs4_deviceid *id,
  589. gfp_t gfp_flags)
  590. {
  591. struct xdr_stream stream;
  592. struct xdr_buf buf;
  593. struct page *scratch;
  594. __be32 *p;
  595. uint32_t nfl_util;
  596. int i;
  597. dprintk("%s: set_layout_map Begin\n", __func__);
  598. scratch = alloc_page(gfp_flags);
  599. if (!scratch)
  600. return -ENOMEM;
  601. xdr_init_decode_pages(&stream, &buf, lgr->layoutp->pages, lgr->layoutp->len);
  602. xdr_set_scratch_buffer(&stream, page_address(scratch), PAGE_SIZE);
  603. /* 20 = ufl_util (4), first_stripe_index (4), pattern_offset (8),
  604. * num_fh (4) */
  605. p = xdr_inline_decode(&stream, NFS4_DEVICEID4_SIZE + 20);
  606. if (unlikely(!p))
  607. goto out_err;
  608. memcpy(id, p, sizeof(*id));
  609. p += XDR_QUADLEN(NFS4_DEVICEID4_SIZE);
  610. nfs4_print_deviceid(id);
  611. nfl_util = be32_to_cpup(p++);
  612. if (nfl_util & NFL4_UFLG_COMMIT_THRU_MDS)
  613. fl->commit_through_mds = 1;
  614. if (nfl_util & NFL4_UFLG_DENSE)
  615. fl->stripe_type = STRIPE_DENSE;
  616. else
  617. fl->stripe_type = STRIPE_SPARSE;
  618. fl->stripe_unit = nfl_util & ~NFL4_UFLG_MASK;
  619. fl->first_stripe_index = be32_to_cpup(p++);
  620. p = xdr_decode_hyper(p, &fl->pattern_offset);
  621. fl->num_fh = be32_to_cpup(p++);
  622. dprintk("%s: nfl_util 0x%X num_fh %u fsi %u po %llu\n",
  623. __func__, nfl_util, fl->num_fh, fl->first_stripe_index,
  624. fl->pattern_offset);
  625. /* Note that a zero value for num_fh is legal for STRIPE_SPARSE.
  626. * Futher checking is done in filelayout_check_layout */
  627. if (fl->num_fh >
  628. max(NFS4_PNFS_MAX_STRIPE_CNT, NFS4_PNFS_MAX_MULTI_CNT))
  629. goto out_err;
  630. if (fl->num_fh > 0) {
  631. fl->fh_array = kzalloc(fl->num_fh * sizeof(struct nfs_fh *),
  632. gfp_flags);
  633. if (!fl->fh_array)
  634. goto out_err;
  635. }
  636. for (i = 0; i < fl->num_fh; i++) {
  637. /* Do we want to use a mempool here? */
  638. fl->fh_array[i] = kmalloc(sizeof(struct nfs_fh), gfp_flags);
  639. if (!fl->fh_array[i])
  640. goto out_err_free;
  641. p = xdr_inline_decode(&stream, 4);
  642. if (unlikely(!p))
  643. goto out_err_free;
  644. fl->fh_array[i]->size = be32_to_cpup(p++);
  645. if (sizeof(struct nfs_fh) < fl->fh_array[i]->size) {
  646. printk(KERN_ERR "NFS: Too big fh %d received %d\n",
  647. i, fl->fh_array[i]->size);
  648. goto out_err_free;
  649. }
  650. p = xdr_inline_decode(&stream, fl->fh_array[i]->size);
  651. if (unlikely(!p))
  652. goto out_err_free;
  653. memcpy(fl->fh_array[i]->data, p, fl->fh_array[i]->size);
  654. dprintk("DEBUG: %s: fh len %d\n", __func__,
  655. fl->fh_array[i]->size);
  656. }
  657. __free_page(scratch);
  658. return 0;
  659. out_err_free:
  660. filelayout_free_fh_array(fl);
  661. out_err:
  662. __free_page(scratch);
  663. return -EIO;
  664. }
  665. static void
  666. filelayout_free_lseg(struct pnfs_layout_segment *lseg)
  667. {
  668. struct nfs4_filelayout_segment *fl = FILELAYOUT_LSEG(lseg);
  669. dprintk("--> %s\n", __func__);
  670. nfs4_fl_put_deviceid(fl->dsaddr);
  671. /* This assumes a single RW lseg */
  672. if (lseg->pls_range.iomode == IOMODE_RW) {
  673. struct nfs4_filelayout *flo;
  674. flo = FILELAYOUT_FROM_HDR(lseg->pls_layout);
  675. flo->commit_info.nbuckets = 0;
  676. kfree(flo->commit_info.buckets);
  677. flo->commit_info.buckets = NULL;
  678. }
  679. _filelayout_free_lseg(fl);
  680. }
  681. static int
  682. filelayout_alloc_commit_info(struct pnfs_layout_segment *lseg,
  683. struct nfs_commit_info *cinfo,
  684. gfp_t gfp_flags)
  685. {
  686. struct nfs4_filelayout_segment *fl = FILELAYOUT_LSEG(lseg);
  687. struct pnfs_commit_bucket *buckets;
  688. int size;
  689. if (fl->commit_through_mds)
  690. return 0;
  691. if (cinfo->ds->nbuckets != 0) {
  692. /* This assumes there is only one IOMODE_RW lseg. What
  693. * we really want to do is have a layout_hdr level
  694. * dictionary of <multipath_list4, fh> keys, each
  695. * associated with a struct list_head, populated by calls
  696. * to filelayout_write_pagelist().
