1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * Functions related to sysfs handling
4 */
5 #include <linux/kernel.h>
6 #include <linux/slab.h>
7 #include <linux/module.h>
8 #include <linux/bio.h>
9 #include <linux/blkdev.h>
10 #include <linux/backing-dev.h>
11 #include <linux/blktrace_api.h>
12 #include <linux/debugfs.h>
13
14 #include "blk.h"
15 #include "blk-mq.h"
16 #include "blk-mq-debugfs.h"
17 #include "blk-mq-sched.h"
18 #include "blk-rq-qos.h"
19 #include "blk-wbt.h"
20 #include "blk-cgroup.h"
21 #include "blk-throttle.h"
22
23 struct queue_sysfs_entry {
24 struct attribute attr;
25 ssize_t (*show)(struct gendisk *disk, char *page);
26 ssize_t (*show_limit)(struct gendisk *disk, char *page);
27
28 ssize_t (*store)(struct gendisk *disk, const char *page, size_t count);
29 int (*store_limit)(struct gendisk *disk, const char *page,
30 size_t count, struct queue_limits *lim);
31 };
32
33 static ssize_t
queue_var_show(unsigned long var,char * page)34 queue_var_show(unsigned long var, char *page)
35 {
36 return sysfs_emit(page, "%lu\n", var);
37 }
38
39 static ssize_t
queue_var_store(unsigned long * var,const char * page,size_t count)40 queue_var_store(unsigned long *var, const char *page, size_t count)
41 {
42 int err;
43 unsigned long v;
44
45 err = kstrtoul(page, 10, &v);
46 if (err || v > UINT_MAX)
47 return -EINVAL;
48
49 *var = v;
50
51 return count;
52 }
53
queue_requests_show(struct gendisk * disk,char * page)54 static ssize_t queue_requests_show(struct gendisk *disk, char *page)
55 {
56 ssize_t ret;
57
58 mutex_lock(&disk->queue->elevator_lock);
59 ret = queue_var_show(disk->queue->nr_requests, page);
60 mutex_unlock(&disk->queue->elevator_lock);
61 return ret;
62 }
63
64 static ssize_t
queue_requests_store(struct gendisk * disk,const char * page,size_t count)65 queue_requests_store(struct gendisk *disk, const char *page, size_t count)
66 {
67 struct request_queue *q = disk->queue;
68 struct blk_mq_tag_set *set = q->tag_set;
69 struct elevator_tags *et = NULL;
70 unsigned int memflags;
71 unsigned long nr;
72 int ret;
73
74 ret = queue_var_store(&nr, page, count);
75 if (ret < 0)
76 return ret;
77
78 /*
79 * Serialize updating nr_requests with concurrent queue_requests_store()
80 * and switching elevator.
81 *
82 * Use trylock to avoid circular lock dependency with kernfs active
83 * reference during concurrent disk deletion:
84 * update_nr_hwq_lock -> kn->active (via del_gendisk -> kobject_del)
85 * kn->active -> update_nr_hwq_lock (via this sysfs write path)
86 */
87 if (!down_write_trylock(&set->update_nr_hwq_lock))
88 return -EBUSY;
89
90 if (nr == q->nr_requests)
91 goto unlock;
92
93 if (nr < BLKDEV_MIN_RQ)
94 nr = BLKDEV_MIN_RQ;
95
96 /*
97 * Switching elevator is protected by update_nr_hwq_lock:
98 * - read lock is held from elevator sysfs attribute;
99 * - write lock is held from updating nr_hw_queues;
100 * Hence it's safe to access q->elevator here with write lock held.
101 */
102 if (nr <= set->reserved_tags ||
103 (q->elevator && nr > MAX_SCHED_RQ) ||
104 (!q->elevator && nr > set->queue_depth)) {
105 ret = -EINVAL;
106 goto unlock;
107 }
108
109 if (!blk_mq_is_shared_tags(set->flags) && q->elevator &&
110 nr > q->elevator->et->nr_requests) {
111 /*
112 * Tags will grow, allocate memory before freezing queue to
113 * prevent deadlock.
114 */
115 et = blk_mq_alloc_sched_tags(set, q->nr_hw_queues, nr);
116 if (!et) {
117 ret = -ENOMEM;
118 goto unlock;
119 }
120 }
121
122 memflags = blk_mq_freeze_queue(q);
123 mutex_lock(&q->elevator_lock);
124 et = blk_mq_update_nr_requests(q, et, nr);
125 mutex_unlock(&q->elevator_lock);
126 blk_mq_unfreeze_queue(q, memflags);
127
128 if (et)
129 blk_mq_free_sched_tags(et, set);
130
131 unlock:
132 up_write(&set->update_nr_hwq_lock);
133 return ret;
134 }
135
queue_async_depth_show(struct gendisk * disk,char * page)136 static ssize_t queue_async_depth_show(struct gendisk *disk, char *page)
137 {
138 guard(mutex)(&disk->queue->elevator_lock);
139
140 return queue_var_show(disk->queue->async_depth, page);
141 }
142
143 static ssize_t
queue_async_depth_store(struct gendisk * disk,const char * page,size_t count)144 queue_async_depth_store(struct gendisk *disk, const char *page, size_t count)
145 {
146 struct request_queue *q = disk->queue;
147 unsigned int memflags;
148 unsigned long nr;
149 int ret;
150
151 if (!queue_is_mq(q))
152 return -EINVAL;
153
154 ret = queue_var_store(&nr, page, count);
155 if (ret < 0)
156 return ret;
157
158 if (nr == 0)
159 return -EINVAL;
160
161 memflags = blk_mq_freeze_queue(q);
162 scoped_guard(mutex, &q->elevator_lock) {
163 if (q->elevator) {
164 q->async_depth = min(q->nr_requests, nr);
165 if (q->elevator->type->ops.depth_updated)
166 q->elevator->type->ops.depth_updated(q);
167 } else {
168 ret = -EINVAL;
169 }
170 }
171 blk_mq_unfreeze_queue(q, memflags);
172
173 return ret;
174 }
175
queue_ra_show(struct gendisk * disk,char * page)176 static ssize_t queue_ra_show(struct gendisk *disk, char *page)
177 {
178 ssize_t ret;
179
180 mutex_lock(&disk->queue->limits_lock);
181 ret = queue_var_show(disk->bdi->ra_pages << (PAGE_SHIFT - 10), page);
182 mutex_unlock(&disk->queue->limits_lock);
183
184 return ret;
185 }
186
187 static ssize_t
queue_ra_store(struct gendisk * disk,const char * page,size_t count)188 queue_ra_store(struct gendisk *disk, const char *page, size_t count)
189 {
190 unsigned long ra_kb;
191 ssize_t ret;
192 struct request_queue *q = disk->queue;
193
194 ret = queue_var_store(&ra_kb, page, count);
195 if (ret < 0)
196 return ret;
197 /*
198 * The ->ra_pages change below is protected by ->limits_lock because it
199 * is usually calculated from the queue limits by
200 * queue_limits_commit_update().
