xref: /OK3568_Linux_fs/kernel/include/linux/blk-cgroup.h (revision 4882a59341e53eb6f0b4789bf948001014eff981)
1 /* SPDX-License-Identifier: GPL-2.0 */
2 #ifndef _BLK_CGROUP_H
3 #define _BLK_CGROUP_H
4 /*
5  * Common Block IO controller cgroup interface
6  *
7  * Based on ideas and code from CFQ, CFS and BFQ:
8  * Copyright (C) 2003 Jens Axboe <axboe@kernel.dk>
9  *
10  * Copyright (C) 2008 Fabio Checconi <fabio@gandalf.sssup.it>
11  *		      Paolo Valente <paolo.valente@unimore.it>
12  *
13  * Copyright (C) 2009 Vivek Goyal <vgoyal@redhat.com>
14  * 	              Nauman Rafique <nauman@google.com>
15  */
16 
17 #include <linux/cgroup.h>
18 #include <linux/percpu.h>
19 #include <linux/percpu_counter.h>
20 #include <linux/u64_stats_sync.h>
21 #include <linux/seq_file.h>
22 #include <linux/radix-tree.h>
23 #include <linux/blkdev.h>
24 #include <linux/atomic.h>
25 #include <linux/kthread.h>
26 #include <linux/fs.h>
27 #ifndef __GENKSYMS__
28 #include <linux/blk-mq.h>
29 #endif
30 
31 /* percpu_counter batch for blkg_[rw]stats, per-cpu drift doesn't matter */
32 #define BLKG_STAT_CPU_BATCH	(INT_MAX / 2)
33 
34 /* Max limits for throttle policy */
35 #define THROTL_IOPS_MAX		UINT_MAX
36 
37 #ifdef CONFIG_BLK_CGROUP
38 
39 enum blkg_iostat_type {
40 	BLKG_IOSTAT_READ,
41 	BLKG_IOSTAT_WRITE,
42 	BLKG_IOSTAT_DISCARD,
43 
44 	BLKG_IOSTAT_NR,
45 };
46 
47 struct blkcg_gq;
48 
49 struct blkcg {
50 	struct cgroup_subsys_state	css;
51 	spinlock_t			lock;
52 	refcount_t			online_pin;
53 
54 	struct radix_tree_root		blkg_tree;
55 	struct blkcg_gq	__rcu		*blkg_hint;
56 	struct hlist_head		blkg_list;
57 
58 	struct blkcg_policy_data	*cpd[BLKCG_MAX_POLS];
59 
60 	struct list_head		all_blkcgs_node;
61 #ifdef CONFIG_CGROUP_WRITEBACK
62 	struct list_head		cgwb_list;
63 #endif
64 };
65 
66 struct blkg_iostat {
67 	u64				bytes[BLKG_IOSTAT_NR];
68 	u64				ios[BLKG_IOSTAT_NR];
69 };
70 
71 struct blkg_iostat_set {
72 	struct u64_stats_sync		sync;
73 	struct blkg_iostat		cur;
74 	struct blkg_iostat		last;
75 };
76 
77 /*
78  * A blkcg_gq (blkg) is association between a block cgroup (blkcg) and a
79  * request_queue (q).  This is used by blkcg policies which need to track
80  * information per blkcg - q pair.
81  *
82  * There can be multiple active blkcg policies and each blkg:policy pair is
83  * represented by a blkg_policy_data which is allocated and freed by each
84  * policy's pd_alloc/free_fn() methods.  A policy can allocate private data
85  * area by allocating larger data structure which embeds blkg_policy_data
86  * at the beginning.
87  */
88 struct blkg_policy_data {
89 	/* the blkg and policy id this per-policy data belongs to */
90 	struct blkcg_gq			*blkg;
91 	int				plid;
92 };
93 
94 /*
95  * Policies that need to keep per-blkcg data which is independent from any
96  * request_queue associated to it should implement cpd_alloc/free_fn()
97  * methods.  A policy can allocate private data area by allocating larger
98  * data structure which embeds blkcg_policy_data at the beginning.
