xref: /linux/block/bfq-cgroup.c (revision c574c3cc368d68fff465e5fc811f874d9235b940)
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  * cgroups support for the BFQ I/O scheduler.
4  */
5 #include <linux/module.h>
6 #include <linux/slab.h>
7 #include <linux/blkdev.h>
8 #include <linux/cgroup.h>
9 #include <linux/ktime.h>
10 #include <linux/rbtree.h>
11 #include <linux/ioprio.h>
12 #include <linux/sbitmap.h>
13 #include <linux/delay.h>
14 
15 #include "elevator.h"
16 #include "bfq-iosched.h"
17 
18 #ifdef CONFIG_BFQ_CGROUP_DEBUG
19 static int bfq_stat_init(struct bfq_stat *stat, gfp_t gfp)
20 {
21 	int ret;
22 
23 	ret = percpu_counter_init(&stat->cpu_cnt, 0, gfp);
24 	if (ret)
25 		return ret;
26 
27 	atomic64_set(&stat->aux_cnt, 0);
28 	return 0;
29 }
30 
31 static void bfq_stat_exit(struct bfq_stat *stat)
32 {
33 	percpu_counter_destroy(&stat->cpu_cnt);
34 }
35 
36 /**
37  * bfq_stat_add - add a value to a bfq_stat
38  * @stat: target bfq_stat
39  * @val: value to add
40  *
41  * Add @val to @stat.  The caller must ensure that IRQ on the same CPU
42  * don't re-enter this function for the same counter.
43  */
44 static inline void bfq_stat_add(struct bfq_stat *stat, uint64_t val)
45 {
46 	percpu_counter_add_batch(&stat->cpu_cnt, val, BLKG_STAT_CPU_BATCH);
47 }
48 
49 /**
50  * bfq_stat_read - read the current value of a bfq_stat
51  * @stat: bfq_stat to read
52  */
53 static inline uint64_t bfq_stat_read(struct bfq_stat *stat)
54 {
55 	return percpu_counter_sum_positive(&stat->cpu_cnt);
56 }
57 
58 /**
59  * bfq_stat_reset - reset a bfq_stat
60  * @stat: bfq_stat to reset
61  */
62 static inline void bfq_stat_reset(struct bfq_stat *stat)
63 {
64 	percpu_counter_set(&stat->cpu_cnt, 0);
65 	atomic64_set(&stat->aux_cnt, 0);
66 }
67 
68 /**
69  * bfq_stat_add_aux - add a bfq_stat into another's aux count
70  * @to: the destination bfq_stat
71  * @from: the source
72  *
73  * Add @from's count including the aux one to @to's aux count.
74  */
75 static inline void bfq_stat_add_aux(struct bfq_stat *to,
76 				     struct bfq_stat *from)
77 {
78 	atomic64_add(bfq_stat_read(from) + atomic64_read(&from->aux_cnt),
79 		     &to->aux_cnt);
80 }
81 
82 /**
83  * blkg_prfill_stat - prfill callback for bfq_stat
84  * @sf: seq_file to print to
85  * @pd: policy private data of interest
86  * @off: offset to the bfq_stat in @pd
87  *
88  * prfill callback for printing a bfq_stat.
89  */
90 static u64 blkg_prfill_stat(struct seq_file *sf, struct blkg_policy_data *pd,
91 		int off)
92 {
93 	return __blkg_prfill_u64(sf, pd, bfq_stat_read((void *)pd + off));
94 }
95 
96 /* bfqg stats flags */
97 enum bfqg_stats_flags {
98 	BFQG_stats_waiting = 0,
99 	BFQG_stats_idling,
100 	BFQG_stats_empty,
101 };
102 
103 #define BFQG_FLAG_FNS(name)						\
104 static void bfqg_stats_mark_##name(struct bfqg_stats *stats)	\
105 {									\
106 	stats->flags |= (1 << BFQG_stats_##name);			\
107 }									\
108 static void bfqg_stats_clear_##name(struct bfqg_stats *stats)	\
109 {									\
110 	stats->flags &= ~(1 << BFQG_stats_##name);			\
111 }									\
112 static int bfqg_stats_##name(struct bfqg_stats *stats)		\
113 {									\
114 	return (stats->flags & (1 << BFQG_stats_##name)) != 0;		\
115 }									\
116 
117 BFQG_FLAG_FNS(waiting)
118 BFQG_FLAG_FNS(idling)
119 BFQG_FLAG_FNS(empty)
120 #undef BFQG_FLAG_FNS
121 
122 /* This should be called with the scheduler lock held. */
123 static void bfqg_stats_update_group_wait_time(struct bfqg_stats *stats)
124 {
125 	u64 now;
126 
127 	if (!bfqg_stats_waiting(stats))
128 		return;
129 
130 	now = blk_time_get_ns();
131 	if (now > stats->start_group_wait_time)
132 		bfq_stat_add(&stats->group_wait_time,
133 			      now - stats->start_group_wait_time);
134 	bfqg_stats_clear_waiting(stats);
135 }
136 
137 /* This should be called with the scheduler lock held. */
138 static void bfqg_stats_set_start_group_wait_time(struct bfq_group *bfqg,
139 						 struct bfq_group *curr_bfqg)
140 {
141 	struct bfqg_stats *stats = &bfqg->stats;
142 
143 	if (bfqg_stats_waiting(stats))
144 		return;
145 	if (bfqg == curr_bfqg)
146 		return;
147 	stats->start_group_wait_time = blk_time_get_ns();
148 	bfqg_stats_mark_waiting(stats);
149 }
150 
151 /* This should be called with the scheduler lock held. */
152 static void bfqg_stats_end_empty_time(struct bfqg_stats *stats)
153 {
154 	u64 now;
155 
156 	if (!bfqg_stats_empty(stats))
157 		return;
158 
159 	now = blk_time_get_ns();
160 	if (now > stats->start_empty_time)
161 		bfq_stat_add(&stats->empty_time,
162 			      now - stats->start_empty_time);
163 	bfqg_stats_clear_empty(stats);
164 }
165 
166 void bfqg_stats_update_dequeue(struct bfq_group *bfqg)
167 {
168 	bfq_stat_add(&bfqg->stats.dequeue, 1);
169 }
170 
171 void bfqg_stats_set_start_empty_time(struct bfq_group *bfqg)
172 {
173 	struct bfqg_stats *stats = &bfqg->stats;
174 
175 	if (blkg_rwstat_total(&stats->queued))
176 		return;
177 
178 	/*
179 	 * group is already marked empty. This can happen if bfqq got new
180 	 * request in parent group and moved to this group while being added
181 	 * to service tree. Just ignore the event and move on.
