blk-integrity.c 12 KB

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  1. /*
  2. * blk-integrity.c - Block layer data integrity extensions
  3. *
  4. * Copyright (C) 2007, 2008 Oracle Corporation
  5. * Written by: Martin K. Petersen <martin.petersen@oracle.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. * You should have received a copy of the GNU General Public License
  17. * along with this program; see the file COPYING. If not, write to
  18. * the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139,
  19. * USA.
  20. *
  21. */
  22. #include <linux/blkdev.h>
  23. #include <linux/mempool.h>
  24. #include <linux/bio.h>
  25. #include <linux/scatterlist.h>
  26. #include <linux/export.h>
  27. #include <linux/slab.h>
  28. #include "blk.h"
  29. static struct kmem_cache *integrity_cachep;
  30. static const char *bi_unsupported_name = "unsupported";
  31. /**
  32. * blk_rq_count_integrity_sg - Count number of integrity scatterlist elements
  33. * @q: request queue
  34. * @bio: bio with integrity metadata attached
  35. *
  36. * Description: Returns the number of elements required in a
  37. * scatterlist corresponding to the integrity metadata in a bio.
  38. */
  39. int blk_rq_count_integrity_sg(struct request_queue *q, struct bio *bio)
  40. {
  41. struct bio_vec iv, ivprv = { NULL };
  42. unsigned int segments = 0;
  43. unsigned int seg_size = 0;
  44. struct bvec_iter iter;
  45. int prev = 0;
  46. bio_for_each_integrity_vec(iv, bio, iter) {
  47. if (prev) {
  48. if (!BIOVEC_PHYS_MERGEABLE(&ivprv, &iv))
  49. goto new_segment;
  50. if (!BIOVEC_SEG_BOUNDARY(q, &ivprv, &iv))
  51. goto new_segment;
  52. if (seg_size + iv.bv_len > queue_max_segment_size(q))
  53. goto new_segment;
  54. seg_size += iv.bv_len;
  55. } else {
  56. new_segment:
  57. segments++;
  58. seg_size = iv.bv_len;
  59. }
  60. prev = 1;
  61. ivprv = iv;
  62. }
  63. return segments;
  64. }
  65. EXPORT_SYMBOL(blk_rq_count_integrity_sg);
  66. /**
  67. * blk_rq_map_integrity_sg - Map integrity metadata into a scatterlist
  68. * @q: request queue
  69. * @bio: bio with integrity metadata attached
  70. * @sglist: target scatterlist
  71. *
  72. * Description: Map the integrity vectors in request into a
  73. * scatterlist. The scatterlist must be big enough to hold all
  74. * elements. I.e. sized using blk_rq_count_integrity_sg().
  75. */
  76. int blk_rq_map_integrity_sg(struct request_queue *q, struct bio *bio,
  77. struct scatterlist *sglist)
  78. {
  79. struct bio_vec iv, ivprv = { NULL };
  80. struct scatterlist *sg = NULL;
  81. unsigned int segments = 0;
  82. struct bvec_iter iter;
  83. int prev = 0;
  84. bio_for_each_integrity_vec(iv, bio, iter) {
  85. if (prev) {
  86. if (!BIOVEC_PHYS_MERGEABLE(&ivprv, &iv))
  87. goto new_segment;
  88. if (!BIOVEC_SEG_BOUNDARY(q, &ivprv, &iv))
  89. goto new_segment;
  90. if (sg->length + iv.bv_len > queue_max_segment_size(q))
  91. goto new_segment;
  92. sg->length += iv.bv_len;
  93. } else {
  94. new_segment:
  95. if (!sg)
  96. sg = sglist;
  97. else {
  98. sg_unmark_end(sg);
  99. sg = sg_next(sg);
  100. }
  101. sg_set_page(sg, iv.bv_page, iv.bv_len, iv.bv_offset);
  102. segments++;
  103. }
  104. prev = 1;
  105. ivprv = iv;
  106. }
  107. if (sg)
  108. sg_mark_end(sg);
  109. return segments;
  110. }
  111. EXPORT_SYMBOL(blk_rq_map_integrity_sg);
  112. /**
  113. * blk_integrity_compare - Compare integrity profile of two disks
  114. * @gd1: Disk to compare
  115. * @gd2: Disk to compare
  116. *
  117. * Description: Meta-devices like DM and MD need to verify that all
  118. * sub-devices use the same integrity format before advertising to
  119. * upper layers that they can send/receive integrity metadata. This
  120. * function can be used to check whether two gendisk devices have
  121. * compatible integrity formats.