99  * cpd_init() is invoked to let each policy handle per-blkcg data.
100  */
101 struct blkcg_policy_data {
102 	/* the blkcg and policy id this per-policy data belongs to */
103 	struct blkcg			*blkcg;
104 	int				plid;
105 };
106 
107 /* association between a blk cgroup and a request queue */
108 struct blkcg_gq {
109 	/* Pointer to the associated request_queue */
110 	struct request_queue		*q;
111 	struct list_head		q_node;
112 	struct hlist_node		blkcg_node;
113 	struct blkcg			*blkcg;
114 
115 	/* all non-root blkcg_gq's are guaranteed to have access to parent */
116 	struct blkcg_gq			*parent;
117 
118 	/* reference count */
119 	struct percpu_ref		refcnt;
120 
121 	/* is this blkg online? protected by both blkcg and q locks */
122 	bool				online;
123 
124 	struct blkg_iostat_set __percpu	*iostat_cpu;
125 	struct blkg_iostat_set		iostat;
126 
127 	struct blkg_policy_data		*pd[BLKCG_MAX_POLS];
128 
129 	spinlock_t			async_bio_lock;
130 	struct bio_list			async_bios;
131 	struct work_struct		async_bio_work;
132 
133 	atomic_t			use_delay;
134 	atomic64_t			delay_nsec;
135 	atomic64_t			delay_start;
136 	u64				last_delay;
137 	int				last_use;
138 
139 	struct rcu_head			rcu_head;
140 };
141 
142 typedef struct blkcg_policy_data *(blkcg_pol_alloc_cpd_fn)(gfp_t gfp);
143 typedef void (blkcg_pol_init_cpd_fn)(struct blkcg_policy_data *cpd);
144 typedef void (blkcg_pol_free_cpd_fn)(struct blkcg_policy_data *cpd);
145 typedef void (blkcg_pol_bind_cpd_fn)(struct blkcg_policy_data *cpd);
146 typedef struct blkg_policy_data *(blkcg_pol_alloc_pd_fn)(gfp_t gfp,
147 				struct request_queue *q, struct blkcg *blkcg);
148 typedef void (blkcg_pol_init_pd_fn)(struct blkg_policy_data *pd);
149 typedef void (blkcg_pol_online_pd_fn)(struct blkg_policy_data *pd);
150 typedef void (blkcg_pol_offline_pd_fn)(struct blkg_policy_data *pd);
151 typedef void (blkcg_pol_free_pd_fn)(struct blkg_policy_data *pd);
152 typedef void (blkcg_pol_reset_pd_stats_fn)(struct blkg_policy_data *pd);
153 typedef size_t (blkcg_pol_stat_pd_fn)(struct blkg_policy_data *pd, char *buf,
154 				      size_t size);
155 
156 struct blkcg_policy {
157 	int				plid;
158 	/* cgroup files for the policy */
159 	struct cftype			*dfl_cftypes;
160 	struct cftype			*legacy_cftypes;
161 
162 	/* operations */
163 	blkcg_pol_alloc_cpd_fn		*cpd_alloc_fn;
164 	blkcg_pol_init_cpd_fn		*cpd_init_fn;
165 	blkcg_pol_free_cpd_fn		*cpd_free_fn;
166 	blkcg_pol_bind_cpd_fn		*cpd_bind_fn;
167 
168 	blkcg_pol_alloc_pd_fn		*pd_alloc_fn;
169 	blkcg_pol_init_pd_fn		*pd_init_fn;
170 	blkcg_pol_online_pd_fn		*pd_online_fn;
171 	blkcg_pol_offline_pd_fn		*pd_offline_fn;
172 	blkcg_pol_free_pd_fn		*pd_free_fn;
173 	blkcg_pol_reset_pd_stats_fn	*pd_reset_stats_fn;
174 	blkcg_pol_stat_pd_fn		*pd_stat_fn;
175 };
176 
177 extern struct blkcg blkcg_root;
178 extern struct cgroup_subsys_state * const blkcg_root_css;
179 extern bool blkcg_debug_stats;
180 
181 struct blkcg_gq *blkg_lookup_slowpath(struct blkcg *blkcg,
182 				      struct request_queue *q, bool update_hint);
183 int blkcg_init_queue(struct request_queue *q);
184 void blkcg_exit_queue(struct request_queue *q);
