pthread_mutex.c revision 1.1.2.11 1 1.1.2.11 nathanw /* $NetBSD: pthread_mutex.c,v 1.1.2.11 2002/04/26 17:45:57 nathanw Exp $ */
2 1.1.2.3 nathanw
3 1.1.2.3 nathanw /*-
4 1.1.2.3 nathanw * Copyright (c) 2001 The NetBSD Foundation, Inc.
5 1.1.2.3 nathanw * All rights reserved.
6 1.1.2.3 nathanw *
7 1.1.2.3 nathanw * This code is derived from software contributed to The NetBSD Foundation
8 1.1.2.3 nathanw * by Nathan J. Williams.
9 1.1.2.3 nathanw *
10 1.1.2.3 nathanw * Redistribution and use in source and binary forms, with or without
11 1.1.2.3 nathanw * modification, are permitted provided that the following conditions
12 1.1.2.3 nathanw * are met:
13 1.1.2.3 nathanw * 1. Redistributions of source code must retain the above copyright
14 1.1.2.3 nathanw * notice, this list of conditions and the following disclaimer.
15 1.1.2.3 nathanw * 2. Redistributions in binary form must reproduce the above copyright
16 1.1.2.3 nathanw * notice, this list of conditions and the following disclaimer in the
17 1.1.2.3 nathanw * documentation and/or other materials provided with the distribution.
18 1.1.2.3 nathanw * 3. All advertising materials mentioning features or use of this software
19 1.1.2.3 nathanw * must display the following acknowledgement:
20 1.1.2.3 nathanw * This product includes software developed by the NetBSD
21 1.1.2.3 nathanw * Foundation, Inc. and its contributors.
22 1.1.2.3 nathanw * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.1.2.3 nathanw * contributors may be used to endorse or promote products derived
24 1.1.2.3 nathanw * from this software without specific prior written permission.
25 1.1.2.3 nathanw *
26 1.1.2.3 nathanw * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.1.2.3 nathanw * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.1.2.3 nathanw * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.1.2.3 nathanw * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.1.2.3 nathanw * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.1.2.3 nathanw * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.1.2.3 nathanw * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.1.2.3 nathanw * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.1.2.3 nathanw * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.1.2.3 nathanw * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.1.2.3 nathanw * POSSIBILITY OF SUCH DAMAGE.
37 1.1.2.3 nathanw */
38 1.1.2.1 nathanw
39 1.1.2.1 nathanw #include <assert.h>
40 1.1.2.1 nathanw #include <errno.h>
41 1.1.2.8 nathanw #include <sys/cdefs.h>
42 1.1.2.1 nathanw
43 1.1.2.1 nathanw #include "pthread.h"
44 1.1.2.1 nathanw #include "pthread_int.h"
45 1.1.2.1 nathanw
46 1.1.2.1 nathanw
47 1.1.2.1 nathanw int
48 1.1.2.1 nathanw pthread_mutex_init(pthread_mutex_t *mutex, const pthread_mutexattr_t *attr)
49 1.1.2.1 nathanw {
50 1.1.2.1 nathanw
51 1.1.2.5 nathanw #ifdef ERRORCHECK
52 1.1.2.5 nathanw if ((mutex == NULL) ||
53 1.1.2.5 nathanw (attr && (attr->ptma_magic != _PT_MUTEXATTR_MAGIC)))
54 1.1.2.1 nathanw return EINVAL;
55 1.1.2.5 nathanw #endif
56 1.1.2.1 nathanw
57 1.1.2.4 nathanw mutex->ptm_magic = _PT_MUTEX_MAGIC;