  697. * */
  698. return 0;
  699. }
  700. size = (fl->stripe_type == STRIPE_SPARSE) ?
  701. fl->dsaddr->ds_num : fl->dsaddr->stripe_count;
  702. buckets = kcalloc(size, sizeof(struct pnfs_commit_bucket),
  703. gfp_flags);
  704. if (!buckets)
  705. return -ENOMEM;
  706. else {
  707. int i;
  708. spin_lock(cinfo->lock);
  709. if (cinfo->ds->nbuckets != 0)
  710. kfree(buckets);
  711. else {
  712. cinfo->ds->buckets = buckets;
  713. cinfo->ds->nbuckets = size;
  714. for (i = 0; i < size; i++) {
  715. INIT_LIST_HEAD(&buckets[i].written);
  716. INIT_LIST_HEAD(&buckets[i].committing);
  717. }
  718. }
  719. spin_unlock(cinfo->lock);
  720. return 0;
  721. }
  722. }
  723. static struct pnfs_layout_segment *
  724. filelayout_alloc_lseg(struct pnfs_layout_hdr *layoutid,
  725. struct nfs4_layoutget_res *lgr,
  726. gfp_t gfp_flags)
  727. {
  728. struct nfs4_filelayout_segment *fl;
  729. int rc;
  730. struct nfs4_deviceid id;
  731. dprintk("--> %s\n", __func__);
  732. fl = kzalloc(sizeof(*fl), gfp_flags);
  733. if (!fl)
  734. return NULL;
  735. rc = filelayout_decode_layout(layoutid, fl, lgr, &id, gfp_flags);
  736. if (rc != 0 || filelayout_check_layout(layoutid, fl, lgr, &id, gfp_flags)) {
  737. _filelayout_free_lseg(fl);
  738. return NULL;
  739. }
  740. return &fl->generic_hdr;
  741. }
  742. /*
  743. * filelayout_pg_test(). Called by nfs_can_coalesce_requests()
  744. *
  745. * return true : coalesce page
  746. * return false : don't coalesce page
  747. */
  748. static bool
  749. filelayout_pg_test(struct nfs_pageio_descriptor *pgio, struct nfs_page *prev,
  750. struct nfs_page *req)
  751. {
  752. u64 p_stripe, r_stripe;
  753. u32 stripe_unit;
  754. if (!pnfs_generic_pg_test(pgio, prev, req) ||
  755. !nfs_generic_pg_test(pgio, prev, req))
  756. return false;
  757. p_stripe = (u64)req_offset(prev);
  758. r_stripe = (u64)req_offset(req);
  759. stripe_unit = FILELAYOUT_LSEG(pgio->pg_lseg)->stripe_unit;
  760. do_div(p_stripe, stripe_unit);
  761. do_div(r_stripe, stripe_unit);
  762. return (p_stripe == r_stripe);
  763. }
  764. static void
  765. filelayout_pg_init_read(struct nfs_pageio_descriptor *pgio,
  766. struct nfs_page *req)
  767. {
  768. BUG_ON(pgio->pg_lseg != NULL);
  769. if (req->wb_offset != req->wb_pgbase) {
  770. /*
  771. * Handling unaligned pages is difficult, because have to
  772. * somehow split a req in two in certain cases in the
  773. * pg.test code. Avoid this by just not using pnfs
  774. * in this case.
