drbd_req.c 36 KB

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  1. /*
  2. drbd_req.c
  3. This file is part of DRBD by Philipp Reisner and Lars Ellenberg.
  4. Copyright (C) 2001-2008, LINBIT Information Technologies GmbH.
  5. Copyright (C) 1999-2008, Philipp Reisner <philipp.reisner@linbit.com>.
  6. Copyright (C) 2002-2008, Lars Ellenberg <lars.ellenberg@linbit.com>.
  7. drbd is free software; you can redistribute it and/or modify
  8. it under the terms of the GNU General Public License as published by
  9. the Free Software Foundation; either version 2, or (at your option)
  10. any later version.
  11. drbd is distributed in the hope that it will be useful,
  12. but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. GNU General Public License for more details.
  15. You should have received a copy of the GNU General Public License
  16. along with drbd; see the file COPYING. If not, write to
  17. the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
  18. */
  19. #include <linux/module.h>
  20. #include <linux/slab.h>
  21. #include <linux/drbd.h>
  22. #include "drbd_int.h"
  23. #include "drbd_req.h"
  24. static bool drbd_may_do_local_read(struct drbd_conf *mdev, sector_t sector, int size);
  25. /* Update disk stats at start of I/O request */
  26. static void _drbd_start_io_acct(struct drbd_conf *mdev, struct drbd_request *req, struct bio *bio)
  27. {
  28. const int rw = bio_data_dir(bio);
  29. int cpu;
  30. cpu = part_stat_lock();
  31. part_round_stats(cpu, &mdev->vdisk->part0);
  32. part_stat_inc(cpu, &mdev->vdisk->part0, ios[rw]);
  33. part_stat_add(cpu, &mdev->vdisk->part0, sectors[rw], bio_sectors(bio));
  34. (void) cpu; /* The macro invocations above want the cpu argument, I do not like
  35. the compiler warning about cpu only assigned but never used... */
  36. part_inc_in_flight(&mdev->vdisk->part0, rw);
  37. part_stat_unlock();
  38. }
  39. /* Update disk stats when completing request upwards */
  40. static void _drbd_end_io_acct(struct drbd_conf *mdev, struct drbd_request *req)
  41. {
  42. int rw = bio_data_dir(req->master_bio);
  43. unsigned long duration = jiffies - req->start_time;
  44. int cpu;
  45. cpu = part_stat_lock();
  46. part_stat_add(cpu, &mdev->vdisk->part0, ticks[rw], duration);
  47. part_round_stats(cpu, &mdev->vdisk->part0);
  48. part_dec_in_flight(&mdev->vdisk->part0, rw);
  49. part_stat_unlock();
  50. }
  51. static struct drbd_request *drbd_req_new(struct drbd_conf *mdev,
  52. struct bio *bio_src)
  53. {
  54. struct drbd_request *req;
  55. req = mempool_alloc(drbd_request_mempool, GFP_NOIO);
  56. if (!req)
  57. return NULL;
  58. drbd_req_make_private_bio(req, bio_src);
  59. req->rq_state = bio_data_dir(bio_src) == WRITE ? RQ_WRITE : 0;
  60. req->w.mdev = mdev;
  61. req->master_bio = bio_src;
  62. req->epoch = 0;
  63. drbd_clear_interval(&req->i);
  64. req->i.sector = bio_src->bi_sector;
  65. req->i.size = bio_src->bi_size;
  66. req->i.local = true;
  67. req->i.waiting = false;
  68. INIT_LIST_HEAD(&req->tl_requests);
  69. INIT_LIST_HEAD(&req->w.list);
  70. /* one reference to be put by __drbd_make_request */
  71. atomic_set(&req->completion_ref, 1);
  72. /* one kref as long as completion_ref > 0 */
  73. kref_init(&req->kref);
  74. return req;
  75. }
  76. static void drbd_req_destroy(struct kref *kref)
  77. {
  78. struct drbd_request *req = container_of(kref, struct drbd_request, kref);
  79. struct drbd_conf *mdev = req->w.mdev;
  80. const unsigned s = req->rq_state;
  81. if ((req->master_bio && !(s & RQ_POSTPONED)) ||
  82. atomic_read(&req->completion_ref) ||
  83. (s & RQ_LOCAL_PENDING) ||
  84. ((s & RQ_NET_MASK) && !(s & RQ_NET_DONE))) {
  85. dev_err(DEV, "drbd_req_destroy: Logic BUG rq_state = 0x%x, completion_ref = %d\n",
  86. s, atomic_read(&req->completion_ref));
  87. return;
  88. }
  89. /* remove it from the transfer log.
  90. * well, only if it had been there in the first
  91. * place... if it had not (local only or conflicting
  92. * and never sent), it should still be "empty" as
  93. * initialized in drbd_req_new(), so we can list_del() it
  94. * here unconditionally */
  95. list_del_init(&req->tl_requests);
  96. /* if it was a write, we may have to set the corresponding
  97. * bit(s) out-of-sync first. If it had a local part, we need to
  98. * release the reference to the activity log. */
  99. if (s & RQ_WRITE) {
  100. /* Set out-of-sync unless both OK flags are set
  101. * (local only or remote failed).
  102. * Other places where we set out-of-sync:
  103. * READ with local io-error */
  104. if (!(s & RQ_NET_OK) || !(s & RQ_LOCAL_OK))
  105. drbd_set_out_of_sync(mdev, req->i.sector, req->i.size);
  106. if ((s & RQ_NET_OK) && (s & RQ_LOCAL_OK) && (s & RQ_NET_SIS))
  107. drbd_set_in_sync(mdev, req->i.sector, req->i.size);
  108. /* one might be tempted to move the drbd_al_complete_io
  109. * to the local io completion callback drbd_request_endio.
  110. * but, if this was a mirror write, we may only
  111. * drbd_al_complete_io after this is RQ_NET_DONE,
  112. * otherwise the extent could be dropped from the al
  113. * before it has actually been written on the peer.
  114. * if we crash before our peer knows about the request,
  115. * but after the extent has been dropped from the al,
  116. * we would forget to resync the corresponding extent.
