pblk-init.c 25 KB

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  1. /*
  2. * Copyright (C) 2015 IT University of Copenhagen (rrpc.c)
  3. * Copyright (C) 2016 CNEX Labs
  4. * Initial release: Javier Gonzalez <javier@cnexlabs.com>
  5. * Matias Bjorling <matias@cnexlabs.com>
  6. *
  7. * This program is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU General Public License version
  9. * 2 as published by the Free Software Foundation.
  10. *
  11. * This program is distributed in the hope that it will be useful, but
  12. * WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  14. * General Public License for more details.
  15. *
  16. * Implementation of a physical block-device target for Open-channel SSDs.
  17. *
  18. * pblk-init.c - pblk's initialization.
  19. */
  20. #include "pblk.h"
  21. static struct kmem_cache *pblk_blk_ws_cache, *pblk_rec_cache, *pblk_g_rq_cache,
  22. *pblk_w_rq_cache, *pblk_line_meta_cache;
  23. static DECLARE_RWSEM(pblk_lock);
  24. struct bio_set *pblk_bio_set;
  25. static int pblk_rw_io(struct request_queue *q, struct pblk *pblk,
  26. struct bio *bio)
  27. {
  28. int ret;
  29. /* Read requests must be <= 256kb due to NVMe's 64 bit completion bitmap
  30. * constraint. Writes can be of arbitrary size.
  31. */
  32. if (bio_data_dir(bio) == READ) {
  33. blk_queue_split(q, &bio);
  34. ret = pblk_submit_read(pblk, bio);
  35. if (ret == NVM_IO_DONE && bio_flagged(bio, BIO_CLONED))
  36. bio_put(bio);
  37. return ret;
  38. }
  39. /* Prevent deadlock in the case of a modest LUN configuration and large
  40. * user I/Os. Unless stalled, the rate limiter leaves at least 256KB
  41. * available for user I/O.
  42. */
  43. if (unlikely(pblk_get_secs(bio) >= pblk_rl_sysfs_rate_show(&pblk->rl)))
  44. blk_queue_split(q, &bio);
  45. return pblk_write_to_cache(pblk, bio, PBLK_IOTYPE_USER);
  46. }
  47. static blk_qc_t pblk_make_rq(struct request_queue *q, struct bio *bio)
  48. {
  49. struct pblk *pblk = q->queuedata;
  50. if (bio_op(bio) == REQ_OP_DISCARD) {
  51. pblk_discard(pblk, bio);
  52. if (!(bio->bi_opf & REQ_PREFLUSH)) {
  53. bio_endio(bio);
  54. return BLK_QC_T_NONE;
  55. }
  56. }
  57. switch (pblk_rw_io(q, pblk, bio)) {
  58. case NVM_IO_ERR:
  59. bio_io_error(bio);
  60. break;
  61. case NVM_IO_DONE:
  62. bio_endio(bio);
  63. break;
  64. }
  65. return BLK_QC_T_NONE;
  66. }
  67. static void pblk_l2p_free(struct pblk *pblk)
  68. {
  69. vfree(pblk->trans_map);
  70. }
  71. static int pblk_l2p_init(struct pblk *pblk)
  72. {
  73. sector_t i;
  74. struct ppa_addr ppa;
  75. int entry_size = 8;
  76. if (pblk->ppaf_bitsize < 32)
  77. entry_size = 4;
  78. pblk->trans_map = vmalloc(entry_size * pblk->rl.nr_secs);
  79. if (!pblk->trans_map)
  80. return -ENOMEM;
  81. pblk_ppa_set_empty(&ppa);
  82. for (i = 0; i < pblk->rl.nr_secs; i++)
  83. pblk_trans_map_set(pblk, i, ppa);
  84. return 0;
  85. }
  86. static void pblk_rwb_free(struct pblk *pblk)
  87. {
  88. if (pblk_rb_tear_down_check(&pblk->rwb))
  89. pr_err("pblk: write buffer error on tear down\n");
  90. pblk_rb_data_free(&pblk->rwb);
  91. vfree(pblk_rb_entries_ref(&pblk->rwb));
  92. }
  93. static int pblk_rwb_init(struct pblk *pblk)
  94. {
  95. struct nvm_tgt_dev *dev = pblk->dev;
  96. struct nvm_geo *geo = &dev->geo;
  97. struct pblk_rb_entry *entries;
  98. unsigned long nr_entries;
  99. unsigned int power_size, power_seg_sz;
  100. nr_entries = pblk_rb_calculate_size(pblk->pgs_in_buffer);
  101. entries = vzalloc(nr_entries * sizeof(struct pblk_rb_entry));
  102. if (!entries)
  103. return -ENOMEM;
  104. power_size = get_count_order(nr_entries);
  105. power_seg_sz = get_count_order(geo->sec_size);
