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Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001/*
2 * RT-Mutexes: simple blocking mutual exclusion locks with PI support
3 *
4 * started by Ingo Molnar and Thomas Gleixner.
5 *
6 * Copyright (C) 2004-2006 Red Hat, Inc., Ingo Molnar <mingo@redhat.com>
7 * Copyright (C) 2005-2006 Timesys Corp., Thomas Gleixner <tglx@timesys.com>
8 * Copyright (C) 2005 Kihon Technologies Inc., Steven Rostedt
9 * Copyright (C) 2006 Esben Nielsen
Steven Rostedtd07fe822006-07-30 03:04:03 -070010 *
Davidlohr Bueso214e0ae2014-07-30 13:41:55 -070011 * See Documentation/locking/rt-mutex-design.txt for details.
Ingo Molnar23f78d4a2006-06-27 02:54:53 -070012 */
13#include <linux/spinlock.h>
Paul Gortmaker9984de12011-05-23 14:51:41 -040014#include <linux/export.h>
Ingo Molnar23f78d4a2006-06-27 02:54:53 -070015#include <linux/sched.h>
Clark Williams8bd75c72013-02-07 09:47:07 -060016#include <linux/sched/rt.h>
Peter Zijlstrafb00aca2013-11-07 14:43:43 +010017#include <linux/sched/deadline.h>
Ingo Molnar23f78d4a2006-06-27 02:54:53 -070018#include <linux/timer.h>
19
20#include "rtmutex_common.h"
21
Ingo Molnar23f78d4a2006-06-27 02:54:53 -070022/*
23 * lock->owner state tracking:
24 *
Lai Jiangshan81612392011-01-14 17:09:41 +080025 * lock->owner holds the task_struct pointer of the owner. Bit 0
26 * is used to keep track of the "lock has waiters" state.
Ingo Molnar23f78d4a2006-06-27 02:54:53 -070027 *
Lai Jiangshan81612392011-01-14 17:09:41 +080028 * owner bit0
29 * NULL 0 lock is free (fast acquire possible)
30 * NULL 1 lock is free and has waiters and the top waiter
31 * is going to take the lock*
32 * taskpointer 0 lock is held (fast release possible)
33 * taskpointer 1 lock is held and has waiters**
Ingo Molnar23f78d4a2006-06-27 02:54:53 -070034 *
35 * The fast atomic compare exchange based acquire and release is only
Lai Jiangshan81612392011-01-14 17:09:41 +080036 * possible when bit 0 of lock->owner is 0.
Ingo Molnar23f78d4a2006-06-27 02:54:53 -070037 *
Lai Jiangshan81612392011-01-14 17:09:41 +080038 * (*) It also can be a transitional state when grabbing the lock
39 * with ->wait_lock is held. To prevent any fast path cmpxchg to the lock,
40 * we need to set the bit0 before looking at the lock, and the owner may be
41 * NULL in this small time, hence this can be a transitional state.
42 *
43 * (**) There is a small time when bit 0 is set but there are no
44 * waiters. This can happen when grabbing the lock in the slow path.
45 * To prevent a cmpxchg of the owner releasing the lock, we need to
46 * set this bit before looking at the lock.
Ingo Molnar23f78d4a2006-06-27 02:54:53 -070047 */
48
Thomas Gleixnerbd197232007-06-17 21:11:10 +020049static void
Lai Jiangshan81612392011-01-14 17:09:41 +080050rt_mutex_set_owner(struct rt_mutex *lock, struct task_struct *owner)
Ingo Molnar23f78d4a2006-06-27 02:54:53 -070051{
Lai Jiangshan81612392011-01-14 17:09:41 +080052 unsigned long val = (unsigned long)owner;
Ingo Molnar23f78d4a2006-06-27 02:54:53 -070053
54 if (rt_mutex_has_waiters(lock))
55 val |= RT_MUTEX_HAS_WAITERS;
56
57 lock->owner = (struct task_struct *)val;
58}
59
60static inline void clear_rt_mutex_waiters(struct rt_mutex *lock)
61{
62 lock->owner = (struct task_struct *)
63 ((unsigned long)lock->owner & ~RT_MUTEX_HAS_WAITERS);
64}
65
66static void fixup_rt_mutex_waiters(struct rt_mutex *lock)
67{
68 if (!rt_mutex_has_waiters(lock))
69 clear_rt_mutex_waiters(lock);
70}
71
72/*
Sebastian Andrzej Siewiorcede8842015-02-25 18:56:13 +010073 * We can speed up the acquire/release, if there's no debugging state to be
74 * set up.
Thomas Gleixnerbd197232007-06-17 21:11:10 +020075 */
Sebastian Andrzej Siewiorcede8842015-02-25 18:56:13 +010076#ifndef CONFIG_DEBUG_RT_MUTEXES
Thomas Gleixnerbd197232007-06-17 21:11:10 +020077# define rt_mutex_cmpxchg(l,c,n) (cmpxchg(&l->owner, c, n) == c)
78static inline void mark_rt_mutex_waiters(struct rt_mutex *lock)
79{
80 unsigned long owner, *p = (unsigned long *) &lock->owner;
81
82 do {
83 owner = *p;
84 } while (cmpxchg(p, owner, owner | RT_MUTEX_HAS_WAITERS) != owner);
85}
Thomas Gleixner27e35712014-06-11 18:44:04 +000086
87/*
88 * Safe fastpath aware unlock:
89 * 1) Clear the waiters bit
90 * 2) Drop lock->wait_lock
91 * 3) Try to unlock the lock with cmpxchg
92 */
93static inline bool unlock_rt_mutex_safe(struct rt_mutex *lock)
94 __releases(lock->wait_lock)
95{
96 struct task_struct *owner = rt_mutex_owner(lock);
97
98 clear_rt_mutex_waiters(lock);
99 raw_spin_unlock(&lock->wait_lock);
100 /*
101 * If a new waiter comes in between the unlock and the cmpxchg
102 * we have two situations:
103 *
104 * unlock(wait_lock);
105 * lock(wait_lock);
106 * cmpxchg(p, owner, 0) == owner
107 * mark_rt_mutex_waiters(lock);
108 * acquire(lock);
109 * or:
110 *
111 * unlock(wait_lock);
112 * lock(wait_lock);
113 * mark_rt_mutex_waiters(lock);
114 *
115 * cmpxchg(p, owner, 0) != owner
116 * enqueue_waiter();
117 * unlock(wait_lock);
118 * lock(wait_lock);
119 * wake waiter();
120 * unlock(wait_lock);
121 * lock(wait_lock);
122 * acquire(lock);
123 */
124 return rt_mutex_cmpxchg(lock, owner, NULL);
125}
126
Thomas Gleixnerbd197232007-06-17 21:11:10 +0200127#else
128# define rt_mutex_cmpxchg(l,c,n) (0)
129static inline void mark_rt_mutex_waiters(struct rt_mutex *lock)
130{
131 lock->owner = (struct task_struct *)
132 ((unsigned long)lock->owner | RT_MUTEX_HAS_WAITERS);
133}
Thomas Gleixner27e35712014-06-11 18:44:04 +0000134
135/*
136 * Simple slow path only version: lock->owner is protected by lock->wait_lock.
137 */
138static inline bool unlock_rt_mutex_safe(struct rt_mutex *lock)
139 __releases(lock->wait_lock)
140{
141 lock->owner = NULL;
142 raw_spin_unlock(&lock->wait_lock);
143 return true;
144}
Thomas Gleixnerbd197232007-06-17 21:11:10 +0200145#endif
146
Peter Zijlstrafb00aca2013-11-07 14:43:43 +0100147static inline int
148rt_mutex_waiter_less(struct rt_mutex_waiter *left,
149 struct rt_mutex_waiter *right)
150{
Dario Faggioli2d3d8912013-11-07 14:43:44 +0100151 if (left->prio < right->prio)
Peter Zijlstrafb00aca2013-11-07 14:43:43 +0100152 return 1;
153
154 /*
Dario Faggioli2d3d8912013-11-07 14:43:44 +0100155 * If both waiters have dl_prio(), we check the deadlines of the
156 * associated tasks.
157 * If left waiter has a dl_prio(), and we didn't return 1 above,
158 * then right waiter has a dl_prio() too.
