flexfilelayout.c 60 KB

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  1. /*
  2. * Module for pnfs flexfile layout driver.
  3. *
  4. * Copyright (c) 2014, Primary Data, Inc. All rights reserved.
  5. *
  6. * Tao Peng <bergwolf@primarydata.com>
  7. */
  8. #include <linux/nfs_fs.h>
  9. #include <linux/nfs_page.h>
  10. #include <linux/module.h>
  11. #include <linux/sunrpc/metrics.h>
  12. #include "flexfilelayout.h"
  13. #include "../nfs4session.h"
  14. #include "../nfs4idmap.h"
  15. #include "../internal.h"
  16. #include "../delegation.h"
  17. #include "../nfs4trace.h"
  18. #include "../iostat.h"
  19. #include "../nfs.h"
  20. #include "../nfs42.h"
  21. #define NFSDBG_FACILITY NFSDBG_PNFS_LD
  22. #define FF_LAYOUT_POLL_RETRY_MAX (15*HZ)
  23. static struct group_info *ff_zero_group;
  24. static void ff_layout_read_record_layoutstats_done(struct rpc_task *task,
  25. struct nfs_pgio_header *hdr);
  26. static struct pnfs_layout_hdr *
  27. ff_layout_alloc_layout_hdr(struct inode *inode, gfp_t gfp_flags)
  28. {
  29. struct nfs4_flexfile_layout *ffl;
  30. ffl = kzalloc(sizeof(*ffl), gfp_flags);
  31. if (ffl) {
  32. INIT_LIST_HEAD(&ffl->error_list);
  33. INIT_LIST_HEAD(&ffl->mirrors);
  34. ffl->last_report_time = ktime_get();
  35. return &ffl->generic_hdr;
  36. } else
  37. return NULL;
  38. }
  39. static void
  40. ff_layout_free_layout_hdr(struct pnfs_layout_hdr *lo)
  41. {
  42. struct nfs4_ff_layout_ds_err *err, *n;
  43. list_for_each_entry_safe(err, n, &FF_LAYOUT_FROM_HDR(lo)->error_list,
  44. list) {
  45. list_del(&err->list);
  46. kfree(err);
  47. }
  48. kfree(FF_LAYOUT_FROM_HDR(lo));
  49. }
  50. static int decode_pnfs_stateid(struct xdr_stream *xdr, nfs4_stateid *stateid)
  51. {
  52. __be32 *p;
  53. p = xdr_inline_decode(xdr, NFS4_STATEID_SIZE);
  54. if (unlikely(p == NULL))
  55. return -ENOBUFS;
  56. stateid->type = NFS4_PNFS_DS_STATEID_TYPE;
  57. memcpy(stateid->data, p, NFS4_STATEID_SIZE);
  58. dprintk("%s: stateid id= [%x%x%x%x]\n", __func__,
  59. p[0], p[1], p[2], p[3]);
  60. return 0;
  61. }
  62. static int decode_deviceid(struct xdr_stream *xdr, struct nfs4_deviceid *devid)
  63. {
  64. __be32 *p;
  65. p = xdr_inline_decode(xdr, NFS4_DEVICEID4_SIZE);
  66. if (unlikely(!p))
  67. return -ENOBUFS;
  68. memcpy(devid, p, NFS4_DEVICEID4_SIZE);
  69. nfs4_print_deviceid(devid);
  70. return 0;
  71. }
  72. static int decode_nfs_fh(struct xdr_stream *xdr, struct nfs_fh *fh)
  73. {
  74. __be32 *p;
  75. p = xdr_inline_decode(xdr, 4);
  76. if (unlikely(!p))
  77. return -ENOBUFS;
  78. fh->size = be32_to_cpup(p++);
  79. if (fh->size > sizeof(struct nfs_fh)) {
  80. printk(KERN_ERR "NFS flexfiles: Too big fh received %d\n",
  81. fh->size);
  82. return -EOVERFLOW;
  83. }
  84. /* fh.data */
  85. p = xdr_inline_decode(xdr, fh->size);
  86. if (unlikely(!p))
  87. return -ENOBUFS;
  88. memcpy(&fh->data, p, fh->size);
  89. dprintk("%s: fh len %d\n", __func__, fh->size);
  90. return 0;
  91. }
  92. /*
  93. * Currently only stringified uids and gids are accepted.
  94. * I.e., kerberos is not supported to the DSes, so no pricipals.
  95. *
  96. * That means that one common function will suffice, but when
  97. * principals are added, this should be split to accomodate
  98. * calls to both nfs_map_name_to_uid() and nfs_map_group_to_gid().
  99. */
  100. static int
  101. decode_name(struct xdr_stream *xdr, u32 *id)
  102. {
  103. __be32 *p;
  104. int len;
  105. /* opaque_length(4)*/
  106. p = xdr_inline_decode(xdr, 4);
  107. if (unlikely(!p))
  108. return -ENOBUFS;
  109. len = be32_to_cpup(p++);
  110. if (len < 0)
  111. return -EINVAL;
  112. dprintk("%s: len %u\n", __func__, len);
  113. /* opaque body */
  114. p = xdr_inline_decode(xdr, len);
  115. if (unlikely(!p))
  116. return -ENOBUFS;
  117. if (!nfs_map_string_to_numeric((char *)p, len, id))
  118. return -EINVAL;
  119. return 0;
  120. }
  121. static bool ff_mirror_match_fh(const struct nfs4_ff_layout_mirror *m1,
  122. const struct nfs4_ff_layout_mirror *m2)
  123. {
  124. int i, j;
  125. if (m1->fh_versions_cnt != m2->fh_versions_cnt)
  126. return false;
  127. for (i = 0; i < m1->fh_versions_cnt; i++) {
  128. bool found_fh = false;
  129. for (j = 0; j < m2->fh_versions_cnt; j++) {
  130. if (nfs_compare_fh(&m1->fh_versions[i],
  131. &m2->fh_versions[j]) == 0) {
  132. found_fh = true;
  133. break;
  134. }
  135. }
  136. if (!found_fh)
  137. return false;
  138. }
  139. return true;
  140. }
  141. static struct nfs4_ff_layout_mirror *
  142. ff_layout_add_mirror(struct pnfs_layout_hdr *lo,
  143. struct nfs4_ff_layout_mirror *mirror)
  144. {
  145. struct nfs4_flexfile_layout *ff_layout = FF_LAYOUT_FROM_HDR(lo);
  146. struct nfs4_ff_layout_mirror *pos;
  147. struct inode *inode = lo->plh_inode;
  148. spin_lock(&inode->i_lock);
  149. list_for_each_entry(pos, &ff_layout->mirrors, mirrors) {
  150. if (mirror->mirror_ds != pos->mirror_ds)
  151. continue;
  152. if (!ff_mirror_match_fh(mirror, pos))
  153. continue;
  154. if (atomic_inc_not_zero(&pos->ref)) {
  155. spin_unlock(&inode->i_lock);
  156. return pos;
  157. }
  158. }
  159. list_add(&mirror->mirrors, &ff_layout->mirrors);
  160. mirror->layout = lo;
  161. spin_unlock(&inode->i_lock);
  162. return mirror;
  163. }
  164. static void
  165. ff_layout_remove_mirror(struct nfs4_ff_layout_mirror *mirror)
  166. {
  167. struct inode *inode;
  168. if (mirror->layout == NULL)
  169. return;
  170. inode = mirror->layout->plh_inode;
  171. spin_lock(&inode->i_lock);
  172. list_del(&mirror->mirrors);
  173. spin_unlock(&inode->i_lock);
  174. mirror->layout = NULL;
  175. }
  176. static struct nfs4_ff_layout_mirror *ff_layout_alloc_mirror(gfp_t gfp_flags)
  177. {
  178. struct nfs4_ff_layout_mirror *mirror;
  179. mirror = kzalloc(sizeof(*mirror), gfp_flags);
  180. if (mirror != NULL) {
  181. spin_lock_init(&mirror->lock);
  182. atomic_set(&mirror->ref, 1);
  183. INIT_LIST_HEAD(&mirror->mirrors);
  184. }
  185. return mirror;
  186. }
  187. static void ff_layout_free_mirror(struct nfs4_ff_layout_mirror *mirror)
  188. {
  189. struct rpc_cred *cred;
  190. ff_layout_remove_mirror(mirror);
  191. kfree(mirror->fh_versions);
  192. cred = rcu_access_pointer(mirror->ro_cred);
  193. if (cred)
  194. put_rpccred(cred);
  195. cred = rcu_access_pointer(mirror->rw_cred);
  196. if (cred)
  197. put_rpccred(cred);
  198. nfs4_ff_layout_put_deviceid(mirror->mirror_ds);
  199. kfree(mirror);
  200. }
  201. static void ff_layout_put_mirror(struct nfs4_ff_layout_mirror *mirror)
  202. {
  203. if (mirror != NULL && atomic_dec_and_test(&mirror->ref))
  204. ff_layout_free_mirror(mirror);
  205. }
  206. static void ff_layout_free_mirror_array(struct nfs4_ff_layout_segment *fls)
  207. {
  208. int i;
  209. if (fls->mirror_array) {
  210. for (i = 0; i < fls->mirror_array_cnt; i++) {
  211. /* normally mirror_ds is freed in
  212. * .free_deviceid_node but we still do it here
  213. * for .alloc_lseg error path */
  214. ff_layout_put_mirror(fls->mirror_array[i]);
  215. }
  216. kfree(fls->mirror_array);
  217. fls->mirror_array = NULL;
  218. }
  219. }
  220. static int ff_layout_check_layout(struct nfs4_layoutget_res *lgr)
  221. {
  222. int ret = 0;
  223. dprintk("--> %s\n", __func__);
  224. /* FIXME: remove this check when layout segment support is added */
  225. if (lgr->range.offset != 0 ||
  226. lgr->range.length != NFS4_MAX_UINT64) {
  227. dprintk("%s Only whole file layouts supported. Use MDS i/o\n",
  228. __func__);
  229. ret = -EINVAL;
  230. }
  231. dprintk("--> %s returns %d\n", __func__, ret);
  232. return ret;
  233. }
  234. static void _ff_layout_free_lseg(struct nfs4_ff_layout_segment *fls)
  235. {
  236. if (fls) {
  237. ff_layout_free_mirror_array(fls);
  238. kfree(fls);
  239. }
  240. }
  241. static bool
  242. ff_lseg_range_is_after(const struct pnfs_layout_range *l1,
  243. const struct pnfs_layout_range *l2)
  244. {
  245. u64 end1, end2;
  246. if (l1->iomode != l2->iomode)
  247. return l1->iomode != IOMODE_READ;
  248. end1 = pnfs_calc_offset_end(l1->offset, l1->length);
  249. end2 = pnfs_calc_offset_end(l2->offset, l2->length);
  250. if (end1 < l2->offset)
  251. return false;
  252. if (end2 < l1->offset)
  253. return true;
  254. return l2->offset <= l1->offset;
  255. }
  256. static bool
  257. ff_lseg_merge(struct pnfs_layout_segment *new,
  258. struct pnfs_layout_segment *old)
  259. {
  260. u64 new_end, old_end;
  261. if (test_bit(NFS_LSEG_LAYOUTRETURN, &old->pls_flags))
  262. return false;
  263. if (new->pls_range.iomode != old->pls_range.iomode)
  264. return false;
  265. old_end = pnfs_calc_offset_end(old->pls_range.offset,
  266. old->pls_range.length);
  267. if (old_end < new->pls_range.offset)
  268. return false;
  269. new_end = pnfs_calc_offset_end(new->pls_range.offset,
  270. new->pls_range.length);
  271. if (new_end < old->pls_range.offset)
  272. return false;
  273. /* Mergeable: copy info from 'old' to 'new' */
  274. if (new_end < old_end)
  275. new_end = old_end;
  276. if (new->pls_range.offset < old->pls_range.offset)