  117. */
  118. if (s & RQ_LOCAL_MASK) {
  119. if (get_ldev_if_state(mdev, D_FAILED)) {
  120. if (s & RQ_IN_ACT_LOG)
  121. drbd_al_complete_io(mdev, &req->i);
  122. put_ldev(mdev);
  123. } else if (__ratelimit(&drbd_ratelimit_state)) {
  124. dev_warn(DEV, "Should have called drbd_al_complete_io(, %llu, %u), "
  125. "but my Disk seems to have failed :(\n",
  126. (unsigned long long) req->i.sector, req->i.size);
  127. }
  128. }
  129. }
  130. if (s & RQ_POSTPONED)
  131. drbd_restart_request(req);
  132. else
  133. mempool_free(req, drbd_request_mempool);
  134. }
  135. static void wake_all_senders(struct drbd_tconn *tconn) {
  136. wake_up(&tconn->sender_work.q_wait);
  137. }
  138. /* must hold resource->req_lock */
  139. static void start_new_tl_epoch(struct drbd_tconn *tconn)
  140. {
  141. tconn->current_tle_writes = 0;
  142. atomic_inc(&tconn->current_tle_nr);
  143. wake_all_senders(tconn);
  144. }
  145. void complete_master_bio(struct drbd_conf *mdev,
  146. struct bio_and_error *m)
  147. {
  148. bio_endio(m->bio, m->error);
  149. dec_ap_bio(mdev);
  150. }
  151. static void drbd_remove_request_interval(struct rb_root *root,
  152. struct drbd_request *req)
  153. {
  154. struct drbd_conf *mdev = req->w.mdev;
  155. struct drbd_interval *i = &req->i;
  156. drbd_remove_interval(root, i);
  157. /* Wake up any processes waiting for this request to complete. */
  158. if (i->waiting)
  159. wake_up(&mdev->misc_wait);
  160. }
  161. /* Helper for __req_mod().
  162. * Set m->bio to the master bio, if it is fit to be completed,
  163. * or leave it alone (it is initialized to NULL in __req_mod),
  164. * if it has already been completed, or cannot be completed yet.
  165. * If m->bio is set, the error status to be returned is placed in m->error.
  166. */
  167. static
  168. void drbd_req_complete(struct drbd_request *req, struct bio_and_error *m)
  169. {
  170. const unsigned s = req->rq_state;
  171. struct drbd_conf *mdev = req->w.mdev;
  172. int rw;
  173. int error, ok;
  174. /* we must not complete the master bio, while it is
  175. * still being processed by _drbd_send_zc_bio (drbd_send_dblock)
  176. * not yet acknowledged by the peer
  177. * not yet completed by the local io subsystem
  178. * these flags may get cleared in any order by
  179. * the worker,
  180. * the receiver,
  181. * the bio_endio completion callbacks.
  182. */
  183. if ((s & RQ_LOCAL_PENDING && !(s & RQ_LOCAL_ABORTED)) ||
  184. (s & RQ_NET_QUEUED) || (s & RQ_NET_PENDING) ||
  185. (s & RQ_COMPLETION_SUSP)) {
  186. dev_err(DEV, "drbd_req_complete: Logic BUG rq_state = 0x%x\n", s);
  187. return;
  188. }
  189. if (!req->master_bio) {
  190. dev_err(DEV, "drbd_req_complete: Logic BUG, master_bio == NULL!\n");
  191. return;
  192. }
  193. rw = bio_rw(req->master_bio);
  194. /*
  195. * figure out whether to report success or failure.
  196. *
  197. * report success when at least one of the operations succeeded.
  198. * or, to put the other way,
  199. * only report failure, when both operations failed.
  200. *
  201. * what to do about the failures is handled elsewhere.
  202. * what we need to do here is just: complete the master_bio.
  203. *
  204. * local completion error, if any, has been stored as ERR_PTR
  205. * in private_bio within drbd_request_endio.
  206. */
  207. ok = (s & RQ_LOCAL_OK) || (s & RQ_NET_OK);
  208. error = PTR_ERR(req->private_bio);
  209. /* remove the request from the conflict detection
  210. * respective block_id verification hash */
  211. if (!drbd_interval_empty(&req->i)) {
  212. struct rb_root *root;
  213. if (rw == WRITE)
  214. root = &mdev->write_requests;
  215. else
  216. root = &mdev->read_requests;
  217. drbd_remove_request_interval(root, req);
  218. } else if (!(s & RQ_POSTPONED))
  219. D_ASSERT((s & (RQ_NET_MASK & ~RQ_NET_DONE)) == 0);
  220. /* Before we can signal completion to the upper layers,
  221. * we may need to close the current transfer log epoch.
  222. * We are within the request lock, so we can simply compare
  223. * the request epoch number with the current transfer log
  224. * epoch number. If they match, increase the current_tle_nr,
  225. * and reset the transfer log epoch write_cnt.
  226. */
  227. if (rw == WRITE &&
  228. req->epoch == atomic_read(&mdev->tconn->current_tle_nr))
  229. start_new_tl_epoch(mdev->tconn);
  230. /* Update disk stats */
  231. _drbd_end_io_acct(mdev, req);
  232. /* If READ failed,
  233. * have it be pushed back to the retry work queue,
  234. * so it will re-enter __drbd_make_request(),
  235. * and be re-assigned to a suitable local or remote path,
  236. * or failed if we do not have access to good data anymore.
  237. *
  238. * Unless it was failed early by __drbd_make_request(),
  239. * because no path was available, in which case
  240. * it was not even added to the transfer_log.
  241. *
  242. * READA may fail, and will not be retried.
  243. *
  244. * WRITE should have used all available paths already.