182 	 */
183 	if (bfqg_stats_empty(stats))
184 		return;
185 
186 	stats->start_empty_time = blk_time_get_ns();
187 	bfqg_stats_mark_empty(stats);
188 }
189 
190 void bfqg_stats_update_idle_time(struct bfq_group *bfqg)
191 {
192 	struct bfqg_stats *stats = &bfqg->stats;
193 
194 	if (bfqg_stats_idling(stats)) {
195 		u64 now = blk_time_get_ns();
196 
197 		if (now > stats->start_idle_time)
198 			bfq_stat_add(&stats->idle_time,
199 				      now - stats->start_idle_time);
200 		bfqg_stats_clear_idling(stats);
201 	}
202 }
203 
204 void bfqg_stats_set_start_idle_time(struct bfq_group *bfqg)
205 {
206 	struct bfqg_stats *stats = &bfqg->stats;
207 
208 	stats->start_idle_time = blk_time_get_ns();
209 	bfqg_stats_mark_idling(stats);
210 }
211 
212 void bfqg_stats_update_avg_queue_size(struct bfq_group *bfqg)
213 {
214 	struct bfqg_stats *stats = &bfqg->stats;
215 
216 	bfq_stat_add(&stats->avg_queue_size_sum,
217 		      blkg_rwstat_total(&stats->queued));
218 	bfq_stat_add(&stats->avg_queue_size_samples, 1);
219 	bfqg_stats_update_group_wait_time(stats);
220 }
221 
222 void bfqg_stats_update_io_add(struct bfq_group *bfqg, struct bfq_queue *bfqq,
223 			      blk_opf_t opf)
224 {
225 	blkg_rwstat_add(&bfqg->stats.queued, opf, 1);
226 	bfqg_stats_end_empty_time(&bfqg->stats);
227 	if (!(bfqq == bfqg->bfqd->in_service_queue))
228 		bfqg_stats_set_start_group_wait_time(bfqg, bfqq_group(bfqq));
229 }
230 
231 void bfqg_stats_update_io_remove(struct bfq_group *bfqg, blk_opf_t opf)
232 {
233 	blkg_rwstat_add(&bfqg->stats.queued, opf, -1);
234 }
235 
236 void bfqg_stats_update_io_merged(struct bfq_group *bfqg, blk_opf_t opf)
237 {
238 	blkg_rwstat_add(&bfqg->stats.merged, opf, 1);
239 }
240 
241 void bfqg_stats_update_completion(struct bfq_group *bfqg, u64 start_time_ns,
242 				  u64 io_start_time_ns, blk_opf_t opf)
243 {
244 	struct bfqg_stats *stats = &bfqg->stats;
245 	u64 now = blk_time_get_ns();
246 
247 	if (now > io_start_time_ns)
248 		blkg_rwstat_add(&stats->service_time, opf,
249 				now - io_start_time_ns);
250 	if (io_start_time_ns > start_time_ns)
251 		blkg_rwstat_add(&stats->wait_time, opf,
252 				io_start_time_ns - start_time_ns);
253 }
254 
255 #else /* CONFIG_BFQ_CGROUP_DEBUG */
256 
257 void bfqg_stats_update_io_remove(struct bfq_group *bfqg, blk_opf_t opf) { }
258 void bfqg_stats_update_io_merged(struct bfq_group *bfqg, blk_opf_t opf) { }
259 void bfqg_stats_update_completion(struct bfq_group *bfqg, u64 start_time_ns,
260 				  u64 io_start_time_ns, blk_opf_t opf) { }
261 void bfqg_stats_update_dequeue(struct bfq_group *bfqg) { }
262 void bfqg_stats_set_start_idle_time(struct bfq_group *bfqg) { }
263 
264 #endif /* CONFIG_BFQ_CGROUP_DEBUG */
265 
266 #ifdef CONFIG_BFQ_GROUP_IOSCHED
267 
268 /*
269  * blk-cgroup policy-related handlers
270  * The following functions help in converting between blk-cgroup
271  * internal structures and BFQ-specific structures.
272  */
273 
274 static struct bfq_group *pd_to_bfqg(struct blkg_policy_data *pd)
275 {
276 	return pd ? container_of(pd, struct bfq_group, pd) : NULL;
277 }
278 
279 struct blkcg_gq *bfqg_to_blkg(struct bfq_group *bfqg)
280 {
281 	return pd_to_blkg(&bfqg->pd);
282 }
283 
284 static struct bfq_group *blkg_to_bfqg(struct blkcg_gq *blkg)
285 {
286 	return pd_to_bfqg(blkg_to_pd(blkg, &blkcg_policy_bfq));
287 }
288 
289 /*
290  * bfq_group handlers
291  * The following functions help in navigating the bfq_group hierarchy
292  * by allowing to find the parent of a bfq_group or the bfq_group
293  * associated to a bfq_queue.
294  */
295 
296 static struct bfq_group *bfqg_parent(struct bfq_group *bfqg)
297 {
298 	struct blkcg_gq *pblkg = bfqg_to_blkg(bfqg)->parent;
299 
300 	return pblkg ? blkg_to_bfqg(pblkg) : NULL;
301 }
302 
303 static void bfqg_stats_exit(struct bfqg_stats *stats)
304 {
305 	blkg_rwstat_exit(&stats->bytes);
306 	blkg_rwstat_exit(&stats->ios);
307 #ifdef CONFIG_BFQ_CGROUP_DEBUG
308 	blkg_rwstat_exit(&stats->merged);
309 	blkg_rwstat_exit(&stats->service_time);
310 	blkg_rwstat_exit(&stats->wait_time);
311 	blkg_rwstat_exit(&stats->queued);
312 	bfq_stat_exit(&stats->time);
313 	bfq_stat_exit(&stats->avg_queue_size_sum);
314 	bfq_stat_exit(&stats->avg_queue_size_samples);
315 	bfq_stat_exit(&stats->dequeue);
316 	bfq_stat_exit(&stats->group_wait_time);
317 	bfq_stat_exit(&stats->idle_time);
318 	bfq_stat_exit(&stats->empty_time);
319 #endif
320 }
321 
322 struct bfq_group *bfqq_group(struct bfq_queue *bfqq)
323 {
324 	struct bfq_entity *group_entity = bfqq->entity.parent;
325 
326 	return group_entity ? container_of(group_entity, struct bfq_group,
327 					   entity) :
328 			      bfqq->bfqd->root_group;
329 }
330 
331 /*
332  * The following two functions handle get and put of a bfq_group by
333  * wrapping the related blk-cgroup hooks.
334  */
335 
336 static void bfqg_get(struct bfq_group *bfqg)
337 {
338 	refcount_inc(&bfqg->ref);
339 }
340 
341 static void bfqg_put(struct bfq_group *bfqg)
342 {
343 	if (refcount_dec_and_test(&bfqg->ref)) {
344 		bfqg_stats_exit(&bfqg->stats);
345 		kfree(bfqg);
346 	}
347 }
348 
349 static void bfqg_and_blkg_get(struct bfq_group *bfqg)
350 {
351 	/* see comments in bfq_bic_update_cgroup for why refcounting bfqg */
352 	bfqg_get(bfqg);
353 
354 	blkg_get(bfqg_to_blkg(bfqg));
355 }
356 
357 void bfqg_and_blkg_put(struct bfq_group *bfqg)
358 {
359 	blkg_put(bfqg_to_blkg(bfqg));
360 
361 	bfqg_put(bfqg);
362 }
363 
364 void bfqg_stats_update_legacy_io(struct request_queue *q, struct request *rq)
365 {
366 	struct bfq_group *bfqg = blkg_to_bfqg(rq->bio->bi_blkg);
367 
368 	if (!bfqg)
369 		return;
370 
371 	blkg_rwstat_add(&bfqg->stats.bytes, rq->cmd_flags, blk_rq_bytes(rq));
372 	blkg_rwstat_add(&bfqg->stats.ios, rq->cmd_flags, 1);
373 }
374 
375 /* @stats = 0 */
376 static void bfqg_stats_reset(struct bfqg_stats *stats)
377 {
378 #ifdef CONFIG_BFQ_CGROUP_DEBUG
379 	/* queued stats shouldn't be cleared */
380 	blkg_rwstat_reset(&stats->merged);
381 	blkg_rwstat_reset(&stats->service_time);
382 	blkg_rwstat_reset(&stats->wait_time);
383 	bfq_stat_reset(&stats->time);
384 	bfq_stat_reset(&stats->avg_queue_size_sum);
385 	bfq_stat_reset(&stats->avg_queue_size_samples);
386 	bfq_stat_reset(&stats->dequeue);
387 	bfq_stat_reset(&stats->group_wait_time);
388 	bfq_stat_reset(&stats->idle_time);
389 	bfq_stat_reset(&stats->empty_time);
390 #endif
391 }
392 
393 /* @to += @from */
394 static void bfqg_stats_add_aux(struct bfqg_stats *to, struct bfqg_stats *from)
395 {
396 	if (!to || !from)
397 		return;
398 
399 #ifdef CONFIG_BFQ_CGROUP_DEBUG
400 	/* queued stats shouldn't be cleared */
401 	blkg_rwstat_add_aux(&to->merged, &from->merged);
402 	blkg_rwstat_add_aux(&to->service_time, &from->service_time);
403 	blkg_rwstat_add_aux(&to->wait_time, &from->wait_time);
404 	bfq_stat_add_aux(&to->time, &from->time);
405 	bfq_stat_add_aux(&to->avg_queue_size_sum, &from->avg_queue_size_sum);
406 	bfq_stat_add_aux(&to->avg_queue_size_samples,
407 			  &from->avg_queue_size_samples);
408 	bfq_stat_add_aux(&to->dequeue, &from->dequeue);
409 	bfq_stat_add_aux(&to->group_wait_time, &from->group_wait_time);
410 	bfq_stat_add_aux(&to->idle_time, &from->idle_time);
411 	bfq_stat_add_aux(&to->empty_time, &from->empty_time);
412 #endif
413 }
414 
415 /*
416  * Transfer @bfqg's stats to its parent's aux counts so that the ancestors'
417  * recursive stats can still account for the amount used by this bfqg after
418  * it's gone.
