lightnvm.h 11 KB

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  1. #ifndef NVM_H
  2. #define NVM_H
  3. enum {
  4. NVM_IO_OK = 0,
  5. NVM_IO_REQUEUE = 1,
  6. NVM_IO_DONE = 2,
  7. NVM_IO_ERR = 3,
  8. NVM_IOTYPE_NONE = 0,
  9. NVM_IOTYPE_GC = 1,
  10. };
  11. #ifdef CONFIG_NVM
  12. #include <linux/blkdev.h>
  13. #include <linux/types.h>
  14. #include <linux/file.h>
  15. #include <linux/dmapool.h>
  16. enum {
  17. /* HW Responsibilities */
  18. NVM_RSP_L2P = 1 << 0,
  19. NVM_RSP_ECC = 1 << 1,
  20. /* Physical Adressing Mode */
  21. NVM_ADDRMODE_LINEAR = 0,
  22. NVM_ADDRMODE_CHANNEL = 1,
  23. /* Plane programming mode for LUN */
  24. NVM_PLANE_SINGLE = 0,
  25. NVM_PLANE_DOUBLE = 1,
  26. NVM_PLANE_QUAD = 2,
  27. /* Status codes */
  28. NVM_RSP_SUCCESS = 0x0,
  29. NVM_RSP_NOT_CHANGEABLE = 0x1,
  30. NVM_RSP_ERR_FAILWRITE = 0x40ff,
  31. NVM_RSP_ERR_EMPTYPAGE = 0x42ff,
  32. /* Device opcodes */
  33. NVM_OP_HBREAD = 0x02,
  34. NVM_OP_HBWRITE = 0x81,
  35. NVM_OP_PWRITE = 0x91,
  36. NVM_OP_PREAD = 0x92,
  37. NVM_OP_ERASE = 0x90,
  38. /* PPA Command Flags */
  39. NVM_IO_SNGL_ACCESS = 0x0,
  40. NVM_IO_DUAL_ACCESS = 0x1,
  41. NVM_IO_QUAD_ACCESS = 0x2,
  42. NVM_IO_SUSPEND = 0x80,
  43. NVM_IO_SLC_MODE = 0x100,
  44. NVM_IO_SCRAMBLE_DISABLE = 0x200,
  45. };
  46. struct nvm_id_group {
  47. u8 mtype;
  48. u8 fmtype;
  49. u16 res16;
  50. u8 num_ch;
  51. u8 num_lun;
  52. u8 num_pln;
  53. u16 num_blk;
  54. u16 num_pg;
  55. u16 fpg_sz;
  56. u16 csecs;
  57. u16 sos;
  58. u32 trdt;
  59. u32 trdm;
  60. u32 tprt;
  61. u32 tprm;
  62. u32 tbet;
  63. u32 tbem;
  64. u32 mpos;
  65. u16 cpar;
  66. u8 res[913];
  67. } __packed;
  68. struct nvm_addr_format {
  69. u8 ch_offset;
  70. u8 ch_len;
  71. u8 lun_offset;
  72. u8 lun_len;
  73. u8 pln_offset;
  74. u8 pln_len;
  75. u8 blk_offset;
  76. u8 blk_len;
  77. u8 pg_offset;
  78. u8 pg_len;
  79. u8 sect_offset;
  80. u8 sect_len;
  81. u8 res[4];
  82. };
  83. struct nvm_id {
  84. u8 ver_id;
  85. u8 vmnt;
  86. u8 cgrps;
  87. u8 res[5];
  88. u32 cap;
  89. u32 dom;
  90. struct nvm_addr_format ppaf;
  91. u8 ppat;
  92. u8 resv[224];
  93. struct nvm_id_group groups[4];
  94. } __packed;
  95. struct nvm_target {
  96. struct list_head list;
  97. struct nvm_tgt_type *type;
  98. struct gendisk *disk;
  99. };
  100. struct nvm_tgt_instance {
  101. struct nvm_tgt_type *tt;
  102. };
  103. #define ADDR_EMPTY (~0ULL)
  104. #define NVM_VERSION_MAJOR 1
  105. #define NVM_VERSION_MINOR 0
  106. #define NVM_VERSION_PATCH 0
  107. #define NVM_SEC_BITS (8)
  108. #define NVM_PL_BITS (6)
  109. #define NVM_PG_BITS (16)
  110. #define NVM_BLK_BITS (16)
  111. #define NVM_LUN_BITS (10)
  112. #define NVM_CH_BITS (8)
