pthread_mutex.c revision 1.22.2.1 1 1.22.2.1 bouyer /* $NetBSD: pthread_mutex.c,v 1.22.2.1 2008/09/16 18:49:32 bouyer Exp $ */
2 1.2 thorpej
3 1.2 thorpej /*-
4 1.2 thorpej * Copyright (c) 2001, 2003 The NetBSD Foundation, Inc.
5 1.2 thorpej * All rights reserved.
6 1.2 thorpej *
7 1.2 thorpej * This code is derived from software contributed to The NetBSD Foundation
8 1.2 thorpej * by Nathan J. Williams, and by Jason R. Thorpe.
9 1.2 thorpej *
10 1.2 thorpej * Redistribution and use in source and binary forms, with or without
11 1.2 thorpej * modification, are permitted provided that the following conditions
12 1.2 thorpej * are met:
13 1.2 thorpej * 1. Redistributions of source code must retain the above copyright
14 1.2 thorpej * notice, this list of conditions and the following disclaimer.
15 1.2 thorpej * 2. Redistributions in binary form must reproduce the above copyright
16 1.2 thorpej * notice, this list of conditions and the following disclaimer in the
17 1.2 thorpej * documentation and/or other materials provided with the distribution.
18 1.2 thorpej * 3. All advertising materials mentioning features or use of this software
19 1.2 thorpej * must display the following acknowledgement:
20 1.2 thorpej * This product includes software developed by the NetBSD
21 1.2 thorpej * Foundation, Inc. and its contributors.
22 1.2 thorpej * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.2 thorpej * contributors may be used to endorse or promote products derived
24 1.2 thorpej * from this software without specific prior written permission.
25 1.2 thorpej *
26 1.2 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.2 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.2 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.2 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.2 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.2 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.2 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.2 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.2 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.2 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.2 thorpej * POSSIBILITY OF SUCH DAMAGE.
37 1.2 thorpej */
38 1.2 thorpej
39 1.2 thorpej #include <sys/cdefs.h>
40 1.22.2.1 bouyer __RCSID("$NetBSD: pthread_mutex.c,v 1.22.2.1 2008/09/16 18:49:32 bouyer Exp $");
41 1.10 lukem
42 1.2 thorpej #include <errno.h>
43 1.2 thorpej #include <limits.h>
44 1.2 thorpej #include <stdlib.h>
45 1.6 scw #include <string.h>
46 1.2 thorpej
47 1.2 thorpej #include "pthread.h"
48 1.2 thorpej #include "pthread_int.h"
49 1.2 thorpej
50 1.2 thorpej static int pthread_mutex_lock_slow(pthread_mutex_t *);
51 1.2 thorpej
52 1.2 thorpej __strong_alias(__libc_mutex_init,pthread_mutex_init)
53 1.2 thorpej __strong_alias(__libc_mutex_lock,pthread_mutex_lock)
54 1.2 thorpej __strong_alias(__libc_mutex_trylock,pthread_mutex_trylock)
55 1.2 thorpej __strong_alias(__libc_mutex_unlock,pthread_mutex_unlock)
56 1.2 thorpej __strong_alias(__libc_mutex_destroy,pthread_mutex_destroy)
57 1.4 thorpej
58 1.4 thorpej __strong_alias(__libc_mutexattr_init,pthread_mutexattr_init)
59 1.4 thorpej __strong_alias(__libc_mutexattr_destroy,pthread_mutexattr_destroy)
60 1.5 thorpej __strong_alias(__libc_mutexattr_settype,pthread_mutexattr_settype)
61 1.2 thorpej
62 1.2 thorpej __strong_alias(__libc_thr_once,pthread_once)
63 1.2 thorpej
64 1.2 thorpej struct mutex_private {
65 1.2 thorpej int type;
66 1.2 thorpej int recursecount;
67 1.2 thorpej };
68 1.2 thorpej
69 1.2 thorpej static const struct mutex_private mutex_private_default = {
70 1.2 thorpej PTHREAD_MUTEX_DEFAULT,
71 1.2 thorpej 0,
72 1.2 thorpej };
73 1.2 thorpej
74 1.2 thorpej struct mutexattr_private {
75 1.2 thorpej int type;
76 1.2 thorpej };
77 1.2 thorpej
78 1.2 thorpej static const struct mutexattr_private mutexattr_private_default = {
79 1.2 thorpej PTHREAD_MUTEX_DEFAULT,
80 1.2 thorpej };
81 1.2 thorpej
82 1.2 thorpej /*
83 1.2 thorpej * If the mutex does not already have private data (i.e. was statically
84 1.2 thorpej * initialized), then give it the default.
