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b2441318 1// SPDX-License-Identifier: GPL-2.0
86db1e29
JA
2/*
3 * Functions related to io context handling
4 */
5#include <linux/kernel.h>
6#include <linux/module.h>
7#include <linux/init.h>
8#include <linux/bio.h>
9#include <linux/blkdev.h>
5a0e3ad6 10#include <linux/slab.h>
f719ff9b 11#include <linux/sched/task.h>
86db1e29
JA
12
13#include "blk.h"
14
15/*
16 * For io context allocations
17 */
18static struct kmem_cache *iocontext_cachep;
19
6e736be7
TH
20/**
21 * get_io_context - increment reference count to io_context
22 * @ioc: io_context to get
23 *
24 * Increment reference count to @ioc.
25 */
26void get_io_context(struct io_context *ioc)
27{
28 BUG_ON(atomic_long_read(&ioc->refcount) <= 0);
29 atomic_long_inc(&ioc->refcount);
30}
6e736be7 31
7e5a8794
TH
32static void icq_free_icq_rcu(struct rcu_head *head)
33{
34 struct io_cq *icq = container_of(head, struct io_cq, __rcu_head);
35
36 kmem_cache_free(icq->__rcu_icq_cache, icq);
37}
38
3d492c2e 39/*
7b36a718
JA
40 * Exit an icq. Called with ioc locked for blk-mq, and with both ioc
41 * and queue locked for legacy.
3d492c2e 42 */
7e5a8794 43static void ioc_exit_icq(struct io_cq *icq)
621032ad
TH
44{
45 struct elevator_type *et = icq->q->elevator->type;
46
47 if (icq->flags & ICQ_EXITED)
48 return;
49
f9cd4bfe
JA
50 if (et->ops.exit_icq)
51 et->ops.exit_icq(icq);
621032ad
TH
52
53 icq->flags |= ICQ_EXITED;
54}
55
7b36a718
JA
56/*
57 * Release an icq. Called with ioc locked for blk-mq, and with both ioc
58 * and queue locked for legacy.
59 */
621032ad 60static void ioc_destroy_icq(struct io_cq *icq)
7e5a8794
TH
61{
62 struct io_context *ioc = icq->ioc;
63 struct request_queue *q = icq->q;
64 struct elevator_type *et = q->elevator->type;
65
66 lockdep_assert_held(&ioc->lock);
7e5a8794
TH
67
68 radix_tree_delete(&ioc->icq_tree, icq->q->id);
69 hlist_del_init(&icq->ioc_node);
70 list_del_init(&icq->q_node);
71
72 /*
73 * Both setting lookup hint to and clearing it from @icq are done
74 * under queue_lock. If it's not pointing to @icq now, it never
75 * will. Hint assignment itself can race safely.
76 */
ec6c676a 77 if (rcu_access_pointer(ioc->icq_hint) == icq)
7e5a8794
TH
78 rcu_assign_pointer(ioc->icq_hint, NULL);
79
621032ad 80 ioc_exit_icq(icq);
7e5a8794
TH
81
82 /*
83 * @icq->q might have gone away by the time RCU callback runs
84 * making it impossible to determine icq_cache. Record it in @icq.
85 */
86 icq->__rcu_icq_cache = et->icq_cache;
30a2da7b 87 icq->flags |= ICQ_DESTROYED;
7e5a8794
TH
88 call_rcu(&icq->__rcu_head, icq_free_icq_rcu);
89}
90
b2efa052
TH
91/*
92 * Slow path for ioc release in put_io_context(). Performs double-lock
c5869807 93 * dancing to unlink all icq's and then frees ioc.
b2efa052
TH
94 */
95static void ioc_release_fn(struct work_struct *work)
86db1e29 96{
b2efa052
TH
97 struct io_context *ioc = container_of(work, struct io_context,
98 release_work);
d8c66c5d 99 unsigned long flags;
b2efa052 100
d8c66c5d
TH
101 /*
102 * Exiting icq may call into put_io_context() through elevator
103 * which will trigger lockdep warning. The ioc's are guaranteed to
104 * be different, use a different locking subclass here. Use
105 * irqsave variant as there's no spin_lock_irq_nested().