  106. return pblk_rb_init(&pblk->rwb, entries, power_size, power_seg_sz);
  107. }
  108. /* Minimum pages needed within a lun */
  109. #define PAGE_POOL_SIZE 16
  110. #define ADDR_POOL_SIZE 64
  111. static int pblk_set_ppaf(struct pblk *pblk)
  112. {
  113. struct nvm_tgt_dev *dev = pblk->dev;
  114. struct nvm_geo *geo = &dev->geo;
  115. struct nvm_addr_format ppaf = geo->ppaf;
  116. int power_len;
  117. /* Re-calculate channel and lun format to adapt to configuration */
  118. power_len = get_count_order(geo->nr_chnls);
  119. if (1 << power_len != geo->nr_chnls) {
  120. pr_err("pblk: supports only power-of-two channel config.\n");
  121. return -EINVAL;
  122. }
  123. ppaf.ch_len = power_len;
  124. power_len = get_count_order(geo->luns_per_chnl);
  125. if (1 << power_len != geo->luns_per_chnl) {
  126. pr_err("pblk: supports only power-of-two LUN config.\n");
  127. return -EINVAL;
  128. }
  129. ppaf.lun_len = power_len;
  130. pblk->ppaf.sec_offset = 0;
  131. pblk->ppaf.pln_offset = ppaf.sect_len;
  132. pblk->ppaf.ch_offset = pblk->ppaf.pln_offset + ppaf.pln_len;
  133. pblk->ppaf.lun_offset = pblk->ppaf.ch_offset + ppaf.ch_len;
  134. pblk->ppaf.pg_offset = pblk->ppaf.lun_offset + ppaf.lun_len;
  135. pblk->ppaf.blk_offset = pblk->ppaf.pg_offset + ppaf.pg_len;
  136. pblk->ppaf.sec_mask = (1ULL << ppaf.sect_len) - 1;
  137. pblk->ppaf.pln_mask = ((1ULL << ppaf.pln_len) - 1) <<
  138. pblk->ppaf.pln_offset;
  139. pblk->ppaf.ch_mask = ((1ULL << ppaf.ch_len) - 1) <<
  140. pblk->ppaf.ch_offset;
  141. pblk->ppaf.lun_mask = ((1ULL << ppaf.lun_len) - 1) <<
  142. pblk->ppaf.lun_offset;
  143. pblk->ppaf.pg_mask = ((1ULL << ppaf.pg_len) - 1) <<
  144. pblk->ppaf.pg_offset;
  145. pblk->ppaf.blk_mask = ((1ULL << ppaf.blk_len) - 1) <<
  146. pblk->ppaf.blk_offset;
  147. pblk->ppaf_bitsize = pblk->ppaf.blk_offset + ppaf.blk_len;
  148. return 0;
  149. }
  150. static int pblk_init_global_caches(struct pblk *pblk)
  151. {
  152. char cache_name[PBLK_CACHE_NAME_LEN];
  153. down_write(&pblk_lock);
  154. pblk_blk_ws_cache = kmem_cache_create("pblk_blk_ws",
  155. sizeof(struct pblk_line_ws), 0, 0, NULL);
  156. if (!pblk_blk_ws_cache) {
  157. up_write(&pblk_lock);
  158. return -ENOMEM;
  159. }
  160. pblk_rec_cache = kmem_cache_create("pblk_rec",
  161. sizeof(struct pblk_rec_ctx), 0, 0, NULL);
  162. if (!pblk_rec_cache) {
  163. kmem_cache_destroy(pblk_blk_ws_cache);
  164. up_write(&pblk_lock);
  165. return -ENOMEM;
  166. }
  167. pblk_g_rq_cache = kmem_cache_create("pblk_g_rq", pblk_g_rq_size,
  168. 0, 0, NULL);
  169. if (!pblk_g_rq_cache) {
  170. kmem_cache_destroy(pblk_blk_ws_cache);
  171. kmem_cache_destroy(pblk_rec_cache);
  172. up_write(&pblk_lock);
  173. return -ENOMEM;
  174. }
  175. pblk_w_rq_cache = kmem_cache_create("pblk_w_rq", pblk_w_rq_size,
  176. 0, 0, NULL);
  177. if (!pblk_w_rq_cache) {
  178. kmem_cache_destroy(pblk_blk_ws_cache);
  179. kmem_cache_destroy(pblk_rec_cache);
  180. kmem_cache_destroy(pblk_g_rq_cache);
  181. up_write(&pblk_lock);
  182. return -ENOMEM;
  183. }
  184. snprintf(cache_name, sizeof(cache_name), "pblk_line_m_%s",
  185. pblk->disk->disk_name);
  186. pblk_line_meta_cache = kmem_cache_create(cache_name,
  187. pblk->lm.sec_bitmap_len, 0, 0, NULL);
  188. if (!pblk_line_meta_cache) {
  189. kmem_cache_destroy(pblk_blk_ws_cache);
  190. kmem_cache_destroy(pblk_rec_cache);
  191. kmem_cache_destroy(pblk_g_rq_cache);
  192. kmem_cache_destroy(pblk_w_rq_cache);
  193. up_write(&pblk_lock);
  194. return -ENOMEM;
  195. }
  196. up_write(&pblk_lock);
  197. return 0;
  198. }
  199. static int pblk_core_init(struct pblk *pblk)
  200. {
  201. struct nvm_tgt_dev *dev = pblk->dev;
