nd.h 11 KB

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  1. /*
  2. * Copyright(c) 2013-2015 Intel Corporation. All rights reserved.
  3. *
  4. * This program is free software; you can redistribute it and/or modify
  5. * it under the terms of version 2 of the GNU General Public License as
  6. * published by the Free Software Foundation.
  7. *
  8. * This program is distributed in the hope that it will be useful, but
  9. * WITHOUT ANY WARRANTY; without even the implied warranty of
  10. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  11. * General Public License for more details.
  12. */
  13. #ifndef __ND_H__
  14. #define __ND_H__
  15. #include <linux/libnvdimm.h>
  16. #include <linux/badblocks.h>
  17. #include <linux/blkdev.h>
  18. #include <linux/device.h>
  19. #include <linux/mutex.h>
  20. #include <linux/ndctl.h>
  21. #include <linux/types.h>
  22. #include <linux/nd.h>
  23. #include "label.h"
  24. enum {
  25. /*
  26. * Limits the maximum number of block apertures a dimm can
  27. * support and is an input to the geometry/on-disk-format of a
  28. * BTT instance
  29. */
  30. ND_MAX_LANES = 256,
  31. INT_LBASIZE_ALIGNMENT = 64,
  32. NVDIMM_IO_ATOMIC = 1,
  33. };
  34. struct nvdimm_drvdata {
  35. struct device *dev;
  36. int nslabel_size;
  37. struct nd_cmd_get_config_size nsarea;
  38. void *data;
  39. int ns_current, ns_next;
  40. struct resource dpa;
  41. struct kref kref;
  42. };
  43. struct nd_region_data {
  44. int ns_count;
  45. int ns_active;
  46. unsigned int hints_shift;
  47. void __iomem *flush_wpq[0];
  48. };
  49. static inline void __iomem *ndrd_get_flush_wpq(struct nd_region_data *ndrd,
  50. int dimm, int hint)
  51. {
  52. unsigned int num = 1 << ndrd->hints_shift;
  53. unsigned int mask = num - 1;
  54. return ndrd->flush_wpq[dimm * num + (hint & mask)];
  55. }
  56. static inline void ndrd_set_flush_wpq(struct nd_region_data *ndrd, int dimm,
  57. int hint, void __iomem *flush)
  58. {
  59. unsigned int num = 1 << ndrd->hints_shift;
  60. unsigned int mask = num - 1;
  61. ndrd->flush_wpq[dimm * num + (hint & mask)] = flush;
  62. }
  63. static inline struct nd_namespace_index *to_namespace_index(
  64. struct nvdimm_drvdata *ndd, int i)
  65. {
  66. if (i < 0)
  67. return NULL;
  68. return ndd->data + sizeof_namespace_index(ndd) * i;
  69. }
  70. static inline struct nd_namespace_index *to_current_namespace_index(
  71. struct nvdimm_drvdata *ndd)
  72. {
  73. return to_namespace_index(ndd, ndd->ns_current);
  74. }
  75. static inline struct nd_namespace_index *to_next_namespace_index(
  76. struct nvdimm_drvdata *ndd)
  77. {
  78. return to_namespace_index(ndd, ndd->ns_next);
  79. }
  80. unsigned sizeof_namespace_label(struct nvdimm_drvdata *ndd);
  81. #define namespace_label_has(ndd, field) \
  82. (offsetof(struct nd_namespace_label, field) \
  83. < sizeof_namespace_label(ndd))
  84. #define nd_dbg_dpa(r, d, res, fmt, arg...) \
  85. dev_dbg((r) ? &(r)->dev : (d)->dev, "%s: %.13s: %#llx @ %#llx " fmt, \
  86. (r) ? dev_name((d)->dev) : "", res ? res->name : "null", \
  87. (unsigned long long) (res ? resource_size(res) : 0), \
  88. (unsigned long long) (res ? res->start : 0), ##arg)
  89. #define for_each_dpa_resource(ndd, res) \
  90. for (res = (ndd)->dpa.child; res; res = res->sibling)
  91. #define for_each_dpa_resource_safe(ndd, res, next) \
  92. for (res = (ndd)->dpa.child, next = res ? res->sibling : NULL; \
  93. res; res = next, next = next ? next->sibling : NULL)
  94. struct nd_percpu_lane {
  95. int count;
  96. spinlock_t lock;
  97. };
  98. enum nd_label_flags {
  99. ND_LABEL_REAP,
  100. };
  101. struct nd_label_ent {
  102. struct list_head list;
  103. unsigned long flags;
  104. struct nd_namespace_label *label;
  105. };
  106. enum nd_mapping_lock_class {
  107. ND_MAPPING_CLASS0,
  108. ND_MAPPING_UUID_SCAN,
  109. };
  110. struct nd_mapping {
  111. struct nvdimm *nvdimm;
  112. u64 start;
  113. u64 size;
  114. int position;
  115. struct list_head labels;
  116. struct mutex lock;
  117. /*
  118. * @ndd is for private use at region enable / disable time for
  119. * get_ndd() + put_ndd(), all other nd_mapping to ndd
  120. * conversions use to_ndd() which respects enabled state of the
  121. * nvdimm.