185 
186 /* Blkio controller policy registration */
187 int blkcg_policy_register(struct blkcg_policy *pol);
188 void blkcg_policy_unregister(struct blkcg_policy *pol);
189 int blkcg_activate_policy(struct request_queue *q,
190 			  const struct blkcg_policy *pol);
191 void blkcg_deactivate_policy(struct request_queue *q,
192 			     const struct blkcg_policy *pol);
193 
194 const char *blkg_dev_name(struct blkcg_gq *blkg);
195 void blkcg_print_blkgs(struct seq_file *sf, struct blkcg *blkcg,
196 		       u64 (*prfill)(struct seq_file *,
197 				     struct blkg_policy_data *, int),
198 		       const struct blkcg_policy *pol, int data,
199 		       bool show_total);
200 u64 __blkg_prfill_u64(struct seq_file *sf, struct blkg_policy_data *pd, u64 v);
201 
202 struct blkg_conf_ctx {
203 	struct gendisk			*disk;
204 	struct blkcg_gq			*blkg;
205 	char				*body;
206 };
207 
208 struct gendisk *blkcg_conf_get_disk(char **inputp);
209 int blkg_conf_prep(struct blkcg *blkcg, const struct blkcg_policy *pol,
210 		   char *input, struct blkg_conf_ctx *ctx);
211 void blkg_conf_finish(struct blkg_conf_ctx *ctx);
212 
213 /**
214  * blkcg_css - find the current css
215  *
216  * Find the css associated with either the kthread or the current task.
217  * This may return a dying css, so it is up to the caller to use tryget logic
218  * to confirm it is alive and well.
219  */
blkcg_css(void)220 static inline struct cgroup_subsys_state *blkcg_css(void)
221 {
222 	struct cgroup_subsys_state *css;
223 
224 	css = kthread_blkcg();
225 	if (css)
226 		return css;
227 	return task_css(current, io_cgrp_id);
228 }
229 
css_to_blkcg(struct cgroup_subsys_state * css)230 static inline struct blkcg *css_to_blkcg(struct cgroup_subsys_state *css)
231 {
232 	return css ? container_of(css, struct blkcg, css) : NULL;
233 }
234 
235 /**
236  * __bio_blkcg - internal, inconsistent version to get blkcg
237  *
238  * DO NOT USE.
239  * This function is inconsistent and consequently is dangerous to use.  The
240  * first part of the function returns a blkcg where a reference is owned by the
241  * bio.  This means it does not need to be rcu protected as it cannot go away
242  * with the bio owning a reference to it.  However, the latter potentially gets
243  * it from task_css().  This can race against task migration and the cgroup
244  * dying.  It is also semantically different as it must be called rcu protected
245  * and is susceptible to failure when trying to get a reference to it.
246  * Therefore, it is not ok to assume that *_get() will always succeed on the
247  * blkcg returned here.
248  */
__bio_blkcg(struct bio * bio)249 static inline struct blkcg *__bio_blkcg(struct bio *bio)
250 {
251 	if (bio && bio->bi_blkg)
252 		return bio->bi_blkg->blkcg;
253 	return css_to_blkcg(blkcg_css());
254 }
255 
256 /**
257  * bio_blkcg - grab the blkcg associated with a bio
258  * @bio: target bio
259  *
260  * This returns the blkcg associated with a bio, %NULL if not associated.
261  * Callers are expected to either handle %NULL or know association has been
262  * done prior to calling this.
