pblk-core.c 48 KB

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  1. /*
  2. * Copyright (C) 2016 CNEX Labs
  3. * Initial release: Javier Gonzalez <javier@cnexlabs.com>
  4. * Matias Bjorling <matias@cnexlabs.com>
  5. *
  6. * This program is free software; you can redistribute it and/or
  7. * modify it under the terms of the GNU General Public License version
  8. * 2 as published by the Free Software Foundation.
  9. *
  10. * This program is distributed in the hope that it will be useful, but
  11. * WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  13. * General Public License for more details.
  14. *
  15. * pblk-core.c - pblk's core functionality
  16. *
  17. */
  18. #include "pblk.h"
  19. static void pblk_line_mark_bb(struct work_struct *work)
  20. {
  21. struct pblk_line_ws *line_ws = container_of(work, struct pblk_line_ws,
  22. ws);
  23. struct pblk *pblk = line_ws->pblk;
  24. struct nvm_tgt_dev *dev = pblk->dev;
  25. struct ppa_addr *ppa = line_ws->priv;
  26. int ret;
  27. ret = nvm_set_tgt_bb_tbl(dev, ppa, 1, NVM_BLK_T_GRWN_BAD);
  28. if (ret) {
  29. struct pblk_line *line;
  30. int pos;
  31. line = &pblk->lines[pblk_ppa_to_line(*ppa)];
  32. pos = pblk_ppa_to_pos(&dev->geo, *ppa);
  33. pr_err("pblk: failed to mark bb, line:%d, pos:%d\n",
  34. line->id, pos);
  35. }
  36. kfree(ppa);
  37. mempool_free(line_ws, pblk->gen_ws_pool);
  38. }
  39. static void pblk_mark_bb(struct pblk *pblk, struct pblk_line *line,
  40. struct ppa_addr ppa_addr)
  41. {
  42. struct nvm_tgt_dev *dev = pblk->dev;
  43. struct nvm_geo *geo = &dev->geo;
  44. struct ppa_addr *ppa;
  45. int pos = pblk_ppa_to_pos(geo, ppa_addr);
  46. pr_debug("pblk: erase failed: line:%d, pos:%d\n", line->id, pos);
  47. atomic_long_inc(&pblk->erase_failed);
  48. atomic_dec(&line->blk_in_line);
  49. if (test_and_set_bit(pos, line->blk_bitmap))
  50. pr_err("pblk: attempted to erase bb: line:%d, pos:%d\n",
  51. line->id, pos);
  52. /* Not necessary to mark bad blocks on 2.0 spec. */
  53. if (geo->version == NVM_OCSSD_SPEC_20)
  54. return;
  55. ppa = kmalloc(sizeof(struct ppa_addr), GFP_ATOMIC);
  56. if (!ppa)
  57. return;
  58. *ppa = ppa_addr;
  59. pblk_gen_run_ws(pblk, NULL, ppa, pblk_line_mark_bb,
  60. GFP_ATOMIC, pblk->bb_wq);
  61. }
  62. static void __pblk_end_io_erase(struct pblk *pblk, struct nvm_rq *rqd)
  63. {
  64. struct nvm_tgt_dev *dev = pblk->dev;
  65. struct nvm_geo *geo = &dev->geo;
  66. struct nvm_chk_meta *chunk;
  67. struct pblk_line *line;
  68. int pos;
  69. line = &pblk->lines[pblk_ppa_to_line(rqd->ppa_addr)];
  70. pos = pblk_ppa_to_pos(geo, rqd->ppa_addr);
  71. chunk = &line->chks[pos];
  72. atomic_dec(&line->left_seblks);
  73. if (rqd->error) {
  74. chunk->state = NVM_CHK_ST_OFFLINE;
  75. pblk_mark_bb(pblk, line, rqd->ppa_addr);
  76. } else {
  77. chunk->state = NVM_CHK_ST_FREE;
  78. }
  79. atomic_dec(&pblk->inflight_io);
  80. }
  81. /* Erase completion assumes that only one block is erased at the time */
  82. static void pblk_end_io_erase(struct nvm_rq *rqd)
  83. {
  84. struct pblk *pblk = rqd->private;
  85. __pblk_end_io_erase(pblk, rqd);
  86. mempool_free(rqd, pblk->e_rq_pool);
  87. }
  88. /*
  89. * Get information for all chunks from the device.
  90. *
  91. * The caller is responsible for freeing the returned structure
  92. */
  93. struct nvm_chk_meta *pblk_chunk_get_info(struct pblk *pblk)
  94. {
  95. struct nvm_tgt_dev *dev = pblk->dev;
  96. struct nvm_geo *geo = &dev->geo;
  97. struct nvm_chk_meta *meta;
  98. struct ppa_addr ppa;
  99. unsigned long len;
  100. int ret;
  101. ppa.ppa = 0;
  102. len = geo->all_chunks * sizeof(*meta);
  103. meta = kzalloc(len, GFP_KERNEL);
  104. if (!meta)
  105. return ERR_PTR(-ENOMEM);
  106. ret = nvm_get_chunk_meta(dev, meta, ppa, geo->all_chunks);
  107. if (ret) {
  108. kfree(meta);
  109. return ERR_PTR(-EIO);
  110. }
  111. return meta;
  112. }
  113. struct nvm_chk_meta *pblk_chunk_get_off(struct pblk *pblk,
  114. struct nvm_chk_meta *meta,
  115. struct ppa_addr ppa)
  116. {
  117. struct nvm_tgt_dev *dev = pblk->dev;
  118. struct nvm_geo *geo = &dev->geo;
  119. int ch_off = ppa.m.grp * geo->num_chk * geo->num_lun;
  120. int lun_off = ppa.m.pu * geo->num_chk;
  121. int chk_off = ppa.m.chk;
  122. return meta + ch_off + lun_off + chk_off;
  123. }
  124. void __pblk_map_invalidate(struct pblk *pblk, struct pblk_line *line,
  125. u64 paddr)
  126. {
  127. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  128. struct list_head *move_list = NULL;
  129. /* Lines being reclaimed (GC'ed) cannot be invalidated. Before the L2P
  130. * table is modified with reclaimed sectors, a check is done to endure
  131. * that newer updates are not overwritten.
  132. */
  133. spin_lock(&line->lock);
  134. WARN_ON(line->state == PBLK_LINESTATE_FREE);
  135. if (test_and_set_bit(paddr, line->invalid_bitmap)) {
  136. WARN_ONCE(1, "pblk: double invalidate\n");
  137. spin_unlock(&line->lock);
  138. return;
  139. }
  140. le32_add_cpu(line->vsc, -1);
  141. if (line->state == PBLK_LINESTATE_CLOSED)
  142. move_list = pblk_line_gc_list(pblk, line);
  143. spin_unlock(&line->lock);
  144. if (move_list) {
  145. spin_lock(&l_mg->gc_lock);
  146. spin_lock(&line->lock);
  147. /* Prevent moving a line that has just been chosen for GC */
  148. if (line->state == PBLK_LINESTATE_GC) {
  149. spin_unlock(&line->lock);
  150. spin_unlock(&l_mg->gc_lock);
  151. return;
  152. }
  153. spin_unlock(&line->lock);
  154. list_move_tail(&line->list, move_list);
  155. spin_unlock(&l_mg->gc_lock);
  156. }
  157. }
  158. void pblk_map_invalidate(struct pblk *pblk, struct ppa_addr ppa)
  159. {
  160. struct pblk_line *line;
  161. u64 paddr;
  162. int line_id;
  163. #ifdef CONFIG_NVM_DEBUG
  164. /* Callers must ensure that the ppa points to a device address */
  165. BUG_ON(pblk_addr_in_cache(ppa));
  166. BUG_ON(pblk_ppa_empty(ppa));
  167. #endif
  168. line_id = pblk_ppa_to_line(ppa);
  169. line = &pblk->lines[line_id];
  170. paddr = pblk_dev_ppa_to_line_addr(pblk, ppa);
  171. __pblk_map_invalidate(pblk, line, paddr);
  172. }
  173. static void pblk_invalidate_range(struct pblk *pblk, sector_t slba,
  174. unsigned int nr_secs)
  175. {
  176. sector_t lba;
  177. spin_lock(&pblk->trans_lock);
  178. for (lba = slba; lba < slba + nr_secs; lba++) {
  179. struct ppa_addr ppa;
  180. ppa = pblk_trans_map_get(pblk, lba);
  181. if (!pblk_addr_in_cache(ppa) && !pblk_ppa_empty(ppa))
  182. pblk_map_invalidate(pblk, ppa);
  183. pblk_ppa_set_empty(&ppa);
  184. pblk_trans_map_set(pblk, lba, ppa);
  185. }
  186. spin_unlock(&pblk->trans_lock);
  187. }
  188. /* Caller must guarantee that the request is a valid type */
  189. struct nvm_rq *pblk_alloc_rqd(struct pblk *pblk, int type)
  190. {
  191. mempool_t *pool;
  192. struct nvm_rq *rqd;
  193. int rq_size;
  194. switch (type) {
  195. case PBLK_WRITE:
  196. case PBLK_WRITE_INT:
  197. pool = pblk->w_rq_pool;
  198. rq_size = pblk_w_rq_size;
  199. break;
  200. case PBLK_READ:
  201. pool = pblk->r_rq_pool;
  202. rq_size = pblk_g_rq_size;
  203. break;
  204. default:
  205. pool = pblk->e_rq_pool;
  206. rq_size = pblk_g_rq_size;
  207. }
  208. rqd = mempool_alloc(pool, GFP_KERNEL);
  209. memset(rqd, 0, rq_size);
  210. return rqd;
  211. }
  212. /* Typically used on completion path. Cannot guarantee request consistency */
  213. void pblk_free_rqd(struct pblk *pblk, struct nvm_rq *rqd, int type)
  214. {
  215. struct nvm_tgt_dev *dev = pblk->dev;
  216. mempool_t *pool;
  217. switch (type) {
  218. case PBLK_WRITE:
  219. kfree(((struct pblk_c_ctx *)nvm_rq_to_pdu(rqd))->lun_bitmap);
  220. case PBLK_WRITE_INT:
  221. pool = pblk->w_rq_pool;
  222. break;
  223. case PBLK_READ:
  224. pool = pblk->r_rq_pool;
  225. break;
  226. case PBLK_ERASE:
  227. pool = pblk->e_rq_pool;
  228. break;
  229. default:
  230. pr_err("pblk: trying to free unknown rqd type\n");