Peter Zijlstrafb00aca2013-11-07 14:43:43 +0100159 */
Dario Faggioli2d3d8912013-11-07 14:43:44 +0100160 if (dl_prio(left->prio))
Peter Zijlstrafb00aca2013-11-07 14:43:43 +0100161 return (left->task->dl.deadline < right->task->dl.deadline);
162
163 return 0;
164}
165
166static void
167rt_mutex_enqueue(struct rt_mutex *lock, struct rt_mutex_waiter *waiter)
168{
169 struct rb_node **link = &lock->waiters.rb_node;
170 struct rb_node *parent = NULL;
171 struct rt_mutex_waiter *entry;
172 int leftmost = 1;
173
174 while (*link) {
175 parent = *link;
176 entry = rb_entry(parent, struct rt_mutex_waiter, tree_entry);
177 if (rt_mutex_waiter_less(waiter, entry)) {
178 link = &parent->rb_left;
179 } else {
180 link = &parent->rb_right;
181 leftmost = 0;
182 }
183 }
184
185 if (leftmost)
186 lock->waiters_leftmost = &waiter->tree_entry;
187
188 rb_link_node(&waiter->tree_entry, parent, link);
189 rb_insert_color(&waiter->tree_entry, &lock->waiters);
190}
191
192static void
193rt_mutex_dequeue(struct rt_mutex *lock, struct rt_mutex_waiter *waiter)
194{
195 if (RB_EMPTY_NODE(&waiter->tree_entry))
196 return;
197
198 if (lock->waiters_leftmost == &waiter->tree_entry)
199 lock->waiters_leftmost = rb_next(&waiter->tree_entry);
200
201 rb_erase(&waiter->tree_entry, &lock->waiters);
202 RB_CLEAR_NODE(&waiter->tree_entry);
203}
204
205static void
206rt_mutex_enqueue_pi(struct task_struct *task, struct rt_mutex_waiter *waiter)
207{
208 struct rb_node **link = &task->pi_waiters.rb_node;
209 struct rb_node *parent = NULL;
210 struct rt_mutex_waiter *entry;
211 int leftmost = 1;
212
213 while (*link) {
214 parent = *link;
215 entry = rb_entry(parent, struct rt_mutex_waiter, pi_tree_entry);
216 if (rt_mutex_waiter_less(waiter, entry)) {
217 link = &parent->rb_left;
218 } else {
219 link = &parent->rb_right;
220 leftmost = 0;
221 }
222 }
223
224 if (leftmost)
225 task->pi_waiters_leftmost = &waiter->pi_tree_entry;
226
227 rb_link_node(&waiter->pi_tree_entry, parent, link);
228 rb_insert_color(&waiter->pi_tree_entry, &task->pi_waiters);
229}
230
231static void
232rt_mutex_dequeue_pi(struct task_struct *task, struct rt_mutex_waiter *waiter)
233{
234 if (RB_EMPTY_NODE(&waiter->pi_tree_entry))
235 return;
236
237 if (task->pi_waiters_leftmost == &waiter->pi_tree_entry)
238 task->pi_waiters_leftmost = rb_next(&waiter->pi_tree_entry);
239
240 rb_erase(&waiter->pi_tree_entry, &task->pi_waiters);
241 RB_CLEAR_NODE(&waiter->pi_tree_entry);
242}
243
Thomas Gleixnerbd197232007-06-17 21:11:10 +0200244/*
Peter Zijlstrafb00aca2013-11-07 14:43:43 +0100245 * Calculate task priority from the waiter tree priority
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700246 *
Peter Zijlstrafb00aca2013-11-07 14:43:43 +0100247 * Return task->normal_prio when the waiter tree is empty or when
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700248 * the waiter is not allowed to do priority boosting
249 */
250int rt_mutex_getprio(struct task_struct *task)
251{
252 if (likely(!task_has_pi_waiters(task)))
253 return task->normal_prio;
254
Dario Faggioli2d3d8912013-11-07 14:43:44 +0100255 return min(task_top_pi_waiter(task)->prio,
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700256 task->normal_prio);
257}
258
Dario Faggioli2d3d8912013-11-07 14:43:44 +0100259struct task_struct *rt_mutex_get_top_task(struct task_struct *task)
260{
261 if (likely(!task_has_pi_waiters(task)))
262 return NULL;
263
264 return task_top_pi_waiter(task)->task;
265}
266
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700267/*
Thomas Gleixner0782e632015-05-05 19:49:49 +0200268 * Called by sched_setscheduler() to get the priority which will be
269 * effective after the change.
Thomas Gleixnerc365c292014-02-07 20:58:42 +0100270 */
Thomas Gleixner0782e632015-05-05 19:49:49 +0200271int rt_mutex_get_effective_prio(struct task_struct *task, int newprio)
Thomas Gleixnerc365c292014-02-07 20:58:42 +0100272{
273 if (!task_has_pi_waiters(task))
Thomas Gleixner0782e632015-05-05 19:49:49 +0200274 return newprio;
Thomas Gleixnerc365c292014-02-07 20:58:42 +0100275
Thomas Gleixner0782e632015-05-05 19:49:49 +0200276 if (task_top_pi_waiter(task)->task->prio <= newprio)
277 return task_top_pi_waiter(task)->task->prio;
278 return newprio;
Thomas Gleixnerc365c292014-02-07 20:58:42 +0100279}
280
281/*
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700282 * Adjust the priority of a task, after its pi_waiters got modified.
283 *
284 * This can be both boosting and unboosting. task->pi_lock must be held.
285 */
Thomas Gleixnerbd197232007-06-17 21:11:10 +0200286static void __rt_mutex_adjust_prio(struct task_struct *task)
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700287{
288 int prio = rt_mutex_getprio(task);
289
Dario Faggioli2d3d8912013-11-07 14:43:44 +0100290 if (task->prio != prio || dl_prio(prio))
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700291 rt_mutex_setprio(task, prio);
292}
293
294/*
295 * Adjust task priority (undo boosting). Called from the exit path of
296 * rt_mutex_slowunlock() and rt_mutex_slowlock().
297 *
298 * (Note: We do this outside of the protection of lock->wait_lock to
299 * allow the lock to be taken while or before we readjust the priority
300 * of task. We do not use the spin_xx_mutex() variants here as we are
301 * outside of the debug path.)
302 */
303static void rt_mutex_adjust_prio(struct task_struct *task)
304{
305 unsigned long flags;
306
Thomas Gleixner1d615482009-11-17 14:54:03 +0100307 raw_spin_lock_irqsave(&task->pi_lock, flags);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700308 __rt_mutex_adjust_prio(task);
Thomas Gleixner1d615482009-11-17 14:54:03 +0100309 raw_spin_unlock_irqrestore(&task->pi_lock, flags);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700310}
311
312/*
Thomas Gleixner8930ed82014-05-22 03:25:47 +0000313 * Deadlock detection is conditional:
314 *
315 * If CONFIG_DEBUG_RT_MUTEXES=n, deadlock detection is only conducted
316 * if the detect argument is == RT_MUTEX_FULL_CHAINWALK.
317 *
318 * If CONFIG_DEBUG_RT_MUTEXES=y, deadlock detection is always
319 * conducted independent of the detect argument.
320 *
321 * If the waiter argument is NULL this indicates the deboost path and
322 * deadlock detection is disabled independent of the detect argument
323 * and the config settings.
324 */
325static bool rt_mutex_cond_detect_deadlock(struct rt_mutex_waiter *waiter,
326 enum rtmutex_chainwalk chwalk)
327{
328 /*
329 * This is just a wrapper function for the following call,
330 * because debug_rt_mutex_detect_deadlock() smells like a magic
331 * debug feature and I wanted to keep the cond function in the
332 * main source file along with the comments instead of having
333 * two of the same in the headers.
334 */
335 return debug_rt_mutex_detect_deadlock(waiter, chwalk);
336}
337
338/*
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700339 * Max number of times we'll walk the boosting chain:
340 */
341int max_lock_depth = 1024;
342
Thomas Gleixner82084982014-06-05 11:16:12 +0200343static inline struct rt_mutex *task_blocked_on_lock(struct task_struct *p)
344{
345 return p->pi_blocked_on ? p->pi_blocked_on->lock : NULL;
346}
347
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700348/*
349 * Adjust the priority chain. Also used for deadlock detection.
350 * Decreases task's usage by one - may thus free the task.
Juri Lelli0c106172013-05-15 11:04:10 +0200351 *
Thomas Gleixner82084982014-06-05 11:16:12 +0200352 * @task: the task owning the mutex (owner) for which a chain walk is
353 * probably needed
Tom(JeHyeon) Yeone6beaa362015-03-18 14:03:30 +0900354 * @chwalk: do we have to carry out deadlock detection?
Thomas Gleixner82084982014-06-05 11:16:12 +0200355 * @orig_lock: the mutex (can be NULL if we are walking the chain to recheck
356 * things for a task that has just got its priority adjusted, and
357 * is waiting on a mutex)
358 * @next_lock: the mutex on which the owner of @orig_lock was blocked before
359 * we dropped its pi_lock. Is never dereferenced, only used for
360 * comparison to detect lock chain changes.
Juri Lelli0c106172013-05-15 11:04:10 +0200361 * @orig_waiter: rt_mutex_waiter struct for the task that has just donated
Thomas Gleixner82084982014-06-05 11:16:12 +0200362 * its priority to the mutex owner (can be NULL in the case
363 * depicted above or if the top waiter is gone away and we are
364 * actually deboosting the owner)
365 * @top_task: the current top waiter
Juri Lelli0c106172013-05-15 11:04:10 +0200366 *
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700367 * Returns 0 or -EDEADLK.
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200368 *
369 * Chain walk basics and protection scope
370 *
371 * [R] refcount on task
372 * [P] task->pi_lock held
373 * [L] rtmutex->wait_lock held
374 *
375 * Step Description Protected by
376 * function arguments:
377 * @task [R]
378 * @orig_lock if != NULL @top_task is blocked on it
379 * @next_lock Unprotected. Cannot be
380 * dereferenced. Only used for
381 * comparison.
382 * @orig_waiter if != NULL @top_task is blocked on it
383 * @top_task current, or in case of proxy
384 * locking protected by calling
385 * code
386 * again:
387 * loop_sanity_check();
388 * retry:
389 * [1] lock(task->pi_lock); [R] acquire [P]
390 * [2] waiter = task->pi_blocked_on; [P]
391 * [3] check_exit_conditions_1(); [P]
392 * [4] lock = waiter->lock; [P]
393 * [5] if (!try_lock(lock->wait_lock)) { [P] try to acquire [L]
394 * unlock(task->pi_lock); release [P]
395 * goto retry;
396 * }
397 * [6] check_exit_conditions_2(); [P] + [L]
398 * [7] requeue_lock_waiter(lock, waiter); [P] + [L]
399 * [8] unlock(task->pi_lock); release [P]
400 * put_task_struct(task); release [R]
401 * [9] check_exit_conditions_3(); [L]
402 * [10] task = owner(lock); [L]
403 * get_task_struct(task); [L] acquire [R]
404 * lock(task->pi_lock); [L] acquire [P]
405 * [11] requeue_pi_waiter(tsk, waiters(lock));[P] + [L]
406 * [12] check_exit_conditions_4(); [P] + [L]
407 * [13] unlock(task->pi_lock); release [P]
408 * unlock(lock->wait_lock); release [L]
409 * goto again;
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700410 */
Thomas Gleixnerbd197232007-06-17 21:11:10 +0200411static int rt_mutex_adjust_prio_chain(struct task_struct *task,
Thomas Gleixner8930ed82014-05-22 03:25:47 +0000412 enum rtmutex_chainwalk chwalk,
Thomas Gleixnerbd197232007-06-17 21:11:10 +0200413 struct rt_mutex *orig_lock,
Thomas Gleixner82084982014-06-05 11:16:12 +0200414 struct rt_mutex *next_lock,
Thomas Gleixnerbd197232007-06-17 21:11:10 +0200415 struct rt_mutex_waiter *orig_waiter,
416 struct task_struct *top_task)
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700417{
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700418 struct rt_mutex_waiter *waiter, *top_waiter = orig_waiter;
Thomas Gleixnera57594a2014-05-22 03:25:54 +0000419 struct rt_mutex_waiter *prerequeue_top_waiter;
Thomas Gleixner8930ed82014-05-22 03:25:47 +0000420 int ret = 0, depth = 0;
Thomas Gleixnera57594a2014-05-22 03:25:54 +0000421 struct rt_mutex *lock;
Thomas Gleixner8930ed82014-05-22 03:25:47 +0000422 bool detect_deadlock;
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700423 unsigned long flags;
Thomas Gleixner67792e22014-05-22 03:25:57 +0000424 bool requeue = true;
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700425
Thomas Gleixner8930ed82014-05-22 03:25:47 +0000426 detect_deadlock = rt_mutex_cond_detect_deadlock(orig_waiter, chwalk);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700427
428 /*
429 * The (de)boosting is a step by step approach with a lot of
430 * pitfalls. We want this to be preemptible and we want hold a
431 * maximum of two locks per step. So we have to check
432 * carefully whether things change under us.