  775. */
  776. nfs_pageio_reset_read_mds(pgio);
  777. return;
  778. }
  779. pgio->pg_lseg = pnfs_update_layout(pgio->pg_inode,
  780. req->wb_context,
  781. 0,
  782. NFS4_MAX_UINT64,
  783. IOMODE_READ,
  784. GFP_KERNEL);
  785. /* If no lseg, fall back to read through mds */
  786. if (pgio->pg_lseg == NULL)
  787. nfs_pageio_reset_read_mds(pgio);
  788. }
  789. static void
  790. filelayout_pg_init_write(struct nfs_pageio_descriptor *pgio,
  791. struct nfs_page *req)
  792. {
  793. struct nfs_commit_info cinfo;
  794. int status;
  795. BUG_ON(pgio->pg_lseg != NULL);
  796. if (req->wb_offset != req->wb_pgbase)
  797. goto out_mds;
  798. pgio->pg_lseg = pnfs_update_layout(pgio->pg_inode,
  799. req->wb_context,
  800. 0,
  801. NFS4_MAX_UINT64,
  802. IOMODE_RW,
  803. GFP_NOFS);
  804. /* If no lseg, fall back to write through mds */
  805. if (pgio->pg_lseg == NULL)
  806. goto out_mds;
  807. nfs_init_cinfo(&cinfo, pgio->pg_inode, pgio->pg_dreq);
  808. status = filelayout_alloc_commit_info(pgio->pg_lseg, &cinfo, GFP_NOFS);
  809. if (status < 0) {
  810. pnfs_put_lseg(pgio->pg_lseg);
  811. pgio->pg_lseg = NULL;
  812. goto out_mds;
  813. }
  814. return;
  815. out_mds:
  816. nfs_pageio_reset_write_mds(pgio);
  817. }
  818. static const struct nfs_pageio_ops filelayout_pg_read_ops = {
  819. .pg_init = filelayout_pg_init_read,
  820. .pg_test = filelayout_pg_test,
  821. .pg_doio = pnfs_generic_pg_readpages,
  822. };
  823. static const struct nfs_pageio_ops filelayout_pg_write_ops = {
  824. .pg_init = filelayout_pg_init_write,
  825. .pg_test = filelayout_pg_test,
  826. .pg_doio = pnfs_generic_pg_writepages,
  827. };
  828. static u32 select_bucket_index(struct nfs4_filelayout_segment *fl, u32 j)
  829. {
  830. if (fl->stripe_type == STRIPE_SPARSE)
  831. return nfs4_fl_calc_ds_index(&fl->generic_hdr, j);
  832. else
  833. return j;
  834. }
  835. /* The generic layer is about to remove the req from the commit list.
  836. * If this will make the bucket empty, it will need to put the lseg reference.
  837. */
  838. static void
  839. filelayout_clear_request_commit(struct nfs_page *req,
  840. struct nfs_commit_info *cinfo)
  841. {
  842. struct pnfs_layout_segment *freeme = NULL;
  843. spin_lock(cinfo->lock);
  844. if (!test_and_clear_bit(PG_COMMIT_TO_DS, &req->wb_flags))
  845. goto out;
  846. cinfo->ds->nwritten--;
  847. if (list_is_singular(&req->wb_list)) {
  848. struct pnfs_commit_bucket *bucket;
  849. bucket = list_first_entry(&req->wb_list,
  850. struct pnfs_commit_bucket,
  851. written);
  852. freeme = bucket->wlseg;
  853. bucket->wlseg = NULL;
  854. }
  855. out:
  856. nfs_request_remove_commit_list(req, cinfo);
  857. spin_unlock(cinfo->lock);
  858. pnfs_put_lseg(freeme);
  859. }
  860. static struct list_head *
  861. filelayout_choose_commit_list(struct nfs_page *req,
  862. struct pnfs_layout_segment *lseg,
  863. struct nfs_commit_info *cinfo)
  864. {
  865. struct nfs4_filelayout_segment *fl = FILELAYOUT_LSEG(lseg);
  866. u32 i, j;
  867. struct list_head *list;
  868. struct pnfs_commit_bucket *buckets;
  869. if (fl->commit_through_mds)
  870. return &cinfo->mds->list;
  871. /* Note that we are calling nfs4_fl_calc_j_index on each page
  872. * that ends up being committed to a data server. An attractive
  873. * alternative is to add a field to nfs_write_data and nfs_page
  874. * to store the value calculated in filelayout_write_pagelist
  875. * and just use that here.