419  */
420 static void bfqg_stats_xfer_dead(struct bfq_group *bfqg)
421 {
422 	struct bfq_group *parent;
423 
424 	if (!bfqg) /* root_group */
425 		return;
426 
427 	parent = bfqg_parent(bfqg);
428 
429 	lockdep_assert_held(&bfqg_to_blkg(bfqg)->q->queue_lock);
430 
431 	if (unlikely(!parent))
432 		return;
433 
434 	bfqg_stats_add_aux(&parent->stats, &bfqg->stats);
435 	bfqg_stats_reset(&bfqg->stats);
436 }
437 
438 void bfq_init_entity(struct bfq_entity *entity, struct bfq_group *bfqg)
439 {
440 	struct bfq_queue *bfqq = bfq_entity_to_bfqq(entity);
441 
442 	entity->weight = entity->new_weight;
443 	entity->orig_weight = entity->new_weight;
444 	if (bfqq) {
445 		bfqq->ioprio = bfqq->new_ioprio;
446 		bfqq->ioprio_class = bfqq->new_ioprio_class;
447 		/*
448 		 * Make sure that bfqg and its associated blkg do not
449 		 * disappear before entity.
450 		 */
451 		bfqg_and_blkg_get(bfqg);
452 	}
453 	entity->parent = bfqg->my_entity; /* NULL for root group */
454 	entity->sched_data = &bfqg->sched_data;
455 }
456 
457 static int bfqg_stats_init(struct bfqg_stats *stats, gfp_t gfp)
458 {
459 	if (blkg_rwstat_init(&stats->bytes, gfp) ||
460 	    blkg_rwstat_init(&stats->ios, gfp))
461 		goto error;
462 
463 #ifdef CONFIG_BFQ_CGROUP_DEBUG
464 	if (blkg_rwstat_init(&stats->merged, gfp) ||
465 	    blkg_rwstat_init(&stats->service_time, gfp) ||
466 	    blkg_rwstat_init(&stats->wait_time, gfp) ||
467 	    blkg_rwstat_init(&stats->queued, gfp) ||
468 	    bfq_stat_init(&stats->time, gfp) ||
469 	    bfq_stat_init(&stats->avg_queue_size_sum, gfp) ||
470 	    bfq_stat_init(&stats->avg_queue_size_samples, gfp) ||
471 	    bfq_stat_init(&stats->dequeue, gfp) ||
472 	    bfq_stat_init(&stats->group_wait_time, gfp) ||
473 	    bfq_stat_init(&stats->idle_time, gfp) ||
474 	    bfq_stat_init(&stats->empty_time, gfp))
475 		goto error;
476 #endif
477 
478 	return 0;
479 
480 error:
481 	bfqg_stats_exit(stats);
482 	return -ENOMEM;
483 }
484 
485 static struct bfq_group_data *cpd_to_bfqgd(struct blkcg_policy_data *cpd)
486 {
487 	return cpd ? container_of(cpd, struct bfq_group_data, pd) : NULL;
488 }
489 
490 static struct bfq_group_data *blkcg_to_bfqgd(struct blkcg *blkcg)
491 {
492 	return cpd_to_bfqgd(blkcg_to_cpd(blkcg, &blkcg_policy_bfq));
493 }
494 
495 static struct blkcg_policy_data *bfq_cpd_alloc(gfp_t gfp)
496 {
497 	struct bfq_group_data *bgd;
498 
499 	bgd = kzalloc_obj(*bgd, gfp);
500 	if (!bgd)
501 		return NULL;
502 
503 	bgd->weight = CGROUP_WEIGHT_DFL;
504 	return &bgd->pd;
505 }
506 
507 static void bfq_cpd_free(struct blkcg_policy_data *cpd)
508 {
509 	kfree(cpd_to_bfqgd(cpd));
510 }
511 
512 static struct blkg_policy_data *bfq_pd_alloc(struct gendisk *disk,
513 		struct blkcg *blkcg, gfp_t gfp)
514 {
515 	struct bfq_group *bfqg;
516 
517 	bfqg = kzalloc_node(sizeof(*bfqg), gfp, disk->node_id);
518 	if (!bfqg)
519 		return NULL;
520 
521 	if (bfqg_stats_init(&bfqg->stats, gfp)) {
522 		kfree(bfqg);
523 		return NULL;
524 	}
525 
526 	/* see comments in bfq_bic_update_cgroup for why refcounting */
527 	refcount_set(&bfqg->ref, 1);
528 	return &bfqg->pd;
529 }
530 
531 static void bfq_pd_init(struct blkg_policy_data *pd)
532 {
533 	struct blkcg_gq *blkg = pd_to_blkg(pd);
534 	struct bfq_group *bfqg = blkg_to_bfqg(blkg);
535 	struct bfq_data *bfqd = blkg->q->elevator->elevator_data;
536 	struct bfq_entity *entity = &bfqg->entity;
537 	struct bfq_group_data *d = blkcg_to_bfqgd(blkg->blkcg);
538 
539 	entity->orig_weight = entity->weight = entity->new_weight = d->weight;
540 	entity->my_sched_data = &bfqg->sched_data;
541 	entity->last_bfqq_created = NULL;
542 
543 	bfqg->my_entity = entity; /*
544 				   * the root_group's will be set to NULL
545 				   * in bfq_init_queue()
546 				   */
547 	bfqg->bfqd = bfqd;
548 	bfqg->active_entities = 0;
549 	bfqg->num_queues_with_pending_reqs = 0;
550 	bfqg->rq_pos_tree = RB_ROOT;
551 }
552 
553 static void bfq_pd_free(struct blkg_policy_data *pd)
554 {
555 	struct bfq_group *bfqg = pd_to_bfqg(pd);
556 
557 	bfqg_put(bfqg);
558 }
559 
560 static void bfq_pd_reset_stats(struct blkg_policy_data *pd)
561 {
562 	struct bfq_group *bfqg = pd_to_bfqg(pd);
563 
564 	bfqg_stats_reset(&bfqg->stats);
565 }
566 
567 static void bfq_group_set_parent(struct bfq_group *bfqg,
568 					struct bfq_group *parent)
569 {
570 	struct bfq_entity *entity;
571 
572 	entity = &bfqg->entity;
573 	entity->parent = parent->my_entity;
574 	entity->sched_data = &parent->sched_data;
575 }
576 
577 static void bfq_link_bfqg(struct bfq_data *bfqd, struct bfq_group *bfqg)
578 {
579 	struct bfq_group *parent;
580 	struct bfq_entity *entity;
581 
582 	/*
583 	 * Update chain of bfq_groups as we might be handling a leaf group
584 	 * which, along with some of its relatives, has not been hooked yet
585 	 * to the private hierarchy of BFQ.
