thr_cond.c revision 300043
1/*
2 * Copyright (c) 2005 David Xu <davidxu@freebsd.org>
3 * Copyright (c) 2015 The FreeBSD Foundation
4 * All rights reserved.
5 *
6 * Portions of this software were developed by Konstantin Belousov
7 * under sponsorship from the FreeBSD Foundation.
8 *
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted provided that the following conditions
11 * are met:
12 * 1. Redistributions of source code must retain the above copyright
13 *    notice unmodified, this list of conditions, and the following
14 *    disclaimer.
15 * 2. Redistributions in binary form must reproduce the above copyright
16 *    notice, this list of conditions and the following disclaimer in the
17 *    documentation and/or other materials provided with the distribution.
18 *
19 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
20 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
21 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
22 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
23 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
24 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
25 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
26 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
27 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
28 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29 */
30
31#include <sys/cdefs.h>
32__FBSDID("$FreeBSD: head/lib/libthr/thread/thr_cond.c 300043 2016-05-17 09:56:22Z kib $");
33
34#include "namespace.h"
35#include <stdlib.h>
36#include <errno.h>
37#include <string.h>
38#include <pthread.h>
39#include <limits.h>
40#include "un-namespace.h"
41
42#include "thr_private.h"
43
44_Static_assert(sizeof(struct pthread_cond) <= PAGE_SIZE,
45    "pthread_cond too large");
46
47/*
48 * Prototypes
49 */
50int	__pthread_cond_wait(pthread_cond_t *cond, pthread_mutex_t *mutex);
51int	__pthread_cond_timedwait(pthread_cond_t *cond, pthread_mutex_t *mutex,
52		       const struct timespec * abstime);
53static int cond_init(pthread_cond_t *cond, const pthread_condattr_t *attr);
54static int cond_wait_common(pthread_cond_t *cond, pthread_mutex_t *mutex,
55		    const struct timespec *abstime, int cancel);
56static int cond_signal_common(pthread_cond_t *cond);
57static int cond_broadcast_common(pthread_cond_t *cond);
58
59/*
60 * Double underscore versions are cancellation points.  Single underscore
61 * versions are not and are provided for libc internal usage (which
62 * shouldn't introduce cancellation points).
63 */
64__weak_reference(__pthread_cond_wait, pthread_cond_wait);
65__weak_reference(__pthread_cond_timedwait, pthread_cond_timedwait);
66
67__weak_reference(_pthread_cond_init, pthread_cond_init);
68__weak_reference(_pthread_cond_destroy, pthread_cond_destroy);
69__weak_reference(_pthread_cond_signal, pthread_cond_signal);
70__weak_reference(_pthread_cond_broadcast, pthread_cond_broadcast);
71
72#define CV_PSHARED(cvp)	(((cvp)->__flags & USYNC_PROCESS_SHARED) != 0)
73
74static void
75cond_init_body(struct pthread_cond *cvp, const struct pthread_cond_attr *cattr)
76{
77
78	if (cattr == NULL) {
79		cvp->__clock_id = CLOCK_REALTIME;
80	} else {
81		if (cattr->c_pshared)
82			cvp->__flags |= USYNC_PROCESS_SHARED;
83		cvp->__clock_id = cattr->c_clockid;
84	}
85}
86
87static int
88cond_init(pthread_cond_t *cond, const pthread_condattr_t *cond_attr)
89{
90	struct pthread_cond *cvp;
91	const struct pthread_cond_attr *cattr;
92	int pshared;
93
94	cattr = cond_attr != NULL ? *cond_attr : NULL;
95	if (cattr == NULL || cattr->c_pshared == PTHREAD_PROCESS_PRIVATE) {
96		pshared = 0;
97		cvp = calloc(1, sizeof(struct pthread_cond));
98		if (cvp == NULL)
99			return (ENOMEM);
100	} else {
101		pshared = 1;
102		cvp = __thr_pshared_offpage(cond, 1);
103		if (cvp == NULL)
104			return (EFAULT);
105	}
106
107	/*
108	 * Initialise the condition variable structure:
109	 */
110	cond_init_body(cvp, cattr);
111	*cond = pshared ? THR_PSHARED_PTR : cvp;
112	return (0);
113}
114
115static int
116init_static(struct pthread *thread, pthread_cond_t *cond)
117{
118	int ret;
119
120	THR_LOCK_ACQUIRE(thread, &_cond_static_lock);
121
122	if (*cond == NULL)
123		ret = cond_init(cond, NULL);