201 *
202 * bdi->ra_pages reads are not serialized against bdi->ra_pages writes.
203 * Use WRITE_ONCE() to write bdi->ra_pages once.
204 */
205 mutex_lock(&q->limits_lock);
206 WRITE_ONCE(disk->bdi->ra_pages, ra_kb >> (PAGE_SHIFT - 10));
207 mutex_unlock(&q->limits_lock);
208
209 return ret;
210 }
211
212 #define QUEUE_SYSFS_LIMIT_SHOW(_field) \
213 static ssize_t queue_##_field##_show(struct gendisk *disk, char *page) \
214 { \
215 return queue_var_show(disk->queue->limits._field, page); \
216 }
217
218 QUEUE_SYSFS_LIMIT_SHOW(max_segments)
QUEUE_SYSFS_LIMIT_SHOW(max_discard_segments)219 QUEUE_SYSFS_LIMIT_SHOW(max_discard_segments)
220 QUEUE_SYSFS_LIMIT_SHOW(max_integrity_segments)
221 QUEUE_SYSFS_LIMIT_SHOW(max_segment_size)
222 QUEUE_SYSFS_LIMIT_SHOW(max_write_streams)
223 QUEUE_SYSFS_LIMIT_SHOW(write_stream_granularity)
224 QUEUE_SYSFS_LIMIT_SHOW(logical_block_size)
225 QUEUE_SYSFS_LIMIT_SHOW(physical_block_size)
226 QUEUE_SYSFS_LIMIT_SHOW(chunk_sectors)
227 QUEUE_SYSFS_LIMIT_SHOW(io_min)
228 QUEUE_SYSFS_LIMIT_SHOW(io_opt)
229 QUEUE_SYSFS_LIMIT_SHOW(discard_granularity)
230 QUEUE_SYSFS_LIMIT_SHOW(zone_write_granularity)
231 QUEUE_SYSFS_LIMIT_SHOW(virt_boundary_mask)
232 QUEUE_SYSFS_LIMIT_SHOW(dma_alignment)
233 QUEUE_SYSFS_LIMIT_SHOW(max_open_zones)
234 QUEUE_SYSFS_LIMIT_SHOW(max_active_zones)
235 QUEUE_SYSFS_LIMIT_SHOW(atomic_write_unit_min)
236 QUEUE_SYSFS_LIMIT_SHOW(atomic_write_unit_max)
237
238 #define QUEUE_SYSFS_LIMIT_SHOW_SECTORS_TO_BYTES(_field) \
239 static ssize_t queue_##_field##_show(struct gendisk *disk, char *page) \
240 { \
241 return sysfs_emit(page, "%llu\n", \
242 (unsigned long long)disk->queue->limits._field << \
243 SECTOR_SHIFT); \
244 }
245
246 QUEUE_SYSFS_LIMIT_SHOW_SECTORS_TO_BYTES(max_discard_sectors)
247 QUEUE_SYSFS_LIMIT_SHOW_SECTORS_TO_BYTES(max_hw_discard_sectors)
248 QUEUE_SYSFS_LIMIT_SHOW_SECTORS_TO_BYTES(max_write_zeroes_sectors)
249 QUEUE_SYSFS_LIMIT_SHOW_SECTORS_TO_BYTES(max_hw_wzeroes_unmap_sectors)
250 QUEUE_SYSFS_LIMIT_SHOW_SECTORS_TO_BYTES(max_wzeroes_unmap_sectors)
251 QUEUE_SYSFS_LIMIT_SHOW_SECTORS_TO_BYTES(atomic_write_max_sectors)
252 QUEUE_SYSFS_LIMIT_SHOW_SECTORS_TO_BYTES(atomic_write_boundary_sectors)
253 QUEUE_SYSFS_LIMIT_SHOW_SECTORS_TO_BYTES(max_zone_append_sectors)
254
255 #define QUEUE_SYSFS_LIMIT_SHOW_SECTORS_TO_KB(_field) \
256 static ssize_t queue_##_field##_show(struct gendisk *disk, char *page) \
257 { \
258 return queue_var_show(disk->queue->limits._field >> 1, page); \
259 }
260
261 QUEUE_SYSFS_LIMIT_SHOW_SECTORS_TO_KB(max_sectors)
262 QUEUE_SYSFS_LIMIT_SHOW_SECTORS_TO_KB(max_hw_sectors)
263
264 #define QUEUE_SYSFS_SHOW_CONST(_name, _val) \
265 static ssize_t queue_##_name##_show(struct gendisk *disk, char *page) \
266 { \
267 return sysfs_emit(page, "%d\n", _val); \
268 }
269
270 /* deprecated fields */
271 QUEUE_SYSFS_SHOW_CONST(discard_zeroes_data, 0)
272 QUEUE_SYSFS_SHOW_CONST(write_same_max, 0)
273 QUEUE_SYSFS_SHOW_CONST(poll_delay, -1)
274
275 static int queue_max_discard_sectors_store(struct gendisk *disk,
276 const char *page, size_t count, struct queue_limits *lim)
277 {
278 unsigned long max_discard_bytes;
279 ssize_t ret;
280
281 ret = queue_var_store(&max_discard_bytes, page, count);
282 if (ret < 0)
283 return ret;
284
285 if (max_discard_bytes & (disk->queue->limits.discard_granularity - 1))
286 return -EINVAL;
287
288 if ((max_discard_bytes >> SECTOR_SHIFT) > UINT_MAX)
289 return -EINVAL;
290
291 lim->max_user_discard_sectors = max_discard_bytes >> SECTOR_SHIFT;
292 return 0;
293 }
294