586 	 */
587 	entity = &bfqg->entity;
588 	for_each_entity(entity) {
589 		struct bfq_group *curr_bfqg = container_of(entity,
590 						struct bfq_group, entity);
591 		if (curr_bfqg != bfqd->root_group) {
592 			parent = bfqg_parent(curr_bfqg);
593 			if (!parent)
594 				parent = bfqd->root_group;
595 			bfq_group_set_parent(curr_bfqg, parent);
596 		}
597 	}
598 }
599 
600 struct bfq_group *bfq_bio_bfqg(struct bfq_data *bfqd, struct bio *bio)
601 {
602 	struct blkcg_gq *blkg = bio->bi_blkg;
603 	struct bfq_group *bfqg;
604 
605 	while (blkg) {
606 		if (!blkg->online) {
607 			blkg = blkg->parent;
608 			continue;
609 		}
610 		bfqg = blkg_to_bfqg(blkg);
611 		if (bfqg->pd.online) {
612 			bio_associate_blkg_from_css(bio, &blkg->blkcg->css);
613 			return bfqg;
614 		}
615 		blkg = blkg->parent;
616 	}
617 	bio_associate_blkg_from_css(bio,
618 				&bfqg_to_blkg(bfqd->root_group)->blkcg->css);
619 	return bfqd->root_group;
620 }
621 
622 /**
623  * bfq_bfqq_move - migrate @bfqq to @bfqg.
624  * @bfqd: queue descriptor.
625  * @bfqq: the queue to move.
626  * @bfqg: the group to move to.
627  *
628  * Move @bfqq to @bfqg, deactivating it from its old group and reactivating
629  * it on the new one.  Avoid putting the entity on the old group idle tree.
630  *
631  * Must be called under the scheduler lock, to make sure that the blkg
632  * owning @bfqg does not disappear (see comments in
633  * bfq_bic_update_cgroup on guaranteeing the consistency of blkg
634  * objects).
635  */
636 void bfq_bfqq_move(struct bfq_data *bfqd, struct bfq_queue *bfqq,
637 		   struct bfq_group *bfqg)
638 {
639 	struct bfq_entity *entity = &bfqq->entity;
640 	struct bfq_group *old_parent = bfqq_group(bfqq);
641 	bool has_pending_reqs = false;
642 
643 	/*
644 	 * No point to move bfqq to the same group, which can happen when
645 	 * root group is offlined
646 	 */
647 	if (old_parent == bfqg)
648 		return;
649 
650 	/*
651 	 * oom_bfqq is not allowed to move, oom_bfqq will hold ref to root_group
652 	 * until elevator exit.
653 	 */
654 	if (bfqq == &bfqd->oom_bfqq)
655 		return;
656 	/*
657 	 * Get extra reference to prevent bfqq from being freed in
658 	 * next possible expire or deactivate.
659 	 */
660 	bfqq->ref++;
661 
662 	if (entity->in_groups_with_pending_reqs) {
663 		has_pending_reqs = true;
664 		bfq_del_bfqq_in_groups_with_pending_reqs(bfqq);
665 	}
666 
667 	/* If bfqq is empty, then bfq_bfqq_expire also invokes
668 	 * bfq_del_bfqq_busy, thereby removing bfqq and its entity
669 	 * from data structures related to current group. Otherwise we
670 	 * need to remove bfqq explicitly with bfq_deactivate_bfqq, as
671 	 * we do below.
672 	 */
673 	if (bfqq == bfqd->in_service_queue)
674 		bfq_bfqq_expire(bfqd, bfqd->in_service_queue,
675 				false, BFQQE_PREEMPTED);
676 
677 	if (bfq_bfqq_busy(bfqq))
678 		bfq_deactivate_bfqq(bfqd, bfqq, false, false);
679 	else if (entity->on_st_or_in_serv)
680 		bfq_put_idle_entity(bfq_entity_service_tree(entity), entity);
681 	bfqg_and_blkg_put(old_parent);
682 
683 	bfq_reassign_last_bfqq(bfqq, NULL);
684 	entity->parent = bfqg->my_entity;
685 	entity->sched_data = &bfqg->sched_data;
686 	/* pin down bfqg and its associated blkg  */
687 	bfqg_and_blkg_get(bfqg);
688 
689 	if (has_pending_reqs)
690 		bfq_add_bfqq_in_groups_with_pending_reqs(bfqq);
691 
692 	if (bfq_bfqq_busy(bfqq)) {
693 		if (unlikely(!bfqd->nonrot_with_queueing))
694 			bfq_pos_tree_add_move(bfqd, bfqq);
695 		bfq_activate_bfqq(bfqd, bfqq);
696 	}
697 
698 	if (!bfqd->in_service_queue && !bfqd->tot_rq_in_driver)
699 		bfq_schedule_dispatch(bfqd);
700 	/* release extra ref taken above, bfqq may happen to be freed now */
701 	bfq_put_queue(bfqq);
702 }
703 
704 static void bfq_sync_bfqq_move(struct bfq_data *bfqd,
705 			       struct bfq_queue *sync_bfqq,
706 			       struct bfq_io_cq *bic,
707 			       struct bfq_group *bfqg,
708 			       unsigned int act_idx)
709 {
710 	struct bfq_queue *bfqq;
711 
712 	if (!sync_bfqq->new_bfqq && !bfq_bfqq_coop(sync_bfqq)) {
713 		/* We are the only user of this bfqq, just move it */
714 		if (sync_bfqq->entity.sched_data != &bfqg->sched_data)
715 			bfq_bfqq_move(bfqd, sync_bfqq, bfqg);
716 		return;
717 	}
718 
719 	/*
720 	 * The queue was merged to a different queue. Check
721 	 * that the merge chain still belongs to the same
722 	 * cgroup.
723 	 */
724 	for (bfqq = sync_bfqq; bfqq; bfqq = bfqq->new_bfqq)
725 		if (bfqq->entity.sched_data != &bfqg->sched_data)
726 			break;
727 	if (bfqq) {
728 		/*
729 		 * Some queue changed cgroup so the merge is not valid
730 		 * anymore. We cannot easily just cancel the merge (by
731 		 * clearing new_bfqq) as there may be other processes
732 		 * using this queue and holding refs to all queues
733 		 * below sync_bfqq->new_bfqq. Similarly if the merge
734 		 * already happened, we need to detach from bfqq now
735 		 * so that we cannot merge bio to a request from the
736 		 * old cgroup.
