blk-sysfs.c 15 KB

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  1. /*
  2. * Functions related to sysfs handling
  3. */
  4. #include <linux/kernel.h>
  5. #include <linux/slab.h>
  6. #include <linux/module.h>
  7. #include <linux/bio.h>
  8. #include <linux/blkdev.h>
  9. #include <linux/blktrace_api.h>
  10. #include "blk.h"
  11. #include "blk-cgroup.h"
  12. struct queue_sysfs_entry {
  13. struct attribute attr;
  14. ssize_t (*show)(struct request_queue *, char *);
  15. ssize_t (*store)(struct request_queue *, const char *, size_t);
  16. };
  17. static ssize_t
  18. queue_var_show(unsigned long var, char *page)
  19. {
  20. return sprintf(page, "%lu\n", var);
  21. }
  22. static ssize_t
  23. queue_var_store(unsigned long *var, const char *page, size_t count)
  24. {
  25. char *p = (char *) page;
  26. *var = simple_strtoul(p, &p, 10);
  27. return count;
  28. }
  29. static ssize_t queue_requests_show(struct request_queue *q, char *page)
  30. {
  31. return queue_var_show(q->nr_requests, (page));
  32. }
  33. static ssize_t
  34. queue_requests_store(struct request_queue *q, const char *page, size_t count)
  35. {
  36. struct request_list *rl;
  37. unsigned long nr;
  38. int ret;
  39. if (!q->request_fn)
  40. return -EINVAL;
  41. ret = queue_var_store(&nr, page, count);
  42. if (nr < BLKDEV_MIN_RQ)
  43. nr = BLKDEV_MIN_RQ;
  44. spin_lock_irq(q->queue_lock);
  45. q->nr_requests = nr;
  46. blk_queue_congestion_threshold(q);
  47. /* congestion isn't cgroup aware and follows root blkcg for now */
  48. rl = &q->root_rl;
  49. if (rl->count[BLK_RW_SYNC] >= queue_congestion_on_threshold(q))
  50. blk_set_queue_congested(q, BLK_RW_SYNC);
  51. else if (rl->count[BLK_RW_SYNC] < queue_congestion_off_threshold(q))
  52. blk_clear_queue_congested(q, BLK_RW_SYNC);
  53. if (rl->count[BLK_RW_ASYNC] >= queue_congestion_on_threshold(q))
  54. blk_set_queue_congested(q, BLK_RW_ASYNC);
  55. else if (rl->count[BLK_RW_ASYNC] < queue_congestion_off_threshold(q))
  56. blk_clear_queue_congested(q, BLK_RW_ASYNC);
  57. blk_queue_for_each_rl(rl, q) {
  58. if (rl->count[BLK_RW_SYNC] >= q->nr_requests) {
  59. blk_set_rl_full(rl, BLK_RW_SYNC);
  60. } else {
  61. blk_clear_rl_full(rl, BLK_RW_SYNC);
  62. wake_up(&rl->wait[BLK_RW_SYNC]);
  63. }
  64. if (rl->count[BLK_RW_ASYNC] >= q->nr_requests) {
  65. blk_set_rl_full(rl, BLK_RW_ASYNC);
  66. } else {
  67. blk_clear_rl_full(rl, BLK_RW_ASYNC);
  68. wake_up(&rl->wait[BLK_RW_ASYNC]);
  69. }
  70. }
  71. spin_unlock_irq(q->queue_lock);
  72. return ret;
  73. }
  74. static ssize_t queue_ra_show(struct request_queue *q, char *page)
  75. {
  76. unsigned long ra_kb = q->backing_dev_info.ra_pages <<
  77. (PAGE_CACHE_SHIFT - 10);
  78. return queue_var_show(ra_kb, (page));
  79. }
  80. static ssize_t
  81. queue_ra_store(struct request_queue *q, const char *page, size_t count)
  82. {
  83. unsigned long ra_kb;
  84. ssize_t ret = queue_var_store(&ra_kb, page, count);
  85. q->backing_dev_info.ra_pages = ra_kb >> (PAGE_CACHE_SHIFT - 10);
  86. return ret;
  87. }
  88. static ssize_t queue_max_sectors_show(struct request_queue *q, char *page)
  89. {
  90. int max_sectors_kb = queue_max_sectors(q) >> 1;
  91. return queue_var_show(max_sectors_kb, (page));
  92. }
  93. static ssize_t queue_max_segments_show(struct request_queue *q, char *page)
  94. {
  95. return queue_var_show(queue_max_segments(q), (page));
  96. }
  97. static ssize_t queue_max_integrity_segments_show(struct request_queue *q, char *page)
  98. {