124	else
125		ret = 0;
126
127	THR_LOCK_RELEASE(thread, &_cond_static_lock);
128
129	return (ret);
130}
131
132#define CHECK_AND_INIT_COND							\
133	if (*cond == THR_PSHARED_PTR) {						\
134		cvp = __thr_pshared_offpage(cond, 0);				\
135		if (cvp == NULL)						\
136			return (EINVAL);					\
137	} else if (__predict_false((cvp = (*cond)) <= THR_COND_DESTROYED)) {	\
138		if (cvp == THR_COND_INITIALIZER) {				\
139			int ret;						\
140			ret = init_static(_get_curthread(), cond);		\
141			if (ret)						\
142				return (ret);					\
143		} else if (cvp == THR_COND_DESTROYED) {				\
144			return (EINVAL);					\
145		}								\
146		cvp = *cond;							\
147	}
148
149int
150_pthread_cond_init(pthread_cond_t *cond, const pthread_condattr_t *cond_attr)
151{
152
153	*cond = NULL;
154	return (cond_init(cond, cond_attr));
155}
156
157int
158_pthread_cond_destroy(pthread_cond_t *cond)
159{
160	struct pthread_cond *cvp;
161	int error;
162
163	error = 0;
164	if (*cond == THR_PSHARED_PTR) {
165		cvp = __thr_pshared_offpage(cond, 0);
166		if (cvp != NULL)
167			__thr_pshared_destroy(cond);
168		*cond = THR_COND_DESTROYED;
169	} else if ((cvp = *cond) == THR_COND_INITIALIZER) {
170		/* nothing */
171	} else if (cvp == THR_COND_DESTROYED) {
172		error = EINVAL;
173	} else {
174		cvp = *cond;
175		*cond = THR_COND_DESTROYED;
176		free(cvp);
177	}
178	return (error);
179}
180
181/*
182 * Cancellation behavior:
183 *   Thread may be canceled at start, if thread is canceled, it means it
184 *   did not get a wakeup from pthread_cond_signal(), otherwise, it is
185 *   not canceled.
186 *   Thread cancellation never cause wakeup from pthread_cond_signal()
187 *   to be lost.
188 */
189static int
190cond_wait_kernel(struct pthread_cond *cvp, struct pthread_mutex *mp,
191    const struct timespec *abstime, int cancel)
192{
193	struct pthread *curthread;
194	int error, error2, recurse, robust;
195
196	curthread = _get_curthread();
197	robust = _mutex_enter_robust(curthread, mp);
198
199	error = _mutex_cv_detach(mp, &recurse);
200	if (error != 0) {
201		if (robust)
202			_mutex_leave_robust(curthread, mp);
203		return (error);
204	}
205
206	if (cancel)
207		_thr_cancel_enter2(curthread, 0);
208	error = _thr_ucond_wait((struct ucond *)&cvp->__has_kern_waiters,
209	    (struct umutex *)&mp->m_lock, abstime, CVWAIT_ABSTIME |
210	    CVWAIT_CLOCKID);
211	if (cancel)
212		_thr_cancel_leave(curthread, 0);
213
214	/*
215	 * Note that PP mutex and ROBUST mutex may return
216	 * interesting error codes.
217	 */
218	if (error == 0) {
219		error2 = _mutex_cv_lock(mp, recurse, true);
220	} else if (error == EINTR || error == ETIMEDOUT) {
221		error2 = _mutex_cv_lock(mp, recurse, true);
222		/*
223		 * Do not do cancellation on EOWNERDEAD there.  The
224		 * cancellation cleanup handler will use the protected
225		 * state and unlock the mutex without making the state
226		 * consistent and the state will be unrecoverable.
227		 */
228		if (error2 == 0 && cancel)
229			_thr_testcancel(curthread);
230
231		if (error == EINTR)
232			error = 0;
233	} else {
234		/* We know that it didn't unlock the mutex. */
235		_mutex_cv_attach(mp, recurse);
236		if (cancel)
237			_thr_testcancel(curthread);
238		error2 = 0;
239	}
240	if (robust)
241		_mutex_leave_robust(curthread, mp);
242	return (error2 != 0 ? error2 : error);
243}
244
245/*
246 * Thread waits in userland queue whenever possible, when thread
247 * is signaled or broadcasted, it is removed from the queue, and
248 * is saved in curthread's defer_waiters[] buffer, but won't be
249 * woken up until mutex is unlocked.
250 */
251
252static int
253cond_wait_user(struct pthread_cond *cvp, struct pthread_mutex *mp,
254    const struct timespec *abstime, int cancel)
255{
256	struct pthread *curthread;
257	struct sleepqueue *sq;
258	int deferred, error, error2, recurse;
259
260	curthread = _get_curthread();
261	if (curthread->wchan != NULL)
262		PANIC("thread was already on queue.");
263
264	if (cancel)
265		_thr_testcancel(curthread);
266
267	_sleepq_lock(cvp);
268	/*
269	 * set __has_user_waiters before unlocking mutex, this allows
270	 * us to check it without locking in pthread_cond_signal().