  122. */
  123. int blk_integrity_compare(struct gendisk *gd1, struct gendisk *gd2)
  124. {
  125. struct blk_integrity *b1 = gd1->integrity;
  126. struct blk_integrity *b2 = gd2->integrity;
  127. if (!b1 && !b2)
  128. return 0;
  129. if (!b1 || !b2)
  130. return -1;
  131. if (b1->sector_size != b2->sector_size) {
  132. printk(KERN_ERR "%s: %s/%s sector sz %u != %u\n", __func__,
  133. gd1->disk_name, gd2->disk_name,
  134. b1->sector_size, b2->sector_size);
  135. return -1;
  136. }
  137. if (b1->tuple_size != b2->tuple_size) {
  138. printk(KERN_ERR "%s: %s/%s tuple sz %u != %u\n", __func__,
  139. gd1->disk_name, gd2->disk_name,
  140. b1->tuple_size, b2->tuple_size);
  141. return -1;
  142. }
  143. if (b1->tag_size && b2->tag_size && (b1->tag_size != b2->tag_size)) {
  144. printk(KERN_ERR "%s: %s/%s tag sz %u != %u\n", __func__,
  145. gd1->disk_name, gd2->disk_name,
  146. b1->tag_size, b2->tag_size);
  147. return -1;
  148. }
  149. if (strcmp(b1->name, b2->name)) {
  150. printk(KERN_ERR "%s: %s/%s type %s != %s\n", __func__,
  151. gd1->disk_name, gd2->disk_name,
  152. b1->name, b2->name);
  153. return -1;
  154. }
  155. return 0;
  156. }
  157. EXPORT_SYMBOL(blk_integrity_compare);
  158. int blk_integrity_merge_rq(struct request_queue *q, struct request *req,
  159. struct request *next)
  160. {
  161. if (blk_integrity_rq(req) != blk_integrity_rq(next))
  162. return -1;
  163. if (req->nr_integrity_segments + next->nr_integrity_segments >
  164. q->limits.max_integrity_segments)
  165. return -1;
  166. return 0;
  167. }
  168. EXPORT_SYMBOL(blk_integrity_merge_rq);
  169. int blk_integrity_merge_bio(struct request_queue *q, struct request *req,
  170. struct bio *bio)
  171. {
  172. int nr_integrity_segs;
  173. struct bio *next = bio->bi_next;
  174. bio->bi_next = NULL;
  175. nr_integrity_segs = blk_rq_count_integrity_sg(q, bio);
  176. bio->bi_next = next;
  177. if (req->nr_integrity_segments + nr_integrity_segs >
  178. q->limits.max_integrity_segments)
  179. return -1;
  180. req->nr_integrity_segments += nr_integrity_segs;
  181. return 0;
  182. }
  183. EXPORT_SYMBOL(blk_integrity_merge_bio);
  184. struct integrity_sysfs_entry {
  185. struct attribute attr;
  186. ssize_t (*show)(struct blk_integrity *, char *);
  187. ssize_t (*store)(struct blk_integrity *, const char *, size_t);
  188. };
  189. static ssize_t integrity_attr_show(struct kobject *kobj, struct attribute *attr,
  190. char *page)
  191. {
  192. struct blk_integrity *bi =
  193. container_of(kobj, struct blk_integrity, kobj);
  194. struct integrity_sysfs_entry *entry =
  195. container_of(attr, struct integrity_sysfs_entry, attr);
  196. return entry->show(bi, page);
  197. }
  198. static ssize_t integrity_attr_store(struct kobject *kobj,
  199. struct attribute *attr, const char *page,
  200. size_t count)
  201. {
  202. struct blk_integrity *bi =
  203. container_of(kobj, struct blk_integrity, kobj);
  204. struct integrity_sysfs_entry *entry =
  205. container_of(attr, struct integrity_sysfs_entry, attr);
  206. ssize_t ret = 0;
  207. if (entry->store)
  208. ret = entry->store(bi, page, count);
  209. return ret;