737 		 */
738 		bfq_put_cooperator(sync_bfqq);
739 		bic_set_bfqq(bic, NULL, true, act_idx);
740 		bfq_release_process_ref(bfqd, sync_bfqq);
741 	}
742 }
743 
744 /**
745  * __bfq_bic_change_cgroup - move @bic to @bfqg.
746  * @bfqd: the queue descriptor.
747  * @bic: the bic to move.
748  * @bfqg: the group to move to.
749  *
750  * Move bic to blkcg, assuming that bfqd->lock is held; which makes
751  * sure that the reference to cgroup is valid across the call (see
752  * comments in bfq_bic_update_cgroup on this issue)
753  */
754 static void __bfq_bic_change_cgroup(struct bfq_data *bfqd,
755 				    struct bfq_io_cq *bic,
756 				    struct bfq_group *bfqg)
757 {
758 	unsigned int act_idx;
759 
760 	for (act_idx = 0; act_idx < bfqd->num_actuators; act_idx++) {
761 		struct bfq_queue *async_bfqq = bic_to_bfqq(bic, false, act_idx);
762 		struct bfq_queue *sync_bfqq = bic_to_bfqq(bic, true, act_idx);
763 
764 		if (async_bfqq &&
765 		    async_bfqq->entity.sched_data != &bfqg->sched_data) {
766 			bic_set_bfqq(bic, NULL, false, act_idx);
767 			bfq_release_process_ref(bfqd, async_bfqq);
768 		}
769 
770 		if (sync_bfqq)
771 			bfq_sync_bfqq_move(bfqd, sync_bfqq, bic, bfqg, act_idx);
772 	}
773 }
774 
775 void bfq_bic_update_cgroup(struct bfq_io_cq *bic, struct bio *bio)
776 {
777 	struct bfq_data *bfqd = bic_to_bfqd(bic);
778 	struct bfq_group *bfqg = bfq_bio_bfqg(bfqd, bio);
779 	uint64_t serial_nr;
780 
781 	serial_nr = bfqg_to_blkg(bfqg)->blkcg->css.serial_nr;
782 
783 	/*
784 	 * Check whether blkcg has changed.  The condition may trigger
785 	 * spuriously on a newly created cic but there's no harm.
786 	 */
787 	if (unlikely(!bfqd) || likely(bic->blkcg_serial_nr == serial_nr))
788 		return;
789 
790 	/*
791 	 * New cgroup for this process. Make sure it is linked to bfq internal
792 	 * cgroup hierarchy.
793 	 */
794 	bfq_link_bfqg(bfqd, bfqg);
795 	__bfq_bic_change_cgroup(bfqd, bic, bfqg);
796 	bic->blkcg_serial_nr = serial_nr;
797 }
798 
799 /**
800  * bfq_flush_idle_tree - deactivate any entity on the idle tree of @st.
801  * @st: the service tree being flushed.
802  */
803 static void bfq_flush_idle_tree(struct bfq_service_tree *st)
804 {
805 	struct bfq_entity *entity = st->first_idle;
806 
807 	for (; entity ; entity = st->first_idle)
808 		__bfq_deactivate_entity(entity, false);
809 }
810 
811 /**
812  * bfq_reparent_leaf_entity - move leaf entity to the root_group.
813  * @bfqd: the device data structure with the root group.
814  * @entity: the entity to move, if entity is a leaf; or the parent entity
815  *	    of an active leaf entity to move, if entity is not a leaf.
816  * @ioprio_class: I/O priority class to reparent.
817  */
818 static void bfq_reparent_leaf_entity(struct bfq_data *bfqd,
819 				     struct bfq_entity *entity,
820 				     int ioprio_class)
821 {
822 	struct bfq_queue *bfqq;
823 	struct bfq_entity *child_entity = entity;
824 
825 	while (child_entity->my_sched_data) { /* leaf not reached yet */
826 		struct bfq_sched_data *child_sd = child_entity->my_sched_data;
827 		struct bfq_service_tree *child_st = child_sd->service_tree +
828 			ioprio_class;
829 		struct rb_root *child_active = &child_st->active;
830 
831 		child_entity = bfq_entity_of(rb_first(child_active));
832 
833 		if (!child_entity)
834 			child_entity = child_sd->in_service_entity;
835 	}
836 
837 	bfqq = bfq_entity_to_bfqq(child_entity);
838 	bfq_bfqq_move(bfqd, bfqq, bfqd->root_group);
839 }
840 
841 /**
842  * bfq_reparent_active_queues - move to the root group all active queues.
843  * @bfqd: the device data structure with the root group.
844  * @bfqg: the group to move from.
845  * @st: the service tree to start the search from.
846  * @ioprio_class: I/O priority class to reparent.
847  */
848 static void bfq_reparent_active_queues(struct bfq_data *bfqd,
849 				       struct bfq_group *bfqg,
850 				       struct bfq_service_tree *st,
851 				       int ioprio_class)
852 {
853 	struct rb_root *active = &st->active;
854 	struct bfq_entity *entity;
855 
856 	while ((entity = bfq_entity_of(rb_first(active))))
857 		bfq_reparent_leaf_entity(bfqd, entity, ioprio_class);
858 
859 	if (bfqg->sched_data.in_service_entity)
860 		bfq_reparent_leaf_entity(bfqd,
861 					 bfqg->sched_data.in_service_entity,
862 					 ioprio_class);
863 }
864 
865 /**
866  * bfq_pd_offline - deactivate the entity associated with @pd,
867  *		    and reparent its children entities.
868  * @pd: descriptor of the policy going offline.
869  *
870  * blkio already grabs the queue_lock for us, so no need to use
871  * RCU-based magic
872  */
873 static void bfq_pd_offline(struct blkg_policy_data *pd)
874 {
875 	struct bfq_service_tree *st;
876 	struct bfq_group *bfqg = pd_to_bfqg(pd);
877 	struct bfq_data *bfqd = bfqg->bfqd;
878 	struct bfq_entity *entity = bfqg->my_entity;
879 	unsigned long flags;
880 	int i;
881 
882 	spin_lock_irqsave(&bfqd->lock, flags);
883 
884 	if (!entity) /* root group */
885 		goto put_async_queues;
886 
887 	/*
888 	 * Empty all service_trees belonging to this group before
889 	 * deactivating the group itself.
890 	 */
891 	for (i = 0; i < BFQ_IOPRIO_CLASSES; i++) {
892 		st = bfqg->sched_data.service_tree + i;
893 
894 		/*
895 		 * It may happen that some queues are still active
896 		 * (busy) upon group destruction (if the corresponding
897 		 * processes have been forced to terminate). We move
898 		 * all the leaf entities corresponding to these queues
899 		 * to the root_group.
900 		 * Also, it may happen that the group has an entity
901 		 * in service, which is disconnected from the active
902 		 * tree: it must be moved, too.
903 		 * There is no need to put the sync queues, as the
904 		 * scheduler has taken no reference.
905 		 */
906 		bfq_reparent_active_queues(bfqd, bfqg, st, i);
907 
908 		/*
909 		 * The idle tree may still contain bfq_queues
910 		 * belonging to exited task because they never
911 		 * migrated to a different cgroup from the one being
912 		 * destroyed now. In addition, even
913 		 * bfq_reparent_active_queues() may happen to add some
914 		 * entities to the idle tree. It happens if, in some
915 		 * of the calls to bfq_bfqq_move() performed by
916 		 * bfq_reparent_active_queues(), the queue to move is
917 		 * empty and gets expired.