58 1.1.2.2 nathanw mutex->ptm_owner = NULL;
59 1.1.2.2 nathanw pthread_lockinit(&mutex->ptm_lock);
60 1.1.2.2 nathanw pthread_lockinit(&mutex->ptm_interlock);
61 1.1.2.2 nathanw PTQ_INIT(&mutex->ptm_blocked);
62 1.1.2.1 nathanw
63 1.1.2.1 nathanw return 0;
64 1.1.2.1 nathanw }
65 1.1.2.1 nathanw
66 1.1.2.1 nathanw
67 1.1.2.1 nathanw int
68 1.1.2.1 nathanw pthread_mutex_destroy(pthread_mutex_t *mutex)
69 1.1.2.1 nathanw {
70 1.1.2.1 nathanw
71 1.1.2.5 nathanw #ifdef ERRORCHECK
72 1.1.2.5 nathanw if ((mutex == NULL) ||
73 1.1.2.5 nathanw (mutex->ptm_magic != _PT_MUTEX_MAGIC) ||
74 1.1.2.5 nathanw (mutex->ptm_lock != __SIMPLELOCK_UNLOCKED))
75 1.1.2.5 nathanw return EINVAL;
76 1.1.2.5 nathanw #endif
77 1.1.2.1 nathanw
78 1.1.2.4 nathanw mutex->ptm_magic = _PT_MUTEX_DEAD;
79 1.1.2.1 nathanw
80 1.1.2.1 nathanw return 0;
81 1.1.2.1 nathanw }
82 1.1.2.1 nathanw
83 1.1.2.1 nathanw
84 1.1.2.2 nathanw /*
85 1.1.2.2 nathanw * Note regarding memory visibility: Pthreads has rules about memory
86 1.1.2.2 nathanw * visibility and mutexes. Very roughly: Memory a thread can see when
87 1.1.2.2 nathanw * it unlocks a mutex can be seen by another thread that locks the
88 1.1.2.2 nathanw * same mutex.
89 1.1.2.2 nathanw *
90 1.1.2.2 nathanw * A memory barrier after a lock and before an unlock will provide
91 1.1.2.2 nathanw * this behavior. This code relies on __cpu_simple_lock_try() to issue
92 1.1.2.2 nathanw * a barrier after obtaining a lock, and on __cpu_simple_unlock() to
93 1.1.2.2 nathanw * issue a barrier before releasing a lock.
94 1.1.2.2 nathanw */
95 1.1.2.2 nathanw
96 1.1.2.1 nathanw int
97 1.1.2.1 nathanw pthread_mutex_lock(pthread_mutex_t *mutex)
98 1.1.2.1 nathanw {
99 1.1.2.1 nathanw pthread_t self;
100 1.1.2.5 nathanw
101 1.1.2.2 nathanw #ifdef ERRORCHECK
102 1.1.2.4 nathanw if ((mutex == NULL) || (mutex->ptm_magic != _PT_MUTEX_MAGIC))
103 1.1.2.1 nathanw return EINVAL;
104 1.1.2.2 nathanw #endif
105 1.1.2.5 nathanw self = pthread__self();
106 1.1.2.1 nathanw
107 1.1.2.2 nathanw while (/*CONSTCOND*/1) {
108 1.1.2.2 nathanw if (__cpu_simple_lock_try(&mutex->ptm_lock))
109 1.1.2.2 nathanw break; /* got it! */
110 1.1.2.1 nathanw
111 1.1.2.2 nathanw /* Okay, didn't look free. Get the interlock... */
112 1.1.2.2 nathanw pthread_spinlock(self, &mutex->ptm_interlock);
113 1.1.2.2 nathanw /* The mutex_unlock routine will get the interlock
114 1.1.2.2 nathanw * before looking at the list of sleepers, so if the
115 1.1.2.2 nathanw * lock is held we can safely put ourselves on the
116 1.1.2.2 nathanw * sleep queue. If it's not held, we can try taking it
117 1.1.2.2 nathanw * again.
118 1.1.2.2 nathanw */
119 1.1.2.2 nathanw if (mutex->ptm_lock == __SIMPLELOCK_LOCKED) {
120 1.1.2.2 nathanw PTQ_INSERT_TAIL(&mutex->ptm_blocked, self, pt_sleep);
121 1.1.2.7 nathanw /* Locking a mutex is not a cancellation
122 1.1.2.7 nathanw * point, so we don't need to do the
123 1.1.2.7 nathanw * test-cancellation dance. We may get woken
124 1.1.2.7 nathanw * up spuriously by pthread_cancel, though,
125 1.1.2.7 nathanw * but it's okay since we're just going to
126 1.1.2.7 nathanw * retry.