  277. new->pls_range.offset = old->pls_range.offset;
  278. new->pls_range.length = pnfs_calc_offset_length(new->pls_range.offset,
  279. new_end);
  280. if (test_bit(NFS_LSEG_ROC, &old->pls_flags))
  281. set_bit(NFS_LSEG_ROC, &new->pls_flags);
  282. return true;
  283. }
  284. static void
  285. ff_layout_add_lseg(struct pnfs_layout_hdr *lo,
  286. struct pnfs_layout_segment *lseg,
  287. struct list_head *free_me)
  288. {
  289. pnfs_generic_layout_insert_lseg(lo, lseg,
  290. ff_lseg_range_is_after,
  291. ff_lseg_merge,
  292. free_me);
  293. }
  294. static void ff_layout_sort_mirrors(struct nfs4_ff_layout_segment *fls)
  295. {
  296. int i, j;
  297. for (i = 0; i < fls->mirror_array_cnt - 1; i++) {
  298. for (j = i + 1; j < fls->mirror_array_cnt; j++)
  299. if (fls->mirror_array[i]->efficiency <
  300. fls->mirror_array[j]->efficiency)
  301. swap(fls->mirror_array[i],
  302. fls->mirror_array[j]);
  303. }
  304. }
  305. static void ff_layout_mark_devices_valid(struct nfs4_ff_layout_segment *fls)
  306. {
  307. struct nfs4_deviceid_node *node;
  308. int i;
  309. if (!(fls->flags & FF_FLAGS_NO_IO_THRU_MDS))
  310. return;
  311. for (i = 0; i < fls->mirror_array_cnt; i++) {
  312. node = &fls->mirror_array[i]->mirror_ds->id_node;
  313. clear_bit(NFS_DEVICEID_UNAVAILABLE, &node->flags);
  314. }
  315. }
  316. static struct pnfs_layout_segment *
  317. ff_layout_alloc_lseg(struct pnfs_layout_hdr *lh,
  318. struct nfs4_layoutget_res *lgr,
  319. gfp_t gfp_flags)
  320. {
  321. struct pnfs_layout_segment *ret;
  322. struct nfs4_ff_layout_segment *fls = NULL;
  323. struct xdr_stream stream;
  324. struct xdr_buf buf;
  325. struct page *scratch;
  326. u64 stripe_unit;
  327. u32 mirror_array_cnt;
  328. __be32 *p;
  329. int i, rc;
  330. dprintk("--> %s\n", __func__);
  331. scratch = alloc_page(gfp_flags);
  332. if (!scratch)
  333. return ERR_PTR(-ENOMEM);
  334. xdr_init_decode_pages(&stream, &buf, lgr->layoutp->pages,
  335. lgr->layoutp->len);
  336. xdr_set_scratch_buffer(&stream, page_address(scratch), PAGE_SIZE);
  337. /* stripe unit and mirror_array_cnt */
  338. rc = -EIO;
  339. p = xdr_inline_decode(&stream, 8 + 4);
  340. if (!p)
  341. goto out_err_free;
  342. p = xdr_decode_hyper(p, &stripe_unit);
  343. mirror_array_cnt = be32_to_cpup(p++);
  344. dprintk("%s: stripe_unit=%llu mirror_array_cnt=%u\n", __func__,
  345. stripe_unit, mirror_array_cnt);
  346. if (mirror_array_cnt > NFS4_FLEXFILE_LAYOUT_MAX_MIRROR_CNT ||
  347. mirror_array_cnt == 0)
  348. goto out_err_free;
  349. rc = -ENOMEM;
  350. fls = kzalloc(sizeof(*fls), gfp_flags);
  351. if (!fls)
  352. goto out_err_free;
  353. fls->mirror_array_cnt = mirror_array_cnt;
  354. fls->stripe_unit = stripe_unit;
  355. fls->mirror_array = kcalloc(fls->mirror_array_cnt,
  356. sizeof(fls->mirror_array[0]), gfp_flags);
  357. if (fls->mirror_array == NULL)
  358. goto out_err_free;
  359. for (i = 0; i < fls->mirror_array_cnt; i++) {
  360. struct nfs4_ff_layout_mirror *mirror;
  361. struct nfs4_deviceid devid;
  362. struct nfs4_deviceid_node *idnode;
  363. struct auth_cred acred = { .group_info = ff_zero_group };
  364. struct rpc_cred __rcu *cred;
  365. u32 ds_count, fh_count, id;
  366. int j;
  367. rc = -EIO;
  368. p = xdr_inline_decode(&stream, 4);
  369. if (!p)
  370. goto out_err_free;
  371. ds_count = be32_to_cpup(p);
  372. /* FIXME: allow for striping? */
  373. if (ds_count != 1)
  374. goto out_err_free;
  375. fls->mirror_array[i] = ff_layout_alloc_mirror(gfp_flags);
  376. if (fls->mirror_array[i] == NULL) {
  377. rc = -ENOMEM;
  378. goto out_err_free;
  379. }
  380. fls->mirror_array[i]->ds_count = ds_count;
  381. /* deviceid */
  382. rc = decode_deviceid(&stream, &devid);
  383. if (rc)
  384. goto out_err_free;
  385. idnode = nfs4_find_get_deviceid(NFS_SERVER(lh->plh_inode),
  386. &devid, lh->plh_lc_cred,
  387. gfp_flags);
  388. /*
  389. * upon success, mirror_ds is allocated by previous
  390. * getdeviceinfo, or newly by .alloc_deviceid_node
  391. * nfs4_find_get_deviceid failure is indeed getdeviceinfo falure
  392. */
  393. if (idnode)
  394. fls->mirror_array[i]->mirror_ds =
  395. FF_LAYOUT_MIRROR_DS(idnode);
  396. else
  397. goto out_err_free;
  398. /* efficiency */
  399. rc = -EIO;
  400. p = xdr_inline_decode(&stream, 4);
  401. if (!p)
  402. goto out_err_free;
  403. fls->mirror_array[i]->efficiency = be32_to_cpup(p);
  404. /* stateid */
  405. rc = decode_pnfs_stateid(&stream, &fls->mirror_array[i]->stateid);
  406. if (rc)
  407. goto out_err_free;
  408. /* fh */
  409. p = xdr_inline_decode(&stream, 4);
  410. if (!p)
  411. goto out_err_free;
  412. fh_count = be32_to_cpup(p);
  413. fls->mirror_array[i]->fh_versions =
  414. kzalloc(fh_count * sizeof(struct nfs_fh),
  415. gfp_flags);
  416. if (fls->mirror_array[i]->fh_versions == NULL) {
  417. rc = -ENOMEM;
  418. goto out_err_free;
  419. }
  420. for (j = 0; j < fh_count; j++) {
  421. rc = decode_nfs_fh(&stream,
  422. &fls->mirror_array[i]->fh_versions[j]);
  423. if (rc)
  424. goto out_err_free;
  425. }
  426. fls->mirror_array[i]->fh_versions_cnt = fh_count;
  427. /* user */
  428. rc = decode_name(&stream, &id);
  429. if (rc)
  430. goto out_err_free;
  431. acred.uid = make_kuid(&init_user_ns, id);
  432. /* group */
  433. rc = decode_name(&stream, &id);
  434. if (rc)
  435. goto out_err_free;
  436. acred.gid = make_kgid(&init_user_ns, id);
  437. /* find the cred for it */
  438. rcu_assign_pointer(cred, rpc_lookup_generic_cred(&acred, 0, gfp_flags));
  439. if (IS_ERR(cred)) {
  440. rc = PTR_ERR(cred);
  441. goto out_err_free;
  442. }
  443. if (lgr->range.iomode == IOMODE_READ)
  444. rcu_assign_pointer(fls->mirror_array[i]->ro_cred, cred);
  445. else
  446. rcu_assign_pointer(fls->mirror_array[i]->rw_cred, cred);
  447. mirror = ff_layout_add_mirror(lh, fls->mirror_array[i]);
  448. if (mirror != fls->mirror_array[i]) {
  449. /* swap cred ptrs so free_mirror will clean up old */
  450. if (lgr->range.iomode == IOMODE_READ) {
  451. cred = xchg(&mirror->ro_cred, cred);
  452. rcu_assign_pointer(fls->mirror_array[i]->ro_cred, cred);
  453. } else {
  454. cred = xchg(&mirror->rw_cred, cred);
  455. rcu_assign_pointer(fls->mirror_array[i]->rw_cred, cred);
  456. }
  457. ff_layout_free_mirror(fls->mirror_array[i]);
  458. fls->mirror_array[i] = mirror;
  459. }
  460. dprintk("%s: iomode %s uid %u gid %u\n", __func__,
  461. lgr->range.iomode == IOMODE_READ ? "READ" : "RW",
  462. from_kuid(&init_user_ns, acred.uid),
  463. from_kgid(&init_user_ns, acred.gid));
  464. }
  465. p = xdr_inline_decode(&stream, 4);
  466. if (!p)
  467. goto out_sort_mirrors;
  468. fls->flags = be32_to_cpup(p);
  469. p = xdr_inline_decode(&stream, 4);
  470. if (!p)
  471. goto out_sort_mirrors;
  472. for (i=0; i < fls->mirror_array_cnt; i++)
  473. fls->mirror_array[i]->report_interval = be32_to_cpup(p);
  474. out_sort_mirrors:
  475. ff_layout_sort_mirrors(fls);
  476. rc = ff_layout_check_layout(lgr);
  477. if (rc)
  478. goto out_err_free;
  479. ff_layout_mark_devices_valid(fls);
  480. ret = &fls->generic_hdr;
  481. dprintk("<-- %s (success)\n", __func__);
  482. out_free_page:
  483. __free_page(scratch);
  484. return ret;
  485. out_err_free:
  486. _ff_layout_free_lseg(fls);
  487. ret = ERR_PTR(rc);
  488. dprintk("<-- %s (%d)\n", __func__, rc);
  489. goto out_free_page;
  490. }
  491. static bool ff_layout_has_rw_segments(struct pnfs_layout_hdr *layout)
  492. {
  493. struct pnfs_layout_segment *lseg;
  494. list_for_each_entry(lseg, &layout->plh_segs, pls_list)
  495. if (lseg->pls_range.iomode == IOMODE_RW)
  496. return true;
  497. return false;
  498. }
  499. static void
  500. ff_layout_free_lseg(struct pnfs_layout_segment *lseg)
  501. {
  502. struct nfs4_ff_layout_segment *fls = FF_LAYOUT_LSEG(lseg);
  503. dprintk("--> %s\n", __func__);
  504. if (lseg->pls_range.iomode == IOMODE_RW) {
  505. struct nfs4_flexfile_layout *ffl;
  506. struct inode *inode;
  507. ffl = FF_LAYOUT_FROM_HDR(lseg->pls_layout);
  508. inode = ffl->generic_hdr.plh_inode;
  509. spin_lock(&inode->i_lock);
  510. if (!ff_layout_has_rw_segments(lseg->pls_layout)) {
  511. ffl->commit_info.nbuckets = 0;
  512. kfree(ffl->commit_info.buckets);
  513. ffl->commit_info.buckets = NULL;
  514. }
  515. spin_unlock(&inode->i_lock);
  516. }
  517. _ff_layout_free_lseg(fls);
  518. }
  519. /* Return 1 until we have multiple lsegs support */
  520. static int
  521. ff_layout_get_lseg_count(struct nfs4_ff_layout_segment *fls)
  522. {
  523. return 1;
  524. }
  525. static void
  526. nfs4_ff_start_busy_timer(struct nfs4_ff_busy_timer *timer, ktime_t now)
  527. {
  528. /* first IO request? */
  529. if (atomic_inc_return(&timer->n_ops) == 1) {
  530. timer->start_time = now;
  531. }
  532. }
  533. static ktime_t
  534. nfs4_ff_end_busy_timer(struct nfs4_ff_busy_timer *timer, ktime_t now)
  535. {
  536. ktime_t start;
  537. if (atomic_dec_return(&timer->n_ops) < 0)
  538. WARN_ON_ONCE(1);
  539. start = timer->start_time;
  540. timer->start_time = now;
  541. return ktime_sub(now, start);
  542. }
  543. static bool
