drbd_actlog.c 38 KB

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  1. /*
  2. drbd_actlog.c
  3. This file is part of DRBD by Philipp Reisner and Lars Ellenberg.
  4. Copyright (C) 2003-2008, LINBIT Information Technologies GmbH.
  5. Copyright (C) 2003-2008, Philipp Reisner <philipp.reisner@linbit.com>.
  6. Copyright (C) 2003-2008, 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/slab.h>
  20. #include <linux/drbd.h>
  21. #include "drbd_int.h"
  22. #include "drbd_wrappers.h"
  23. /* We maintain a trivial check sum in our on disk activity log.
  24. * With that we can ensure correct operation even when the storage
  25. * device might do a partial (last) sector write while loosing power.
  26. */
  27. struct __packed al_transaction {
  28. u32 magic;
  29. u32 tr_number;
  30. struct __packed {
  31. u32 pos;
  32. u32 extent; } updates[1 + AL_EXTENTS_PT];
  33. u32 xor_sum;
  34. };
  35. struct update_odbm_work {
  36. struct drbd_work w;
  37. unsigned int enr;
  38. };
  39. struct update_al_work {
  40. struct drbd_work w;
  41. struct lc_element *al_ext;
  42. struct completion event;
  43. unsigned int enr;
  44. /* if old_enr != LC_FREE, write corresponding bitmap sector, too */
  45. unsigned int old_enr;
  46. };
  47. struct drbd_atodb_wait {
  48. atomic_t count;
  49. struct completion io_done;
  50. struct drbd_conf *mdev;
  51. int error;
  52. };
  53. int w_al_write_transaction(struct drbd_conf *, struct drbd_work *, int);
  54. static int _drbd_md_sync_page_io(struct drbd_conf *mdev,
  55. struct drbd_backing_dev *bdev,
  56. struct page *page, sector_t sector,
  57. int rw, int size)
  58. {
  59. struct bio *bio;
  60. struct drbd_md_io md_io;
  61. int ok;
  62. md_io.mdev = mdev;
  63. init_completion(&md_io.event);
  64. md_io.error = 0;
  65. if ((rw & WRITE) && !test_bit(MD_NO_BARRIER, &mdev->flags))
  66. rw |= REQ_HARDBARRIER;
  67. rw |= REQ_UNPLUG | REQ_SYNC;
  68. retry:
  69. bio = bio_alloc(GFP_NOIO, 1);
  70. bio->bi_bdev = bdev->md_bdev;
  71. bio->bi_sector = sector;
  72. ok = (bio_add_page(bio, page, size, 0) == size);
  73. if (!ok)
  74. goto out;
  75. bio->bi_private = &md_io;
  76. bio->bi_end_io = drbd_md_io_complete;
  77. bio->bi_rw = rw;
  78. if (FAULT_ACTIVE(mdev, (rw & WRITE) ? DRBD_FAULT_MD_WR : DRBD_FAULT_MD_RD))
  79. bio_endio(bio, -EIO);
  80. else
  81. submit_bio(rw, bio);
  82. wait_for_completion(&md_io.event);
  83. ok = bio_flagged(bio, BIO_UPTODATE) && md_io.error == 0;
  84. /* check for unsupported barrier op.
  85. * would rather check on EOPNOTSUPP, but that is not reliable.
  86. * don't try again for ANY return value != 0 */
  87. if (unlikely((bio->bi_rw & REQ_HARDBARRIER) && !ok)) {
  88. /* Try again with no barrier */
  89. dev_warn(DEV, "Barriers not supported on meta data device - disabling\n");
  90. set_bit(MD_NO_BARRIER, &mdev->flags);
  91. rw &= ~REQ_HARDBARRIER;
  92. bio_put(bio);
  93. goto retry;
  94. }
  95. out:
  96. bio_put(bio);
  97. return ok;
  98. }
  99. int drbd_md_sync_page_io(struct drbd_conf *mdev, struct drbd_backing_dev *bdev,
  100. sector_t sector, int rw)
  101. {
  102. int logical_block_size, mask, ok;
  103. int offset = 0;
  104. struct page *iop = mdev->md_io_page;
  105. D_ASSERT(mutex_is_locked(&mdev->md_io_mutex));
  106. BUG_ON(!bdev->md_bdev);
  107. logical_block_size = bdev_logical_block_size(bdev->md_bdev);
  108. if (logical_block_size == 0)
  109. logical_block_size = MD_SECTOR_SIZE;
  110. /* in case logical_block_size != 512 [ s390 only? ] */
  111. if (logical_block_size != MD_SECTOR_SIZE) {
  112. mask = (logical_block_size / MD_SECTOR_SIZE) - 1;
  113. D_ASSERT(mask == 1 || mask == 3 || mask == 7);
  114. D_ASSERT(logical_block_size == (mask+1) * MD_SECTOR_SIZE);
  115. offset = sector & mask;
  116. sector = sector & ~mask;
  117. iop = mdev->md_io_tmpp;
  118. if (rw & WRITE) {
  119. /* these are GFP_KERNEL pages, pre-allocated
  120. * on device initialization */
  121. void *p = page_address(mdev->md_io_page);
  122. void *hp = page_address(mdev->md_io_tmpp);
  123. ok = _drbd_md_sync_page_io(mdev, bdev, iop, sector,
  124. READ, logical_block_size);
  125. if (unlikely(!ok)) {
  126. dev_err(DEV, "drbd_md_sync_page_io(,%llus,"
  127. "READ [logical_block_size!=512]) failed!\n",
  128. (unsigned long long)sector);
  129. return 0;
  130. }
  131. memcpy(hp + offset*MD_SECTOR_SIZE, p, MD_SECTOR_SIZE);
  132. }
  133. }
  134. if (sector < drbd_md_first_sector(bdev) ||
  135. sector > drbd_md_last_sector(bdev))
  136. dev_alert(DEV, "%s [%d]:%s(,%llus,%s) out of range md access!\n",
  137. current->comm, current->pid, __func__,
  138. (unsigned long long)sector, (rw & WRITE) ? "WRITE" : "READ");
  139. ok = _drbd_md_sync_page_io(mdev, bdev, iop, sector, rw, logical_block_size);
  140. if (unlikely(!ok)) {
  141. dev_err(DEV, "drbd_md_sync_page_io(,%llus,%s) failed!\n",
  142. (unsigned long long)sector, (rw & WRITE) ? "WRITE" : "READ");
  143. return 0;
  144. }
  145. if (logical_block_size != MD_SECTOR_SIZE && !(rw & WRITE)) {
  146. void *p = page_address(mdev->md_io_page);
  147. void *hp = page_address(mdev->md_io_tmpp);
  148. memcpy(p, hp + offset*MD_SECTOR_SIZE, MD_SECTOR_SIZE);
  149. }
  150. return ok;
  151. }
  152. static struct lc_element *_al_get(struct drbd_conf *mdev, unsigned int enr)
  153. {
  154. struct lc_element *al_ext;
  155. struct lc_element *tmp;
  156. unsigned long al_flags = 0;
  157. spin_lock_irq(&mdev->al_lock);
  158. tmp = lc_find(mdev->resync, enr/AL_EXT_PER_BM_SECT);
  159. if (unlikely(tmp != NULL)) {
  160. struct bm_extent *bm_ext = lc_entry(tmp, struct bm_extent, lce);
  161. if (test_bit(BME_NO_WRITES, &bm_ext->flags)) {
  162. spin_unlock_irq(&mdev->al_lock);
  163. return NULL;
  164. }
  165. }
  166. al_ext = lc_get(mdev->act_log, enr);
  167. al_flags = mdev->act_log->flags;
  168. spin_unlock_irq(&mdev->al_lock);
  169. /*
  170. if (!al_ext) {
  171. if (al_flags & LC_STARVING)
  172. dev_warn(DEV, "Have to wait for LRU element (AL too small?)\n");
  173. if (al_flags & LC_DIRTY)
  174. dev_warn(DEV, "Ongoing AL update (AL device too slow?)\n");
  175. }
  176. */
  177. return al_ext;
  178. }
  179. void drbd_al_begin_io(struct drbd_conf *mdev, sector_t sector)
  180. {
  181. unsigned int enr = (sector >> (AL_EXTENT_SHIFT-9));
  182. struct lc_element *al_ext;
  183. struct update_al_work al_work;
  184. D_ASSERT(atomic_read(&mdev->local_cnt) > 0);
  185. wait_event(mdev->al_wait, (al_ext = _al_get(mdev, enr)));
  186. if (al_ext->lc_number != enr) {
  187. /* drbd_al_write_transaction(mdev,al_ext,enr);
  188. * recurses into generic_make_request(), which
  189. * disallows recursion, bios being serialized on the
  190. * current->bio_tail list now.