106 */
107 spin_lock_irqsave_nested(&ioc->lock, flags, 1);
b2efa052 108
c5869807
TH
109 while (!hlist_empty(&ioc->icq_list)) {
110 struct io_cq *icq = hlist_entry(ioc->icq_list.first,
111 struct io_cq, ioc_node);
2274b029
TH
112 struct request_queue *q = icq->q;
113
0d945c1f 114 if (spin_trylock(&q->queue_lock)) {
621032ad 115 ioc_destroy_icq(icq);
0d945c1f 116 spin_unlock(&q->queue_lock);
2274b029
TH
117 } else {
118 spin_unlock_irqrestore(&ioc->lock, flags);
119 cpu_relax();
120 spin_lock_irqsave_nested(&ioc->lock, flags, 1);
b2efa052 121 }
b2efa052 122 }
ffc4e759 123
2274b029 124 spin_unlock_irqrestore(&ioc->lock, flags);
b2efa052
TH
125
126 kmem_cache_free(iocontext_cachep, ioc);
86db1e29
JA
127}
128
42ec57a8
TH
129/**
130 * put_io_context - put a reference of io_context
131 * @ioc: io_context to put
132 *
133 * Decrement reference count of @ioc and release it if the count reaches
11a3122f 134 * zero.
86db1e29 135 */
11a3122f 136void put_io_context(struct io_context *ioc)
86db1e29 137{
b2efa052 138 unsigned long flags;
ff8c1474 139 bool free_ioc = false;
b2efa052 140
86db1e29 141 if (ioc == NULL)
42ec57a8 142 return;
86db1e29 143
42ec57a8 144 BUG_ON(atomic_long_read(&ioc->refcount) <= 0);
86db1e29 145
b2efa052 146 /*
11a3122f
TH
147 * Releasing ioc requires reverse order double locking and we may
148 * already be holding a queue_lock. Do it asynchronously from wq.
b2efa052 149 */
11a3122f
TH
150 if (atomic_long_dec_and_test(&ioc->refcount)) {
151 spin_lock_irqsave(&ioc->lock, flags);
152 if (!hlist_empty(&ioc->icq_list))
695588f9
VK
153 queue_work(system_power_efficient_wq,
154 &ioc->release_work);
ff8c1474
XF
155 else
156 free_ioc = true;
11a3122f 157 spin_unlock_irqrestore(&ioc->lock, flags);
b2efa052 158 }
ff8c1474
XF
159
160 if (free_ioc)
161 kmem_cache_free(iocontext_cachep, ioc);
86db1e29
JA
162}
163
f6e8d01b
TH
164/**
165 * put_io_context_active - put active reference on ioc
166 * @ioc: ioc of interest
167 *
168 * Undo get_io_context_active(). If active reference reaches zero after
169 * put, @ioc can never issue further IOs and ioscheds are notified.
170 */
171void put_io_context_active(struct io_context *ioc)
86db1e29 172{
621032ad 173 unsigned long flags;
f6e8d01b 174 struct io_cq *icq;
86db1e29 175
f6e8d01b 176 if (!atomic_dec_and_test(&ioc->active_ref)) {
621032ad
TH
177 put_io_context(ioc);
178 return;
179 }
180
181 /*
182 * Need ioc lock to walk icq_list and q lock to exit icq. Perform
183 * reverse double locking. Read comment in ioc_release_fn() for
184 * explanation on the nested locking annotation.
185 */
621032ad 186 spin_lock_irqsave_nested(&ioc->lock, flags, 1);
b67bfe0d 187 hlist_for_each_entry(icq, &ioc->icq_list, ioc_node) {
621032ad
TH
188 if (icq->flags & ICQ_EXITED)
189 continue;
3d492c2e 190
a1ce35fa 191 ioc_exit_icq(icq);
621032ad
TH
192 }
193 spin_unlock_irqrestore(&ioc->lock, flags);
194
11a3122f 195 put_io_context(ioc);
86db1e29
JA
196}
197
f6e8d01b
TH
198/* Called by the exiting task */
199void exit_io_context(struct task_struct *task)
200{
201 struct io_context *ioc;
202
203 task_lock(task);
204 ioc = task->io_context;
205 task->io_context = NULL;
206 task_unlock(task);
207
208 atomic_dec(&ioc->nr_tasks);
209 put_io_context_active(ioc);
210}
211
7b36a718
JA
212static void __ioc_clear_queue(struct list_head *icq_list)
213{
214 unsigned long flags;
215
30a2da7b 216 rcu_read_lock();
7b36a718
JA
217 while (!list_empty(icq_list)) {
218 struct io_cq *icq = list_entry(icq_list->next,
a1ce35fa 219 struct io_cq, q_node);
7b36a718
JA
220 struct io_context *ioc = icq->ioc;
221
222 spin_lock_irqsave(&ioc->lock, flags);
30a2da7b
ST
223 if (icq->flags & ICQ_DESTROYED) {
224 spin_unlock_irqrestore(&ioc->lock, flags);
225 continue;
226 }
7b36a718
JA
227 ioc_destroy_icq(icq);
228 spin_unlock_irqrestore(&ioc->lock, flags);
229 }
30a2da7b 230 rcu_read_unlock();
7b36a718
JA
231}
232
7e5a8794
TH
233/**
234 * ioc_clear_queue - break any ioc association with the specified queue
235 * @q: request_queue being cleared
236 *
7b36a718 237 * Walk @q->icq_list and exit all io_cq's.