  99. return queue_var_show(q->limits.max_integrity_segments, (page));
  100. }
  101. static ssize_t queue_max_segment_size_show(struct request_queue *q, char *page)
  102. {
  103. if (blk_queue_cluster(q))
  104. return queue_var_show(queue_max_segment_size(q), (page));
  105. return queue_var_show(PAGE_CACHE_SIZE, (page));
  106. }
  107. static ssize_t queue_logical_block_size_show(struct request_queue *q, char *page)
  108. {
  109. return queue_var_show(queue_logical_block_size(q), page);
  110. }
  111. static ssize_t queue_physical_block_size_show(struct request_queue *q, char *page)
  112. {
  113. return queue_var_show(queue_physical_block_size(q), page);
  114. }
  115. static ssize_t queue_io_min_show(struct request_queue *q, char *page)
  116. {
  117. return queue_var_show(queue_io_min(q), page);
  118. }
  119. static ssize_t queue_io_opt_show(struct request_queue *q, char *page)
  120. {
  121. return queue_var_show(queue_io_opt(q), page);
  122. }
  123. static ssize_t queue_discard_granularity_show(struct request_queue *q, char *page)
  124. {
  125. return queue_var_show(q->limits.discard_granularity, page);
  126. }
  127. static ssize_t queue_discard_max_show(struct request_queue *q, char *page)
  128. {
  129. return sprintf(page, "%llu\n",
  130. (unsigned long long)q->limits.max_discard_sectors << 9);
  131. }
  132. static ssize_t queue_discard_zeroes_data_show(struct request_queue *q, char *page)
  133. {
  134. return queue_var_show(queue_discard_zeroes_data(q), page);
  135. }
  136. static ssize_t
  137. queue_max_sectors_store(struct request_queue *q, const char *page, size_t count)
  138. {
  139. unsigned long max_sectors_kb,
  140. max_hw_sectors_kb = queue_max_hw_sectors(q) >> 1,
  141. page_kb = 1 << (PAGE_CACHE_SHIFT - 10);
  142. ssize_t ret = queue_var_store(&max_sectors_kb, page, count);
  143. if (max_sectors_kb > max_hw_sectors_kb || max_sectors_kb < page_kb)
  144. return -EINVAL;
  145. spin_lock_irq(q->queue_lock);
  146. q->limits.max_sectors = max_sectors_kb << 1;
  147. spin_unlock_irq(q->queue_lock);
  148. return ret;
  149. }
  150. static ssize_t queue_max_hw_sectors_show(struct request_queue *q, char *page)
  151. {
  152. int max_hw_sectors_kb = queue_max_hw_sectors(q) >> 1;
  153. return queue_var_show(max_hw_sectors_kb, (page));
  154. }
  155. #define QUEUE_SYSFS_BIT_FNS(name, flag, neg) \
  156. static ssize_t \
  157. queue_show_##name(struct request_queue *q, char *page) \
  158. { \
  159. int bit; \
  160. bit = test_bit(QUEUE_FLAG_##flag, &q->queue_flags); \
  161. return queue_var_show(neg ? !bit : bit, page); \
  162. } \
  163. static ssize_t \
  164. queue_store_##name(struct request_queue *q, const char *page, size_t count) \
  165. { \
  166. unsigned long val; \
  167. ssize_t ret; \
  168. ret = queue_var_store(&val, page, count); \
  169. if (neg) \
  170. val = !val; \
  171. \
  172. spin_lock_irq(q->queue_lock); \
  173. if (val) \
  174. queue_flag_set(QUEUE_FLAG_##flag, q); \
  175. else \
  176. queue_flag_clear(QUEUE_FLAG_##flag, q); \
  177. spin_unlock_irq(q->queue_lock); \
  178. return ret; \
  179. }
  180. QUEUE_SYSFS_BIT_FNS(nonrot, NONROT, 1);
  181. QUEUE_SYSFS_BIT_FNS(random, ADD_RANDOM, 0);
  182. QUEUE_SYSFS_BIT_FNS(iostats, IO_STAT, 0);
  183. #undef QUEUE_SYSFS_BIT_FNS
  184. static ssize_t queue_nomerges_show(struct request_queue *q, char *page)
  185. {
  186. return queue_var_show((blk_queue_nomerges(q) << 1) |
  187. blk_queue_noxmerges(q), page);
  188. }
  189. static ssize_t queue_nomerges_store(struct request_queue *q, const char *page,
