blk-mq.h 9.8 KB
Newer Older
1
/* SPDX-License-Identifier: GPL-2.0 */
2 3 4
#ifndef INT_BLK_MQ_H
#define INT_BLK_MQ_H

5
#include "blk-stat.h"
6
#include "blk-mq-tag.h"
7

8 9
struct blk_mq_tag_set;

10 11 12 13 14
struct blk_mq_ctxs {
	struct kobject kobj;
	struct blk_mq_ctx __percpu	*queue_ctx;
};

15 16 17
/**
 * struct blk_mq_ctx - State for a software queue facing the submitting CPUs
 */
18 19 20
struct blk_mq_ctx {
	struct {
		spinlock_t		lock;
M
Ming Lei 已提交
21 22
		struct list_head	rq_lists[HCTX_MAX_TYPES];
	} ____cacheline_aligned_in_smp;
23 24

	unsigned int		cpu;
25
	unsigned short		index_hw[HCTX_MAX_TYPES];
26
	struct blk_mq_hw_ctx 	*hctxs[HCTX_MAX_TYPES];
27 28 29 30 31 32 33 34 35

	/* incremented at dispatch time */
	unsigned long		rq_dispatched[2];
	unsigned long		rq_merged;

	/* incremented at completion time */
	unsigned long		____cacheline_aligned_in_smp rq_completed[2];

	struct request_queue	*queue;
36
	struct blk_mq_ctxs      *ctxs;
37
	struct kobject		kobj;
38
} ____cacheline_aligned_in_smp;
39

40
void blk_mq_exit_queue(struct request_queue *q);
41
int blk_mq_update_nr_requests(struct request_queue *q, unsigned int nr);
42
void blk_mq_wake_waiters(struct request_queue *q);
43 44
bool blk_mq_dispatch_rq_list(struct blk_mq_hw_ctx *hctx, struct list_head *,
			     unsigned int);
45 46
void blk_mq_add_to_requeue_list(struct request *rq, bool at_head,
				bool kick_requeue_list);
47
void blk_mq_flush_busy_ctxs(struct blk_mq_hw_ctx *hctx, struct list_head *list);
48 49
struct request *blk_mq_dequeue_from_ctx(struct blk_mq_hw_ctx *hctx,
					struct blk_mq_ctx *start);
50 51 52 53

/*
 * Internal helpers for allocating/freeing the request map
 */
54 55
void blk_mq_free_rqs(struct blk_mq_tag_set *set, struct blk_mq_tags *tags,
		     unsigned int hctx_idx);
56
void blk_mq_free_rq_map(struct blk_mq_tags *tags, unsigned int flags);
57 58 59
struct blk_mq_tags *blk_mq_alloc_rq_map(struct blk_mq_tag_set *set,
					unsigned int hctx_idx,
					unsigned int nr_tags,
60 61
					unsigned int reserved_tags,
					unsigned int flags);
62 63
int blk_mq_alloc_rqs(struct blk_mq_tag_set *set, struct blk_mq_tags *tags,
		     unsigned int hctx_idx, unsigned int depth);
64 65 66 67 68 69

/*
 * Internal helpers for request insertion into sw queues
 */
void __blk_mq_insert_request(struct blk_mq_hw_ctx *hctx, struct request *rq,
				bool at_head);
70 71
void blk_mq_request_bypass_insert(struct request *rq, bool at_head,
				  bool run_queue);
72 73
void blk_mq_insert_requests(struct blk_mq_hw_ctx *hctx, struct blk_mq_ctx *ctx,
				struct list_head *list);
74

75 76
/* Used by blk_insert_cloned_request() to issue request directly */
blk_status_t blk_mq_request_issue_directly(struct request *rq, bool last);
77 78
void blk_mq_try_issue_list_directly(struct blk_mq_hw_ctx *hctx,
				    struct list_head *list);
79

80 81 82
/*
 * CPU -> queue mappings
 */
J
Jens Axboe 已提交
83
extern int blk_mq_hw_queue_to_node(struct blk_mq_queue_map *qmap, unsigned int);
84

J
Jens Axboe 已提交
85 86 87
/*
 * blk_mq_map_queue_type() - map (hctx_type,cpu) to hardware queue
 * @q: request queue
88
 * @type: the hctx type index
J
Jens Axboe 已提交
89 90 91
 * @cpu: CPU
 */
static inline struct blk_mq_hw_ctx *blk_mq_map_queue_type(struct request_queue *q,
92
							  enum hctx_type type,
J
Jens Axboe 已提交
93
							  unsigned int cpu)
C
Christoph Hellwig 已提交
94
{
95
	return q->queue_hw_ctx[q->tag_set->map[type].mq_map[cpu]];
C
Christoph Hellwig 已提交
96 97
}