  231. return;
  232. }
  233. nvm_dev_dma_free(dev->parent, rqd->meta_list, rqd->dma_meta_list);
  234. mempool_free(rqd, pool);
  235. }
  236. void pblk_bio_free_pages(struct pblk *pblk, struct bio *bio, int off,
  237. int nr_pages)
  238. {
  239. struct bio_vec bv;
  240. int i;
  241. WARN_ON(off + nr_pages != bio->bi_vcnt);
  242. for (i = off; i < nr_pages + off; i++) {
  243. bv = bio->bi_io_vec[i];
  244. mempool_free(bv.bv_page, pblk->page_bio_pool);
  245. }
  246. }
  247. int pblk_bio_add_pages(struct pblk *pblk, struct bio *bio, gfp_t flags,
  248. int nr_pages)
  249. {
  250. struct request_queue *q = pblk->dev->q;
  251. struct page *page;
  252. int i, ret;
  253. for (i = 0; i < nr_pages; i++) {
  254. page = mempool_alloc(pblk->page_bio_pool, flags);
  255. ret = bio_add_pc_page(q, bio, page, PBLK_EXPOSED_PAGE_SIZE, 0);
  256. if (ret != PBLK_EXPOSED_PAGE_SIZE) {
  257. pr_err("pblk: could not add page to bio\n");
  258. mempool_free(page, pblk->page_bio_pool);
  259. goto err;
  260. }
  261. }
  262. return 0;
  263. err:
  264. pblk_bio_free_pages(pblk, bio, 0, i - 1);
  265. return -1;
  266. }
  267. static void pblk_write_kick(struct pblk *pblk)
  268. {
  269. wake_up_process(pblk->writer_ts);
  270. mod_timer(&pblk->wtimer, jiffies + msecs_to_jiffies(1000));
  271. }
  272. void pblk_write_timer_fn(struct timer_list *t)
  273. {
  274. struct pblk *pblk = from_timer(pblk, t, wtimer);
  275. /* kick the write thread every tick to flush outstanding data */
  276. pblk_write_kick(pblk);
  277. }
  278. void pblk_write_should_kick(struct pblk *pblk)
  279. {
  280. unsigned int secs_avail = pblk_rb_read_count(&pblk->rwb);
  281. if (secs_avail >= pblk->min_write_pgs)
  282. pblk_write_kick(pblk);
  283. }
  284. void pblk_end_io_sync(struct nvm_rq *rqd)
  285. {
  286. struct completion *waiting = rqd->private;
  287. complete(waiting);
  288. }
  289. static void pblk_wait_for_meta(struct pblk *pblk)
  290. {
  291. do {
  292. if (!atomic_read(&pblk->inflight_io))
  293. break;
  294. schedule();
  295. } while (1);
  296. }
  297. static void pblk_flush_writer(struct pblk *pblk)
  298. {
  299. pblk_rb_flush(&pblk->rwb);
  300. do {
  301. if (!pblk_rb_sync_count(&pblk->rwb))
  302. break;
  303. pblk_write_kick(pblk);
  304. schedule();
  305. } while (1);
  306. }
  307. struct list_head *pblk_line_gc_list(struct pblk *pblk, struct pblk_line *line)
  308. {
  309. struct pblk_line_meta *lm = &pblk->lm;
  310. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  311. struct list_head *move_list = NULL;
  312. int vsc = le32_to_cpu(*line->vsc);
  313. lockdep_assert_held(&line->lock);
  314. if (!vsc) {
  315. if (line->gc_group != PBLK_LINEGC_FULL) {
  316. line->gc_group = PBLK_LINEGC_FULL;
  317. move_list = &l_mg->gc_full_list;
  318. }
  319. } else if (vsc < lm->high_thrs) {
  320. if (line->gc_group != PBLK_LINEGC_HIGH) {
  321. line->gc_group = PBLK_LINEGC_HIGH;
  322. move_list = &l_mg->gc_high_list;
  323. }
  324. } else if (vsc < lm->mid_thrs) {
  325. if (line->gc_group != PBLK_LINEGC_MID) {
  326. line->gc_group = PBLK_LINEGC_MID;
  327. move_list = &l_mg->gc_mid_list;
  328. }
  329. } else if (vsc < line->sec_in_line) {
  330. if (line->gc_group != PBLK_LINEGC_LOW) {
  331. line->gc_group = PBLK_LINEGC_LOW;
  332. move_list = &l_mg->gc_low_list;
  333. }
  334. } else if (vsc == line->sec_in_line) {
  335. if (line->gc_group != PBLK_LINEGC_EMPTY) {
  336. line->gc_group = PBLK_LINEGC_EMPTY;
  337. move_list = &l_mg->gc_empty_list;
  338. }
  339. } else {
  340. line->state = PBLK_LINESTATE_CORRUPT;
  341. line->gc_group = PBLK_LINEGC_NONE;
  342. move_list = &l_mg->corrupt_list;
  343. pr_err("pblk: corrupted vsc for line %d, vsc:%d (%d/%d/%d)\n",
  344. line->id, vsc,
  345. line->sec_in_line,
  346. lm->high_thrs, lm->mid_thrs);
  347. }
  348. return move_list;
  349. }
  350. void pblk_discard(struct pblk *pblk, struct bio *bio)
  351. {
  352. sector_t slba = pblk_get_lba(bio);
  353. sector_t nr_secs = pblk_get_secs(bio);
  354. pblk_invalidate_range(pblk, slba, nr_secs);
  355. }
  356. void pblk_log_write_err(struct pblk *pblk, struct nvm_rq *rqd)
  357. {
  358. atomic_long_inc(&pblk->write_failed);
  359. #ifdef CONFIG_NVM_DEBUG
  360. pblk_print_failed_rqd(pblk, rqd, rqd->error);
  361. #endif
  362. }
  363. void pblk_log_read_err(struct pblk *pblk, struct nvm_rq *rqd)
  364. {
  365. /* Empty page read is not necessarily an error (e.g., L2P recovery) */
  366. if (rqd->error == NVM_RSP_ERR_EMPTYPAGE) {
  367. atomic_long_inc(&pblk->read_empty);
  368. return;
  369. }
  370. switch (rqd->error) {
  371. case NVM_RSP_WARN_HIGHECC:
  372. atomic_long_inc(&pblk->read_high_ecc);
  373. break;
  374. case NVM_RSP_ERR_FAILECC:
  375. case NVM_RSP_ERR_FAILCRC:
  376. atomic_long_inc(&pblk->read_failed);
  377. break;
  378. default:
  379. pr_err("pblk: unknown read error:%d\n", rqd->error);
  380. }
  381. #ifdef CONFIG_NVM_DEBUG
  382. pblk_print_failed_rqd(pblk, rqd, rqd->error);
  383. #endif
  384. }
  385. void pblk_set_sec_per_write(struct pblk *pblk, int sec_per_write)
  386. {
  387. pblk->sec_per_write = sec_per_write;
  388. }
  389. int pblk_submit_io(struct pblk *pblk, struct nvm_rq *rqd)
  390. {
  391. struct nvm_tgt_dev *dev = pblk->dev;
  392. #ifdef CONFIG_NVM_DEBUG
  393. int ret;
  394. ret = pblk_check_io(pblk, rqd);
  395. if (ret)
  396. return ret;
  397. #endif
  398. atomic_inc(&pblk->inflight_io);
  399. return nvm_submit_io(dev, rqd);
  400. }
  401. int pblk_submit_io_sync(struct pblk *pblk, struct nvm_rq *rqd)
  402. {
  403. struct nvm_tgt_dev *dev = pblk->dev;
  404. #ifdef CONFIG_NVM_DEBUG
  405. int ret;
  406. ret = pblk_check_io(pblk, rqd);
  407. if (ret)
  408. return ret;
  409. #endif
  410. atomic_inc(&pblk->inflight_io);
  411. return nvm_submit_io_sync(dev, rqd);
  412. }
  413. static void pblk_bio_map_addr_endio(struct bio *bio)
  414. {
  415. bio_put(bio);
  416. }
  417. struct bio *pblk_bio_map_addr(struct pblk *pblk, void *data,
  418. unsigned int nr_secs, unsigned int len,
  419. int alloc_type, gfp_t gfp_mask)
  420. {
  421. struct nvm_tgt_dev *dev = pblk->dev;
  422. void *kaddr = data;
  423. struct page *page;
  424. struct bio *bio;
  425. int i, ret;
  426. if (alloc_type == PBLK_KMALLOC_META)
  427. return bio_map_kern(dev->q, kaddr, len, gfp_mask);
  428. bio = bio_kmalloc(gfp_mask, nr_secs);
  429. if (!bio)
  430. return ERR_PTR(-ENOMEM);
  431. for (i = 0; i < nr_secs; i++) {
  432. page = vmalloc_to_page(kaddr);
  433. if (!page) {
  434. pr_err("pblk: could not map vmalloc bio\n");
  435. bio_put(bio);
  436. bio = ERR_PTR(-ENOMEM);
  437. goto out;
  438. }
  439. ret = bio_add_pc_page(dev->q, bio, page, PAGE_SIZE, 0);
  440. if (ret != PAGE_SIZE) {
  441. pr_err("pblk: could not add page to bio\n");
  442. bio_put(bio);
  443. bio = ERR_PTR(-ENOMEM);
  444. goto out;
  445. }
  446. kaddr += PAGE_SIZE;
  447. }
  448. bio->bi_end_io = pblk_bio_map_addr_endio;
  449. out:
  450. return bio;
  451. }
  452. int pblk_calc_secs(struct pblk *pblk, unsigned long secs_avail,
  453. unsigned long secs_to_flush)
  454. {
  455. int max = pblk->sec_per_write;
  456. int min = pblk->min_write_pgs;
  457. int secs_to_sync = 0;
  458. if (secs_avail >= max)
  459. secs_to_sync = max;
  460. else if (secs_avail >= min)
  461. secs_to_sync = min * (secs_avail / min);
  462. else if (secs_to_flush)
  463. secs_to_sync = min;
  464. return secs_to_sync;
  465. }
  466. void pblk_dealloc_page(struct pblk *pblk, struct pblk_line *line, int nr_secs)
  467. {
  468. u64 addr;
  469. int i;
  470. spin_lock(&line->lock);
  471. addr = find_next_zero_bit(line->map_bitmap,
  472. pblk->lm.sec_per_line, line->cur_sec);
  473. line->cur_sec = addr - nr_secs;
  474. for (i = 0; i < nr_secs; i++, line->cur_sec--)
  475. WARN_ON(!test_and_clear_bit(line->cur_sec, line->map_bitmap));
  476. spin_unlock(&line->lock);
  477. }