  191. * we have to delegate updates to the activity log
  192. * to the worker thread. */
  193. init_completion(&al_work.event);
  194. al_work.al_ext = al_ext;
  195. al_work.enr = enr;
  196. al_work.old_enr = al_ext->lc_number;
  197. al_work.w.cb = w_al_write_transaction;
  198. drbd_queue_work_front(&mdev->data.work, &al_work.w);
  199. wait_for_completion(&al_work.event);
  200. mdev->al_writ_cnt++;
  201. spin_lock_irq(&mdev->al_lock);
  202. lc_changed(mdev->act_log, al_ext);
  203. spin_unlock_irq(&mdev->al_lock);
  204. wake_up(&mdev->al_wait);
  205. }
  206. }
  207. void drbd_al_complete_io(struct drbd_conf *mdev, sector_t sector)
  208. {
  209. unsigned int enr = (sector >> (AL_EXTENT_SHIFT-9));
  210. struct lc_element *extent;
  211. unsigned long flags;
  212. spin_lock_irqsave(&mdev->al_lock, flags);
  213. extent = lc_find(mdev->act_log, enr);
  214. if (!extent) {
  215. spin_unlock_irqrestore(&mdev->al_lock, flags);
  216. dev_err(DEV, "al_complete_io() called on inactive extent %u\n", enr);
  217. return;
  218. }
  219. if (lc_put(mdev->act_log, extent) == 0)
  220. wake_up(&mdev->al_wait);
  221. spin_unlock_irqrestore(&mdev->al_lock, flags);
  222. }
  223. int
  224. w_al_write_transaction(struct drbd_conf *mdev, struct drbd_work *w, int unused)
  225. {
  226. struct update_al_work *aw = container_of(w, struct update_al_work, w);
  227. struct lc_element *updated = aw->al_ext;
  228. const unsigned int new_enr = aw->enr;
  229. const unsigned int evicted = aw->old_enr;
  230. struct al_transaction *buffer;
  231. sector_t sector;
  232. int i, n, mx;
  233. unsigned int extent_nr;
  234. u32 xor_sum = 0;
  235. if (!get_ldev(mdev)) {
  236. dev_err(DEV, "get_ldev() failed in w_al_write_transaction\n");
  237. complete(&((struct update_al_work *)w)->event);
  238. return 1;
  239. }
  240. /* do we have to do a bitmap write, first?
  241. * TODO reduce maximum latency:
  242. * submit both bios, then wait for both,
  243. * instead of doing two synchronous sector writes. */
  244. if (mdev->state.conn < C_CONNECTED && evicted != LC_FREE)
  245. drbd_bm_write_sect(mdev, evicted/AL_EXT_PER_BM_SECT);
  246. mutex_lock(&mdev->md_io_mutex); /* protects md_io_page, al_tr_cycle, ... */
  247. buffer = (struct al_transaction *)page_address(mdev->md_io_page);
  248. buffer->magic = __constant_cpu_to_be32(DRBD_MAGIC);
  249. buffer->tr_number = cpu_to_be32(mdev->al_tr_number);
  250. n = lc_index_of(mdev->act_log, updated);
  251. buffer->updates[0].pos = cpu_to_be32(n);
  252. buffer->updates[0].extent = cpu_to_be32(new_enr);
  253. xor_sum ^= new_enr;
  254. mx = min_t(int, AL_EXTENTS_PT,
  255. mdev->act_log->nr_elements - mdev->al_tr_cycle);
  256. for (i = 0; i < mx; i++) {
  257. unsigned idx = mdev->al_tr_cycle + i;
  258. extent_nr = lc_element_by_index(mdev->act_log, idx)->lc_number;
  259. buffer->updates[i+1].pos = cpu_to_be32(idx);
  260. buffer->updates[i+1].extent = cpu_to_be32(extent_nr);
  261. xor_sum ^= extent_nr;
  262. }
  263. for (; i < AL_EXTENTS_PT; i++) {
  264. buffer->updates[i+1].pos = __constant_cpu_to_be32(-1);
  265. buffer->updates[i+1].extent = __constant_cpu_to_be32(LC_FREE);
  266. xor_sum ^= LC_FREE;
  267. }
  268. mdev->al_tr_cycle += AL_EXTENTS_PT;
  269. if (mdev->al_tr_cycle >= mdev->act_log->nr_elements)
  270. mdev->al_tr_cycle = 0;
  271. buffer->xor_sum = cpu_to_be32(xor_sum);
  272. sector = mdev->ldev->md.md_offset
  273. + mdev->ldev->md.al_offset + mdev->al_tr_pos;
  274. if (!drbd_md_sync_page_io(mdev, mdev->ldev, sector, WRITE))
  275. drbd_chk_io_error(mdev, 1, TRUE);
  276. if (++mdev->al_tr_pos >
  277. div_ceil(mdev->act_log->nr_elements, AL_EXTENTS_PT))
  278. mdev->al_tr_pos = 0;
  279. D_ASSERT(mdev->al_tr_pos < MD_AL_MAX_SIZE);
  280. mdev->al_tr_number++;
  281. mutex_unlock(&mdev->md_io_mutex);
  282. complete(&((struct update_al_work *)w)->event);
  283. put_ldev(mdev);
  284. return 1;
  285. }
  286. /**
  287. * drbd_al_read_tr() - Read a single transaction from the on disk activity log
  288. * @mdev: DRBD device.
  289. * @bdev: Block device to read form.
  290. * @b: pointer to an al_transaction.
  291. * @index: On disk slot of the transaction to read.
  292. *
  293. * Returns -1 on IO error, 0 on checksum error and 1 upon success.