queue_max_wzeroes_unmap_sectors_store(struct gendisk * disk,const char * page,size_t count,struct queue_limits * lim)295 static int queue_max_wzeroes_unmap_sectors_store(struct gendisk *disk,
296 const char *page, size_t count, struct queue_limits *lim)
297 {
298 unsigned long max_zeroes_bytes, max_hw_zeroes_bytes;
299 ssize_t ret;
300
301 ret = queue_var_store(&max_zeroes_bytes, page, count);
302 if (ret < 0)
303 return ret;
304
305 max_hw_zeroes_bytes = lim->max_hw_wzeroes_unmap_sectors << SECTOR_SHIFT;
306 if (max_zeroes_bytes != 0 && max_zeroes_bytes != max_hw_zeroes_bytes)
307 return -EINVAL;
308
309 lim->max_user_wzeroes_unmap_sectors = max_zeroes_bytes >> SECTOR_SHIFT;
310 return 0;
311 }
312
313 static int
queue_max_sectors_store(struct gendisk * disk,const char * page,size_t count,struct queue_limits * lim)314 queue_max_sectors_store(struct gendisk *disk, const char *page, size_t count,
315 struct queue_limits *lim)
316 {
317 unsigned long max_sectors_kb;
318 ssize_t ret;
319
320 ret = queue_var_store(&max_sectors_kb, page, count);
321 if (ret < 0)
322 return ret;
323
324 lim->max_user_sectors = max_sectors_kb << 1;
325 return 0;
326 }
327
queue_feature_store(struct gendisk * disk,const char * page,size_t count,struct queue_limits * lim,blk_features_t feature)328 static ssize_t queue_feature_store(struct gendisk *disk, const char *page,
329 size_t count, struct queue_limits *lim, blk_features_t feature)
330 {
331 unsigned long val;
332 ssize_t ret;
333
334 ret = queue_var_store(&val, page, count);
335 if (ret < 0)
336 return ret;
337
338 if (val)
339 lim->features |= feature;
340 else
341 lim->features &= ~feature;
342 return 0;
343 }
344
345 #define QUEUE_SYSFS_FEATURE(_name, _feature) \
346 static ssize_t queue_##_name##_show(struct gendisk *disk, char *page) \
347 { \
348 return sysfs_emit(page, "%u\n", \
349 !!(disk->queue->limits.features & _feature)); \
350 } \
351 static int queue_##_name##_store(struct gendisk *disk, \
352 const char *page, size_t count, struct queue_limits *lim) \
353 { \
354 return queue_feature_store(disk, page, count, lim, _feature); \
355 }
356
357 QUEUE_SYSFS_FEATURE(rotational, BLK_FEAT_ROTATIONAL)
358 QUEUE_SYSFS_FEATURE(add_random, BLK_FEAT_ADD_RANDOM)
359 QUEUE_SYSFS_FEATURE(iostats, BLK_FEAT_IO_STAT)
360 QUEUE_SYSFS_FEATURE(stable_writes, BLK_FEAT_STABLE_WRITES);
361
362 #define QUEUE_SYSFS_FEATURE_SHOW(_name, _feature) \
363 static ssize_t queue_##_name##_show(struct gendisk *disk, char *page) \
364 { \
365 return sysfs_emit(page, "%u\n", \
366 !!(disk->queue->limits.features & _feature)); \
367 }
368
369 QUEUE_SYSFS_FEATURE_SHOW(fua, BLK_FEAT_FUA);
370 QUEUE_SYSFS_FEATURE_SHOW(dax, BLK_FEAT_DAX);
371
queue_poll_show(struct gendisk * disk,char * page)372 static ssize_t queue_poll_show(struct gendisk *disk, char *page)
373 {
374 if (queue_is_mq(disk->queue))
375 return sysfs_emit(page, "%u\n", blk_mq_can_poll(disk->queue));
376
377 return sysfs_emit(page, "%u\n",
378 !!(disk->queue->limits.features & BLK_FEAT_POLL));
379 }
380
queue_zoned_show(struct gendisk * disk,char * page)381 static ssize_t queue_zoned_show(struct gendisk *disk, char *page)
382 {
383 if (blk_queue_is_zoned(disk->queue))
384 return sysfs_emit(page, "host-managed\n");
385 return sysfs_emit(page, "none\n");
386 }
387
queue_nr_zones_show(struct gendisk * disk,char * page)388 static ssize_t queue_nr_zones_show(struct gendisk *disk, char *page)
389 {
390 return queue_var_show(disk_nr_zones(disk), page);
391 }
392