  202. struct nvm_geo *geo = &dev->geo;
  203. pblk->pgs_in_buffer = NVM_MEM_PAGE_WRITE * geo->sec_per_pg *
  204. geo->nr_planes * geo->nr_luns;
  205. if (pblk_init_global_caches(pblk))
  206. return -ENOMEM;
  207. pblk->page_pool = mempool_create_page_pool(PAGE_POOL_SIZE, 0);
  208. if (!pblk->page_pool)
  209. return -ENOMEM;
  210. pblk->line_ws_pool = mempool_create_slab_pool(geo->nr_luns,
  211. pblk_blk_ws_cache);
  212. if (!pblk->line_ws_pool)
  213. goto free_page_pool;
  214. pblk->rec_pool = mempool_create_slab_pool(geo->nr_luns, pblk_rec_cache);
  215. if (!pblk->rec_pool)
  216. goto free_blk_ws_pool;
  217. pblk->g_rq_pool = mempool_create_slab_pool(64, pblk_g_rq_cache);
  218. if (!pblk->g_rq_pool)
  219. goto free_rec_pool;
  220. pblk->w_rq_pool = mempool_create_slab_pool(64, pblk_w_rq_cache);
  221. if (!pblk->w_rq_pool)
  222. goto free_g_rq_pool;
  223. pblk->line_meta_pool =
  224. mempool_create_slab_pool(16, pblk_line_meta_cache);
  225. if (!pblk->line_meta_pool)
  226. goto free_w_rq_pool;
  227. pblk->kw_wq = alloc_workqueue("pblk-aux-wq",
  228. WQ_MEM_RECLAIM | WQ_UNBOUND, 1);
  229. if (!pblk->kw_wq)
  230. goto free_line_meta_pool;
  231. if (pblk_set_ppaf(pblk))
  232. goto free_kw_wq;
  233. if (pblk_rwb_init(pblk))
  234. goto free_kw_wq;
  235. INIT_LIST_HEAD(&pblk->compl_list);
  236. return 0;
  237. free_kw_wq:
  238. destroy_workqueue(pblk->kw_wq);
  239. free_line_meta_pool:
  240. mempool_destroy(pblk->line_meta_pool);
  241. free_w_rq_pool:
  242. mempool_destroy(pblk->w_rq_pool);
  243. free_g_rq_pool:
  244. mempool_destroy(pblk->g_rq_pool);
  245. free_rec_pool:
  246. mempool_destroy(pblk->rec_pool);
  247. free_blk_ws_pool:
  248. mempool_destroy(pblk->line_ws_pool);
  249. free_page_pool:
  250. mempool_destroy(pblk->page_pool);
  251. return -ENOMEM;
  252. }
  253. static void pblk_core_free(struct pblk *pblk)
  254. {
  255. if (pblk->kw_wq)
  256. destroy_workqueue(pblk->kw_wq);
  257. mempool_destroy(pblk->page_pool);
  258. mempool_destroy(pblk->line_ws_pool);
  259. mempool_destroy(pblk->rec_pool);
  260. mempool_destroy(pblk->g_rq_pool);
  261. mempool_destroy(pblk->w_rq_pool);
  262. mempool_destroy(pblk->line_meta_pool);
  263. kmem_cache_destroy(pblk_blk_ws_cache);
  264. kmem_cache_destroy(pblk_rec_cache);
  265. kmem_cache_destroy(pblk_g_rq_cache);
  266. kmem_cache_destroy(pblk_w_rq_cache);
  267. kmem_cache_destroy(pblk_line_meta_cache);
  268. }
  269. static void pblk_luns_free(struct pblk *pblk)
  270. {
  271. kfree(pblk->luns);
  272. }
  273. static void pblk_lines_free(struct pblk *pblk)
  274. {
  275. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  276. struct pblk_line *line;
  277. int i;
  278. spin_lock(&l_mg->free_lock);
  279. for (i = 0; i < l_mg->nr_lines; i++) {
  280. line = &pblk->lines[i];
  281. pblk_line_free(pblk, line);
  282. kfree(line->blk_bitmap);
  283. kfree(line->erase_bitmap);
  284. }
  285. spin_unlock(&l_mg->free_lock);
  286. }
  287. static void pblk_line_meta_free(struct pblk *pblk)
  288. {
  289. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  290. int i;
  291. kfree(l_mg->bb_template);
  292. kfree(l_mg->bb_aux);
  293. kfree(l_mg->vsc_list);
  294. for (i = 0; i < PBLK_DATA_LINES; i++) {
  295. pblk_mfree(&l_mg->sline_meta[i], l_mg->smeta_alloc_type);
  296. pblk_mfree(l_mg->eline_meta[i]->buf, l_mg->emeta_alloc_type);
  297. kfree(&l_mg->eline_meta[i]);
  298. }
  299. kfree(pblk->lines);
  300. }
  301. static int pblk_bb_discovery(struct nvm_tgt_dev *dev, struct pblk_lun *rlun)
  302. {
  303. struct nvm_geo *geo = &dev->geo;
  304. struct ppa_addr ppa;
  305. u8 *blks;
  306. int nr_blks, ret;
  307. nr_blks = geo->blks_per_lun * geo->plane_mode;