85 1.2 thorpej */
86 1.2 thorpej #define GET_MUTEX_PRIVATE(mutex, mp) \
87 1.2 thorpej do { \
88 1.2 thorpej if (__predict_false((mp = (mutex)->ptm_private) == NULL)) { \
89 1.2 thorpej /* LINTED cast away const */ \
90 1.2 thorpej mp = ((mutex)->ptm_private = \
91 1.2 thorpej (void *)&mutex_private_default); \
92 1.2 thorpej } \
93 1.2 thorpej } while (/*CONSTCOND*/0)
94 1.2 thorpej
95 1.2 thorpej int
96 1.2 thorpej pthread_mutex_init(pthread_mutex_t *mutex, const pthread_mutexattr_t *attr)
97 1.2 thorpej {
98 1.2 thorpej struct mutexattr_private *map;
99 1.2 thorpej struct mutex_private *mp;
100 1.2 thorpej
101 1.14 nathanw pthread__error(EINVAL, "Invalid mutex attribute",
102 1.14 nathanw (attr == NULL) || (attr->ptma_magic == _PT_MUTEXATTR_MAGIC));
103 1.2 thorpej
104 1.2 thorpej if (attr != NULL && (map = attr->ptma_private) != NULL &&
105 1.2 thorpej memcmp(map, &mutexattr_private_default, sizeof(*map)) != 0) {
106 1.2 thorpej mp = malloc(sizeof(*mp));
107 1.2 thorpej if (mp == NULL)
108 1.2 thorpej return ENOMEM;
109 1.2 thorpej
110 1.2 thorpej mp->type = map->type;
111 1.2 thorpej mp->recursecount = 0;
112 1.2 thorpej } else {
113 1.2 thorpej /* LINTED cast away const */
114 1.2 thorpej mp = (struct mutex_private *) &mutex_private_default;
115 1.2 thorpej }
116 1.2 thorpej
117 1.2 thorpej mutex->ptm_magic = _PT_MUTEX_MAGIC;
118 1.2 thorpej mutex->ptm_owner = NULL;
119 1.2 thorpej pthread_lockinit(&mutex->ptm_lock);
120 1.2 thorpej pthread_lockinit(&mutex->ptm_interlock);
121 1.2 thorpej PTQ_INIT(&mutex->ptm_blocked);
122 1.2 thorpej mutex->ptm_private = mp;
123 1.2 thorpej
124 1.2 thorpej return 0;
125 1.2 thorpej }
126 1.2 thorpej
127 1.2 thorpej
128 1.2 thorpej int
129 1.2 thorpej pthread_mutex_destroy(pthread_mutex_t *mutex)
130 1.2 thorpej {
131 1.2 thorpej
132 1.14 nathanw pthread__error(EINVAL, "Invalid mutex",
133 1.14 nathanw mutex->ptm_magic == _PT_MUTEX_MAGIC);
134 1.14 nathanw pthread__error(EBUSY, "Destroying locked mutex",
135 1.14 nathanw mutex->ptm_lock == __SIMPLELOCK_UNLOCKED);
136 1.2 thorpej
137 1.2 thorpej mutex->ptm_magic = _PT_MUTEX_DEAD;
138 1.2 thorpej if (mutex->ptm_private != NULL &&
139 1.3 christos mutex->ptm_private != (const void *)&mutex_private_default)
140 1.2 thorpej free(mutex->ptm_private);
141 1.2 thorpej
142 1.2 thorpej return 0;
143 1.2 thorpej }
144 1.2 thorpej
145 1.2 thorpej
146 1.2 thorpej /*
147 1.2 thorpej * Note regarding memory visibility: Pthreads has rules about memory
148 1.2 thorpej * visibility and mutexes. Very roughly: Memory a thread can see when
149 1.2 thorpej * it unlocks a mutex can be seen by another thread that locks the
150 1.2 thorpej * same mutex.