queue_zoned_qd1_writes_show(struct gendisk * disk,char * page)393 static ssize_t queue_zoned_qd1_writes_show(struct gendisk *disk, char *page)
394 {
395 return queue_var_show(!!blk_queue_zoned_qd1_writes(disk->queue),
396 page);
397 }
398
queue_zoned_qd1_writes_store(struct gendisk * disk,const char * page,size_t count)399 static ssize_t queue_zoned_qd1_writes_store(struct gendisk *disk,
400 const char *page, size_t count)
401 {
402 struct request_queue *q = disk->queue;
403 unsigned long qd1_writes;
404 unsigned int memflags;
405 ssize_t ret;
406
407 ret = queue_var_store(&qd1_writes, page, count);
408 if (ret < 0)
409 return ret;
410
411 memflags = blk_mq_freeze_queue(q);
412 blk_mq_quiesce_queue(q);
413 if (qd1_writes)
414 blk_queue_flag_set(QUEUE_FLAG_ZONED_QD1_WRITES, q);
415 else
416 blk_queue_flag_clear(QUEUE_FLAG_ZONED_QD1_WRITES, q);
417 blk_mq_unquiesce_queue(q);
418 blk_mq_unfreeze_queue(q, memflags);
419
420 return count;
421 }
422
queue_iostats_passthrough_show(struct gendisk * disk,char * page)423 static ssize_t queue_iostats_passthrough_show(struct gendisk *disk, char *page)
424 {
425 return queue_var_show(!!blk_queue_passthrough_stat(disk->queue), page);
426 }
427
queue_iostats_passthrough_store(struct gendisk * disk,const char * page,size_t count,struct queue_limits * lim)428 static int queue_iostats_passthrough_store(struct gendisk *disk,
429 const char *page, size_t count, struct queue_limits *lim)
430 {
431 unsigned long ios;
432 ssize_t ret;
433
434 ret = queue_var_store(&ios, page, count);
435 if (ret < 0)
436 return ret;
437
438 if (ios)
439 lim->flags |= BLK_FLAG_IOSTATS_PASSTHROUGH;
440 else
441 lim->flags &= ~BLK_FLAG_IOSTATS_PASSTHROUGH;
442 return 0;
443 }
444
queue_nomerges_show(struct gendisk * disk,char * page)445 static ssize_t queue_nomerges_show(struct gendisk *disk, char *page)
446 {
447 return queue_var_show((blk_queue_nomerges(disk->queue) << 1) |
448 blk_queue_noxmerges(disk->queue), page);
449 }
450
queue_nomerges_store(struct gendisk * disk,const char * page,size_t count)451 static ssize_t queue_nomerges_store(struct gendisk *disk, const char *page,
452 size_t count)
453 {
454 unsigned long nm;
455 struct request_queue *q = disk->queue;
456 ssize_t ret = queue_var_store(&nm, page, count);
457
458 if (ret < 0)
459 return ret;
460
461 blk_queue_flag_clear(QUEUE_FLAG_NOMERGES, q);
462 blk_queue_flag_clear(QUEUE_FLAG_NOXMERGES, q);
463 if (nm == 2)
464 blk_queue_flag_set(QUEUE_FLAG_NOMERGES, q);
465 else if (nm)
466 blk_queue_flag_set(QUEUE_FLAG_NOXMERGES, q);
467
468 return ret;
469 }
470
queue_rq_affinity_show(struct gendisk * disk,char * page)471 static ssize_t queue_rq_affinity_show(struct gendisk *disk, char *page)
472 {
473 bool set = test_bit(QUEUE_FLAG_SAME_COMP, &disk->queue->queue_flags);
474 bool force = test_bit(QUEUE_FLAG_SAME_FORCE, &disk->queue->queue_flags);
475
476 return queue_var_show(set << force, page);
477 }
478
479 static ssize_t
queue_rq_affinity_store(struct gendisk * disk,const char * page,size_t count)480 queue_rq_affinity_store(struct gendisk *disk, const char *page, size_t count)
481 {
482 ssize_t ret = -EINVAL;
483 #ifdef CONFIG_SMP
484 struct request_queue *q = disk->queue;
485 unsigned long val;
486
487 ret = queue_var_store(&val, page, count);
488 if (ret < 0)
489 return ret;
490
491 /*
492 * Here we update two queue flags each using atomic bitops, although
493 * updating two flags isn't atomic it should be harmless as those flags
494 * are accessed individually using atomic test_bit operation. So we
495 * don't grab any lock while updating these flags.
