Start using winedos handlers for all interrupts.
[wine/multimedia.git] / scheduler / pthread.c
bloba82d3b57800308af05c55620014aa124229cd2c9
1 /*
2 * pthread emulation for re-entrant libcs
4 * We can't use pthreads directly, so why not let libcs
5 * that want pthreads use Wine's own threading instead...
7 * Copyright 1999 Ove Kåven
9 * This library is free software; you can redistribute it and/or
10 * modify it under the terms of the GNU Lesser General Public
11 * License as published by the Free Software Foundation; either
12 * version 2.1 of the License, or (at your option) any later version.
14 * This library is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
17 * Lesser General Public License for more details.
19 * You should have received a copy of the GNU Lesser General Public
20 * License along with this library; if not, write to the Free Software
21 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
24 #include "config.h"
25 #include "wine/port.h"
27 #define _GNU_SOURCE /* we may need to override some GNU extensions */
29 #include <assert.h>
30 #include <errno.h>
31 #include <stdlib.h>
32 #ifdef HAVE_UNISTD_H
33 # include <unistd.h>
34 #endif
35 #include <string.h>
37 #include "winbase.h"
38 #include "thread.h"
39 #include "winternl.h"
41 /* Currently this probably works only for glibc2,
42 * which checks for the presence of double-underscore-prepended
43 * pthread primitives, and use them if available.
44 * If they are not available, the libc defaults to
45 * non-threadsafe operation (not good). */
47 #if defined(__GLIBC__)
48 #include <pthread.h>
49 #include <signal.h>
51 #define PSTR(str) __ASM_NAME(#str)
53 /* adapt as necessary (a construct like this is used in glibc sources) */
54 #define strong_alias(orig, alias) \
55 asm(".globl " PSTR(alias) "\n" \
56 "\t.set " PSTR(alias) "," PSTR(orig))
58 static int init_done;
60 static pid_t (*libc_fork)(void);
61 static int (*libc_sigaction)(int signum, const struct sigaction *act, struct sigaction *oldact);
63 void PTHREAD_init_done(void)
65 init_done = 1;
66 if (!libc_fork) libc_fork = dlsym( RTLD_NEXT, "fork" );
67 if (!libc_sigaction) libc_sigaction = dlsym( RTLD_NEXT, "sigaction" );
71 /* NOTE: This is a truly extremely incredibly ugly hack!
72 * But it does seem to work... */
74 /* assume that pthread_mutex_t has room for at least one pointer,
75 * and hope that the users of pthread_mutex_t considers it opaque
76 * (never checks what's in it)
77 * also: assume that static initializer sets pointer to NULL
79 typedef struct {
80 CRITICAL_SECTION *critsect;
81 } *wine_mutex;
83 /* see wine_mutex above for comments */
84 typedef struct {
85 RTL_RWLOCK *lock;
86 } *wine_rwlock;
88 typedef struct _wine_cleanup {
89 void (*routine)(void *);
90 void *arg;
91 } *wine_cleanup;
93 typedef const void *key_data;
95 #define FIRST_KEY 0
96 #define MAX_KEYS 16 /* libc6 doesn't use that many, but... */
98 #define P_OUTPUT(stuff) write(2,stuff,strlen(stuff))
100 void __pthread_initialize(void)
104 struct pthread_thread_init {
105 void* (*start_routine)(void*);
106 void* arg;
109 static DWORD CALLBACK pthread_thread_start(LPVOID data)
111 struct pthread_thread_init init = *(struct pthread_thread_init*)data;
112 HeapFree(GetProcessHeap(),0,data);
113 return (DWORD)init.start_routine(init.arg);
116 int pthread_create(pthread_t* thread, const pthread_attr_t* attr, void*
117 (*start_routine)(void *), void* arg)
119 HANDLE hThread;
120 struct pthread_thread_init* idata = HeapAlloc(GetProcessHeap(), 0,
121 sizeof(struct pthread_thread_init));
123 idata->start_routine = start_routine;
124 idata->arg = arg;
125 hThread = CreateThread(NULL, 0, pthread_thread_start, idata, 0, thread);
127 if(hThread)
128 CloseHandle(hThread);
129 else
131 HeapFree(GetProcessHeap(),0,idata); /* free idata struct on failure */