918 		 */
919 		bfq_flush_idle_tree(st);
920 	}
921 
922 	__bfq_deactivate_entity(entity, false);
923 
924 put_async_queues:
925 	bfq_put_async_queues(bfqd, bfqg);
926 
927 	spin_unlock_irqrestore(&bfqd->lock, flags);
928 	/*
929 	 * @blkg is going offline and will be ignored by
930 	 * blkg_[rw]stat_recursive_sum().  Transfer stats to the parent so
931 	 * that they don't get lost.  If IOs complete after this point, the
932 	 * stats for them will be lost.  Oh well...
933 	 */
934 	bfqg_stats_xfer_dead(bfqg);
935 }
936 
937 void bfq_end_wr_async(struct bfq_data *bfqd)
938 {
939 	struct blkcg_gq *blkg;
940 
941 	list_for_each_entry(blkg, &bfqd->queue->blkg_list, q_node) {
942 		struct bfq_group *bfqg = blkg_to_bfqg(blkg);
943 
944 		bfq_end_wr_async_queues(bfqd, bfqg);
945 	}
946 	bfq_end_wr_async_queues(bfqd, bfqd->root_group);
947 }
948 
949 static int bfq_io_show_weight_legacy(struct seq_file *sf, void *v)
950 {
951 	struct blkcg *blkcg = css_to_blkcg(seq_css(sf));
952 	struct bfq_group_data *bfqgd = blkcg_to_bfqgd(blkcg);
953 	unsigned int val = 0;
954 
955 	if (bfqgd)
956 		val = bfqgd->weight;
957 
958 	seq_printf(sf, "%u\n", val);
959 
960 	return 0;
961 }
962 
963 static u64 bfqg_prfill_weight_device(struct seq_file *sf,
964 				     struct blkg_policy_data *pd, int off)
965 {
966 	struct bfq_group *bfqg = pd_to_bfqg(pd);
967 
968 	if (!bfqg->entity.dev_weight)
969 		return 0;
970 	return __blkg_prfill_u64(sf, pd, bfqg->entity.dev_weight);
971 }
972 
973 static int bfq_io_show_weight(struct seq_file *sf, void *v)
974 {
975 	struct blkcg *blkcg = css_to_blkcg(seq_css(sf));
976 	struct bfq_group_data *bfqgd = blkcg_to_bfqgd(blkcg);
977 
978 	seq_printf(sf, "default %u\n", bfqgd->weight);
979 	blkcg_print_blkgs(sf, blkcg, bfqg_prfill_weight_device,
980 			  &blkcg_policy_bfq, 0, false);
981 	return 0;
982 }
983 
984 static void bfq_group_set_weight(struct bfq_group *bfqg, u64 weight, u64 dev_weight)
985 {
986 	weight = dev_weight ?: weight;
987 
988 	bfqg->entity.dev_weight = dev_weight;
989 	/*
990 	 * Setting the prio_changed flag of the entity
991 	 * to 1 with new_weight == weight would re-set
992 	 * the value of the weight to its ioprio mapping.
993 	 * Set the flag only if necessary.
994 	 */
995 	if ((unsigned short)weight != bfqg->entity.new_weight) {
996 		bfqg->entity.new_weight = (unsigned short)weight;
997 		/*
998 		 * Make sure that the above new value has been
999 		 * stored in bfqg->entity.new_weight before
1000 		 * setting the prio_changed flag. In fact,
1001 		 * this flag may be read asynchronously (in
1002 		 * critical sections protected by a different
1003 		 * lock than that held here), and finding this
1004 		 * flag set may cause the execution of the code
1005 		 * for updating parameters whose value may
1006 		 * depend also on bfqg->entity.new_weight (in
1007 		 * __bfq_entity_update_weight_prio).
1008 		 * This barrier makes sure that the new value
1009 		 * of bfqg->entity.new_weight is correctly
1010 		 * seen in that code.
1011 		 */
1012 		smp_wmb();
1013 		bfqg->entity.prio_changed = 1;
1014 	}
1015 }
1016 
1017 static int bfq_io_set_weight_legacy(struct cgroup_subsys_state *css,
1018 				    struct cftype *cftype,
1019 				    u64 val)
1020 {
1021 	struct blkcg *blkcg = css_to_blkcg(css);
1022 	struct bfq_group_data *bfqgd = blkcg_to_bfqgd(blkcg);
1023 	struct blkcg_gq *blkg;
1024 	int ret = -ERANGE;
1025 
1026 	if (val < BFQ_MIN_WEIGHT || val > BFQ_MAX_WEIGHT)
1027 		return ret;
1028 
1029 	ret = 0;
1030 	spin_lock_irq(&blkcg->lock);
1031 	bfqgd->weight = (unsigned short)val;
1032 	hlist_for_each_entry(blkg, &blkcg->blkg_list, blkcg_node) {
1033 		struct bfq_group *bfqg = blkg_to_bfqg(blkg);
1034 
1035 		if (bfqg)
1036 			bfq_group_set_weight(bfqg, val, 0);
1037 	}
1038 	spin_unlock_irq(&blkcg->lock);
1039 
1040 	return ret;
1041 }
1042 
1043 static ssize_t bfq_io_set_device_weight(struct kernfs_open_file *of,
1044 					char *buf, size_t nbytes,
1045 					loff_t off)
1046 {
1047 	int ret;
1048 	struct blkg_conf_ctx ctx;
1049 	struct blkcg *blkcg = css_to_blkcg(of_css(of));
1050 	struct bfq_group *bfqg;
1051 	u64 v;
1052 
1053 	blkg_conf_init(&ctx, buf);
1054 
1055 	ret = blkg_conf_open_bdev(&ctx);
1056 	if (ret)
1057 		return ret;
1058 
1059 	ret = blkg_conf_prep(blkcg, &blkcg_policy_bfq, &ctx);
1060 	if (ret)
1061 		goto close_bdev;
1062 
1063 	if (sscanf(ctx.body, "%llu", &v) == 1) {
1064 		/* require "default" on dfl */
1065 		ret = -ERANGE;
1066 		if (!v)
1067 			goto out;
1068 	} else if (!strcmp(strim(ctx.body), "default")) {
1069 		v = 0;
1070 	} else {
1071 		ret = -EINVAL;
1072 		goto out;
1073 	}
1074 
1075 	bfqg = blkg_to_bfqg(ctx.blkg);
1076 
1077 	ret = -ERANGE;
1078 	if (!v || (v >= BFQ_MIN_WEIGHT && v <= BFQ_MAX_WEIGHT)) {
1079 		bfq_group_set_weight(bfqg, bfqg->entity.weight, v);
1080 		ret = 0;
1081 	}
1082 
1083 out:
1084 	blkg_conf_unprep(&ctx);
1085 close_bdev:
1086 	blkg_conf_close_bdev(&ctx);
1087 	return ret ?: nbytes;
1088 }
1089 
1090 static ssize_t bfq_io_set_weight(struct kernfs_open_file *of,
1091 				 char *buf, size_t nbytes,
1092 				 loff_t off)
1093 {
1094 	char *endp;
1095 	int ret;
1096 	u64 v;
1097 
1098 	buf = strim(buf);
1099 
1100 	/* "WEIGHT" or "default WEIGHT" sets the default weight */
1101 	v = simple_strtoull(buf, &endp, 0);