496 */
497 if (val == 2) {
498 blk_queue_flag_set(QUEUE_FLAG_SAME_COMP, q);
499 blk_queue_flag_set(QUEUE_FLAG_SAME_FORCE, q);
500 } else if (val == 1) {
501 blk_queue_flag_set(QUEUE_FLAG_SAME_COMP, q);
502 blk_queue_flag_clear(QUEUE_FLAG_SAME_FORCE, q);
503 } else if (val == 0) {
504 blk_queue_flag_clear(QUEUE_FLAG_SAME_COMP, q);
505 blk_queue_flag_clear(QUEUE_FLAG_SAME_FORCE, q);
506 }
507 #endif
508 return ret;
509 }
510
queue_poll_delay_store(struct gendisk * disk,const char * page,size_t count)511 static ssize_t queue_poll_delay_store(struct gendisk *disk, const char *page,
512 size_t count)
513 {
514 return count;
515 }
516
queue_poll_store(struct gendisk * disk,const char * page,size_t count)517 static ssize_t queue_poll_store(struct gendisk *disk, const char *page,
518 size_t count)
519 {
520 ssize_t ret = count;
521 struct request_queue *q = disk->queue;
522
523 if (!(q->limits.features & BLK_FEAT_POLL)) {
524 ret = -EINVAL;
525 goto out;
526 }
527
528 pr_info_ratelimited("writes to the poll attribute are ignored.\n");
529 pr_info_ratelimited("please use driver specific parameters instead.\n");
530 out:
531 return ret;
532 }
533
queue_io_timeout_show(struct gendisk * disk,char * page)534 static ssize_t queue_io_timeout_show(struct gendisk *disk, char *page)
535 {
536 return sysfs_emit(page, "%u\n",
537 jiffies_to_msecs(READ_ONCE(disk->queue->rq_timeout)));
538 }
539
queue_io_timeout_store(struct gendisk * disk,const char * page,size_t count)540 static ssize_t queue_io_timeout_store(struct gendisk *disk, const char *page,
541 size_t count)
542 {
543 unsigned int val;
544 int err;
545 struct request_queue *q = disk->queue;
546
547 err = kstrtou32(page, 10, &val);
548 if (err || val == 0)
549 return -EINVAL;
550
551 blk_queue_rq_timeout(q, msecs_to_jiffies(val));
552
553 return count;
554 }
555
queue_wc_show(struct gendisk * disk,char * page)556 static ssize_t queue_wc_show(struct gendisk *disk, char *page)
557 {
558 if (blk_queue_write_cache(disk->queue))
559 return sysfs_emit(page, "write back\n");
560 return sysfs_emit(page, "write through\n");
561 }
562
queue_wc_store(struct gendisk * disk,const char * page,size_t count,struct queue_limits * lim)563 static int queue_wc_store(struct gendisk *disk, const char *page,
564 size_t count, struct queue_limits *lim)
565 {
566 bool disable;
567
568 if (!strncmp(page, "write back", 10)) {
569 disable = false;
570 } else if (!strncmp(page, "write through", 13) ||
571 !strncmp(page, "none", 4)) {
572 disable = true;
573 } else {
574 return -EINVAL;
575 }
576
577 if (disable)
578 lim->flags |= BLK_FLAG_WRITE_CACHE_DISABLED;
579 else
580 lim->flags &= ~BLK_FLAG_WRITE_CACHE_DISABLED;
581 return 0;
582 }
583
584 #define QUEUE_RO_ENTRY(_prefix, _name) \
585 static const struct queue_sysfs_entry _prefix##_entry = { \
586 .attr = { .name = _name, .mode = 0444 }, \
587 .show = _prefix##_show, \
588 };
589
590 #define QUEUE_RW_ENTRY(_prefix, _name) \
591 static const struct queue_sysfs_entry _prefix##_entry = { \
592 .attr = { .name = _name, .mode = 0644 }, \
593 .show = _prefix##_show, \
594 .store = _prefix##_store, \
595 };
596
597 #define QUEUE_LIM_RO_ENTRY(_prefix, _name) \
598 static const struct queue_sysfs_entry _prefix##_entry = { \
599 .attr = { .name = _name, .mode = 0444 }, \
600 .show_limit = _prefix##_show, \
601 }
602
603 #define QUEUE_LIM_RW_ENTRY(_prefix, _name) \
604 static const struct queue_sysfs_entry _prefix##_entry = { \
605 .attr = { .name = _name, .mode = 0644 }, \
606 .show_limit = _prefix##_show, \
607 .store_limit = _prefix##_store, \
608 }
609
610 QUEUE_RW_ENTRY(queue_requests, "nr_requests");
611 QUEUE_RW_ENTRY(queue_async_depth, "async_depth");
612 QUEUE_RW_ENTRY(queue_ra, "read_ahead_kb");
613 QUEUE_LIM_RW_ENTRY(queue_max_sectors, "max_sectors_kb");
614 QUEUE_LIM_RO_ENTRY(queue_max_hw_sectors, "max_hw_sectors_kb");
615 QUEUE_LIM_RO_ENTRY(queue_max_segments, "max_segments");
616 QUEUE_LIM_RO_ENTRY(queue_max_integrity_segments, "max_integrity_segments");
617 QUEUE_LIM_RO_ENTRY(queue_max_segment_size, "max_segment_size");
618 QUEUE_LIM_RO_ENTRY(queue_max_write_streams, "max_write_streams");
619 QUEUE_LIM_RO_ENTRY(queue_write_stream_granularity, "write_stream_granularity");
620 QUEUE_RW_ENTRY(elv_iosched, "scheduler");
621
622 QUEUE_LIM_RO_ENTRY(queue_logical_block_size, "logical_block_size");
623 QUEUE_LIM_RO_ENTRY(queue_physical_block_size, "physical_block_size");
624 QUEUE_LIM_RO_ENTRY(queue_chunk_sectors, "chunk_sectors");
625 QUEUE_LIM_RO_ENTRY(queue_io_min, "minimum_io_size");
626 QUEUE_LIM_RO_ENTRY(queue_io_opt, "optimal_io_size");
627
628 QUEUE_LIM_RO_ENTRY(queue_max_discard_segments, "max_discard_segments");
629 QUEUE_LIM_RO_ENTRY(queue_discard_granularity, "discard_granularity");
630 QUEUE_LIM_RO_ENTRY(queue_max_hw_discard_sectors, "discard_max_hw_bytes");
631 QUEUE_LIM_RW_ENTRY(queue_max_discard_sectors, "discard_max_bytes");
632 QUEUE_RO_ENTRY(queue_discard_zeroes_data, "discard_zeroes_data");
633
634 QUEUE_LIM_RO_ENTRY(queue_atomic_write_max_sectors, "atomic_write_max_bytes");
635 QUEUE_LIM_RO_ENTRY(queue_atomic_write_boundary_sectors,
636 "atomic_write_boundary_bytes");