  478. u64 __pblk_alloc_page(struct pblk *pblk, struct pblk_line *line, int nr_secs)
  479. {
  480. u64 addr;
  481. int i;
  482. lockdep_assert_held(&line->lock);
  483. /* logic error: ppa out-of-bounds. Prevent generating bad address */
  484. if (line->cur_sec + nr_secs > pblk->lm.sec_per_line) {
  485. WARN(1, "pblk: page allocation out of bounds\n");
  486. nr_secs = pblk->lm.sec_per_line - line->cur_sec;
  487. }
  488. line->cur_sec = addr = find_next_zero_bit(line->map_bitmap,
  489. pblk->lm.sec_per_line, line->cur_sec);
  490. for (i = 0; i < nr_secs; i++, line->cur_sec++)
  491. WARN_ON(test_and_set_bit(line->cur_sec, line->map_bitmap));
  492. return addr;
  493. }
  494. u64 pblk_alloc_page(struct pblk *pblk, struct pblk_line *line, int nr_secs)
  495. {
  496. u64 addr;
  497. /* Lock needed in case a write fails and a recovery needs to remap
  498. * failed write buffer entries
  499. */
  500. spin_lock(&line->lock);
  501. addr = __pblk_alloc_page(pblk, line, nr_secs);
  502. line->left_msecs -= nr_secs;
  503. WARN(line->left_msecs < 0, "pblk: page allocation out of bounds\n");
  504. spin_unlock(&line->lock);
  505. return addr;
  506. }
  507. u64 pblk_lookup_page(struct pblk *pblk, struct pblk_line *line)
  508. {
  509. u64 paddr;
  510. spin_lock(&line->lock);
  511. paddr = find_next_zero_bit(line->map_bitmap,
  512. pblk->lm.sec_per_line, line->cur_sec);
  513. spin_unlock(&line->lock);
  514. return paddr;
  515. }
  516. /*
  517. * Submit emeta to one LUN in the raid line at the time to avoid a deadlock when
  518. * taking the per LUN semaphore.
  519. */
  520. static int pblk_line_submit_emeta_io(struct pblk *pblk, struct pblk_line *line,
  521. void *emeta_buf, u64 paddr, int dir)
  522. {
  523. struct nvm_tgt_dev *dev = pblk->dev;
  524. struct nvm_geo *geo = &dev->geo;
  525. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  526. struct pblk_line_meta *lm = &pblk->lm;
  527. void *ppa_list, *meta_list;
  528. struct bio *bio;
  529. struct nvm_rq rqd;
  530. dma_addr_t dma_ppa_list, dma_meta_list;
  531. int min = pblk->min_write_pgs;
  532. int left_ppas = lm->emeta_sec[0];
  533. int id = line->id;
  534. int rq_ppas, rq_len;
  535. int cmd_op, bio_op;
  536. int i, j;
  537. int ret;
  538. if (dir == PBLK_WRITE) {
  539. bio_op = REQ_OP_WRITE;
  540. cmd_op = NVM_OP_PWRITE;
  541. } else if (dir == PBLK_READ) {
  542. bio_op = REQ_OP_READ;
  543. cmd_op = NVM_OP_PREAD;
  544. } else
  545. return -EINVAL;
  546. meta_list = nvm_dev_dma_alloc(dev->parent, GFP_KERNEL,
  547. &dma_meta_list);
  548. if (!meta_list)
  549. return -ENOMEM;
  550. ppa_list = meta_list + pblk_dma_meta_size;
  551. dma_ppa_list = dma_meta_list + pblk_dma_meta_size;
  552. next_rq:
  553. memset(&rqd, 0, sizeof(struct nvm_rq));
  554. rq_ppas = pblk_calc_secs(pblk, left_ppas, 0);
  555. rq_len = rq_ppas * geo->csecs;
  556. bio = pblk_bio_map_addr(pblk, emeta_buf, rq_ppas, rq_len,
  557. l_mg->emeta_alloc_type, GFP_KERNEL);
  558. if (IS_ERR(bio)) {
  559. ret = PTR_ERR(bio);
  560. goto free_rqd_dma;
  561. }
  562. bio->bi_iter.bi_sector = 0; /* internal bio */
  563. bio_set_op_attrs(bio, bio_op, 0);
  564. rqd.bio = bio;
  565. rqd.meta_list = meta_list;
  566. rqd.ppa_list = ppa_list;
  567. rqd.dma_meta_list = dma_meta_list;
  568. rqd.dma_ppa_list = dma_ppa_list;
  569. rqd.opcode = cmd_op;
  570. rqd.nr_ppas = rq_ppas;
  571. if (dir == PBLK_WRITE) {
  572. struct pblk_sec_meta *meta_list = rqd.meta_list;
  573. rqd.flags = pblk_set_progr_mode(pblk, PBLK_WRITE);
  574. for (i = 0; i < rqd.nr_ppas; ) {
  575. spin_lock(&line->lock);
  576. paddr = __pblk_alloc_page(pblk, line, min);
  577. spin_unlock(&line->lock);
  578. for (j = 0; j < min; j++, i++, paddr++) {
  579. meta_list[i].lba = cpu_to_le64(ADDR_EMPTY);
  580. rqd.ppa_list[i] =
  581. addr_to_gen_ppa(pblk, paddr, id);
  582. }
  583. }
  584. } else {
  585. for (i = 0; i < rqd.nr_ppas; ) {
  586. struct ppa_addr ppa = addr_to_gen_ppa(pblk, paddr, id);
  587. int pos = pblk_ppa_to_pos(geo, ppa);
  588. int read_type = PBLK_READ_RANDOM;
  589. if (pblk_io_aligned(pblk, rq_ppas))
  590. read_type = PBLK_READ_SEQUENTIAL;
  591. rqd.flags = pblk_set_read_mode(pblk, read_type);
  592. while (test_bit(pos, line->blk_bitmap)) {
  593. paddr += min;
  594. if (pblk_boundary_paddr_checks(pblk, paddr)) {
  595. pr_err("pblk: corrupt emeta line:%d\n",
  596. line->id);
  597. bio_put(bio);
  598. ret = -EINTR;
  599. goto free_rqd_dma;
  600. }
  601. ppa = addr_to_gen_ppa(pblk, paddr, id);
  602. pos = pblk_ppa_to_pos(geo, ppa);
  603. }
  604. if (pblk_boundary_paddr_checks(pblk, paddr + min)) {
  605. pr_err("pblk: corrupt emeta line:%d\n",
  606. line->id);
  607. bio_put(bio);
  608. ret = -EINTR;
  609. goto free_rqd_dma;
  610. }
  611. for (j = 0; j < min; j++, i++, paddr++)
  612. rqd.ppa_list[i] =
  613. addr_to_gen_ppa(pblk, paddr, line->id);
  614. }
  615. }
  616. ret = pblk_submit_io_sync(pblk, &rqd);
  617. if (ret) {
  618. pr_err("pblk: emeta I/O submission failed: %d\n", ret);
  619. bio_put(bio);
  620. goto free_rqd_dma;
  621. }
  622. atomic_dec(&pblk->inflight_io);
  623. if (rqd.error) {
  624. if (dir == PBLK_WRITE)
  625. pblk_log_write_err(pblk, &rqd);
  626. else
  627. pblk_log_read_err(pblk, &rqd);
  628. }
  629. emeta_buf += rq_len;
  630. left_ppas -= rq_ppas;
  631. if (left_ppas)
  632. goto next_rq;
  633. free_rqd_dma:
  634. nvm_dev_dma_free(dev->parent, rqd.meta_list, rqd.dma_meta_list);
  635. return ret;
  636. }
  637. u64 pblk_line_smeta_start(struct pblk *pblk, struct pblk_line *line)
  638. {
  639. struct nvm_tgt_dev *dev = pblk->dev;
  640. struct nvm_geo *geo = &dev->geo;
  641. struct pblk_line_meta *lm = &pblk->lm;
  642. int bit;
  643. /* This usually only happens on bad lines */
  644. bit = find_first_zero_bit(line->blk_bitmap, lm->blk_per_line);
  645. if (bit >= lm->blk_per_line)
  646. return -1;
  647. return bit * geo->ws_opt;
  648. }
  649. static int pblk_line_submit_smeta_io(struct pblk *pblk, struct pblk_line *line,
  650. u64 paddr, int dir)
  651. {
  652. struct nvm_tgt_dev *dev = pblk->dev;
  653. struct pblk_line_meta *lm = &pblk->lm;
  654. struct bio *bio;
  655. struct nvm_rq rqd;
  656. __le64 *lba_list = NULL;
  657. int i, ret;
  658. int cmd_op, bio_op;
  659. int flags;
  660. if (dir == PBLK_WRITE) {
  661. bio_op = REQ_OP_WRITE;
  662. cmd_op = NVM_OP_PWRITE;
  663. flags = pblk_set_progr_mode(pblk, PBLK_WRITE);
  664. lba_list = emeta_to_lbas(pblk, line->emeta->buf);
  665. } else if (dir == PBLK_READ_RECOV || dir == PBLK_READ) {
  666. bio_op = REQ_OP_READ;
  667. cmd_op = NVM_OP_PREAD;
  668. flags = pblk_set_read_mode(pblk, PBLK_READ_SEQUENTIAL);
  669. } else
  670. return -EINVAL;
  671. memset(&rqd, 0, sizeof(struct nvm_rq));
  672. rqd.meta_list = nvm_dev_dma_alloc(dev->parent, GFP_KERNEL,
  673. &rqd.dma_meta_list);
  674. if (!rqd.meta_list)
  675. return -ENOMEM;
  676. rqd.ppa_list = rqd.meta_list + pblk_dma_meta_size;
  677. rqd.dma_ppa_list = rqd.dma_meta_list + pblk_dma_meta_size;
  678. bio = bio_map_kern(dev->q, line->smeta, lm->smeta_len, GFP_KERNEL);
  679. if (IS_ERR(bio)) {
  680. ret = PTR_ERR(bio);
  681. goto free_ppa_list;
  682. }
  683. bio->bi_iter.bi_sector = 0; /* internal bio */
  684. bio_set_op_attrs(bio, bio_op, 0);
  685. rqd.bio = bio;
  686. rqd.opcode = cmd_op;
  687. rqd.flags = flags;
  688. rqd.nr_ppas = lm->smeta_sec;
  689. for (i = 0; i < lm->smeta_sec; i++, paddr++) {
  690. struct pblk_sec_meta *meta_list = rqd.meta_list;
  691. rqd.ppa_list[i] = addr_to_gen_ppa(pblk, paddr, line->id);
  692. if (dir == PBLK_WRITE) {
  693. __le64 addr_empty = cpu_to_le64(ADDR_EMPTY);
  694. meta_list[i].lba = lba_list[paddr] = addr_empty;
  695. }
  696. }
  697. /*
  698. * This I/O is sent by the write thread when a line is replace. Since
  699. * the write thread is the only one sending write and erase commands,
  700. * there is no need to take the LUN semaphore.