  294. */
  295. static int drbd_al_read_tr(struct drbd_conf *mdev,
  296. struct drbd_backing_dev *bdev,
  297. struct al_transaction *b,
  298. int index)
  299. {
  300. sector_t sector;
  301. int rv, i;
  302. u32 xor_sum = 0;
  303. sector = bdev->md.md_offset + bdev->md.al_offset + index;
  304. /* Dont process error normally,
  305. * as this is done before disk is attached! */
  306. if (!drbd_md_sync_page_io(mdev, bdev, sector, READ))
  307. return -1;
  308. rv = (be32_to_cpu(b->magic) == DRBD_MAGIC);
  309. for (i = 0; i < AL_EXTENTS_PT + 1; i++)
  310. xor_sum ^= be32_to_cpu(b->updates[i].extent);
  311. rv &= (xor_sum == be32_to_cpu(b->xor_sum));
  312. return rv;
  313. }
  314. /**
  315. * drbd_al_read_log() - Restores the activity log from its on disk representation.
  316. * @mdev: DRBD device.
  317. * @bdev: Block device to read form.
  318. *
  319. * Returns 1 on success, returns 0 when reading the log failed due to IO errors.
  320. */
  321. int drbd_al_read_log(struct drbd_conf *mdev, struct drbd_backing_dev *bdev)
  322. {
  323. struct al_transaction *buffer;
  324. int i;
  325. int rv;
  326. int mx;
  327. int active_extents = 0;
  328. int transactions = 0;
  329. int found_valid = 0;
  330. int from = 0;
  331. int to = 0;
  332. u32 from_tnr = 0;
  333. u32 to_tnr = 0;
  334. u32 cnr;
  335. mx = div_ceil(mdev->act_log->nr_elements, AL_EXTENTS_PT);
  336. /* lock out all other meta data io for now,
  337. * and make sure the page is mapped.
  338. */
  339. mutex_lock(&mdev->md_io_mutex);
  340. buffer = page_address(mdev->md_io_page);
  341. /* Find the valid transaction in the log */
  342. for (i = 0; i <= mx; i++) {
  343. rv = drbd_al_read_tr(mdev, bdev, buffer, i);
  344. if (rv == 0)
  345. continue;
  346. if (rv == -1) {
  347. mutex_unlock(&mdev->md_io_mutex);
  348. return 0;
  349. }
  350. cnr = be32_to_cpu(buffer->tr_number);
  351. if (++found_valid == 1) {
  352. from = i;
  353. to = i;
  354. from_tnr = cnr;
  355. to_tnr = cnr;
  356. continue;
  357. }
  358. if ((int)cnr - (int)from_tnr < 0) {
  359. D_ASSERT(from_tnr - cnr + i - from == mx+1);
  360. from = i;
  361. from_tnr = cnr;
  362. }
  363. if ((int)cnr - (int)to_tnr > 0) {
  364. D_ASSERT(cnr - to_tnr == i - to);
  365. to = i;
  366. to_tnr = cnr;
  367. }
  368. }
  369. if (!found_valid) {
  370. dev_warn(DEV, "No usable activity log found.\n");
  371. mutex_unlock(&mdev->md_io_mutex);
  372. return 1;
  373. }
  374. /* Read the valid transactions.
  375. * dev_info(DEV, "Reading from %d to %d.\n",from,to); */
  376. i = from;
  377. while (1) {
  378. int j, pos;
  379. unsigned int extent_nr;
  380. unsigned int trn;
  381. rv = drbd_al_read_tr(mdev, bdev, buffer, i);
  382. ERR_IF(rv == 0) goto cancel;
  383. if (rv == -1) {
  384. mutex_unlock(&mdev->md_io_mutex);
  385. return 0;
  386. }
  387. trn = be32_to_cpu(buffer->tr_number);
  388. spin_lock_irq(&mdev->al_lock);
  389. /* This loop runs backwards because in the cyclic
  390. elements there might be an old version of the
  391. updated element (in slot 0). So the element in slot 0
  392. can overwrite old versions. */
  393. for (j = AL_EXTENTS_PT; j >= 0; j--) {
  394. pos = be32_to_cpu(buffer->updates[j].pos);
  395. extent_nr = be32_to_cpu(buffer->updates[j].extent);
  396. if (extent_nr == LC_FREE)
  397. continue;
  398. lc_set(mdev->act_log, extent_nr, pos);
  399. active_extents++;
  400. }
  401. spin_unlock_irq(&mdev->al_lock);
  402. transactions++;
  403. cancel:
  404. if (i == to)
  405. break;
  406. i++;
  407. if (i > mx)
  408. i = 0;
  409. }
  410. mdev->al_tr_number = to_tnr+1;
  411. mdev->al_tr_pos = to;
  412. if (++mdev->al_tr_pos >
  413. div_ceil(mdev->act_log->nr_elements, AL_EXTENTS_PT))
  414. mdev->al_tr_pos = 0;
  415. /* ok, we are done with it */
  416. mutex_unlock(&mdev->md_io_mutex);
  417. dev_info(DEV, "Found %d transactions (%d active extents) in activity log.\n",
  418. transactions, active_extents);
  419. return 1;
  420. }
  421. static void atodb_endio(struct bio *bio, int error)
  422. {
  423. struct drbd_atodb_wait *wc = bio->bi_private;
  424. struct drbd_conf *mdev = wc->mdev;
  425. struct page *page;
  426. int uptodate = bio_flagged(bio, BIO_UPTODATE);
  427. /* strange behavior of some lower level drivers...
  428. * fail the request by clearing the uptodate flag,
  429. * but do not return any error?! */
  430. if (!error && !uptodate)
  431. error = -EIO;
  432. drbd_chk_io_error(mdev, error, TRUE);
  433. if (error && wc->error == 0)
  434. wc->error = error;
  435. if (atomic_dec_and_test(&wc->count))
  436. complete(&wc->io_done);
  437. page = bio->bi_io_vec[0].bv_page;
  438. put_page(page);
  439. bio_put(bio);
  440. mdev->bm_writ_cnt++;
  441. put_ldev(mdev);
  442. }
  443. /* sector to word */
  444. #define S2W(s) ((s)<<(BM_EXT_SHIFT-BM_BLOCK_SHIFT-LN2_BPL))
  445. /* activity log to on disk bitmap -- prepare bio unless that sector
  446. * is already covered by previously prepared bios */
  447. static int atodb_prepare_unless_covered(struct drbd_conf *mdev,
  448. struct bio **bios,
  449. unsigned int enr,
  450. struct drbd_atodb_wait *wc) __must_hold(local)
  451. {
  452. struct bio *bio;
  453. struct page *page;
  454. sector_t on_disk_sector;
  455. unsigned int page_offset = PAGE_SIZE;
  456. int offset;
  457. int i = 0;
  458. int err = -ENOMEM;
  459. /* We always write aligned, full 4k blocks,
  460. * so we can ignore the logical_block_size (for now) */
  461. enr &= ~7U;
  462. on_disk_sector = enr + mdev->ldev->md.md_offset
  463. + mdev->ldev->md.bm_offset;
  464. D_ASSERT(!(on_disk_sector & 7U));
  465. /* Check if that enr is already covered by an already created bio.
  466. * Caution, bios[] is not NULL terminated,
  467. * but only initialized to all NULL.
  468. * For completely scattered activity log,
  469. * the last invocation iterates over all bios,
  470. * and finds the last NULL entry.