263  */
bio_blkcg(struct bio * bio)264 static inline struct blkcg *bio_blkcg(struct bio *bio)
265 {
266 	if (bio && bio->bi_blkg)
267 		return bio->bi_blkg->blkcg;
268 	return NULL;
269 }
270 
blk_cgroup_congested(void)271 static inline bool blk_cgroup_congested(void)
272 {
273 	struct cgroup_subsys_state *css;
274 	bool ret = false;
275 
276 	rcu_read_lock();
277 	css = kthread_blkcg();
278 	if (!css)
279 		css = task_css(current, io_cgrp_id);
280 	while (css) {
281 		if (atomic_read(&css->cgroup->congestion_count)) {
282 			ret = true;
283 			break;
284 		}
285 		css = css->parent;
286 	}
287 	rcu_read_unlock();
288 	return ret;
289 }
290 
291 /**
292  * bio_issue_as_root_blkg - see if this bio needs to be issued as root blkg
293  * @return: true if this bio needs to be submitted with the root blkg context.
294  *
295  * In order to avoid priority inversions we sometimes need to issue a bio as if
296  * it were attached to the root blkg, and then backcharge to the actual owning
297  * blkg.  The idea is we do bio_blkcg() to look up the actual context for the
298  * bio and attach the appropriate blkg to the bio.  Then we call this helper and
299  * if it is true run with the root blkg for that queue and then do any
300  * backcharging to the originating cgroup once the io is complete.
301  */
bio_issue_as_root_blkg(struct bio * bio)302 static inline bool bio_issue_as_root_blkg(struct bio *bio)
303 {
304 	return (bio->bi_opf & (REQ_META | REQ_SWAP)) != 0;
305 }
306 
307 /**
308  * blkcg_parent - get the parent of a blkcg
309  * @blkcg: blkcg of interest
310  *
311  * Return the parent blkcg of @blkcg.  Can be called anytime.
312  */
blkcg_parent(struct blkcg * blkcg)313 static inline struct blkcg *blkcg_parent(struct blkcg *blkcg)
314 {
315 	return css_to_blkcg(blkcg->css.parent);
316 }
317 
318 /**
319  * __blkg_lookup - internal version of blkg_lookup()
320  * @blkcg: blkcg of interest
321  * @q: request_queue of interest
322  * @update_hint: whether to update lookup hint with the result or not
323  *
324  * This is internal version and shouldn't be used by policy
325  * implementations.  Looks up blkgs for the @blkcg - @q pair regardless of
326  * @q's bypass state.  If @update_hint is %true, the caller should be
327  * holding @q->queue_lock and lookup hint is updated on success.
328  */
__blkg_lookup(struct blkcg * blkcg,struct request_queue * q,bool update_hint)329 static inline struct blkcg_gq *__blkg_lookup(struct blkcg *blkcg,
330 					     struct request_queue *q,
331 					     bool update_hint)
332 {
333 	struct blkcg_gq *blkg;
334 
335 	if (blkcg == &blkcg_root)
336 		return q->root_blkg;
337 
338 	blkg = rcu_dereference(blkcg->blkg_hint);
339 	if (blkg && blkg->q == q)
340 		return blkg;
341 
342 	return blkg_lookup_slowpath(blkcg, q, update_hint);
343 }
344 
345 /**
346  * blkg_lookup - lookup blkg for the specified blkcg - q pair
347  * @blkcg: blkcg of interest
348  * @q: request_queue of interest
349  *
350  * Lookup blkg for the @blkcg - @q pair.  This function should be called
351  * under RCU read lock.
352  */
blkg_lookup(struct blkcg * blkcg,struct request_queue * q)353 static inline struct blkcg_gq *blkg_lookup(struct blkcg *blkcg,
354 					   struct request_queue *q)
355 {
356 	WARN_ON_ONCE(!rcu_read_lock_held());
357 	return __blkg_lookup(blkcg, q, false);
358 }
359 
360 /**
361  * blk_queue_root_blkg - return blkg for the (blkcg_root, @q) pair
362  * @q: request_queue of interest
363  *
364  * Lookup blkg for @q at the root level. See also blkg_lookup().