  701. */
  702. ret = pblk_submit_io_sync(pblk, &rqd);
  703. if (ret) {
  704. pr_err("pblk: smeta I/O submission failed: %d\n", ret);
  705. bio_put(bio);
  706. goto free_ppa_list;
  707. }
  708. atomic_dec(&pblk->inflight_io);
  709. if (rqd.error) {
  710. if (dir == PBLK_WRITE)
  711. pblk_log_write_err(pblk, &rqd);
  712. else if (dir == PBLK_READ)
  713. pblk_log_read_err(pblk, &rqd);
  714. }
  715. free_ppa_list:
  716. nvm_dev_dma_free(dev->parent, rqd.meta_list, rqd.dma_meta_list);
  717. return ret;
  718. }
  719. int pblk_line_read_smeta(struct pblk *pblk, struct pblk_line *line)
  720. {
  721. u64 bpaddr = pblk_line_smeta_start(pblk, line);
  722. return pblk_line_submit_smeta_io(pblk, line, bpaddr, PBLK_READ_RECOV);
  723. }
  724. int pblk_line_read_emeta(struct pblk *pblk, struct pblk_line *line,
  725. void *emeta_buf)
  726. {
  727. return pblk_line_submit_emeta_io(pblk, line, emeta_buf,
  728. line->emeta_ssec, PBLK_READ);
  729. }
  730. static void pblk_setup_e_rq(struct pblk *pblk, struct nvm_rq *rqd,
  731. struct ppa_addr ppa)
  732. {
  733. rqd->opcode = NVM_OP_ERASE;
  734. rqd->ppa_addr = ppa;
  735. rqd->nr_ppas = 1;
  736. rqd->flags = pblk_set_progr_mode(pblk, PBLK_ERASE);
  737. rqd->bio = NULL;
  738. }
  739. static int pblk_blk_erase_sync(struct pblk *pblk, struct ppa_addr ppa)
  740. {
  741. struct nvm_rq rqd;
  742. int ret = 0;
  743. memset(&rqd, 0, sizeof(struct nvm_rq));
  744. pblk_setup_e_rq(pblk, &rqd, ppa);
  745. /* The write thread schedules erases so that it minimizes disturbances
  746. * with writes. Thus, there is no need to take the LUN semaphore.
  747. */
  748. ret = pblk_submit_io_sync(pblk, &rqd);
  749. if (ret) {
  750. struct nvm_tgt_dev *dev = pblk->dev;
  751. struct nvm_geo *geo = &dev->geo;
  752. pr_err("pblk: could not sync erase line:%d,blk:%d\n",
  753. pblk_ppa_to_line(ppa),
  754. pblk_ppa_to_pos(geo, ppa));
  755. rqd.error = ret;
  756. goto out;
  757. }
  758. out:
  759. rqd.private = pblk;
  760. __pblk_end_io_erase(pblk, &rqd);
  761. return ret;
  762. }
  763. int pblk_line_erase(struct pblk *pblk, struct pblk_line *line)
  764. {
  765. struct pblk_line_meta *lm = &pblk->lm;
  766. struct ppa_addr ppa;
  767. int ret, bit = -1;
  768. /* Erase only good blocks, one at a time */
  769. do {
  770. spin_lock(&line->lock);
  771. bit = find_next_zero_bit(line->erase_bitmap, lm->blk_per_line,
  772. bit + 1);
  773. if (bit >= lm->blk_per_line) {
  774. spin_unlock(&line->lock);
  775. break;
  776. }
  777. ppa = pblk->luns[bit].bppa; /* set ch and lun */
  778. ppa.a.blk = line->id;
  779. atomic_dec(&line->left_eblks);
  780. WARN_ON(test_and_set_bit(bit, line->erase_bitmap));
  781. spin_unlock(&line->lock);
  782. ret = pblk_blk_erase_sync(pblk, ppa);
  783. if (ret) {
  784. pr_err("pblk: failed to erase line %d\n", line->id);
  785. return ret;
  786. }
  787. } while (1);
  788. return 0;
  789. }
  790. static void pblk_line_setup_metadata(struct pblk_line *line,
  791. struct pblk_line_mgmt *l_mg,
  792. struct pblk_line_meta *lm)
  793. {
  794. int meta_line;
  795. lockdep_assert_held(&l_mg->free_lock);
  796. retry_meta:
  797. meta_line = find_first_zero_bit(&l_mg->meta_bitmap, PBLK_DATA_LINES);
  798. if (meta_line == PBLK_DATA_LINES) {
  799. spin_unlock(&l_mg->free_lock);
  800. io_schedule();
  801. spin_lock(&l_mg->free_lock);
  802. goto retry_meta;
  803. }
  804. set_bit(meta_line, &l_mg->meta_bitmap);
  805. line->meta_line = meta_line;
  806. line->smeta = l_mg->sline_meta[meta_line];
  807. line->emeta = l_mg->eline_meta[meta_line];
  808. memset(line->smeta, 0, lm->smeta_len);
  809. memset(line->emeta->buf, 0, lm->emeta_len[0]);
  810. line->emeta->mem = 0;
  811. atomic_set(&line->emeta->sync, 0);
  812. }
  813. /* For now lines are always assumed full lines. Thus, smeta former and current
  814. * lun bitmaps are omitted.