J
Jens Axboe 已提交
98 99 100 101
/*
 * blk_mq_map_queue() - map (cmd_flags,type) to hardware queue
 * @q: request queue
 * @flags: request command flags
102
 * @ctx: software queue cpu ctx
J
Jens Axboe 已提交
103 104 105
 */
static inline struct blk_mq_hw_ctx *blk_mq_map_queue(struct request_queue *q,
						     unsigned int flags,
106
						     struct blk_mq_ctx *ctx)
107
{
108 109
	enum hctx_type type = HCTX_TYPE_DEFAULT;

110 111 112 113
	/*
	 * The caller ensure that if REQ_HIPRI, poll must be enabled.
	 */
	if (flags & REQ_HIPRI)
114
		type = HCTX_TYPE_POLL;
115
	else if ((flags & REQ_OP_MASK) == REQ_OP_READ)
116
		type = HCTX_TYPE_READ;
117
	
118
	return ctx->hctxs[type];
119 120
}

121 122 123
/*
 * sysfs helpers
 */
124
extern void blk_mq_sysfs_init(struct request_queue *q);
125
extern void blk_mq_sysfs_deinit(struct request_queue *q);
126
extern int __blk_mq_register_dev(struct device *dev, struct request_queue *q);
127 128
extern int blk_mq_sysfs_register(struct request_queue *q);
extern void blk_mq_sysfs_unregister(struct request_queue *q);
K
Keith Busch 已提交
129
extern void blk_mq_hctx_kobj_init(struct blk_mq_hw_ctx *hctx);
130

131 132
void blk_mq_release(struct request_queue *q);

133 134 135 136 137 138 139 140 141 142 143 144 145 146
static inline struct blk_mq_ctx *__blk_mq_get_ctx(struct request_queue *q,
					   unsigned int cpu)
{
	return per_cpu_ptr(q->queue_ctx, cpu);
}

/*
 * This assumes per-cpu software queueing queues. They could be per-node
 * as well, for instance. For now this is hardcoded as-is. Note that we don't
 * care about preemption, since we know the ctx's are persistent. This does
 * mean that we can't rely on ctx always matching the currently running CPU.
 */
static inline struct blk_mq_ctx *blk_mq_get_ctx(struct request_queue *q)
{
147
	return __blk_mq_get_ctx(q, raw_smp_processor_id());
148 149
}

150 151 152
struct blk_mq_alloc_data {
	/* input parameter */
	struct request_queue *q;
153
	blk_mq_req_flags_t flags;
154
	unsigned int shallow_depth;
155
	unsigned int cmd_flags;
156 157 158 159 160 161

	/* input & output parameter */
	struct blk_mq_ctx *ctx;
	struct blk_mq_hw_ctx *hctx;
};

162 163 164 165 166
static inline bool blk_mq_is_sbitmap_shared(unsigned int flags)
{
	return flags & BLK_MQ_F_TAG_HCTX_SHARED;
}

167 168
static inline struct blk_mq_tags *blk_mq_tags_from_data(struct blk_mq_alloc_data *data)
{
169
	if (data->q->elevator)
170 171
		return data->hctx->sched_tags;

172 173 174
	return data->hctx->tags;
}

175 176 177 178 179
static inline bool blk_mq_hctx_stopped(struct blk_mq_hw_ctx *hctx)
{
	return test_bit(BLK_MQ_S_STOPPED, &hctx->state);
}

180 181 182 183 184
static inline bool blk_mq_hw_queue_mapped(struct blk_mq_hw_ctx *hctx)
{
	return hctx->nr_ctx && hctx->tags;
}

185 186 187 188
unsigned int blk_mq_in_flight(struct request_queue *q,
		struct block_device *part);
void blk_mq_in_flight_rw(struct request_queue *q, struct block_device *part,
		unsigned int inflight[2]);
189

190 191
static inline void blk_mq_put_dispatch_budget(struct request_queue *q,
					      int budget_token)
192 193
{
	if (q->mq_ops->put_budget)
194
		q->mq_ops->put_budget(q, budget_token);
195 196
}

197
static inline int blk_mq_get_dispatch_budget(struct request_queue *q)
198 199
{
	if (q->mq_ops->get_budget)
200
		return q->mq_ops->get_budget(q);
201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217
	return 0;
}

static inline void blk_mq_set_rq_budget_token(struct request *rq, int token)
{
	if (token < 0)
		return;

	if (rq->q->mq_ops->set_rq_budget_token)
		rq->q->mq_ops->set_rq_budget_token(rq, token);
}

static inline int blk_mq_get_rq_budget_token(struct request *rq)
{
	if (rq->q->mq_ops->get_rq_budget_token)
		return rq->q->mq_ops->get_rq_budget_token(rq);
	return -1;
218 219
}