  544. nfs4_ff_layoutstat_start_io(struct nfs4_ff_layout_mirror *mirror,
  545. struct nfs4_ff_layoutstat *layoutstat,
  546. ktime_t now)
  547. {
  548. static const ktime_t notime = {0};
  549. s64 report_interval = FF_LAYOUTSTATS_REPORT_INTERVAL;
  550. struct nfs4_flexfile_layout *ffl = FF_LAYOUT_FROM_HDR(mirror->layout);
  551. nfs4_ff_start_busy_timer(&layoutstat->busy_timer, now);
  552. if (ktime_equal(mirror->start_time, notime))
  553. mirror->start_time = now;
  554. if (mirror->report_interval != 0)
  555. report_interval = (s64)mirror->report_interval * 1000LL;
  556. else if (layoutstats_timer != 0)
  557. report_interval = (s64)layoutstats_timer * 1000LL;
  558. if (ktime_to_ms(ktime_sub(now, ffl->last_report_time)) >=
  559. report_interval) {
  560. ffl->last_report_time = now;
  561. return true;
  562. }
  563. return false;
  564. }
  565. static void
  566. nfs4_ff_layout_stat_io_update_requested(struct nfs4_ff_layoutstat *layoutstat,
  567. __u64 requested)
  568. {
  569. struct nfs4_ff_io_stat *iostat = &layoutstat->io_stat;
  570. iostat->ops_requested++;
  571. iostat->bytes_requested += requested;
  572. }
  573. static void
  574. nfs4_ff_layout_stat_io_update_completed(struct nfs4_ff_layoutstat *layoutstat,
  575. __u64 requested,
  576. __u64 completed,
  577. ktime_t time_completed,
  578. ktime_t time_started)
  579. {
  580. struct nfs4_ff_io_stat *iostat = &layoutstat->io_stat;
  581. ktime_t completion_time = ktime_sub(time_completed, time_started);
  582. ktime_t timer;
  583. iostat->ops_completed++;
  584. iostat->bytes_completed += completed;
  585. iostat->bytes_not_delivered += requested - completed;
  586. timer = nfs4_ff_end_busy_timer(&layoutstat->busy_timer, time_completed);
  587. iostat->total_busy_time =
  588. ktime_add(iostat->total_busy_time, timer);
  589. iostat->aggregate_completion_time =
  590. ktime_add(iostat->aggregate_completion_time,
  591. completion_time);
  592. }
  593. static void
  594. nfs4_ff_layout_stat_io_start_read(struct inode *inode,
  595. struct nfs4_ff_layout_mirror *mirror,
  596. __u64 requested, ktime_t now)
  597. {
  598. bool report;
  599. spin_lock(&mirror->lock);
  600. report = nfs4_ff_layoutstat_start_io(mirror, &mirror->read_stat, now);
  601. nfs4_ff_layout_stat_io_update_requested(&mirror->read_stat, requested);
  602. spin_unlock(&mirror->lock);
  603. if (report)
  604. pnfs_report_layoutstat(inode, GFP_KERNEL);
  605. }
  606. static void
  607. nfs4_ff_layout_stat_io_end_read(struct rpc_task *task,
  608. struct nfs4_ff_layout_mirror *mirror,
  609. __u64 requested,
  610. __u64 completed)
  611. {
  612. spin_lock(&mirror->lock);
  613. nfs4_ff_layout_stat_io_update_completed(&mirror->read_stat,
  614. requested, completed,
  615. ktime_get(), task->tk_start);
  616. spin_unlock(&mirror->lock);
  617. }
  618. static void
  619. nfs4_ff_layout_stat_io_start_write(struct inode *inode,
  620. struct nfs4_ff_layout_mirror *mirror,
  621. __u64 requested, ktime_t now)
  622. {
  623. bool report;
  624. spin_lock(&mirror->lock);
  625. report = nfs4_ff_layoutstat_start_io(mirror , &mirror->write_stat, now);
  626. nfs4_ff_layout_stat_io_update_requested(&mirror->write_stat, requested);
  627. spin_unlock(&mirror->lock);
  628. if (report)
  629. pnfs_report_layoutstat(inode, GFP_NOIO);
  630. }
  631. static void
  632. nfs4_ff_layout_stat_io_end_write(struct rpc_task *task,
  633. struct nfs4_ff_layout_mirror *mirror,
  634. __u64 requested,
  635. __u64 completed,
  636. enum nfs3_stable_how committed)
  637. {
  638. if (committed == NFS_UNSTABLE)
  639. requested = completed = 0;
  640. spin_lock(&mirror->lock);
  641. nfs4_ff_layout_stat_io_update_completed(&mirror->write_stat,
  642. requested, completed, ktime_get(), task->tk_start);
  643. spin_unlock(&mirror->lock);
  644. }
  645. static int
  646. ff_layout_alloc_commit_info(struct pnfs_layout_segment *lseg,
  647. struct nfs_commit_info *cinfo,
  648. gfp_t gfp_flags)
  649. {
  650. struct nfs4_ff_layout_segment *fls = FF_LAYOUT_LSEG(lseg);
  651. struct pnfs_commit_bucket *buckets;
  652. int size;
  653. if (cinfo->ds->nbuckets != 0) {
  654. /* This assumes there is only one RW lseg per file.
  655. * To support multiple lseg per file, we need to
  656. * change struct pnfs_commit_bucket to allow dynamic
  657. * increasing nbuckets.
  658. */
  659. return 0;
  660. }
  661. size = ff_layout_get_lseg_count(fls) * FF_LAYOUT_MIRROR_COUNT(lseg);
  662. buckets = kcalloc(size, sizeof(struct pnfs_commit_bucket),
  663. gfp_flags);
  664. if (!buckets)
  665. return -ENOMEM;
  666. else {
  667. int i;
  668. spin_lock(&cinfo->inode->i_lock);
  669. if (cinfo->ds->nbuckets != 0)
  670. kfree(buckets);
  671. else {
  672. cinfo->ds->buckets = buckets;
  673. cinfo->ds->nbuckets = size;
  674. for (i = 0; i < size; i++) {
  675. INIT_LIST_HEAD(&buckets[i].written);
  676. INIT_LIST_HEAD(&buckets[i].committing);
  677. /* mark direct verifier as unset */
  678. buckets[i].direct_verf.committed =
  679. NFS_INVALID_STABLE_HOW;
  680. }
  681. }
  682. spin_unlock(&cinfo->inode->i_lock);
  683. return 0;
  684. }
  685. }
  686. static struct nfs4_pnfs_ds *
  687. ff_layout_choose_best_ds_for_read(struct pnfs_layout_segment *lseg,
  688. int start_idx,
  689. int *best_idx)
  690. {
  691. struct nfs4_ff_layout_segment *fls = FF_LAYOUT_LSEG(lseg);
  692. struct nfs4_pnfs_ds *ds;
  693. bool fail_return = false;
  694. int idx;
  695. /* mirrors are sorted by efficiency */
  696. for (idx = start_idx; idx < fls->mirror_array_cnt; idx++) {
  697. if (idx+1 == fls->mirror_array_cnt)
  698. fail_return = true;
  699. ds = nfs4_ff_layout_prepare_ds(lseg, idx, fail_return);
  700. if (ds) {
  701. *best_idx = idx;
  702. return ds;
  703. }
  704. }
  705. return NULL;
  706. }
  707. static void
  708. ff_layout_pg_get_read(struct nfs_pageio_descriptor *pgio,
  709. struct nfs_page *req,
  710. bool strict_iomode)
  711. {
  712. retry_strict:
  713. pnfs_put_lseg(pgio->pg_lseg);
  714. pgio->pg_lseg = pnfs_update_layout(pgio->pg_inode,
  715. req->wb_context,
  716. 0,
  717. NFS4_MAX_UINT64,
  718. IOMODE_READ,
  719. strict_iomode,
  720. GFP_KERNEL);
  721. if (IS_ERR(pgio->pg_lseg)) {
  722. pgio->pg_error = PTR_ERR(pgio->pg_lseg);
  723. pgio->pg_lseg = NULL;
  724. }
  725. /* If we don't have checking, do get a IOMODE_RW
  726. * segment, and the server wants to avoid READs
  727. * there, then retry!
  728. */
  729. if (pgio->pg_lseg && !strict_iomode &&
  730. ff_layout_avoid_read_on_rw(pgio->pg_lseg)) {
  731. strict_iomode = true;
  732. goto retry_strict;
  733. }
  734. }
  735. static void
  736. ff_layout_pg_init_read(struct nfs_pageio_descriptor *pgio,
  737. struct nfs_page *req)
  738. {
  739. struct nfs_pgio_mirror *pgm;
  740. struct nfs4_ff_layout_mirror *mirror;
  741. struct nfs4_pnfs_ds *ds;
  742. int ds_idx;
  743. retry:
  744. /* Use full layout for now */
  745. if (!pgio->pg_lseg)
  746. ff_layout_pg_get_read(pgio, req, false);
  747. else if (ff_layout_avoid_read_on_rw(pgio->pg_lseg))
  748. ff_layout_pg_get_read(pgio, req, true);
  749. /* If no lseg, fall back to read through mds */
  750. if (pgio->pg_lseg == NULL)
  751. goto out_mds;
  752. ds = ff_layout_choose_best_ds_for_read(pgio->pg_lseg, 0, &ds_idx);
  753. if (!ds) {
  754. if (!ff_layout_no_fallback_to_mds(pgio->pg_lseg))
  755. goto out_mds;
  756. pnfs_put_lseg(pgio->pg_lseg);
  757. pgio->pg_lseg = NULL;
  758. /* Sleep for 1 second before retrying */
  759. ssleep(1);
  760. goto retry;
  761. }
  762. mirror = FF_LAYOUT_COMP(pgio->pg_lseg, ds_idx);
  763. pgio->pg_mirror_idx = ds_idx;
  764. /* read always uses only one mirror - idx 0 for pgio layer */
  765. pgm = &pgio->pg_mirrors[0];
  766. pgm->pg_bsize = mirror->mirror_ds->ds_versions[0].rsize;
  767. return;
  768. out_mds:
  769. pnfs_put_lseg(pgio->pg_lseg);
  770. pgio->pg_lseg = NULL;
  771. nfs_pageio_reset_read_mds(pgio);
  772. }
  773. static void
  774. ff_layout_pg_init_write(struct nfs_pageio_descriptor *pgio,
  775. struct nfs_page *req)
  776. {
  777. struct nfs4_ff_layout_mirror *mirror;
  778. struct nfs_pgio_mirror *pgm;
  779. struct nfs_commit_info cinfo;
  780. struct nfs4_pnfs_ds *ds;
  781. int i;
  782. int status;
  783. retry:
  784. if (!pgio->pg_lseg) {
  785. pgio->pg_lseg = pnfs_update_layout(pgio->pg_inode,
  786. req->wb_context,
  787. 0,
  788. NFS4_MAX_UINT64,
  789. IOMODE_RW,
  790. false,
  791. GFP_NOFS);
  792. if (IS_ERR(pgio->pg_lseg)) {
  793. pgio->pg_error = PTR_ERR(pgio->pg_lseg);
  794. pgio->pg_lseg = NULL;
  795. return;
  796. }
  797. }
  798. /* If no lseg, fall back to write through mds */
  799. if (pgio->pg_lseg == NULL)
  800. goto out_mds;
  801. nfs_init_cinfo(&cinfo, pgio->pg_inode, pgio->pg_dreq);
  802. status = ff_layout_alloc_commit_info(pgio->pg_lseg, &cinfo, GFP_NOFS);
  803. if (status < 0)
  804. goto out_mds;
  805. /* Use a direct mapping of ds_idx to pgio mirror_idx */
  806. if (WARN_ON_ONCE(pgio->pg_mirror_count !=
  807. FF_LAYOUT_MIRROR_COUNT(pgio->pg_lseg)))
  808. goto out_mds;
  809. for (i = 0; i < pgio->pg_mirror_count; i++) {