151 1.2 thorpej *
152 1.2 thorpej * A memory barrier after a lock and before an unlock will provide
153 1.2 thorpej * this behavior. This code relies on pthread__simple_lock_try() to issue
154 1.2 thorpej * a barrier after obtaining a lock, and on pthread__simple_unlock() to
155 1.2 thorpej * issue a barrier before releasing a lock.
156 1.2 thorpej */
157 1.2 thorpej
158 1.2 thorpej int
159 1.2 thorpej pthread_mutex_lock(pthread_mutex_t *mutex)
160 1.2 thorpej {
161 1.2 thorpej int error;
162 1.2 thorpej
163 1.7 nathanw PTHREADD_ADD(PTHREADD_MUTEX_LOCK);
164 1.2 thorpej /*
165 1.2 thorpej * Note that if we get the lock, we don't have to deal with any
166 1.2 thorpej * non-default lock type handling.
167 1.2 thorpej */
168 1.2 thorpej if (__predict_false(pthread__simple_lock_try(&mutex->ptm_lock) == 0)) {
169 1.2 thorpej error = pthread_mutex_lock_slow(mutex);
170 1.2 thorpej if (error)
171 1.2 thorpej return error;
172 1.2 thorpej }
173 1.2 thorpej
174 1.2 thorpej /* We have the lock! */
175 1.8 nathanw /*
176 1.8 nathanw * Identifying ourselves may be slow, and this assignment is
177 1.8 nathanw * only needed for (a) debugging identity of the owning thread
178 1.8 nathanw * and (b) handling errorcheck and recursive mutexes. It's
179 1.8 nathanw * better to just stash our stack pointer here and let those
180 1.8 nathanw * slow exception cases compute the stack->thread mapping.
181 1.8 nathanw */
182 1.8 nathanw mutex->ptm_owner = (pthread_t)pthread__sp();
183 1.2 thorpej
184 1.2 thorpej return 0;
185 1.2 thorpej }
186 1.2 thorpej
187 1.2 thorpej
188 1.2 thorpej static int
189 1.2 thorpej pthread_mutex_lock_slow(pthread_mutex_t *mutex)
190 1.2 thorpej {
191 1.2 thorpej pthread_t self;
192 1.20 chs extern int pthread__started;
193 1.2 thorpej
194 1.14 nathanw pthread__error(EINVAL, "Invalid mutex",
195 1.14 nathanw mutex->ptm_magic == _PT_MUTEX_MAGIC);
196 1.13 nathanw
197 1.2 thorpej self = pthread__self();
198 1.2 thorpej
199 1.7 nathanw PTHREADD_ADD(PTHREADD_MUTEX_LOCK_SLOW);
200 1.2 thorpej while (/*CONSTCOND*/1) {
201 1.2 thorpej if (pthread__simple_lock_try(&mutex->ptm_lock))
202 1.2 thorpej break; /* got it! */
203 1.2 thorpej
204 1.2 thorpej /* Okay, didn't look free. Get the interlock... */
205 1.2 thorpej pthread_spinlock(self, &mutex->ptm_interlock);
206 1.21 chs
207 1.2 thorpej /*
208 1.2 thorpej * The mutex_unlock routine will get the interlock
209 1.2 thorpej * before looking at the list of sleepers, so if the
210 1.2 thorpej * lock is held we can safely put ourselves on the
211 1.2 thorpej * sleep queue. If it's not held, we can try taking it
212 1.2 thorpej * again.