  245. */
  246. if (!ok && rw == READ && !list_empty(&req->tl_requests))
  247. req->rq_state |= RQ_POSTPONED;
  248. if (!(req->rq_state & RQ_POSTPONED)) {
  249. m->error = ok ? 0 : (error ?: -EIO);
  250. m->bio = req->master_bio;
  251. req->master_bio = NULL;
  252. } else {
  253. /* Assert that this will be drbd_req_destroy()ed
  254. * with this very invokation. */
  255. D_ASSERT(atomic_read(&req->kref.refcount) == 1);
  256. }
  257. }
  258. static int drbd_req_put_completion_ref(struct drbd_request *req, struct bio_and_error *m, int put)
  259. {
  260. struct drbd_conf *mdev = req->w.mdev;
  261. D_ASSERT(m || (req->rq_state & RQ_POSTPONED));
  262. if (!atomic_sub_and_test(put, &req->completion_ref))
  263. return 0;
  264. if (drbd_suspended(mdev)) {
  265. /* We do not allow completion while suspended. Re-get a
  266. * reference, so whatever happens when this is resumed
  267. * may put and complete. */
  268. D_ASSERT(!(req->rq_state & RQ_COMPLETION_SUSP));
  269. req->rq_state |= RQ_COMPLETION_SUSP;
  270. atomic_inc(&req->completion_ref);
  271. return 0;
  272. }
  273. /* else */
  274. drbd_req_complete(req, m);
  275. return 1;
  276. }
  277. /* I'd like this to be the only place that manipulates
  278. * req->completion_ref and req->kref. */
  279. static void mod_rq_state(struct drbd_request *req, struct bio_and_error *m,
  280. int clear, int set)
  281. {
  282. struct drbd_conf *mdev = req->w.mdev;
  283. unsigned s = req->rq_state;
  284. int c_put = 0;
  285. int k_put = 0;
  286. /* apply */
  287. req->rq_state &= ~clear;
  288. req->rq_state |= set;
  289. /* no change? */
  290. if (req->rq_state == s)
  291. return;
  292. /* intent: get references */
  293. if (!(s & RQ_LOCAL_PENDING) && (set & RQ_LOCAL_PENDING))
  294. atomic_inc(&req->completion_ref);
  295. if (!(s & RQ_NET_PENDING) && (set & RQ_NET_PENDING)) {
  296. inc_ap_pending(mdev);
  297. atomic_inc(&req->completion_ref);
  298. }
  299. if (!(s & RQ_NET_QUEUED) && (set & RQ_NET_QUEUED))
  300. atomic_inc(&req->completion_ref);
  301. if (!(s & RQ_EXP_BARR_ACK) && (set & RQ_EXP_BARR_ACK))
  302. kref_get(&req->kref); /* wait for the DONE */
  303. if (!(s & RQ_NET_SENT) && (set & RQ_NET_SENT))
  304. atomic_add(req->i.size >> 9, &mdev->ap_in_flight);
  305. /* progress: put references */
  306. if ((s & RQ_COMPLETION_SUSP) && (clear & RQ_COMPLETION_SUSP))
  307. ++c_put;
  308. if (!(s & RQ_LOCAL_ABORTED) && (set & RQ_LOCAL_ABORTED)) {
  309. D_ASSERT(req->rq_state & RQ_LOCAL_PENDING);
  310. /* local completion may still come in later,
  311. * we need to keep the req object around. */
  312. kref_get(&req->kref);
  313. ++c_put;
  314. }
  315. if ((s & RQ_LOCAL_PENDING) && (clear & RQ_LOCAL_PENDING)) {
  316. if (req->rq_state & RQ_LOCAL_ABORTED)
  317. ++k_put;
  318. else
  319. ++c_put;
  320. }
  321. if ((s & RQ_NET_PENDING) && (clear & RQ_NET_PENDING)) {
  322. dec_ap_pending(mdev);
  323. ++c_put;
  324. }
  325. if ((s & RQ_NET_QUEUED) && (clear & RQ_NET_QUEUED))
  326. ++c_put;
  327. if ((s & RQ_EXP_BARR_ACK) && !(s & RQ_NET_DONE) && (set & RQ_NET_DONE)) {
  328. if (req->rq_state & RQ_NET_SENT)
  329. atomic_sub(req->i.size >> 9, &mdev->ap_in_flight);
  330. ++k_put;
  331. }
  332. /* potentially complete and destroy */
  333. if (k_put || c_put) {
  334. /* Completion does it's own kref_put. If we are going to
  335. * kref_sub below, we need req to be still around then. */
  336. int at_least = k_put + !!c_put;
  337. int refcount = atomic_read(&req->kref.refcount);
  338. if (refcount < at_least)
  339. dev_err(DEV,
  340. "mod_rq_state: Logic BUG: %x -> %x: refcount = %d, should be >= %d\n",
  341. s, req->rq_state, refcount, at_least);
  342. }
  343. /* If we made progress, retry conflicting peer requests, if any. */
  344. if (req->i.waiting)
  345. wake_up(&mdev->misc_wait);
  346. if (c_put)
  347. k_put += drbd_req_put_completion_ref(req, m, c_put);
  348. if (k_put)
  349. kref_sub(&req->kref, k_put, drbd_req_destroy);
  350. }
  351. /* obviously this could be coded as many single functions
  352. * instead of one huge switch,
  353. * or by putting the code directly in the respective locations
  354. * (as it has been before).
  355. *
  356. * but having it this way
  357. * enforces that it is all in this one place, where it is easier to audit,
  358. * it makes it obvious that whatever "event" "happens" to a request should
  359. * happen "atomically" within the req_lock,
  360. * and it enforces that we have to think in a very structured manner
  361. * about the "events" that may happen to a request during its life time ...
  362. */
  363. int __req_mod(struct drbd_request *req, enum drbd_req_event what,
  364. struct bio_and_error *m)
  365. {
  366. struct drbd_conf *mdev = req->w.mdev;
  367. struct net_conf *nc;
  368. int p, rv = 0;
  369. if (m)
  370. m->bio = NULL;
  371. switch (what) {
  372. default:
  373. dev_err(DEV, "LOGIC BUG in %s:%u\n", __FILE__ , __LINE__);
  374. break;
  375. /* does not happen...