271	 */
272	cvp->__has_user_waiters = 1;
273	deferred = 0;
274	(void)_mutex_cv_unlock(mp, &recurse, &deferred);
275	curthread->mutex_obj = mp;
276	_sleepq_add(cvp, curthread);
277	for(;;) {
278		_thr_clear_wake(curthread);
279		_sleepq_unlock(cvp);
280		if (deferred) {
281			deferred = 0;
282			if ((mp->m_lock.m_owner & UMUTEX_CONTESTED) == 0)
283				(void)_umtx_op_err(&mp->m_lock,
284				    UMTX_OP_MUTEX_WAKE2, mp->m_lock.m_flags,
285				    0, 0);
286		}
287		if (curthread->nwaiter_defer > 0) {
288			_thr_wake_all(curthread->defer_waiters,
289			    curthread->nwaiter_defer);
290			curthread->nwaiter_defer = 0;
291		}
292
293		if (cancel)
294			_thr_cancel_enter2(curthread, 0);
295		error = _thr_sleep(curthread, cvp->__clock_id, abstime);
296		if (cancel)
297			_thr_cancel_leave(curthread, 0);
298
299		_sleepq_lock(cvp);
300		if (curthread->wchan == NULL) {
301			error = 0;
302			break;
303		} else if (cancel && SHOULD_CANCEL(curthread)) {
304			sq = _sleepq_lookup(cvp);
305			cvp->__has_user_waiters = _sleepq_remove(sq, curthread);
306			_sleepq_unlock(cvp);
307			curthread->mutex_obj = NULL;
308			error2 = _mutex_cv_lock(mp, recurse, false);
309			if (!THR_IN_CRITICAL(curthread))
310				_pthread_exit(PTHREAD_CANCELED);
311			else /* this should not happen */
312				return (error2);
313		} else if (error == ETIMEDOUT) {
314			sq = _sleepq_lookup(cvp);
315			cvp->__has_user_waiters =
316			    _sleepq_remove(sq, curthread);
317			break;
318		}
319	}
320	_sleepq_unlock(cvp);
321	curthread->mutex_obj = NULL;
322	error2 = _mutex_cv_lock(mp, recurse, false);
323	if (error == 0)
324		error = error2;
325	return (error);
326}
327
328static int
329cond_wait_common(pthread_cond_t *cond, pthread_mutex_t *mutex,
330	const struct timespec *abstime, int cancel)
331{
332	struct pthread	*curthread = _get_curthread();
333	struct pthread_cond *cvp;
334	struct pthread_mutex *mp;
335	int	error;
336
337	CHECK_AND_INIT_COND
338
339	if (*mutex == THR_PSHARED_PTR) {
340		mp = __thr_pshared_offpage(mutex, 0);
341		if (mp == NULL)
342			return (EINVAL);
343	} else {
344		mp = *mutex;
345	}
346
347	if ((error = _mutex_owned(curthread, mp)) != 0)
348		return (error);
349
350	if (curthread->attr.sched_policy != SCHED_OTHER ||
351	    (mp->m_lock.m_flags & (UMUTEX_PRIO_PROTECT | UMUTEX_PRIO_INHERIT |
352	    USYNC_PROCESS_SHARED)) != 0 ||
353	    (cvp->__flags & USYNC_PROCESS_SHARED) != 0)
354		return (cond_wait_kernel(cvp, mp, abstime, cancel));
355	else
356		return (cond_wait_user(cvp, mp, abstime, cancel));
357}
358
359int
360_pthread_cond_wait(pthread_cond_t *cond, pthread_mutex_t *mutex)
361{
362
363	return (cond_wait_common(cond, mutex, NULL, 0));
364}
365
366int
367__pthread_cond_wait(pthread_cond_t *cond, pthread_mutex_t *mutex)
368{
369
370	return (cond_wait_common(cond, mutex, NULL, 1));
371}
372
373int
374_pthread_cond_timedwait(pthread_cond_t *cond, pthread_mutex_t *mutex,
375		       const struct timespec * abstime)
376{
377
378	if (abstime == NULL || abstime->tv_sec < 0 || abstime->tv_nsec < 0 ||
379	    abstime->tv_nsec >= 1000000000)
380		return (EINVAL);
381
382	return (cond_wait_common(cond, mutex, abstime, 0));
383}
384
385int
386__pthread_cond_timedwait(pthread_cond_t *cond, pthread_mutex_t *mutex,
387		       const struct timespec *abstime)
388{
389
390	if (abstime == NULL || abstime->tv_sec < 0 || abstime->tv_nsec < 0 ||
391	    abstime->tv_nsec >= 1000000000)
392		return (EINVAL);
393
394	return (cond_wait_common(cond, mutex, abstime, 1));
395}
396
397static int
398cond_signal_common(pthread_cond_t *cond)
399{
400	struct pthread	*curthread = _get_curthread();
401	struct pthread *td;
402	struct pthread_cond *cvp;
403	struct pthread_mutex *mp;
404	struct sleepqueue *sq;
405	int	*waddr;
406	int	pshared;
407
408	/*
409	 * If the condition variable is statically initialized, perform dynamic
410	 * initialization.