213 1.2 thorpej */
214 1.18 cl PTQ_INSERT_HEAD(&mutex->ptm_blocked, self, pt_sleep);
215 1.2 thorpej if (mutex->ptm_lock == __SIMPLELOCK_LOCKED) {
216 1.2 thorpej struct mutex_private *mp;
217 1.2 thorpej
218 1.2 thorpej GET_MUTEX_PRIVATE(mutex, mp);
219 1.2 thorpej
220 1.8 nathanw if (pthread__id(mutex->ptm_owner) == self) {
221 1.2 thorpej switch (mp->type) {
222 1.2 thorpej case PTHREAD_MUTEX_ERRORCHECK:
223 1.18 cl PTQ_REMOVE(&mutex->ptm_blocked, self,
224 1.18 cl pt_sleep);
225 1.2 thorpej pthread_spinunlock(self,
226 1.2 thorpej &mutex->ptm_interlock);
227 1.2 thorpej return EDEADLK;
228 1.2 thorpej
229 1.2 thorpej case PTHREAD_MUTEX_RECURSIVE:
230 1.2 thorpej /*
231 1.2 thorpej * It's safe to do this without
232 1.2 thorpej * holding the interlock, because
233 1.2 thorpej * we only modify it if we know we
234 1.2 thorpej * own the mutex.
235 1.2 thorpej */
236 1.18 cl PTQ_REMOVE(&mutex->ptm_blocked, self,
237 1.18 cl pt_sleep);
238 1.2 thorpej pthread_spinunlock(self,
239 1.2 thorpej &mutex->ptm_interlock);
240 1.2 thorpej if (mp->recursecount == INT_MAX)
241 1.2 thorpej return EAGAIN;
242 1.2 thorpej mp->recursecount++;
243 1.2 thorpej return 0;
244 1.2 thorpej }
245 1.2 thorpej }
246 1.2 thorpej
247 1.21 chs if (pthread__started == 0) {
248 1.21 chs sigset_t ss;
249 1.21 chs
250 1.21 chs /*
251 1.21 chs * The spec says we must deadlock, so...
252 1.21 chs */
253 1.21 chs pthread__assert(mp->type ==
254 1.21 chs PTHREAD_MUTEX_NORMAL);
255 1.21 chs (void) sigprocmask(SIG_SETMASK, NULL, &ss);
256 1.21 chs for (;;) {
257 1.21 chs sigsuspend(&ss);
258 1.21 chs }
259 1.21 chs /*NOTREACHED*/
260 1.21 chs }
261 1.21 chs
262 1.2 thorpej /*
263 1.2 thorpej * Locking a mutex is not a cancellation
264 1.2 thorpej * point, so we don't need to do the
265 1.2 thorpej * test-cancellation dance. We may get woken
266 1.8 nathanw * up spuriously by pthread_cancel or signals,
267 1.2 thorpej * but it's okay since we're just going to
268 1.2 thorpej * retry.