  210. }
  211. static ssize_t integrity_format_show(struct blk_integrity *bi, char *page)
  212. {
  213. if (bi != NULL && bi->name != NULL)
  214. return sprintf(page, "%s\n", bi->name);
  215. else
  216. return sprintf(page, "none\n");
  217. }
  218. static ssize_t integrity_tag_size_show(struct blk_integrity *bi, char *page)
  219. {
  220. if (bi != NULL)
  221. return sprintf(page, "%u\n", bi->tag_size);
  222. else
  223. return sprintf(page, "0\n");
  224. }
  225. static ssize_t integrity_read_store(struct blk_integrity *bi,
  226. const char *page, size_t count)
  227. {
  228. char *p = (char *) page;
  229. unsigned long val = simple_strtoul(p, &p, 10);
  230. if (val)
  231. bi->flags |= INTEGRITY_FLAG_READ;
  232. else
  233. bi->flags &= ~INTEGRITY_FLAG_READ;
  234. return count;
  235. }
  236. static ssize_t integrity_read_show(struct blk_integrity *bi, char *page)
  237. {
  238. return sprintf(page, "%d\n", (bi->flags & INTEGRITY_FLAG_READ) != 0);
  239. }
  240. static ssize_t integrity_write_store(struct blk_integrity *bi,
  241. const char *page, size_t count)
  242. {
  243. char *p = (char *) page;
  244. unsigned long val = simple_strtoul(p, &p, 10);
  245. if (val)
  246. bi->flags |= INTEGRITY_FLAG_WRITE;
  247. else
  248. bi->flags &= ~INTEGRITY_FLAG_WRITE;
  249. return count;
  250. }
  251. static ssize_t integrity_write_show(struct blk_integrity *bi, char *page)
  252. {
  253. return sprintf(page, "%d\n", (bi->flags & INTEGRITY_FLAG_WRITE) != 0);
  254. }
  255. static struct integrity_sysfs_entry integrity_format_entry = {
  256. .attr = { .name = "format", .mode = S_IRUGO },
  257. .show = integrity_format_show,
  258. };
  259. static struct integrity_sysfs_entry integrity_tag_size_entry = {
  260. .attr = { .name = "tag_size", .mode = S_IRUGO },
  261. .show = integrity_tag_size_show,
  262. };
  263. static struct integrity_sysfs_entry integrity_read_entry = {
  264. .attr = { .name = "read_verify", .mode = S_IRUGO | S_IWUSR },
  265. .show = integrity_read_show,
  266. .store = integrity_read_store,
  267. };
  268. static struct integrity_sysfs_entry integrity_write_entry = {
  269. .attr = { .name = "write_generate", .mode = S_IRUGO | S_IWUSR },
  270. .show = integrity_write_show,
  271. .store = integrity_write_store,
  272. };
  273. static struct attribute *integrity_attrs[] = {
  274. &integrity_format_entry.attr,
  275. &integrity_tag_size_entry.attr,
  276. &integrity_read_entry.attr,
  277. &integrity_write_entry.attr,
  278. NULL,
  279. };
  280. static const struct sysfs_ops integrity_ops = {
  281. .show = &integrity_attr_show,
  282. .store = &integrity_attr_store,
  283. };
  284. static int __init blk_dev_integrity_init(void)
  285. {
  286. integrity_cachep = kmem_cache_create("blkdev_integrity",
  287. sizeof(struct blk_integrity),
  288. 0, SLAB_PANIC, NULL);
  289. return 0;
  290. }
  291. subsys_initcall(blk_dev_integrity_init);
  292. static void blk_integrity_release(struct kobject *kobj)
  293. {
  294. struct blk_integrity *bi =
  295. container_of(kobj, struct blk_integrity, kobj);
  296. kmem_cache_free(integrity_cachep, bi);
  297. }