132 return EAGAIN;
135 return 0;
138 int pthread_cancel(pthread_t thread)
140 HANDLE hThread = OpenThread(THREAD_ALL_ACCESS, FALSE, thread);
142 if(!TerminateThread(hThread, 0))
144 CloseHandle(hThread);
145 return EINVAL; /* return error */
148 CloseHandle(hThread);
150 return 0; /* return success */
153 int pthread_join(pthread_t thread, void **value_ptr)
155 HANDLE hThread = OpenThread(THREAD_ALL_ACCESS, FALSE, thread);
157 WaitForSingleObject(hThread, INFINITE);
158 if(!GetExitCodeThread(hThread, (LPDWORD)value_ptr))
160 CloseHandle(hThread);
161 return EINVAL; /* FIXME: make this more correctly match */
162 } /* windows errors */
164 CloseHandle(hThread);
165 return 0;
168 /*FIXME: not sure what to do with this one... */
169 int pthread_detach(pthread_t thread)
171 P_OUTPUT("FIXME:pthread_detach\n");
172 return 0;
175 /* FIXME: we have no equivalents in win32 for the policys */
176 /* so just keep this as a stub */
177 int pthread_attr_setschedpolicy(pthread_attr_t *attr, int policy)
179 P_OUTPUT("FIXME:pthread_attr_setschedpolicy\n");
180 return 0;
183 /* FIXME: no win32 equivalent for scope */
184 int pthread_attr_setscope(pthread_attr_t *attr, int scope)
186 P_OUTPUT("FIXME:pthread_attr_setscope\n");
187 return 0; /* return success */
190 /* FIXME: no win32 equivalent for schedule param */
191 int pthread_attr_setschedparam(pthread_attr_t *attr,
192 const struct sched_param *param)
194 P_OUTPUT("FIXME:pthread_attr_setschedparam\n");
195 return 0; /* return success */
198 int __pthread_once(pthread_once_t *once_control, void (*init_routine)(void))
200 static pthread_once_t the_once = PTHREAD_ONCE_INIT;
201 LONG once_now = *(LONG *)&the_once;
203 if (InterlockedCompareExchange((LONG*)once_control, once_now+1, once_now) == once_now)
204 (*init_routine)();
205 return 0;
207 strong_alias(__pthread_once, pthread_once);
209 void __pthread_kill_other_threads_np(void)
211 /* we don't need to do anything here */
213 strong_alias(__pthread_kill_other_threads_np, pthread_kill_other_threads_np);
215 /***** atfork *****/
217 #define MAX_ATFORK 8 /* libc doesn't need that many anyway */
219 static CRITICAL_SECTION atfork_section = CRITICAL_SECTION_INIT("atfork_section");
220 typedef void (*atfork_handler)();
221 static atfork_handler atfork_prepare[MAX_ATFORK];
222 static atfork_handler atfork_parent[MAX_ATFORK];
223 static atfork_handler atfork_child[MAX_ATFORK];
224 static int atfork_count;
226 int __pthread_atfork(void (*prepare)(void),
227 void (*parent)(void),
228 void (*child)(void))
230 if (init_done) EnterCriticalSection( &atfork_section );
231 assert( atfork_count < MAX_ATFORK );
232 atfork_prepare[atfork_count] = prepare;
233 atfork_parent[atfork_count] = parent;
234 atfork_child[atfork_count] = child;
235 atfork_count++;
236 if (init_done) LeaveCriticalSection( &atfork_section );
237 return 0;
239 strong_alias(__pthread_atfork, pthread_atfork);
241 pid_t __fork(void)
243 pid_t pid;
244 int i;
246 if (!libc_fork)
248 libc_fork = dlsym( RTLD_NEXT, "fork" );
249 assert( libc_fork );
251 EnterCriticalSection( &atfork_section );
252 /* prepare handlers are called in reverse insertion order */
253 for (i = atfork_count - 1; i >= 0; i--) if (atfork_prepare[i]) atfork_prepare[i]();
254 if (!(pid = libc_fork()))
256 InitializeCriticalSection( &atfork_section );
257 for (i = 0; i < atfork_count; i++) if (atfork_child[i]) atfork_child[i]();
259 else
261 for (i = 0; i < atfork_count; i++) if (atfork_parent[i]) atfork_parent[i]();
262 LeaveCriticalSection( &atfork_section );
264 return pid;
266 strong_alias(__fork, fork);
268 /***** MUTEXES *****/
270 int __pthread_mutex_init(pthread_mutex_t *mutex,
271 const pthread_mutexattr_t *mutexattr)
273 /* glibc has a tendency to initialize mutexes very often, even
274 in situations where they are not really used later on.