433 */
434 again:
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200435 /*
436 * We limit the lock chain length for each invocation.
437 */
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700438 if (++depth > max_lock_depth) {
439 static int prev_max;
440
441 /*
442 * Print this only once. If the admin changes the limit,
443 * print a new message when reaching the limit again.
444 */
445 if (prev_max != max_lock_depth) {
446 prev_max = max_lock_depth;
447 printk(KERN_WARNING "Maximum lock depth %d reached "
448 "task: %s (%d)\n", max_lock_depth,
Pavel Emelyanovba25f9d2007-10-18 23:40:40 -0700449 top_task->comm, task_pid_nr(top_task));
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700450 }
451 put_task_struct(task);
452
Thomas Gleixner3d5c9342014-06-05 12:34:23 +0200453 return -EDEADLK;
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700454 }
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200455
456 /*
457 * We are fully preemptible here and only hold the refcount on
458 * @task. So everything can have changed under us since the
459 * caller or our own code below (goto retry/again) dropped all
460 * locks.
461 */
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700462 retry:
463 /*
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200464 * [1] Task cannot go away as we did a get_task() before !
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700465 */
Thomas Gleixner1d615482009-11-17 14:54:03 +0100466 raw_spin_lock_irqsave(&task->pi_lock, flags);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700467
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200468 /*
469 * [2] Get the waiter on which @task is blocked on.
470 */
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700471 waiter = task->pi_blocked_on;
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200472
473 /*
474 * [3] check_exit_conditions_1() protected by task->pi_lock.
475 */
476
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700477 /*
478 * Check whether the end of the boosting chain has been
479 * reached or the state of the chain has changed while we
480 * dropped the locks.
481 */
Lai Jiangshan81612392011-01-14 17:09:41 +0800482 if (!waiter)
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700483 goto out_unlock_pi;
484
Thomas Gleixner1a539a82007-06-08 13:46:58 -0700485 /*
486 * Check the orig_waiter state. After we dropped the locks,
Lai Jiangshan81612392011-01-14 17:09:41 +0800487 * the previous owner of the lock might have released the lock.
Thomas Gleixner1a539a82007-06-08 13:46:58 -0700488 */
Lai Jiangshan81612392011-01-14 17:09:41 +0800489 if (orig_waiter && !rt_mutex_owner(orig_lock))
Thomas Gleixner1a539a82007-06-08 13:46:58 -0700490 goto out_unlock_pi;
491
492 /*
Thomas Gleixner82084982014-06-05 11:16:12 +0200493 * We dropped all locks after taking a refcount on @task, so
494 * the task might have moved on in the lock chain or even left
495 * the chain completely and blocks now on an unrelated lock or
496 * on @orig_lock.
497 *
498 * We stored the lock on which @task was blocked in @next_lock,
499 * so we can detect the chain change.
500 */
501 if (next_lock != waiter->lock)
502 goto out_unlock_pi;
503
504 /*
Thomas Gleixner1a539a82007-06-08 13:46:58 -0700505 * Drop out, when the task has no waiters. Note,
506 * top_waiter can be NULL, when we are in the deboosting
507 * mode!
508 */
Thomas Gleixner397335f2014-05-22 03:25:39 +0000509 if (top_waiter) {
510 if (!task_has_pi_waiters(task))
511 goto out_unlock_pi;
512 /*
513 * If deadlock detection is off, we stop here if we
Thomas Gleixner67792e22014-05-22 03:25:57 +0000514 * are not the top pi waiter of the task. If deadlock
515 * detection is enabled we continue, but stop the
516 * requeueing in the chain walk.
Thomas Gleixner397335f2014-05-22 03:25:39 +0000517 */
Thomas Gleixner67792e22014-05-22 03:25:57 +0000518 if (top_waiter != task_top_pi_waiter(task)) {
519 if (!detect_deadlock)
520 goto out_unlock_pi;
521 else
522 requeue = false;
523 }
Thomas Gleixner397335f2014-05-22 03:25:39 +0000524 }
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700525
526 /*
Thomas Gleixner67792e22014-05-22 03:25:57 +0000527 * If the waiter priority is the same as the task priority
528 * then there is no further priority adjustment necessary. If
529 * deadlock detection is off, we stop the chain walk. If its
530 * enabled we continue, but stop the requeueing in the chain
531 * walk.
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700532 */
Thomas Gleixner67792e22014-05-22 03:25:57 +0000533 if (waiter->prio == task->prio) {
534 if (!detect_deadlock)
535 goto out_unlock_pi;
536 else
537 requeue = false;
538 }
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700539
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200540 /*
541 * [4] Get the next lock
542 */
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700543 lock = waiter->lock;
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200544 /*
545 * [5] We need to trylock here as we are holding task->pi_lock,
546 * which is the reverse lock order versus the other rtmutex
547 * operations.
548 */
Thomas Gleixnerd209d742009-11-17 18:22:11 +0100549 if (!raw_spin_trylock(&lock->wait_lock)) {
Thomas Gleixner1d615482009-11-17 14:54:03 +0100550 raw_spin_unlock_irqrestore(&task->pi_lock, flags);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700551 cpu_relax();
552 goto retry;
553 }
554
Thomas Gleixner397335f2014-05-22 03:25:39 +0000555 /*
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200556 * [6] check_exit_conditions_2() protected by task->pi_lock and
557 * lock->wait_lock.
558 *
Thomas Gleixner397335f2014-05-22 03:25:39 +0000559 * Deadlock detection. If the lock is the same as the original
560 * lock which caused us to walk the lock chain or if the
561 * current lock is owned by the task which initiated the chain
562 * walk, we detected a deadlock.
563 */
Thomas Gleixner95e02ca2006-06-27 02:55:02 -0700564 if (lock == orig_lock || rt_mutex_owner(lock) == top_task) {
Thomas Gleixner8930ed82014-05-22 03:25:47 +0000565 debug_rt_mutex_deadlock(chwalk, orig_waiter, lock);
Thomas Gleixnerd209d742009-11-17 18:22:11 +0100566 raw_spin_unlock(&lock->wait_lock);
Thomas Gleixner3d5c9342014-06-05 12:34:23 +0200567 ret = -EDEADLK;
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700568 goto out_unlock_pi;
569 }
570
Thomas Gleixnera57594a2014-05-22 03:25:54 +0000571 /*
Thomas Gleixner67792e22014-05-22 03:25:57 +0000572 * If we just follow the lock chain for deadlock detection, no
573 * need to do all the requeue operations. To avoid a truckload
574 * of conditionals around the various places below, just do the
575 * minimum chain walk checks.
576 */
577 if (!requeue) {
578 /*
579 * No requeue[7] here. Just release @task [8]
580 */
581 raw_spin_unlock_irqrestore(&task->pi_lock, flags);
582 put_task_struct(task);
583
584 /*
585 * [9] check_exit_conditions_3 protected by lock->wait_lock.
586 * If there is no owner of the lock, end of chain.
587 */
588 if (!rt_mutex_owner(lock)) {
589 raw_spin_unlock(&lock->wait_lock);
590 return 0;
591 }
592
593 /* [10] Grab the next task, i.e. owner of @lock */
594 task = rt_mutex_owner(lock);
595 get_task_struct(task);
596 raw_spin_lock_irqsave(&task->pi_lock, flags);
597
598 /*
599 * No requeue [11] here. We just do deadlock detection.
600 *
601 * [12] Store whether owner is blocked
602 * itself. Decision is made after dropping the locks
603 */
604 next_lock = task_blocked_on_lock(task);
605 /*
606 * Get the top waiter for the next iteration
607 */
608 top_waiter = rt_mutex_top_waiter(lock);
609
610 /* [13] Drop locks */
611 raw_spin_unlock_irqrestore(&task->pi_lock, flags);
612 raw_spin_unlock(&lock->wait_lock);
613
614 /* If owner is not blocked, end of chain. */
615 if (!next_lock)
616 goto out_put_task;
617 goto again;
618 }
619
620 /*
Thomas Gleixnera57594a2014-05-22 03:25:54 +0000621 * Store the current top waiter before doing the requeue
622 * operation on @lock. We need it for the boost/deboost
623 * decision below.
624 */
625 prerequeue_top_waiter = rt_mutex_top_waiter(lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700626
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200627 /* [7] Requeue the waiter in the lock waiter list. */
Peter Zijlstrafb00aca2013-11-07 14:43:43 +0100628 rt_mutex_dequeue(lock, waiter);
Dario Faggioli2d3d8912013-11-07 14:43:44 +0100629 waiter->prio = task->prio;
Peter Zijlstrafb00aca2013-11-07 14:43:43 +0100630 rt_mutex_enqueue(lock, waiter);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700631
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200632 /* [8] Release the task */
Thomas Gleixner1d615482009-11-17 14:54:03 +0100633 raw_spin_unlock_irqrestore(&task->pi_lock, flags);
Thomas Gleixner2ffa5a52014-06-07 12:10:36 +0200634 put_task_struct(task);
635
Thomas Gleixnera57594a2014-05-22 03:25:54 +0000636 /*
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200637 * [9] check_exit_conditions_3 protected by lock->wait_lock.