  113. struct ppa_addr {
  114. union {
  115. /* Channel-based PPA format in nand 4x2x2x2x8x10 */
  116. struct {
  117. u64 ch : 4;
  118. u64 sec : 2; /* 4 sectors per page */
  119. u64 pl : 2; /* 4 planes per LUN */
  120. u64 lun : 2; /* 4 LUNs per channel */
  121. u64 pg : 8; /* 256 pages per block */
  122. u64 blk : 10;/* 1024 blocks per plane */
  123. u64 resved : 36;
  124. } chnl;
  125. /* Generic structure for all addresses */
  126. struct {
  127. u64 sec : NVM_SEC_BITS;
  128. u64 pl : NVM_PL_BITS;
  129. u64 pg : NVM_PG_BITS;
  130. u64 blk : NVM_BLK_BITS;
  131. u64 lun : NVM_LUN_BITS;
  132. u64 ch : NVM_CH_BITS;
  133. } g;
  134. u64 ppa;
  135. };
  136. } __packed;
  137. struct nvm_rq {
  138. struct nvm_tgt_instance *ins;
  139. struct nvm_dev *dev;
  140. struct bio *bio;
  141. union {
  142. struct ppa_addr ppa_addr;
  143. dma_addr_t dma_ppa_list;
  144. };
  145. struct ppa_addr *ppa_list;
  146. void *metadata;
  147. dma_addr_t dma_metadata;
  148. uint8_t opcode;
  149. uint16_t nr_pages;
  150. uint16_t flags;
  151. };
  152. static inline struct nvm_rq *nvm_rq_from_pdu(void *pdu)
  153. {
  154. return pdu - sizeof(struct nvm_rq);
  155. }
  156. static inline void *nvm_rq_to_pdu(struct nvm_rq *rqdata)
  157. {
  158. return rqdata + 1;
  159. }
  160. struct nvm_block;
  161. typedef int (nvm_l2p_update_fn)(u64, u32, __le64 *, void *);
  162. typedef int (nvm_bb_update_fn)(u32, void *, unsigned int, void *);
  163. typedef int (nvm_id_fn)(struct request_queue *, struct nvm_id *);
  164. typedef int (nvm_get_l2p_tbl_fn)(struct request_queue *, u64, u32,
  165. nvm_l2p_update_fn *, void *);
  166. typedef int (nvm_op_bb_tbl_fn)(struct request_queue *, int, unsigned int,
  167. nvm_bb_update_fn *, void *);
  168. typedef int (nvm_op_set_bb_fn)(struct request_queue *, struct nvm_rq *, int);
  169. typedef int (nvm_submit_io_fn)(struct request_queue *, struct nvm_rq *);
  170. typedef int (nvm_erase_blk_fn)(struct request_queue *, struct nvm_rq *);
  171. typedef void *(nvm_create_dma_pool_fn)(struct request_queue *, char *);
  172. typedef void (nvm_destroy_dma_pool_fn)(void *);
  173. typedef void *(nvm_dev_dma_alloc_fn)(struct request_queue *, void *, gfp_t,
  174. dma_addr_t *);
  175. typedef void (nvm_dev_dma_free_fn)(void *, void*, dma_addr_t);
  176. struct nvm_dev_ops {
  177. nvm_id_fn *identity;
  178. nvm_get_l2p_tbl_fn *get_l2p_tbl;
  179. nvm_op_bb_tbl_fn *get_bb_tbl;
  180. nvm_op_set_bb_fn *set_bb;
  181. nvm_submit_io_fn *submit_io;
  182. nvm_erase_blk_fn *erase_block;
  183. nvm_create_dma_pool_fn *create_dma_pool;
  184. nvm_destroy_dma_pool_fn *destroy_dma_pool;
  185. nvm_dev_dma_alloc_fn *dev_dma_alloc;
  186. nvm_dev_dma_free_fn *dev_dma_free;