  122. */
  123. struct nvdimm_drvdata *ndd;
  124. };
  125. struct nd_region {
  126. struct device dev;
  127. struct ida ns_ida;
  128. struct ida btt_ida;
  129. struct ida pfn_ida;
  130. struct ida dax_ida;
  131. unsigned long flags;
  132. struct device *ns_seed;
  133. struct device *btt_seed;
  134. struct device *pfn_seed;
  135. struct device *dax_seed;
  136. u16 ndr_mappings;
  137. u64 ndr_size;
  138. u64 ndr_start;
  139. int id, num_lanes, ro, numa_node;
  140. void *provider_data;
  141. struct kernfs_node *bb_state;
  142. struct badblocks bb;
  143. struct nd_interleave_set *nd_set;
  144. struct nd_percpu_lane __percpu *lane;
  145. struct nd_mapping mapping[0];
  146. };
  147. struct nd_blk_region {
  148. int (*enable)(struct nvdimm_bus *nvdimm_bus, struct device *dev);
  149. int (*do_io)(struct nd_blk_region *ndbr, resource_size_t dpa,
  150. void *iobuf, u64 len, int rw);
  151. void *blk_provider_data;
  152. struct nd_region nd_region;
  153. };
  154. /*
  155. * Lookup next in the repeating sequence of 01, 10, and 11.
  156. */
  157. static inline unsigned nd_inc_seq(unsigned seq)
  158. {
  159. static const unsigned next[] = { 0, 2, 3, 1 };
  160. return next[seq & 3];
  161. }
  162. struct btt;
  163. struct nd_btt {
  164. struct device dev;
  165. struct nd_namespace_common *ndns;
  166. struct btt *btt;
  167. unsigned long lbasize;
  168. u64 size;
  169. u8 *uuid;
  170. int id;
  171. int initial_offset;
  172. u16 version_major;
  173. u16 version_minor;
  174. };
  175. enum nd_pfn_mode {
  176. PFN_MODE_NONE,
  177. PFN_MODE_RAM,
  178. PFN_MODE_PMEM,
  179. };
  180. struct nd_pfn {
  181. int id;
  182. u8 *uuid;
  183. struct device dev;
  184. unsigned long align;
  185. unsigned long npfns;
  186. enum nd_pfn_mode mode;
  187. struct nd_pfn_sb *pfn_sb;
  188. struct nd_namespace_common *ndns;
  189. };
  190. struct nd_dax {
  191. struct nd_pfn nd_pfn;
  192. };
  193. enum nd_async_mode {
  194. ND_SYNC,
  195. ND_ASYNC,
  196. };
  197. int nd_integrity_init(struct gendisk *disk, unsigned long meta_size);
  198. void wait_nvdimm_bus_probe_idle(struct device *dev);
  199. void nd_device_register(struct device *dev);
  200. void nd_device_unregister(struct device *dev, enum nd_async_mode mode);
  201. void nd_device_notify(struct device *dev, enum nvdimm_event event);
  202. int nd_uuid_store(struct device *dev, u8 **uuid_out, const char *buf,
  203. size_t len);
  204. ssize_t nd_size_select_show(unsigned long current_size,
  205. const unsigned long *supported, char *buf);
  206. ssize_t nd_size_select_store(struct device *dev, const char *buf,
  207. unsigned long *current_size, const unsigned long *supported);
  208. int __init nvdimm_init(void);
  209. int __init nd_region_init(void);
  210. int __init nd_label_init(void);
  211. void nvdimm_exit(void);
  212. void nd_region_exit(void);
  213. struct nvdimm;
  214. struct nvdimm_drvdata *to_ndd(struct nd_mapping *nd_mapping);
  215. int nvdimm_check_config_data(struct device *dev);
  216. int nvdimm_init_nsarea(struct nvdimm_drvdata *ndd);
  217. int nvdimm_init_config_data(struct nvdimm_drvdata *ndd);
  218. int nvdimm_set_config_data(struct nvdimm_drvdata *ndd, size_t offset,