  308. blks = kmalloc(nr_blks, GFP_KERNEL);
  309. if (!blks)
  310. return -ENOMEM;
  311. ppa.ppa = 0;
  312. ppa.g.ch = rlun->bppa.g.ch;
  313. ppa.g.lun = rlun->bppa.g.lun;
  314. ret = nvm_get_tgt_bb_tbl(dev, ppa, blks);
  315. if (ret)
  316. goto out;
  317. nr_blks = nvm_bb_tbl_fold(dev->parent, blks, nr_blks);
  318. if (nr_blks < 0) {
  319. ret = nr_blks;
  320. goto out;
  321. }
  322. rlun->bb_list = blks;
  323. return 0;
  324. out:
  325. kfree(blks);
  326. return ret;
  327. }
  328. static int pblk_bb_line(struct pblk *pblk, struct nvm_geo *geo,
  329. struct pblk_line *line)
  330. {
  331. struct pblk_line_meta *lm = &pblk->lm;
  332. struct pblk_lun *rlun;
  333. int bb_cnt = 0;
  334. int i;
  335. line->blk_bitmap = kzalloc(lm->blk_bitmap_len, GFP_KERNEL);
  336. if (!line->blk_bitmap)
  337. return -ENOMEM;
  338. line->erase_bitmap = kzalloc(lm->blk_bitmap_len, GFP_KERNEL);
  339. if (!line->erase_bitmap) {
  340. kfree(line->blk_bitmap);
  341. return -ENOMEM;
  342. }
  343. for (i = 0; i < lm->blk_per_line; i++) {
  344. rlun = &pblk->luns[i];
  345. if (rlun->bb_list[line->id] == NVM_BLK_T_FREE)
  346. continue;
  347. set_bit(pblk_ppa_to_pos(geo, rlun->bppa), line->blk_bitmap);
  348. bb_cnt++;
  349. }
  350. return bb_cnt;
  351. }
  352. static int pblk_luns_init(struct pblk *pblk, struct ppa_addr *luns)
  353. {
  354. struct nvm_tgt_dev *dev = pblk->dev;
  355. struct nvm_geo *geo = &dev->geo;
  356. struct pblk_lun *rlun;
  357. int i, ret;
  358. /* TODO: Implement unbalanced LUN support */
  359. if (geo->luns_per_chnl < 0) {
  360. pr_err("pblk: unbalanced LUN config.\n");
  361. return -EINVAL;
  362. }
  363. pblk->luns = kcalloc(geo->nr_luns, sizeof(struct pblk_lun), GFP_KERNEL);
  364. if (!pblk->luns)
  365. return -ENOMEM;
  366. for (i = 0; i < geo->nr_luns; i++) {
  367. /* Stripe across channels */
  368. int ch = i % geo->nr_chnls;
  369. int lun_raw = i / geo->nr_chnls;
  370. int lunid = lun_raw + ch * geo->luns_per_chnl;
  371. rlun = &pblk->luns[i];
  372. rlun->bppa = luns[lunid];
  373. sema_init(&rlun->wr_sem, 1);
  374. ret = pblk_bb_discovery(dev, rlun);
  375. if (ret) {
  376. while (--i >= 0)
  377. kfree(pblk->luns[i].bb_list);
  378. return ret;
  379. }
  380. }
  381. return 0;
  382. }
  383. static int pblk_lines_configure(struct pblk *pblk, int flags)
  384. {
  385. struct pblk_line *line = NULL;
  386. int ret = 0;
  387. if (!(flags & NVM_TARGET_FACTORY)) {
  388. line = pblk_recov_l2p(pblk);
  389. if (IS_ERR(line)) {
  390. pr_err("pblk: could not recover l2p table\n");
  391. ret = -EFAULT;
  392. }
  393. }
  394. if (!line) {
  395. /* Configure next line for user data */
  396. line = pblk_line_get_first_data(pblk);
  397. if (!line) {
  398. pr_err("pblk: line list corrupted\n");
  399. ret = -EFAULT;
  400. }
  401. }
  402. return ret;
  403. }
  404. /* See comment over struct line_emeta definition */
  405. static unsigned int calc_emeta_len(struct pblk *pblk)
  406. {
  407. struct pblk_line_meta *lm = &pblk->lm;
  408. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  409. struct nvm_tgt_dev *dev = pblk->dev;
  410. struct nvm_geo *geo = &dev->geo;
  411. /* Round to sector size so that lba_list starts on its own sector */
  412. lm->emeta_sec[1] = DIV_ROUND_UP(
  413. sizeof(struct line_emeta) + lm->blk_bitmap_len,
  414. geo->sec_size);
  415. lm->emeta_len[1] = lm->emeta_sec[1] * geo->sec_size;
  416. /* Round to sector size so that vsc_list starts on its own sector */
  417. lm->dsec_per_line = lm->sec_per_line - lm->emeta_sec[0];
  418. lm->emeta_sec[2] = DIV_ROUND_UP(lm->dsec_per_line * sizeof(u64),
  419. geo->sec_size);
  420. lm->emeta_len[2] = lm->emeta_sec[2] * geo->sec_size;