220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241
static inline void __blk_mq_inc_active_requests(struct blk_mq_hw_ctx *hctx)
{
	if (blk_mq_is_sbitmap_shared(hctx->flags))
		atomic_inc(&hctx->queue->nr_active_requests_shared_sbitmap);
	else
		atomic_inc(&hctx->nr_active);
}

static inline void __blk_mq_dec_active_requests(struct blk_mq_hw_ctx *hctx)
{
	if (blk_mq_is_sbitmap_shared(hctx->flags))
		atomic_dec(&hctx->queue->nr_active_requests_shared_sbitmap);
	else
		atomic_dec(&hctx->nr_active);
}

static inline int __blk_mq_active_requests(struct blk_mq_hw_ctx *hctx)
{
	if (blk_mq_is_sbitmap_shared(hctx->flags))
		return atomic_read(&hctx->queue->nr_active_requests_shared_sbitmap);
	return atomic_read(&hctx->nr_active);
}
242 243 244 245 246 247 248 249
static inline void __blk_mq_put_driver_tag(struct blk_mq_hw_ctx *hctx,
					   struct request *rq)
{
	blk_mq_put_tag(hctx->tags, rq->mq_ctx, rq->tag);
	rq->tag = BLK_MQ_NO_TAG;

	if (rq->rq_flags & RQF_MQ_INFLIGHT) {
		rq->rq_flags &= ~RQF_MQ_INFLIGHT;
250
		__blk_mq_dec_active_requests(hctx);
251 252 253 254 255 256 257 258 259 260 261
	}
}

static inline void blk_mq_put_driver_tag(struct request *rq)
{
	if (rq->tag == BLK_MQ_NO_TAG || rq->internal_tag == BLK_MQ_NO_TAG)
		return;

	__blk_mq_put_driver_tag(rq->mq_hctx, rq);
}

J
Jens Axboe 已提交
262
static inline void blk_mq_clear_mq_map(struct blk_mq_queue_map *qmap)
263 264 265 266
{
	int cpu;

	for_each_possible_cpu(cpu)
J
Jens Axboe 已提交
267
		qmap->mq_map[cpu] = 0;
268 269
}

270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301
/*
 * blk_mq_plug() - Get caller context plug
 * @q: request queue
 * @bio : the bio being submitted by the caller context
 *
 * Plugging, by design, may delay the insertion of BIOs into the elevator in
 * order to increase BIO merging opportunities. This however can cause BIO
 * insertion order to change from the order in which submit_bio() is being
 * executed in the case of multiple contexts concurrently issuing BIOs to a
 * device, even if these context are synchronized to tightly control BIO issuing
 * order. While this is not a problem with regular block devices, this ordering
 * change can cause write BIO failures with zoned block devices as these
 * require sequential write patterns to zones. Prevent this from happening by
 * ignoring the plug state of a BIO issuing context if the target request queue
 * is for a zoned block device and the BIO to plug is a write operation.
 *
 * Return current->plug if the bio can be plugged and NULL otherwise
 */
static inline struct blk_plug *blk_mq_plug(struct request_queue *q,
					   struct bio *bio)
{
	/*
	 * For regular block devices or read operations, use the context plug
	 * which may be NULL if blk_start_plug() was not executed.
	 */
	if (!blk_queue_is_zoned(q) || !op_is_write(bio_op(bio)))
		return current->plug;

	/* Zoned block device write operation case: do not plug the BIO */
	return NULL;
}

J
John Garry 已提交
302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318 319
/*
 * For shared tag users, we track the number of currently active users
 * and attempt to provide a fair share of the tag depth for each of them.
 */
static inline bool hctx_may_queue(struct blk_mq_hw_ctx *hctx,
				  struct sbitmap_queue *bt)
{
	unsigned int depth, users;

	if (!hctx || !(hctx->flags & BLK_MQ_F_TAG_QUEUE_SHARED))
		return true;

	/*
	 * Don't try dividing an ant
	 */
	if (bt->sb.depth == 1)
		return true;

320 321 322 323
	if (blk_mq_is_sbitmap_shared(hctx->flags)) {
		struct request_queue *q = hctx->queue;
		struct blk_mq_tag_set *set = q->tag_set;

324
		if (!test_bit(QUEUE_FLAG_HCTX_ACTIVE, &q->queue_flags))
325 326 327 328 329 330 331 332
			return true;
		users = atomic_read(&set->active_queues_shared_sbitmap);
	} else {
		if (!test_bit(BLK_MQ_S_TAG_ACTIVE, &hctx->state))
			return true;
		users = atomic_read(&hctx->tags->active_queues);
	}

J
John Garry 已提交
333 334 335 336 337 338 339
	if (!users)
		return true;

	/*
	 * Allow at least some tags
	 */
	depth = max((bt->sb.depth + users - 1) / users, 4U);
340
	return __blk_mq_active_requests(hctx) < depth;
J
John Garry 已提交
341 342 343
}


344
#endif