  190. size_t count)
  191. {
  192. unsigned long nm;
  193. ssize_t ret = queue_var_store(&nm, page, count);
  194. spin_lock_irq(q->queue_lock);
  195. queue_flag_clear(QUEUE_FLAG_NOMERGES, q);
  196. queue_flag_clear(QUEUE_FLAG_NOXMERGES, q);
  197. if (nm == 2)
  198. queue_flag_set(QUEUE_FLAG_NOMERGES, q);
  199. else if (nm)
  200. queue_flag_set(QUEUE_FLAG_NOXMERGES, q);
  201. spin_unlock_irq(q->queue_lock);
  202. return ret;
  203. }
  204. static ssize_t queue_rq_affinity_show(struct request_queue *q, char *page)
  205. {
  206. bool set = test_bit(QUEUE_FLAG_SAME_COMP, &q->queue_flags);
  207. bool force = test_bit(QUEUE_FLAG_SAME_FORCE, &q->queue_flags);
  208. return queue_var_show(set << force, page);
  209. }
  210. static ssize_t
  211. queue_rq_affinity_store(struct request_queue *q, const char *page, size_t count)
  212. {
  213. ssize_t ret = -EINVAL;
  214. #if defined(CONFIG_USE_GENERIC_SMP_HELPERS)
  215. unsigned long val;
  216. ret = queue_var_store(&val, page, count);
  217. spin_lock_irq(q->queue_lock);
  218. if (val == 2) {
  219. queue_flag_set(QUEUE_FLAG_SAME_COMP, q);
  220. queue_flag_set(QUEUE_FLAG_SAME_FORCE, q);
  221. } else if (val == 1) {
  222. queue_flag_set(QUEUE_FLAG_SAME_COMP, q);
  223. queue_flag_clear(QUEUE_FLAG_SAME_FORCE, q);
  224. } else if (val == 0) {
  225. queue_flag_clear(QUEUE_FLAG_SAME_COMP, q);
  226. queue_flag_clear(QUEUE_FLAG_SAME_FORCE, q);
  227. }
  228. spin_unlock_irq(q->queue_lock);
  229. #endif
  230. return ret;
  231. }
  232. static struct queue_sysfs_entry queue_requests_entry = {
  233. .attr = {.name = "nr_requests", .mode = S_IRUGO | S_IWUSR },
  234. .show = queue_requests_show,
  235. .store = queue_requests_store,
  236. };
  237. static struct queue_sysfs_entry queue_ra_entry = {
  238. .attr = {.name = "read_ahead_kb", .mode = S_IRUGO | S_IWUSR },
  239. .show = queue_ra_show,
  240. .store = queue_ra_store,
  241. };
  242. static struct queue_sysfs_entry queue_max_sectors_entry = {
  243. .attr = {.name = "max_sectors_kb", .mode = S_IRUGO | S_IWUSR },
  244. .show = queue_max_sectors_show,
  245. .store = queue_max_sectors_store,
  246. };
  247. static struct queue_sysfs_entry queue_max_hw_sectors_entry = {
  248. .attr = {.name = "max_hw_sectors_kb", .mode = S_IRUGO },
  249. .show = queue_max_hw_sectors_show,
  250. };
  251. static struct queue_sysfs_entry queue_max_segments_entry = {
  252. .attr = {.name = "max_segments", .mode = S_IRUGO },
  253. .show = queue_max_segments_show,
  254. };
  255. static struct queue_sysfs_entry queue_max_integrity_segments_entry = {
  256. .attr = {.name = "max_integrity_segments", .mode = S_IRUGO },
  257. .show = queue_max_integrity_segments_show,
  258. };
  259. static struct queue_sysfs_entry queue_max_segment_size_entry = {
  260. .attr = {.name = "max_segment_size", .mode = S_IRUGO },
  261. .show = queue_max_segment_size_show,
  262. };
  263. static struct queue_sysfs_entry queue_iosched_entry = {
  264. .attr = {.name = "scheduler", .mode = S_IRUGO | S_IWUSR },
  265. .show = elv_iosched_show,
  266. .store = elv_iosched_store,
  267. };
  268. static struct queue_sysfs_entry queue_hw_sector_size_entry = {
  269. .attr = {.name = "hw_sector_size", .mode = S_IRUGO },
  270. .show = queue_logical_block_size_show,
  271. };
  272. static struct queue_sysfs_entry queue_logical_block_size_entry = {
  273. .attr = {.name = "logical_block_size", .mode = S_IRUGO },
  274. .show = queue_logical_block_size_show,
  275. };