637 QUEUE_LIM_RO_ENTRY(queue_atomic_write_unit_max, "atomic_write_unit_max_bytes");
638 QUEUE_LIM_RO_ENTRY(queue_atomic_write_unit_min, "atomic_write_unit_min_bytes");
639
640 QUEUE_RO_ENTRY(queue_write_same_max, "write_same_max_bytes");
641 QUEUE_LIM_RO_ENTRY(queue_max_write_zeroes_sectors, "write_zeroes_max_bytes");
642 QUEUE_LIM_RO_ENTRY(queue_max_hw_wzeroes_unmap_sectors,
643 "write_zeroes_unmap_max_hw_bytes");
644 QUEUE_LIM_RW_ENTRY(queue_max_wzeroes_unmap_sectors,
645 "write_zeroes_unmap_max_bytes");
646 QUEUE_LIM_RO_ENTRY(queue_max_zone_append_sectors, "zone_append_max_bytes");
647 QUEUE_LIM_RO_ENTRY(queue_zone_write_granularity, "zone_write_granularity");
648
649 QUEUE_LIM_RO_ENTRY(queue_zoned, "zoned");
650 QUEUE_RW_ENTRY(queue_zoned_qd1_writes, "zoned_qd1_writes");
651 QUEUE_RO_ENTRY(queue_nr_zones, "nr_zones");
652 QUEUE_LIM_RO_ENTRY(queue_max_open_zones, "max_open_zones");
653 QUEUE_LIM_RO_ENTRY(queue_max_active_zones, "max_active_zones");
654
655 QUEUE_RW_ENTRY(queue_nomerges, "nomerges");
656 QUEUE_LIM_RW_ENTRY(queue_iostats_passthrough, "iostats_passthrough");
657 QUEUE_RW_ENTRY(queue_rq_affinity, "rq_affinity");
658 QUEUE_RW_ENTRY(queue_poll, "io_poll");
659 QUEUE_RW_ENTRY(queue_poll_delay, "io_poll_delay");
660 QUEUE_LIM_RW_ENTRY(queue_wc, "write_cache");
661 QUEUE_LIM_RO_ENTRY(queue_fua, "fua");
662 QUEUE_LIM_RO_ENTRY(queue_dax, "dax");
663 QUEUE_RW_ENTRY(queue_io_timeout, "io_timeout");
664 QUEUE_LIM_RO_ENTRY(queue_virt_boundary_mask, "virt_boundary_mask");
665 QUEUE_LIM_RO_ENTRY(queue_dma_alignment, "dma_alignment");
666
667 /* legacy alias for logical_block_size: */
668 static const struct queue_sysfs_entry queue_hw_sector_size_entry = {
669 .attr = {.name = "hw_sector_size", .mode = 0444 },
670 .show_limit = queue_logical_block_size_show,
671 };
672
673 QUEUE_LIM_RW_ENTRY(queue_rotational, "rotational");
674 QUEUE_LIM_RW_ENTRY(queue_iostats, "iostats");
675 QUEUE_LIM_RW_ENTRY(queue_add_random, "add_random");
676 QUEUE_LIM_RW_ENTRY(queue_stable_writes, "stable_writes");
677
678 #ifdef CONFIG_BLK_WBT
queue_var_store64(s64 * var,const char * page)679 static ssize_t queue_var_store64(s64 *var, const char *page)
680 {
681 int err;
682 s64 v;
683
684 err = kstrtos64(page, 10, &v);
685 if (err < 0)
686 return err;
687
688 *var = v;
689 return 0;
690 }
691
queue_wb_lat_show(struct gendisk * disk,char * page)692 static ssize_t queue_wb_lat_show(struct gendisk *disk, char *page)
693 {
694 ssize_t ret;
695 struct request_queue *q = disk->queue;
696
697 mutex_lock(&disk->rqos_state_mutex);
698 if (!wbt_rq_qos(q)) {
699 ret = -EINVAL;
700 goto out;
701 }
702
703 if (wbt_disabled(q)) {
704 ret = sysfs_emit(page, "0\n");
705 goto out;
706 }
707
708 ret = sysfs_emit(page, "%llu\n", div_u64(wbt_get_min_lat(q), 1000));
709 out:
710 mutex_unlock(&disk->rqos_state_mutex);
711 return ret;
712 }
713
queue_wb_lat_store(struct gendisk * disk,const char * page,size_t count)714 static ssize_t queue_wb_lat_store(struct gendisk *disk, const char *page,
715 size_t count)
716 {
717 ssize_t ret;
718 s64 val;
719
720 ret = queue_var_store64(&val, page);
721 if (ret < 0)
722 return ret;
723 if (val < -1)
724 return -EINVAL;
725
726 ret = wbt_set_lat(disk, val);
727 return ret ? ret : count;
728 }
729
730 QUEUE_RW_ENTRY(queue_wb_lat, "wbt_lat_usec");
731 #endif
732
733 /* Common attributes for bio-based and request-based queues. */
734 static const struct attribute *const queue_attrs[] = {
735 /*
736 * Attributes which are protected with q->limits_lock.
737 */
738 &queue_max_hw_sectors_entry.attr,
739 &queue_max_sectors_entry.attr,
740 &queue_max_segments_entry.attr,
741 &queue_max_discard_segments_entry.attr,
742 &queue_max_integrity_segments_entry.attr,
743 &queue_max_segment_size_entry.attr,
744 &queue_max_write_streams_entry.attr,
745 &queue_write_stream_granularity_entry.attr,
746 &queue_hw_sector_size_entry.attr,
747 &queue_logical_block_size_entry.attr,
748 &queue_physical_block_size_entry.attr,
749 &queue_chunk_sectors_entry.attr,
750 &queue_io_min_entry.attr,
751 &queue_io_opt_entry.attr,
752 &queue_discard_granularity_entry.attr,
753 &queue_max_discard_sectors_entry.attr,
754 &queue_max_hw_discard_sectors_entry.attr,
755 &queue_atomic_write_max_sectors_entry.attr,
756 &queue_atomic_write_boundary_sectors_entry.attr,
757 &queue_atomic_write_unit_min_entry.attr,
758 &queue_atomic_write_unit_max_entry.attr,
759 &queue_max_write_zeroes_sectors_entry.attr,
760 &queue_max_hw_wzeroes_unmap_sectors_entry.attr,
761 &queue_max_wzeroes_unmap_sectors_entry.attr,
762 &queue_max_zone_append_sectors_entry.attr,
763 &queue_zone_write_granularity_entry.attr,
764 &queue_rotational_entry.attr,
765 &queue_zoned_entry.attr,
766 &queue_max_open_zones_entry.attr,
767 &queue_max_active_zones_entry.attr,
768 &queue_iostats_passthrough_entry.attr,
769 &queue_iostats_entry.attr,
770 &queue_stable_writes_entry.attr,
771 &queue_add_random_entry.attr,
772 &queue_wc_entry.attr,
773 &queue_fua_entry.attr,
774 &queue_dax_entry.attr,
775 &queue_virt_boundary_mask_entry.attr,
776 &queue_dma_alignment_entry.attr,
777 &queue_ra_entry.attr,
778
779 /*
780 * Attributes which don't require locking.