269 1.2 thorpej */
270 1.2 thorpej pthread_spinlock(self, &self->pt_statelock);
271 1.22.2.1 bouyer if (pthread_check_defsig(self)) {
272 1.22.2.1 bouyer pthread_spinunlock(self, &self->pt_statelock);
273 1.22.2.1 bouyer PTQ_REMOVE(&mutex->ptm_blocked, self, pt_sleep);
274 1.22.2.1 bouyer pthread_spinunlock(self, &mutex->ptm_interlock);
275 1.22.2.1 bouyer pthread__signal_deferred(self, self);
276 1.22.2.1 bouyer continue;
277 1.22.2.1 bouyer }
278 1.2 thorpej self->pt_state = PT_STATE_BLOCKED_QUEUE;
279 1.2 thorpej self->pt_sleepobj = mutex;
280 1.2 thorpej self->pt_sleepq = &mutex->ptm_blocked;
281 1.2 thorpej self->pt_sleeplock = &mutex->ptm_interlock;
282 1.2 thorpej pthread_spinunlock(self, &self->pt_statelock);
283 1.2 thorpej
284 1.2 thorpej pthread__block(self, &mutex->ptm_interlock);
285 1.2 thorpej /* interlock is not held when we return */
286 1.2 thorpej } else {
287 1.18 cl PTQ_REMOVE(&mutex->ptm_blocked, self, pt_sleep);
288 1.2 thorpej pthread_spinunlock(self, &mutex->ptm_interlock);
289 1.2 thorpej }
290 1.2 thorpej /* Go around for another try. */
291 1.2 thorpej }
292 1.2 thorpej
293 1.2 thorpej return 0;
294 1.2 thorpej }
295 1.2 thorpej
296 1.2 thorpej
297 1.2 thorpej int
298 1.2 thorpej pthread_mutex_trylock(pthread_mutex_t *mutex)
299 1.2 thorpej {
300 1.2 thorpej
301 1.14 nathanw pthread__error(EINVAL, "Invalid mutex",
302 1.14 nathanw mutex->ptm_magic == _PT_MUTEX_MAGIC);
303 1.2 thorpej
304 1.7 nathanw PTHREADD_ADD(PTHREADD_MUTEX_TRYLOCK);
305 1.2 thorpej if (pthread__simple_lock_try(&mutex->ptm_lock) == 0) {
306 1.2 thorpej struct mutex_private *mp;
307 1.2 thorpej
308 1.2 thorpej GET_MUTEX_PRIVATE(mutex, mp);
309 1.2 thorpej
310 1.2 thorpej /*
311 1.2 thorpej * These tests can be performed without holding the
312 1.2 thorpej * interlock because these fields are only modified
313 1.2 thorpej * if we know we own the mutex.
314 1.2 thorpej */
315 1.13 nathanw if ((mp->type == PTHREAD_MUTEX_RECURSIVE) &&
316 1.13 nathanw (pthread__id(mutex->ptm_owner) == pthread__self())) {
317 1.13 nathanw if (mp->recursecount == INT_MAX)
318 1.13 nathanw return EAGAIN;
319 1.13 nathanw mp->recursecount++;
320 1.13 nathanw return 0;
321 1.2 thorpej }
322 1.2 thorpej
323 1.2 thorpej return EBUSY;
324 1.2 thorpej }
325 1.2 thorpej
326 1.8 nathanw /* see comment at the end of pthread_mutex_lock() */
327 1.8 nathanw mutex->ptm_owner = (pthread_t)pthread__sp();
328 1.2 thorpej
329 1.2 thorpej return 0;
330 1.2 thorpej }
331 1.2 thorpej
332 1.2 thorpej
333 1.2 thorpej int
334 1.2 thorpej pthread_mutex_unlock(pthread_mutex_t *mutex)
335 1.2 thorpej {
336 1.2 thorpej struct mutex_private *mp;
337 1.2 thorpej pthread_t self, blocked;
338 1.13 nathanw int weown;
339 1.13 nathanw
340 1.14 nathanw pthread__error(EINVAL, "Invalid mutex",
341 1.14 nathanw mutex->ptm_magic == _PT_MUTEX_MAGIC);
342 1.2 thorpej
343 1.7 nathanw PTHREADD_ADD(PTHREADD_MUTEX_UNLOCK);
344 1.2 thorpej
345 1.2 thorpej GET_MUTEX_PRIVATE(mutex, mp);
346 1.2 thorpej
347 1.22 wrstuden self = pthread_self();
348 1.2 thorpej /*
349 1.2 thorpej * These tests can be performed without holding the
350 1.2 thorpej * interlock because these fields are only modified
351 1.2 thorpej * if we know we own the mutex.