  276. static struct queue_sysfs_entry queue_physical_block_size_entry = {
  277. .attr = {.name = "physical_block_size", .mode = S_IRUGO },
  278. .show = queue_physical_block_size_show,
  279. };
  280. static struct queue_sysfs_entry queue_io_min_entry = {
  281. .attr = {.name = "minimum_io_size", .mode = S_IRUGO },
  282. .show = queue_io_min_show,
  283. };
  284. static struct queue_sysfs_entry queue_io_opt_entry = {
  285. .attr = {.name = "optimal_io_size", .mode = S_IRUGO },
  286. .show = queue_io_opt_show,
  287. };
  288. static struct queue_sysfs_entry queue_discard_granularity_entry = {
  289. .attr = {.name = "discard_granularity", .mode = S_IRUGO },
  290. .show = queue_discard_granularity_show,
  291. };
  292. static struct queue_sysfs_entry queue_discard_max_entry = {
  293. .attr = {.name = "discard_max_bytes", .mode = S_IRUGO },
  294. .show = queue_discard_max_show,
  295. };
  296. static struct queue_sysfs_entry queue_discard_zeroes_data_entry = {
  297. .attr = {.name = "discard_zeroes_data", .mode = S_IRUGO },
  298. .show = queue_discard_zeroes_data_show,
  299. };
  300. static struct queue_sysfs_entry queue_nonrot_entry = {
  301. .attr = {.name = "rotational", .mode = S_IRUGO | S_IWUSR },
  302. .show = queue_show_nonrot,
  303. .store = queue_store_nonrot,
  304. };
  305. static struct queue_sysfs_entry queue_nomerges_entry = {
  306. .attr = {.name = "nomerges", .mode = S_IRUGO | S_IWUSR },
  307. .show = queue_nomerges_show,
  308. .store = queue_nomerges_store,
  309. };
  310. static struct queue_sysfs_entry queue_rq_affinity_entry = {
  311. .attr = {.name = "rq_affinity", .mode = S_IRUGO | S_IWUSR },
  312. .show = queue_rq_affinity_show,
  313. .store = queue_rq_affinity_store,
  314. };
  315. static struct queue_sysfs_entry queue_iostats_entry = {
  316. .attr = {.name = "iostats", .mode = S_IRUGO | S_IWUSR },
  317. .show = queue_show_iostats,
  318. .store = queue_store_iostats,
  319. };
  320. static struct queue_sysfs_entry queue_random_entry = {
  321. .attr = {.name = "add_random", .mode = S_IRUGO | S_IWUSR },
  322. .show = queue_show_random,
  323. .store = queue_store_random,
  324. };
  325. static struct attribute *default_attrs[] = {
  326. &queue_requests_entry.attr,
  327. &queue_ra_entry.attr,
  328. &queue_max_hw_sectors_entry.attr,
  329. &queue_max_sectors_entry.attr,
  330. &queue_max_segments_entry.attr,
  331. &queue_max_integrity_segments_entry.attr,
  332. &queue_max_segment_size_entry.attr,
  333. &queue_iosched_entry.attr,
  334. &queue_hw_sector_size_entry.attr,
  335. &queue_logical_block_size_entry.attr,
  336. &queue_physical_block_size_entry.attr,
  337. &queue_io_min_entry.attr,
  338. &queue_io_opt_entry.attr,
  339. &queue_discard_granularity_entry.attr,
  340. &queue_discard_max_entry.attr,
  341. &queue_discard_zeroes_data_entry.attr,
  342. &queue_nonrot_entry.attr,
  343. &queue_nomerges_entry.attr,
  344. &queue_rq_affinity_entry.attr,
  345. &queue_iostats_entry.attr,
  346. &queue_random_entry.attr,
  347. NULL,
  348. };
  349. #define to_queue(atr) container_of((atr), struct queue_sysfs_entry, attr)
  350. static ssize_t
  351. queue_attr_show(struct kobject *kobj, struct attribute *attr, char *page)
  352. {
  353. struct queue_sysfs_entry *entry = to_queue(attr);
  354. struct request_queue *q =
  355. container_of(kobj, struct request_queue, kobj);
  356. ssize_t res;
  357. if (!entry->show)
  358. return -EIO;
  359. mutex_lock(&q->sysfs_lock);
  360. if (blk_queue_dead(q)) {
  361. mutex_unlock(&q->sysfs_lock);
  362. return -ENOENT;