638 *
Thomas Gleixnera57594a2014-05-22 03:25:54 +0000639 * We must abort the chain walk if there is no lock owner even
640 * in the dead lock detection case, as we have nothing to
641 * follow here. This is the end of the chain we are walking.
642 */
Lai Jiangshan81612392011-01-14 17:09:41 +0800643 if (!rt_mutex_owner(lock)) {
644 /*
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200645 * If the requeue [7] above changed the top waiter,
646 * then we need to wake the new top waiter up to try
647 * to get the lock.
Lai Jiangshan81612392011-01-14 17:09:41 +0800648 */
Thomas Gleixnera57594a2014-05-22 03:25:54 +0000649 if (prerequeue_top_waiter != rt_mutex_top_waiter(lock))
Lai Jiangshan81612392011-01-14 17:09:41 +0800650 wake_up_process(rt_mutex_top_waiter(lock)->task);
651 raw_spin_unlock(&lock->wait_lock);
Thomas Gleixner2ffa5a52014-06-07 12:10:36 +0200652 return 0;
Lai Jiangshan81612392011-01-14 17:09:41 +0800653 }
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700654
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200655 /* [10] Grab the next task, i.e. the owner of @lock */
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700656 task = rt_mutex_owner(lock);
Steven Rostedtdb630632006-09-29 01:59:44 -0700657 get_task_struct(task);
Thomas Gleixner1d615482009-11-17 14:54:03 +0100658 raw_spin_lock_irqsave(&task->pi_lock, flags);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700659
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200660 /* [11] requeue the pi waiters if necessary */
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700661 if (waiter == rt_mutex_top_waiter(lock)) {
Thomas Gleixnera57594a2014-05-22 03:25:54 +0000662 /*
663 * The waiter became the new top (highest priority)
664 * waiter on the lock. Replace the previous top waiter
665 * in the owner tasks pi waiters list with this waiter
666 * and adjust the priority of the owner.
667 */
668 rt_mutex_dequeue_pi(task, prerequeue_top_waiter);
Peter Zijlstrafb00aca2013-11-07 14:43:43 +0100669 rt_mutex_enqueue_pi(task, waiter);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700670 __rt_mutex_adjust_prio(task);
671
Thomas Gleixnera57594a2014-05-22 03:25:54 +0000672 } else if (prerequeue_top_waiter == waiter) {
673 /*
674 * The waiter was the top waiter on the lock, but is
675 * no longer the top prority waiter. Replace waiter in
676 * the owner tasks pi waiters list with the new top
677 * (highest priority) waiter and adjust the priority
678 * of the owner.
679 * The new top waiter is stored in @waiter so that
680 * @waiter == @top_waiter evaluates to true below and
681 * we continue to deboost the rest of the chain.
682 */
Peter Zijlstrafb00aca2013-11-07 14:43:43 +0100683 rt_mutex_dequeue_pi(task, waiter);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700684 waiter = rt_mutex_top_waiter(lock);
Peter Zijlstrafb00aca2013-11-07 14:43:43 +0100685 rt_mutex_enqueue_pi(task, waiter);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700686 __rt_mutex_adjust_prio(task);
Thomas Gleixnera57594a2014-05-22 03:25:54 +0000687 } else {
688 /*
689 * Nothing changed. No need to do any priority
690 * adjustment.
691 */
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700692 }
693
Thomas Gleixner82084982014-06-05 11:16:12 +0200694 /*
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200695 * [12] check_exit_conditions_4() protected by task->pi_lock
696 * and lock->wait_lock. The actual decisions are made after we
697 * dropped the locks.
698 *
Thomas Gleixner82084982014-06-05 11:16:12 +0200699 * Check whether the task which owns the current lock is pi
700 * blocked itself. If yes we store a pointer to the lock for
701 * the lock chain change detection above. After we dropped
702 * task->pi_lock next_lock cannot be dereferenced anymore.
703 */
704 next_lock = task_blocked_on_lock(task);
Thomas Gleixnera57594a2014-05-22 03:25:54 +0000705 /*
706 * Store the top waiter of @lock for the end of chain walk
707 * decision below.
708 */
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700709 top_waiter = rt_mutex_top_waiter(lock);
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200710
711 /* [13] Drop the locks */
712 raw_spin_unlock_irqrestore(&task->pi_lock, flags);
Thomas Gleixnerd209d742009-11-17 18:22:11 +0100713 raw_spin_unlock(&lock->wait_lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700714
Thomas Gleixner82084982014-06-05 11:16:12 +0200715 /*
Thomas Gleixner3eb65ae2014-06-09 19:40:34 +0200716 * Make the actual exit decisions [12], based on the stored
717 * values.
718 *
Thomas Gleixner82084982014-06-05 11:16:12 +0200719 * We reached the end of the lock chain. Stop right here. No
720 * point to go back just to figure that out.
721 */
722 if (!next_lock)
723 goto out_put_task;
724
Thomas Gleixnera57594a2014-05-22 03:25:54 +0000725 /*
726 * If the current waiter is not the top waiter on the lock,
727 * then we can stop the chain walk here if we are not in full
728 * deadlock detection mode.
729 */
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700730 if (!detect_deadlock && waiter != top_waiter)
731 goto out_put_task;
732
733 goto again;
734
735 out_unlock_pi:
Thomas Gleixner1d615482009-11-17 14:54:03 +0100736 raw_spin_unlock_irqrestore(&task->pi_lock, flags);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700737 out_put_task:
738 put_task_struct(task);
Ingo Molnar36c8b582006-07-03 00:25:41 -0700739
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700740 return ret;
741}
742
743/*
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700744 * Try to take an rt-mutex
745 *
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700746 * Must be called with lock->wait_lock held.
Lai Jiangshan81612392011-01-14 17:09:41 +0800747 *
Thomas Gleixner358c3312014-06-11 01:01:13 +0200748 * @lock: The lock to be acquired.
749 * @task: The task which wants to acquire the lock
750 * @waiter: The waiter that is queued to the lock's wait list if the
751 * callsite called task_blocked_on_lock(), otherwise NULL
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700752 */
Lai Jiangshan81612392011-01-14 17:09:41 +0800753static int try_to_take_rt_mutex(struct rt_mutex *lock, struct task_struct *task,
Thomas Gleixner358c3312014-06-11 01:01:13 +0200754 struct rt_mutex_waiter *waiter)
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700755{
Thomas Gleixner358c3312014-06-11 01:01:13 +0200756 unsigned long flags;
757
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700758 /*
Thomas Gleixner358c3312014-06-11 01:01:13 +0200759 * Before testing whether we can acquire @lock, we set the
760 * RT_MUTEX_HAS_WAITERS bit in @lock->owner. This forces all
761 * other tasks which try to modify @lock into the slow path
762 * and they serialize on @lock->wait_lock.
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700763 *
Thomas Gleixner358c3312014-06-11 01:01:13 +0200764 * The RT_MUTEX_HAS_WAITERS bit can have a transitional state
765 * as explained at the top of this file if and only if:
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700766 *
Thomas Gleixner358c3312014-06-11 01:01:13 +0200767 * - There is a lock owner. The caller must fixup the
768 * transient state if it does a trylock or leaves the lock
769 * function due to a signal or timeout.
770 *
771 * - @task acquires the lock and there are no other
772 * waiters. This is undone in rt_mutex_set_owner(@task) at
773 * the end of this function.
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700774 */
775 mark_rt_mutex_waiters(lock);
776
Thomas Gleixner358c3312014-06-11 01:01:13 +0200777 /*
778 * If @lock has an owner, give up.
779 */
Lai Jiangshan81612392011-01-14 17:09:41 +0800780 if (rt_mutex_owner(lock))
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700781 return 0;
782
Lai Jiangshan81612392011-01-14 17:09:41 +0800783 /*
Thomas Gleixner358c3312014-06-11 01:01:13 +0200784 * If @waiter != NULL, @task has already enqueued the waiter
785 * into @lock waiter list. If @waiter == NULL then this is a
786 * trylock attempt.
Lai Jiangshan81612392011-01-14 17:09:41 +0800787 */
Thomas Gleixner358c3312014-06-11 01:01:13 +0200788 if (waiter) {
789 /*
790 * If waiter is not the highest priority waiter of
791 * @lock, give up.
792 */
793 if (waiter != rt_mutex_top_waiter(lock))
794 return 0;
Lai Jiangshan81612392011-01-14 17:09:41 +0800795
796 /*
Thomas Gleixner358c3312014-06-11 01:01:13 +0200797 * We can acquire the lock. Remove the waiter from the
798 * lock waiters list.
799 */
800 rt_mutex_dequeue(lock, waiter);
801
802 } else {
803 /*
804 * If the lock has waiters already we check whether @task is
805 * eligible to take over the lock.
806 *
807 * If there are no other waiters, @task can acquire
808 * the lock. @task->pi_blocked_on is NULL, so it does
809 * not need to be dequeued.
Lai Jiangshan81612392011-01-14 17:09:41 +0800810 */
811 if (rt_mutex_has_waiters(lock)) {
Thomas Gleixner358c3312014-06-11 01:01:13 +0200812 /*
813 * If @task->prio is greater than or equal to
814 * the top waiter priority (kernel view),
815 * @task lost.
816 */
817 if (task->prio >= rt_mutex_top_waiter(lock)->prio)
818 return 0;
819
820 /*
821 * The current top waiter stays enqueued. We
822 * don't have to change anything in the lock
823 * waiters order.
824 */
825 } else {
826 /*
827 * No waiters. Take the lock without the
828 * pi_lock dance.@task->pi_blocked_on is NULL
829 * and we have no waiters to enqueue in @task
830 * pi waiters list.
831 */
832 goto takeit;
Lai Jiangshan81612392011-01-14 17:09:41 +0800833 }
Lai Jiangshan81612392011-01-14 17:09:41 +0800834 }
835
Thomas Gleixner358c3312014-06-11 01:01:13 +0200836 /*
837 * Clear @task->pi_blocked_on. Requires protection by
838 * @task->pi_lock. Redundant operation for the @waiter == NULL
839 * case, but conditionals are more expensive than a redundant
840 * store.