411	 */
412	CHECK_AND_INIT_COND
413
414	pshared = CV_PSHARED(cvp);
415
416	_thr_ucond_signal((struct ucond *)&cvp->__has_kern_waiters);
417
418	if (pshared || cvp->__has_user_waiters == 0)
419		return (0);
420
421	curthread = _get_curthread();
422	waddr = NULL;
423	_sleepq_lock(cvp);
424	sq = _sleepq_lookup(cvp);
425	if (sq == NULL) {
426		_sleepq_unlock(cvp);
427		return (0);
428	}
429
430	td = _sleepq_first(sq);
431	mp = td->mutex_obj;
432	cvp->__has_user_waiters = _sleepq_remove(sq, td);
433	if (PMUTEX_OWNER_ID(mp) == TID(curthread)) {
434		if (curthread->nwaiter_defer >= MAX_DEFER_WAITERS) {
435			_thr_wake_all(curthread->defer_waiters,
436			    curthread->nwaiter_defer);
437			curthread->nwaiter_defer = 0;
438		}
439		curthread->defer_waiters[curthread->nwaiter_defer++] =
440		    &td->wake_addr->value;
441		mp->m_flags |= PMUTEX_FLAG_DEFERRED;
442	} else {
443		waddr = &td->wake_addr->value;
444	}
445	_sleepq_unlock(cvp);
446	if (waddr != NULL)
447		_thr_set_wake(waddr);
448	return (0);
449}
450
451struct broadcast_arg {
452	struct pthread *curthread;
453	unsigned int *waddrs[MAX_DEFER_WAITERS];
454	int count;
455};
456
457static void
458drop_cb(struct pthread *td, void *arg)
459{
460	struct broadcast_arg *ba = arg;
461	struct pthread_mutex *mp;
462	struct pthread *curthread = ba->curthread;
463
464	mp = td->mutex_obj;
465	if (PMUTEX_OWNER_ID(mp) == TID(curthread)) {
466		if (curthread->nwaiter_defer >= MAX_DEFER_WAITERS) {
467			_thr_wake_all(curthread->defer_waiters,
468			    curthread->nwaiter_defer);
469			curthread->nwaiter_defer = 0;
470		}
471		curthread->defer_waiters[curthread->nwaiter_defer++] =
472		    &td->wake_addr->value;
473		mp->m_flags |= PMUTEX_FLAG_DEFERRED;
474	} else {
475		if (ba->count >= MAX_DEFER_WAITERS) {
476			_thr_wake_all(ba->waddrs, ba->count);
477			ba->count = 0;
478		}
479		ba->waddrs[ba->count++] = &td->wake_addr->value;
480	}
481}
482
483static int
484cond_broadcast_common(pthread_cond_t *cond)
485{
486	int    pshared;
487	struct pthread_cond *cvp;
488	struct sleepqueue *sq;
489	struct broadcast_arg ba;
490
491	/*
492	 * If the condition variable is statically initialized, perform dynamic
493	 * initialization.
494	 */
495	CHECK_AND_INIT_COND
496
497	pshared = CV_PSHARED(cvp);
498
499	_thr_ucond_broadcast((struct ucond *)&cvp->__has_kern_waiters);
500
501	if (pshared || cvp->__has_user_waiters == 0)
502		return (0);
503
504	ba.curthread = _get_curthread();
505	ba.count = 0;
506
507	_sleepq_lock(cvp);
508	sq = _sleepq_lookup(cvp);
509	if (sq == NULL) {
510		_sleepq_unlock(cvp);
511		return (0);
512	}
513	_sleepq_drop(sq, drop_cb, &ba);
514	cvp->__has_user_waiters = 0;
515	_sleepq_unlock(cvp);
516	if (ba.count > 0)
517		_thr_wake_all(ba.waddrs, ba.count);
518	return (0);
519}
520
521int
522_pthread_cond_signal(pthread_cond_t * cond)
523{
524
525	return (cond_signal_common(cond));
526}
527
528int
529_pthread_cond_broadcast(pthread_cond_t * cond)
530{
531
532	return (cond_broadcast_common(cond));
533}
534