  376. * initialization done in drbd_req_new
  377. case CREATED:
  378. break;
  379. */
  380. case TO_BE_SENT: /* via network */
  381. /* reached via __drbd_make_request
  382. * and from w_read_retry_remote */
  383. D_ASSERT(!(req->rq_state & RQ_NET_MASK));
  384. rcu_read_lock();
  385. nc = rcu_dereference(mdev->tconn->net_conf);
  386. p = nc->wire_protocol;
  387. rcu_read_unlock();
  388. req->rq_state |=
  389. p == DRBD_PROT_C ? RQ_EXP_WRITE_ACK :
  390. p == DRBD_PROT_B ? RQ_EXP_RECEIVE_ACK : 0;
  391. mod_rq_state(req, m, 0, RQ_NET_PENDING);
  392. break;
  393. case TO_BE_SUBMITTED: /* locally */
  394. /* reached via __drbd_make_request */
  395. D_ASSERT(!(req->rq_state & RQ_LOCAL_MASK));
  396. mod_rq_state(req, m, 0, RQ_LOCAL_PENDING);
  397. break;
  398. case COMPLETED_OK:
  399. if (req->rq_state & RQ_WRITE)
  400. mdev->writ_cnt += req->i.size >> 9;
  401. else
  402. mdev->read_cnt += req->i.size >> 9;
  403. mod_rq_state(req, m, RQ_LOCAL_PENDING,
  404. RQ_LOCAL_COMPLETED|RQ_LOCAL_OK);
  405. break;
  406. case ABORT_DISK_IO:
  407. mod_rq_state(req, m, 0, RQ_LOCAL_ABORTED);
  408. break;
  409. case READ_COMPLETED_WITH_ERROR:
  410. drbd_set_out_of_sync(mdev, req->i.sector, req->i.size);
  411. /* fall through. */
  412. case WRITE_COMPLETED_WITH_ERROR:
  413. __drbd_chk_io_error(mdev, false);
  414. /* fall through. */
  415. case READ_AHEAD_COMPLETED_WITH_ERROR:
  416. /* it is legal to fail READA, no __drbd_chk_io_error in that case. */
  417. mod_rq_state(req, m, RQ_LOCAL_PENDING, RQ_LOCAL_COMPLETED);
  418. break;
  419. case QUEUE_FOR_NET_READ:
  420. /* READ or READA, and
  421. * no local disk,
  422. * or target area marked as invalid,
  423. * or just got an io-error. */
  424. /* from __drbd_make_request
  425. * or from bio_endio during read io-error recovery */
  426. /* So we can verify the handle in the answer packet.
  427. * Corresponding drbd_remove_request_interval is in
  428. * drbd_req_complete() */
  429. D_ASSERT(drbd_interval_empty(&req->i));
  430. drbd_insert_interval(&mdev->read_requests, &req->i);
  431. set_bit(UNPLUG_REMOTE, &mdev->flags);
  432. D_ASSERT(req->rq_state & RQ_NET_PENDING);
  433. D_ASSERT((req->rq_state & RQ_LOCAL_MASK) == 0);
  434. mod_rq_state(req, m, 0, RQ_NET_QUEUED);
  435. req->w.cb = w_send_read_req;
  436. drbd_queue_work(&mdev->tconn->sender_work, &req->w);
  437. break;
  438. case QUEUE_FOR_NET_WRITE:
  439. /* assert something? */
  440. /* from __drbd_make_request only */
  441. /* Corresponding drbd_remove_request_interval is in
  442. * drbd_req_complete() */
  443. D_ASSERT(drbd_interval_empty(&req->i));
  444. drbd_insert_interval(&mdev->write_requests, &req->i);
  445. /* NOTE
  446. * In case the req ended up on the transfer log before being
  447. * queued on the worker, it could lead to this request being
  448. * missed during cleanup after connection loss.
  449. * So we have to do both operations here,
  450. * within the same lock that protects the transfer log.
  451. *
  452. * _req_add_to_epoch(req); this has to be after the
  453. * _maybe_start_new_epoch(req); which happened in
  454. * __drbd_make_request, because we now may set the bit
  455. * again ourselves to close the current epoch.
  456. *
  457. * Add req to the (now) current epoch (barrier). */
  458. /* otherwise we may lose an unplug, which may cause some remote
  459. * io-scheduler timeout to expire, increasing maximum latency,
  460. * hurting performance. */
  461. set_bit(UNPLUG_REMOTE, &mdev->flags);
  462. /* queue work item to send data */
  463. D_ASSERT(req->rq_state & RQ_NET_PENDING);
  464. mod_rq_state(req, m, 0, RQ_NET_QUEUED|RQ_EXP_BARR_ACK);
  465. req->w.cb = w_send_dblock;
  466. drbd_queue_work(&mdev->tconn->sender_work, &req->w);
  467. /* close the epoch, in case it outgrew the limit */
  468. rcu_read_lock();
  469. nc = rcu_dereference(mdev->tconn->net_conf);
  470. p = nc->max_epoch_size;
  471. rcu_read_unlock();
  472. if (mdev->tconn->current_tle_writes >= p)
  473. start_new_tl_epoch(mdev->tconn);
  474. break;
  475. case QUEUE_FOR_SEND_OOS:
  476. mod_rq_state(req, m, 0, RQ_NET_QUEUED);
  477. req->w.cb = w_send_out_of_sync;
  478. drbd_queue_work(&mdev->tconn->sender_work, &req->w);
  479. break;
  480. case READ_RETRY_REMOTE_CANCELED:
  481. case SEND_CANCELED:
  482. case SEND_FAILED:
  483. /* real cleanup will be done from tl_clear. just update flags
  484. * so it is no longer marked as on the worker queue */
  485. mod_rq_state(req, m, RQ_NET_QUEUED, 0);
  486. break;
  487. case HANDED_OVER_TO_NETWORK:
  488. /* assert something? */
  489. if (bio_data_dir(req->master_bio) == WRITE &&
  490. !(req->rq_state & (RQ_EXP_RECEIVE_ACK | RQ_EXP_WRITE_ACK))) {
  491. /* this is what is dangerous about protocol A:
  492. * pretend it was successfully written on the peer. */
  493. if (req->rq_state & RQ_NET_PENDING)
  494. mod_rq_state(req, m, RQ_NET_PENDING, RQ_NET_OK);
  495. /* else: neg-ack was faster... */
  496. /* it is still not yet RQ_NET_DONE until the
  497. * corresponding epoch barrier got acked as well,
  498. * so we know what to dirty on connection loss */
  499. }
  500. mod_rq_state(req, m, RQ_NET_QUEUED, RQ_NET_SENT);
  501. break;
  502. case OOS_HANDED_TO_NETWORK:
  503. /* Was not set PENDING, no longer QUEUED, so is now DONE
  504. * as far as this connection is concerned. */
  505. mod_rq_state(req, m, RQ_NET_QUEUED, RQ_NET_DONE);
  506. break;
  507. case CONNECTION_LOST_WHILE_PENDING:
  508. /* transfer log cleanup after connection loss */
  509. mod_rq_state(req, m,
  510. RQ_NET_OK|RQ_NET_PENDING|RQ_COMPLETION_SUSP,
  511. RQ_NET_DONE);
  512. break;
  513. case DISCARD_WRITE:
  514. /* for discarded conflicting writes of multiple primaries,
  515. * there is no need to keep anything in the tl, potential
  516. * node crashes are covered by the activity log.