  219. void *buf, size_t len);
  220. long nvdimm_clear_poison(struct device *dev, phys_addr_t phys,
  221. unsigned int len);
  222. void nvdimm_set_aliasing(struct device *dev);
  223. void nvdimm_set_locked(struct device *dev);
  224. void nvdimm_clear_locked(struct device *dev);
  225. struct nd_btt *to_nd_btt(struct device *dev);
  226. struct nd_gen_sb {
  227. char reserved[SZ_4K - 8];
  228. __le64 checksum;
  229. };
  230. u64 nd_sb_checksum(struct nd_gen_sb *sb);
  231. #if IS_ENABLED(CONFIG_BTT)
  232. int nd_btt_probe(struct device *dev, struct nd_namespace_common *ndns);
  233. bool is_nd_btt(struct device *dev);
  234. struct device *nd_btt_create(struct nd_region *nd_region);
  235. #else
  236. static inline int nd_btt_probe(struct device *dev,
  237. struct nd_namespace_common *ndns)
  238. {
  239. return -ENODEV;
  240. }
  241. static inline bool is_nd_btt(struct device *dev)
  242. {
  243. return false;
  244. }
  245. static inline struct device *nd_btt_create(struct nd_region *nd_region)
  246. {
  247. return NULL;
  248. }
  249. #endif
  250. struct nd_pfn *to_nd_pfn(struct device *dev);
  251. #if IS_ENABLED(CONFIG_NVDIMM_PFN)
  252. #ifdef CONFIG_TRANSPARENT_HUGEPAGE
  253. #define PFN_DEFAULT_ALIGNMENT HPAGE_PMD_SIZE
  254. #else
  255. #define PFN_DEFAULT_ALIGNMENT PAGE_SIZE
  256. #endif
  257. int nd_pfn_probe(struct device *dev, struct nd_namespace_common *ndns);
  258. bool is_nd_pfn(struct device *dev);
  259. struct device *nd_pfn_create(struct nd_region *nd_region);
  260. struct device *nd_pfn_devinit(struct nd_pfn *nd_pfn,
  261. struct nd_namespace_common *ndns);
  262. int nd_pfn_validate(struct nd_pfn *nd_pfn, const char *sig);
  263. extern struct attribute_group nd_pfn_attribute_group;
  264. #else
  265. static inline int nd_pfn_probe(struct device *dev,
  266. struct nd_namespace_common *ndns)
  267. {
  268. return -ENODEV;
  269. }
  270. static inline bool is_nd_pfn(struct device *dev)
  271. {
  272. return false;
  273. }
  274. static inline struct device *nd_pfn_create(struct nd_region *nd_region)
  275. {
  276. return NULL;
  277. }
  278. static inline int nd_pfn_validate(struct nd_pfn *nd_pfn, const char *sig)
  279. {
  280. return -ENODEV;
  281. }
  282. #endif
  283. struct nd_dax *to_nd_dax(struct device *dev);
  284. #if IS_ENABLED(CONFIG_NVDIMM_DAX)
  285. int nd_dax_probe(struct device *dev, struct nd_namespace_common *ndns);
  286. bool is_nd_dax(struct device *dev);
  287. struct device *nd_dax_create(struct nd_region *nd_region);
  288. #else
  289. static inline int nd_dax_probe(struct device *dev,
  290. struct nd_namespace_common *ndns)
  291. {
  292. return -ENODEV;
  293. }
  294. static inline bool is_nd_dax(struct device *dev)
  295. {
  296. return false;
  297. }
  298. static inline struct device *nd_dax_create(struct nd_region *nd_region)
  299. {
  300. return NULL;
  301. }
  302. #endif
  303. int nd_region_to_nstype(struct nd_region *nd_region);
  304. int nd_region_register_namespaces(struct nd_region *nd_region, int *err);
  305. u64 nd_region_interleave_set_cookie(struct nd_region *nd_region,
  306. struct nd_namespace_index *nsindex);
  307. u64 nd_region_interleave_set_altcookie(struct nd_region *nd_region);