  187. unsigned int max_phys_sect;
  188. };
  189. struct nvm_lun {
  190. int id;
  191. int lun_id;
  192. int chnl_id;
  193. unsigned int nr_free_blocks; /* Number of unused blocks */
  194. struct nvm_block *blocks;
  195. spinlock_t lock;
  196. };
  197. struct nvm_block {
  198. struct list_head list;
  199. struct nvm_lun *lun;
  200. unsigned long id;
  201. void *priv;
  202. int type;
  203. };
  204. struct nvm_dev {
  205. struct nvm_dev_ops *ops;
  206. struct list_head devices;
  207. struct list_head online_targets;
  208. /* Media manager */
  209. struct nvmm_type *mt;
  210. void *mp;
  211. /* Device information */
  212. int nr_chnls;
  213. int nr_planes;
  214. int luns_per_chnl;
  215. int sec_per_pg; /* only sectors for a single page */
  216. int pgs_per_blk;
  217. int blks_per_lun;
  218. int sec_size;
  219. int oob_size;
  220. int addr_mode;
  221. struct nvm_addr_format addr_format;
  222. /* Calculated/Cached values. These do not reflect the actual usable
  223. * blocks at run-time.
  224. */
  225. int max_rq_size;
  226. int plane_mode; /* drive device in single, double or quad mode */
  227. int sec_per_pl; /* all sectors across planes */
  228. int sec_per_blk;
  229. int sec_per_lun;
  230. unsigned long total_pages;
  231. unsigned long total_blocks;
  232. int nr_luns;
  233. unsigned max_pages_per_blk;
  234. void *ppalist_pool;
  235. struct nvm_id identity;
  236. /* Backend device */
  237. struct request_queue *q;
  238. char name[DISK_NAME_LEN];
  239. };
  240. /* fallback conversion */
  241. static struct ppa_addr __generic_to_linear_addr(struct nvm_dev *dev,
  242. struct ppa_addr r)
  243. {
  244. struct ppa_addr l;
  245. l.ppa = r.g.sec +
  246. r.g.pg * dev->sec_per_pg +
  247. r.g.blk * (dev->pgs_per_blk *
  248. dev->sec_per_pg) +
  249. r.g.lun * (dev->blks_per_lun *
  250. dev->pgs_per_blk *
  251. dev->sec_per_pg) +
  252. r.g.ch * (dev->blks_per_lun *
  253. dev->pgs_per_blk *
  254. dev->luns_per_chnl *
  255. dev->sec_per_pg);
  256. return l;
  257. }
  258. /* fallback conversion */
  259. static struct ppa_addr __linear_to_generic_addr(struct nvm_dev *dev,
  260. struct ppa_addr r)
  261. {
  262. struct ppa_addr l;
  263. int secs, pgs, blks, luns;
  264. sector_t ppa = r.ppa;
  265. l.ppa = 0;
  266. div_u64_rem(ppa, dev->sec_per_pg, &secs);
  267. l.g.sec = secs;
  268. sector_div(ppa, dev->sec_per_pg);
  269. div_u64_rem(ppa, dev->sec_per_blk, &pgs);
  270. l.g.pg = pgs;
  271. sector_div(ppa, dev->pgs_per_blk);
  272. div_u64_rem(ppa, dev->blks_per_lun, &blks);
  273. l.g.blk = blks;
  274. sector_div(ppa, dev->blks_per_lun);
  275. div_u64_rem(ppa, dev->luns_per_chnl, &luns);
  276. l.g.lun = luns;
  277. sector_div(ppa, dev->luns_per_chnl);