  810. ds = nfs4_ff_layout_prepare_ds(pgio->pg_lseg, i, true);
  811. if (!ds) {
  812. if (!ff_layout_no_fallback_to_mds(pgio->pg_lseg))
  813. goto out_mds;
  814. pnfs_put_lseg(pgio->pg_lseg);
  815. pgio->pg_lseg = NULL;
  816. /* Sleep for 1 second before retrying */
  817. ssleep(1);
  818. goto retry;
  819. }
  820. pgm = &pgio->pg_mirrors[i];
  821. mirror = FF_LAYOUT_COMP(pgio->pg_lseg, i);
  822. pgm->pg_bsize = mirror->mirror_ds->ds_versions[0].wsize;
  823. }
  824. return;
  825. out_mds:
  826. pnfs_put_lseg(pgio->pg_lseg);
  827. pgio->pg_lseg = NULL;
  828. nfs_pageio_reset_write_mds(pgio);
  829. }
  830. static unsigned int
  831. ff_layout_pg_get_mirror_count_write(struct nfs_pageio_descriptor *pgio,
  832. struct nfs_page *req)
  833. {
  834. if (!pgio->pg_lseg) {
  835. pgio->pg_lseg = pnfs_update_layout(pgio->pg_inode,
  836. req->wb_context,
  837. 0,
  838. NFS4_MAX_UINT64,
  839. IOMODE_RW,
  840. false,
  841. GFP_NOFS);
  842. if (IS_ERR(pgio->pg_lseg)) {
  843. pgio->pg_error = PTR_ERR(pgio->pg_lseg);
  844. pgio->pg_lseg = NULL;
  845. goto out;
  846. }
  847. }
  848. if (pgio->pg_lseg)
  849. return FF_LAYOUT_MIRROR_COUNT(pgio->pg_lseg);
  850. /* no lseg means that pnfs is not in use, so no mirroring here */
  851. nfs_pageio_reset_write_mds(pgio);
  852. out:
  853. return 1;
  854. }
  855. static const struct nfs_pageio_ops ff_layout_pg_read_ops = {
  856. .pg_init = ff_layout_pg_init_read,
  857. .pg_test = pnfs_generic_pg_test,
  858. .pg_doio = pnfs_generic_pg_readpages,
  859. .pg_cleanup = pnfs_generic_pg_cleanup,
  860. };
  861. static const struct nfs_pageio_ops ff_layout_pg_write_ops = {
  862. .pg_init = ff_layout_pg_init_write,
  863. .pg_test = pnfs_generic_pg_test,
  864. .pg_doio = pnfs_generic_pg_writepages,
  865. .pg_get_mirror_count = ff_layout_pg_get_mirror_count_write,
  866. .pg_cleanup = pnfs_generic_pg_cleanup,
  867. };
  868. static void ff_layout_reset_write(struct nfs_pgio_header *hdr, bool retry_pnfs)
  869. {
  870. struct rpc_task *task = &hdr->task;
  871. pnfs_layoutcommit_inode(hdr->inode, false);
  872. if (retry_pnfs) {
  873. dprintk("%s Reset task %5u for i/o through pNFS "
  874. "(req %s/%llu, %u bytes @ offset %llu)\n", __func__,
  875. hdr->task.tk_pid,
  876. hdr->inode->i_sb->s_id,
  877. (unsigned long long)NFS_FILEID(hdr->inode),
  878. hdr->args.count,
  879. (unsigned long long)hdr->args.offset);
  880. hdr->completion_ops->reschedule_io(hdr);
  881. return;
  882. }
  883. if (!test_and_set_bit(NFS_IOHDR_REDO, &hdr->flags)) {
  884. dprintk("%s Reset task %5u for i/o through MDS "
  885. "(req %s/%llu, %u bytes @ offset %llu)\n", __func__,
  886. hdr->task.tk_pid,
  887. hdr->inode->i_sb->s_id,
  888. (unsigned long long)NFS_FILEID(hdr->inode),
  889. hdr->args.count,
  890. (unsigned long long)hdr->args.offset);
  891. task->tk_status = pnfs_write_done_resend_to_mds(hdr);
  892. }
  893. }
  894. static void ff_layout_reset_read(struct nfs_pgio_header *hdr)
  895. {
  896. struct rpc_task *task = &hdr->task;
  897. pnfs_layoutcommit_inode(hdr->inode, false);
  898. if (!test_and_set_bit(NFS_IOHDR_REDO, &hdr->flags)) {
  899. dprintk("%s Reset task %5u for i/o through MDS "
  900. "(req %s/%llu, %u bytes @ offset %llu)\n", __func__,
  901. hdr->task.tk_pid,
  902. hdr->inode->i_sb->s_id,
  903. (unsigned long long)NFS_FILEID(hdr->inode),
  904. hdr->args.count,
  905. (unsigned long long)hdr->args.offset);
  906. task->tk_status = pnfs_read_done_resend_to_mds(hdr);
  907. }
  908. }
  909. static int ff_layout_async_handle_error_v4(struct rpc_task *task,
  910. struct nfs4_state *state,
  911. struct nfs_client *clp,
  912. struct pnfs_layout_segment *lseg,
  913. int idx)
  914. {
  915. struct pnfs_layout_hdr *lo = lseg->pls_layout;
  916. struct inode *inode = lo->plh_inode;
  917. struct nfs_server *mds_server = NFS_SERVER(inode);
  918. struct nfs4_deviceid_node *devid = FF_LAYOUT_DEVID_NODE(lseg, idx);
  919. struct nfs_client *mds_client = mds_server->nfs_client;
  920. struct nfs4_slot_table *tbl = &clp->cl_session->fc_slot_table;
  921. switch (task->tk_status) {
  922. /* MDS state errors */
  923. case -NFS4ERR_DELEG_REVOKED:
  924. case -NFS4ERR_ADMIN_REVOKED:
  925. case -NFS4ERR_BAD_STATEID:
  926. if (state == NULL)
  927. break;
  928. nfs_remove_bad_delegation(state->inode, NULL);
  929. case -NFS4ERR_OPENMODE:
  930. if (state == NULL)
  931. break;
  932. if (nfs4_schedule_stateid_recovery(mds_server, state) < 0)
  933. goto out_bad_stateid;
  934. goto wait_on_recovery;
  935. case -NFS4ERR_EXPIRED:
  936. if (state != NULL) {
  937. if (nfs4_schedule_stateid_recovery(mds_server, state) < 0)
  938. goto out_bad_stateid;
  939. }
  940. nfs4_schedule_lease_recovery(mds_client);
  941. goto wait_on_recovery;
  942. /* DS session errors */
  943. case -NFS4ERR_BADSESSION:
  944. case -NFS4ERR_BADSLOT:
  945. case -NFS4ERR_BAD_HIGH_SLOT:
  946. case -NFS4ERR_DEADSESSION:
  947. case -NFS4ERR_CONN_NOT_BOUND_TO_SESSION:
  948. case -NFS4ERR_SEQ_FALSE_RETRY:
  949. case -NFS4ERR_SEQ_MISORDERED:
  950. dprintk("%s ERROR %d, Reset session. Exchangeid "
  951. "flags 0x%x\n", __func__, task->tk_status,
  952. clp->cl_exchange_flags);
  953. nfs4_schedule_session_recovery(clp->cl_session, task->tk_status);
  954. break;
  955. case -NFS4ERR_DELAY:
  956. case -NFS4ERR_GRACE:
  957. rpc_delay(task, FF_LAYOUT_POLL_RETRY_MAX);
  958. break;
  959. case -NFS4ERR_RETRY_UNCACHED_REP:
  960. break;
  961. /* Invalidate Layout errors */
  962. case -NFS4ERR_PNFS_NO_LAYOUT:
  963. case -ESTALE: /* mapped NFS4ERR_STALE */
  964. case -EBADHANDLE: /* mapped NFS4ERR_BADHANDLE */
  965. case -EISDIR: /* mapped NFS4ERR_ISDIR */
  966. case -NFS4ERR_FHEXPIRED:
  967. case -NFS4ERR_WRONG_TYPE:
  968. dprintk("%s Invalid layout error %d\n", __func__,
  969. task->tk_status);
  970. /*
  971. * Destroy layout so new i/o will get a new layout.
  972. * Layout will not be destroyed until all current lseg
  973. * references are put. Mark layout as invalid to resend failed
  974. * i/o and all i/o waiting on the slot table to the MDS until
  975. * layout is destroyed and a new valid layout is obtained.
  976. */
  977. pnfs_destroy_layout(NFS_I(inode));
  978. rpc_wake_up(&tbl->slot_tbl_waitq);
  979. goto reset;
  980. /* RPC connection errors */
  981. case -ECONNREFUSED:
  982. case -EHOSTDOWN:
  983. case -EHOSTUNREACH:
  984. case -ENETUNREACH:
  985. case -EIO:
  986. case -ETIMEDOUT:
  987. case -EPIPE:
  988. dprintk("%s DS connection error %d\n", __func__,
  989. task->tk_status);
  990. nfs4_mark_deviceid_unavailable(devid);
  991. rpc_wake_up(&tbl->slot_tbl_waitq);
  992. /* fall through */
  993. default:
  994. if (ff_layout_avoid_mds_available_ds(lseg))
  995. return -NFS4ERR_RESET_TO_PNFS;
  996. reset:
  997. dprintk("%s Retry through MDS. Error %d\n", __func__,
  998. task->tk_status);
  999. return -NFS4ERR_RESET_TO_MDS;
  1000. }
  1001. out:
  1002. task->tk_status = 0;
  1003. return -EAGAIN;
  1004. out_bad_stateid:
  1005. task->tk_status = -EIO;
  1006. return 0;
  1007. wait_on_recovery:
  1008. rpc_sleep_on(&mds_client->cl_rpcwaitq, task, NULL);
  1009. if (test_bit(NFS4CLNT_MANAGER_RUNNING, &mds_client->cl_state) == 0)
  1010. rpc_wake_up_queued_task(&mds_client->cl_rpcwaitq, task);
  1011. goto out;
  1012. }
  1013. /* Retry all errors through either pNFS or MDS except for -EJUKEBOX */
  1014. static int ff_layout_async_handle_error_v3(struct rpc_task *task,
  1015. struct pnfs_layout_segment *lseg,
  1016. int idx)
  1017. {
  1018. struct nfs4_deviceid_node *devid = FF_LAYOUT_DEVID_NODE(lseg, idx);
  1019. switch (task->tk_status) {
  1020. /* File access problems. Don't mark the device as unavailable */
  1021. case -EACCES:
  1022. case -ESTALE:
  1023. case -EISDIR:
  1024. case -EBADHANDLE:
  1025. case -ELOOP:
  1026. case -ENOSPC:
  1027. break;
  1028. case -EJUKEBOX:
  1029. nfs_inc_stats(lseg->pls_layout->plh_inode, NFSIOS_DELAY);
  1030. goto out_retry;
  1031. default:
  1032. dprintk("%s DS connection error %d\n", __func__,
  1033. task->tk_status);
  1034. nfs4_mark_deviceid_unavailable(devid);
  1035. }
  1036. /* FIXME: Need to prevent infinite looping here. */
  1037. return -NFS4ERR_RESET_TO_PNFS;
  1038. out_retry:
  1039. task->tk_status = 0;
  1040. rpc_restart_call_prepare(task);
  1041. rpc_delay(task, NFS_JUKEBOX_RETRY_TIME);
  1042. return -EAGAIN;
  1043. }
  1044. static int ff_layout_async_handle_error(struct rpc_task *task,
  1045. struct nfs4_state *state,
  1046. struct nfs_client *clp,
  1047. struct pnfs_layout_segment *lseg,
  1048. int idx)
  1049. {
  1050. int vers = clp->cl_nfs_mod->rpc_vers->number;
  1051. if (task->tk_status >= 0)
  1052. return 0;
  1053. /* Handle the case of an invalid layout segment */
  1054. if (!pnfs_is_valid_lseg(lseg))
  1055. return -NFS4ERR_RESET_TO_PNFS;
  1056. switch (vers) {
  1057. case 3:
  1058. return ff_layout_async_handle_error_v3(task, lseg, idx);
  1059. case 4:
  1060. return ff_layout_async_handle_error_v4(task, state, clp,
  1061. lseg, idx);
  1062. default:
  1063. /* should never happen */
  1064. WARN_ON_ONCE(1);
  1065. return 0;
  1066. }
  1067. }
