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David Brazdil0f672f62019-12-10 10:32:29 +00001// SPDX-License-Identifier: GPL-2.0-only
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002/*
3 * Generic waiting primitives.
4 *
5 * (C) 2004 Nadia Yvette Chambers, Oracle
6 */
7#include "sched.h"
8
9void __init_waitqueue_head(struct wait_queue_head *wq_head, const char *name, struct lock_class_key *key)
10{
11 spin_lock_init(&wq_head->lock);
12 lockdep_set_class_and_name(&wq_head->lock, key, name);
13 INIT_LIST_HEAD(&wq_head->head);
14}
15
16EXPORT_SYMBOL(__init_waitqueue_head);
17
18void add_wait_queue(struct wait_queue_head *wq_head, struct wait_queue_entry *wq_entry)
19{
20 unsigned long flags;
21
22 wq_entry->flags &= ~WQ_FLAG_EXCLUSIVE;
23 spin_lock_irqsave(&wq_head->lock, flags);
24 __add_wait_queue(wq_head, wq_entry);
25 spin_unlock_irqrestore(&wq_head->lock, flags);
26}
27EXPORT_SYMBOL(add_wait_queue);
28
29void add_wait_queue_exclusive(struct wait_queue_head *wq_head, struct wait_queue_entry *wq_entry)
30{
31 unsigned long flags;
32
33 wq_entry->flags |= WQ_FLAG_EXCLUSIVE;
34 spin_lock_irqsave(&wq_head->lock, flags);
35 __add_wait_queue_entry_tail(wq_head, wq_entry);
36 spin_unlock_irqrestore(&wq_head->lock, flags);
37}
38EXPORT_SYMBOL(add_wait_queue_exclusive);
39
40void remove_wait_queue(struct wait_queue_head *wq_head, struct wait_queue_entry *wq_entry)
41{
42 unsigned long flags;
43
44 spin_lock_irqsave(&wq_head->lock, flags);
45 __remove_wait_queue(wq_head, wq_entry);
46 spin_unlock_irqrestore(&wq_head->lock, flags);
47}
48EXPORT_SYMBOL(remove_wait_queue);
49
50/*
51 * Scan threshold to break wait queue walk.
52 * This allows a waker to take a break from holding the
53 * wait queue lock during the wait queue walk.
54 */
55#define WAITQUEUE_WALK_BREAK_CNT 64
56
57/*
58 * The core wakeup function. Non-exclusive wakeups (nr_exclusive == 0) just
59 * wake everything up. If it's an exclusive wakeup (nr_exclusive == small +ve
60 * number) then we wake all the non-exclusive tasks and one exclusive task.
61 *
62 * There are circumstances in which we can try to wake a task which has already
63 * started to run but is not in state TASK_RUNNING. try_to_wake_up() returns
64 * zero in this (rare) case, and we handle it by continuing to scan the queue.
65 */
66static int __wake_up_common(struct wait_queue_head *wq_head, unsigned int mode,
67 int nr_exclusive, int wake_flags, void *key,
68 wait_queue_entry_t *bookmark)
69{
70 wait_queue_entry_t *curr, *next;
71 int cnt = 0;
72
73 lockdep_assert_held(&wq_head->lock);
74
75 if (bookmark && (bookmark->flags & WQ_FLAG_BOOKMARK)) {
76 curr = list_next_entry(bookmark, entry);
77
78 list_del(&bookmark->entry);
79 bookmark->flags = 0;
80 } else
81 curr = list_first_entry(&wq_head->head, wait_queue_entry_t, entry);
82
83 if (&curr->entry == &wq_head->head)
84 return nr_exclusive;
85
86 list_for_each_entry_safe_from(curr, next, &wq_head->head, entry) {
87 unsigned flags = curr->flags;
88 int ret;
89
90 if (flags & WQ_FLAG_BOOKMARK)
91 continue;
92
93 ret = curr->func(curr, mode, wake_flags, key);
94 if (ret < 0)
95 break;
96 if (ret && (flags & WQ_FLAG_EXCLUSIVE) && !--nr_exclusive)
97 break;
98
99 if (bookmark && (++cnt > WAITQUEUE_WALK_BREAK_CNT) &&
100 (&next->entry != &wq_head->head)) {
101 bookmark->flags = WQ_FLAG_BOOKMARK;
102 list_add_tail(&bookmark->entry, &next->entry);
103 break;
104 }
105 }
106
107 return nr_exclusive;
108}
109
110static void __wake_up_common_lock(struct wait_queue_head *wq_head, unsigned int mode,
111 int nr_exclusive, int wake_flags, void *key)
112{
113 unsigned long flags;
114 wait_queue_entry_t bookmark;
115
116 bookmark.flags = 0;
117 bookmark.private = NULL;
118 bookmark.func = NULL;
119 INIT_LIST_HEAD(&bookmark.entry);
120
David Brazdil0f672f62019-12-10 10:32:29 +0000121 do {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000122 spin_lock_irqsave(&wq_head->lock, flags);
123 nr_exclusive = __wake_up_common(wq_head, mode, nr_exclusive,
124 wake_flags, key, &bookmark);
125 spin_unlock_irqrestore(&wq_head->lock, flags);
David Brazdil0f672f62019-12-10 10:32:29 +0000126 } while (bookmark.flags & WQ_FLAG_BOOKMARK);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000127}
128
129/**
130 * __wake_up - wake up threads blocked on a waitqueue.