  363. }
  364. res = entry->show(q, page);
  365. mutex_unlock(&q->sysfs_lock);
  366. return res;
  367. }
  368. static ssize_t
  369. queue_attr_store(struct kobject *kobj, struct attribute *attr,
  370. const char *page, size_t length)
  371. {
  372. struct queue_sysfs_entry *entry = to_queue(attr);
  373. struct request_queue *q;
  374. ssize_t res;
  375. if (!entry->store)
  376. return -EIO;
  377. q = container_of(kobj, struct request_queue, kobj);
  378. mutex_lock(&q->sysfs_lock);
  379. if (blk_queue_dead(q)) {
  380. mutex_unlock(&q->sysfs_lock);
  381. return -ENOENT;
  382. }
  383. res = entry->store(q, page, length);
  384. mutex_unlock(&q->sysfs_lock);
  385. return res;
  386. }
  387. /**
  388. * blk_release_queue: - release a &struct request_queue when it is no longer needed
  389. * @kobj: the kobj belonging to the request queue to be released
  390. *
  391. * Description:
  392. * blk_release_queue is the pair to blk_init_queue() or
  393. * blk_queue_make_request(). It should be called when a request queue is
  394. * being released; typically when a block device is being de-registered.
  395. * Currently, its primary task it to free all the &struct request
  396. * structures that were allocated to the queue and the queue itself.
  397. *
  398. * Caveat:
  399. * Hopefully the low level driver will have finished any
  400. * outstanding requests first...
  401. **/
  402. static void blk_release_queue(struct kobject *kobj)
  403. {
  404. struct request_queue *q =
  405. container_of(kobj, struct request_queue, kobj);
  406. blk_sync_queue(q);
  407. blkcg_exit_queue(q);
  408. if (q->elevator) {
  409. spin_lock_irq(q->queue_lock);
  410. ioc_clear_queue(q);
  411. spin_unlock_irq(q->queue_lock);
  412. elevator_exit(q->elevator);
  413. }
  414. blk_exit_rl(&q->root_rl);
  415. if (q->queue_tags)
  416. __blk_queue_free_tags(q);
  417. blk_trace_shutdown(q);
  418. bdi_destroy(&q->backing_dev_info);
  419. ida_simple_remove(&blk_queue_ida, q->id);
  420. kmem_cache_free(blk_requestq_cachep, q);
  421. }
  422. static const struct sysfs_ops queue_sysfs_ops = {
  423. .show = queue_attr_show,
  424. .store = queue_attr_store,
  425. };
  426. struct kobj_type blk_queue_ktype = {
  427. .sysfs_ops = &queue_sysfs_ops,
  428. .default_attrs = default_attrs,
  429. .release = blk_release_queue,
  430. };
  431. int blk_register_queue(struct gendisk *disk)
  432. {
  433. int ret;
  434. struct device *dev = disk_to_dev(disk);
  435. struct request_queue *q = disk->queue;
  436. if (WARN_ON(!q))
  437. return -ENXIO;
  438. ret = blk_trace_init_sysfs(dev);
  439. if (ret)
  440. return ret;
  441. ret = kobject_add(&q->kobj, kobject_get(&dev->kobj), "%s", "queue");
  442. if (ret < 0) {
  443. blk_trace_remove_sysfs(dev);
  444. return ret;
  445. }
  446. kobject_uevent(&q->kobj, KOBJ_ADD);
  447. if (!q->request_fn)
  448. return 0;
  449. ret = elv_register_queue(q);
  450. if (ret) {
  451. kobject_uevent(&q->kobj, KOBJ_REMOVE);
  452. kobject_del(&q->kobj);
  453. blk_trace_remove_sysfs(dev);
  454. kobject_put(&dev->kobj);
  455. return ret;
  456. }
  457. return 0;
  458. }
  459. void blk_unregister_queue(struct gendisk *disk)
  460. {
  461. struct request_queue *q = disk->queue;
  462. if (WARN_ON(!q))
  463. return;
  464. if (q->request_fn)
  465. elv_unregister_queue(q);
  466. kobject_uevent(&q->kobj, KOBJ_REMOVE);
  467. kobject_del(&q->kobj);
  468. blk_trace_remove_sysfs(disk_to_dev(disk));
  469. kobject_put(&disk_to_dev(disk)->kobj);
  470. }