  517. *
  518. * If this request had been marked as RQ_POSTPONED before,
  519. * it will actually not be discarded, but "restarted",
  520. * resubmitted from the retry worker context. */
  521. D_ASSERT(req->rq_state & RQ_NET_PENDING);
  522. D_ASSERT(req->rq_state & RQ_EXP_WRITE_ACK);
  523. mod_rq_state(req, m, RQ_NET_PENDING, RQ_NET_DONE|RQ_NET_OK);
  524. break;
  525. case WRITE_ACKED_BY_PEER_AND_SIS:
  526. req->rq_state |= RQ_NET_SIS;
  527. case WRITE_ACKED_BY_PEER:
  528. D_ASSERT(req->rq_state & RQ_EXP_WRITE_ACK);
  529. /* protocol C; successfully written on peer.
  530. * Nothing more to do here.
  531. * We want to keep the tl in place for all protocols, to cater
  532. * for volatile write-back caches on lower level devices. */
  533. goto ack_common;
  534. case RECV_ACKED_BY_PEER:
  535. D_ASSERT(req->rq_state & RQ_EXP_RECEIVE_ACK);
  536. /* protocol B; pretends to be successfully written on peer.
  537. * see also notes above in HANDED_OVER_TO_NETWORK about
  538. * protocol != C */
  539. ack_common:
  540. D_ASSERT(req->rq_state & RQ_NET_PENDING);
  541. mod_rq_state(req, m, RQ_NET_PENDING, RQ_NET_OK);
  542. break;
  543. case POSTPONE_WRITE:
  544. D_ASSERT(req->rq_state & RQ_EXP_WRITE_ACK);
  545. /* If this node has already detected the write conflict, the
  546. * worker will be waiting on misc_wait. Wake it up once this
  547. * request has completed locally.
  548. */
  549. D_ASSERT(req->rq_state & RQ_NET_PENDING);
  550. req->rq_state |= RQ_POSTPONED;
  551. if (req->i.waiting)
  552. wake_up(&mdev->misc_wait);
  553. /* Do not clear RQ_NET_PENDING. This request will make further
  554. * progress via restart_conflicting_writes() or
  555. * fail_postponed_requests(). Hopefully. */
  556. break;
  557. case NEG_ACKED:
  558. mod_rq_state(req, m, RQ_NET_OK|RQ_NET_PENDING, RQ_NET_DONE);
  559. break;
  560. case FAIL_FROZEN_DISK_IO:
  561. if (!(req->rq_state & RQ_LOCAL_COMPLETED))
  562. break;
  563. mod_rq_state(req, m, RQ_COMPLETION_SUSP, 0);
  564. break;
  565. case RESTART_FROZEN_DISK_IO:
  566. if (!(req->rq_state & RQ_LOCAL_COMPLETED))
  567. break;
  568. mod_rq_state(req, m,
  569. RQ_COMPLETION_SUSP|RQ_LOCAL_COMPLETED,
  570. RQ_LOCAL_PENDING);
  571. rv = MR_READ;
  572. if (bio_data_dir(req->master_bio) == WRITE)
  573. rv = MR_WRITE;
  574. get_ldev(mdev); /* always succeeds in this call path */
  575. req->w.cb = w_restart_disk_io;
  576. drbd_queue_work(&mdev->tconn->sender_work, &req->w);
  577. break;
  578. case RESEND:
  579. /* If RQ_NET_OK is already set, we got a P_WRITE_ACK or P_RECV_ACK
  580. before the connection loss (B&C only); only P_BARRIER_ACK
  581. (or the local completion?) was missing when we suspended.
  582. Throwing them out of the TL here by pretending we got a BARRIER_ACK.
  583. During connection handshake, we ensure that the peer was not rebooted. */
  584. if (!(req->rq_state & RQ_NET_OK)) {
  585. /* FIXME could this possibly be a req->w.cb == w_send_out_of_sync?
  586. * in that case we must not set RQ_NET_PENDING. */
  587. mod_rq_state(req, m, RQ_COMPLETION_SUSP, RQ_NET_QUEUED|RQ_NET_PENDING);
  588. if (req->w.cb) {
  589. drbd_queue_work(&mdev->tconn->sender_work, &req->w);
  590. rv = req->rq_state & RQ_WRITE ? MR_WRITE : MR_READ;
  591. } /* else: FIXME can this happen? */
  592. break;
  593. }
  594. /* else, fall through to BARRIER_ACKED */
  595. case BARRIER_ACKED:
  596. /* barrier ack for READ requests does not make sense */
  597. if (!(req->rq_state & RQ_WRITE))
  598. break;
  599. if (req->rq_state & RQ_NET_PENDING) {
  600. /* barrier came in before all requests were acked.
  601. * this is bad, because if the connection is lost now,
  602. * we won't be able to clean them up... */
  603. dev_err(DEV, "FIXME (BARRIER_ACKED but pending)\n");
  604. }
  605. /* Allowed to complete requests, even while suspended.
  606. * As this is called for all requests within a matching epoch,
  607. * we need to filter, and only set RQ_NET_DONE for those that
  608. * have actually been on the wire. */
  609. mod_rq_state(req, m, RQ_COMPLETION_SUSP,
  610. (req->rq_state & RQ_NET_MASK) ? RQ_NET_DONE : 0);
  611. break;
  612. case DATA_RECEIVED:
  613. D_ASSERT(req->rq_state & RQ_NET_PENDING);
  614. mod_rq_state(req, m, RQ_NET_PENDING, RQ_NET_OK|RQ_NET_DONE);
  615. break;
  616. };
  617. return rv;
  618. }
  619. /* we may do a local read if:
  620. * - we are consistent (of course),
  621. * - or we are generally inconsistent,
  622. * BUT we are still/already IN SYNC for this area.
  623. * since size may be bigger than BM_BLOCK_SIZE,
  624. * we may need to check several bits.