365  */
blk_queue_root_blkg(struct request_queue * q)366 static inline struct blkcg_gq *blk_queue_root_blkg(struct request_queue *q)
367 {
368 	return q->root_blkg;
369 }
370 
371 /**
372  * blkg_to_pdata - get policy private data
373  * @blkg: blkg of interest
374  * @pol: policy of interest
375  *
376  * Return pointer to private data associated with the @blkg-@pol pair.
377  */
blkg_to_pd(struct blkcg_gq * blkg,struct blkcg_policy * pol)378 static inline struct blkg_policy_data *blkg_to_pd(struct blkcg_gq *blkg,
379 						  struct blkcg_policy *pol)
380 {
381 	return blkg ? blkg->pd[pol->plid] : NULL;
382 }
383 
blkcg_to_cpd(struct blkcg * blkcg,struct blkcg_policy * pol)384 static inline struct blkcg_policy_data *blkcg_to_cpd(struct blkcg *blkcg,
385 						     struct blkcg_policy *pol)
386 {
387 	return blkcg ? blkcg->cpd[pol->plid] : NULL;
388 }
389 
390 /**
391  * pdata_to_blkg - get blkg associated with policy private data
392  * @pd: policy private data of interest
393  *
394  * @pd is policy private data.  Determine the blkg it's associated with.
395  */
pd_to_blkg(struct blkg_policy_data * pd)396 static inline struct blkcg_gq *pd_to_blkg(struct blkg_policy_data *pd)
397 {
398 	return pd ? pd->blkg : NULL;
399 }
400 
cpd_to_blkcg(struct blkcg_policy_data * cpd)401 static inline struct blkcg *cpd_to_blkcg(struct blkcg_policy_data *cpd)
402 {
403 	return cpd ? cpd->blkcg : NULL;
404 }
405 
406 extern void blkcg_destroy_blkgs(struct blkcg *blkcg);
407 
408 /**
409  * blkcg_pin_online - pin online state
410  * @blkcg: blkcg of interest
411  *
412  * While pinned, a blkcg is kept online.  This is primarily used to
413  * impedance-match blkg and cgwb lifetimes so that blkg doesn't go offline
414  * while an associated cgwb is still active.
415  */
blkcg_pin_online(struct blkcg * blkcg)416 static inline void blkcg_pin_online(struct blkcg *blkcg)
417 {
418 	refcount_inc(&blkcg->online_pin);
419 }
420 
421 /**
422  * blkcg_unpin_online - unpin online state
423  * @blkcg: blkcg of interest
424  *
425  * This is primarily used to impedance-match blkg and cgwb lifetimes so
426  * that blkg doesn't go offline while an associated cgwb is still active.
427  * When this count goes to zero, all active cgwbs have finished so the
428  * blkcg can continue destruction by calling blkcg_destroy_blkgs().
429  */
blkcg_unpin_online(struct blkcg * blkcg)430 static inline void blkcg_unpin_online(struct blkcg *blkcg)
431 {
432 	do {
433 		if (!refcount_dec_and_test(&blkcg->online_pin))
434 			break;
435 		blkcg_destroy_blkgs(blkcg);
436 		blkcg = blkcg_parent(blkcg);
437 	} while (blkcg);
438 }
439 
440 /**
441  * blkg_path - format cgroup path of blkg
442  * @blkg: blkg of interest
443  * @buf: target buffer
444  * @buflen: target buffer length
445  *
446  * Format the path of the cgroup of @blkg into @buf.
447  */
blkg_path(struct blkcg_gq * blkg,char * buf,int buflen)448 static inline int blkg_path(struct blkcg_gq *blkg, char *buf, int buflen)
449 {
450 	return cgroup_path(blkg->blkcg->css.cgroup, buf, buflen);
451 }
452 
453 /**
454  * blkg_get - get a blkg reference
455  * @blkg: blkg to get
456  *
457  * The caller should be holding an existing reference.
