blob: c892a601bed35a74fb7ebe2895586441da36279f [file] [log] [blame]
lh9ed821d2023-04-07 01:36:19 -07001/* Linuxthreads - a simple clone()-based implementation of Posix */
2/* threads for Linux. */
3/* Copyright (C) 1996 Xavier Leroy (Xavier.Leroy@inria.fr) */
4/* */
5/* This program is free software; you can redistribute it and/or */
6/* modify it under the terms of the GNU Library General Public License */
7/* as published by the Free Software Foundation; either version 2 */
8/* of the License, or (at your option) any later version. */
9/* */
10/* This program is distributed in the hope that it will be useful, */
11/* but WITHOUT ANY WARRANTY; without even the implied warranty of */
12/* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the */
13/* GNU Library General Public License for more details. */
14
15/* Semaphores a la POSIX 1003.1b */
16
17#include <features.h>
18#include <errno.h>
19#include "pthread.h"
20#include "semaphore.h"
21#include "internals.h"
22#include "spinlock.h"
23#include "restart.h"
24#include "queue.h"
25
26int __new_sem_init(sem_t *sem, int pshared, unsigned int value);
27int __new_sem_init(sem_t *sem, int pshared, unsigned int value)
28{
29 if (value > SEM_VALUE_MAX) {
30 errno = EINVAL;
31 return -1;
32 }
33 if (pshared) {
34 errno = ENOSYS;
35 return -1;
36 }
37 __pthread_init_lock(&sem->__sem_lock);
38 sem->__sem_value = value;
39 sem->__sem_waiting = NULL;
40 return 0;
41}
42
43/* Function called by pthread_cancel to remove the thread from
44 waiting inside __new_sem_wait. */
45
46static int new_sem_extricate_func(void *obj, pthread_descr th)
47{
48 volatile pthread_descr self = thread_self();
49 sem_t *sem = obj;
50 int did_remove = 0;
51
52 __pthread_lock(&sem->__sem_lock, self);
53 did_remove = remove_from_queue(&sem->__sem_waiting, th);
54 __pthread_unlock(&sem->__sem_lock);
55
56 return did_remove;
57}
58
59int __new_sem_wait(sem_t * sem);
60int __new_sem_wait(sem_t * sem)
61{
62 volatile pthread_descr self = thread_self();
63 pthread_extricate_if extr;
64 int already_canceled = 0;
65 int spurious_wakeup_count;
66
67 /* Set up extrication interface */
68 extr.pu_object = sem;
69 extr.pu_extricate_func = new_sem_extricate_func;
70
71 __pthread_lock(&sem->__sem_lock, self);
72 if (sem->__sem_value > 0) {
73 sem->__sem_value--;
74 __pthread_unlock(&sem->__sem_lock);
75 return 0;
76 }
77 /* Register extrication interface */
78 THREAD_SETMEM(self, p_sem_avail, 0);
79 __pthread_set_own_extricate_if(self, &extr);
80 /* Enqueue only if not already cancelled. */
81 if (!(THREAD_GETMEM(self, p_canceled)
82 && THREAD_GETMEM(self, p_cancelstate) == PTHREAD_CANCEL_ENABLE))
83 enqueue(&sem->__sem_waiting, self);
84 else
85 already_canceled = 1;
86 __pthread_unlock(&sem->__sem_lock);
87
88 if (already_canceled) {
89 __pthread_set_own_extricate_if(self, 0);
90 __pthread_do_exit(PTHREAD_CANCELED, CURRENT_STACK_FRAME);
91 }
92
93 /* Wait for sem_post or cancellation, or fall through if already canceled */
94 spurious_wakeup_count = 0;
95 while (1)
96 {
97 suspend(self);
98 if (THREAD_GETMEM(self, p_sem_avail) == 0
99 && (THREAD_GETMEM(self, p_woken_by_cancel) == 0
100 || THREAD_GETMEM(self, p_cancelstate) != PTHREAD_CANCEL_ENABLE))
101 {
102 /* Count resumes that don't belong to us. */
103 spurious_wakeup_count++;
104 continue;
105 }
106 break;
107 }
108 __pthread_set_own_extricate_if(self, 0);
109
110 /* Terminate only if the wakeup came from cancellation. */
111 /* Otherwise ignore cancellation because we got the semaphore. */
112
113 if (THREAD_GETMEM(self, p_woken_by_cancel)
114 && THREAD_GETMEM(self, p_cancelstate) == PTHREAD_CANCEL_ENABLE) {
115 THREAD_SETMEM(self, p_woken_by_cancel, 0);
116 __pthread_do_exit(PTHREAD_CANCELED, CURRENT_STACK_FRAME);
117 }
118 /* We got the semaphore */
119 return 0;
120}
121
122int __new_sem_trywait(sem_t * sem);
123int __new_sem_trywait(sem_t * sem)
124{
125 int retval;
126
127 __pthread_lock(&sem->__sem_lock, NULL);
128 if (sem->__sem_value == 0) {
129 errno = EAGAIN;
130 retval = -1;
131 } else {
132 sem->__sem_value--;
133 retval = 0;
134 }
135 __pthread_unlock(&sem->__sem_lock);
136 return retval;
137}
138
139int __new_sem_post(sem_t * sem);
140int __new_sem_post(sem_t * sem)
141{
142 pthread_descr self = thread_self();
143 pthread_descr th;
144 struct pthread_request request;
145
146 if (THREAD_GETMEM(self, p_in_sighandler) == NULL) {
147 __pthread_lock(&sem->__sem_lock, self);
148 if (sem->__sem_waiting == NULL) {
149 if (sem->__sem_value >= SEM_VALUE_MAX) {
150 /* Overflow */
151 errno = ERANGE;
152 __pthread_unlock(&sem->__sem_lock);
153 return -1;
154 }
155 sem->__sem_value++;
156 __pthread_unlock(&sem->__sem_lock);
157 } else {
158 th = dequeue(&sem->__sem_waiting);
159 __pthread_unlock(&sem->__sem_lock);
160 th->p_sem_avail = 1;
161 WRITE_MEMORY_BARRIER();
162 restart(th);
163 }
164 } else {
165 /* If we're in signal handler, delegate post operation to
166 the thread manager. */
167 if (__pthread_manager_request < 0) {
168 if (__pthread_initialize_manager() < 0) {
169 errno = EAGAIN;
170 return -1;
171 }
172 }
173 request.req_kind = REQ_POST;
174 request.req_args.post = sem;
175 TEMP_FAILURE_RETRY(write(__pthread_manager_request,
176 (char *) &request, sizeof(request)));
177 }
178 return 0;
179}
180
181int __new_sem_getvalue(sem_t * sem, int * sval);
182int __new_sem_getvalue(sem_t * sem, int * sval)
183{
184 *sval = sem->__sem_value;
185 return 0;
186}
187
188int __new_sem_destroy(sem_t * sem);
189int __new_sem_destroy(sem_t * sem)
190{
191 if (sem->__sem_waiting != NULL) {
192 __set_errno (EBUSY);
193 return -1;
194 }
195 return 0;
196}
197
198sem_t *sem_open(const char *name attribute_unused, int oflag attribute_unused, ...)