  298. static struct kobj_type integrity_ktype = {
  299. .default_attrs = integrity_attrs,
  300. .sysfs_ops = &integrity_ops,
  301. .release = blk_integrity_release,
  302. };
  303. bool blk_integrity_is_initialized(struct gendisk *disk)
  304. {
  305. struct blk_integrity *bi = blk_get_integrity(disk);
  306. return (bi && bi->name && strcmp(bi->name, bi_unsupported_name) != 0);
  307. }
  308. EXPORT_SYMBOL(blk_integrity_is_initialized);
  309. /**
  310. * blk_integrity_register - Register a gendisk as being integrity-capable
  311. * @disk: struct gendisk pointer to make integrity-aware
  312. * @template: optional integrity profile to register
  313. *
  314. * Description: When a device needs to advertise itself as being able
  315. * to send/receive integrity metadata it must use this function to
  316. * register the capability with the block layer. The template is a
  317. * blk_integrity struct with values appropriate for the underlying
  318. * hardware. If template is NULL the new profile is allocated but
  319. * not filled out. See Documentation/block/data-integrity.txt.
  320. */
  321. int blk_integrity_register(struct gendisk *disk, struct blk_integrity *template)
  322. {
  323. struct blk_integrity *bi;
  324. BUG_ON(disk == NULL);
  325. if (disk->integrity == NULL) {
  326. bi = kmem_cache_alloc(integrity_cachep,
  327. GFP_KERNEL | __GFP_ZERO);
  328. if (!bi)
  329. return -1;
  330. if (kobject_init_and_add(&bi->kobj, &integrity_ktype,
  331. &disk_to_dev(disk)->kobj,
  332. "%s", "integrity")) {
  333. kmem_cache_free(integrity_cachep, bi);
  334. return -1;
  335. }
  336. kobject_uevent(&bi->kobj, KOBJ_ADD);
  337. bi->flags |= INTEGRITY_FLAG_READ | INTEGRITY_FLAG_WRITE;
  338. bi->sector_size = queue_logical_block_size(disk->queue);
  339. disk->integrity = bi;
  340. } else
  341. bi = disk->integrity;
  342. /* Use the provided profile as template */
  343. if (template != NULL) {
  344. bi->name = template->name;
  345. bi->generate_fn = template->generate_fn;
  346. bi->verify_fn = template->verify_fn;
  347. bi->tuple_size = template->tuple_size;
  348. bi->set_tag_fn = template->set_tag_fn;
  349. bi->get_tag_fn = template->get_tag_fn;
  350. bi->tag_size = template->tag_size;
  351. } else
  352. bi->name = bi_unsupported_name;
  353. disk->queue->backing_dev_info.capabilities |= BDI_CAP_STABLE_WRITES;
  354. return 0;
  355. }
  356. EXPORT_SYMBOL(blk_integrity_register);
  357. /**
  358. * blk_integrity_unregister - Remove block integrity profile
  359. * @disk: disk whose integrity profile to deallocate
  360. *
  361. * Description: This function frees all memory used by the block
  362. * integrity profile. To be called at device teardown.
  363. */
  364. void blk_integrity_unregister(struct gendisk *disk)
  365. {
  366. struct blk_integrity *bi;
  367. if (!disk || !disk->integrity)
  368. return;
  369. disk->queue->backing_dev_info.capabilities &= ~BDI_CAP_STABLE_WRITES;
  370. bi = disk->integrity;
  371. kobject_uevent(&bi->kobj, KOBJ_REMOVE);
  372. kobject_del(&bi->kobj);
  373. kobject_put(&bi->kobj);
  374. disk->integrity = NULL;
  375. }
  376. EXPORT_SYMBOL(blk_integrity_unregister);