276 As for us, initializing a mutex is very expensive, we postpone
277 the real initialization until the time the mutex is first used. */
279 ((wine_mutex)mutex)->critsect = NULL;
280 return 0;
282 strong_alias(__pthread_mutex_init, pthread_mutex_init);
284 static void mutex_real_init( pthread_mutex_t *mutex )
286 CRITICAL_SECTION *critsect = HeapAlloc(GetProcessHeap(), 0, sizeof(CRITICAL_SECTION));
287 InitializeCriticalSection(critsect);
289 if (InterlockedCompareExchangePointer((void**)&(((wine_mutex)mutex)->critsect),critsect,NULL) != NULL) {
290 /* too late, some other thread already did it */
291 DeleteCriticalSection(critsect);
292 HeapFree(GetProcessHeap(), 0, critsect);
296 int __pthread_mutex_lock(pthread_mutex_t *mutex)
298 if (!init_done) return 0;
299 if (!((wine_mutex)mutex)->critsect)
300 mutex_real_init( mutex );
302 EnterCriticalSection(((wine_mutex)mutex)->critsect);
303 return 0;
305 strong_alias(__pthread_mutex_lock, pthread_mutex_lock);
307 int __pthread_mutex_trylock(pthread_mutex_t *mutex)
309 if (!init_done) return 0;
310 if (!((wine_mutex)mutex)->critsect)
311 mutex_real_init( mutex );
313 if (!TryEnterCriticalSection(((wine_mutex)mutex)->critsect)) {
314 errno = EBUSY;
315 return -1;
317 return 0;
319 strong_alias(__pthread_mutex_trylock, pthread_mutex_trylock);
321 int __pthread_mutex_unlock(pthread_mutex_t *mutex)
323 if (!((wine_mutex)mutex)->critsect) return 0;
324 LeaveCriticalSection(((wine_mutex)mutex)->critsect);
325 return 0;
327 strong_alias(__pthread_mutex_unlock, pthread_mutex_unlock);
329 int __pthread_mutex_destroy(pthread_mutex_t *mutex)
331 if (!((wine_mutex)mutex)->critsect) return 0;
332 if (((wine_mutex)mutex)->critsect->RecursionCount) {
333 #if 0 /* there seems to be a bug in libc6 that makes this a bad idea */
334 return EBUSY;
335 #else
336 while (((wine_mutex)mutex)->critsect->RecursionCount)
337 LeaveCriticalSection(((wine_mutex)mutex)->critsect);
338 #endif
340 DeleteCriticalSection(((wine_mutex)mutex)->critsect);
341 HeapFree(GetProcessHeap(), 0, ((wine_mutex)mutex)->critsect);
342 return 0;
344 strong_alias(__pthread_mutex_destroy, pthread_mutex_destroy);
347 /***** MUTEX ATTRIBUTES *****/
348 /* just dummies, since critical sections are always recursive */
350 int __pthread_mutexattr_init(pthread_mutexattr_t *attr)
352 return 0;
354 strong_alias(__pthread_mutexattr_init, pthread_mutexattr_init);
356 int __pthread_mutexattr_destroy(pthread_mutexattr_t *attr)
358 return 0;
360 strong_alias(__pthread_mutexattr_destroy, pthread_mutexattr_destroy);
362 int __pthread_mutexattr_setkind_np(pthread_mutexattr_t *attr, int kind)
364 return 0;
366 strong_alias(__pthread_mutexattr_setkind_np, pthread_mutexattr_setkind_np);
368 int __pthread_mutexattr_getkind_np(pthread_mutexattr_t *attr, int *kind)
370 *kind = PTHREAD_MUTEX_RECURSIVE_NP;
371 return 0;
373 strong_alias(__pthread_mutexattr_getkind_np, pthread_mutexattr_getkind_np);
375 int __pthread_mutexattr_settype(pthread_mutexattr_t *attr, int kind)
377 return 0;
379 strong_alias(__pthread_mutexattr_settype, pthread_mutexattr_settype);
381 int __pthread_mutexattr_gettype(pthread_mutexattr_t *attr, int *kind)
383 *kind = PTHREAD_MUTEX_RECURSIVE_NP;
384 return 0;
386 strong_alias(__pthread_mutexattr_gettype, pthread_mutexattr_gettype);
389 /***** THREAD-SPECIFIC VARIABLES (KEYS) *****/
391 int __pthread_key_create(pthread_key_t *key, void (*destr_function)(void *))
393 static LONG keycnt = FIRST_KEY;
394 *key = InterlockedExchangeAdd(&keycnt, 1);
395 return 0;
397 strong_alias(__pthread_key_create, pthread_key_create);
399 int __pthread_key_delete(pthread_key_t key)
401 return 0;