  1068. static void ff_layout_io_track_ds_error(struct pnfs_layout_segment *lseg,
  1069. int idx, u64 offset, u64 length,
  1070. u32 status, int opnum, int error)
  1071. {
  1072. struct nfs4_ff_layout_mirror *mirror;
  1073. int err;
  1074. if (status == 0) {
  1075. switch (error) {
  1076. case -ETIMEDOUT:
  1077. case -EPFNOSUPPORT:
  1078. case -EPROTONOSUPPORT:
  1079. case -EOPNOTSUPP:
  1080. case -ECONNREFUSED:
  1081. case -ECONNRESET:
  1082. case -EHOSTDOWN:
  1083. case -EHOSTUNREACH:
  1084. case -ENETUNREACH:
  1085. case -EADDRINUSE:
  1086. case -ENOBUFS:
  1087. case -EPIPE:
  1088. case -EPERM:
  1089. status = NFS4ERR_NXIO;
  1090. break;
  1091. case -EACCES:
  1092. status = NFS4ERR_ACCESS;
  1093. break;
  1094. default:
  1095. return;
  1096. }
  1097. }
  1098. switch (status) {
  1099. case NFS4ERR_DELAY:
  1100. case NFS4ERR_GRACE:
  1101. return;
  1102. default:
  1103. break;
  1104. }
  1105. mirror = FF_LAYOUT_COMP(lseg, idx);
  1106. err = ff_layout_track_ds_error(FF_LAYOUT_FROM_HDR(lseg->pls_layout),
  1107. mirror, offset, length, status, opnum,
  1108. GFP_NOIO);
  1109. pnfs_error_mark_layout_for_return(lseg->pls_layout->plh_inode, lseg);
  1110. dprintk("%s: err %d op %d status %u\n", __func__, err, opnum, status);
  1111. }
  1112. /* NFS_PROTO call done callback routines */
  1113. static int ff_layout_read_done_cb(struct rpc_task *task,
  1114. struct nfs_pgio_header *hdr)
  1115. {
  1116. int err;
  1117. trace_nfs4_pnfs_read(hdr, task->tk_status);
  1118. if (task->tk_status < 0)
  1119. ff_layout_io_track_ds_error(hdr->lseg, hdr->pgio_mirror_idx,
  1120. hdr->args.offset, hdr->args.count,
  1121. hdr->res.op_status, OP_READ,
  1122. task->tk_status);
  1123. err = ff_layout_async_handle_error(task, hdr->args.context->state,
  1124. hdr->ds_clp, hdr->lseg,
  1125. hdr->pgio_mirror_idx);
  1126. switch (err) {
  1127. case -NFS4ERR_RESET_TO_PNFS:
  1128. if (ff_layout_choose_best_ds_for_read(hdr->lseg,
  1129. hdr->pgio_mirror_idx + 1,
  1130. &hdr->pgio_mirror_idx))
  1131. goto out_eagain;
  1132. ff_layout_read_record_layoutstats_done(task, hdr);
  1133. pnfs_read_resend_pnfs(hdr);
  1134. return task->tk_status;
  1135. case -NFS4ERR_RESET_TO_MDS:
  1136. ff_layout_reset_read(hdr);
  1137. return task->tk_status;
  1138. case -EAGAIN:
  1139. goto out_eagain;
  1140. }
  1141. return 0;
  1142. out_eagain:
  1143. rpc_restart_call_prepare(task);
  1144. return -EAGAIN;
  1145. }
  1146. static bool
  1147. ff_layout_need_layoutcommit(struct pnfs_layout_segment *lseg)
  1148. {
  1149. return !(FF_LAYOUT_LSEG(lseg)->flags & FF_FLAGS_NO_LAYOUTCOMMIT);
  1150. }
  1151. /*
  1152. * We reference the rpc_cred of the first WRITE that triggers the need for
  1153. * a LAYOUTCOMMIT, and use it to send the layoutcommit compound.
  1154. * rfc5661 is not clear about which credential should be used.
  1155. *
  1156. * Flexlayout client should treat DS replied FILE_SYNC as DATA_SYNC, so
  1157. * to follow http://www.rfc-editor.org/errata_search.php?rfc=5661&eid=2751
  1158. * we always send layoutcommit after DS writes.
  1159. */
  1160. static void
  1161. ff_layout_set_layoutcommit(struct inode *inode,
  1162. struct pnfs_layout_segment *lseg,
  1163. loff_t end_offset)
  1164. {
  1165. if (!ff_layout_need_layoutcommit(lseg))
  1166. return;
  1167. pnfs_set_layoutcommit(inode, lseg, end_offset);
  1168. dprintk("%s inode %lu pls_end_pos %llu\n", __func__, inode->i_ino,
  1169. (unsigned long long) NFS_I(inode)->layout->plh_lwb);
  1170. }
  1171. static bool
  1172. ff_layout_device_unavailable(struct pnfs_layout_segment *lseg, int idx)
  1173. {
  1174. /* No mirroring for now */
  1175. struct nfs4_deviceid_node *node = FF_LAYOUT_DEVID_NODE(lseg, idx);
  1176. return ff_layout_test_devid_unavailable(node);
  1177. }
  1178. static void ff_layout_read_record_layoutstats_start(struct rpc_task *task,
  1179. struct nfs_pgio_header *hdr)
  1180. {
  1181. if (test_and_set_bit(NFS_IOHDR_STAT, &hdr->flags))
  1182. return;
  1183. nfs4_ff_layout_stat_io_start_read(hdr->inode,
  1184. FF_LAYOUT_COMP(hdr->lseg, hdr->pgio_mirror_idx),
  1185. hdr->args.count,
  1186. task->tk_start);
  1187. }
  1188. static void ff_layout_read_record_layoutstats_done(struct rpc_task *task,
  1189. struct nfs_pgio_header *hdr)
  1190. {
  1191. if (!test_and_clear_bit(NFS_IOHDR_STAT, &hdr->flags))
  1192. return;
  1193. nfs4_ff_layout_stat_io_end_read(task,
  1194. FF_LAYOUT_COMP(hdr->lseg, hdr->pgio_mirror_idx),
  1195. hdr->args.count,
  1196. hdr->res.count);
  1197. }
  1198. static int ff_layout_read_prepare_common(struct rpc_task *task,
  1199. struct nfs_pgio_header *hdr)
  1200. {
  1201. if (unlikely(test_bit(NFS_CONTEXT_BAD, &hdr->args.context->flags))) {
  1202. rpc_exit(task, -EIO);
  1203. return -EIO;
  1204. }
  1205. if (ff_layout_device_unavailable(hdr->lseg, hdr->pgio_mirror_idx)) {
  1206. rpc_exit(task, -EHOSTDOWN);
  1207. return -EAGAIN;
  1208. }
  1209. ff_layout_read_record_layoutstats_start(task, hdr);
  1210. return 0;
  1211. }
  1212. /*
  1213. * Call ops for the async read/write cases
  1214. * In the case of dense layouts, the offset needs to be reset to its
  1215. * original value.
  1216. */
  1217. static void ff_layout_read_prepare_v3(struct rpc_task *task, void *data)
  1218. {
  1219. struct nfs_pgio_header *hdr = data;
  1220. if (ff_layout_read_prepare_common(task, hdr))
  1221. return;
  1222. rpc_call_start(task);
  1223. }
  1224. static int ff_layout_setup_sequence(struct nfs_client *ds_clp,
  1225. struct nfs4_sequence_args *args,
  1226. struct nfs4_sequence_res *res,
  1227. struct rpc_task *task)
  1228. {
  1229. if (ds_clp->cl_session)
  1230. return nfs41_setup_sequence(ds_clp->cl_session,
  1231. args,
  1232. res,
  1233. task);
  1234. return nfs40_setup_sequence(ds_clp->cl_slot_tbl,
  1235. args,
  1236. res,
  1237. task);
  1238. }
  1239. static void ff_layout_read_prepare_v4(struct rpc_task *task, void *data)
  1240. {
  1241. struct nfs_pgio_header *hdr = data;
  1242. if (ff_layout_setup_sequence(hdr->ds_clp,
  1243. &hdr->args.seq_args,
  1244. &hdr->res.seq_res,
  1245. task))
  1246. return;
  1247. if (ff_layout_read_prepare_common(task, hdr))
  1248. return;
  1249. if (nfs4_set_rw_stateid(&hdr->args.stateid, hdr->args.context,
  1250. hdr->args.lock_context, FMODE_READ) == -EIO)
  1251. rpc_exit(task, -EIO); /* lost lock, terminate I/O */
  1252. }
  1253. static void ff_layout_read_call_done(struct rpc_task *task, void *data)
  1254. {
  1255. struct nfs_pgio_header *hdr = data;
  1256. dprintk("--> %s task->tk_status %d\n", __func__, task->tk_status);
  1257. if (test_bit(NFS_IOHDR_REDO, &hdr->flags) &&
  1258. task->tk_status == 0) {
  1259. nfs4_sequence_done(task, &hdr->res.seq_res);
  1260. return;
  1261. }
  1262. /* Note this may cause RPC to be resent */
  1263. hdr->mds_ops->rpc_call_done(task, hdr);
  1264. }
  1265. static void ff_layout_read_count_stats(struct rpc_task *task, void *data)
  1266. {
  1267. struct nfs_pgio_header *hdr = data;
  1268. ff_layout_read_record_layoutstats_done(task, hdr);
  1269. rpc_count_iostats_metrics(task,
  1270. &NFS_CLIENT(hdr->inode)->cl_metrics[NFSPROC4_CLNT_READ]);
  1271. }
  1272. static void ff_layout_read_release(void *data)
  1273. {
  1274. struct nfs_pgio_header *hdr = data;
  1275. ff_layout_read_record_layoutstats_done(&hdr->task, hdr);
  1276. pnfs_generic_rw_release(data);
  1277. }
  1278. static int ff_layout_write_done_cb(struct rpc_task *task,
  1279. struct nfs_pgio_header *hdr)
  1280. {
  1281. loff_t end_offs = 0;
  1282. int err;
  1283. trace_nfs4_pnfs_write(hdr, task->tk_status);
  1284. if (task->tk_status < 0)
  1285. ff_layout_io_track_ds_error(hdr->lseg, hdr->pgio_mirror_idx,
  1286. hdr->args.offset, hdr->args.count,
  1287. hdr->res.op_status, OP_WRITE,
  1288. task->tk_status);
  1289. err = ff_layout_async_handle_error(task, hdr->args.context->state,
  1290. hdr->ds_clp, hdr->lseg,
  1291. hdr->pgio_mirror_idx);
  1292. switch (err) {
  1293. case -NFS4ERR_RESET_TO_PNFS:
  1294. ff_layout_reset_write(hdr, true);
  1295. return task->tk_status;
  1296. case -NFS4ERR_RESET_TO_MDS:
  1297. ff_layout_reset_write(hdr, false);
  1298. return task->tk_status;
  1299. case -EAGAIN:
  1300. return -EAGAIN;
  1301. }
  1302. if (hdr->res.verf->committed == NFS_FILE_SYNC ||
  1303. hdr->res.verf->committed == NFS_DATA_SYNC)
  1304. end_offs = hdr->mds_offset + (loff_t)hdr->res.count;
  1305. /* Note: if the write is unstable, don't set end_offs until commit */
  1306. ff_layout_set_layoutcommit(hdr->inode, hdr->lseg, end_offs);
  1307. /* zero out fattr since we don't care DS attr at all */
  1308. hdr->fattr.valid = 0;
  1309. if (task->tk_status >= 0)
  1310. nfs_writeback_update_inode(hdr);
  1311. return 0;
  1312. }
  1313. static int ff_layout_commit_done_cb(struct rpc_task *task,
  1314. struct nfs_commit_data *data)
  1315. {
  1316. int err;
  1317. trace_nfs4_pnfs_commit_ds(data, task->tk_status);
  1318. if (task->tk_status < 0)
  1319. ff_layout_io_track_ds_error(data->lseg, data->ds_commit_index,
  1320. data->args.offset, data->args.count,