  278. l.g.ch = ppa;
  279. return l;
  280. }
  281. static struct ppa_addr __generic_to_chnl_addr(struct ppa_addr r)
  282. {
  283. struct ppa_addr l;
  284. l.ppa = 0;
  285. l.chnl.sec = r.g.sec;
  286. l.chnl.pl = r.g.pl;
  287. l.chnl.pg = r.g.pg;
  288. l.chnl.blk = r.g.blk;
  289. l.chnl.lun = r.g.lun;
  290. l.chnl.ch = r.g.ch;
  291. return l;
  292. }
  293. static struct ppa_addr __chnl_to_generic_addr(struct ppa_addr r)
  294. {
  295. struct ppa_addr l;
  296. l.ppa = 0;
  297. l.g.sec = r.chnl.sec;
  298. l.g.pl = r.chnl.pl;
  299. l.g.pg = r.chnl.pg;
  300. l.g.blk = r.chnl.blk;
  301. l.g.lun = r.chnl.lun;
  302. l.g.ch = r.chnl.ch;
  303. return l;
  304. }
  305. static inline struct ppa_addr addr_to_generic_mode(struct nvm_dev *dev,
  306. struct ppa_addr gppa)
  307. {
  308. switch (dev->addr_mode) {
  309. case NVM_ADDRMODE_LINEAR:
  310. return __linear_to_generic_addr(dev, gppa);
  311. case NVM_ADDRMODE_CHANNEL:
  312. return __chnl_to_generic_addr(gppa);
  313. default:
  314. BUG();
  315. }
  316. return gppa;
  317. }
  318. static inline struct ppa_addr generic_to_addr_mode(struct nvm_dev *dev,
  319. struct ppa_addr gppa)
  320. {
  321. switch (dev->addr_mode) {
  322. case NVM_ADDRMODE_LINEAR:
  323. return __generic_to_linear_addr(dev, gppa);
  324. case NVM_ADDRMODE_CHANNEL:
  325. return __generic_to_chnl_addr(gppa);
  326. default:
  327. BUG();
  328. }
  329. return gppa;
  330. }
  331. static inline int ppa_empty(struct ppa_addr ppa_addr)
  332. {
  333. return (ppa_addr.ppa == ADDR_EMPTY);
  334. }
  335. static inline void ppa_set_empty(struct ppa_addr *ppa_addr)
  336. {
  337. ppa_addr->ppa = ADDR_EMPTY;
  338. }
  339. static inline struct ppa_addr block_to_ppa(struct nvm_dev *dev,
  340. struct nvm_block *blk)
  341. {
  342. struct ppa_addr ppa;
  343. struct nvm_lun *lun = blk->lun;
  344. ppa.ppa = 0;
  345. ppa.g.blk = blk->id % dev->blks_per_lun;
  346. ppa.g.lun = lun->lun_id;
  347. ppa.g.ch = lun->chnl_id;
  348. return ppa;
  349. }
  350. typedef blk_qc_t (nvm_tgt_make_rq_fn)(struct request_queue *, struct bio *);
  351. typedef sector_t (nvm_tgt_capacity_fn)(void *);
  352. typedef int (nvm_tgt_end_io_fn)(struct nvm_rq *, int);
  353. typedef void *(nvm_tgt_init_fn)(struct nvm_dev *, struct gendisk *, int, int);
  354. typedef void (nvm_tgt_exit_fn)(void *);
  355. struct nvm_tgt_type {
  356. const char *name;
  357. unsigned int version[3];
  358. /* target entry points */
  359. nvm_tgt_make_rq_fn *make_rq;
  360. nvm_tgt_capacity_fn *capacity;
  361. nvm_tgt_end_io_fn *end_io;
  362. /* module-specific init/teardown */
  363. nvm_tgt_init_fn *init;
  364. nvm_tgt_exit_fn *exit;
  365. /* For internal use */
  366. struct list_head list;
  367. };