199{
200 __set_errno (ENOSYS);
201 return SEM_FAILED;
202}
203
204int sem_close(sem_t *sem attribute_unused)
205{
206 __set_errno (ENOSYS);
207 return -1;
208}
209
210int sem_unlink(const char *name attribute_unused)
211{
212 __set_errno (ENOSYS);
213 return -1;
214}
215
216int sem_timedwait(sem_t *sem, const struct timespec *abstime)
217{
218 pthread_descr self = thread_self();
219 pthread_extricate_if extr;
220 int already_canceled = 0;
221 int spurious_wakeup_count;
222
223 __pthread_lock(&sem->__sem_lock, self);
224 if (sem->__sem_value > 0) {
225 --sem->__sem_value;
226 __pthread_unlock(&sem->__sem_lock);
227 return 0;
228 }
229
230 if (abstime->tv_nsec < 0 || abstime->tv_nsec >= 1000000000) {
231 /* The standard requires that if the function would block and the
232 time value is illegal, the function returns with an error. */
233 __pthread_unlock(&sem->__sem_lock);
234 __set_errno (EINVAL);
235 return -1;
236 }
237
238 /* Set up extrication interface */
239 extr.pu_object = sem;
240 extr.pu_extricate_func = new_sem_extricate_func;
241
242 /* Register extrication interface */
243 THREAD_SETMEM(self, p_sem_avail, 0);
244 __pthread_set_own_extricate_if(self, &extr);
245 /* Enqueue only if not already cancelled. */
246 if (!(THREAD_GETMEM(self, p_canceled)
247 && THREAD_GETMEM(self, p_cancelstate) == PTHREAD_CANCEL_ENABLE))
248 enqueue(&sem->__sem_waiting, self);
249 else
250 already_canceled = 1;
251 __pthread_unlock(&sem->__sem_lock);
252
253 if (already_canceled) {
254 __pthread_set_own_extricate_if(self, 0);
255 __pthread_do_exit(PTHREAD_CANCELED, CURRENT_STACK_FRAME);
256 }
257
258 spurious_wakeup_count = 0;
259 while (1)
260 {
261 if (timedsuspend(self, abstime) == 0) {
262 int was_on_queue;
263
264 /* __pthread_lock will queue back any spurious restarts that
265 may happen to it. */
266
267 __pthread_lock(&sem->__sem_lock, self);
268 was_on_queue = remove_from_queue(&sem->__sem_waiting, self);
269 __pthread_unlock(&sem->__sem_lock);
270
271 if (was_on_queue) {
272 __pthread_set_own_extricate_if(self, 0);
273 __set_errno (ETIMEDOUT);
274 return -1;
275 }
276
277 /* Eat the outstanding restart() from the signaller */
278 suspend(self);
279 }
280
281 if (THREAD_GETMEM(self, p_sem_avail) == 0
282 && (THREAD_GETMEM(self, p_woken_by_cancel) == 0
283 || THREAD_GETMEM(self, p_cancelstate) != PTHREAD_CANCEL_ENABLE))
284 {
285 /* Count resumes that don't belong to us. */
286 spurious_wakeup_count++;
287 continue;
288 }
289 break;
290 }
291
292 __pthread_set_own_extricate_if(self, 0);
293
294 /* Terminate only if the wakeup came from cancellation. */
295 /* Otherwise ignore cancellation because we got the semaphore. */
296
297 if (THREAD_GETMEM(self, p_woken_by_cancel)
298 && THREAD_GETMEM(self, p_cancelstate) == PTHREAD_CANCEL_ENABLE) {
299 THREAD_SETMEM(self, p_woken_by_cancel, 0);
300 __pthread_do_exit(PTHREAD_CANCELED, CURRENT_STACK_FRAME);
301 }
302 /* We got the semaphore */
303 return 0;
304}
305
306
307weak_alias (__new_sem_init, sem_init)
308weak_alias (__new_sem_wait, sem_wait)
309weak_alias (__new_sem_trywait, sem_trywait)
310weak_alias (__new_sem_post, sem_post)
311weak_alias (__new_sem_getvalue, sem_getvalue)
312weak_alias (__new_sem_destroy, sem_destroy)
313