352 1.2 thorpej */
353 1.22 wrstuden weown = (pthread__id(mutex->ptm_owner) == self);
354 1.2 thorpej switch (mp->type) {
355 1.2 thorpej case PTHREAD_MUTEX_RECURSIVE:
356 1.13 nathanw if (!weown)
357 1.2 thorpej return EPERM;
358 1.2 thorpej if (mp->recursecount != 0) {
359 1.2 thorpej mp->recursecount--;
360 1.2 thorpej return 0;
361 1.2 thorpej }
362 1.2 thorpej break;
363 1.13 nathanw case PTHREAD_MUTEX_ERRORCHECK:
364 1.13 nathanw if (!weown)
365 1.13 nathanw return EPERM;
366 1.16 christos /*FALLTHROUGH*/
367 1.13 nathanw default:
368 1.15 nathanw if (__predict_false(!weown)) {
369 1.15 nathanw pthread__error(EPERM, "Unlocking unlocked mutex",
370 1.15 nathanw (mutex->ptm_owner != 0));
371 1.15 nathanw pthread__error(EPERM,
372 1.15 nathanw "Unlocking mutex owned by another thread", weown);
373 1.15 nathanw }
374 1.13 nathanw break;
375 1.2 thorpej }
376 1.2 thorpej
377 1.2 thorpej mutex->ptm_owner = NULL;
378 1.2 thorpej pthread__simple_unlock(&mutex->ptm_lock);
379 1.8 nathanw /*
380 1.8 nathanw * Do a double-checked locking dance to see if there are any
381 1.8 nathanw * waiters. If we don't see any waiters, we can exit, because
382 1.8 nathanw * we've already released the lock. If we do see waiters, they
383 1.8 nathanw * were probably waiting on us... there's a slight chance that
384 1.8 nathanw * they are waiting on a different thread's ownership of the
385 1.8 nathanw * lock that happened between the unlock above and this
386 1.8 nathanw * examination of the queue; if so, no harm is done, as the
387 1.8 nathanw * waiter will loop and see that the mutex is still locked.
388 1.8 nathanw */
389 1.22 wrstuden pthread_spinlock(self, &mutex->ptm_interlock);
390 1.8 nathanw if (!PTQ_EMPTY(&mutex->ptm_blocked)) {
391 1.8 nathanw blocked = PTQ_FIRST(&mutex->ptm_blocked);
392 1.17 cl if (blocked) {
393 1.8 nathanw PTQ_REMOVE(&mutex->ptm_blocked, blocked, pt_sleep);
394 1.8 nathanw PTHREADD_ADD(PTHREADD_MUTEX_UNLOCK_UNBLOCK);
395 1.17 cl /* Give the head of the blocked queue another try. */
396 1.22.2.1 bouyer pthread__sched(self, blocked, 0);
397 1.8 nathanw }
398 1.7 nathanw }
399 1.22 wrstuden pthread_spinunlock(self, &mutex->ptm_interlock);
400 1.2 thorpej return 0;
401 1.2 thorpej }
402 1.2 thorpej
403 1.2 thorpej int
404 1.2 thorpej pthread_mutexattr_init(pthread_mutexattr_t *attr)
405 1.2 thorpej {
406 1.2 thorpej struct mutexattr_private *map;
407 1.2 thorpej
408 1.2 thorpej map = malloc(sizeof(*map));
409 1.2 thorpej if (map == NULL)
410 1.2 thorpej return ENOMEM;
411 1.2 thorpej
412 1.2 thorpej *map = mutexattr_private_default;
413 1.2 thorpej
414 1.2 thorpej attr->ptma_magic = _PT_MUTEXATTR_MAGIC;
415 1.2 thorpej attr->ptma_private = map;
416 1.2 thorpej