131 * @wq_head: the waitqueue
132 * @mode: which threads
133 * @nr_exclusive: how many wake-one or wake-many threads to wake up
134 * @key: is directly passed to the wakeup function
135 *
136 * If this function wakes up a task, it executes a full memory barrier before
137 * accessing the task state.
138 */
139void __wake_up(struct wait_queue_head *wq_head, unsigned int mode,
140 int nr_exclusive, void *key)
141{
142 __wake_up_common_lock(wq_head, mode, nr_exclusive, 0, key);
143}
144EXPORT_SYMBOL(__wake_up);
145
146/*
147 * Same as __wake_up but called with the spinlock in wait_queue_head_t held.
148 */
149void __wake_up_locked(struct wait_queue_head *wq_head, unsigned int mode, int nr)
150{
151 __wake_up_common(wq_head, mode, nr, 0, NULL, NULL);
152}
153EXPORT_SYMBOL_GPL(__wake_up_locked);
154
155void __wake_up_locked_key(struct wait_queue_head *wq_head, unsigned int mode, void *key)
156{
157 __wake_up_common(wq_head, mode, 1, 0, key, NULL);
158}
159EXPORT_SYMBOL_GPL(__wake_up_locked_key);
160
161void __wake_up_locked_key_bookmark(struct wait_queue_head *wq_head,
162 unsigned int mode, void *key, wait_queue_entry_t *bookmark)
163{
164 __wake_up_common(wq_head, mode, 1, 0, key, bookmark);
165}
166EXPORT_SYMBOL_GPL(__wake_up_locked_key_bookmark);
167
168/**
169 * __wake_up_sync_key - wake up threads blocked on a waitqueue.
170 * @wq_head: the waitqueue
171 * @mode: which threads
172 * @nr_exclusive: how many wake-one or wake-many threads to wake up
173 * @key: opaque value to be passed to wakeup targets
174 *
175 * The sync wakeup differs that the waker knows that it will schedule
176 * away soon, so while the target thread will be woken up, it will not
177 * be migrated to another CPU - ie. the two threads are 'synchronized'
178 * with each other. This can prevent needless bouncing between CPUs.
179 *
180 * On UP it can prevent extra preemption.
181 *
182 * If this function wakes up a task, it executes a full memory barrier before
183 * accessing the task state.
184 */
185void __wake_up_sync_key(struct wait_queue_head *wq_head, unsigned int mode,
186 int nr_exclusive, void *key)
187{
188 int wake_flags = 1; /* XXX WF_SYNC */
189
190 if (unlikely(!wq_head))
191 return;
192
193 if (unlikely(nr_exclusive != 1))
194 wake_flags = 0;
195
196 __wake_up_common_lock(wq_head, mode, nr_exclusive, wake_flags, key);
197}
198EXPORT_SYMBOL_GPL(__wake_up_sync_key);
199
200/*
201 * __wake_up_sync - see __wake_up_sync_key()
202 */
203void __wake_up_sync(struct wait_queue_head *wq_head, unsigned int mode, int nr_exclusive)
204{
205 __wake_up_sync_key(wq_head, mode, nr_exclusive, NULL);
206}
207EXPORT_SYMBOL_GPL(__wake_up_sync); /* For internal use only */
208
209/*
210 * Note: we use "set_current_state()" _after_ the wait-queue add,
211 * because we need a memory barrier there on SMP, so that any
212 * wake-function that tests for the wait-queue being active
213 * will be guaranteed to see waitqueue addition _or_ subsequent
214 * tests in this thread will see the wakeup having taken place.
215 *
216 * The spin_unlock() itself is semi-permeable and only protects
217 * one way (it only protects stuff inside the critical region and
218 * stops them from bleeding out - it would still allow subsequent
219 * loads to move into the critical region).