  876. */
  877. j = nfs4_fl_calc_j_index(lseg, req_offset(req));
  878. i = select_bucket_index(fl, j);
  879. buckets = cinfo->ds->buckets;
  880. list = &buckets[i].written;
  881. if (list_empty(list)) {
  882. /* Non-empty buckets hold a reference on the lseg. That ref
  883. * is normally transferred to the COMMIT call and released
  884. * there. It could also be released if the last req is pulled
  885. * off due to a rewrite, in which case it will be done in
  886. * filelayout_clear_request_commit
  887. */
  888. buckets[i].wlseg = pnfs_get_lseg(lseg);
  889. }
  890. set_bit(PG_COMMIT_TO_DS, &req->wb_flags);
  891. cinfo->ds->nwritten++;
  892. return list;
  893. }
  894. static void
  895. filelayout_mark_request_commit(struct nfs_page *req,
  896. struct pnfs_layout_segment *lseg,
  897. struct nfs_commit_info *cinfo)
  898. {
  899. struct list_head *list;
  900. list = filelayout_choose_commit_list(req, lseg, cinfo);
  901. nfs_request_add_commit_list(req, list, cinfo);
  902. }
  903. static u32 calc_ds_index_from_commit(struct pnfs_layout_segment *lseg, u32 i)
  904. {
  905. struct nfs4_filelayout_segment *flseg = FILELAYOUT_LSEG(lseg);
  906. if (flseg->stripe_type == STRIPE_SPARSE)
  907. return i;
  908. else
  909. return nfs4_fl_calc_ds_index(lseg, i);
  910. }
  911. static struct nfs_fh *
  912. select_ds_fh_from_commit(struct pnfs_layout_segment *lseg, u32 i)
  913. {
  914. struct nfs4_filelayout_segment *flseg = FILELAYOUT_LSEG(lseg);
  915. if (flseg->stripe_type == STRIPE_SPARSE) {
  916. if (flseg->num_fh == 1)
  917. i = 0;
  918. else if (flseg->num_fh == 0)
  919. /* Use the MDS OPEN fh set in nfs_read_rpcsetup */
  920. return NULL;
  921. }
  922. return flseg->fh_array[i];
  923. }
  924. static int filelayout_initiate_commit(struct nfs_commit_data *data, int how)
  925. {
  926. struct pnfs_layout_segment *lseg = data->lseg;
  927. struct nfs4_pnfs_ds *ds;
  928. u32 idx;
  929. struct nfs_fh *fh;
  930. idx = calc_ds_index_from_commit(lseg, data->ds_commit_index);
  931. ds = nfs4_fl_prepare_ds(lseg, idx);
  932. if (!ds) {
  933. prepare_to_resend_writes(data);
  934. filelayout_commit_release(data);
  935. return -EAGAIN;
  936. }
  937. dprintk("%s ino %lu, how %d cl_count %d\n", __func__,
  938. data->inode->i_ino, how, atomic_read(&ds->ds_clp->cl_count));
  939. data->commit_done_cb = filelayout_commit_done_cb;
  940. atomic_inc(&ds->ds_clp->cl_count);
  941. data->ds_clp = ds->ds_clp;
  942. fh = select_ds_fh_from_commit(lseg, data->ds_commit_index);
  943. if (fh)
  944. data->args.fh = fh;
  945. return nfs_initiate_commit(ds->ds_clp->cl_rpcclient, data,
  946. &filelayout_commit_call_ops, how,
  947. RPC_TASK_SOFTCONN);
  948. }
  949. static int
  950. transfer_commit_list(struct list_head *src, struct list_head *dst,
  951. struct nfs_commit_info *cinfo, int max)
  952. {
  953. struct nfs_page *req, *tmp;
  954. int ret = 0;
  955. list_for_each_entry_safe(req, tmp, src, wb_list) {
  956. if (!nfs_lock_request(req))
  957. continue;
  958. kref_get(&req->wb_kref);
  959. if (cond_resched_lock(cinfo->lock))
  960. list_safe_reset_next(req, tmp, wb_list);
  961. nfs_request_remove_commit_list(req, cinfo);
  962. clear_bit(PG_COMMIT_TO_DS, &req->wb_flags);
  963. nfs_list_add_request(req, dst);
  964. ret++;
  965. if ((ret == max) && !cinfo->dreq)
  966. break;
  967. }
  968. return ret;
  969. }
  970. static int
  971. filelayout_scan_ds_commit_list(struct pnfs_commit_bucket *bucket,
  972. struct nfs_commit_info *cinfo,
  973. int max)
  974. {
  975. struct list_head *src = &bucket->written;
  976. struct list_head *dst = &bucket->committing;
  977. int ret;
  978. ret = transfer_commit_list(src, dst, cinfo, max);
  979. if (ret) {
  980. cinfo->ds->nwritten -= ret;
  981. cinfo->ds->ncommitting += ret;
  982. bucket->clseg = bucket->wlseg;
  983. if (list_empty(src))
  984. bucket->wlseg = NULL;
  985. else
  986. pnfs_get_lseg(bucket->clseg);
  987. }
  988. return ret;
  989. }
  990. /* Move reqs from written to committing lists, returning count of number moved.