  815. */
  816. static int pblk_line_init_metadata(struct pblk *pblk, struct pblk_line *line,
  817. struct pblk_line *cur)
  818. {
  819. struct nvm_tgt_dev *dev = pblk->dev;
  820. struct nvm_geo *geo = &dev->geo;
  821. struct pblk_line_meta *lm = &pblk->lm;
  822. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  823. struct pblk_emeta *emeta = line->emeta;
  824. struct line_emeta *emeta_buf = emeta->buf;
  825. struct line_smeta *smeta_buf = (struct line_smeta *)line->smeta;
  826. int nr_blk_line;
  827. /* After erasing the line, new bad blocks might appear and we risk
  828. * having an invalid line
  829. */
  830. nr_blk_line = lm->blk_per_line -
  831. bitmap_weight(line->blk_bitmap, lm->blk_per_line);
  832. if (nr_blk_line < lm->min_blk_line) {
  833. spin_lock(&l_mg->free_lock);
  834. spin_lock(&line->lock);
  835. line->state = PBLK_LINESTATE_BAD;
  836. spin_unlock(&line->lock);
  837. list_add_tail(&line->list, &l_mg->bad_list);
  838. spin_unlock(&l_mg->free_lock);
  839. pr_debug("pblk: line %d is bad\n", line->id);
  840. return 0;
  841. }
  842. /* Run-time metadata */
  843. line->lun_bitmap = ((void *)(smeta_buf)) + sizeof(struct line_smeta);
  844. /* Mark LUNs allocated in this line (all for now) */
  845. bitmap_set(line->lun_bitmap, 0, lm->lun_bitmap_len);
  846. smeta_buf->header.identifier = cpu_to_le32(PBLK_MAGIC);
  847. memcpy(smeta_buf->header.uuid, pblk->instance_uuid, 16);
  848. smeta_buf->header.id = cpu_to_le32(line->id);
  849. smeta_buf->header.type = cpu_to_le16(line->type);
  850. smeta_buf->header.version_major = SMETA_VERSION_MAJOR;
  851. smeta_buf->header.version_minor = SMETA_VERSION_MINOR;
  852. /* Start metadata */
  853. smeta_buf->seq_nr = cpu_to_le64(line->seq_nr);
  854. smeta_buf->window_wr_lun = cpu_to_le32(geo->all_luns);
  855. /* Fill metadata among lines */
  856. if (cur) {
  857. memcpy(line->lun_bitmap, cur->lun_bitmap, lm->lun_bitmap_len);
  858. smeta_buf->prev_id = cpu_to_le32(cur->id);
  859. cur->emeta->buf->next_id = cpu_to_le32(line->id);
  860. } else {
  861. smeta_buf->prev_id = cpu_to_le32(PBLK_LINE_EMPTY);
  862. }
  863. /* All smeta must be set at this point */
  864. smeta_buf->header.crc = cpu_to_le32(
  865. pblk_calc_meta_header_crc(pblk, &smeta_buf->header));
  866. smeta_buf->crc = cpu_to_le32(pblk_calc_smeta_crc(pblk, smeta_buf));
  867. /* End metadata */
  868. memcpy(&emeta_buf->header, &smeta_buf->header,
  869. sizeof(struct line_header));
  870. emeta_buf->header.version_major = EMETA_VERSION_MAJOR;
  871. emeta_buf->header.version_minor = EMETA_VERSION_MINOR;
  872. emeta_buf->header.crc = cpu_to_le32(
  873. pblk_calc_meta_header_crc(pblk, &emeta_buf->header));
  874. emeta_buf->seq_nr = cpu_to_le64(line->seq_nr);
  875. emeta_buf->nr_lbas = cpu_to_le64(line->sec_in_line);
  876. emeta_buf->nr_valid_lbas = cpu_to_le64(0);
  877. emeta_buf->next_id = cpu_to_le32(PBLK_LINE_EMPTY);
  878. emeta_buf->crc = cpu_to_le32(0);
  879. emeta_buf->prev_id = smeta_buf->prev_id;
  880. return 1;
  881. }
  882. /* For now lines are always assumed full lines. Thus, smeta former and current
  883. * lun bitmaps are omitted.
  884. */
  885. static int pblk_line_init_bb(struct pblk *pblk, struct pblk_line *line,
  886. int init)
  887. {
  888. struct nvm_tgt_dev *dev = pblk->dev;
  889. struct nvm_geo *geo = &dev->geo;
  890. struct pblk_line_meta *lm = &pblk->lm;
  891. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  892. u64 off;
  893. int bit = -1;
  894. int emeta_secs;
  895. line->sec_in_line = lm->sec_per_line;
  896. /* Capture bad block information on line mapping bitmaps */
  897. while ((bit = find_next_bit(line->blk_bitmap, lm->blk_per_line,
  898. bit + 1)) < lm->blk_per_line) {
  899. off = bit * geo->ws_opt;
  900. bitmap_shift_left(l_mg->bb_aux, l_mg->bb_template, off,
  901. lm->sec_per_line);
  902. bitmap_or(line->map_bitmap, line->map_bitmap, l_mg->bb_aux,
  903. lm->sec_per_line);
  904. line->sec_in_line -= geo->clba;
  905. }
  906. /* Mark smeta metadata sectors as bad sectors */
  907. bit = find_first_zero_bit(line->blk_bitmap, lm->blk_per_line);
  908. off = bit * geo->ws_opt;
  909. bitmap_set(line->map_bitmap, off, lm->smeta_sec);
  910. line->sec_in_line -= lm->smeta_sec;
  911. line->smeta_ssec = off;
  912. line->cur_sec = off + lm->smeta_sec;
  913. if (init && pblk_line_submit_smeta_io(pblk, line, off, PBLK_WRITE)) {
  914. pr_debug("pblk: line smeta I/O failed. Retry\n");
  915. return 1;
  916. }
  917. bitmap_copy(line->invalid_bitmap, line->map_bitmap, lm->sec_per_line);
  918. /* Mark emeta metadata sectors as bad sectors. We need to consider bad
  919. * blocks to make sure that there are enough sectors to store emeta
  920. */
  921. emeta_secs = lm->emeta_sec[0];
  922. off = lm->sec_per_line;
  923. while (emeta_secs) {
  924. off -= geo->ws_opt;
  925. if (!test_bit(off, line->invalid_bitmap)) {
  926. bitmap_set(line->invalid_bitmap, off, geo->ws_opt);
  927. emeta_secs -= geo->ws_opt;
  928. }
  929. }
  930. line->emeta_ssec = off;
  931. line->sec_in_line -= lm->emeta_sec[0];
  932. line->nr_valid_lbas = 0;
  933. line->left_msecs = line->sec_in_line;
  934. *line->vsc = cpu_to_le32(line->sec_in_line);
  935. if (lm->sec_per_line - line->sec_in_line !=
  936. bitmap_weight(line->invalid_bitmap, lm->sec_per_line)) {
  937. spin_lock(&line->lock);
  938. line->state = PBLK_LINESTATE_BAD;
  939. spin_unlock(&line->lock);
  940. list_add_tail(&line->list, &l_mg->bad_list);
  941. pr_err("pblk: unexpected line %d is bad\n", line->id);
  942. return 0;
  943. }
  944. return 1;
  945. }
  946. static int pblk_prepare_new_line(struct pblk *pblk, struct pblk_line *line)
  947. {
  948. struct pblk_line_meta *lm = &pblk->lm;
  949. struct nvm_tgt_dev *dev = pblk->dev;
  950. struct nvm_geo *geo = &dev->geo;
  951. int blk_to_erase = atomic_read(&line->blk_in_line);
  952. int i;
  953. for (i = 0; i < lm->blk_per_line; i++) {
  954. struct pblk_lun *rlun = &pblk->luns[i];
  955. int pos = pblk_ppa_to_pos(geo, rlun->bppa);
  956. int state = line->chks[pos].state;
  957. /* Free chunks should not be erased */
  958. if (state & NVM_CHK_ST_FREE) {
  959. set_bit(pblk_ppa_to_pos(geo, rlun->bppa),
  960. line->erase_bitmap);
  961. blk_to_erase--;
  962. }
  963. }
  964. return blk_to_erase;
  965. }
  966. static int pblk_line_prepare(struct pblk *pblk, struct pblk_line *line)
  967. {
  968. struct pblk_line_meta *lm = &pblk->lm;
  969. int blk_to_erase;
  970. line->map_bitmap = kzalloc(lm->sec_bitmap_len, GFP_ATOMIC);
  971. if (!line->map_bitmap)
  972. return -ENOMEM;
  973. /* will be initialized using bb info from map_bitmap */
  974. line->invalid_bitmap = kmalloc(lm->sec_bitmap_len, GFP_ATOMIC);
  975. if (!line->invalid_bitmap) {
  976. kfree(line->map_bitmap);
  977. return -ENOMEM;
  978. }
  979. /* Bad blocks do not need to be erased */
  980. bitmap_copy(line->erase_bitmap, line->blk_bitmap, lm->blk_per_line);
  981. spin_lock(&line->lock);
  982. /* If we have not written to this line, we need to mark up free chunks
  983. * as already erased
  984. */
  985. if (line->state == PBLK_LINESTATE_NEW) {
  986. blk_to_erase = pblk_prepare_new_line(pblk, line);
  987. line->state = PBLK_LINESTATE_FREE;
  988. } else {
  989. blk_to_erase = atomic_read(&line->blk_in_line);
  990. }
  991. if (line->state != PBLK_LINESTATE_FREE) {
  992. kfree(line->map_bitmap);
  993. kfree(line->invalid_bitmap);
  994. spin_unlock(&line->lock);
  995. WARN(1, "pblk: corrupted line %d, state %d\n",
  996. line->id, line->state);
  997. return -EAGAIN;
  998. }
  999. line->state = PBLK_LINESTATE_OPEN;
  1000. atomic_set(&line->left_eblks, blk_to_erase);
  1001. atomic_set(&line->left_seblks, blk_to_erase);
  1002. line->meta_distance = lm->meta_distance;
  1003. spin_unlock(&line->lock);
  1004. kref_init(&line->ref);
  1005. return 0;
  1006. }
  1007. int pblk_line_recov_alloc(struct pblk *pblk, struct pblk_line *line)
  1008. {
  1009. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  1010. int ret;
  1011. spin_lock(&l_mg->free_lock);
  1012. l_mg->data_line = line;
  1013. list_del(&line->list);