220 */
221void
222prepare_to_wait(struct wait_queue_head *wq_head, struct wait_queue_entry *wq_entry, int state)
223{
224 unsigned long flags;
225
226 wq_entry->flags &= ~WQ_FLAG_EXCLUSIVE;
227 spin_lock_irqsave(&wq_head->lock, flags);
228 if (list_empty(&wq_entry->entry))
229 __add_wait_queue(wq_head, wq_entry);
230 set_current_state(state);
231 spin_unlock_irqrestore(&wq_head->lock, flags);
232}
233EXPORT_SYMBOL(prepare_to_wait);
234
Olivier Deprez0e641232021-09-23 10:07:05 +0200235/* Returns true if we are the first waiter in the queue, false otherwise. */
236bool
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000237prepare_to_wait_exclusive(struct wait_queue_head *wq_head, struct wait_queue_entry *wq_entry, int state)
238{
239 unsigned long flags;
Olivier Deprez0e641232021-09-23 10:07:05 +0200240 bool was_empty = false;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000241
242 wq_entry->flags |= WQ_FLAG_EXCLUSIVE;
243 spin_lock_irqsave(&wq_head->lock, flags);
Olivier Deprez0e641232021-09-23 10:07:05 +0200244 if (list_empty(&wq_entry->entry)) {
245 was_empty = list_empty(&wq_head->head);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000246 __add_wait_queue_entry_tail(wq_head, wq_entry);
Olivier Deprez0e641232021-09-23 10:07:05 +0200247 }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000248 set_current_state(state);
249 spin_unlock_irqrestore(&wq_head->lock, flags);
Olivier Deprez0e641232021-09-23 10:07:05 +0200250 return was_empty;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000251}
252EXPORT_SYMBOL(prepare_to_wait_exclusive);
253
254void init_wait_entry(struct wait_queue_entry *wq_entry, int flags)
255{
256 wq_entry->flags = flags;
257 wq_entry->private = current;
258 wq_entry->func = autoremove_wake_function;
259 INIT_LIST_HEAD(&wq_entry->entry);
260}
261EXPORT_SYMBOL(init_wait_entry);
262
263long prepare_to_wait_event(struct wait_queue_head *wq_head, struct wait_queue_entry *wq_entry, int state)
264{
265 unsigned long flags;
266 long ret = 0;
267
268 spin_lock_irqsave(&wq_head->lock, flags);
David Brazdil0f672f62019-12-10 10:32:29 +0000269 if (signal_pending_state(state, current)) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000270 /*
271 * Exclusive waiter must not fail if it was selected by wakeup,
272 * it should "consume" the condition we were waiting for.
273 *
274 * The caller will recheck the condition and return success if
275 * we were already woken up, we can not miss the event because
276 * wakeup locks/unlocks the same wq_head->lock.
277 *
278 * But we need to ensure that set-condition + wakeup after that
279 * can't see us, it should wake up another exclusive waiter if
280 * we fail.
281 */
282 list_del_init(&wq_entry->entry);
283 ret = -ERESTARTSYS;
284 } else {
285 if (list_empty(&wq_entry->entry)) {
286 if (wq_entry->flags & WQ_FLAG_EXCLUSIVE)
287 __add_wait_queue_entry_tail(wq_head, wq_entry);
288 else
289 __add_wait_queue(wq_head, wq_entry);
290 }
291 set_current_state(state);
292 }
293 spin_unlock_irqrestore(&wq_head->lock, flags);
294
295 return ret;
296}
297EXPORT_SYMBOL(prepare_to_wait_event);
298
299/*
300 * Note! These two wait functions are entered with the
301 * wait-queue lock held (and interrupts off in the _irq
302 * case), so there is no race with testing the wakeup
303 * condition in the caller before they add the wait
304 * entry to the wake queue.
305 */
306int do_wait_intr(wait_queue_head_t *wq, wait_queue_entry_t *wait)
307{
308 if (likely(list_empty(&wait->entry)))
309 __add_wait_queue_entry_tail(wq, wait);
310
311 set_current_state(TASK_INTERRUPTIBLE);
312 if (signal_pending(current))
313 return -ERESTARTSYS;
314
315 spin_unlock(&wq->lock);
316 schedule();
317 spin_lock(&wq->lock);
318
319 return 0;
320}
321EXPORT_SYMBOL(do_wait_intr);
322
323int do_wait_intr_irq(wait_queue_head_t *wq, wait_queue_entry_t *wait)
324{
325 if (likely(list_empty(&wait->entry)))
326 __add_wait_queue_entry_tail(wq, wait);
327
328 set_current_state(TASK_INTERRUPTIBLE);
329 if (signal_pending(current))
330 return -ERESTARTSYS;
331
332 spin_unlock_irq(&wq->lock);
333 schedule();
334 spin_lock_irq(&wq->lock);
335
336 return 0;
337}
338EXPORT_SYMBOL(do_wait_intr_irq);
339
340/**
341 * finish_wait - clean up after waiting in a queue
342 * @wq_head: waitqueue waited on
343 * @wq_entry: wait descriptor
344 *
345 * Sets current thread back to running state and removes
346 * the wait descriptor from the given waitqueue if still
347 * queued.