  1321. data->res.op_status, OP_COMMIT,
  1322. task->tk_status);
  1323. err = ff_layout_async_handle_error(task, NULL, data->ds_clp,
  1324. data->lseg, data->ds_commit_index);
  1325. switch (err) {
  1326. case -NFS4ERR_RESET_TO_PNFS:
  1327. pnfs_generic_prepare_to_resend_writes(data);
  1328. return -EAGAIN;
  1329. case -NFS4ERR_RESET_TO_MDS:
  1330. pnfs_generic_prepare_to_resend_writes(data);
  1331. return -EAGAIN;
  1332. case -EAGAIN:
  1333. rpc_restart_call_prepare(task);
  1334. return -EAGAIN;
  1335. }
  1336. ff_layout_set_layoutcommit(data->inode, data->lseg, data->lwb);
  1337. return 0;
  1338. }
  1339. static void ff_layout_write_record_layoutstats_start(struct rpc_task *task,
  1340. struct nfs_pgio_header *hdr)
  1341. {
  1342. if (test_and_set_bit(NFS_IOHDR_STAT, &hdr->flags))
  1343. return;
  1344. nfs4_ff_layout_stat_io_start_write(hdr->inode,
  1345. FF_LAYOUT_COMP(hdr->lseg, hdr->pgio_mirror_idx),
  1346. hdr->args.count,
  1347. task->tk_start);
  1348. }
  1349. static void ff_layout_write_record_layoutstats_done(struct rpc_task *task,
  1350. struct nfs_pgio_header *hdr)
  1351. {
  1352. if (!test_and_clear_bit(NFS_IOHDR_STAT, &hdr->flags))
  1353. return;
  1354. nfs4_ff_layout_stat_io_end_write(task,
  1355. FF_LAYOUT_COMP(hdr->lseg, hdr->pgio_mirror_idx),
  1356. hdr->args.count, hdr->res.count,
  1357. hdr->res.verf->committed);
  1358. }
  1359. static int ff_layout_write_prepare_common(struct rpc_task *task,
  1360. struct nfs_pgio_header *hdr)
  1361. {
  1362. if (unlikely(test_bit(NFS_CONTEXT_BAD, &hdr->args.context->flags))) {
  1363. rpc_exit(task, -EIO);
  1364. return -EIO;
  1365. }
  1366. if (ff_layout_device_unavailable(hdr->lseg, hdr->pgio_mirror_idx)) {
  1367. rpc_exit(task, -EHOSTDOWN);
  1368. return -EAGAIN;
  1369. }
  1370. ff_layout_write_record_layoutstats_start(task, hdr);
  1371. return 0;
  1372. }
  1373. static void ff_layout_write_prepare_v3(struct rpc_task *task, void *data)
  1374. {
  1375. struct nfs_pgio_header *hdr = data;
  1376. if (ff_layout_write_prepare_common(task, hdr))
  1377. return;
  1378. rpc_call_start(task);
  1379. }
  1380. static void ff_layout_write_prepare_v4(struct rpc_task *task, void *data)
  1381. {
  1382. struct nfs_pgio_header *hdr = data;
  1383. if (ff_layout_setup_sequence(hdr->ds_clp,
  1384. &hdr->args.seq_args,
  1385. &hdr->res.seq_res,
  1386. task))
  1387. return;
  1388. if (ff_layout_write_prepare_common(task, hdr))
  1389. return;
  1390. if (nfs4_set_rw_stateid(&hdr->args.stateid, hdr->args.context,
  1391. hdr->args.lock_context, FMODE_WRITE) == -EIO)
  1392. rpc_exit(task, -EIO); /* lost lock, terminate I/O */
  1393. }
  1394. static void ff_layout_write_call_done(struct rpc_task *task, void *data)
  1395. {
  1396. struct nfs_pgio_header *hdr = data;
  1397. if (test_bit(NFS_IOHDR_REDO, &hdr->flags) &&
  1398. task->tk_status == 0) {
  1399. nfs4_sequence_done(task, &hdr->res.seq_res);
  1400. return;
  1401. }
  1402. /* Note this may cause RPC to be resent */
  1403. hdr->mds_ops->rpc_call_done(task, hdr);
  1404. }
  1405. static void ff_layout_write_count_stats(struct rpc_task *task, void *data)
  1406. {
  1407. struct nfs_pgio_header *hdr = data;
  1408. ff_layout_write_record_layoutstats_done(task, hdr);
  1409. rpc_count_iostats_metrics(task,
  1410. &NFS_CLIENT(hdr->inode)->cl_metrics[NFSPROC4_CLNT_WRITE]);
  1411. }
  1412. static void ff_layout_write_release(void *data)
  1413. {
  1414. struct nfs_pgio_header *hdr = data;
  1415. ff_layout_write_record_layoutstats_done(&hdr->task, hdr);
  1416. pnfs_generic_rw_release(data);
  1417. }
  1418. static void ff_layout_commit_record_layoutstats_start(struct rpc_task *task,
  1419. struct nfs_commit_data *cdata)
  1420. {
  1421. if (test_and_set_bit(NFS_IOHDR_STAT, &cdata->flags))
  1422. return;
  1423. nfs4_ff_layout_stat_io_start_write(cdata->inode,
  1424. FF_LAYOUT_COMP(cdata->lseg, cdata->ds_commit_index),
  1425. 0, task->tk_start);
  1426. }
  1427. static void ff_layout_commit_record_layoutstats_done(struct rpc_task *task,
  1428. struct nfs_commit_data *cdata)
  1429. {
  1430. struct nfs_page *req;
  1431. __u64 count = 0;
  1432. if (!test_and_clear_bit(NFS_IOHDR_STAT, &cdata->flags))
  1433. return;
  1434. if (task->tk_status == 0) {
  1435. list_for_each_entry(req, &cdata->pages, wb_list)
  1436. count += req->wb_bytes;
  1437. }
  1438. nfs4_ff_layout_stat_io_end_write(task,
  1439. FF_LAYOUT_COMP(cdata->lseg, cdata->ds_commit_index),
  1440. count, count, NFS_FILE_SYNC);
  1441. }
  1442. static void ff_layout_commit_prepare_common(struct rpc_task *task,
  1443. struct nfs_commit_data *cdata)
  1444. {
  1445. ff_layout_commit_record_layoutstats_start(task, cdata);
  1446. }
  1447. static void ff_layout_commit_prepare_v3(struct rpc_task *task, void *data)
  1448. {
  1449. ff_layout_commit_prepare_common(task, data);
  1450. rpc_call_start(task);
  1451. }
  1452. static void ff_layout_commit_prepare_v4(struct rpc_task *task, void *data)
  1453. {
  1454. struct nfs_commit_data *wdata = data;
  1455. if (ff_layout_setup_sequence(wdata->ds_clp,
  1456. &wdata->args.seq_args,
  1457. &wdata->res.seq_res,
  1458. task))
  1459. return;
  1460. ff_layout_commit_prepare_common(task, data);
  1461. }
  1462. static void ff_layout_commit_done(struct rpc_task *task, void *data)
  1463. {
  1464. pnfs_generic_write_commit_done(task, data);
  1465. }
  1466. static void ff_layout_commit_count_stats(struct rpc_task *task, void *data)
  1467. {
  1468. struct nfs_commit_data *cdata = data;
  1469. ff_layout_commit_record_layoutstats_done(task, cdata);
  1470. rpc_count_iostats_metrics(task,
  1471. &NFS_CLIENT(cdata->inode)->cl_metrics[NFSPROC4_CLNT_COMMIT]);
  1472. }
  1473. static void ff_layout_commit_release(void *data)
  1474. {
  1475. struct nfs_commit_data *cdata = data;
  1476. ff_layout_commit_record_layoutstats_done(&cdata->task, cdata);
  1477. pnfs_generic_commit_release(data);
  1478. }
  1479. static const struct rpc_call_ops ff_layout_read_call_ops_v3 = {
  1480. .rpc_call_prepare = ff_layout_read_prepare_v3,
  1481. .rpc_call_done = ff_layout_read_call_done,
  1482. .rpc_count_stats = ff_layout_read_count_stats,
  1483. .rpc_release = ff_layout_read_release,
  1484. };
  1485. static const struct rpc_call_ops ff_layout_read_call_ops_v4 = {
  1486. .rpc_call_prepare = ff_layout_read_prepare_v4,
  1487. .rpc_call_done = ff_layout_read_call_done,
  1488. .rpc_count_stats = ff_layout_read_count_stats,
  1489. .rpc_release = ff_layout_read_release,
  1490. };
  1491. static const struct rpc_call_ops ff_layout_write_call_ops_v3 = {
  1492. .rpc_call_prepare = ff_layout_write_prepare_v3,
  1493. .rpc_call_done = ff_layout_write_call_done,
  1494. .rpc_count_stats = ff_layout_write_count_stats,
  1495. .rpc_release = ff_layout_write_release,
  1496. };
  1497. static const struct rpc_call_ops ff_layout_write_call_ops_v4 = {
  1498. .rpc_call_prepare = ff_layout_write_prepare_v4,
  1499. .rpc_call_done = ff_layout_write_call_done,
  1500. .rpc_count_stats = ff_layout_write_count_stats,
  1501. .rpc_release = ff_layout_write_release,
  1502. };
  1503. static const struct rpc_call_ops ff_layout_commit_call_ops_v3 = {
  1504. .rpc_call_prepare = ff_layout_commit_prepare_v3,
  1505. .rpc_call_done = ff_layout_commit_done,
  1506. .rpc_count_stats = ff_layout_commit_count_stats,
  1507. .rpc_release = ff_layout_commit_release,
  1508. };
  1509. static const struct rpc_call_ops ff_layout_commit_call_ops_v4 = {
  1510. .rpc_call_prepare = ff_layout_commit_prepare_v4,
  1511. .rpc_call_done = ff_layout_commit_done,
  1512. .rpc_count_stats = ff_layout_commit_count_stats,
  1513. .rpc_release = ff_layout_commit_release,
  1514. };
  1515. static enum pnfs_try_status
  1516. ff_layout_read_pagelist(struct nfs_pgio_header *hdr)
  1517. {
  1518. struct pnfs_layout_segment *lseg = hdr->lseg;
  1519. struct nfs4_pnfs_ds *ds;
  1520. struct rpc_clnt *ds_clnt;
  1521. struct rpc_cred *ds_cred;
  1522. loff_t offset = hdr->args.offset;
  1523. u32 idx = hdr->pgio_mirror_idx;
  1524. int vers;
  1525. struct nfs_fh *fh;
  1526. dprintk("--> %s ino %lu pgbase %u req %Zu@%llu\n",
  1527. __func__, hdr->inode->i_ino,
  1528. hdr->args.pgbase, (size_t)hdr->args.count, offset);
  1529. ds = nfs4_ff_layout_prepare_ds(lseg, idx, false);
  1530. if (!ds)
  1531. goto out_failed;
  1532. ds_clnt = nfs4_ff_find_or_create_ds_client(lseg, idx, ds->ds_clp,
  1533. hdr->inode);
  1534. if (IS_ERR(ds_clnt))
  1535. goto out_failed;
  1536. ds_cred = ff_layout_get_ds_cred(lseg, idx, hdr->cred);
  1537. if (!ds_cred)
  1538. goto out_failed;
  1539. vers = nfs4_ff_layout_ds_version(lseg, idx);
  1540. dprintk("%s USE DS: %s cl_count %d vers %d\n", __func__,
  1541. ds->ds_remotestr, atomic_read(&ds->ds_clp->cl_count), vers);
  1542. hdr->pgio_done_cb = ff_layout_read_done_cb;
  1543. atomic_inc(&ds->ds_clp->cl_count);
  1544. hdr->ds_clp = ds->ds_clp;
  1545. fh = nfs4_ff_layout_select_ds_fh(lseg, idx);
  1546. if (fh)
  1547. hdr->args.fh = fh;
  1548. /*
  1549. * Note that if we ever decide to split across DSes,
  1550. * then we may need to handle dense-like offsets.