1102 	if (*endp == '\0' || sscanf(buf, "default %llu", &v) == 1) {
1103 		ret = bfq_io_set_weight_legacy(of_css(of), NULL, v);
1104 		return ret ?: nbytes;
1105 	}
1106 
1107 	return bfq_io_set_device_weight(of, buf, nbytes, off);
1108 }
1109 
1110 static int bfqg_print_rwstat(struct seq_file *sf, void *v)
1111 {
1112 	blkcg_print_blkgs(sf, css_to_blkcg(seq_css(sf)), blkg_prfill_rwstat,
1113 			  &blkcg_policy_bfq, seq_cft(sf)->private, true);
1114 	return 0;
1115 }
1116 
1117 static u64 bfqg_prfill_rwstat_recursive(struct seq_file *sf,
1118 					struct blkg_policy_data *pd, int off)
1119 {
1120 	struct blkg_rwstat_sample sum;
1121 
1122 	blkg_rwstat_recursive_sum(pd_to_blkg(pd), &blkcg_policy_bfq, off, &sum);
1123 	return __blkg_prfill_rwstat(sf, pd, &sum);
1124 }
1125 
1126 static int bfqg_print_rwstat_recursive(struct seq_file *sf, void *v)
1127 {
1128 	blkcg_print_blkgs(sf, css_to_blkcg(seq_css(sf)),
1129 			  bfqg_prfill_rwstat_recursive, &blkcg_policy_bfq,
1130 			  seq_cft(sf)->private, true);
1131 	return 0;
1132 }
1133 
1134 #ifdef CONFIG_BFQ_CGROUP_DEBUG
1135 static int bfqg_print_stat(struct seq_file *sf, void *v)
1136 {
1137 	blkcg_print_blkgs(sf, css_to_blkcg(seq_css(sf)), blkg_prfill_stat,
1138 			  &blkcg_policy_bfq, seq_cft(sf)->private, false);
1139 	return 0;
1140 }
1141 
1142 static u64 bfqg_prfill_stat_recursive(struct seq_file *sf,
1143 				      struct blkg_policy_data *pd, int off)
1144 {
1145 	struct blkcg_gq *blkg = pd_to_blkg(pd);
1146 	struct blkcg_gq *pos_blkg;
1147 	struct cgroup_subsys_state *pos_css;
1148 	u64 sum = 0;
1149 
1150 	lockdep_assert_held(&blkg->q->queue_lock);
1151 
1152 	rcu_read_lock();
1153 	blkg_for_each_descendant_pre(pos_blkg, pos_css, blkg) {
1154 		struct bfq_stat *stat;
1155 
1156 		if (!pos_blkg->online)
1157 			continue;
1158 
1159 		stat = (void *)blkg_to_pd(pos_blkg, &blkcg_policy_bfq) + off;
1160 		sum += bfq_stat_read(stat) + atomic64_read(&stat->aux_cnt);
1161 	}
1162 	rcu_read_unlock();
1163 
1164 	return __blkg_prfill_u64(sf, pd, sum);
1165 }
1166 
1167 static int bfqg_print_stat_recursive(struct seq_file *sf, void *v)
1168 {
1169 	blkcg_print_blkgs(sf, css_to_blkcg(seq_css(sf)),
1170 			  bfqg_prfill_stat_recursive, &blkcg_policy_bfq,
1171 			  seq_cft(sf)->private, false);
1172 	return 0;
1173 }
1174 
1175 static u64 bfqg_prfill_sectors(struct seq_file *sf, struct blkg_policy_data *pd,
1176 			       int off)
1177 {
1178 	struct bfq_group *bfqg = blkg_to_bfqg(pd->blkg);
1179 	u64 sum = blkg_rwstat_total(&bfqg->stats.bytes);
1180 
1181 	return __blkg_prfill_u64(sf, pd, sum >> 9);
1182 }
1183 
1184 static int bfqg_print_stat_sectors(struct seq_file *sf, void *v)
1185 {
1186 	blkcg_print_blkgs(sf, css_to_blkcg(seq_css(sf)),
1187 			  bfqg_prfill_sectors, &blkcg_policy_bfq, 0, false);
1188 	return 0;
1189 }
1190 
1191 static u64 bfqg_prfill_sectors_recursive(struct seq_file *sf,
1192 					 struct blkg_policy_data *pd, int off)
1193 {
1194 	struct blkg_rwstat_sample tmp;
1195 
1196 	blkg_rwstat_recursive_sum(pd->blkg, &blkcg_policy_bfq,
1197 			offsetof(struct bfq_group, stats.bytes), &tmp);
1198 
1199 	return __blkg_prfill_u64(sf, pd,
1200 		(tmp.cnt[BLKG_RWSTAT_READ] + tmp.cnt[BLKG_RWSTAT_WRITE]) >> 9);
1201 }
1202 
1203 static int bfqg_print_stat_sectors_recursive(struct seq_file *sf, void *v)
1204 {
1205 	blkcg_print_blkgs(sf, css_to_blkcg(seq_css(sf)),
1206 			  bfqg_prfill_sectors_recursive, &blkcg_policy_bfq, 0,
1207 			  false);
1208 	return 0;
1209 }
1210 
1211 static u64 bfqg_prfill_avg_queue_size(struct seq_file *sf,
1212 				      struct blkg_policy_data *pd, int off)
1213 {
1214 	struct bfq_group *bfqg = pd_to_bfqg(pd);
1215 	u64 samples = bfq_stat_read(&bfqg->stats.avg_queue_size_samples);
1216 	u64 v = 0;
1217 
1218 	if (samples) {
1219 		v = bfq_stat_read(&bfqg->stats.avg_queue_size_sum);
1220 		v = div64_u64(v, samples);
1221 	}
1222 	__blkg_prfill_u64(sf, pd, v);
1223 	return 0;
1224 }
1225 
1226 /* print avg_queue_size */
1227 static int bfqg_print_avg_queue_size(struct seq_file *sf, void *v)
1228 {
1229 	blkcg_print_blkgs(sf, css_to_blkcg(seq_css(sf)),
1230 			  bfqg_prfill_avg_queue_size, &blkcg_policy_bfq,
1231 			  0, false);
1232 	return 0;
1233 }
1234 #endif /* CONFIG_BFQ_CGROUP_DEBUG */
1235 
1236 struct bfq_group *bfq_create_group_hierarchy(struct bfq_data *bfqd, int node)
1237 {
1238 	int ret;
1239 
1240 	ret = blkcg_activate_policy(bfqd->queue->disk, &blkcg_policy_bfq);
1241 	if (ret)
1242 		return NULL;
1243 
1244 	return blkg_to_bfqg(bfqd->queue->root_blkg);
1245 }
1246 
1247 struct blkcg_policy blkcg_policy_bfq = {
1248 	.dfl_cftypes		= bfq_blkg_files,
1249 	.legacy_cftypes		= bfq_blkcg_legacy_files,
1250 
1251 	.cpd_alloc_fn		= bfq_cpd_alloc,
1252 	.cpd_free_fn		= bfq_cpd_free,
1253 
1254 	.pd_alloc_fn		= bfq_pd_alloc,
1255 	.pd_init_fn		= bfq_pd_init,
1256 	.pd_offline_fn		= bfq_pd_offline,
1257 	.pd_free_fn		= bfq_pd_free,
1258 	.pd_reset_stats_fn	= bfq_pd_reset_stats,
1259 };
1260 
1261 struct cftype bfq_blkcg_legacy_files[] = {
1262 	{
1263 		.name = "bfq.weight",
1264 		.flags = CFTYPE_NOT_ON_ROOT,
1265 		.seq_show = bfq_io_show_weight_legacy,
1266 		.write_u64 = bfq_io_set_weight_legacy,
1267 	},
1268 	{
1269 		.name = "bfq.weight_device",
1270 		.flags = CFTYPE_NOT_ON_ROOT,
1271 		.seq_show = bfq_io_show_weight,