  471. */
  472. while ((bio = bios[i])) {
  473. if (bio->bi_sector == on_disk_sector)
  474. return 0;
  475. i++;
  476. }
  477. /* bios[i] == NULL, the next not yet used slot */
  478. /* GFP_KERNEL, we are not in the write-out path */
  479. bio = bio_alloc(GFP_KERNEL, 1);
  480. if (bio == NULL)
  481. return -ENOMEM;
  482. if (i > 0) {
  483. const struct bio_vec *prev_bv = bios[i-1]->bi_io_vec;
  484. page_offset = prev_bv->bv_offset + prev_bv->bv_len;
  485. page = prev_bv->bv_page;
  486. }
  487. if (page_offset == PAGE_SIZE) {
  488. page = alloc_page(__GFP_HIGHMEM);
  489. if (page == NULL)
  490. goto out_bio_put;
  491. page_offset = 0;
  492. } else {
  493. get_page(page);
  494. }
  495. offset = S2W(enr);
  496. drbd_bm_get_lel(mdev, offset,
  497. min_t(size_t, S2W(8), drbd_bm_words(mdev) - offset),
  498. kmap(page) + page_offset);
  499. kunmap(page);
  500. bio->bi_private = wc;
  501. bio->bi_end_io = atodb_endio;
  502. bio->bi_bdev = mdev->ldev->md_bdev;
  503. bio->bi_sector = on_disk_sector;
  504. if (bio_add_page(bio, page, 4096, page_offset) != 4096)
  505. goto out_put_page;
  506. atomic_inc(&wc->count);
  507. /* we already know that we may do this...
  508. * get_ldev_if_state(mdev,D_ATTACHING);
  509. * just get the extra reference, so that the local_cnt reflects
  510. * the number of pending IO requests DRBD at its backing device.
  511. */
  512. atomic_inc(&mdev->local_cnt);
  513. bios[i] = bio;
  514. return 0;
  515. out_put_page:
  516. err = -EINVAL;
  517. put_page(page);
  518. out_bio_put:
  519. bio_put(bio);
  520. return err;
  521. }
  522. /**
  523. * drbd_al_to_on_disk_bm() - * Writes bitmap parts covered by active AL extents
  524. * @mdev: DRBD device.
  525. *
  526. * Called when we detach (unconfigure) local storage,
  527. * or when we go from R_PRIMARY to R_SECONDARY role.
  528. */
  529. void drbd_al_to_on_disk_bm(struct drbd_conf *mdev)
  530. {
  531. int i, nr_elements;
  532. unsigned int enr;
  533. struct bio **bios;
  534. struct drbd_atodb_wait wc;
  535. ERR_IF (!get_ldev_if_state(mdev, D_ATTACHING))
  536. return; /* sorry, I don't have any act_log etc... */
  537. wait_event(mdev->al_wait, lc_try_lock(mdev->act_log));
  538. nr_elements = mdev->act_log->nr_elements;
  539. /* GFP_KERNEL, we are not in anyone's write-out path */
  540. bios = kzalloc(sizeof(struct bio *) * nr_elements, GFP_KERNEL);
  541. if (!bios)
  542. goto submit_one_by_one;
  543. atomic_set(&wc.count, 0);
  544. init_completion(&wc.io_done);
  545. wc.mdev = mdev;
  546. wc.error = 0;
  547. for (i = 0; i < nr_elements; i++) {
  548. enr = lc_element_by_index(mdev->act_log, i)->lc_number;
  549. if (enr == LC_FREE)
  550. continue;
  551. /* next statement also does atomic_inc wc.count and local_cnt */
  552. if (atodb_prepare_unless_covered(mdev, bios,
  553. enr/AL_EXT_PER_BM_SECT,
  554. &wc))
  555. goto free_bios_submit_one_by_one;
  556. }
  557. /* unnecessary optimization? */
  558. lc_unlock(mdev->act_log);
  559. wake_up(&mdev->al_wait);
  560. /* all prepared, submit them */
  561. for (i = 0; i < nr_elements; i++) {
  562. if (bios[i] == NULL)
  563. break;
  564. if (FAULT_ACTIVE(mdev, DRBD_FAULT_MD_WR)) {
  565. bios[i]->bi_rw = WRITE;
  566. bio_endio(bios[i], -EIO);
  567. } else {
  568. submit_bio(WRITE, bios[i]);
  569. }
  570. }
  571. drbd_blk_run_queue(bdev_get_queue(mdev->ldev->md_bdev));
  572. /* always (try to) flush bitmap to stable storage */
  573. drbd_md_flush(mdev);
  574. /* In case we did not submit a single IO do not wait for
  575. * them to complete. ( Because we would wait forever here. )
  576. *
  577. * In case we had IOs and they are already complete, there
  578. * is not point in waiting anyways.
  579. * Therefore this if () ... */
  580. if (atomic_read(&wc.count))
  581. wait_for_completion(&wc.io_done);
  582. put_ldev(mdev);
  583. kfree(bios);
  584. return;
  585. free_bios_submit_one_by_one:
  586. /* free everything by calling the endio callback directly. */
  587. for (i = 0; i < nr_elements && bios[i]; i++)
  588. bio_endio(bios[i], 0);
  589. kfree(bios);
  590. submit_one_by_one:
  591. dev_warn(DEV, "Using the slow drbd_al_to_on_disk_bm()\n");
  592. for (i = 0; i < mdev->act_log->nr_elements; i++) {
  593. enr = lc_element_by_index(mdev->act_log, i)->lc_number;
  594. if (enr == LC_FREE)
  595. continue;
  596. /* Really slow: if we have al-extents 16..19 active,
  597. * sector 4 will be written four times! Synchronous! */
  598. drbd_bm_write_sect(mdev, enr/AL_EXT_PER_BM_SECT);
  599. }
  600. lc_unlock(mdev->act_log);
  601. wake_up(&mdev->al_wait);
  602. put_ldev(mdev);
  603. }
  604. /**
  605. * drbd_al_apply_to_bm() - Sets the bitmap to diry(1) where covered ba active AL extents
  606. * @mdev: DRBD device.
  607. */
  608. void drbd_al_apply_to_bm(struct drbd_conf *mdev)
  609. {
  610. unsigned int enr;
  611. unsigned long add = 0;
  612. char ppb[10];
  613. int i;
  614. wait_event(mdev->al_wait, lc_try_lock(mdev->act_log));
  615. for (i = 0; i < mdev->act_log->nr_elements; i++) {
  616. enr = lc_element_by_index(mdev->act_log, i)->lc_number;
  617. if (enr == LC_FREE)
  618. continue;
  619. add += drbd_bm_ALe_set_all(mdev, enr);
  620. }
  621. lc_unlock(mdev->act_log);
  622. wake_up(&mdev->al_wait);
  623. dev_info(DEV, "Marked additional %s as out-of-sync based on AL.\n",
  624. ppsize(ppb, Bit2KB(add)));
  625. }
  626. static int _try_lc_del(struct drbd_conf *mdev, struct lc_element *al_ext)
  627. {
  628. int rv;
  629. spin_lock_irq(&mdev->al_lock);
  630. rv = (al_ext->refcnt == 0);
  631. if (likely(rv))
  632. lc_del(mdev->act_log, al_ext);
  633. spin_unlock_irq(&mdev->al_lock);
  634. return rv;
  635. }
  636. /**
  637. * drbd_al_shrink() - Removes all active extents form the activity log
  638. * @mdev: DRBD device.