  1551. */
  1552. hdr->args.offset = offset;
  1553. hdr->mds_offset = offset;
  1554. /* Perform an asynchronous read to ds */
  1555. nfs_initiate_pgio(ds_clnt, hdr, ds_cred, ds->ds_clp->rpc_ops,
  1556. vers == 3 ? &ff_layout_read_call_ops_v3 :
  1557. &ff_layout_read_call_ops_v4,
  1558. 0, RPC_TASK_SOFTCONN);
  1559. put_rpccred(ds_cred);
  1560. return PNFS_ATTEMPTED;
  1561. out_failed:
  1562. if (ff_layout_avoid_mds_available_ds(lseg))
  1563. return PNFS_TRY_AGAIN;
  1564. return PNFS_NOT_ATTEMPTED;
  1565. }
  1566. /* Perform async writes. */
  1567. static enum pnfs_try_status
  1568. ff_layout_write_pagelist(struct nfs_pgio_header *hdr, int sync)
  1569. {
  1570. struct pnfs_layout_segment *lseg = hdr->lseg;
  1571. struct nfs4_pnfs_ds *ds;
  1572. struct rpc_clnt *ds_clnt;
  1573. struct rpc_cred *ds_cred;
  1574. loff_t offset = hdr->args.offset;
  1575. int vers;
  1576. struct nfs_fh *fh;
  1577. int idx = hdr->pgio_mirror_idx;
  1578. ds = nfs4_ff_layout_prepare_ds(lseg, idx, true);
  1579. if (!ds)
  1580. return PNFS_NOT_ATTEMPTED;
  1581. ds_clnt = nfs4_ff_find_or_create_ds_client(lseg, idx, ds->ds_clp,
  1582. hdr->inode);
  1583. if (IS_ERR(ds_clnt))
  1584. return PNFS_NOT_ATTEMPTED;
  1585. ds_cred = ff_layout_get_ds_cred(lseg, idx, hdr->cred);
  1586. if (!ds_cred)
  1587. return PNFS_NOT_ATTEMPTED;
  1588. vers = nfs4_ff_layout_ds_version(lseg, idx);
  1589. dprintk("%s ino %lu sync %d req %Zu@%llu DS: %s cl_count %d vers %d\n",
  1590. __func__, hdr->inode->i_ino, sync, (size_t) hdr->args.count,
  1591. offset, ds->ds_remotestr, atomic_read(&ds->ds_clp->cl_count),
  1592. vers);
  1593. hdr->pgio_done_cb = ff_layout_write_done_cb;
  1594. atomic_inc(&ds->ds_clp->cl_count);
  1595. hdr->ds_clp = ds->ds_clp;
  1596. hdr->ds_commit_idx = idx;
  1597. fh = nfs4_ff_layout_select_ds_fh(lseg, idx);
  1598. if (fh)
  1599. hdr->args.fh = fh;
  1600. /*
  1601. * Note that if we ever decide to split across DSes,
  1602. * then we may need to handle dense-like offsets.
  1603. */
  1604. hdr->args.offset = offset;
  1605. /* Perform an asynchronous write */
  1606. nfs_initiate_pgio(ds_clnt, hdr, ds_cred, ds->ds_clp->rpc_ops,
  1607. vers == 3 ? &ff_layout_write_call_ops_v3 :
  1608. &ff_layout_write_call_ops_v4,
  1609. sync, RPC_TASK_SOFTCONN);
  1610. put_rpccred(ds_cred);
  1611. return PNFS_ATTEMPTED;
  1612. }
  1613. static u32 calc_ds_index_from_commit(struct pnfs_layout_segment *lseg, u32 i)
  1614. {
  1615. return i;
  1616. }
  1617. static struct nfs_fh *
  1618. select_ds_fh_from_commit(struct pnfs_layout_segment *lseg, u32 i)
  1619. {
  1620. struct nfs4_ff_layout_segment *flseg = FF_LAYOUT_LSEG(lseg);
  1621. /* FIXME: Assume that there is only one NFS version available
  1622. * for the DS.
  1623. */
  1624. return &flseg->mirror_array[i]->fh_versions[0];
  1625. }
  1626. static int ff_layout_initiate_commit(struct nfs_commit_data *data, int how)
  1627. {
  1628. struct pnfs_layout_segment *lseg = data->lseg;
  1629. struct nfs4_pnfs_ds *ds;
  1630. struct rpc_clnt *ds_clnt;
  1631. struct rpc_cred *ds_cred;
  1632. u32 idx;
  1633. int vers, ret;
  1634. struct nfs_fh *fh;
  1635. idx = calc_ds_index_from_commit(lseg, data->ds_commit_index);
  1636. ds = nfs4_ff_layout_prepare_ds(lseg, idx, true);
  1637. if (!ds)
  1638. goto out_err;
  1639. ds_clnt = nfs4_ff_find_or_create_ds_client(lseg, idx, ds->ds_clp,
  1640. data->inode);
  1641. if (IS_ERR(ds_clnt))
  1642. goto out_err;
  1643. ds_cred = ff_layout_get_ds_cred(lseg, idx, data->cred);
  1644. if (!ds_cred)
  1645. goto out_err;
  1646. vers = nfs4_ff_layout_ds_version(lseg, idx);
  1647. dprintk("%s ino %lu, how %d cl_count %d vers %d\n", __func__,
  1648. data->inode->i_ino, how, atomic_read(&ds->ds_clp->cl_count),
  1649. vers);
  1650. data->commit_done_cb = ff_layout_commit_done_cb;
  1651. data->cred = ds_cred;
  1652. atomic_inc(&ds->ds_clp->cl_count);
  1653. data->ds_clp = ds->ds_clp;
  1654. fh = select_ds_fh_from_commit(lseg, data->ds_commit_index);
  1655. if (fh)
  1656. data->args.fh = fh;
  1657. ret = nfs_initiate_commit(ds_clnt, data, ds->ds_clp->rpc_ops,
  1658. vers == 3 ? &ff_layout_commit_call_ops_v3 :
  1659. &ff_layout_commit_call_ops_v4,
  1660. how, RPC_TASK_SOFTCONN);
  1661. put_rpccred(ds_cred);
  1662. return ret;
  1663. out_err:
  1664. pnfs_generic_prepare_to_resend_writes(data);
  1665. pnfs_generic_commit_release(data);
  1666. return -EAGAIN;
  1667. }
  1668. static int
  1669. ff_layout_commit_pagelist(struct inode *inode, struct list_head *mds_pages,
  1670. int how, struct nfs_commit_info *cinfo)
  1671. {
  1672. return pnfs_generic_commit_pagelist(inode, mds_pages, how, cinfo,
  1673. ff_layout_initiate_commit);
  1674. }
  1675. static struct pnfs_ds_commit_info *
  1676. ff_layout_get_ds_info(struct inode *inode)
  1677. {
  1678. struct pnfs_layout_hdr *layout = NFS_I(inode)->layout;
  1679. if (layout == NULL)
  1680. return NULL;
  1681. return &FF_LAYOUT_FROM_HDR(layout)->commit_info;
  1682. }
  1683. static void
  1684. ff_layout_free_deviceid_node(struct nfs4_deviceid_node *d)
  1685. {
  1686. nfs4_ff_layout_free_deviceid(container_of(d, struct nfs4_ff_layout_ds,
  1687. id_node));
  1688. }
  1689. static int ff_layout_encode_ioerr(struct nfs4_flexfile_layout *flo,
  1690. struct xdr_stream *xdr,
  1691. const struct nfs4_layoutreturn_args *args)
  1692. {
  1693. struct pnfs_layout_hdr *hdr = &flo->generic_hdr;
  1694. __be32 *start;
  1695. int count = 0, ret = 0;
  1696. start = xdr_reserve_space(xdr, 4);
  1697. if (unlikely(!start))
  1698. return -E2BIG;
  1699. /* This assume we always return _ALL_ layouts */
  1700. spin_lock(&hdr->plh_inode->i_lock);
  1701. ret = ff_layout_encode_ds_ioerr(flo, xdr, &count, &args->range);
  1702. spin_unlock(&hdr->plh_inode->i_lock);
  1703. *start = cpu_to_be32(count);
  1704. return ret;
  1705. }
  1706. /* report nothing for now */
  1707. static void ff_layout_encode_iostats(struct nfs4_flexfile_layout *flo,
  1708. struct xdr_stream *xdr,
  1709. const struct nfs4_layoutreturn_args *args)
  1710. {
  1711. __be32 *p;
  1712. p = xdr_reserve_space(xdr, 4);
  1713. if (likely(p))
  1714. *p = cpu_to_be32(0);
  1715. }
  1716. static struct nfs4_deviceid_node *
  1717. ff_layout_alloc_deviceid_node(struct nfs_server *server,
  1718. struct pnfs_device *pdev, gfp_t gfp_flags)
  1719. {
  1720. struct nfs4_ff_layout_ds *dsaddr;
  1721. dsaddr = nfs4_ff_alloc_deviceid_node(server, pdev, gfp_flags);
  1722. if (!dsaddr)
  1723. return NULL;
  1724. return &dsaddr->id_node;
  1725. }
  1726. static void
  1727. ff_layout_encode_layoutreturn(struct pnfs_layout_hdr *lo,
  1728. struct xdr_stream *xdr,
  1729. const struct nfs4_layoutreturn_args *args)
  1730. {
  1731. struct nfs4_flexfile_layout *flo = FF_LAYOUT_FROM_HDR(lo);
  1732. __be32 *start;
  1733. dprintk("%s: Begin\n", __func__);
  1734. start = xdr_reserve_space(xdr, 4);
  1735. BUG_ON(!start);
  1736. ff_layout_encode_ioerr(flo, xdr, args);
  1737. ff_layout_encode_iostats(flo, xdr, args);
  1738. *start = cpu_to_be32((xdr->p - start - 1) * 4);
  1739. dprintk("%s: Return\n", __func__);
  1740. }
  1741. static int
  1742. ff_layout_ntop4(const struct sockaddr *sap, char *buf, const size_t buflen)
  1743. {
  1744. const struct sockaddr_in *sin = (struct sockaddr_in *)sap;
  1745. return snprintf(buf, buflen, "%pI4", &sin->sin_addr);
  1746. }
  1747. static size_t
  1748. ff_layout_ntop6_noscopeid(const struct sockaddr *sap, char *buf,
  1749. const int buflen)
  1750. {
  1751. const struct sockaddr_in6 *sin6 = (struct sockaddr_in6 *)sap;
  1752. const struct in6_addr *addr = &sin6->sin6_addr;
  1753. /*
  1754. * RFC 4291, Section 2.2.2
  1755. *
  1756. * Shorthanded ANY address
  1757. */
  1758. if (ipv6_addr_any(addr))
  1759. return snprintf(buf, buflen, "::");
  1760. /*
  1761. * RFC 4291, Section 2.2.2
  1762. *
  1763. * Shorthanded loopback address
  1764. */
  1765. if (ipv6_addr_loopback(addr))
  1766. return snprintf(buf, buflen, "::1");
  1767. /*
  1768. * RFC 4291, Section 2.2.3
  1769. *
  1770. * Special presentation address format for mapped v4
  1771. * addresses.