  1014. ret = pblk_line_prepare(pblk, line);
  1015. if (ret) {
  1016. list_add(&line->list, &l_mg->free_list);
  1017. spin_unlock(&l_mg->free_lock);
  1018. return ret;
  1019. }
  1020. spin_unlock(&l_mg->free_lock);
  1021. pblk_rl_free_lines_dec(&pblk->rl, line, true);
  1022. if (!pblk_line_init_bb(pblk, line, 0)) {
  1023. list_add(&line->list, &l_mg->free_list);
  1024. return -EINTR;
  1025. }
  1026. return 0;
  1027. }
  1028. void pblk_line_recov_close(struct pblk *pblk, struct pblk_line *line)
  1029. {
  1030. kfree(line->map_bitmap);
  1031. line->map_bitmap = NULL;
  1032. line->smeta = NULL;
  1033. line->emeta = NULL;
  1034. }
  1035. struct pblk_line *pblk_line_get(struct pblk *pblk)
  1036. {
  1037. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  1038. struct pblk_line_meta *lm = &pblk->lm;
  1039. struct pblk_line *line;
  1040. int ret, bit;
  1041. lockdep_assert_held(&l_mg->free_lock);
  1042. retry:
  1043. if (list_empty(&l_mg->free_list)) {
  1044. pr_err("pblk: no free lines\n");
  1045. return NULL;
  1046. }
  1047. line = list_first_entry(&l_mg->free_list, struct pblk_line, list);
  1048. list_del(&line->list);
  1049. l_mg->nr_free_lines--;
  1050. bit = find_first_zero_bit(line->blk_bitmap, lm->blk_per_line);
  1051. if (unlikely(bit >= lm->blk_per_line)) {
  1052. spin_lock(&line->lock);
  1053. line->state = PBLK_LINESTATE_BAD;
  1054. spin_unlock(&line->lock);
  1055. list_add_tail(&line->list, &l_mg->bad_list);
  1056. pr_debug("pblk: line %d is bad\n", line->id);
  1057. goto retry;
  1058. }
  1059. ret = pblk_line_prepare(pblk, line);
  1060. if (ret) {
  1061. if (ret == -EAGAIN) {
  1062. list_add(&line->list, &l_mg->corrupt_list);
  1063. goto retry;
  1064. } else {
  1065. pr_err("pblk: failed to prepare line %d\n", line->id);
  1066. list_add(&line->list, &l_mg->free_list);
  1067. l_mg->nr_free_lines++;
  1068. return NULL;
  1069. }
  1070. }
  1071. return line;
  1072. }
  1073. static struct pblk_line *pblk_line_retry(struct pblk *pblk,
  1074. struct pblk_line *line)
  1075. {
  1076. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  1077. struct pblk_line *retry_line;
  1078. retry:
  1079. spin_lock(&l_mg->free_lock);
  1080. retry_line = pblk_line_get(pblk);
  1081. if (!retry_line) {
  1082. l_mg->data_line = NULL;
  1083. spin_unlock(&l_mg->free_lock);
  1084. return NULL;
  1085. }
  1086. retry_line->smeta = line->smeta;
  1087. retry_line->emeta = line->emeta;
  1088. retry_line->meta_line = line->meta_line;
  1089. pblk_line_free(pblk, line);
  1090. l_mg->data_line = retry_line;
  1091. spin_unlock(&l_mg->free_lock);
  1092. pblk_rl_free_lines_dec(&pblk->rl, line, false);
  1093. if (pblk_line_erase(pblk, retry_line))
  1094. goto retry;
  1095. return retry_line;
  1096. }
  1097. static void pblk_set_space_limit(struct pblk *pblk)
  1098. {
  1099. struct pblk_rl *rl = &pblk->rl;
  1100. atomic_set(&rl->rb_space, 0);
  1101. }
  1102. struct pblk_line *pblk_line_get_first_data(struct pblk *pblk)
  1103. {
  1104. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  1105. struct pblk_line *line;
  1106. spin_lock(&l_mg->free_lock);
  1107. line = pblk_line_get(pblk);
  1108. if (!line) {
  1109. spin_unlock(&l_mg->free_lock);
  1110. return NULL;
  1111. }
  1112. line->seq_nr = l_mg->d_seq_nr++;
  1113. line->type = PBLK_LINETYPE_DATA;
  1114. l_mg->data_line = line;
  1115. pblk_line_setup_metadata(line, l_mg, &pblk->lm);
  1116. /* Allocate next line for preparation */
  1117. l_mg->data_next = pblk_line_get(pblk);
  1118. if (!l_mg->data_next) {
  1119. /* If we cannot get a new line, we need to stop the pipeline.
  1120. * Only allow as many writes in as we can store safely and then
  1121. * fail gracefully
  1122. */
  1123. pblk_set_space_limit(pblk);
  1124. l_mg->data_next = NULL;
  1125. } else {
  1126. l_mg->data_next->seq_nr = l_mg->d_seq_nr++;
  1127. l_mg->data_next->type = PBLK_LINETYPE_DATA;
  1128. }
  1129. spin_unlock(&l_mg->free_lock);
  1130. if (pblk_line_erase(pblk, line)) {
  1131. line = pblk_line_retry(pblk, line);
  1132. if (!line)
  1133. return NULL;
  1134. }
  1135. retry_setup:
  1136. if (!pblk_line_init_metadata(pblk, line, NULL)) {
  1137. line = pblk_line_retry(pblk, line);
  1138. if (!line)
  1139. return NULL;
  1140. goto retry_setup;
  1141. }
  1142. if (!pblk_line_init_bb(pblk, line, 1)) {
  1143. line = pblk_line_retry(pblk, line);
  1144. if (!line)
  1145. return NULL;
  1146. goto retry_setup;
  1147. }
  1148. pblk_rl_free_lines_dec(&pblk->rl, line, true);
  1149. return line;
  1150. }
  1151. static void pblk_stop_writes(struct pblk *pblk, struct pblk_line *line)
  1152. {
  1153. lockdep_assert_held(&pblk->l_mg.free_lock);
  1154. pblk_set_space_limit(pblk);
  1155. pblk->state = PBLK_STATE_STOPPING;
  1156. }
  1157. static void pblk_line_close_meta_sync(struct pblk *pblk)
  1158. {
  1159. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  1160. struct pblk_line_meta *lm = &pblk->lm;
  1161. struct pblk_line *line, *tline;
  1162. LIST_HEAD(list);
  1163. spin_lock(&l_mg->close_lock);
  1164. if (list_empty(&l_mg->emeta_list)) {
  1165. spin_unlock(&l_mg->close_lock);
  1166. return;
  1167. }
  1168. list_cut_position(&list, &l_mg->emeta_list, l_mg->emeta_list.prev);
  1169. spin_unlock(&l_mg->close_lock);
  1170. list_for_each_entry_safe(line, tline, &list, list) {
  1171. struct pblk_emeta *emeta = line->emeta;
  1172. while (emeta->mem < lm->emeta_len[0]) {
  1173. int ret;
  1174. ret = pblk_submit_meta_io(pblk, line);
  1175. if (ret) {
  1176. pr_err("pblk: sync meta line %d failed (%d)\n",
  1177. line->id, ret);
  1178. return;
  1179. }
  1180. }
  1181. }
  1182. pblk_wait_for_meta(pblk);
  1183. flush_workqueue(pblk->close_wq);
  1184. }
  1185. void pblk_pipeline_stop(struct pblk *pblk)
  1186. {
  1187. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  1188. int ret;
  1189. spin_lock(&l_mg->free_lock);
  1190. if (pblk->state == PBLK_STATE_RECOVERING ||
  1191. pblk->state == PBLK_STATE_STOPPED) {
  1192. spin_unlock(&l_mg->free_lock);
  1193. return;
  1194. }
  1195. pblk->state = PBLK_STATE_RECOVERING;
  1196. spin_unlock(&l_mg->free_lock);
  1197. pblk_flush_writer(pblk);
  1198. pblk_wait_for_meta(pblk);
  1199. ret = pblk_recov_pad(pblk);
  1200. if (ret) {
  1201. pr_err("pblk: could not close data on teardown(%d)\n", ret);
  1202. return;
  1203. }
  1204. flush_workqueue(pblk->bb_wq);
  1205. pblk_line_close_meta_sync(pblk);
  1206. spin_lock(&l_mg->free_lock);
  1207. pblk->state = PBLK_STATE_STOPPED;
  1208. l_mg->data_line = NULL;
  1209. l_mg->data_next = NULL;
  1210. spin_unlock(&l_mg->free_lock);
  1211. }
  1212. struct pblk_line *pblk_line_replace_data(struct pblk *pblk)
  1213. {
  1214. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  1215. struct pblk_line *cur, *new = NULL;
  1216. unsigned int left_seblks;
  1217. cur = l_mg->data_line;
  1218. new = l_mg->data_next;
  1219. if (!new)
  1220. goto out;
  1221. l_mg->data_line = new;
  1222. spin_lock(&l_mg->free_lock);
  1223. pblk_line_setup_metadata(new, l_mg, &pblk->lm);
  1224. spin_unlock(&l_mg->free_lock);
  1225. retry_erase:
  1226. left_seblks = atomic_read(&new->left_seblks);
  1227. if (left_seblks) {
  1228. /* If line is not fully erased, erase it */
  1229. if (atomic_read(&new->left_eblks)) {
  1230. if (pblk_line_erase(pblk, new))
  1231. goto out;
  1232. } else {
  1233. io_schedule();
  1234. }
  1235. goto retry_erase;
  1236. }
  1237. retry_setup:
  1238. if (!pblk_line_init_metadata(pblk, new, cur)) {
  1239. new = pblk_line_retry(pblk, new);
  1240. if (!new)
  1241. goto out;
  1242. goto retry_setup;
  1243. }
  1244. if (!pblk_line_init_bb(pblk, new, 1)) {
  1245. new = pblk_line_retry(pblk, new);
  1246. if (!new)
  1247. goto out;
  1248. goto retry_setup;
  1249. }
  1250. pblk_rl_free_lines_dec(&pblk->rl, new, true);
  1251. /* Allocate next line for preparation */
  1252. spin_lock(&l_mg->free_lock);
  1253. l_mg->data_next = pblk_line_get(pblk);
  1254. if (!l_mg->data_next) {
  1255. /* If we cannot get a new line, we need to stop the pipeline.