7e5a8794
TH
238 */
239void ioc_clear_queue(struct request_queue *q)
240{
7b36a718 241 LIST_HEAD(icq_list);
7e5a8794 242
0d945c1f 243 spin_lock_irq(&q->queue_lock);
7b36a718 244 list_splice_init(&q->icq_list, &icq_list);
0d945c1f 245 spin_unlock_irq(&q->queue_lock);
7e5a8794 246
a1ce35fa 247 __ioc_clear_queue(&icq_list);
7e5a8794
TH
248}
249
24acfc34 250int create_task_io_context(struct task_struct *task, gfp_t gfp_flags, int node)
86db1e29 251{
df415656 252 struct io_context *ioc;
3c9c708c 253 int ret;
86db1e29 254
42ec57a8
TH
255 ioc = kmem_cache_alloc_node(iocontext_cachep, gfp_flags | __GFP_ZERO,
256 node);
257 if (unlikely(!ioc))
24acfc34 258 return -ENOMEM;
42ec57a8
TH
259
260 /* initialize */
261 atomic_long_set(&ioc->refcount, 1);
4638a83e 262 atomic_set(&ioc->nr_tasks, 1);
f6e8d01b 263 atomic_set(&ioc->active_ref, 1);
42ec57a8 264 spin_lock_init(&ioc->lock);
c137969b 265 INIT_RADIX_TREE(&ioc->icq_tree, GFP_ATOMIC);
c5869807 266 INIT_HLIST_HEAD(&ioc->icq_list);
b2efa052 267 INIT_WORK(&ioc->release_work, ioc_release_fn);
86db1e29 268
fd638368
TH
269 /*
270 * Try to install. ioc shouldn't be installed if someone else
271 * already did or @task, which isn't %current, is exiting. Note
272 * that we need to allow ioc creation on exiting %current as exit
273 * path may issue IOs from e.g. exit_files(). The exit path is
274 * responsible for not issuing IO after exit_io_context().
275 */
6e736be7 276 task_lock(task);
fd638368
TH
277 if (!task->io_context &&
278 (task == current || !(task->flags & PF_EXITING)))
6e736be7 279 task->io_context = ioc;
f2dbd76a 280 else
6e736be7 281 kmem_cache_free(iocontext_cachep, ioc);
3c9c708c
ED
282
283 ret = task->io_context ? 0 : -EBUSY;
284
6e736be7 285 task_unlock(task);
24acfc34 286
3c9c708c 287 return ret;
86db1e29 288}
86db1e29 289
6e736be7
TH
290/**
291 * get_task_io_context - get io_context of a task
292 * @task: task of interest
293 * @gfp_flags: allocation flags, used if allocation is necessary
294 * @node: allocation node, used if allocation is necessary
295 *
296 * Return io_context of @task. If it doesn't exist, it is created with
297 * @gfp_flags and @node. The returned io_context has its reference count
298 * incremented.
86db1e29 299 *
6e736be7 300 * This function always goes through task_lock() and it's better to use
f2dbd76a 301 * %current->io_context + get_io_context() for %current.
86db1e29 302 */
6e736be7
TH
303struct io_context *get_task_io_context(struct task_struct *task,
304 gfp_t gfp_flags, int node)
86db1e29 305{
6e736be7 306 struct io_context *ioc;
86db1e29 307
d0164adc 308 might_sleep_if(gfpflags_allow_blocking(gfp_flags));
6e736be7 309
f2dbd76a
TH
310 do {
311 task_lock(task);
312 ioc = task->io_context;
313 if (likely(ioc)) {
314 get_io_context(ioc);
315 task_unlock(task);
316 return ioc;
317 }
6e736be7 318 task_unlock(task);
24acfc34 319 } while (!create_task_io_context(task, gfp_flags, node));
6e736be7 320
f2dbd76a 321 return NULL;
86db1e29 322}
86db1e29 323
47fdd4ca
TH
324/**
325 * ioc_lookup_icq - lookup io_cq from ioc
326 * @ioc: the associated io_context
327 * @q: the associated request_queue
328 *
329 * Look up io_cq associated with @ioc - @q pair from @ioc. Must be called
330 * with @q->queue_lock held.