  421. lm->emeta_sec[3] = DIV_ROUND_UP(l_mg->nr_lines * sizeof(u32),
  422. geo->sec_size);
  423. lm->emeta_len[3] = lm->emeta_sec[3] * geo->sec_size;
  424. lm->vsc_list_len = l_mg->nr_lines * sizeof(u32);
  425. return (lm->emeta_len[1] + lm->emeta_len[2] + lm->emeta_len[3]);
  426. }
  427. static void pblk_set_provision(struct pblk *pblk, long nr_free_blks)
  428. {
  429. struct nvm_tgt_dev *dev = pblk->dev;
  430. struct nvm_geo *geo = &dev->geo;
  431. sector_t provisioned;
  432. pblk->over_pct = 20;
  433. provisioned = nr_free_blks;
  434. provisioned *= (100 - pblk->over_pct);
  435. sector_div(provisioned, 100);
  436. /* Internally pblk manages all free blocks, but all calculations based
  437. * on user capacity consider only provisioned blocks
  438. */
  439. pblk->rl.total_blocks = nr_free_blks;
  440. pblk->rl.nr_secs = nr_free_blks * geo->sec_per_blk;
  441. pblk->capacity = provisioned * geo->sec_per_blk;
  442. atomic_set(&pblk->rl.free_blocks, nr_free_blks);
  443. }
  444. static int pblk_lines_alloc_metadata(struct pblk *pblk)
  445. {
  446. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  447. struct pblk_line_meta *lm = &pblk->lm;
  448. int i;
  449. /* smeta is always small enough to fit on a kmalloc memory allocation,
  450. * emeta depends on the number of LUNs allocated to the pblk instance
  451. */
  452. l_mg->smeta_alloc_type = PBLK_KMALLOC_META;
  453. for (i = 0; i < PBLK_DATA_LINES; i++) {
  454. l_mg->sline_meta[i] = kmalloc(lm->smeta_len, GFP_KERNEL);
  455. if (!l_mg->sline_meta[i])
  456. goto fail_free_smeta;
  457. }
  458. /* emeta allocates three different buffers for managing metadata with
  459. * in-memory and in-media layouts
  460. */
  461. for (i = 0; i < PBLK_DATA_LINES; i++) {
  462. struct pblk_emeta *emeta;
  463. emeta = kmalloc(sizeof(struct pblk_emeta), GFP_KERNEL);
  464. if (!emeta)
  465. goto fail_free_emeta;
  466. if (lm->emeta_len[0] > KMALLOC_MAX_CACHE_SIZE) {
  467. l_mg->emeta_alloc_type = PBLK_VMALLOC_META;
  468. emeta->buf = vmalloc(lm->emeta_len[0]);
  469. if (!emeta->buf) {
  470. kfree(emeta);
  471. goto fail_free_emeta;
  472. }
  473. emeta->nr_entries = lm->emeta_sec[0];
  474. l_mg->eline_meta[i] = emeta;
  475. } else {
  476. l_mg->emeta_alloc_type = PBLK_KMALLOC_META;
  477. emeta->buf = kmalloc(lm->emeta_len[0], GFP_KERNEL);
  478. if (!emeta->buf) {
  479. kfree(emeta);
  480. goto fail_free_emeta;
  481. }
  482. emeta->nr_entries = lm->emeta_sec[0];
  483. l_mg->eline_meta[i] = emeta;
  484. }
  485. }
  486. l_mg->vsc_list = kcalloc(l_mg->nr_lines, sizeof(__le32), GFP_KERNEL);
  487. if (!l_mg->vsc_list)
  488. goto fail_free_emeta;
  489. for (i = 0; i < l_mg->nr_lines; i++)
  490. l_mg->vsc_list[i] = cpu_to_le32(EMPTY_ENTRY);
  491. return 0;
  492. fail_free_emeta:
  493. while (--i >= 0) {
  494. vfree(l_mg->eline_meta[i]->buf);
  495. kfree(&l_mg->eline_meta[i]);
  496. }
  497. fail_free_smeta:
  498. for (i = 0; i < PBLK_DATA_LINES; i++)
  499. pblk_mfree(&l_mg->sline_meta[i], l_mg->smeta_alloc_type);
  500. return -ENOMEM;
  501. }
  502. static int pblk_lines_init(struct pblk *pblk)
  503. {
  504. struct nvm_tgt_dev *dev = pblk->dev;
  505. struct nvm_geo *geo = &dev->geo;
  506. struct pblk_line_mgmt *l_mg = &pblk->l_mg;
  507. struct pblk_line_meta *lm = &pblk->lm;
  508. struct pblk_line *line;
  509. unsigned int smeta_len, emeta_len;
  510. long nr_bad_blks, nr_free_blks;
  511. int bb_distance, max_write_ppas, mod;
  512. int i, ret;
  513. pblk->min_write_pgs = geo->sec_per_pl * (geo->sec_size / PAGE_SIZE);
  514. max_write_ppas = pblk->min_write_pgs * geo->nr_luns;
  515. pblk->max_write_pgs = (max_write_ppas < nvm_max_phys_sects(dev)) ?