  639. *
  640. * Removes all active extents form the activity log, waiting until
  641. * the reference count of each entry dropped to 0 first, of course.
  642. *
  643. * You need to lock mdev->act_log with lc_try_lock() / lc_unlock()
  644. */
  645. void drbd_al_shrink(struct drbd_conf *mdev)
  646. {
  647. struct lc_element *al_ext;
  648. int i;
  649. D_ASSERT(test_bit(__LC_DIRTY, &mdev->act_log->flags));
  650. for (i = 0; i < mdev->act_log->nr_elements; i++) {
  651. al_ext = lc_element_by_index(mdev->act_log, i);
  652. if (al_ext->lc_number == LC_FREE)
  653. continue;
  654. wait_event(mdev->al_wait, _try_lc_del(mdev, al_ext));
  655. }
  656. wake_up(&mdev->al_wait);
  657. }
  658. static int w_update_odbm(struct drbd_conf *mdev, struct drbd_work *w, int unused)
  659. {
  660. struct update_odbm_work *udw = container_of(w, struct update_odbm_work, w);
  661. if (!get_ldev(mdev)) {
  662. if (__ratelimit(&drbd_ratelimit_state))
  663. dev_warn(DEV, "Can not update on disk bitmap, local IO disabled.\n");
  664. kfree(udw);
  665. return 1;
  666. }
  667. drbd_bm_write_sect(mdev, udw->enr);
  668. put_ldev(mdev);
  669. kfree(udw);
  670. if (drbd_bm_total_weight(mdev) <= mdev->rs_failed) {
  671. switch (mdev->state.conn) {
  672. case C_SYNC_SOURCE: case C_SYNC_TARGET:
  673. case C_PAUSED_SYNC_S: case C_PAUSED_SYNC_T:
  674. drbd_resync_finished(mdev);
  675. default:
  676. /* nothing to do */
  677. break;
  678. }
  679. }
  680. drbd_bcast_sync_progress(mdev);
  681. return 1;
  682. }
  683. /* ATTENTION. The AL's extents are 4MB each, while the extents in the
  684. * resync LRU-cache are 16MB each.
  685. * The caller of this function has to hold an get_ldev() reference.
  686. *
  687. * TODO will be obsoleted once we have a caching lru of the on disk bitmap
  688. */
  689. static void drbd_try_clear_on_disk_bm(struct drbd_conf *mdev, sector_t sector,
  690. int count, int success)
  691. {
  692. struct lc_element *e;
  693. struct update_odbm_work *udw;
  694. unsigned int enr;
  695. D_ASSERT(atomic_read(&mdev->local_cnt));
  696. /* I simply assume that a sector/size pair never crosses
  697. * a 16 MB extent border. (Currently this is true...) */
  698. enr = BM_SECT_TO_EXT(sector);
  699. e = lc_get(mdev->resync, enr);
  700. if (e) {
  701. struct bm_extent *ext = lc_entry(e, struct bm_extent, lce);
  702. if (ext->lce.lc_number == enr) {
  703. if (success)
  704. ext->rs_left -= count;
  705. else
  706. ext->rs_failed += count;
  707. if (ext->rs_left < ext->rs_failed) {
  708. dev_err(DEV, "BAD! sector=%llus enr=%u rs_left=%d "
  709. "rs_failed=%d count=%d\n",
  710. (unsigned long long)sector,
  711. ext->lce.lc_number, ext->rs_left,
  712. ext->rs_failed, count);
  713. dump_stack();
  714. lc_put(mdev->resync, &ext->lce);
  715. drbd_force_state(mdev, NS(conn, C_DISCONNECTING));
  716. return;
  717. }
  718. } else {
  719. /* Normally this element should be in the cache,
  720. * since drbd_rs_begin_io() pulled it already in.
  721. *
  722. * But maybe an application write finished, and we set
  723. * something outside the resync lru_cache in sync.
  724. */
  725. int rs_left = drbd_bm_e_weight(mdev, enr);
  726. if (ext->flags != 0) {
  727. dev_warn(DEV, "changing resync lce: %d[%u;%02lx]"
  728. " -> %d[%u;00]\n",
  729. ext->lce.lc_number, ext->rs_left,
  730. ext->flags, enr, rs_left);
  731. ext->flags = 0;
  732. }
  733. if (ext->rs_failed) {
  734. dev_warn(DEV, "Kicking resync_lru element enr=%u "
  735. "out with rs_failed=%d\n",
  736. ext->lce.lc_number, ext->rs_failed);
  737. set_bit(WRITE_BM_AFTER_RESYNC, &mdev->flags);
  738. }
  739. ext->rs_left = rs_left;
  740. ext->rs_failed = success ? 0 : count;
  741. lc_changed(mdev->resync, &ext->lce);
  742. }
  743. lc_put(mdev->resync, &ext->lce);
  744. /* no race, we are within the al_lock! */
  745. if (ext->rs_left == ext->rs_failed) {
  746. ext->rs_failed = 0;
  747. udw = kmalloc(sizeof(*udw), GFP_ATOMIC);
  748. if (udw) {
  749. udw->enr = ext->lce.lc_number;
  750. udw->w.cb = w_update_odbm;
  751. drbd_queue_work_front(&mdev->data.work, &udw->w);
  752. } else {
  753. dev_warn(DEV, "Could not kmalloc an udw\n");
  754. set_bit(WRITE_BM_AFTER_RESYNC, &mdev->flags);
  755. }
  756. }
  757. } else {
  758. dev_err(DEV, "lc_get() failed! locked=%d/%d flags=%lu\n",
  759. mdev->resync_locked,
  760. mdev->resync->nr_elements,
  761. mdev->resync->flags);
  762. }
  763. }
  764. /* clear the bit corresponding to the piece of storage in question:
  765. * size byte of data starting from sector. Only clear a bits of the affected
  766. * one ore more _aligned_ BM_BLOCK_SIZE blocks.
  767. *
  768. * called by worker on C_SYNC_TARGET and receiver on SyncSource.
  769. *
  770. */
  771. void __drbd_set_in_sync(struct drbd_conf *mdev, sector_t sector, int size,
  772. const char *file, const unsigned int line)
  773. {
  774. /* Is called from worker and receiver context _only_ */
  775. unsigned long sbnr, ebnr, lbnr;
  776. unsigned long count = 0;
  777. sector_t esector, nr_sectors;
  778. int wake_up = 0;
  779. unsigned long flags;
  780. if (size <= 0 || (size & 0x1ff) != 0 || size > DRBD_MAX_SEGMENT_SIZE) {
  781. dev_err(DEV, "drbd_set_in_sync: sector=%llus size=%d nonsense!\n",
  782. (unsigned long long)sector, size);
  783. return;
  784. }
  785. nr_sectors = drbd_get_capacity(mdev->this_bdev);
  786. esector = sector + (size >> 9) - 1;
  787. ERR_IF(sector >= nr_sectors) return;
  788. ERR_IF(esector >= nr_sectors) esector = (nr_sectors-1);
  789. lbnr = BM_SECT_TO_BIT(nr_sectors-1);
  790. /* we clear it (in sync).