  625. */
  626. static bool drbd_may_do_local_read(struct drbd_conf *mdev, sector_t sector, int size)
  627. {
  628. unsigned long sbnr, ebnr;
  629. sector_t esector, nr_sectors;
  630. if (mdev->state.disk == D_UP_TO_DATE)
  631. return true;
  632. if (mdev->state.disk != D_INCONSISTENT)
  633. return false;
  634. esector = sector + (size >> 9) - 1;
  635. nr_sectors = drbd_get_capacity(mdev->this_bdev);
  636. D_ASSERT(sector < nr_sectors);
  637. D_ASSERT(esector < nr_sectors);
  638. sbnr = BM_SECT_TO_BIT(sector);
  639. ebnr = BM_SECT_TO_BIT(esector);
  640. return drbd_bm_count_bits(mdev, sbnr, ebnr) == 0;
  641. }
  642. static bool remote_due_to_read_balancing(struct drbd_conf *mdev, sector_t sector,
  643. enum drbd_read_balancing rbm)
  644. {
  645. struct backing_dev_info *bdi;
  646. int stripe_shift;
  647. switch (rbm) {
  648. case RB_CONGESTED_REMOTE:
  649. bdi = &mdev->ldev->backing_bdev->bd_disk->queue->backing_dev_info;
  650. return bdi_read_congested(bdi);
  651. case RB_LEAST_PENDING:
  652. return atomic_read(&mdev->local_cnt) >
  653. atomic_read(&mdev->ap_pending_cnt) + atomic_read(&mdev->rs_pending_cnt);
  654. case RB_32K_STRIPING: /* stripe_shift = 15 */
  655. case RB_64K_STRIPING:
  656. case RB_128K_STRIPING:
  657. case RB_256K_STRIPING:
  658. case RB_512K_STRIPING:
  659. case RB_1M_STRIPING: /* stripe_shift = 20 */
  660. stripe_shift = (rbm - RB_32K_STRIPING + 15);
  661. return (sector >> (stripe_shift - 9)) & 1;
  662. case RB_ROUND_ROBIN:
  663. return test_and_change_bit(READ_BALANCE_RR, &mdev->flags);
  664. case RB_PREFER_REMOTE:
  665. return true;
  666. case RB_PREFER_LOCAL:
  667. default:
  668. return false;
  669. }
  670. }
  671. /*
  672. * complete_conflicting_writes - wait for any conflicting write requests
  673. *
  674. * The write_requests tree contains all active write requests which we
  675. * currently know about. Wait for any requests to complete which conflict with
  676. * the new one.
  677. *
  678. * Only way out: remove the conflicting intervals from the tree.
  679. */
  680. static void complete_conflicting_writes(struct drbd_request *req)
  681. {
  682. DEFINE_WAIT(wait);
  683. struct drbd_conf *mdev = req->w.mdev;
  684. struct drbd_interval *i;
  685. sector_t sector = req->i.sector;
  686. int size = req->i.size;
  687. i = drbd_find_overlap(&mdev->write_requests, sector, size);
  688. if (!i)
  689. return;
  690. for (;;) {
  691. prepare_to_wait(&mdev->misc_wait, &wait, TASK_UNINTERRUPTIBLE);
  692. i = drbd_find_overlap(&mdev->write_requests, sector, size);
  693. if (!i)
  694. break;
  695. /* Indicate to wake up device->misc_wait on progress. */
  696. i->waiting = true;
  697. spin_unlock_irq(&mdev->tconn->req_lock);
  698. schedule();
  699. spin_lock_irq(&mdev->tconn->req_lock);
  700. }
  701. finish_wait(&mdev->misc_wait, &wait);
  702. }
  703. /* called within req_lock and rcu_read_lock() */
  704. static bool conn_check_congested(struct drbd_conf *mdev)
  705. {
  706. struct drbd_tconn *tconn = mdev->tconn;
  707. struct net_conf *nc;
  708. bool congested = false;
  709. enum drbd_on_congestion on_congestion;
  710. nc = rcu_dereference(tconn->net_conf);
  711. on_congestion = nc ? nc->on_congestion : OC_BLOCK;
  712. if (on_congestion == OC_BLOCK ||
  713. tconn->agreed_pro_version < 96)
  714. return false;
  715. if (nc->cong_fill &&
  716. atomic_read(&mdev->ap_in_flight) >= nc->cong_fill) {
  717. dev_info(DEV, "Congestion-fill threshold reached\n");
  718. congested = true;
  719. }
  720. if (mdev->act_log->used >= nc->cong_extents) {
  721. dev_info(DEV, "Congestion-extents threshold reached\n");
  722. congested = true;
  723. }
  724. if (congested) {
  725. if (mdev->tconn->current_tle_writes)
  726. /* start a new epoch for non-mirrored writes */
  727. start_new_tl_epoch(mdev->tconn);
  728. if (on_congestion == OC_PULL_AHEAD)
  729. _drbd_set_state(_NS(mdev, conn, C_AHEAD), 0, NULL);
  730. else /*nc->on_congestion == OC_DISCONNECT */
  731. _drbd_set_state(_NS(mdev, conn, C_DISCONNECTING), 0, NULL);
  732. }
  733. return congested;
  734. }
  735. /* If this returns false, and req->private_bio is still set,
  736. * this should be submitted locally.
  737. *
  738. * If it returns false, but req->private_bio is not set,
  739. * we do not have access to good data :(
  740. *
  741. * Otherwise, this destroys req->private_bio, if any,
  742. * and returns true.