127 1.1.2.7 nathanw */
128 1.1.2.7 nathanw pthread_spinlock(self, &self->pt_statelock);
129 1.1.2.7 nathanw self->pt_state = PT_STATE_BLOCKED_QUEUE;
130 1.1.2.11 nathanw self->pt_sleepobj = mutex;
131 1.1.2.7 nathanw self->pt_sleepq = &mutex->ptm_blocked;
132 1.1.2.7 nathanw self->pt_sleeplock = &mutex->ptm_interlock;
133 1.1.2.7 nathanw pthread_spinunlock(self, &self->pt_statelock);
134 1.1.2.7 nathanw
135 1.1.2.2 nathanw pthread__block(self, &mutex->ptm_interlock);
136 1.1.2.2 nathanw /* interlock is not held when we return */
137 1.1.2.2 nathanw } else {
138 1.1.2.2 nathanw pthread_spinunlock(self, &mutex->ptm_interlock);
139 1.1.2.2 nathanw }
140 1.1.2.2 nathanw /* Go around for another try. */
141 1.1.2.1 nathanw }
142 1.1.2.1 nathanw
143 1.1.2.2 nathanw /* We have the lock! */
144 1.1.2.2 nathanw #ifdef ERRORCHECK
145 1.1.2.2 nathanw mutex->ptm_owner = self;
146 1.1.2.2 nathanw #endif
147 1.1.2.1 nathanw return 0;
148 1.1.2.1 nathanw }
149 1.1.2.1 nathanw
150 1.1.2.1 nathanw
151 1.1.2.1 nathanw int
152 1.1.2.1 nathanw pthread_mutex_trylock(pthread_mutex_t *mutex)
153 1.1.2.1 nathanw {
154 1.1.2.1 nathanw
155 1.1.2.2 nathanw #ifdef ERRORCHECK
156 1.1.2.4 nathanw if ((mutex == NULL) || (mutex->ptm_magic != _PT_MUTEX_MAGIC))
157 1.1.2.1 nathanw return EINVAL;
158 1.1.2.2 nathanw #endif
159 1.1.2.1 nathanw
160 1.1.2.2 nathanw if (__cpu_simple_lock_try(&mutex->ptm_lock) == 0)
161 1.1.2.1 nathanw return EBUSY;
162 1.1.2.1 nathanw
163 1.1.2.2 nathanw #ifdef ERRORCHECK
164 1.1.2.2 nathanw mutex->ptm_owner = pthread__self();
165 1.1.2.2 nathanw #endif
166 1.1.2.1 nathanw return 0;
167 1.1.2.1 nathanw }
168 1.1.2.1 nathanw
169 1.1.2.1 nathanw
170 1.1.2.1 nathanw int
171 1.1.2.1 nathanw pthread_mutex_unlock(pthread_mutex_t *mutex)
172 1.1.2.1 nathanw {
173 1.1.2.1 nathanw pthread_t self, blocked;
174 1.1.2.1 nathanw
175 1.1.2.5 nathanw self = pthread__self();
176 1.1.2.5 nathanw
177 1.1.2.2 nathanw #ifdef ERRORCHECK
178 1.1.2.4 nathanw if ((mutex == NULL) || (mutex->ptm_magic != _PT_MUTEX_MAGIC))
179 1.1.2.1 nathanw return EINVAL;
180 1.1.2.1 nathanw
181 1.1.2.2 nathanw if (mutex->ptm_lock != __SIMPLELOCK_LOCKED)
182 1.1.2.1 nathanw return EPERM; /* Not exactly the right error. */
183 1.1.2.1 nathanw
184 1.1.2.1 nathanw /* One is only permitted to unlock one's own mutexes. */
185 1.1.2.2 nathanw if (mutex->ptm_owner != self)
186 1.1.2.1 nathanw return EPERM;