  791. * round up start sector, round down end sector. we make sure we only
  792. * clear full, aligned, BM_BLOCK_SIZE (4K) blocks */
  793. if (unlikely(esector < BM_SECT_PER_BIT-1))
  794. return;
  795. if (unlikely(esector == (nr_sectors-1)))
  796. ebnr = lbnr;
  797. else
  798. ebnr = BM_SECT_TO_BIT(esector - (BM_SECT_PER_BIT-1));
  799. sbnr = BM_SECT_TO_BIT(sector + BM_SECT_PER_BIT-1);
  800. if (sbnr > ebnr)
  801. return;
  802. /*
  803. * ok, (capacity & 7) != 0 sometimes, but who cares...
  804. * we count rs_{total,left} in bits, not sectors.
  805. */
  806. count = drbd_bm_clear_bits(mdev, sbnr, ebnr);
  807. if (count && get_ldev(mdev)) {
  808. unsigned long now = jiffies;
  809. unsigned long last = mdev->rs_mark_time[mdev->rs_last_mark];
  810. int next = (mdev->rs_last_mark + 1) % DRBD_SYNC_MARKS;
  811. if (time_after_eq(now, last + DRBD_SYNC_MARK_STEP)) {
  812. unsigned long tw = drbd_bm_total_weight(mdev);
  813. if (mdev->rs_mark_left[mdev->rs_last_mark] != tw &&
  814. mdev->state.conn != C_PAUSED_SYNC_T &&
  815. mdev->state.conn != C_PAUSED_SYNC_S) {
  816. mdev->rs_mark_time[next] = now;
  817. mdev->rs_mark_left[next] = tw;
  818. mdev->rs_last_mark = next;
  819. }
  820. }
  821. spin_lock_irqsave(&mdev->al_lock, flags);
  822. drbd_try_clear_on_disk_bm(mdev, sector, count, TRUE);
  823. spin_unlock_irqrestore(&mdev->al_lock, flags);
  824. /* just wake_up unconditional now, various lc_chaged(),
  825. * lc_put() in drbd_try_clear_on_disk_bm(). */
  826. wake_up = 1;
  827. put_ldev(mdev);
  828. }
  829. if (wake_up)
  830. wake_up(&mdev->al_wait);
  831. }
  832. /*
  833. * this is intended to set one request worth of data out of sync.
  834. * affects at least 1 bit,
  835. * and at most 1+DRBD_MAX_SEGMENT_SIZE/BM_BLOCK_SIZE bits.
  836. *
  837. * called by tl_clear and drbd_send_dblock (==drbd_make_request).
  838. * so this can be _any_ process.
  839. */
  840. void __drbd_set_out_of_sync(struct drbd_conf *mdev, sector_t sector, int size,
  841. const char *file, const unsigned int line)
  842. {
  843. unsigned long sbnr, ebnr, lbnr, flags;
  844. sector_t esector, nr_sectors;
  845. unsigned int enr, count;
  846. struct lc_element *e;
  847. if (size <= 0 || (size & 0x1ff) != 0 || size > DRBD_MAX_SEGMENT_SIZE) {
  848. dev_err(DEV, "sector: %llus, size: %d\n",
  849. (unsigned long long)sector, size);
  850. return;
  851. }
  852. if (!get_ldev(mdev))
  853. return; /* no disk, no metadata, no bitmap to set bits in */
  854. nr_sectors = drbd_get_capacity(mdev->this_bdev);
  855. esector = sector + (size >> 9) - 1;
  856. ERR_IF(sector >= nr_sectors)
  857. goto out;
  858. ERR_IF(esector >= nr_sectors)
  859. esector = (nr_sectors-1);
  860. lbnr = BM_SECT_TO_BIT(nr_sectors-1);
  861. /* we set it out of sync,
  862. * we do not need to round anything here */
  863. sbnr = BM_SECT_TO_BIT(sector);
  864. ebnr = BM_SECT_TO_BIT(esector);
  865. /* ok, (capacity & 7) != 0 sometimes, but who cares...
  866. * we count rs_{total,left} in bits, not sectors. */
  867. spin_lock_irqsave(&mdev->al_lock, flags);
  868. count = drbd_bm_set_bits(mdev, sbnr, ebnr);
  869. enr = BM_SECT_TO_EXT(sector);
  870. e = lc_find(mdev->resync, enr);
  871. if (e)
  872. lc_entry(e, struct bm_extent, lce)->rs_left += count;
  873. spin_unlock_irqrestore(&mdev->al_lock, flags);
  874. out:
  875. put_ldev(mdev);
  876. }
  877. static
  878. struct bm_extent *_bme_get(struct drbd_conf *mdev, unsigned int enr)
  879. {
  880. struct lc_element *e;
  881. struct bm_extent *bm_ext;
  882. int wakeup = 0;
  883. unsigned long rs_flags;
  884. spin_lock_irq(&mdev->al_lock);
  885. if (mdev->resync_locked > mdev->resync->nr_elements/2) {
  886. spin_unlock_irq(&mdev->al_lock);
  887. return NULL;
  888. }
  889. e = lc_get(mdev->resync, enr);
  890. bm_ext = e ? lc_entry(e, struct bm_extent, lce) : NULL;
  891. if (bm_ext) {
  892. if (bm_ext->lce.lc_number != enr) {
  893. bm_ext->rs_left = drbd_bm_e_weight(mdev, enr);
  894. bm_ext->rs_failed = 0;
  895. lc_changed(mdev->resync, &bm_ext->lce);
  896. wakeup = 1;
  897. }
  898. if (bm_ext->lce.refcnt == 1)
  899. mdev->resync_locked++;
  900. set_bit(BME_NO_WRITES, &bm_ext->flags);
  901. }
  902. rs_flags = mdev->resync->flags;
  903. spin_unlock_irq(&mdev->al_lock);
  904. if (wakeup)
  905. wake_up(&mdev->al_wait);
  906. if (!bm_ext) {
  907. if (rs_flags & LC_STARVING)
  908. dev_warn(DEV, "Have to wait for element"
  909. " (resync LRU too small?)\n");
  910. BUG_ON(rs_flags & LC_DIRTY);
  911. }
  912. return bm_ext;
  913. }
  914. static int _is_in_al(struct drbd_conf *mdev, unsigned int enr)
  915. {
  916. struct lc_element *al_ext;
  917. int rv = 0;
  918. spin_lock_irq(&mdev->al_lock);
  919. if (unlikely(enr == mdev->act_log->new_number))
  920. rv = 1;
  921. else {
  922. al_ext = lc_find(mdev->act_log, enr);
  923. if (al_ext) {
  924. if (al_ext->refcnt)
  925. rv = 1;
  926. }
  927. }
  928. spin_unlock_irq(&mdev->al_lock);
  929. /*
  930. if (unlikely(rv)) {
  931. dev_info(DEV, "Delaying sync read until app's write is done\n");
  932. }
  933. */
  934. return rv;
  935. }
  936. /**
  937. * drbd_rs_begin_io() - Gets an extent in the resync LRU cache and sets it to BME_LOCKED
  938. * @mdev: DRBD device.
  939. * @sector: The sector number.