  308. void nvdimm_bus_lock(struct device *dev);
  309. void nvdimm_bus_unlock(struct device *dev);
  310. bool is_nvdimm_bus_locked(struct device *dev);
  311. int nvdimm_revalidate_disk(struct gendisk *disk);
  312. void nvdimm_drvdata_release(struct kref *kref);
  313. void put_ndd(struct nvdimm_drvdata *ndd);
  314. int nd_label_reserve_dpa(struct nvdimm_drvdata *ndd);
  315. void nvdimm_free_dpa(struct nvdimm_drvdata *ndd, struct resource *res);
  316. struct resource *nvdimm_allocate_dpa(struct nvdimm_drvdata *ndd,
  317. struct nd_label_id *label_id, resource_size_t start,
  318. resource_size_t n);
  319. resource_size_t nvdimm_namespace_capacity(struct nd_namespace_common *ndns);
  320. bool nvdimm_namespace_locked(struct nd_namespace_common *ndns);
  321. struct nd_namespace_common *nvdimm_namespace_common_probe(struct device *dev);
  322. int nvdimm_namespace_attach_btt(struct nd_namespace_common *ndns);
  323. int nvdimm_namespace_detach_btt(struct nd_btt *nd_btt);
  324. const char *nvdimm_namespace_disk_name(struct nd_namespace_common *ndns,
  325. char *name);
  326. unsigned int pmem_sector_size(struct nd_namespace_common *ndns);
  327. void nvdimm_badblocks_populate(struct nd_region *nd_region,
  328. struct badblocks *bb, const struct resource *res);
  329. #if IS_ENABLED(CONFIG_ND_CLAIM)
  330. int nvdimm_setup_pfn(struct nd_pfn *nd_pfn, struct dev_pagemap *pgmap);
  331. int devm_nsio_enable(struct device *dev, struct nd_namespace_io *nsio);
  332. void devm_nsio_disable(struct device *dev, struct nd_namespace_io *nsio);
  333. #else
  334. static inline int nvdimm_setup_pfn(struct nd_pfn *nd_pfn,
  335. struct dev_pagemap *pgmap)
  336. {
  337. return -ENXIO;
  338. }
  339. static inline int devm_nsio_enable(struct device *dev,
  340. struct nd_namespace_io *nsio)
  341. {
  342. return -ENXIO;
  343. }
  344. static inline void devm_nsio_disable(struct device *dev,
  345. struct nd_namespace_io *nsio)
  346. {
  347. }
  348. #endif
  349. int nd_blk_region_init(struct nd_region *nd_region);
  350. int nd_region_activate(struct nd_region *nd_region);
  351. void __nd_iostat_start(struct bio *bio, unsigned long *start);
  352. static inline bool nd_iostat_start(struct bio *bio, unsigned long *start)
  353. {
  354. struct gendisk *disk = bio->bi_disk;
  355. if (!blk_queue_io_stat(disk->queue))
  356. return false;
  357. *start = jiffies;
  358. generic_start_io_acct(disk->queue, bio_op(bio), bio_sectors(bio),
  359. &disk->part0);
  360. return true;
  361. }
  362. static inline void nd_iostat_end(struct bio *bio, unsigned long start)
  363. {
  364. struct gendisk *disk = bio->bi_disk;
  365. generic_end_io_acct(disk->queue, bio_op(bio), &disk->part0, start);
  366. }
  367. static inline bool is_bad_pmem(struct badblocks *bb, sector_t sector,
  368. unsigned int len)
  369. {
  370. if (bb->count) {
  371. sector_t first_bad;
  372. int num_bad;
  373. return !!badblocks_check(bb, sector, len / 512, &first_bad,
  374. &num_bad);
  375. }
  376. return false;
  377. }
  378. resource_size_t nd_namespace_blk_validate(struct nd_namespace_blk *nsblk);
  379. const u8 *nd_dev_to_uuid(struct device *dev);
  380. bool pmem_should_map_pages(struct device *dev);
  381. #endif /* __ND_H__ */