417 1.2 thorpej return 0;
418 1.2 thorpej }
419 1.2 thorpej
420 1.2 thorpej
421 1.2 thorpej int
422 1.2 thorpej pthread_mutexattr_destroy(pthread_mutexattr_t *attr)
423 1.2 thorpej {
424 1.2 thorpej
425 1.14 nathanw pthread__error(EINVAL, "Invalid mutex attribute",
426 1.14 nathanw attr->ptma_magic == _PT_MUTEXATTR_MAGIC);
427 1.2 thorpej
428 1.2 thorpej attr->ptma_magic = _PT_MUTEXATTR_DEAD;
429 1.2 thorpej if (attr->ptma_private != NULL)
430 1.2 thorpej free(attr->ptma_private);
431 1.2 thorpej
432 1.2 thorpej return 0;
433 1.2 thorpej }
434 1.2 thorpej
435 1.2 thorpej
436 1.2 thorpej int
437 1.2 thorpej pthread_mutexattr_gettype(const pthread_mutexattr_t *attr, int *typep)
438 1.2 thorpej {
439 1.2 thorpej struct mutexattr_private *map;
440 1.2 thorpej
441 1.14 nathanw pthread__error(EINVAL, "Invalid mutex attribute",
442 1.14 nathanw attr->ptma_magic == _PT_MUTEXATTR_MAGIC);
443 1.2 thorpej
444 1.2 thorpej map = attr->ptma_private;
445 1.2 thorpej
446 1.2 thorpej *typep = map->type;
447 1.2 thorpej
448 1.2 thorpej return 0;
449 1.2 thorpej }
450 1.2 thorpej
451 1.2 thorpej
452 1.2 thorpej int
453 1.2 thorpej pthread_mutexattr_settype(pthread_mutexattr_t *attr, int type)
454 1.2 thorpej {
455 1.2 thorpej struct mutexattr_private *map;
456 1.2 thorpej
457 1.14 nathanw pthread__error(EINVAL, "Invalid mutex attribute",
458 1.14 nathanw attr->ptma_magic == _PT_MUTEXATTR_MAGIC);
459 1.13 nathanw
460 1.2 thorpej map = attr->ptma_private;
461 1.2 thorpej
462 1.2 thorpej switch (type) {
463 1.2 thorpej case PTHREAD_MUTEX_NORMAL:
464 1.2 thorpej case PTHREAD_MUTEX_ERRORCHECK:
465 1.2 thorpej case PTHREAD_MUTEX_RECURSIVE:
466 1.2 thorpej map->type = type;
467 1.2 thorpej break;
468 1.2 thorpej
469 1.2 thorpej default:
470 1.2 thorpej return EINVAL;
471 1.2 thorpej }
472 1.2 thorpej
473 1.2 thorpej return 0;
474 1.2 thorpej }
475 1.2 thorpej
476 1.2 thorpej
477 1.19 nathanw static void
478 1.19 nathanw once_cleanup(void *closure)
479 1.19 nathanw {
480 1.19 nathanw
481 1.19 nathanw pthread_mutex_unlock((pthread_mutex_t *)closure);
482 1.19 nathanw }
483 1.19 nathanw
484 1.19 nathanw
485 1.2 thorpej int
486 1.2 thorpej pthread_once(pthread_once_t *once_control, void (*routine)(void))
487 1.2 thorpej {
488 1.2 thorpej
489 1.2 thorpej if (once_control->pto_done == 0) {
490 1.2 thorpej pthread_mutex_lock(&once_control->pto_mutex);
491 1.19 nathanw pthread_cleanup_push(&once_cleanup, &once_control->pto_mutex);
492 1.2 thorpej if (once_control->pto_done == 0) {
493 1.2 thorpej routine();
494 1.2 thorpej once_control->pto_done = 1;
495 1.2 thorpej }
496 1.19 nathanw pthread_cleanup_pop(1);
497 1.2 thorpej }
498 1.2 thorpej
499 1.2 thorpej return 0;
500 1.2 thorpej }
501