  516. max_write_ppas : nvm_max_phys_sects(dev);
  517. pblk_set_sec_per_write(pblk, pblk->min_write_pgs);
  518. if (pblk->max_write_pgs > PBLK_MAX_REQ_ADDRS) {
  519. pr_err("pblk: cannot support device max_phys_sect\n");
  520. return -EINVAL;
  521. }
  522. div_u64_rem(geo->sec_per_blk, pblk->min_write_pgs, &mod);
  523. if (mod) {
  524. pr_err("pblk: bad configuration of sectors/pages\n");
  525. return -EINVAL;
  526. }
  527. l_mg->nr_lines = geo->blks_per_lun;
  528. l_mg->log_line = l_mg->data_line = NULL;
  529. l_mg->l_seq_nr = l_mg->d_seq_nr = 0;
  530. l_mg->nr_free_lines = 0;
  531. bitmap_zero(&l_mg->meta_bitmap, PBLK_DATA_LINES);
  532. lm->sec_per_line = geo->sec_per_blk * geo->nr_luns;
  533. lm->blk_per_line = geo->nr_luns;
  534. lm->blk_bitmap_len = BITS_TO_LONGS(geo->nr_luns) * sizeof(long);
  535. lm->sec_bitmap_len = BITS_TO_LONGS(lm->sec_per_line) * sizeof(long);
  536. lm->lun_bitmap_len = BITS_TO_LONGS(geo->nr_luns) * sizeof(long);
  537. lm->high_thrs = lm->sec_per_line / 2;
  538. lm->mid_thrs = lm->sec_per_line / 4;
  539. lm->meta_distance = (geo->nr_luns / 2) * pblk->min_write_pgs;
  540. /* Calculate necessary pages for smeta. See comment over struct
  541. * line_smeta definition
  542. */
  543. i = 1;
  544. add_smeta_page:
  545. lm->smeta_sec = i * geo->sec_per_pl;
  546. lm->smeta_len = lm->smeta_sec * geo->sec_size;
  547. smeta_len = sizeof(struct line_smeta) + lm->lun_bitmap_len;
  548. if (smeta_len > lm->smeta_len) {
  549. i++;
  550. goto add_smeta_page;
  551. }
  552. /* Calculate necessary pages for emeta. See comment over struct
  553. * line_emeta definition
  554. */
  555. i = 1;
  556. add_emeta_page:
  557. lm->emeta_sec[0] = i * geo->sec_per_pl;
  558. lm->emeta_len[0] = lm->emeta_sec[0] * geo->sec_size;
  559. emeta_len = calc_emeta_len(pblk);
  560. if (emeta_len > lm->emeta_len[0]) {
  561. i++;
  562. goto add_emeta_page;
  563. }
  564. lm->emeta_bb = geo->nr_luns - i;
  565. lm->min_blk_line = 1 + DIV_ROUND_UP(lm->smeta_sec + lm->emeta_sec[0],
  566. geo->sec_per_blk);
  567. ret = pblk_lines_alloc_metadata(pblk);
  568. if (ret)
  569. goto fail;
  570. l_mg->bb_template = kzalloc(lm->sec_bitmap_len, GFP_KERNEL);
  571. if (!l_mg->bb_template) {
  572. ret = -ENOMEM;
  573. goto fail_free_meta;
  574. }
  575. l_mg->bb_aux = kzalloc(lm->sec_bitmap_len, GFP_KERNEL);
  576. if (!l_mg->bb_aux) {
  577. ret = -ENOMEM;
  578. goto fail_free_bb_template;
  579. }
  580. bb_distance = (geo->nr_luns) * geo->sec_per_pl;
  581. for (i = 0; i < lm->sec_per_line; i += bb_distance)
  582. bitmap_set(l_mg->bb_template, i, geo->sec_per_pl);
  583. INIT_LIST_HEAD(&l_mg->free_list);
  584. INIT_LIST_HEAD(&l_mg->corrupt_list);
  585. INIT_LIST_HEAD(&l_mg->bad_list);
  586. INIT_LIST_HEAD(&l_mg->gc_full_list);
  587. INIT_LIST_HEAD(&l_mg->gc_high_list);
  588. INIT_LIST_HEAD(&l_mg->gc_mid_list);
  589. INIT_LIST_HEAD(&l_mg->gc_low_list);
  590. INIT_LIST_HEAD(&l_mg->gc_empty_list);
  591. INIT_LIST_HEAD(&l_mg->emeta_list);
  592. l_mg->gc_lists[0] = &l_mg->gc_high_list;
  593. l_mg->gc_lists[1] = &l_mg->gc_mid_list;
  594. l_mg->gc_lists[2] = &l_mg->gc_low_list;
  595. spin_lock_init(&l_mg->free_lock);
  596. spin_lock_init(&l_mg->close_lock);
  597. spin_lock_init(&l_mg->gc_lock);
  598. pblk->lines = kcalloc(l_mg->nr_lines, sizeof(struct pblk_line),
  599. GFP_KERNEL);
  600. if (!pblk->lines) {
  601. ret = -ENOMEM;
  602. goto fail_free_bb_aux;
  603. }
  604. nr_free_blks = 0;
  605. for (i = 0; i < l_mg->nr_lines; i++) {
  606. int blk_in_line;
  607. line = &pblk->lines[i];
  608. line->pblk = pblk;
  609. line->id = i;
  610. line->type = PBLK_LINETYPE_FREE;
  611. line->state = PBLK_LINESTATE_FREE;
  612. line->gc_group = PBLK_LINEGC_NONE;
  613. line->vsc = &l_mg->vsc_list[i];
  614. spin_lock_init(&line->lock);