331 */
332struct io_cq *ioc_lookup_icq(struct io_context *ioc, struct request_queue *q)
333{
334 struct io_cq *icq;
335
0d945c1f 336 lockdep_assert_held(&q->queue_lock);
47fdd4ca
TH
337
338 /*
339 * icq's are indexed from @ioc using radix tree and hint pointer,
340 * both of which are protected with RCU. All removals are done
341 * holding both q and ioc locks, and we're holding q lock - if we
342 * find a icq which points to us, it's guaranteed to be valid.
343 */
344 rcu_read_lock();
345 icq = rcu_dereference(ioc->icq_hint);
346 if (icq && icq->q == q)
347 goto out;
348
349 icq = radix_tree_lookup(&ioc->icq_tree, q->id);
350 if (icq && icq->q == q)
351 rcu_assign_pointer(ioc->icq_hint, icq); /* allowed to race */
352 else
353 icq = NULL;
354out:
355 rcu_read_unlock();
356 return icq;
357}
358EXPORT_SYMBOL(ioc_lookup_icq);
359
f1f8cc94
TH
360/**
361 * ioc_create_icq - create and link io_cq
24acfc34 362 * @ioc: io_context of interest
f1f8cc94
TH
363 * @q: request_queue of interest
364 * @gfp_mask: allocation mask
365 *
24acfc34
TH
366 * Make sure io_cq linking @ioc and @q exists. If icq doesn't exist, they
367 * will be created using @gfp_mask.
f1f8cc94
TH
368 *
369 * The caller is responsible for ensuring @ioc won't go away and @q is
370 * alive and will stay alive until this function returns.
371 */
24acfc34
TH
372struct io_cq *ioc_create_icq(struct io_context *ioc, struct request_queue *q,
373 gfp_t gfp_mask)
f1f8cc94
TH
374{
375 struct elevator_type *et = q->elevator->type;
f1f8cc94
TH
376 struct io_cq *icq;
377
378 /* allocate stuff */
f1f8cc94
TH
379 icq = kmem_cache_alloc_node(et->icq_cache, gfp_mask | __GFP_ZERO,
380 q->node);
381 if (!icq)
382 return NULL;
383
5e4c0d97 384 if (radix_tree_maybe_preload(gfp_mask) < 0) {
f1f8cc94
TH
385 kmem_cache_free(et->icq_cache, icq);
386 return NULL;
387 }
388
389 icq->ioc = ioc;
390 icq->q = q;
391 INIT_LIST_HEAD(&icq->q_node);
392 INIT_HLIST_NODE(&icq->ioc_node);
393
394 /* lock both q and ioc and try to link @icq */
0d945c1f 395 spin_lock_irq(&q->queue_lock);
f1f8cc94
TH
396 spin_lock(&ioc->lock);
397
398 if (likely(!radix_tree_insert(&ioc->icq_tree, q->id, icq))) {
399 hlist_add_head(&icq->ioc_node, &ioc->icq_list);
400 list_add(&icq->q_node, &q->icq_list);
f9cd4bfe
JA
401 if (et->ops.init_icq)
402 et->ops.init_icq(icq);
f1f8cc94
TH
403 } else {
404 kmem_cache_free(et->icq_cache, icq);
405 icq = ioc_lookup_icq(ioc, q);
406 if (!icq)
407 printk(KERN_ERR "cfq: icq link failed!\n");
408 }
409
410 spin_unlock(&ioc->lock);
0d945c1f 411 spin_unlock_irq(&q->queue_lock);
f1f8cc94
TH
412 radix_tree_preload_end();
413 return icq;
414}
415
13341598 416static int __init blk_ioc_init(void)
86db1e29
JA
417{
418 iocontext_cachep = kmem_cache_create("blkdev_ioc",
419 sizeof(struct io_context), 0, SLAB_PANIC, NULL);
420 return 0;
421}
422subsys_initcall(blk_ioc_init);