  743. */
  744. static bool do_remote_read(struct drbd_request *req)
  745. {
  746. struct drbd_conf *mdev = req->w.mdev;
  747. enum drbd_read_balancing rbm;
  748. if (req->private_bio) {
  749. if (!drbd_may_do_local_read(mdev,
  750. req->i.sector, req->i.size)) {
  751. bio_put(req->private_bio);
  752. req->private_bio = NULL;
  753. put_ldev(mdev);
  754. }
  755. }
  756. if (mdev->state.pdsk != D_UP_TO_DATE)
  757. return false;
  758. if (req->private_bio == NULL)
  759. return true;
  760. /* TODO: improve read balancing decisions, take into account drbd
  761. * protocol, pending requests etc. */
  762. rcu_read_lock();
  763. rbm = rcu_dereference(mdev->ldev->disk_conf)->read_balancing;
  764. rcu_read_unlock();
  765. if (rbm == RB_PREFER_LOCAL && req->private_bio)
  766. return false; /* submit locally */
  767. if (remote_due_to_read_balancing(mdev, req->i.sector, rbm)) {
  768. if (req->private_bio) {
  769. bio_put(req->private_bio);
  770. req->private_bio = NULL;
  771. put_ldev(mdev);
  772. }
  773. return true;
  774. }
  775. return false;
  776. }
  777. /* returns number of connections (== 1, for drbd 8.4)
  778. * expected to actually write this data,
  779. * which does NOT include those that we are L_AHEAD for. */
  780. static int drbd_process_write_request(struct drbd_request *req)
  781. {
  782. struct drbd_conf *mdev = req->w.mdev;
  783. int remote, send_oos;
  784. rcu_read_lock();
  785. remote = drbd_should_do_remote(mdev->state);
  786. if (remote) {
  787. conn_check_congested(mdev);
  788. remote = drbd_should_do_remote(mdev->state);
  789. }
  790. send_oos = drbd_should_send_out_of_sync(mdev->state);
  791. rcu_read_unlock();
  792. if (!remote && !send_oos)
  793. return 0;
  794. D_ASSERT(!(remote && send_oos));
  795. if (remote) {
  796. _req_mod(req, TO_BE_SENT);
  797. _req_mod(req, QUEUE_FOR_NET_WRITE);
  798. } else if (drbd_set_out_of_sync(mdev, req->i.sector, req->i.size))
  799. _req_mod(req, QUEUE_FOR_SEND_OOS);
  800. return remote;
  801. }
  802. static void
  803. drbd_submit_req_private_bio(struct drbd_request *req)
  804. {
  805. struct drbd_conf *mdev = req->w.mdev;
  806. struct bio *bio = req->private_bio;
  807. const int rw = bio_rw(bio);
  808. bio->bi_bdev = mdev->ldev->backing_bdev;
  809. /* State may have changed since we grabbed our reference on the
  810. * ->ldev member. Double check, and short-circuit to endio.
  811. * In case the last activity log transaction failed to get on
  812. * stable storage, and this is a WRITE, we may not even submit
  813. * this bio. */
  814. if (get_ldev(mdev)) {
  815. if (drbd_insert_fault(mdev,
  816. rw == WRITE ? DRBD_FAULT_DT_WR
  817. : rw == READ ? DRBD_FAULT_DT_RD
  818. : DRBD_FAULT_DT_RA))
  819. bio_endio(bio, -EIO);
  820. else
  821. generic_make_request(bio);
  822. put_ldev(mdev);
  823. } else
  824. bio_endio(bio, -EIO);
  825. }
  826. void __drbd_make_request(struct drbd_conf *mdev, struct bio *bio, unsigned long start_time)
  827. {
  828. const int rw = bio_rw(bio);
  829. struct bio_and_error m = { NULL, };
  830. struct drbd_request *req;
  831. bool no_remote = false;
  832. /* allocate outside of all locks; */
  833. req = drbd_req_new(mdev, bio);
  834. if (!req) {
  835. dec_ap_bio(mdev);
  836. /* only pass the error to the upper layers.
  837. * if user cannot handle io errors, that's not our business. */
  838. dev_err(DEV, "could not kmalloc() req\n");
  839. bio_endio(bio, -ENOMEM);
  840. return;
  841. }
  842. req->start_time = start_time;
  843. if (!get_ldev(mdev)) {
  844. bio_put(req->private_bio);
  845. req->private_bio = NULL;
  846. }
  847. /* For WRITES going to the local disk, grab a reference on the target
  848. * extent. This waits for any resync activity in the corresponding
  849. * resync extent to finish, and, if necessary, pulls in the target
  850. * extent into the activity log, which involves further disk io because
  851. * of transactional on-disk meta data updates. */
  852. if (rw == WRITE && req->private_bio
  853. && !test_bit(AL_SUSPENDED, &mdev->flags)) {
  854. req->rq_state |= RQ_IN_ACT_LOG;
  855. drbd_al_begin_io(mdev, &req->i);
  856. }
  857. spin_lock_irq(&mdev->tconn->req_lock);
  858. if (rw == WRITE) {
  859. /* This may temporarily give up the req_lock,
  860. * but will re-aquire it before it returns here.
  861. * Needs to be before the check on drbd_suspended() */
  862. complete_conflicting_writes(req);
  863. }
  864. /* no more giving up req_lock from now on! */
  865. if (drbd_suspended(mdev)) {
  866. /* push back and retry: */
  867. req->rq_state |= RQ_POSTPONED;
  868. if (req->private_bio) {
  869. bio_put(req->private_bio);
  870. req->private_bio = NULL;
  871. }
  872. goto out;
  873. }
  874. /* Update disk stats */
  875. _drbd_start_io_acct(mdev, req, bio);
  876. /* We fail READ/READA early, if we can not serve it.
  877. * We must do this before req is registered on any lists.
  878. * Otherwise, drbd_req_complete() will queue failed READ for retry. */
  879. if (rw != WRITE) {
  880. if (!do_remote_read(req) && !req->private_bio)
  881. goto nodata;
  882. }
  883. /* which transfer log epoch does this belong to? */
  884. req->epoch = atomic_read(&mdev->tconn->current_tle_nr);
  885. if (rw == WRITE)
  886. mdev->tconn->current_tle_writes++;
  887. list_add_tail(&req->tl_requests, &mdev->tconn->transfer_log);
  888. if (rw == WRITE) {
  889. if (!drbd_process_write_request(req))
  890. no_remote = true;
  891. } else {
  892. /* We either have a private_bio, or we can read from remote.
  893. * Otherwise we had done the goto nodata above. */
  894. if (req->private_bio == NULL) {
  895. _req_mod(req, TO_BE_SENT);
  896. _req_mod(req, QUEUE_FOR_NET_READ);
  897. } else
  898. no_remote = true;
  899. }
  900. if (req->private_bio) {
  901. /* needs to be marked within the same spinlock */
  902. _req_mod(req, TO_BE_SUBMITTED);
  903. /* but we need to give up the spinlock to submit */
  904. spin_unlock_irq(&mdev->tconn->req_lock);
  905. drbd_submit_req_private_bio(req);
  906. spin_lock_irq(&mdev->tconn->req_lock);
  907. } else if (no_remote) {
  908. nodata:
  909. if (__ratelimit(&drbd_ratelimit_state))
  910. dev_err(DEV, "IO ERROR: neither local nor remote disk\n");
  911. /* A write may have been queued for send_oos, however.