  615. nr_bad_blks = pblk_bb_line(pblk, geo, line);
  616. if (nr_bad_blks < 0 || nr_bad_blks > lm->blk_per_line) {
  617. ret = -EINVAL;
  618. goto fail_free_lines;
  619. }
  620. blk_in_line = lm->blk_per_line - nr_bad_blks;
  621. if (blk_in_line < lm->min_blk_line) {
  622. line->state = PBLK_LINESTATE_BAD;
  623. list_add_tail(&line->list, &l_mg->bad_list);
  624. continue;
  625. }
  626. nr_free_blks += blk_in_line;
  627. atomic_set(&line->blk_in_line, blk_in_line);
  628. l_mg->nr_free_lines++;
  629. list_add_tail(&line->list, &l_mg->free_list);
  630. }
  631. pblk_set_provision(pblk, nr_free_blks);
  632. /* Cleanup per-LUN bad block lists - managed within lines on run-time */
  633. for (i = 0; i < geo->nr_luns; i++)
  634. kfree(pblk->luns[i].bb_list);
  635. return 0;
  636. fail_free_lines:
  637. kfree(pblk->lines);
  638. fail_free_bb_aux:
  639. kfree(l_mg->bb_aux);
  640. fail_free_bb_template:
  641. kfree(l_mg->bb_template);
  642. fail_free_meta:
  643. pblk_line_meta_free(pblk);
  644. fail:
  645. for (i = 0; i < geo->nr_luns; i++)
  646. kfree(pblk->luns[i].bb_list);
  647. return ret;
  648. }
  649. static int pblk_writer_init(struct pblk *pblk)
  650. {
  651. setup_timer(&pblk->wtimer, pblk_write_timer_fn, (unsigned long)pblk);
  652. mod_timer(&pblk->wtimer, jiffies + msecs_to_jiffies(100));
  653. pblk->writer_ts = kthread_create(pblk_write_ts, pblk, "pblk-writer-t");
  654. if (IS_ERR(pblk->writer_ts)) {
  655. pr_err("pblk: could not allocate writer kthread\n");
  656. return PTR_ERR(pblk->writer_ts);
  657. }
  658. return 0;
  659. }
  660. static void pblk_writer_stop(struct pblk *pblk)
  661. {
  662. if (pblk->writer_ts)
  663. kthread_stop(pblk->writer_ts);
  664. del_timer(&pblk->wtimer);
  665. }
  666. static void pblk_free(struct pblk *pblk)
  667. {
  668. pblk_luns_free(pblk);
  669. pblk_lines_free(pblk);
  670. pblk_line_meta_free(pblk);
  671. pblk_core_free(pblk);
  672. pblk_l2p_free(pblk);
  673. kfree(pblk);
  674. }
  675. static void pblk_tear_down(struct pblk *pblk)
  676. {
  677. pblk_flush_writer(pblk);
  678. pblk_writer_stop(pblk);
  679. pblk_rb_sync_l2p(&pblk->rwb);
  680. pblk_recov_pad(pblk);
  681. pblk_rwb_free(pblk);
  682. pblk_rl_free(&pblk->rl);
  683. pr_debug("pblk: consistent tear down\n");
  684. }
  685. static void pblk_exit(void *private)
  686. {
  687. struct pblk *pblk = private;
  688. down_write(&pblk_lock);
  689. pblk_gc_exit(pblk);
  690. pblk_tear_down(pblk);
  691. pblk_free(pblk);
  692. up_write(&pblk_lock);
  693. }
  694. static sector_t pblk_capacity(void *private)
  695. {
  696. struct pblk *pblk = private;
  697. return pblk->capacity * NR_PHY_IN_LOG;
  698. }
  699. static void *pblk_init(struct nvm_tgt_dev *dev, struct gendisk *tdisk,
  700. int flags)
  701. {
  702. struct nvm_geo *geo = &dev->geo;
  703. struct request_queue *bqueue = dev->q;
  704. struct request_queue *tqueue = tdisk->queue;
  705. struct pblk *pblk;
  706. int ret;
  707. if (dev->identity.dom & NVM_RSP_L2P) {
  708. pr_err("pblk: device-side L2P table not supported. (%x)\n",
  709. dev->identity.dom);
  710. return ERR_PTR(-EINVAL);
  711. }
  712. pblk = kzalloc(sizeof(struct pblk), GFP_KERNEL);
  713. if (!pblk)
  714. return ERR_PTR(-ENOMEM);
  715. pblk->dev = dev;
  716. pblk->disk = tdisk;
  717. spin_lock_init(&pblk->trans_lock);
  718. spin_lock_init(&pblk->lock);
  719. if (flags & NVM_TARGET_FACTORY)
  720. pblk_setup_uuid(pblk);
  721. #ifdef CONFIG_NVM_DEBUG
  722. atomic_long_set(&pblk->inflight_writes, 0);
  723. atomic_long_set(&pblk->padded_writes, 0);
  724. atomic_long_set(&pblk->padded_wb, 0);
  725. atomic_long_set(&pblk->nr_flush, 0);
  726. atomic_long_set(&pblk->req_writes, 0);
  727. atomic_long_set(&pblk->sub_writes, 0);
  728. atomic_long_set(&pblk->sync_writes, 0);