781 */
782 &queue_discard_zeroes_data_entry.attr,
783 &queue_write_same_max_entry.attr,
784 &queue_nr_zones_entry.attr,
785 &queue_nomerges_entry.attr,
786 &queue_poll_entry.attr,
787 &queue_poll_delay_entry.attr,
788 &queue_zoned_qd1_writes_entry.attr,
789
790 NULL,
791 };
792
793 /* Request-based queue attributes that are not relevant for bio-based queues. */
794 static const struct attribute *const blk_mq_queue_attrs[] = {
795 /*
796 * Attributes which require some form of locking other than
797 * q->sysfs_lock.
798 */
799 &elv_iosched_entry.attr,
800 &queue_requests_entry.attr,
801 &queue_async_depth_entry.attr,
802 #ifdef CONFIG_BLK_WBT
803 &queue_wb_lat_entry.attr,
804 #endif
805 /*
806 * Attributes which don't require locking.
807 */
808 &queue_rq_affinity_entry.attr,
809 &queue_io_timeout_entry.attr,
810
811 NULL,
812 };
813
queue_attr_visible(struct kobject * kobj,const struct attribute * attr,int n)814 static umode_t queue_attr_visible(struct kobject *kobj, const struct attribute *attr,
815 int n)
816 {
817 struct gendisk *disk = container_of(kobj, struct gendisk, queue_kobj);
818 struct request_queue *q = disk->queue;
819
820 if ((attr == &queue_max_open_zones_entry.attr ||
821 attr == &queue_max_active_zones_entry.attr ||
822 attr == &queue_zoned_qd1_writes_entry.attr) &&
823 !blk_queue_is_zoned(q))
824 return 0;
825
826 return attr->mode;
827 }
828
blk_mq_queue_attr_visible(struct kobject * kobj,const struct attribute * attr,int n)829 static umode_t blk_mq_queue_attr_visible(struct kobject *kobj,
830 const struct attribute *attr, int n)
831 {
832 struct gendisk *disk = container_of(kobj, struct gendisk, queue_kobj);
833 struct request_queue *q = disk->queue;
834
835 if (!queue_is_mq(q))
836 return 0;
837
838 if (attr == &queue_io_timeout_entry.attr && !q->mq_ops->timeout)
839 return 0;
840
841 return attr->mode;
842 }
843
844 static const struct attribute_group queue_attr_group = {
845 .attrs_const = queue_attrs,
846 .is_visible_const = queue_attr_visible,
847 };
848
849 static const struct attribute_group blk_mq_queue_attr_group = {
850 .attrs_const = blk_mq_queue_attrs,
851 .is_visible_const = blk_mq_queue_attr_visible,
852 };
853
854 #define to_queue(atr) container_of_const((atr), struct queue_sysfs_entry, attr)
855
856 static ssize_t
queue_attr_show(struct kobject * kobj,struct attribute * attr,char * page)857 queue_attr_show(struct kobject *kobj, struct attribute *attr, char *page)
858 {
859 struct queue_sysfs_entry *entry = to_queue(attr);
860 struct gendisk *disk = container_of(kobj, struct gendisk, queue_kobj);
861
862 if (!entry->show && !entry->show_limit)
863 return -EIO;
864
865 if (entry->show_limit) {
866 ssize_t res;
867
868 mutex_lock(&disk->queue->limits_lock);
869 res = entry->show_limit(disk, page);
870 mutex_unlock(&disk->queue->limits_lock);
871 return res;
872 }
873
874 return entry->show(disk, page);
875 }
876
877 static ssize_t
queue_attr_store(struct kobject * kobj,struct attribute * attr,const char * page,size_t length)878 queue_attr_store(struct kobject *kobj, struct attribute *attr,
879 const char *page, size_t length)
880 {
881 struct queue_sysfs_entry *entry = to_queue(attr);
882 struct gendisk *disk = container_of(kobj, struct gendisk, queue_kobj);
883 struct request_queue *q = disk->queue;
884
885 if (!entry->store_limit && !entry->store)
886 return -EIO;
887
888 if (entry->store_limit) {
889 ssize_t res;
890
891 struct queue_limits lim = queue_limits_start_update(q);
892
893 res = entry->store_limit(disk, page, length, &lim);
894 if (res < 0) {
895 queue_limits_cancel_update(q);
896 return res;
897 }
898
899 res = queue_limits_commit_update_frozen(q, &lim);
900 if (res)
901 return res;
902 return length;
903 }
904
905 return entry->store(disk, page, length);
906 }
907
908 static const struct sysfs_ops queue_sysfs_ops = {
909 .show = queue_attr_show,
910 .store = queue_attr_store,
911 };
912
913 static const struct attribute_group *blk_queue_attr_groups[] = {
914 &queue_attr_group,
915 &blk_mq_queue_attr_group,
916 NULL
917 };
918
blk_queue_release(struct kobject * kobj)919 static void blk_queue_release(struct kobject *kobj)
920 {
921 /* nothing to do here, all data is associated with the parent gendisk */
922 }
923
924 const struct kobj_type blk_queue_ktype = {
925 .default_groups = blk_queue_attr_groups,
926 .sysfs_ops = &queue_sysfs_ops,
927 .release = blk_queue_release,
928 };
929
blk_debugfs_remove(struct gendisk * disk)930 static void blk_debugfs_remove(struct gendisk *disk)
931 {
932 struct request_queue *q = disk->queue;
933
934 blk_debugfs_lock_nomemsave(q);
935 blk_trace_shutdown(q);
936 debugfs_remove_recursive(q->debugfs_dir);
937 q->debugfs_dir = NULL;
938 q->sched_debugfs_dir = NULL;
939 q->rqos_debugfs_dir = NULL;
940 blk_debugfs_unlock_nomemrestore(q);
941 }
942
943 /**
944 * blk_register_queue - register a block layer queue with sysfs
945 * @disk: Disk of which the request queue should be registered with sysfs.