841 */
842 raw_spin_lock_irqsave(&task->pi_lock, flags);
843 task->pi_blocked_on = NULL;
844 /*
845 * Finish the lock acquisition. @task is the new owner. If
846 * other waiters exist we have to insert the highest priority
847 * waiter into @task->pi_waiters list.
848 */
849 if (rt_mutex_has_waiters(lock))
850 rt_mutex_enqueue_pi(task, rt_mutex_top_waiter(lock));
851 raw_spin_unlock_irqrestore(&task->pi_lock, flags);
852
853takeit:
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700854 /* We got the lock. */
Ingo Molnar9a11b49a2006-07-03 00:24:33 -0700855 debug_rt_mutex_lock(lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700856
Thomas Gleixner358c3312014-06-11 01:01:13 +0200857 /*
858 * This either preserves the RT_MUTEX_HAS_WAITERS bit if there
859 * are still waiters or clears it.
860 */
Lai Jiangshan81612392011-01-14 17:09:41 +0800861 rt_mutex_set_owner(lock, task);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700862
Lai Jiangshan81612392011-01-14 17:09:41 +0800863 rt_mutex_deadlock_account_lock(lock, task);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700864
865 return 1;
866}
867
868/*
869 * Task blocks on lock.
870 *
871 * Prepare waiter and propagate pi chain
872 *
873 * This must be called with lock->wait_lock held.
874 */
875static int task_blocks_on_rt_mutex(struct rt_mutex *lock,
876 struct rt_mutex_waiter *waiter,
Darren Hart8dac4562009-04-03 13:40:12 -0700877 struct task_struct *task,
Thomas Gleixner8930ed82014-05-22 03:25:47 +0000878 enum rtmutex_chainwalk chwalk)
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700879{
Ingo Molnar36c8b582006-07-03 00:25:41 -0700880 struct task_struct *owner = rt_mutex_owner(lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700881 struct rt_mutex_waiter *top_waiter = waiter;
Thomas Gleixner82084982014-06-05 11:16:12 +0200882 struct rt_mutex *next_lock;
Steven Rostedtdb630632006-09-29 01:59:44 -0700883 int chain_walk = 0, res;
Thomas Gleixner82084982014-06-05 11:16:12 +0200884 unsigned long flags;
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700885
Thomas Gleixner397335f2014-05-22 03:25:39 +0000886 /*
887 * Early deadlock detection. We really don't want the task to
888 * enqueue on itself just to untangle the mess later. It's not
889 * only an optimization. We drop the locks, so another waiter
890 * can come in before the chain walk detects the deadlock. So
891 * the other will detect the deadlock and return -EDEADLOCK,
892 * which is wrong, as the other waiter is not in a deadlock
893 * situation.
894 */
Thomas Gleixner3d5c9342014-06-05 12:34:23 +0200895 if (owner == task)
Thomas Gleixner397335f2014-05-22 03:25:39 +0000896 return -EDEADLK;
897
Thomas Gleixner1d615482009-11-17 14:54:03 +0100898 raw_spin_lock_irqsave(&task->pi_lock, flags);
Darren Hart8dac4562009-04-03 13:40:12 -0700899 __rt_mutex_adjust_prio(task);
900 waiter->task = task;
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700901 waiter->lock = lock;
Dario Faggioli2d3d8912013-11-07 14:43:44 +0100902 waiter->prio = task->prio;
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700903
904 /* Get the top priority waiter on the lock */
905 if (rt_mutex_has_waiters(lock))
906 top_waiter = rt_mutex_top_waiter(lock);
Peter Zijlstrafb00aca2013-11-07 14:43:43 +0100907 rt_mutex_enqueue(lock, waiter);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700908
Darren Hart8dac4562009-04-03 13:40:12 -0700909 task->pi_blocked_on = waiter;
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700910
Thomas Gleixner1d615482009-11-17 14:54:03 +0100911 raw_spin_unlock_irqrestore(&task->pi_lock, flags);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700912
Lai Jiangshan81612392011-01-14 17:09:41 +0800913 if (!owner)
914 return 0;
915
Thomas Gleixner82084982014-06-05 11:16:12 +0200916 raw_spin_lock_irqsave(&owner->pi_lock, flags);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700917 if (waiter == rt_mutex_top_waiter(lock)) {
Peter Zijlstrafb00aca2013-11-07 14:43:43 +0100918 rt_mutex_dequeue_pi(owner, top_waiter);
919 rt_mutex_enqueue_pi(owner, waiter);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700920
921 __rt_mutex_adjust_prio(owner);
Steven Rostedtdb630632006-09-29 01:59:44 -0700922 if (owner->pi_blocked_on)
923 chain_walk = 1;
Thomas Gleixner8930ed82014-05-22 03:25:47 +0000924 } else if (rt_mutex_cond_detect_deadlock(waiter, chwalk)) {
Steven Rostedtdb630632006-09-29 01:59:44 -0700925 chain_walk = 1;
Thomas Gleixner82084982014-06-05 11:16:12 +0200926 }
Steven Rostedtdb630632006-09-29 01:59:44 -0700927
Thomas Gleixner82084982014-06-05 11:16:12 +0200928 /* Store the lock on which owner is blocked or NULL */
929 next_lock = task_blocked_on_lock(owner);
930
931 raw_spin_unlock_irqrestore(&owner->pi_lock, flags);
932 /*
933 * Even if full deadlock detection is on, if the owner is not
934 * blocked itself, we can avoid finding this out in the chain
935 * walk.
936 */
937 if (!chain_walk || !next_lock)
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700938 return 0;
939
Steven Rostedtdb630632006-09-29 01:59:44 -0700940 /*
941 * The owner can't disappear while holding a lock,
942 * so the owner struct is protected by wait_lock.
943 * Gets dropped in rt_mutex_adjust_prio_chain()!
944 */
945 get_task_struct(owner);
946
Thomas Gleixnerd209d742009-11-17 18:22:11 +0100947 raw_spin_unlock(&lock->wait_lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700948
Thomas Gleixner8930ed82014-05-22 03:25:47 +0000949 res = rt_mutex_adjust_prio_chain(owner, chwalk, lock,
Thomas Gleixner82084982014-06-05 11:16:12 +0200950 next_lock, waiter, task);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700951
Thomas Gleixnerd209d742009-11-17 18:22:11 +0100952 raw_spin_lock(&lock->wait_lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700953
954 return res;
955}
956
957/*
958 * Wake up the next waiter on the lock.
959 *
Thomas Gleixner27e35712014-06-11 18:44:04 +0000960 * Remove the top waiter from the current tasks pi waiter list and
961 * wake it up.
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700962 *
963 * Called with lock->wait_lock held.
964 */
965static void wakeup_next_waiter(struct rt_mutex *lock)
966{
967 struct rt_mutex_waiter *waiter;
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700968 unsigned long flags;
969
Thomas Gleixner1d615482009-11-17 14:54:03 +0100970 raw_spin_lock_irqsave(&current->pi_lock, flags);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700971
972 waiter = rt_mutex_top_waiter(lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700973
974 /*
975 * Remove it from current->pi_waiters. We do not adjust a
976 * possible priority boost right now. We execute wakeup in the
977 * boosted mode and go back to normal after releasing
978 * lock->wait_lock.
979 */
Peter Zijlstrafb00aca2013-11-07 14:43:43 +0100980 rt_mutex_dequeue_pi(current, waiter);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700981
Thomas Gleixner27e35712014-06-11 18:44:04 +0000982 /*
983 * As we are waking up the top waiter, and the waiter stays
984 * queued on the lock until it gets the lock, this lock
985 * obviously has waiters. Just set the bit here and this has
986 * the added benefit of forcing all new tasks into the
987 * slow path making sure no task of lower priority than
988 * the top waiter can steal this lock.
989 */
990 lock->owner = (void *) RT_MUTEX_HAS_WAITERS;
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700991
Thomas Gleixner1d615482009-11-17 14:54:03 +0100992 raw_spin_unlock_irqrestore(&current->pi_lock, flags);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -0700993
Thomas Gleixner27e35712014-06-11 18:44:04 +0000994 /*
995 * It's safe to dereference waiter as it cannot go away as
996 * long as we hold lock->wait_lock. The waiter task needs to
997 * acquire it in order to dequeue the waiter.
998 */
Lai Jiangshan81612392011-01-14 17:09:41 +0800999 wake_up_process(waiter->task);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001000}
1001
1002/*
Lai Jiangshan81612392011-01-14 17:09:41 +08001003 * Remove a waiter from a lock and give up
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001004 *
Lai Jiangshan81612392011-01-14 17:09:41 +08001005 * Must be called with lock->wait_lock held and
1006 * have just failed to try_to_take_rt_mutex().
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001007 */
Thomas Gleixnerbd197232007-06-17 21:11:10 +02001008static void remove_waiter(struct rt_mutex *lock,
1009 struct rt_mutex_waiter *waiter)
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001010{
Thomas Gleixner1ca7b862014-06-07 09:36:13 +02001011 bool is_top_waiter = (waiter == rt_mutex_top_waiter(lock));
Ingo Molnar36c8b582006-07-03 00:25:41 -07001012 struct task_struct *owner = rt_mutex_owner(lock);
Thomas Gleixner1ca7b862014-06-07 09:36:13 +02001013 struct rt_mutex *next_lock;
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001014 unsigned long flags;
1015
Thomas Gleixner1d615482009-11-17 14:54:03 +01001016 raw_spin_lock_irqsave(&current->pi_lock, flags);
Peter Zijlstrafb00aca2013-11-07 14:43:43 +01001017 rt_mutex_dequeue(lock, waiter);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001018 current->pi_blocked_on = NULL;
Thomas Gleixner1d615482009-11-17 14:54:03 +01001019 raw_spin_unlock_irqrestore(&current->pi_lock, flags);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001020
Thomas Gleixner1ca7b862014-06-07 09:36:13 +02001021 /*
1022 * Only update priority if the waiter was the highest priority
1023 * waiter of the lock and there is an owner to update.