  912. * So we can not simply free it, we must go through drbd_req_put_completion_ref() */
  913. }
  914. out:
  915. if (drbd_req_put_completion_ref(req, &m, 1))
  916. kref_put(&req->kref, drbd_req_destroy);
  917. spin_unlock_irq(&mdev->tconn->req_lock);
  918. if (m.bio)
  919. complete_master_bio(mdev, &m);
  920. return;
  921. }
  922. int drbd_make_request(struct request_queue *q, struct bio *bio)
  923. {
  924. struct drbd_conf *mdev = (struct drbd_conf *) q->queuedata;
  925. unsigned long start_time;
  926. start_time = jiffies;
  927. /*
  928. * what we "blindly" assume:
  929. */
  930. D_ASSERT(bio->bi_size > 0);
  931. D_ASSERT(IS_ALIGNED(bio->bi_size, 512));
  932. inc_ap_bio(mdev);
  933. __drbd_make_request(mdev, bio, start_time);
  934. return 0;
  935. }
  936. /* This is called by bio_add_page().
  937. *
  938. * q->max_hw_sectors and other global limits are already enforced there.
  939. *
  940. * We need to call down to our lower level device,
  941. * in case it has special restrictions.
  942. *
  943. * We also may need to enforce configured max-bio-bvecs limits.
  944. *
  945. * As long as the BIO is empty we have to allow at least one bvec,
  946. * regardless of size and offset, so no need to ask lower levels.
  947. */
  948. int drbd_merge_bvec(struct request_queue *q, struct bvec_merge_data *bvm, struct bio_vec *bvec)
  949. {
  950. struct drbd_conf *mdev = (struct drbd_conf *) q->queuedata;
  951. unsigned int bio_size = bvm->bi_size;
  952. int limit = DRBD_MAX_BIO_SIZE;
  953. int backing_limit;
  954. if (bio_size && get_ldev(mdev)) {
  955. struct request_queue * const b =
  956. mdev->ldev->backing_bdev->bd_disk->queue;
  957. if (b->merge_bvec_fn) {
  958. backing_limit = b->merge_bvec_fn(b, bvm, bvec);
  959. limit = min(limit, backing_limit);
  960. }
  961. put_ldev(mdev);
  962. }
  963. return limit;
  964. }
  965. struct drbd_request *find_oldest_request(struct drbd_tconn *tconn)
  966. {
  967. /* Walk the transfer log,
  968. * and find the oldest not yet completed request */
  969. struct drbd_request *r;
  970. list_for_each_entry(r, &tconn->transfer_log, tl_requests) {
  971. if (atomic_read(&r->completion_ref))
  972. return r;
  973. }
  974. return NULL;
  975. }
  976. void request_timer_fn(unsigned long data)
  977. {
  978. struct drbd_conf *mdev = (struct drbd_conf *) data;
  979. struct drbd_tconn *tconn = mdev->tconn;
  980. struct drbd_request *req; /* oldest request */
  981. struct net_conf *nc;
  982. unsigned long ent = 0, dt = 0, et, nt; /* effective timeout = ko_count * timeout */
  983. unsigned long now;
  984. rcu_read_lock();
  985. nc = rcu_dereference(tconn->net_conf);
  986. if (nc && mdev->state.conn >= C_WF_REPORT_PARAMS)
  987. ent = nc->timeout * HZ/10 * nc->ko_count;
  988. if (get_ldev(mdev)) { /* implicit state.disk >= D_INCONSISTENT */
  989. dt = rcu_dereference(mdev->ldev->disk_conf)->disk_timeout * HZ / 10;
  990. put_ldev(mdev);
  991. }
  992. rcu_read_unlock();
  993. et = min_not_zero(dt, ent);
  994. if (!et)
  995. return; /* Recurring timer stopped */
  996. now = jiffies;
  997. spin_lock_irq(&tconn->req_lock);
  998. req = find_oldest_request(tconn);
  999. if (!req) {
  1000. spin_unlock_irq(&tconn->req_lock);
  1001. mod_timer(&mdev->request_timer, now + et);
  1002. return;
  1003. }
  1004. /* The request is considered timed out, if
  1005. * - we have some effective timeout from the configuration,
  1006. * with above state restrictions applied,
  1007. * - the oldest request is waiting for a response from the network
  1008. * resp. the local disk,
  1009. * - the oldest request is in fact older than the effective timeout,
  1010. * - the connection was established (resp. disk was attached)
  1011. * for longer than the timeout already.
  1012. * Note that for 32bit jiffies and very stable connections/disks,
  1013. * we may have a wrap around, which is catched by
  1014. * !time_in_range(now, last_..._jif, last_..._jif + timeout).
  1015. *
  1016. * Side effect: once per 32bit wrap-around interval, which means every
  1017. * ~198 days with 250 HZ, we have a window where the timeout would need
  1018. * to expire twice (worst case) to become effective. Good enough.
  1019. */
  1020. if (ent && req->rq_state & RQ_NET_PENDING &&
  1021. time_after(now, req->start_time + ent) &&
  1022. !time_in_range(now, tconn->last_reconnect_jif, tconn->last_reconnect_jif + ent)) {
  1023. dev_warn(DEV, "Remote failed to finish a request within ko-count * timeout\n");
  1024. _drbd_set_state(_NS(mdev, conn, C_TIMEOUT), CS_VERBOSE | CS_HARD, NULL);
  1025. }
  1026. if (dt && req->rq_state & RQ_LOCAL_PENDING && req->w.mdev == mdev &&
  1027. time_after(now, req->start_time + dt) &&
  1028. !time_in_range(now, mdev->last_reattach_jif, mdev->last_reattach_jif + dt)) {
  1029. dev_warn(DEV, "Local backing device failed to meet the disk-timeout\n");
  1030. __drbd_chk_io_error(mdev, 1);
  1031. }
  1032. nt = (time_after(now, req->start_time + et) ? now : req->start_time) + et;
  1033. spin_unlock_irq(&tconn->req_lock);
  1034. mod_timer(&mdev->request_timer, nt);
  1035. }