946 */
blk_register_queue(struct gendisk * disk)947 int blk_register_queue(struct gendisk *disk)
948 {
949 struct request_queue *q = disk->queue;
950 unsigned int memflags;
951 int ret;
952
953 ret = kobject_add(&disk->queue_kobj, &disk_to_dev(disk)->kobj, "queue");
954 if (ret < 0)
955 return ret;
956
957 if (queue_is_mq(q)) {
958 ret = blk_mq_sysfs_register(disk);
959 if (ret)
960 goto out_del_queue_kobj;
961 }
962 mutex_lock(&q->sysfs_lock);
963
964 memflags = blk_debugfs_lock(q);
965 q->debugfs_dir = debugfs_create_dir(disk->disk_name, blk_debugfs_root);
966 if (queue_is_mq(q))
967 blk_mq_debugfs_register(q);
968 blk_debugfs_unlock(q, memflags);
969
970 /*
971 * For blk-mq rotational zoned devices, default to using QD=1
972 * writes. For non-mq rotational zoned devices, the device driver can
973 * set an appropriate default.
974 */
975 if (queue_is_mq(q) && blk_queue_rot(q) && blk_queue_is_zoned(q))
976 blk_queue_flag_set(QUEUE_FLAG_ZONED_QD1_WRITES, q);
977
978 ret = disk_register_independent_access_ranges(disk);
979 if (ret)
980 goto out_debugfs_remove;
981
982 ret = blk_crypto_sysfs_register(disk);
983 if (ret)
984 goto out_unregister_ia_ranges;
985
986 if (queue_is_mq(q))
987 elevator_set_default(q);
988
989 blk_queue_flag_set(QUEUE_FLAG_REGISTERED, q);
990 wbt_init_enable_default(disk);
991
992 /* Now everything is ready and send out KOBJ_ADD uevent */
993 kobject_uevent(&disk->queue_kobj, KOBJ_ADD);
994 if (q->elevator)
995 kobject_uevent(&q->elevator->kobj, KOBJ_ADD);
996 mutex_unlock(&q->sysfs_lock);
997
998 /*
999 * SCSI probing may synchronously create and destroy a lot of
1000 * request_queues for non-existent devices. Shutting down a fully
1001 * functional queue takes measureable wallclock time as RCU grace
1002 * periods are involved. To avoid excessive latency in these
1003 * cases, a request_queue starts out in a degraded mode which is
1004 * faster to shut down and is made fully functional here as
1005 * request_queues for non-existent devices never get registered.
1006 */
1007 blk_queue_flag_set(QUEUE_FLAG_INIT_DONE, q);
1008 percpu_ref_switch_to_percpu(&q->q_usage_counter);
1009
1010 return ret;
1011
1012 out_unregister_ia_ranges:
1013 disk_unregister_independent_access_ranges(disk);
1014 out_debugfs_remove:
1015 blk_debugfs_remove(disk);
1016 mutex_unlock(&q->sysfs_lock);
1017 if (queue_is_mq(q))
1018 blk_mq_sysfs_unregister(disk);
1019 out_del_queue_kobj:
1020 kobject_del(&disk->queue_kobj);
1021 return ret;
1022 }
1023
1024 /**
1025 * blk_unregister_queue - counterpart of blk_register_queue()
1026 * @disk: Disk of which the request queue should be unregistered from sysfs.
1027 *
1028 * Note: the caller is responsible for guaranteeing that this function is called
1029 * after blk_register_queue() has finished.
1030 */
blk_unregister_queue(struct gendisk * disk)1031 void blk_unregister_queue(struct gendisk *disk)
1032 {
1033 struct request_queue *q = disk->queue;
1034
1035 if (WARN_ON(!q))
1036 return;
1037
1038 /* Return early if disk->queue was never registered. */
1039 if (!blk_queue_registered(q))
1040 return;
1041
1042 /*
1043 * Since sysfs_remove_dir() prevents adding new directory entries
1044 * before removal of existing entries starts, protect against
1045 * concurrent elv_iosched_store() calls.
1046 */
1047 mutex_lock(&q->sysfs_lock);
1048 blk_queue_flag_clear(QUEUE_FLAG_REGISTERED, q);
1049 mutex_unlock(&q->sysfs_lock);
1050
1051 /*
1052 * Remove the sysfs attributes before unregistering the queue data
1053 * structures that can be modified through sysfs.
1054 */
1055 if (queue_is_mq(q))
1056 blk_mq_sysfs_unregister(disk);
1057 blk_crypto_sysfs_unregister(disk);
1058
1059 mutex_lock(&q->sysfs_lock);
1060 disk_unregister_independent_access_ranges(disk);
1061 mutex_unlock(&q->sysfs_lock);
1062
1063 /* Now that we've deleted all child objects, we can delete the queue. */
1064 kobject_uevent(&disk->queue_kobj, KOBJ_REMOVE);
1065 kobject_del(&disk->queue_kobj);
1066
1067 if (queue_is_mq(q))
1068 elevator_set_none(q);
1069
1070 blk_debugfs_remove(disk);
1071 }
1072