1024 */
1025 if (!owner || !is_top_waiter)
Lai Jiangshan81612392011-01-14 17:09:41 +08001026 return;
1027
Thomas Gleixner1ca7b862014-06-07 09:36:13 +02001028 raw_spin_lock_irqsave(&owner->pi_lock, flags);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001029
Thomas Gleixner1ca7b862014-06-07 09:36:13 +02001030 rt_mutex_dequeue_pi(owner, waiter);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001031
Thomas Gleixner1ca7b862014-06-07 09:36:13 +02001032 if (rt_mutex_has_waiters(lock))
1033 rt_mutex_enqueue_pi(owner, rt_mutex_top_waiter(lock));
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001034
Thomas Gleixner1ca7b862014-06-07 09:36:13 +02001035 __rt_mutex_adjust_prio(owner);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001036
Thomas Gleixner1ca7b862014-06-07 09:36:13 +02001037 /* Store the lock on which owner is blocked or NULL */
1038 next_lock = task_blocked_on_lock(owner);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001039
Thomas Gleixner1ca7b862014-06-07 09:36:13 +02001040 raw_spin_unlock_irqrestore(&owner->pi_lock, flags);
Steven Rostedtdb630632006-09-29 01:59:44 -07001041
Thomas Gleixner1ca7b862014-06-07 09:36:13 +02001042 /*
1043 * Don't walk the chain, if the owner task is not blocked
1044 * itself.
1045 */
Thomas Gleixner82084982014-06-05 11:16:12 +02001046 if (!next_lock)
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001047 return;
1048
Steven Rostedtdb630632006-09-29 01:59:44 -07001049 /* gets dropped in rt_mutex_adjust_prio_chain()! */
1050 get_task_struct(owner);
1051
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001052 raw_spin_unlock(&lock->wait_lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001053
Thomas Gleixner8930ed82014-05-22 03:25:47 +00001054 rt_mutex_adjust_prio_chain(owner, RT_MUTEX_MIN_CHAINWALK, lock,
1055 next_lock, NULL, current);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001056
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001057 raw_spin_lock(&lock->wait_lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001058}
1059
1060/*
Thomas Gleixner95e02ca2006-06-27 02:55:02 -07001061 * Recheck the pi chain, in case we got a priority setting
1062 *
1063 * Called from sched_setscheduler
1064 */
1065void rt_mutex_adjust_pi(struct task_struct *task)
1066{
1067 struct rt_mutex_waiter *waiter;
Thomas Gleixner82084982014-06-05 11:16:12 +02001068 struct rt_mutex *next_lock;
Thomas Gleixner95e02ca2006-06-27 02:55:02 -07001069 unsigned long flags;
1070
Thomas Gleixner1d615482009-11-17 14:54:03 +01001071 raw_spin_lock_irqsave(&task->pi_lock, flags);
Thomas Gleixner95e02ca2006-06-27 02:55:02 -07001072
1073 waiter = task->pi_blocked_on;
Dario Faggioli2d3d8912013-11-07 14:43:44 +01001074 if (!waiter || (waiter->prio == task->prio &&
1075 !dl_prio(task->prio))) {
Thomas Gleixner1d615482009-11-17 14:54:03 +01001076 raw_spin_unlock_irqrestore(&task->pi_lock, flags);
Thomas Gleixner95e02ca2006-06-27 02:55:02 -07001077 return;
1078 }
Thomas Gleixner82084982014-06-05 11:16:12 +02001079 next_lock = waiter->lock;
Thomas Gleixner1d615482009-11-17 14:54:03 +01001080 raw_spin_unlock_irqrestore(&task->pi_lock, flags);
Thomas Gleixner95e02ca2006-06-27 02:55:02 -07001081
Steven Rostedtdb630632006-09-29 01:59:44 -07001082 /* gets dropped in rt_mutex_adjust_prio_chain()! */
1083 get_task_struct(task);
Thomas Gleixner82084982014-06-05 11:16:12 +02001084
Thomas Gleixner8930ed82014-05-22 03:25:47 +00001085 rt_mutex_adjust_prio_chain(task, RT_MUTEX_MIN_CHAINWALK, NULL,
1086 next_lock, NULL, task);
Thomas Gleixner95e02ca2006-06-27 02:55:02 -07001087}
1088
Darren Hart8dac4562009-04-03 13:40:12 -07001089/**
1090 * __rt_mutex_slowlock() - Perform the wait-wake-try-to-take loop
1091 * @lock: the rt_mutex to take
1092 * @state: the state the task should block in (TASK_INTERRUPTIBLE
1093 * or TASK_UNINTERRUPTIBLE)
1094 * @timeout: the pre-initialized and started timer, or NULL for none
1095 * @waiter: the pre-initialized rt_mutex_waiter
Darren Hart8dac4562009-04-03 13:40:12 -07001096 *
1097 * lock->wait_lock must be held by the caller.
1098 */
1099static int __sched
1100__rt_mutex_slowlock(struct rt_mutex *lock, int state,
1101 struct hrtimer_sleeper *timeout,
Lai Jiangshan81612392011-01-14 17:09:41 +08001102 struct rt_mutex_waiter *waiter)
Darren Hart8dac4562009-04-03 13:40:12 -07001103{
1104 int ret = 0;
1105
1106 for (;;) {
1107 /* Try to acquire the lock: */
Lai Jiangshan81612392011-01-14 17:09:41 +08001108 if (try_to_take_rt_mutex(lock, current, waiter))
Darren Hart8dac4562009-04-03 13:40:12 -07001109 break;
1110
1111 /*
1112 * TASK_INTERRUPTIBLE checks for signals and
1113 * timeout. Ignored otherwise.
1114 */
1115 if (unlikely(state == TASK_INTERRUPTIBLE)) {
1116 /* Signal pending? */
1117 if (signal_pending(current))
1118 ret = -EINTR;
1119 if (timeout && !timeout->task)
1120 ret = -ETIMEDOUT;
1121 if (ret)
1122 break;
1123 }
1124
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001125 raw_spin_unlock(&lock->wait_lock);
Darren Hart8dac4562009-04-03 13:40:12 -07001126
1127 debug_rt_mutex_print_deadlock(waiter);
1128
Lai Jiangshan81612392011-01-14 17:09:41 +08001129 schedule_rt_mutex(lock);
Darren Hart8dac4562009-04-03 13:40:12 -07001130
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001131 raw_spin_lock(&lock->wait_lock);
Darren Hart8dac4562009-04-03 13:40:12 -07001132 set_current_state(state);
1133 }
1134
Davidlohr Buesoafffc6c2015-02-01 22:16:24 -08001135 __set_current_state(TASK_RUNNING);
Darren Hart8dac4562009-04-03 13:40:12 -07001136 return ret;
1137}
1138
Thomas Gleixner3d5c9342014-06-05 12:34:23 +02001139static void rt_mutex_handle_deadlock(int res, int detect_deadlock,
1140 struct rt_mutex_waiter *w)
1141{
1142 /*
1143 * If the result is not -EDEADLOCK or the caller requested
1144 * deadlock detection, nothing to do here.
1145 */
1146 if (res != -EDEADLOCK || detect_deadlock)
1147 return;
1148
1149 /*
1150 * Yell lowdly and stop the task right here.
1151 */
1152 rt_mutex_print_deadlock(w);
1153 while (1) {
1154 set_current_state(TASK_INTERRUPTIBLE);
1155 schedule();
1156 }
1157}
1158
Thomas Gleixner95e02ca2006-06-27 02:55:02 -07001159/*
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001160 * Slow path lock function:
1161 */
1162static int __sched
1163rt_mutex_slowlock(struct rt_mutex *lock, int state,
1164 struct hrtimer_sleeper *timeout,
Thomas Gleixner8930ed82014-05-22 03:25:47 +00001165 enum rtmutex_chainwalk chwalk)
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001166{
1167 struct rt_mutex_waiter waiter;
1168 int ret = 0;
1169
1170 debug_rt_mutex_init_waiter(&waiter);
Peter Zijlstrafb00aca2013-11-07 14:43:43 +01001171 RB_CLEAR_NODE(&waiter.pi_tree_entry);
1172 RB_CLEAR_NODE(&waiter.tree_entry);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001173
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001174 raw_spin_lock(&lock->wait_lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001175
1176 /* Try to acquire the lock again: */
Lai Jiangshan81612392011-01-14 17:09:41 +08001177 if (try_to_take_rt_mutex(lock, current, NULL)) {
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001178 raw_spin_unlock(&lock->wait_lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001179 return 0;
1180 }
1181
1182 set_current_state(state);
1183
1184 /* Setup the timer, when timeout != NULL */
Peter Zijlstra720a2592008-02-13 15:45:36 +01001185 if (unlikely(timeout)) {
Arjan van de Vencc584b22008-09-01 15:02:30 -07001186 hrtimer_start_expires(&timeout->timer, HRTIMER_MODE_ABS);
Peter Zijlstra720a2592008-02-13 15:45:36 +01001187 if (!hrtimer_active(&timeout->timer))
1188 timeout->task = NULL;
1189 }
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001190
Thomas Gleixner8930ed82014-05-22 03:25:47 +00001191 ret = task_blocks_on_rt_mutex(lock, &waiter, current, chwalk);
Lai Jiangshan81612392011-01-14 17:09:41 +08001192
1193 if (likely(!ret))
Davidlohr Buesoafffc6c2015-02-01 22:16:24 -08001194 /* sleep on the mutex */
Lai Jiangshan81612392011-01-14 17:09:41 +08001195 ret = __rt_mutex_slowlock(lock, state, timeout, &waiter);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001196
Thomas Gleixner3d5c9342014-06-05 12:34:23 +02001197 if (unlikely(ret)) {
Sebastian Andrzej Siewior9d3e2d02015-02-27 17:57:09 +01001198 __set_current_state(TASK_RUNNING);
Sebastian Andrzej Siewior8d1e5a12015-02-17 16:43:43 +01001199 if (rt_mutex_has_waiters(lock))
1200 remove_waiter(lock, &waiter);
Thomas Gleixner8930ed82014-05-22 03:25:47 +00001201 rt_mutex_handle_deadlock(ret, chwalk, &waiter);
Thomas Gleixner3d5c9342014-06-05 12:34:23 +02001202 }
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001203
1204 /*
1205 * try_to_take_rt_mutex() sets the waiter bit
1206 * unconditionally. We might have to fix that up.