  729. atomic_long_set(&pblk->inflight_reads, 0);
  730. atomic_long_set(&pblk->cache_reads, 0);
  731. atomic_long_set(&pblk->sync_reads, 0);
  732. atomic_long_set(&pblk->recov_writes, 0);
  733. atomic_long_set(&pblk->recov_writes, 0);
  734. atomic_long_set(&pblk->recov_gc_writes, 0);
  735. #endif
  736. atomic_long_set(&pblk->read_failed, 0);
  737. atomic_long_set(&pblk->read_empty, 0);
  738. atomic_long_set(&pblk->read_high_ecc, 0);
  739. atomic_long_set(&pblk->read_failed_gc, 0);
  740. atomic_long_set(&pblk->write_failed, 0);
  741. atomic_long_set(&pblk->erase_failed, 0);
  742. ret = pblk_luns_init(pblk, dev->luns);
  743. if (ret) {
  744. pr_err("pblk: could not initialize luns\n");
  745. goto fail;
  746. }
  747. ret = pblk_lines_init(pblk);
  748. if (ret) {
  749. pr_err("pblk: could not initialize lines\n");
  750. goto fail_free_luns;
  751. }
  752. ret = pblk_core_init(pblk);
  753. if (ret) {
  754. pr_err("pblk: could not initialize core\n");
  755. goto fail_free_line_meta;
  756. }
  757. ret = pblk_l2p_init(pblk);
  758. if (ret) {
  759. pr_err("pblk: could not initialize maps\n");
  760. goto fail_free_core;
  761. }
  762. ret = pblk_lines_configure(pblk, flags);
  763. if (ret) {
  764. pr_err("pblk: could not configure lines\n");
  765. goto fail_free_l2p;
  766. }
  767. ret = pblk_writer_init(pblk);
  768. if (ret) {
  769. pr_err("pblk: could not initialize write thread\n");
  770. goto fail_free_lines;
  771. }
  772. ret = pblk_gc_init(pblk);
  773. if (ret) {
  774. pr_err("pblk: could not initialize gc\n");
  775. goto fail_stop_writer;
  776. }
  777. /* inherit the size from the underlying device */
  778. blk_queue_logical_block_size(tqueue, queue_physical_block_size(bqueue));
  779. blk_queue_max_hw_sectors(tqueue, queue_max_hw_sectors(bqueue));
  780. blk_queue_write_cache(tqueue, true, false);
  781. tqueue->limits.discard_granularity = geo->pgs_per_blk * geo->pfpg_size;
  782. tqueue->limits.discard_alignment = 0;
  783. blk_queue_max_discard_sectors(tqueue, UINT_MAX >> 9);
  784. queue_flag_set_unlocked(QUEUE_FLAG_DISCARD, tqueue);
  785. pr_info("pblk init: luns:%u, lines:%d, secs:%llu, buf entries:%u\n",
  786. geo->nr_luns, pblk->l_mg.nr_lines,
  787. (unsigned long long)pblk->rl.nr_secs,
  788. pblk->rwb.nr_entries);
  789. wake_up_process(pblk->writer_ts);
  790. return pblk;
  791. fail_stop_writer:
  792. pblk_writer_stop(pblk);
  793. fail_free_lines:
  794. pblk_lines_free(pblk);
  795. fail_free_l2p:
  796. pblk_l2p_free(pblk);
  797. fail_free_core:
  798. pblk_core_free(pblk);
  799. fail_free_line_meta:
  800. pblk_line_meta_free(pblk);
  801. fail_free_luns:
  802. pblk_luns_free(pblk);
  803. fail:
  804. kfree(pblk);
  805. return ERR_PTR(ret);
  806. }
  807. /* physical block device target */
  808. static struct nvm_tgt_type tt_pblk = {
  809. .name = "pblk",
  810. .version = {1, 0, 0},
  811. .make_rq = pblk_make_rq,
  812. .capacity = pblk_capacity,
  813. .init = pblk_init,
  814. .exit = pblk_exit,
  815. .sysfs_init = pblk_sysfs_init,
  816. .sysfs_exit = pblk_sysfs_exit,
  817. };
  818. static int __init pblk_module_init(void)
  819. {
  820. int ret;
  821. pblk_bio_set = bioset_create(BIO_POOL_SIZE, 0, 0);
  822. if (!pblk_bio_set)
  823. return -ENOMEM;
  824. ret = nvm_register_tgt_type(&tt_pblk);
  825. if (ret)
  826. bioset_free(pblk_bio_set);
  827. return ret;
  828. }
  829. static void pblk_module_exit(void)
  830. {
  831. bioset_free(pblk_bio_set);
  832. nvm_unregister_tgt_type(&tt_pblk);
  833. }
  834. module_init(pblk_module_init);
  835. module_exit(pblk_module_exit);
  836. MODULE_AUTHOR("Javier Gonzalez <javier@cnexlabs.com>");
  837. MODULE_AUTHOR("Matias Bjorling <matias@cnexlabs.com>");
  838. MODULE_LICENSE("GPL v2");
  839. MODULE_DESCRIPTION("Physical Block-Device for Open-Channel SSDs");