  1772. */
  1773. if (ipv6_addr_v4mapped(addr))
  1774. return snprintf(buf, buflen, "::ffff:%pI4",
  1775. &addr->s6_addr32[3]);
  1776. /*
  1777. * RFC 4291, Section 2.2.1
  1778. */
  1779. return snprintf(buf, buflen, "%pI6c", addr);
  1780. }
  1781. /* Derived from rpc_sockaddr2uaddr */
  1782. static void
  1783. ff_layout_encode_netaddr(struct xdr_stream *xdr, struct nfs4_pnfs_ds_addr *da)
  1784. {
  1785. struct sockaddr *sap = (struct sockaddr *)&da->da_addr;
  1786. char portbuf[RPCBIND_MAXUADDRPLEN];
  1787. char addrbuf[RPCBIND_MAXUADDRLEN];
  1788. char *netid;
  1789. unsigned short port;
  1790. int len, netid_len;
  1791. __be32 *p;
  1792. switch (sap->sa_family) {
  1793. case AF_INET:
  1794. if (ff_layout_ntop4(sap, addrbuf, sizeof(addrbuf)) == 0)
  1795. return;
  1796. port = ntohs(((struct sockaddr_in *)sap)->sin_port);
  1797. netid = "tcp";
  1798. netid_len = 3;
  1799. break;
  1800. case AF_INET6:
  1801. if (ff_layout_ntop6_noscopeid(sap, addrbuf, sizeof(addrbuf)) == 0)
  1802. return;
  1803. port = ntohs(((struct sockaddr_in6 *)sap)->sin6_port);
  1804. netid = "tcp6";
  1805. netid_len = 4;
  1806. break;
  1807. default:
  1808. /* we only support tcp and tcp6 */
  1809. WARN_ON_ONCE(1);
  1810. return;
  1811. }
  1812. snprintf(portbuf, sizeof(portbuf), ".%u.%u", port >> 8, port & 0xff);
  1813. len = strlcat(addrbuf, portbuf, sizeof(addrbuf));
  1814. p = xdr_reserve_space(xdr, 4 + netid_len);
  1815. xdr_encode_opaque(p, netid, netid_len);
  1816. p = xdr_reserve_space(xdr, 4 + len);
  1817. xdr_encode_opaque(p, addrbuf, len);
  1818. }
  1819. static void
  1820. ff_layout_encode_nfstime(struct xdr_stream *xdr,
  1821. ktime_t t)
  1822. {
  1823. struct timespec64 ts;
  1824. __be32 *p;
  1825. p = xdr_reserve_space(xdr, 12);
  1826. ts = ktime_to_timespec64(t);
  1827. p = xdr_encode_hyper(p, ts.tv_sec);
  1828. *p++ = cpu_to_be32(ts.tv_nsec);
  1829. }
  1830. static void
  1831. ff_layout_encode_io_latency(struct xdr_stream *xdr,
  1832. struct nfs4_ff_io_stat *stat)
  1833. {
  1834. __be32 *p;
  1835. p = xdr_reserve_space(xdr, 5 * 8);
  1836. p = xdr_encode_hyper(p, stat->ops_requested);
  1837. p = xdr_encode_hyper(p, stat->bytes_requested);
  1838. p = xdr_encode_hyper(p, stat->ops_completed);
  1839. p = xdr_encode_hyper(p, stat->bytes_completed);
  1840. p = xdr_encode_hyper(p, stat->bytes_not_delivered);
  1841. ff_layout_encode_nfstime(xdr, stat->total_busy_time);
  1842. ff_layout_encode_nfstime(xdr, stat->aggregate_completion_time);
  1843. }
  1844. static void
  1845. ff_layout_encode_layoutstats(struct xdr_stream *xdr,
  1846. struct nfs42_layoutstat_args *args,
  1847. struct nfs42_layoutstat_devinfo *devinfo)
  1848. {
  1849. struct nfs4_ff_layout_mirror *mirror = devinfo->layout_private;
  1850. struct nfs4_pnfs_ds_addr *da;
  1851. struct nfs4_pnfs_ds *ds = mirror->mirror_ds->ds;
  1852. struct nfs_fh *fh = &mirror->fh_versions[0];
  1853. __be32 *p, *start;
  1854. da = list_first_entry(&ds->ds_addrs, struct nfs4_pnfs_ds_addr, da_node);
  1855. dprintk("%s: DS %s: encoding address %s\n",
  1856. __func__, ds->ds_remotestr, da->da_remotestr);
  1857. /* layoutupdate length */
  1858. start = xdr_reserve_space(xdr, 4);
  1859. /* netaddr4 */
  1860. ff_layout_encode_netaddr(xdr, da);
  1861. /* nfs_fh4 */
  1862. p = xdr_reserve_space(xdr, 4 + fh->size);
  1863. xdr_encode_opaque(p, fh->data, fh->size);
  1864. /* ff_io_latency4 read */
  1865. spin_lock(&mirror->lock);
  1866. ff_layout_encode_io_latency(xdr, &mirror->read_stat.io_stat);
  1867. /* ff_io_latency4 write */
  1868. ff_layout_encode_io_latency(xdr, &mirror->write_stat.io_stat);
  1869. spin_unlock(&mirror->lock);
  1870. /* nfstime4 */
  1871. ff_layout_encode_nfstime(xdr, ktime_sub(ktime_get(), mirror->start_time));
  1872. /* bool */
  1873. p = xdr_reserve_space(xdr, 4);
  1874. *p = cpu_to_be32(false);
  1875. *start = cpu_to_be32((xdr->p - start - 1) * 4);
  1876. }
  1877. static int
  1878. ff_layout_mirror_prepare_stats(struct nfs42_layoutstat_args *args,
  1879. struct pnfs_layout_hdr *lo,
  1880. int dev_limit)
  1881. {
  1882. struct nfs4_flexfile_layout *ff_layout = FF_LAYOUT_FROM_HDR(lo);
  1883. struct nfs4_ff_layout_mirror *mirror;
  1884. struct nfs4_deviceid_node *dev;
  1885. struct nfs42_layoutstat_devinfo *devinfo;
  1886. int i = 0;
  1887. list_for_each_entry(mirror, &ff_layout->mirrors, mirrors) {
  1888. if (i >= dev_limit)
  1889. break;
  1890. if (!mirror->mirror_ds)
  1891. continue;
  1892. /* mirror refcount put in cleanup_layoutstats */
  1893. if (!atomic_inc_not_zero(&mirror->ref))
  1894. continue;
  1895. dev = &mirror->mirror_ds->id_node;
  1896. devinfo = &args->devinfo[i];
  1897. memcpy(&devinfo->dev_id, &dev->deviceid, NFS4_DEVICEID4_SIZE);
  1898. devinfo->offset = 0;
  1899. devinfo->length = NFS4_MAX_UINT64;
  1900. devinfo->read_count = mirror->read_stat.io_stat.ops_completed;
  1901. devinfo->read_bytes = mirror->read_stat.io_stat.bytes_completed;
  1902. devinfo->write_count = mirror->write_stat.io_stat.ops_completed;
  1903. devinfo->write_bytes = mirror->write_stat.io_stat.bytes_completed;
  1904. devinfo->layout_type = LAYOUT_FLEX_FILES;
  1905. devinfo->layoutstats_encode = ff_layout_encode_layoutstats;
  1906. devinfo->layout_private = mirror;
  1907. i++;
  1908. }
  1909. return i;
  1910. }
  1911. static int
  1912. ff_layout_prepare_layoutstats(struct nfs42_layoutstat_args *args)
  1913. {
  1914. struct nfs4_flexfile_layout *ff_layout;
  1915. struct nfs4_ff_layout_mirror *mirror;
  1916. int dev_count = 0;
  1917. spin_lock(&args->inode->i_lock);
  1918. ff_layout = FF_LAYOUT_FROM_HDR(NFS_I(args->inode)->layout);
  1919. list_for_each_entry(mirror, &ff_layout->mirrors, mirrors) {
  1920. if (atomic_read(&mirror->ref) != 0)
  1921. dev_count ++;
  1922. }
  1923. spin_unlock(&args->inode->i_lock);
  1924. /* For now, send at most PNFS_LAYOUTSTATS_MAXDEV statistics */
  1925. if (dev_count > PNFS_LAYOUTSTATS_MAXDEV) {
  1926. dprintk("%s: truncating devinfo to limit (%d:%d)\n",
  1927. __func__, dev_count, PNFS_LAYOUTSTATS_MAXDEV);
  1928. dev_count = PNFS_LAYOUTSTATS_MAXDEV;
  1929. }
  1930. args->devinfo = kmalloc_array(dev_count, sizeof(*args->devinfo), GFP_NOIO);
  1931. if (!args->devinfo)
  1932. return -ENOMEM;
  1933. spin_lock(&args->inode->i_lock);
  1934. args->num_dev = ff_layout_mirror_prepare_stats(args,
  1935. &ff_layout->generic_hdr, dev_count);
  1936. spin_unlock(&args->inode->i_lock);
  1937. return 0;
  1938. }
  1939. static void
  1940. ff_layout_cleanup_layoutstats(struct nfs42_layoutstat_data *data)
  1941. {
  1942. struct nfs4_ff_layout_mirror *mirror;
  1943. int i;
  1944. for (i = 0; i < data->args.num_dev; i++) {
  1945. mirror = data->args.devinfo[i].layout_private;
  1946. data->args.devinfo[i].layout_private = NULL;
  1947. ff_layout_put_mirror(mirror);
  1948. }
  1949. }
  1950. static struct pnfs_layoutdriver_type flexfilelayout_type = {
  1951. .id = LAYOUT_FLEX_FILES,
  1952. .name = "LAYOUT_FLEX_FILES",
  1953. .owner = THIS_MODULE,
  1954. .alloc_layout_hdr = ff_layout_alloc_layout_hdr,
  1955. .free_layout_hdr = ff_layout_free_layout_hdr,
  1956. .alloc_lseg = ff_layout_alloc_lseg,
  1957. .free_lseg = ff_layout_free_lseg,
  1958. .add_lseg = ff_layout_add_lseg,
  1959. .pg_read_ops = &ff_layout_pg_read_ops,
  1960. .pg_write_ops = &ff_layout_pg_write_ops,
  1961. .get_ds_info = ff_layout_get_ds_info,
  1962. .free_deviceid_node = ff_layout_free_deviceid_node,
  1963. .mark_request_commit = pnfs_layout_mark_request_commit,
  1964. .clear_request_commit = pnfs_generic_clear_request_commit,
  1965. .scan_commit_lists = pnfs_generic_scan_commit_lists,
  1966. .recover_commit_reqs = pnfs_generic_recover_commit_reqs,
  1967. .commit_pagelist = ff_layout_commit_pagelist,
  1968. .read_pagelist = ff_layout_read_pagelist,
  1969. .write_pagelist = ff_layout_write_pagelist,
  1970. .alloc_deviceid_node = ff_layout_alloc_deviceid_node,
  1971. .encode_layoutreturn = ff_layout_encode_layoutreturn,
  1972. .sync = pnfs_nfs_generic_sync,
  1973. .prepare_layoutstats = ff_layout_prepare_layoutstats,
  1974. .cleanup_layoutstats = ff_layout_cleanup_layoutstats,
  1975. };
  1976. static int __init nfs4flexfilelayout_init(void)
  1977. {
  1978. printk(KERN_INFO "%s: NFSv4 Flexfile Layout Driver Registering...\n",
  1979. __func__);
  1980. if (!ff_zero_group) {
  1981. ff_zero_group = groups_alloc(0);
  1982. if (!ff_zero_group)
  1983. return -ENOMEM;
  1984. }
  1985. return pnfs_register_layoutdriver(&flexfilelayout_type);
  1986. }
  1987. static void __exit nfs4flexfilelayout_exit(void)
  1988. {
  1989. printk(KERN_INFO "%s: NFSv4 Flexfile Layout Driver Unregistering...\n",
  1990. __func__);
  1991. pnfs_unregister_layoutdriver(&flexfilelayout_type);
  1992. if (ff_zero_group) {
  1993. put_group_info(ff_zero_group);
  1994. ff_zero_group = NULL;
  1995. }
  1996. }
  1997. MODULE_ALIAS("nfs-layouttype4-4");
  1998. MODULE_LICENSE("GPL");
  1999. MODULE_DESCRIPTION("The NFSv4 flexfile layout driver");
  2000. module_init(nfs4flexfilelayout_init);
  2001. module_exit(nfs4flexfilelayout_exit);