  940. *
  941. * This functions sleeps on al_wait. Returns 0 on success, -EINTR if interrupted.
  942. */
  943. int drbd_rs_begin_io(struct drbd_conf *mdev, sector_t sector)
  944. {
  945. unsigned int enr = BM_SECT_TO_EXT(sector);
  946. struct bm_extent *bm_ext;
  947. int i, sig;
  948. sig = wait_event_interruptible(mdev->al_wait,
  949. (bm_ext = _bme_get(mdev, enr)));
  950. if (sig)
  951. return -EINTR;
  952. if (test_bit(BME_LOCKED, &bm_ext->flags))
  953. return 0;
  954. for (i = 0; i < AL_EXT_PER_BM_SECT; i++) {
  955. sig = wait_event_interruptible(mdev->al_wait,
  956. !_is_in_al(mdev, enr * AL_EXT_PER_BM_SECT + i));
  957. if (sig) {
  958. spin_lock_irq(&mdev->al_lock);
  959. if (lc_put(mdev->resync, &bm_ext->lce) == 0) {
  960. clear_bit(BME_NO_WRITES, &bm_ext->flags);
  961. mdev->resync_locked--;
  962. wake_up(&mdev->al_wait);
  963. }
  964. spin_unlock_irq(&mdev->al_lock);
  965. return -EINTR;
  966. }
  967. }
  968. set_bit(BME_LOCKED, &bm_ext->flags);
  969. return 0;
  970. }
  971. /**
  972. * drbd_try_rs_begin_io() - Gets an extent in the resync LRU cache, does not sleep
  973. * @mdev: DRBD device.
  974. * @sector: The sector number.
  975. *
  976. * Gets an extent in the resync LRU cache, sets it to BME_NO_WRITES, then
  977. * tries to set it to BME_LOCKED. Returns 0 upon success, and -EAGAIN
  978. * if there is still application IO going on in this area.
  979. */
  980. int drbd_try_rs_begin_io(struct drbd_conf *mdev, sector_t sector)
  981. {
  982. unsigned int enr = BM_SECT_TO_EXT(sector);
  983. const unsigned int al_enr = enr*AL_EXT_PER_BM_SECT;
  984. struct lc_element *e;
  985. struct bm_extent *bm_ext;
  986. int i;
  987. spin_lock_irq(&mdev->al_lock);
  988. if (mdev->resync_wenr != LC_FREE && mdev->resync_wenr != enr) {
  989. /* in case you have very heavy scattered io, it may
  990. * stall the syncer undefined if we give up the ref count
  991. * when we try again and requeue.
  992. *
  993. * if we don't give up the refcount, but the next time
  994. * we are scheduled this extent has been "synced" by new
  995. * application writes, we'd miss the lc_put on the
  996. * extent we keep the refcount on.
  997. * so we remembered which extent we had to try again, and
  998. * if the next requested one is something else, we do
  999. * the lc_put here...
  1000. * we also have to wake_up
  1001. */
  1002. e = lc_find(mdev->resync, mdev->resync_wenr);
  1003. bm_ext = e ? lc_entry(e, struct bm_extent, lce) : NULL;
  1004. if (bm_ext) {
  1005. D_ASSERT(!test_bit(BME_LOCKED, &bm_ext->flags));
  1006. D_ASSERT(test_bit(BME_NO_WRITES, &bm_ext->flags));
  1007. clear_bit(BME_NO_WRITES, &bm_ext->flags);
  1008. mdev->resync_wenr = LC_FREE;
  1009. if (lc_put(mdev->resync, &bm_ext->lce) == 0)
  1010. mdev->resync_locked--;
  1011. wake_up(&mdev->al_wait);
  1012. } else {
  1013. dev_alert(DEV, "LOGIC BUG\n");
  1014. }
  1015. }
  1016. /* TRY. */
  1017. e = lc_try_get(mdev->resync, enr);
  1018. bm_ext = e ? lc_entry(e, struct bm_extent, lce) : NULL;
  1019. if (bm_ext) {
  1020. if (test_bit(BME_LOCKED, &bm_ext->flags))
  1021. goto proceed;
  1022. if (!test_and_set_bit(BME_NO_WRITES, &bm_ext->flags)) {
  1023. mdev->resync_locked++;
  1024. } else {
  1025. /* we did set the BME_NO_WRITES,
  1026. * but then could not set BME_LOCKED,
  1027. * so we tried again.
  1028. * drop the extra reference. */
  1029. bm_ext->lce.refcnt--;
  1030. D_ASSERT(bm_ext->lce.refcnt > 0);
  1031. }
  1032. goto check_al;
  1033. } else {
  1034. /* do we rather want to try later? */
  1035. if (mdev->resync_locked > mdev->resync->nr_elements-3)
  1036. goto try_again;
  1037. /* Do or do not. There is no try. -- Yoda */
  1038. e = lc_get(mdev->resync, enr);
  1039. bm_ext = e ? lc_entry(e, struct bm_extent, lce) : NULL;
  1040. if (!bm_ext) {
  1041. const unsigned long rs_flags = mdev->resync->flags;
  1042. if (rs_flags & LC_STARVING)
  1043. dev_warn(DEV, "Have to wait for element"
  1044. " (resync LRU too small?)\n");
  1045. BUG_ON(rs_flags & LC_DIRTY);
  1046. goto try_again;
  1047. }
  1048. if (bm_ext->lce.lc_number != enr) {
  1049. bm_ext->rs_left = drbd_bm_e_weight(mdev, enr);
  1050. bm_ext->rs_failed = 0;
  1051. lc_changed(mdev->resync, &bm_ext->lce);
  1052. wake_up(&mdev->al_wait);
  1053. D_ASSERT(test_bit(BME_LOCKED, &bm_ext->flags) == 0);
  1054. }
  1055. set_bit(BME_NO_WRITES, &bm_ext->flags);
  1056. D_ASSERT(bm_ext->lce.refcnt == 1);
  1057. mdev->resync_locked++;
  1058. goto check_al;
  1059. }
  1060. check_al:
  1061. for (i = 0; i < AL_EXT_PER_BM_SECT; i++) {
  1062. if (unlikely(al_enr+i == mdev->act_log->new_number))
  1063. goto try_again;
  1064. if (lc_is_used(mdev->act_log, al_enr+i))
  1065. goto try_again;
  1066. }
  1067. set_bit(BME_LOCKED, &bm_ext->flags);
  1068. proceed:
  1069. mdev->resync_wenr = LC_FREE;
  1070. spin_unlock_irq(&mdev->al_lock);
  1071. return 0;
  1072. try_again:
  1073. if (bm_ext)
  1074. mdev->resync_wenr = enr;
  1075. spin_unlock_irq(&mdev->al_lock);
  1076. return -EAGAIN;
  1077. }
  1078. void drbd_rs_complete_io(struct drbd_conf *mdev, sector_t sector)
  1079. {
  1080. unsigned int enr = BM_SECT_TO_EXT(sector);
  1081. struct lc_element *e;
  1082. struct bm_extent *bm_ext;
  1083. unsigned long flags;
  1084. spin_lock_irqsave(&mdev->al_lock, flags);
  1085. e = lc_find(mdev->resync, enr);
  1086. bm_ext = e ? lc_entry(e, struct bm_extent, lce) : NULL;
  1087. if (!bm_ext) {
  1088. spin_unlock_irqrestore(&mdev->al_lock, flags);
  1089. if (__ratelimit(&drbd_ratelimit_state))
  1090. dev_err(DEV, "drbd_rs_complete_io() called, but extent not found\n");
  1091. return;
  1092. }
  1093. if (bm_ext->lce.refcnt == 0) {
  1094. spin_unlock_irqrestore(&mdev->al_lock, flags);
  1095. dev_err(DEV, "drbd_rs_complete_io(,%llu [=%u]) called, "
  1096. "but refcnt is 0!?\n",
  1097. (unsigned long long)sector, enr);
  1098. return;
  1099. }
  1100. if (lc_put(mdev->resync, &bm_ext->lce) == 0) {
  1101. clear_bit(BME_LOCKED, &bm_ext->flags);
  1102. clear_bit(BME_NO_WRITES, &bm_ext->flags);
  1103. mdev->resync_locked--;
  1104. wake_up(&mdev->al_wait);
  1105. }
  1106. spin_unlock_irqrestore(&mdev->al_lock, flags);
  1107. }
  1108. /**
  1109. * drbd_rs_cancel_all() - Removes all extents from the resync LRU (even BME_LOCKED)
  1110. * @mdev: DRBD device.