458  */
blkg_get(struct blkcg_gq * blkg)459 static inline void blkg_get(struct blkcg_gq *blkg)
460 {
461 	percpu_ref_get(&blkg->refcnt);
462 }
463 
464 /**
465  * blkg_tryget - try and get a blkg reference
466  * @blkg: blkg to get
467  *
468  * This is for use when doing an RCU lookup of the blkg.  We may be in the midst
469  * of freeing this blkg, so we can only use it if the refcnt is not zero.
470  */
blkg_tryget(struct blkcg_gq * blkg)471 static inline bool blkg_tryget(struct blkcg_gq *blkg)
472 {
473 	return blkg && percpu_ref_tryget(&blkg->refcnt);
474 }
475 
476 /**
477  * blkg_put - put a blkg reference
478  * @blkg: blkg to put
479  */
blkg_put(struct blkcg_gq * blkg)480 static inline void blkg_put(struct blkcg_gq *blkg)
481 {
482 	percpu_ref_put(&blkg->refcnt);
483 }
484 
485 /**
486  * blkg_for_each_descendant_pre - pre-order walk of a blkg's descendants
487  * @d_blkg: loop cursor pointing to the current descendant
488  * @pos_css: used for iteration
489  * @p_blkg: target blkg to walk descendants of
490  *
491  * Walk @c_blkg through the descendants of @p_blkg.  Must be used with RCU
492  * read locked.  If called under either blkcg or queue lock, the iteration
493  * is guaranteed to include all and only online blkgs.  The caller may
494  * update @pos_css by calling css_rightmost_descendant() to skip subtree.
495  * @p_blkg is included in the iteration and the first node to be visited.
496  */
497 #define blkg_for_each_descendant_pre(d_blkg, pos_css, p_blkg)		\
498 	css_for_each_descendant_pre((pos_css), &(p_blkg)->blkcg->css)	\
499 		if (((d_blkg) = __blkg_lookup(css_to_blkcg(pos_css),	\
500 					      (p_blkg)->q, false)))
501 
502 /**
503  * blkg_for_each_descendant_post - post-order walk of a blkg's descendants
504  * @d_blkg: loop cursor pointing to the current descendant
505  * @pos_css: used for iteration
506  * @p_blkg: target blkg to walk descendants of
507  *
508  * Similar to blkg_for_each_descendant_pre() but performs post-order
509  * traversal instead.  Synchronization rules are the same.  @p_blkg is
510  * included in the iteration and the last node to be visited.
511  */
512 #define blkg_for_each_descendant_post(d_blkg, pos_css, p_blkg)		\
513 	css_for_each_descendant_post((pos_css), &(p_blkg)->blkcg->css)	\
514 		if (((d_blkg) = __blkg_lookup(css_to_blkcg(pos_css),	\
515 					      (p_blkg)->q, false)))
516 
517 bool __blkcg_punt_bio_submit(struct bio *bio);
518 
blkcg_punt_bio_submit(struct bio * bio)519 static inline bool blkcg_punt_bio_submit(struct bio *bio)
520 {
521 	if (bio->bi_opf & REQ_CGROUP_PUNT)
522 		return __blkcg_punt_bio_submit(bio);
523 	else
524 		return false;
525 }
526 
blkcg_bio_issue_init(struct bio * bio)527 static inline void blkcg_bio_issue_init(struct bio *bio)
528 {
529 	bio_issue_init(&bio->bi_issue, bio_sectors(bio));
530 }
531 
blkcg_use_delay(struct blkcg_gq * blkg)532 static inline void blkcg_use_delay(struct blkcg_gq *blkg)
533 {
534 	if (WARN_ON_ONCE(atomic_read(&blkg->use_delay) < 0))
535 		return;
536 	if (atomic_add_return(1, &blkg->use_delay) == 1)
537 		atomic_inc(&blkg->blkcg->css.cgroup->congestion_count);
538 }
539 
blkcg_unuse_delay(struct blkcg_gq * blkg)540 static inline int blkcg_unuse_delay(struct blkcg_gq *blkg)
541 {
542 	int old = atomic_read(&blkg->use_delay);
543 
544 	if (WARN_ON_ONCE(old < 0))
545 		return 0;
546 	if (old == 0)
547 		return 0;
548 
549 	/*
550 	 * We do this song and dance because we can race with somebody else
551 	 * adding or removing delay.  If we just did an atomic_dec we'd end up
552 	 * negative and we'd already be in trouble.  We need to subtract 1 and
553 	 * then check to see if we were the last delay so we can drop the
554 	 * congestion count on the cgroup.