  991. * Note called with cinfo->lock held.
  992. */
  993. static int filelayout_scan_commit_lists(struct nfs_commit_info *cinfo,
  994. int max)
  995. {
  996. int i, rv = 0, cnt;
  997. for (i = 0; i < cinfo->ds->nbuckets && max != 0; i++) {
  998. cnt = filelayout_scan_ds_commit_list(&cinfo->ds->buckets[i],
  999. cinfo, max);
  1000. max -= cnt;
  1001. rv += cnt;
  1002. }
  1003. return rv;
  1004. }
  1005. /* Pull everything off the committing lists and dump into @dst */
  1006. static void filelayout_recover_commit_reqs(struct list_head *dst,
  1007. struct nfs_commit_info *cinfo)
  1008. {
  1009. struct pnfs_commit_bucket *b;
  1010. int i;
  1011. /* NOTE cinfo->lock is NOT held, relying on fact that this is
  1012. * only called on single thread per dreq.
  1013. * Can't take the lock because need to do pnfs_put_lseg
  1014. */
  1015. for (i = 0, b = cinfo->ds->buckets; i < cinfo->ds->nbuckets; i++, b++) {
  1016. if (transfer_commit_list(&b->written, dst, cinfo, 0)) {
  1017. BUG_ON(!list_empty(&b->written));
  1018. pnfs_put_lseg(b->wlseg);
  1019. b->wlseg = NULL;
  1020. }
  1021. }
  1022. cinfo->ds->nwritten = 0;
  1023. }
  1024. static unsigned int
  1025. alloc_ds_commits(struct nfs_commit_info *cinfo, struct list_head *list)
  1026. {
  1027. struct pnfs_ds_commit_info *fl_cinfo;
  1028. struct pnfs_commit_bucket *bucket;
  1029. struct nfs_commit_data *data;
  1030. int i, j;
  1031. unsigned int nreq = 0;
  1032. fl_cinfo = cinfo->ds;
  1033. bucket = fl_cinfo->buckets;
  1034. for (i = 0; i < fl_cinfo->nbuckets; i++, bucket++) {
  1035. if (list_empty(&bucket->committing))
  1036. continue;
  1037. data = nfs_commitdata_alloc();
  1038. if (!data)
  1039. break;
  1040. data->ds_commit_index = i;
  1041. data->lseg = bucket->clseg;
  1042. bucket->clseg = NULL;
  1043. list_add(&data->pages, list);
  1044. nreq++;
  1045. }
  1046. /* Clean up on error */
  1047. for (j = i; j < fl_cinfo->nbuckets; j++, bucket++) {
  1048. if (list_empty(&bucket->committing))
  1049. continue;
  1050. nfs_retry_commit(&bucket->committing, bucket->clseg, cinfo);
  1051. pnfs_put_lseg(bucket->clseg);
  1052. bucket->clseg = NULL;
  1053. }
  1054. /* Caller will clean up entries put on list */
  1055. return nreq;
  1056. }
  1057. /* This follows nfs_commit_list pretty closely */
  1058. static int
  1059. filelayout_commit_pagelist(struct inode *inode, struct list_head *mds_pages,
  1060. int how, struct nfs_commit_info *cinfo)
  1061. {
  1062. struct nfs_commit_data *data, *tmp;
  1063. LIST_HEAD(list);
  1064. unsigned int nreq = 0;
  1065. if (!list_empty(mds_pages)) {
  1066. data = nfs_commitdata_alloc();
  1067. if (data != NULL) {
  1068. data->lseg = NULL;
  1069. list_add(&data->pages, &list);
  1070. nreq++;
  1071. } else
  1072. nfs_retry_commit(mds_pages, NULL, cinfo);
  1073. }
  1074. nreq += alloc_ds_commits(cinfo, &list);
  1075. if (nreq == 0) {
  1076. cinfo->completion_ops->error_cleanup(NFS_I(inode));
  1077. goto out;
  1078. }
  1079. atomic_add(nreq, &cinfo->mds->rpcs_out);