  1256. * Only allow as many writes in as we can store safely and then
  1257. * fail gracefully
  1258. */
  1259. pblk_stop_writes(pblk, new);
  1260. l_mg->data_next = NULL;
  1261. } else {
  1262. l_mg->data_next->seq_nr = l_mg->d_seq_nr++;
  1263. l_mg->data_next->type = PBLK_LINETYPE_DATA;
  1264. }
  1265. spin_unlock(&l_mg->free_lock);
  1266. out:
  1267. return new;
  1268. }
  1269. void pblk_line_free(struct pblk *pblk, struct pblk_line *line)
  1270. {
  1271. kfree(line->map_bitmap);
  1272. kfree(line->invalid_bitmap);
  1273. *line->vsc = cpu_to_le32(EMPTY_ENTRY);
  1274. line->map_bitmap = NULL;
  1275. line->invalid_bitmap = NULL;
  1276. line->smeta = NULL;
  1277. line->emeta = NULL;
  1278. }
  1279. static void __pblk_line_put(struct pblk *pblk, struct pblk_line *line)
  1280. {
  1281. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  1282. struct pblk_gc *gc = &pblk->gc;
  1283. spin_lock(&line->lock);
  1284. WARN_ON(line->state != PBLK_LINESTATE_GC);
  1285. line->state = PBLK_LINESTATE_FREE;
  1286. line->gc_group = PBLK_LINEGC_NONE;
  1287. pblk_line_free(pblk, line);
  1288. spin_unlock(&line->lock);
  1289. atomic_dec(&gc->pipeline_gc);
  1290. spin_lock(&l_mg->free_lock);
  1291. list_add_tail(&line->list, &l_mg->free_list);
  1292. l_mg->nr_free_lines++;
  1293. spin_unlock(&l_mg->free_lock);
  1294. pblk_rl_free_lines_inc(&pblk->rl, line);
  1295. }
  1296. static void pblk_line_put_ws(struct work_struct *work)
  1297. {
  1298. struct pblk_line_ws *line_put_ws = container_of(work,
  1299. struct pblk_line_ws, ws);
  1300. struct pblk *pblk = line_put_ws->pblk;
  1301. struct pblk_line *line = line_put_ws->line;
  1302. __pblk_line_put(pblk, line);
  1303. mempool_free(line_put_ws, pblk->gen_ws_pool);
  1304. }
  1305. void pblk_line_put(struct kref *ref)
  1306. {
  1307. struct pblk_line *line = container_of(ref, struct pblk_line, ref);
  1308. struct pblk *pblk = line->pblk;
  1309. __pblk_line_put(pblk, line);
  1310. }
  1311. void pblk_line_put_wq(struct kref *ref)
  1312. {
  1313. struct pblk_line *line = container_of(ref, struct pblk_line, ref);
  1314. struct pblk *pblk = line->pblk;
  1315. struct pblk_line_ws *line_put_ws;
  1316. line_put_ws = mempool_alloc(pblk->gen_ws_pool, GFP_ATOMIC);
  1317. if (!line_put_ws)
  1318. return;
  1319. line_put_ws->pblk = pblk;
  1320. line_put_ws->line = line;
  1321. line_put_ws->priv = NULL;
  1322. INIT_WORK(&line_put_ws->ws, pblk_line_put_ws);
  1323. queue_work(pblk->r_end_wq, &line_put_ws->ws);
  1324. }
  1325. int pblk_blk_erase_async(struct pblk *pblk, struct ppa_addr ppa)
  1326. {
  1327. struct nvm_rq *rqd;
  1328. int err;
  1329. rqd = pblk_alloc_rqd(pblk, PBLK_ERASE);
  1330. pblk_setup_e_rq(pblk, rqd, ppa);
  1331. rqd->end_io = pblk_end_io_erase;
  1332. rqd->private = pblk;
  1333. /* The write thread schedules erases so that it minimizes disturbances
  1334. * with writes. Thus, there is no need to take the LUN semaphore.
  1335. */
  1336. err = pblk_submit_io(pblk, rqd);
  1337. if (err) {
  1338. struct nvm_tgt_dev *dev = pblk->dev;
  1339. struct nvm_geo *geo = &dev->geo;
  1340. pr_err("pblk: could not async erase line:%d,blk:%d\n",
  1341. pblk_ppa_to_line(ppa),
  1342. pblk_ppa_to_pos(geo, ppa));
  1343. }
  1344. return err;
  1345. }
  1346. struct pblk_line *pblk_line_get_data(struct pblk *pblk)
  1347. {
  1348. return pblk->l_mg.data_line;
  1349. }
  1350. /* For now, always erase next line */
  1351. struct pblk_line *pblk_line_get_erase(struct pblk *pblk)
  1352. {
  1353. return pblk->l_mg.data_next;
  1354. }
  1355. int pblk_line_is_full(struct pblk_line *line)
  1356. {
  1357. return (line->left_msecs == 0);
  1358. }
  1359. static void pblk_line_should_sync_meta(struct pblk *pblk)
  1360. {
  1361. if (pblk_rl_is_limit(&pblk->rl))
  1362. pblk_line_close_meta_sync(pblk);
  1363. }
  1364. void pblk_line_close(struct pblk *pblk, struct pblk_line *line)
  1365. {
  1366. struct nvm_tgt_dev *dev = pblk->dev;
  1367. struct nvm_geo *geo = &dev->geo;
  1368. struct pblk_line_meta *lm = &pblk->lm;
  1369. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  1370. struct list_head *move_list;
  1371. int i;
  1372. #ifdef CONFIG_NVM_DEBUG
  1373. WARN(!bitmap_full(line->map_bitmap, lm->sec_per_line),
  1374. "pblk: corrupt closed line %d\n", line->id);
  1375. #endif
  1376. spin_lock(&l_mg->free_lock);
  1377. WARN_ON(!test_and_clear_bit(line->meta_line, &l_mg->meta_bitmap));
  1378. spin_unlock(&l_mg->free_lock);
  1379. spin_lock(&l_mg->gc_lock);
  1380. spin_lock(&line->lock);
  1381. WARN_ON(line->state != PBLK_LINESTATE_OPEN);
  1382. line->state = PBLK_LINESTATE_CLOSED;
  1383. move_list = pblk_line_gc_list(pblk, line);
  1384. list_add_tail(&line->list, move_list);
  1385. kfree(line->map_bitmap);
  1386. line->map_bitmap = NULL;
  1387. line->smeta = NULL;
  1388. line->emeta = NULL;
  1389. for (i = 0; i < lm->blk_per_line; i++) {
  1390. struct pblk_lun *rlun = &pblk->luns[i];
  1391. int pos = pblk_ppa_to_pos(geo, rlun->bppa);
  1392. int state = line->chks[pos].state;
  1393. if (!(state & NVM_CHK_ST_OFFLINE))
  1394. state = NVM_CHK_ST_CLOSED;
  1395. }
  1396. spin_unlock(&line->lock);
  1397. spin_unlock(&l_mg->gc_lock);
  1398. }
  1399. void pblk_line_close_meta(struct pblk *pblk, struct pblk_line *line)
  1400. {
  1401. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  1402. struct pblk_line_meta *lm = &pblk->lm;
  1403. struct pblk_emeta *emeta = line->emeta;
  1404. struct line_emeta *emeta_buf = emeta->buf;
  1405. struct wa_counters *wa = emeta_to_wa(lm, emeta_buf);
  1406. /* No need for exact vsc value; avoid a big line lock and take aprox. */
  1407. memcpy(emeta_to_vsc(pblk, emeta_buf), l_mg->vsc_list, lm->vsc_list_len);
  1408. memcpy(emeta_to_bb(emeta_buf), line->blk_bitmap, lm->blk_bitmap_len);
  1409. wa->user = cpu_to_le64(atomic64_read(&pblk->user_wa));
  1410. wa->pad = cpu_to_le64(atomic64_read(&pblk->pad_wa));
  1411. wa->gc = cpu_to_le64(atomic64_read(&pblk->gc_wa));
  1412. emeta_buf->nr_valid_lbas = cpu_to_le64(line->nr_valid_lbas);
  1413. emeta_buf->crc = cpu_to_le32(pblk_calc_emeta_crc(pblk, emeta_buf));
  1414. spin_lock(&l_mg->close_lock);
  1415. spin_lock(&line->lock);
  1416. list_add_tail(&line->list, &l_mg->emeta_list);
  1417. spin_unlock(&line->lock);
  1418. spin_unlock(&l_mg->close_lock);
  1419. pblk_line_should_sync_meta(pblk);
  1420. }
  1421. void pblk_line_close_ws(struct work_struct *work)
  1422. {
  1423. struct pblk_line_ws *line_ws = container_of(work, struct pblk_line_ws,
  1424. ws);
  1425. struct pblk *pblk = line_ws->pblk;
  1426. struct pblk_line *line = line_ws->line;
  1427. pblk_line_close(pblk, line);
  1428. mempool_free(line_ws, pblk->gen_ws_pool);
  1429. }
  1430. void pblk_gen_run_ws(struct pblk *pblk, struct pblk_line *line, void *priv,
  1431. void (*work)(struct work_struct *), gfp_t gfp_mask,
  1432. struct workqueue_struct *wq)
  1433. {
  1434. struct pblk_line_ws *line_ws;
  1435. line_ws = mempool_alloc(pblk->gen_ws_pool, gfp_mask);
  1436. line_ws->pblk = pblk;
  1437. line_ws->line = line;
  1438. line_ws->priv = priv;
  1439. INIT_WORK(&line_ws->ws, work);
  1440. queue_work(wq, &line_ws->ws);
  1441. }
  1442. static void __pblk_down_page(struct pblk *pblk, struct ppa_addr *ppa_list,