1207 */
1208 fixup_rt_mutex_waiters(lock);
1209
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001210 raw_spin_unlock(&lock->wait_lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001211
1212 /* Remove pending timer: */
1213 if (unlikely(timeout))
1214 hrtimer_cancel(&timeout->timer);
1215
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001216 debug_rt_mutex_free_waiter(&waiter);
1217
1218 return ret;
1219}
1220
1221/*
1222 * Slow path try-lock function:
1223 */
Thomas Gleixner88f2b4c2014-06-10 22:53:40 +02001224static inline int rt_mutex_slowtrylock(struct rt_mutex *lock)
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001225{
Thomas Gleixner88f2b4c2014-06-10 22:53:40 +02001226 int ret;
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001227
Thomas Gleixner88f2b4c2014-06-10 22:53:40 +02001228 /*
1229 * If the lock already has an owner we fail to get the lock.
1230 * This can be done without taking the @lock->wait_lock as
1231 * it is only being read, and this is a trylock anyway.
1232 */
1233 if (rt_mutex_owner(lock))
1234 return 0;
1235
1236 /*
1237 * The mutex has currently no owner. Lock the wait lock and
1238 * try to acquire the lock.
1239 */
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001240 raw_spin_lock(&lock->wait_lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001241
Thomas Gleixner88f2b4c2014-06-10 22:53:40 +02001242 ret = try_to_take_rt_mutex(lock, current, NULL);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001243
Thomas Gleixner88f2b4c2014-06-10 22:53:40 +02001244 /*
1245 * try_to_take_rt_mutex() sets the lock waiters bit
1246 * unconditionally. Clean this up.
1247 */
1248 fixup_rt_mutex_waiters(lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001249
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001250 raw_spin_unlock(&lock->wait_lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001251
1252 return ret;
1253}
1254
1255/*
1256 * Slow path to release a rt-mutex:
1257 */
1258static void __sched
1259rt_mutex_slowunlock(struct rt_mutex *lock)
1260{
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001261 raw_spin_lock(&lock->wait_lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001262
1263 debug_rt_mutex_unlock(lock);
1264
1265 rt_mutex_deadlock_account_unlock(current);
1266
Thomas Gleixner27e35712014-06-11 18:44:04 +00001267 /*
1268 * We must be careful here if the fast path is enabled. If we
1269 * have no waiters queued we cannot set owner to NULL here
1270 * because of:
1271 *
1272 * foo->lock->owner = NULL;
1273 * rtmutex_lock(foo->lock); <- fast path
1274 * free = atomic_dec_and_test(foo->refcnt);
1275 * rtmutex_unlock(foo->lock); <- fast path
1276 * if (free)
1277 * kfree(foo);
1278 * raw_spin_unlock(foo->lock->wait_lock);
1279 *
1280 * So for the fastpath enabled kernel:
1281 *
1282 * Nothing can set the waiters bit as long as we hold
1283 * lock->wait_lock. So we do the following sequence:
1284 *
1285 * owner = rt_mutex_owner(lock);
1286 * clear_rt_mutex_waiters(lock);
1287 * raw_spin_unlock(&lock->wait_lock);
1288 * if (cmpxchg(&lock->owner, owner, 0) == owner)
1289 * return;
1290 * goto retry;
1291 *
1292 * The fastpath disabled variant is simple as all access to
1293 * lock->owner is serialized by lock->wait_lock:
1294 *
1295 * lock->owner = NULL;
1296 * raw_spin_unlock(&lock->wait_lock);
1297 */
1298 while (!rt_mutex_has_waiters(lock)) {
1299 /* Drops lock->wait_lock ! */
1300 if (unlock_rt_mutex_safe(lock) == true)
1301 return;
1302 /* Relock the rtmutex and try again */
1303 raw_spin_lock(&lock->wait_lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001304 }
1305
Thomas Gleixner27e35712014-06-11 18:44:04 +00001306 /*
1307 * The wakeup next waiter path does not suffer from the above
1308 * race. See the comments there.
1309 */
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001310 wakeup_next_waiter(lock);
1311
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001312 raw_spin_unlock(&lock->wait_lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001313
1314 /* Undo pi boosting if necessary: */
1315 rt_mutex_adjust_prio(current);
1316}
1317
1318/*
1319 * debug aware fast / slowpath lock,trylock,unlock
1320 *
1321 * The atomic acquire/release ops are compiled away, when either the
1322 * architecture does not support cmpxchg or when debugging is enabled.
1323 */
1324static inline int
1325rt_mutex_fastlock(struct rt_mutex *lock, int state,
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001326 int (*slowfn)(struct rt_mutex *lock, int state,
1327 struct hrtimer_sleeper *timeout,
Thomas Gleixner8930ed82014-05-22 03:25:47 +00001328 enum rtmutex_chainwalk chwalk))
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001329{
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001330 if (likely(rt_mutex_cmpxchg(lock, NULL, current))) {
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001331 rt_mutex_deadlock_account_lock(lock, current);
1332 return 0;
1333 } else
Thomas Gleixner8930ed82014-05-22 03:25:47 +00001334 return slowfn(lock, state, NULL, RT_MUTEX_MIN_CHAINWALK);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001335}
1336
1337static inline int
1338rt_mutex_timed_fastlock(struct rt_mutex *lock, int state,
Thomas Gleixner8930ed82014-05-22 03:25:47 +00001339 struct hrtimer_sleeper *timeout,
1340 enum rtmutex_chainwalk chwalk,
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001341 int (*slowfn)(struct rt_mutex *lock, int state,
1342 struct hrtimer_sleeper *timeout,
Thomas Gleixner8930ed82014-05-22 03:25:47 +00001343 enum rtmutex_chainwalk chwalk))
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001344{
Thomas Gleixner8930ed82014-05-22 03:25:47 +00001345 if (chwalk == RT_MUTEX_MIN_CHAINWALK &&
1346 likely(rt_mutex_cmpxchg(lock, NULL, current))) {
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001347 rt_mutex_deadlock_account_lock(lock, current);
1348 return 0;
1349 } else
Thomas Gleixner8930ed82014-05-22 03:25:47 +00001350 return slowfn(lock, state, timeout, chwalk);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001351}
1352
1353static inline int
1354rt_mutex_fasttrylock(struct rt_mutex *lock,
Ingo Molnar9a11b49a2006-07-03 00:24:33 -07001355 int (*slowfn)(struct rt_mutex *lock))
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001356{
1357 if (likely(rt_mutex_cmpxchg(lock, NULL, current))) {
1358 rt_mutex_deadlock_account_lock(lock, current);
1359 return 1;
1360 }
Ingo Molnar9a11b49a2006-07-03 00:24:33 -07001361 return slowfn(lock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001362}
1363
1364static inline void
1365rt_mutex_fastunlock(struct rt_mutex *lock,
1366 void (*slowfn)(struct rt_mutex *lock))
1367{
1368 if (likely(rt_mutex_cmpxchg(lock, current, NULL)))
1369 rt_mutex_deadlock_account_unlock(current);
1370 else
1371 slowfn(lock);
1372}
1373
1374/**
1375 * rt_mutex_lock - lock a rt_mutex
1376 *
1377 * @lock: the rt_mutex to be locked
1378 */
1379void __sched rt_mutex_lock(struct rt_mutex *lock)
1380{
1381 might_sleep();
1382
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001383 rt_mutex_fastlock(lock, TASK_UNINTERRUPTIBLE, rt_mutex_slowlock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001384}
1385EXPORT_SYMBOL_GPL(rt_mutex_lock);
1386
1387/**
1388 * rt_mutex_lock_interruptible - lock a rt_mutex interruptible
1389 *
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001390 * @lock: the rt_mutex to be locked
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001391 *
1392 * Returns:
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001393 * 0 on success
1394 * -EINTR when interrupted by a signal
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001395 */
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001396int __sched rt_mutex_lock_interruptible(struct rt_mutex *lock)
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001397{
1398 might_sleep();
1399
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001400 return rt_mutex_fastlock(lock, TASK_INTERRUPTIBLE, rt_mutex_slowlock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001401}
1402EXPORT_SYMBOL_GPL(rt_mutex_lock_interruptible);
1403
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001404/*
1405 * Futex variant with full deadlock detection.
1406 */
1407int rt_mutex_timed_futex_lock(struct rt_mutex *lock,
1408 struct hrtimer_sleeper *timeout)
1409{
1410 might_sleep();
1411
Thomas Gleixner8930ed82014-05-22 03:25:47 +00001412 return rt_mutex_timed_fastlock(lock, TASK_INTERRUPTIBLE, timeout,
1413 RT_MUTEX_FULL_CHAINWALK,
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001414 rt_mutex_slowlock);
1415}
1416
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001417/**
Luis Henriques23b94b92009-04-29 21:54:51 +01001418 * rt_mutex_timed_lock - lock a rt_mutex interruptible
1419 * the timeout structure is provided
1420 * by the caller
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001421 *
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001422 * @lock: the rt_mutex to be locked
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001423 * @timeout: timeout structure or NULL (no timeout)
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001424 *
1425 * Returns:
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001426 * 0 on success
1427 * -EINTR when interrupted by a signal
Jean Delvare3ac49a12009-06-04 16:20:28 +02001428 * -ETIMEDOUT when the timeout expired
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001429 */
1430int
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001431rt_mutex_timed_lock(struct rt_mutex *lock, struct hrtimer_sleeper *timeout)
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001432{
1433 might_sleep();
1434
Thomas Gleixner8930ed82014-05-22 03:25:47 +00001435 return rt_mutex_timed_fastlock(lock, TASK_INTERRUPTIBLE, timeout,
1436 RT_MUTEX_MIN_CHAINWALK,
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001437 rt_mutex_slowlock);
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001438}
1439EXPORT_SYMBOL_GPL(rt_mutex_timed_lock);
1440
1441/**
1442 * rt_mutex_trylock - try to lock a rt_mutex
1443 *
1444 * @lock: the rt_mutex to be locked
1445 *
Thomas Gleixner6ce47fd2015-05-13 22:49:12 +02001446 * This function can only be called in thread context. It's safe to
1447 * call it from atomic regions, but not from hard interrupt or soft
1448 * interrupt context.