555 	 */
556 	while (old) {
557 		int cur = atomic_cmpxchg(&blkg->use_delay, old, old - 1);
558 		if (cur == old)
559 			break;
560 		old = cur;
561 	}
562 
563 	if (old == 0)
564 		return 0;
565 	if (old == 1)
566 		atomic_dec(&blkg->blkcg->css.cgroup->congestion_count);
567 	return 1;
568 }
569 
570 /**
571  * blkcg_set_delay - Enable allocator delay mechanism with the specified delay amount
572  * @blkg: target blkg
573  * @delay: delay duration in nsecs
574  *
575  * When enabled with this function, the delay is not decayed and must be
576  * explicitly cleared with blkcg_clear_delay(). Must not be mixed with
577  * blkcg_[un]use_delay() and blkcg_add_delay() usages.
578  */
blkcg_set_delay(struct blkcg_gq * blkg,u64 delay)579 static inline void blkcg_set_delay(struct blkcg_gq *blkg, u64 delay)
580 {
581 	int old = atomic_read(&blkg->use_delay);
582 
583 	/* We only want 1 person setting the congestion count for this blkg. */
584 	if (!old && atomic_cmpxchg(&blkg->use_delay, old, -1) == old)
585 		atomic_inc(&blkg->blkcg->css.cgroup->congestion_count);
586 
587 	atomic64_set(&blkg->delay_nsec, delay);
588 }
589 
590 /**
591  * blkcg_clear_delay - Disable allocator delay mechanism
592  * @blkg: target blkg
593  *
594  * Disable use_delay mechanism. See blkcg_set_delay().
595  */
blkcg_clear_delay(struct blkcg_gq * blkg)596 static inline void blkcg_clear_delay(struct blkcg_gq *blkg)
597 {
598 	int old = atomic_read(&blkg->use_delay);
599 
600 	/* We only want 1 person clearing the congestion count for this blkg. */
601 	if (old && atomic_cmpxchg(&blkg->use_delay, old, 0) == old)
602 		atomic_dec(&blkg->blkcg->css.cgroup->congestion_count);
603 }
604 
605 /**
606  * blk_cgroup_mergeable - Determine whether to allow or disallow merges
607  * @rq: request to merge into
608  * @bio: bio to merge
609  *
610  * @bio and @rq should belong to the same cgroup and their issue_as_root should
611  * match. The latter is necessary as we don't want to throttle e.g. a metadata
612  * update because it happens to be next to a regular IO.