  1443. int nr_ppas, int pos)
  1444. {
  1445. struct pblk_lun *rlun = &pblk->luns[pos];
  1446. int ret;
  1447. /*
  1448. * Only send one inflight I/O per LUN. Since we map at a page
  1449. * granurality, all ppas in the I/O will map to the same LUN
  1450. */
  1451. #ifdef CONFIG_NVM_DEBUG
  1452. int i;
  1453. for (i = 1; i < nr_ppas; i++)
  1454. WARN_ON(ppa_list[0].a.lun != ppa_list[i].a.lun ||
  1455. ppa_list[0].a.ch != ppa_list[i].a.ch);
  1456. #endif
  1457. ret = down_timeout(&rlun->wr_sem, msecs_to_jiffies(30000));
  1458. if (ret == -ETIME || ret == -EINTR)
  1459. pr_err("pblk: taking lun semaphore timed out: err %d\n", -ret);
  1460. }
  1461. void pblk_down_page(struct pblk *pblk, struct ppa_addr *ppa_list, int nr_ppas)
  1462. {
  1463. struct nvm_tgt_dev *dev = pblk->dev;
  1464. struct nvm_geo *geo = &dev->geo;
  1465. int pos = pblk_ppa_to_pos(geo, ppa_list[0]);
  1466. __pblk_down_page(pblk, ppa_list, nr_ppas, pos);
  1467. }
  1468. void pblk_down_rq(struct pblk *pblk, struct ppa_addr *ppa_list, int nr_ppas,
  1469. unsigned long *lun_bitmap)
  1470. {
  1471. struct nvm_tgt_dev *dev = pblk->dev;
  1472. struct nvm_geo *geo = &dev->geo;
  1473. int pos = pblk_ppa_to_pos(geo, ppa_list[0]);
  1474. /* If the LUN has been locked for this same request, do no attempt to
  1475. * lock it again
  1476. */
  1477. if (test_and_set_bit(pos, lun_bitmap))
  1478. return;
  1479. __pblk_down_page(pblk, ppa_list, nr_ppas, pos);
  1480. }
  1481. void pblk_up_page(struct pblk *pblk, struct ppa_addr *ppa_list, int nr_ppas)
  1482. {
  1483. struct nvm_tgt_dev *dev = pblk->dev;
  1484. struct nvm_geo *geo = &dev->geo;
  1485. struct pblk_lun *rlun;
  1486. int pos = pblk_ppa_to_pos(geo, ppa_list[0]);
  1487. #ifdef CONFIG_NVM_DEBUG
  1488. int i;
  1489. for (i = 1; i < nr_ppas; i++)
  1490. WARN_ON(ppa_list[0].a.lun != ppa_list[i].a.lun ||
  1491. ppa_list[0].a.ch != ppa_list[i].a.ch);
  1492. #endif
  1493. rlun = &pblk->luns[pos];
  1494. up(&rlun->wr_sem);
  1495. }
  1496. void pblk_up_rq(struct pblk *pblk, struct ppa_addr *ppa_list, int nr_ppas,
  1497. unsigned long *lun_bitmap)
  1498. {
  1499. struct nvm_tgt_dev *dev = pblk->dev;
  1500. struct nvm_geo *geo = &dev->geo;
  1501. struct pblk_lun *rlun;
  1502. int num_lun = geo->all_luns;
  1503. int bit = -1;
  1504. while ((bit = find_next_bit(lun_bitmap, num_lun, bit + 1)) < num_lun) {
  1505. rlun = &pblk->luns[bit];
  1506. up(&rlun->wr_sem);
  1507. }
  1508. }
  1509. void pblk_update_map(struct pblk *pblk, sector_t lba, struct ppa_addr ppa)
  1510. {
  1511. struct ppa_addr ppa_l2p;
  1512. /* logic error: lba out-of-bounds. Ignore update */
  1513. if (!(lba < pblk->rl.nr_secs)) {
  1514. WARN(1, "pblk: corrupted L2P map request\n");
  1515. return;
  1516. }
  1517. spin_lock(&pblk->trans_lock);
  1518. ppa_l2p = pblk_trans_map_get(pblk, lba);
  1519. if (!pblk_addr_in_cache(ppa_l2p) && !pblk_ppa_empty(ppa_l2p))
  1520. pblk_map_invalidate(pblk, ppa_l2p);
  1521. pblk_trans_map_set(pblk, lba, ppa);
  1522. spin_unlock(&pblk->trans_lock);
  1523. }
  1524. void pblk_update_map_cache(struct pblk *pblk, sector_t lba, struct ppa_addr ppa)
  1525. {
  1526. #ifdef CONFIG_NVM_DEBUG
  1527. /* Callers must ensure that the ppa points to a cache address */
  1528. BUG_ON(!pblk_addr_in_cache(ppa));
  1529. BUG_ON(pblk_rb_pos_oob(&pblk->rwb, pblk_addr_to_cacheline(ppa)));
  1530. #endif
  1531. pblk_update_map(pblk, lba, ppa);
  1532. }
  1533. int pblk_update_map_gc(struct pblk *pblk, sector_t lba, struct ppa_addr ppa_new,
  1534. struct pblk_line *gc_line, u64 paddr_gc)
  1535. {
  1536. struct ppa_addr ppa_l2p, ppa_gc;
  1537. int ret = 1;
  1538. #ifdef CONFIG_NVM_DEBUG
  1539. /* Callers must ensure that the ppa points to a cache address */
  1540. BUG_ON(!pblk_addr_in_cache(ppa_new));
  1541. BUG_ON(pblk_rb_pos_oob(&pblk->rwb, pblk_addr_to_cacheline(ppa_new)));
  1542. #endif
  1543. /* logic error: lba out-of-bounds. Ignore update */
  1544. if (!(lba < pblk->rl.nr_secs)) {
  1545. WARN(1, "pblk: corrupted L2P map request\n");
  1546. return 0;
  1547. }
  1548. spin_lock(&pblk->trans_lock);
  1549. ppa_l2p = pblk_trans_map_get(pblk, lba);
  1550. ppa_gc = addr_to_gen_ppa(pblk, paddr_gc, gc_line->id);
  1551. if (!pblk_ppa_comp(ppa_l2p, ppa_gc)) {
  1552. spin_lock(&gc_line->lock);
  1553. WARN(!test_bit(paddr_gc, gc_line->invalid_bitmap),
  1554. "pblk: corrupted GC update");
  1555. spin_unlock(&gc_line->lock);
  1556. ret = 0;
  1557. goto out;
  1558. }
  1559. pblk_trans_map_set(pblk, lba, ppa_new);
  1560. out:
  1561. spin_unlock(&pblk->trans_lock);
  1562. return ret;
  1563. }
  1564. void pblk_update_map_dev(struct pblk *pblk, sector_t lba,
  1565. struct ppa_addr ppa_mapped, struct ppa_addr ppa_cache)
  1566. {
  1567. struct ppa_addr ppa_l2p;
  1568. #ifdef CONFIG_NVM_DEBUG
  1569. /* Callers must ensure that the ppa points to a device address */
  1570. BUG_ON(pblk_addr_in_cache(ppa_mapped));
  1571. #endif
  1572. /* Invalidate and discard padded entries */
  1573. if (lba == ADDR_EMPTY) {
  1574. atomic64_inc(&pblk->pad_wa);
  1575. #ifdef CONFIG_NVM_DEBUG
  1576. atomic_long_inc(&pblk->padded_wb);
  1577. #endif
  1578. if (!pblk_ppa_empty(ppa_mapped))
  1579. pblk_map_invalidate(pblk, ppa_mapped);
  1580. return;
  1581. }
  1582. /* logic error: lba out-of-bounds. Ignore update */
  1583. if (!(lba < pblk->rl.nr_secs)) {
  1584. WARN(1, "pblk: corrupted L2P map request\n");
  1585. return;
  1586. }
  1587. spin_lock(&pblk->trans_lock);
  1588. ppa_l2p = pblk_trans_map_get(pblk, lba);
  1589. /* Do not update L2P if the cacheline has been updated. In this case,
  1590. * the mapped ppa must be invalidated
  1591. */
  1592. if (!pblk_ppa_comp(ppa_l2p, ppa_cache)) {
  1593. if (!pblk_ppa_empty(ppa_mapped))
  1594. pblk_map_invalidate(pblk, ppa_mapped);
  1595. goto out;
  1596. }
  1597. #ifdef CONFIG_NVM_DEBUG
  1598. WARN_ON(!pblk_addr_in_cache(ppa_l2p) && !pblk_ppa_empty(ppa_l2p));
  1599. #endif
  1600. pblk_trans_map_set(pblk, lba, ppa_mapped);
  1601. out:
  1602. spin_unlock(&pblk->trans_lock);
  1603. }
  1604. void pblk_lookup_l2p_seq(struct pblk *pblk, struct ppa_addr *ppas,
  1605. sector_t blba, int nr_secs)
  1606. {
  1607. int i;
  1608. spin_lock(&pblk->trans_lock);
  1609. for (i = 0; i < nr_secs; i++) {
  1610. struct ppa_addr ppa;
  1611. ppa = ppas[i] = pblk_trans_map_get(pblk, blba + i);
  1612. /* If the L2P entry maps to a line, the reference is valid */
  1613. if (!pblk_ppa_empty(ppa) && !pblk_addr_in_cache(ppa)) {
  1614. int line_id = pblk_ppa_to_line(ppa);
  1615. struct pblk_line *line = &pblk->lines[line_id];
  1616. kref_get(&line->ref);
  1617. }
  1618. }
  1619. spin_unlock(&pblk->trans_lock);
  1620. }
  1621. void pblk_lookup_l2p_rand(struct pblk *pblk, struct ppa_addr *ppas,
  1622. u64 *lba_list, int nr_secs)
  1623. {
  1624. u64 lba;
  1625. int i;
  1626. spin_lock(&pblk->trans_lock);
  1627. for (i = 0; i < nr_secs; i++) {
  1628. lba = lba_list[i];
  1629. if (lba != ADDR_EMPTY) {
  1630. /* logic error: lba out-of-bounds. Ignore update */
  1631. if (!(lba < pblk->rl.nr_secs)) {
  1632. WARN(1, "pblk: corrupted L2P map request\n");
  1633. continue;
  1634. }
  1635. ppas[i] = pblk_trans_map_get(pblk, lba);
  1636. }
  1637. }
  1638. spin_unlock(&pblk->trans_lock);
  1639. }