  1080. list_for_each_entry_safe(data, tmp, &list, pages) {
  1081. list_del_init(&data->pages);
  1082. if (!data->lseg) {
  1083. nfs_init_commit(data, mds_pages, NULL, cinfo);
  1084. nfs_initiate_commit(NFS_CLIENT(inode), data,
  1085. data->mds_ops, how, 0);
  1086. } else {
  1087. struct pnfs_commit_bucket *buckets;
  1088. buckets = cinfo->ds->buckets;
  1089. nfs_init_commit(data, &buckets[data->ds_commit_index].committing, data->lseg, cinfo);
  1090. filelayout_initiate_commit(data, how);
  1091. }
  1092. }
  1093. out:
  1094. cinfo->ds->ncommitting = 0;
  1095. return PNFS_ATTEMPTED;
  1096. }
  1097. static void
  1098. filelayout_free_deveiceid_node(struct nfs4_deviceid_node *d)
  1099. {
  1100. nfs4_fl_free_deviceid(container_of(d, struct nfs4_file_layout_dsaddr, id_node));
  1101. }
  1102. static struct pnfs_layout_hdr *
  1103. filelayout_alloc_layout_hdr(struct inode *inode, gfp_t gfp_flags)
  1104. {
  1105. struct nfs4_filelayout *flo;
  1106. flo = kzalloc(sizeof(*flo), gfp_flags);
  1107. return &flo->generic_hdr;
  1108. }
  1109. static void
  1110. filelayout_free_layout_hdr(struct pnfs_layout_hdr *lo)
  1111. {
  1112. kfree(FILELAYOUT_FROM_HDR(lo));
  1113. }
  1114. static struct pnfs_ds_commit_info *
  1115. filelayout_get_ds_info(struct inode *inode)
  1116. {
  1117. struct pnfs_layout_hdr *layout = NFS_I(inode)->layout;
  1118. if (layout == NULL)
  1119. return NULL;
  1120. else
  1121. return &FILELAYOUT_FROM_HDR(layout)->commit_info;
  1122. }
  1123. static struct pnfs_layoutdriver_type filelayout_type = {
  1124. .id = LAYOUT_NFSV4_1_FILES,
  1125. .name = "LAYOUT_NFSV4_1_FILES",
  1126. .owner = THIS_MODULE,
  1127. .alloc_layout_hdr = filelayout_alloc_layout_hdr,
  1128. .free_layout_hdr = filelayout_free_layout_hdr,
  1129. .alloc_lseg = filelayout_alloc_lseg,
  1130. .free_lseg = filelayout_free_lseg,
  1131. .pg_read_ops = &filelayout_pg_read_ops,
  1132. .pg_write_ops = &filelayout_pg_write_ops,
  1133. .get_ds_info = &filelayout_get_ds_info,
  1134. .mark_request_commit = filelayout_mark_request_commit,
  1135. .clear_request_commit = filelayout_clear_request_commit,
  1136. .scan_commit_lists = filelayout_scan_commit_lists,
  1137. .recover_commit_reqs = filelayout_recover_commit_reqs,
  1138. .commit_pagelist = filelayout_commit_pagelist,
  1139. .read_pagelist = filelayout_read_pagelist,
  1140. .write_pagelist = filelayout_write_pagelist,
  1141. .free_deviceid_node = filelayout_free_deveiceid_node,
  1142. };
  1143. static int __init nfs4filelayout_init(void)
  1144. {
  1145. printk(KERN_INFO "%s: NFSv4 File Layout Driver Registering...\n",
  1146. __func__);
  1147. return pnfs_register_layoutdriver(&filelayout_type);
  1148. }
  1149. static void __exit nfs4filelayout_exit(void)
  1150. {
  1151. printk(KERN_INFO "%s: NFSv4 File Layout Driver Unregistering...\n",
  1152. __func__);
  1153. pnfs_unregister_layoutdriver(&filelayout_type);
  1154. }
  1155. MODULE_ALIAS("nfs-layouttype4-1");
  1156. module_init(nfs4filelayout_init);
  1157. module_exit(nfs4filelayout_exit);