  1111. */
  1112. void drbd_rs_cancel_all(struct drbd_conf *mdev)
  1113. {
  1114. spin_lock_irq(&mdev->al_lock);
  1115. if (get_ldev_if_state(mdev, D_FAILED)) { /* Makes sure ->resync is there. */
  1116. lc_reset(mdev->resync);
  1117. put_ldev(mdev);
  1118. }
  1119. mdev->resync_locked = 0;
  1120. mdev->resync_wenr = LC_FREE;
  1121. spin_unlock_irq(&mdev->al_lock);
  1122. wake_up(&mdev->al_wait);
  1123. }
  1124. /**
  1125. * drbd_rs_del_all() - Gracefully remove all extents from the resync LRU
  1126. * @mdev: DRBD device.
  1127. *
  1128. * Returns 0 upon success, -EAGAIN if at least one reference count was
  1129. * not zero.
  1130. */
  1131. int drbd_rs_del_all(struct drbd_conf *mdev)
  1132. {
  1133. struct lc_element *e;
  1134. struct bm_extent *bm_ext;
  1135. int i;
  1136. spin_lock_irq(&mdev->al_lock);
  1137. if (get_ldev_if_state(mdev, D_FAILED)) {
  1138. /* ok, ->resync is there. */
  1139. for (i = 0; i < mdev->resync->nr_elements; i++) {
  1140. e = lc_element_by_index(mdev->resync, i);
  1141. bm_ext = lc_entry(e, struct bm_extent, lce);
  1142. if (bm_ext->lce.lc_number == LC_FREE)
  1143. continue;
  1144. if (bm_ext->lce.lc_number == mdev->resync_wenr) {
  1145. dev_info(DEV, "dropping %u in drbd_rs_del_all, apparently"
  1146. " got 'synced' by application io\n",
  1147. mdev->resync_wenr);
  1148. D_ASSERT(!test_bit(BME_LOCKED, &bm_ext->flags));
  1149. D_ASSERT(test_bit(BME_NO_WRITES, &bm_ext->flags));
  1150. clear_bit(BME_NO_WRITES, &bm_ext->flags);
  1151. mdev->resync_wenr = LC_FREE;
  1152. lc_put(mdev->resync, &bm_ext->lce);
  1153. }
  1154. if (bm_ext->lce.refcnt != 0) {
  1155. dev_info(DEV, "Retrying drbd_rs_del_all() later. "
  1156. "refcnt=%d\n", bm_ext->lce.refcnt);
  1157. put_ldev(mdev);
  1158. spin_unlock_irq(&mdev->al_lock);
  1159. return -EAGAIN;
  1160. }
  1161. D_ASSERT(!test_bit(BME_LOCKED, &bm_ext->flags));
  1162. D_ASSERT(!test_bit(BME_NO_WRITES, &bm_ext->flags));
  1163. lc_del(mdev->resync, &bm_ext->lce);
  1164. }
  1165. D_ASSERT(mdev->resync->used == 0);
  1166. put_ldev(mdev);
  1167. }
  1168. spin_unlock_irq(&mdev->al_lock);
  1169. return 0;
  1170. }
  1171. /**
  1172. * drbd_rs_failed_io() - Record information on a failure to resync the specified blocks
  1173. * @mdev: DRBD device.
  1174. * @sector: The sector number.
  1175. * @size: Size of failed IO operation, in byte.
  1176. */
  1177. void drbd_rs_failed_io(struct drbd_conf *mdev, sector_t sector, int size)
  1178. {
  1179. /* Is called from worker and receiver context _only_ */
  1180. unsigned long sbnr, ebnr, lbnr;
  1181. unsigned long count;
  1182. sector_t esector, nr_sectors;
  1183. int wake_up = 0;
  1184. if (size <= 0 || (size & 0x1ff) != 0 || size > DRBD_MAX_SEGMENT_SIZE) {
  1185. dev_err(DEV, "drbd_rs_failed_io: sector=%llus size=%d nonsense!\n",
  1186. (unsigned long long)sector, size);
  1187. return;
  1188. }
  1189. nr_sectors = drbd_get_capacity(mdev->this_bdev);
  1190. esector = sector + (size >> 9) - 1;
  1191. ERR_IF(sector >= nr_sectors) return;
  1192. ERR_IF(esector >= nr_sectors) esector = (nr_sectors-1);
  1193. lbnr = BM_SECT_TO_BIT(nr_sectors-1);
  1194. /*
  1195. * round up start sector, round down end sector. we make sure we only
  1196. * handle full, aligned, BM_BLOCK_SIZE (4K) blocks */
  1197. if (unlikely(esector < BM_SECT_PER_BIT-1))
  1198. return;
  1199. if (unlikely(esector == (nr_sectors-1)))
  1200. ebnr = lbnr;
  1201. else
  1202. ebnr = BM_SECT_TO_BIT(esector - (BM_SECT_PER_BIT-1));
  1203. sbnr = BM_SECT_TO_BIT(sector + BM_SECT_PER_BIT-1);
  1204. if (sbnr > ebnr)
  1205. return;
  1206. /*
  1207. * ok, (capacity & 7) != 0 sometimes, but who cares...
  1208. * we count rs_{total,left} in bits, not sectors.
  1209. */
  1210. spin_lock_irq(&mdev->al_lock);
  1211. count = drbd_bm_count_bits(mdev, sbnr, ebnr);
  1212. if (count) {
  1213. mdev->rs_failed += count;
  1214. if (get_ldev(mdev)) {
  1215. drbd_try_clear_on_disk_bm(mdev, sector, count, FALSE);
  1216. put_ldev(mdev);
  1217. }
  1218. /* just wake_up unconditional now, various lc_chaged(),
  1219. * lc_put() in drbd_try_clear_on_disk_bm(). */
  1220. wake_up = 1;
  1221. }
  1222. spin_unlock_irq(&mdev->al_lock);
  1223. if (wake_up)
  1224. wake_up(&mdev->al_wait);
  1225. }