1272 		.write = bfq_io_set_weight,
1273 	},
1274 
1275 	/* statistics, covers only the tasks in the bfqg */
1276 	{
1277 		.name = "bfq.io_service_bytes",
1278 		.private = offsetof(struct bfq_group, stats.bytes),
1279 		.seq_show = bfqg_print_rwstat,
1280 	},
1281 	{
1282 		.name = "bfq.io_serviced",
1283 		.private = offsetof(struct bfq_group, stats.ios),
1284 		.seq_show = bfqg_print_rwstat,
1285 	},
1286 #ifdef CONFIG_BFQ_CGROUP_DEBUG
1287 	{
1288 		.name = "bfq.time",
1289 		.private = offsetof(struct bfq_group, stats.time),
1290 		.seq_show = bfqg_print_stat,
1291 	},
1292 	{
1293 		.name = "bfq.sectors",
1294 		.seq_show = bfqg_print_stat_sectors,
1295 	},
1296 	{
1297 		.name = "bfq.io_service_time",
1298 		.private = offsetof(struct bfq_group, stats.service_time),
1299 		.seq_show = bfqg_print_rwstat,
1300 	},
1301 	{
1302 		.name = "bfq.io_wait_time",
1303 		.private = offsetof(struct bfq_group, stats.wait_time),
1304 		.seq_show = bfqg_print_rwstat,
1305 	},
1306 	{
1307 		.name = "bfq.io_merged",
1308 		.private = offsetof(struct bfq_group, stats.merged),
1309 		.seq_show = bfqg_print_rwstat,
1310 	},
1311 	{
1312 		.name = "bfq.io_queued",
1313 		.private = offsetof(struct bfq_group, stats.queued),
1314 		.seq_show = bfqg_print_rwstat,
1315 	},
1316 #endif /* CONFIG_BFQ_CGROUP_DEBUG */
1317 
1318 	/* the same statistics which cover the bfqg and its descendants */
1319 	{
1320 		.name = "bfq.io_service_bytes_recursive",
1321 		.private = offsetof(struct bfq_group, stats.bytes),
1322 		.seq_show = bfqg_print_rwstat_recursive,
1323 	},
1324 	{
1325 		.name = "bfq.io_serviced_recursive",
1326 		.private = offsetof(struct bfq_group, stats.ios),
1327 		.seq_show = bfqg_print_rwstat_recursive,
1328 	},
1329 #ifdef CONFIG_BFQ_CGROUP_DEBUG
1330 	{
1331 		.name = "bfq.time_recursive",
1332 		.private = offsetof(struct bfq_group, stats.time),
1333 		.seq_show = bfqg_print_stat_recursive,
1334 	},
1335 	{
1336 		.name = "bfq.sectors_recursive",
1337 		.seq_show = bfqg_print_stat_sectors_recursive,
1338 	},
1339 	{
1340 		.name = "bfq.io_service_time_recursive",
1341 		.private = offsetof(struct bfq_group, stats.service_time),
1342 		.seq_show = bfqg_print_rwstat_recursive,
1343 	},
1344 	{
1345 		.name = "bfq.io_wait_time_recursive",
1346 		.private = offsetof(struct bfq_group, stats.wait_time),
1347 		.seq_show = bfqg_print_rwstat_recursive,
1348 	},
1349 	{
1350 		.name = "bfq.io_merged_recursive",
1351 		.private = offsetof(struct bfq_group, stats.merged),
1352 		.seq_show = bfqg_print_rwstat_recursive,
1353 	},
1354 	{
1355 		.name = "bfq.io_queued_recursive",
1356 		.private = offsetof(struct bfq_group, stats.queued),
1357 		.seq_show = bfqg_print_rwstat_recursive,
1358 	},
1359 	{
1360 		.name = "bfq.avg_queue_size",
1361 		.seq_show = bfqg_print_avg_queue_size,
1362 	},
1363 	{
1364 		.name = "bfq.group_wait_time",
1365 		.private = offsetof(struct bfq_group, stats.group_wait_time),
1366 		.seq_show = bfqg_print_stat,
1367 	},
1368 	{
1369 		.name = "bfq.idle_time",
1370 		.private = offsetof(struct bfq_group, stats.idle_time),
1371 		.seq_show = bfqg_print_stat,
1372 	},
1373 	{
1374 		.name = "bfq.empty_time",
1375 		.private = offsetof(struct bfq_group, stats.empty_time),
1376 		.seq_show = bfqg_print_stat,
1377 	},
1378 	{
1379 		.name = "bfq.dequeue",
1380 		.private = offsetof(struct bfq_group, stats.dequeue),
1381 		.seq_show = bfqg_print_stat,
1382 	},
1383 #endif	/* CONFIG_BFQ_CGROUP_DEBUG */
1384 	{ }	/* terminate */
1385 };
1386 
1387 struct cftype bfq_blkg_files[] = {
1388 	{
1389 		.name = "bfq.weight",
1390 		.flags = CFTYPE_NOT_ON_ROOT,
1391 		.seq_show = bfq_io_show_weight,
1392 		.write = bfq_io_set_weight,
1393 	},
1394 	{} /* terminate */
1395 };
1396 
1397 #else	/* CONFIG_BFQ_GROUP_IOSCHED */
1398 
1399 void bfq_bfqq_move(struct bfq_data *bfqd, struct bfq_queue *bfqq,
1400 		   struct bfq_group *bfqg) {}
1401 
1402 void bfq_init_entity(struct bfq_entity *entity, struct bfq_group *bfqg)
1403 {
1404 	struct bfq_queue *bfqq = bfq_entity_to_bfqq(entity);
1405 
1406 	entity->weight = entity->new_weight;
1407 	entity->orig_weight = entity->new_weight;
1408 	if (bfqq) {
1409 		bfqq->ioprio = bfqq->new_ioprio;
1410 		bfqq->ioprio_class = bfqq->new_ioprio_class;
1411 	}
1412 	entity->sched_data = &bfqg->sched_data;
1413 }
1414 
1415 void bfq_bic_update_cgroup(struct bfq_io_cq *bic, struct bio *bio) {}
1416 
1417 void bfq_end_wr_async(struct bfq_data *bfqd)
1418 {
1419 	bfq_end_wr_async_queues(bfqd, bfqd->root_group);
1420 }
1421 
1422 struct bfq_group *bfq_bio_bfqg(struct bfq_data *bfqd, struct bio *bio)
1423 {
1424 	return bfqd->root_group;
1425 }
1426 
1427 struct bfq_group *bfqq_group(struct bfq_queue *bfqq)
1428 {
1429 	return bfqq->bfqd->root_group;
1430 }
1431 
1432 void bfqg_and_blkg_put(struct bfq_group *bfqg) {}
1433 
1434 struct bfq_group *bfq_create_group_hierarchy(struct bfq_data *bfqd, int node)
1435 {
1436 	struct bfq_group *bfqg;
1437 	int i;
1438 
1439 	bfqg = kmalloc_node(sizeof(*bfqg), GFP_KERNEL | __GFP_ZERO, node);
1440 	if (!bfqg)
1441 		return NULL;
1442 
1443 	for (i = 0; i < BFQ_IOPRIO_CLASSES; i++)
1444 		bfqg->sched_data.service_tree[i] = BFQ_SERVICE_TREE_INIT;
1445 
1446 	return bfqg;
1447 }
1448 #endif	/* CONFIG_BFQ_GROUP_IOSCHED */
1449