348 */
349void finish_wait(struct wait_queue_head *wq_head, struct wait_queue_entry *wq_entry)
350{
351 unsigned long flags;
352
353 __set_current_state(TASK_RUNNING);
354 /*
355 * We can check for list emptiness outside the lock
356 * IFF:
357 * - we use the "careful" check that verifies both
358 * the next and prev pointers, so that there cannot
359 * be any half-pending updates in progress on other
360 * CPU's that we haven't seen yet (and that might
361 * still change the stack area.
362 * and
363 * - all other users take the lock (ie we can only
364 * have _one_ other CPU that looks at or modifies
365 * the list).
366 */
367 if (!list_empty_careful(&wq_entry->entry)) {
368 spin_lock_irqsave(&wq_head->lock, flags);
369 list_del_init(&wq_entry->entry);
370 spin_unlock_irqrestore(&wq_head->lock, flags);
371 }
372}
373EXPORT_SYMBOL(finish_wait);
374
375int autoremove_wake_function(struct wait_queue_entry *wq_entry, unsigned mode, int sync, void *key)
376{
377 int ret = default_wake_function(wq_entry, mode, sync, key);
378
379 if (ret)
380 list_del_init(&wq_entry->entry);
381
382 return ret;
383}
384EXPORT_SYMBOL(autoremove_wake_function);
385
386static inline bool is_kthread_should_stop(void)
387{
388 return (current->flags & PF_KTHREAD) && kthread_should_stop();
389}
390
391/*
392 * DEFINE_WAIT_FUNC(wait, woken_wake_func);
393 *
394 * add_wait_queue(&wq_head, &wait);
395 * for (;;) {
396 * if (condition)
397 * break;
398 *
399 * // in wait_woken() // in woken_wake_function()
400 *
401 * p->state = mode; wq_entry->flags |= WQ_FLAG_WOKEN;
402 * smp_mb(); // A try_to_wake_up():
403 * if (!(wq_entry->flags & WQ_FLAG_WOKEN)) <full barrier>
404 * schedule() if (p->state & mode)
405 * p->state = TASK_RUNNING; p->state = TASK_RUNNING;
406 * wq_entry->flags &= ~WQ_FLAG_WOKEN; ~~~~~~~~~~~~~~~~~~
407 * smp_mb(); // B condition = true;
408 * } smp_mb(); // C
409 * remove_wait_queue(&wq_head, &wait); wq_entry->flags |= WQ_FLAG_WOKEN;
410 */
411long wait_woken(struct wait_queue_entry *wq_entry, unsigned mode, long timeout)
412{
413 /*
414 * The below executes an smp_mb(), which matches with the full barrier
415 * executed by the try_to_wake_up() in woken_wake_function() such that
416 * either we see the store to wq_entry->flags in woken_wake_function()
417 * or woken_wake_function() sees our store to current->state.
418 */
419 set_current_state(mode); /* A */
420 if (!(wq_entry->flags & WQ_FLAG_WOKEN) && !is_kthread_should_stop())
421 timeout = schedule_timeout(timeout);
422 __set_current_state(TASK_RUNNING);
423
424 /*
425 * The below executes an smp_mb(), which matches with the smp_mb() (C)
426 * in woken_wake_function() such that either we see the wait condition
427 * being true or the store to wq_entry->flags in woken_wake_function()
428 * follows ours in the coherence order.
429 */
430 smp_store_mb(wq_entry->flags, wq_entry->flags & ~WQ_FLAG_WOKEN); /* B */
431
432 return timeout;
433}
434EXPORT_SYMBOL(wait_woken);
435
436int woken_wake_function(struct wait_queue_entry *wq_entry, unsigned mode, int sync, void *key)
437{
438 /* Pairs with the smp_store_mb() in wait_woken(). */
439 smp_mb(); /* C */
440 wq_entry->flags |= WQ_FLAG_WOKEN;
441
442 return default_wake_function(wq_entry, mode, sync, key);
443}
444EXPORT_SYMBOL(woken_wake_function);