187 1.1.2.2 nathanw #endif
188 1.1.2.1 nathanw
189 1.1.2.2 nathanw pthread_spinlock(self, &mutex->ptm_interlock);
190 1.1.2.4 nathanw blocked = PTQ_FIRST(&mutex->ptm_blocked);
191 1.1.2.4 nathanw if (blocked)
192 1.1.2.4 nathanw PTQ_REMOVE(&mutex->ptm_blocked, blocked, pt_sleep);
193 1.1.2.2 nathanw #ifdef ERRORCHECK
194 1.1.2.2 nathanw mutex->ptm_owner = NULL;
195 1.1.2.2 nathanw #endif
196 1.1.2.2 nathanw __cpu_simple_unlock(&mutex->ptm_lock);
197 1.1.2.2 nathanw pthread_spinunlock(self, &mutex->ptm_interlock);
198 1.1.2.1 nathanw
199 1.1.2.4 nathanw /* Give the head of the blocked queue another try. */
200 1.1.2.4 nathanw if (blocked)
201 1.1.2.1 nathanw pthread__sched(self, blocked);
202 1.1.2.5 nathanw
203 1.1.2.5 nathanw return 0;
204 1.1.2.5 nathanw }
205 1.1.2.5 nathanw
206 1.1.2.5 nathanw int
207 1.1.2.5 nathanw pthread_mutexattr_init(pthread_mutexattr_t *attr)
208 1.1.2.5 nathanw {
209 1.1.2.5 nathanw
210 1.1.2.5 nathanw #ifdef ERRORCHECK
211 1.1.2.5 nathanw if (attr == NULL)
212 1.1.2.5 nathanw return EINVAL;
213 1.1.2.5 nathanw #endif
214 1.1.2.5 nathanw
215 1.1.2.5 nathanw attr->ptma_magic = _PT_MUTEXATTR_MAGIC;
216 1.1.2.5 nathanw
217 1.1.2.5 nathanw return 0;
218 1.1.2.5 nathanw }
219 1.1.2.5 nathanw
220 1.1.2.5 nathanw
221 1.1.2.5 nathanw int
222 1.1.2.5 nathanw pthread_mutexattr_destroy(pthread_mutexattr_t *attr)
223 1.1.2.5 nathanw {
224 1.1.2.5 nathanw
225 1.1.2.5 nathanw #ifdef ERRORCHECK
226 1.1.2.5 nathanw if ((attr == NULL) ||
227 1.1.2.5 nathanw (attr->ptma_magic != _PT_MUTEXATTR_MAGIC))
228 1.1.2.5 nathanw return EINVAL;
229 1.1.2.5 nathanw #endif
230 1.1.2.5 nathanw
231 1.1.2.5 nathanw attr->ptma_magic = _PT_MUTEXATTR_DEAD;
232 1.1.2.6 nathanw
233 1.1.2.6 nathanw return 0;
234 1.1.2.6 nathanw }
235 1.1.2.6 nathanw
236 1.1.2.6 nathanw
237 1.1.2.6 nathanw int
238 1.1.2.6 nathanw pthread_once(pthread_once_t *once_control, void (*routine)(void))
239 1.1.2.6 nathanw {
240 1.1.2.6 nathanw
241 1.1.2.6 nathanw if (once_control->pto_done == 0) {
242 1.1.2.6 nathanw pthread_mutex_lock(&once_control->pto_mutex);
243 1.1.2.6 nathanw if (once_control->pto_done == 0) {
244 1.1.2.6 nathanw routine();
245 1.1.2.6 nathanw once_control->pto_done = 1;
246 1.1.2.6 nathanw }
247 1.1.2.6 nathanw pthread_mutex_unlock(&once_control->pto_mutex);
248 1.1.2.6 nathanw }
249 1.1.2.1 nathanw
250 1.1.2.1 nathanw return 0;
251 1.1.2.1 nathanw }
252