613  */
blk_cgroup_mergeable(struct request * rq,struct bio * bio)614 static inline bool blk_cgroup_mergeable(struct request *rq, struct bio *bio)
615 {
616 	return rq->bio->bi_blkg == bio->bi_blkg &&
617 		bio_issue_as_root_blkg(rq->bio) == bio_issue_as_root_blkg(bio);
618 }
619 
620 void blk_cgroup_bio_start(struct bio *bio);
621 void blkcg_add_delay(struct blkcg_gq *blkg, u64 now, u64 delta);
622 void blkcg_schedule_throttle(struct request_queue *q, bool use_memdelay);
623 void blkcg_maybe_throttle_current(void);
624 #else	/* CONFIG_BLK_CGROUP */
625 
626 struct blkcg {
627 };
628 
629 struct blkg_policy_data {
630 };
631 
632 struct blkcg_policy_data {
633 };
634 
635 struct blkcg_gq {
636 };
637 
638 struct blkcg_policy {
639 };
640 
641 #define blkcg_root_css	((struct cgroup_subsys_state *)ERR_PTR(-EINVAL))
642 
blkcg_maybe_throttle_current(void)643 static inline void blkcg_maybe_throttle_current(void) { }
blk_cgroup_congested(void)644 static inline bool blk_cgroup_congested(void) { return false; }
645 
646 #ifdef CONFIG_BLOCK
647 
blkcg_schedule_throttle(struct request_queue * q,bool use_memdelay)648 static inline void blkcg_schedule_throttle(struct request_queue *q, bool use_memdelay) { }
649 
blkg_lookup(struct blkcg * blkcg,void * key)650 static inline struct blkcg_gq *blkg_lookup(struct blkcg *blkcg, void *key) { return NULL; }
blk_queue_root_blkg(struct request_queue * q)651 static inline struct blkcg_gq *blk_queue_root_blkg(struct request_queue *q)
652 { return NULL; }
blkcg_init_queue(struct request_queue * q)653 static inline int blkcg_init_queue(struct request_queue *q) { return 0; }
blkcg_exit_queue(struct request_queue * q)654 static inline void blkcg_exit_queue(struct request_queue *q) { }
blkcg_policy_register(struct blkcg_policy * pol)655 static inline int blkcg_policy_register(struct blkcg_policy *pol) { return 0; }
blkcg_policy_unregister(struct blkcg_policy * pol)656 static inline void blkcg_policy_unregister(struct blkcg_policy *pol) { }
blkcg_activate_policy(struct request_queue * q,const struct blkcg_policy * pol)657 static inline int blkcg_activate_policy(struct request_queue *q,
658 					const struct blkcg_policy *pol) { return 0; }
blkcg_deactivate_policy(struct request_queue * q,const struct blkcg_policy * pol)659 static inline void blkcg_deactivate_policy(struct request_queue *q,
660 					   const struct blkcg_policy *pol) { }
661 
__bio_blkcg(struct bio * bio)662 static inline struct blkcg *__bio_blkcg(struct bio *bio) { return NULL; }
bio_blkcg(struct bio * bio)663 static inline struct blkcg *bio_blkcg(struct bio *bio) { return NULL; }
664 
blkg_to_pd(struct blkcg_gq * blkg,struct blkcg_policy * pol)665 static inline struct blkg_policy_data *blkg_to_pd(struct blkcg_gq *blkg,
666 						  struct blkcg_policy *pol) { return NULL; }
pd_to_blkg(struct blkg_policy_data * pd)667 static inline struct blkcg_gq *pd_to_blkg(struct blkg_policy_data *pd) { return NULL; }
blkg_path(struct blkcg_gq * blkg)668 static inline char *blkg_path(struct blkcg_gq *blkg) { return NULL; }
blkg_get(struct blkcg_gq * blkg)669 static inline void blkg_get(struct blkcg_gq *blkg) { }
blkg_put(struct blkcg_gq * blkg)670 static inline void blkg_put(struct blkcg_gq *blkg) { }
671 
blkcg_punt_bio_submit(struct bio * bio)672 static inline bool blkcg_punt_bio_submit(struct bio *bio) { return false; }
blkcg_bio_issue_init(struct bio * bio)673 static inline void blkcg_bio_issue_init(struct bio *bio) { }
blk_cgroup_bio_start(struct bio * bio)674 static inline void blk_cgroup_bio_start(struct bio *bio) { }
blk_cgroup_mergeable(struct request * rq,struct bio * bio)675 static inline bool blk_cgroup_mergeable(struct request *rq, struct bio *bio) { return true; }
676 
677 #define blk_queue_for_each_rl(rl, q)	\
678 	for ((rl) = &(q)->root_rl; (rl); (rl) = NULL)
679 
680 #endif	/* CONFIG_BLOCK */
681 #endif	/* CONFIG_BLK_CGROUP */
682 #endif	/* _BLK_CGROUP_H */
683