  368. extern int nvm_register_target(struct nvm_tgt_type *);
  369. extern void nvm_unregister_target(struct nvm_tgt_type *);
  370. extern void *nvm_dev_dma_alloc(struct nvm_dev *, gfp_t, dma_addr_t *);
  371. extern void nvm_dev_dma_free(struct nvm_dev *, void *, dma_addr_t);
  372. typedef int (nvmm_register_fn)(struct nvm_dev *);
  373. typedef void (nvmm_unregister_fn)(struct nvm_dev *);
  374. typedef struct nvm_block *(nvmm_get_blk_fn)(struct nvm_dev *,
  375. struct nvm_lun *, unsigned long);
  376. typedef void (nvmm_put_blk_fn)(struct nvm_dev *, struct nvm_block *);
  377. typedef int (nvmm_open_blk_fn)(struct nvm_dev *, struct nvm_block *);
  378. typedef int (nvmm_close_blk_fn)(struct nvm_dev *, struct nvm_block *);
  379. typedef void (nvmm_flush_blk_fn)(struct nvm_dev *, struct nvm_block *);
  380. typedef int (nvmm_submit_io_fn)(struct nvm_dev *, struct nvm_rq *);
  381. typedef int (nvmm_end_io_fn)(struct nvm_rq *, int);
  382. typedef int (nvmm_erase_blk_fn)(struct nvm_dev *, struct nvm_block *,
  383. unsigned long);
  384. typedef struct nvm_lun *(nvmm_get_lun_fn)(struct nvm_dev *, int);
  385. typedef void (nvmm_free_blocks_print_fn)(struct nvm_dev *);
  386. struct nvmm_type {
  387. const char *name;
  388. unsigned int version[3];
  389. nvmm_register_fn *register_mgr;
  390. nvmm_unregister_fn *unregister_mgr;
  391. /* Block administration callbacks */
  392. nvmm_get_blk_fn *get_blk;
  393. nvmm_put_blk_fn *put_blk;
  394. nvmm_open_blk_fn *open_blk;
  395. nvmm_close_blk_fn *close_blk;
  396. nvmm_flush_blk_fn *flush_blk;
  397. nvmm_submit_io_fn *submit_io;
  398. nvmm_end_io_fn *end_io;
  399. nvmm_erase_blk_fn *erase_blk;
  400. /* Configuration management */
  401. nvmm_get_lun_fn *get_lun;
  402. /* Statistics */
  403. nvmm_free_blocks_print_fn *free_blocks_print;
  404. struct list_head list;
  405. };
  406. extern int nvm_register_mgr(struct nvmm_type *);
  407. extern void nvm_unregister_mgr(struct nvmm_type *);
  408. extern struct nvm_block *nvm_get_blk(struct nvm_dev *, struct nvm_lun *,
  409. unsigned long);
  410. extern void nvm_put_blk(struct nvm_dev *, struct nvm_block *);
  411. extern int nvm_register(struct request_queue *, char *,
  412. struct nvm_dev_ops *);
  413. extern void nvm_unregister(char *);
  414. extern int nvm_submit_io(struct nvm_dev *, struct nvm_rq *);
  415. extern int nvm_erase_blk(struct nvm_dev *, struct nvm_block *);
  416. #else /* CONFIG_NVM */
  417. struct nvm_dev_ops;
  418. static inline int nvm_register(struct request_queue *q, char *disk_name,
  419. struct nvm_dev_ops *ops)
  420. {
  421. return -EINVAL;
  422. }
  423. static inline void nvm_unregister(char *disk_name) {}
  424. #endif /* CONFIG_NVM */
  425. #endif /* LIGHTNVM.H */