1449 *
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001450 * Returns 1 on success and 0 on contention
1451 */
1452int __sched rt_mutex_trylock(struct rt_mutex *lock)
1453{
Thomas Gleixner6ce47fd2015-05-13 22:49:12 +02001454 if (WARN_ON(in_irq() || in_nmi() || in_serving_softirq()))
1455 return 0;
1456
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001457 return rt_mutex_fasttrylock(lock, rt_mutex_slowtrylock);
1458}
1459EXPORT_SYMBOL_GPL(rt_mutex_trylock);
1460
1461/**
1462 * rt_mutex_unlock - unlock a rt_mutex
1463 *
1464 * @lock: the rt_mutex to be unlocked
1465 */
1466void __sched rt_mutex_unlock(struct rt_mutex *lock)
1467{
1468 rt_mutex_fastunlock(lock, rt_mutex_slowunlock);
1469}
1470EXPORT_SYMBOL_GPL(rt_mutex_unlock);
1471
Luis Henriques23b94b92009-04-29 21:54:51 +01001472/**
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001473 * rt_mutex_destroy - mark a mutex unusable
1474 * @lock: the mutex to be destroyed
1475 *
1476 * This function marks the mutex uninitialized, and any subsequent
1477 * use of the mutex is forbidden. The mutex must not be locked when
1478 * this function is called.
1479 */
1480void rt_mutex_destroy(struct rt_mutex *lock)
1481{
1482 WARN_ON(rt_mutex_is_locked(lock));
1483#ifdef CONFIG_DEBUG_RT_MUTEXES
1484 lock->magic = NULL;
1485#endif
1486}
1487
1488EXPORT_SYMBOL_GPL(rt_mutex_destroy);
1489
1490/**
1491 * __rt_mutex_init - initialize the rt lock
1492 *
1493 * @lock: the rt lock to be initialized
1494 *
1495 * Initialize the rt lock to unlocked state.
1496 *
1497 * Initializing of a locked rt lock is not allowed
1498 */
1499void __rt_mutex_init(struct rt_mutex *lock, const char *name)
1500{
1501 lock->owner = NULL;
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001502 raw_spin_lock_init(&lock->wait_lock);
Peter Zijlstrafb00aca2013-11-07 14:43:43 +01001503 lock->waiters = RB_ROOT;
1504 lock->waiters_leftmost = NULL;
Ingo Molnar23f78d4a2006-06-27 02:54:53 -07001505
1506 debug_rt_mutex_init(lock, name);
1507}
1508EXPORT_SYMBOL_GPL(__rt_mutex_init);
Ingo Molnar0cdbee92006-06-27 02:54:57 -07001509
1510/**
1511 * rt_mutex_init_proxy_locked - initialize and lock a rt_mutex on behalf of a
1512 * proxy owner
1513 *
1514 * @lock: the rt_mutex to be locked
1515 * @proxy_owner:the task to set as owner
1516 *
1517 * No locking. Caller has to do serializing itself
1518 * Special API call for PI-futex support
1519 */
1520void rt_mutex_init_proxy_locked(struct rt_mutex *lock,
1521 struct task_struct *proxy_owner)
1522{
1523 __rt_mutex_init(lock, NULL);
Ingo Molnar9a11b49a2006-07-03 00:24:33 -07001524 debug_rt_mutex_proxy_lock(lock, proxy_owner);
Lai Jiangshan81612392011-01-14 17:09:41 +08001525 rt_mutex_set_owner(lock, proxy_owner);
Ingo Molnar0cdbee92006-06-27 02:54:57 -07001526 rt_mutex_deadlock_account_lock(lock, proxy_owner);
1527}
1528
1529/**
1530 * rt_mutex_proxy_unlock - release a lock on behalf of owner
1531 *
1532 * @lock: the rt_mutex to be locked
1533 *
1534 * No locking. Caller has to do serializing itself
1535 * Special API call for PI-futex support
1536 */
1537void rt_mutex_proxy_unlock(struct rt_mutex *lock,
1538 struct task_struct *proxy_owner)
1539{
1540 debug_rt_mutex_proxy_unlock(lock);
Lai Jiangshan81612392011-01-14 17:09:41 +08001541 rt_mutex_set_owner(lock, NULL);
Ingo Molnar0cdbee92006-06-27 02:54:57 -07001542 rt_mutex_deadlock_account_unlock(proxy_owner);
1543}
1544
1545/**
Darren Hart8dac4562009-04-03 13:40:12 -07001546 * rt_mutex_start_proxy_lock() - Start lock acquisition for another task
1547 * @lock: the rt_mutex to take
1548 * @waiter: the pre-initialized rt_mutex_waiter
1549 * @task: the task to prepare
Darren Hart8dac4562009-04-03 13:40:12 -07001550 *
1551 * Returns:
1552 * 0 - task blocked on lock
1553 * 1 - acquired the lock for task, caller should wake it up
1554 * <0 - error
1555 *
1556 * Special API call for FUTEX_REQUEUE_PI support.
1557 */
1558int rt_mutex_start_proxy_lock(struct rt_mutex *lock,
1559 struct rt_mutex_waiter *waiter,
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001560 struct task_struct *task)
Darren Hart8dac4562009-04-03 13:40:12 -07001561{
1562 int ret;
1563
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001564 raw_spin_lock(&lock->wait_lock);
Darren Hart8dac4562009-04-03 13:40:12 -07001565
Lai Jiangshan81612392011-01-14 17:09:41 +08001566 if (try_to_take_rt_mutex(lock, task, NULL)) {
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001567 raw_spin_unlock(&lock->wait_lock);
Darren Hart8dac4562009-04-03 13:40:12 -07001568 return 1;
1569 }
1570
Thomas Gleixner3d5c9342014-06-05 12:34:23 +02001571 /* We enforce deadlock detection for futexes */
Thomas Gleixner8930ed82014-05-22 03:25:47 +00001572 ret = task_blocks_on_rt_mutex(lock, waiter, task,
1573 RT_MUTEX_FULL_CHAINWALK);
Darren Hart8dac4562009-04-03 13:40:12 -07001574
Lai Jiangshan81612392011-01-14 17:09:41 +08001575 if (ret && !rt_mutex_owner(lock)) {
Darren Hart8dac4562009-04-03 13:40:12 -07001576 /*
1577 * Reset the return value. We might have
1578 * returned with -EDEADLK and the owner
1579 * released the lock while we were walking the
1580 * pi chain. Let the waiter sort it out.
1581 */
1582 ret = 0;
1583 }
Lai Jiangshan81612392011-01-14 17:09:41 +08001584
1585 if (unlikely(ret))
1586 remove_waiter(lock, waiter);
1587
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001588 raw_spin_unlock(&lock->wait_lock);
Darren Hart8dac4562009-04-03 13:40:12 -07001589
1590 debug_rt_mutex_print_deadlock(waiter);
1591
1592 return ret;
1593}
1594
1595/**
Ingo Molnar0cdbee92006-06-27 02:54:57 -07001596 * rt_mutex_next_owner - return the next owner of the lock
1597 *
1598 * @lock: the rt lock query
1599 *
1600 * Returns the next owner of the lock or NULL
1601 *
1602 * Caller has to serialize against other accessors to the lock
1603 * itself.
1604 *
1605 * Special API call for PI-futex support
1606 */
1607struct task_struct *rt_mutex_next_owner(struct rt_mutex *lock)
1608{
1609 if (!rt_mutex_has_waiters(lock))
1610 return NULL;
1611
1612 return rt_mutex_top_waiter(lock)->task;
1613}
Darren Hart8dac4562009-04-03 13:40:12 -07001614
1615/**
1616 * rt_mutex_finish_proxy_lock() - Complete lock acquisition
1617 * @lock: the rt_mutex we were woken on
1618 * @to: the timeout, null if none. hrtimer should already have
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001619 * been started.
Darren Hart8dac4562009-04-03 13:40:12 -07001620 * @waiter: the pre-initialized rt_mutex_waiter
Darren Hart8dac4562009-04-03 13:40:12 -07001621 *
1622 * Complete the lock acquisition started our behalf by another thread.
1623 *
1624 * Returns:
1625 * 0 - success
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001626 * <0 - error, one of -EINTR, -ETIMEDOUT
Darren Hart8dac4562009-04-03 13:40:12 -07001627 *
1628 * Special API call for PI-futex requeue support
1629 */
1630int rt_mutex_finish_proxy_lock(struct rt_mutex *lock,
1631 struct hrtimer_sleeper *to,
Thomas Gleixnerc051b212014-05-22 03:25:50 +00001632 struct rt_mutex_waiter *waiter)
Darren Hart8dac4562009-04-03 13:40:12 -07001633{
1634 int ret;
1635
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001636 raw_spin_lock(&lock->wait_lock);
Darren Hart8dac4562009-04-03 13:40:12 -07001637
1638 set_current_state(TASK_INTERRUPTIBLE);
1639
Davidlohr Buesoafffc6c2015-02-01 22:16:24 -08001640 /* sleep on the mutex */
Lai Jiangshan81612392011-01-14 17:09:41 +08001641 ret = __rt_mutex_slowlock(lock, TASK_INTERRUPTIBLE, to, waiter);
Darren Hart8dac4562009-04-03 13:40:12 -07001642
Lai Jiangshan81612392011-01-14 17:09:41 +08001643 if (unlikely(ret))
Darren Hart8dac4562009-04-03 13:40:12 -07001644 remove_waiter(lock, waiter);
1645
1646 /*
1647 * try_to_take_rt_mutex() sets the waiter bit unconditionally. We might
1648 * have to fix that up.
1649 */
1650 fixup_rt_mutex_waiters(lock);
1651
Thomas Gleixnerd209d742009-11-17 18:22:11 +01001652 raw_spin_unlock(&lock->wait_lock);
Darren Hart8dac4562009-04-03 13:40:12 -07001653
Darren Hart8dac4562009-04-03 13:40:12 -07001654 return ret;
1655}