403 strong_alias(__pthread_key_delete, pthread_key_delete);
405 int __pthread_setspecific(pthread_key_t key, const void *pointer)
407 TEB *teb = NtCurrentTeb();
408 if (!teb->pthread_data) {
409 teb->pthread_data = calloc(MAX_KEYS,sizeof(key_data));
411 ((key_data*)(teb->pthread_data))[key] = pointer;
412 return 0;
414 strong_alias(__pthread_setspecific, pthread_setspecific);
416 void *__pthread_getspecific(pthread_key_t key)
418 TEB *teb = NtCurrentTeb();
419 if (!teb) return NULL;
420 if (!teb->pthread_data) return NULL;
421 return (void *)(((key_data*)(teb->pthread_data))[key]);
423 strong_alias(__pthread_getspecific, pthread_getspecific);
426 /***** "EXCEPTION" FRAMES *****/
427 /* not implemented right now */
429 void _pthread_cleanup_push(struct _pthread_cleanup_buffer *buffer, void (*routine)(void *), void *arg)
431 ((wine_cleanup)buffer)->routine = routine;
432 ((wine_cleanup)buffer)->arg = arg;
435 void _pthread_cleanup_pop(struct _pthread_cleanup_buffer *buffer, int execute)
437 if (execute) (*(((wine_cleanup)buffer)->routine))(((wine_cleanup)buffer)->arg);
440 void _pthread_cleanup_push_defer(struct _pthread_cleanup_buffer *buffer, void (*routine)(void *), void *arg)
442 _pthread_cleanup_push(buffer, routine, arg);
445 void _pthread_cleanup_pop_restore(struct _pthread_cleanup_buffer *buffer, int execute)
447 _pthread_cleanup_pop(buffer, execute);
451 /***** CONDITIONS *****/
452 /* not implemented right now */
454 int pthread_cond_init(pthread_cond_t *cond, const pthread_condattr_t *cond_attr)
456 P_OUTPUT("FIXME:pthread_cond_init\n");
457 return 0;
460 int pthread_cond_destroy(pthread_cond_t *cond)
462 P_OUTPUT("FIXME:pthread_cond_destroy\n");
463 return 0;
466 int pthread_cond_signal(pthread_cond_t *cond)
468 P_OUTPUT("FIXME:pthread_cond_signal\n");
469 return 0;
472 int pthread_cond_broadcast(pthread_cond_t *cond)
474 P_OUTPUT("FIXME:pthread_cond_broadcast\n");
475 return 0;
478 int pthread_cond_wait(pthread_cond_t *cond, pthread_mutex_t *mutex)
480 P_OUTPUT("FIXME:pthread_cond_wait\n");
481 return 0;
484 int pthread_cond_timedwait(pthread_cond_t *cond, pthread_mutex_t *mutex, const struct timespec *abstime)
486 P_OUTPUT("FIXME:pthread_cond_timedwait\n");
487 return 0;
490 /**** CONDITION ATTRIBUTES *****/
491 /* not implemented right now */
493 int pthread_condattr_init(pthread_condattr_t *attr)
495 return 0;
498 int pthread_condattr_destroy(pthread_condattr_t *attr)
500 return 0;
503 #if (__GLIBC__ == 2) && (__GLIBC_MINOR__ >= 2)
504 /***** READ-WRITE LOCKS *****/
506 static void rwlock_real_init(pthread_rwlock_t *rwlock)
508 RTL_RWLOCK *lock = HeapAlloc(GetProcessHeap(), 0, sizeof(RTL_RWLOCK));
509 RtlInitializeResource(lock);
511 if (InterlockedCompareExchangePointer((void**)&(((wine_rwlock)rwlock)->lock),lock,NULL) != NULL) {
512 /* too late, some other thread already did it */
513 RtlDeleteResource(lock);
514 HeapFree(GetProcessHeap(), 0, lock);
518 int __pthread_rwlock_init(pthread_rwlock_t *rwlock, const pthread_rwlockattr_t *rwlock_attr)
520 ((wine_rwlock)rwlock)->lock = NULL;
521 return 0;
523 strong_alias(__pthread_rwlock_init, pthread_rwlock_init);
525 int __pthread_rwlock_destroy(pthread_rwlock_t *rwlock)
527 if (!((wine_rwlock)rwlock)->lock) return 0;
528 RtlDeleteResource(((wine_rwlock)rwlock)->lock);
529 HeapFree(GetProcessHeap(), 0, ((wine_rwlock)rwlock)->lock);
530 return 0;
532 strong_alias(__pthread_rwlock_destroy, pthread_rwlock_destroy);
534 int __pthread_rwlock_rdlock(pthread_rwlock_t *rwlock)
536 if (!init_done) return 0;
537 if (!((wine_rwlock)rwlock)->lock)
538 rwlock_real_init( rwlock );
540 while(TRUE)
541 if (RtlAcquireResourceShared(((wine_rwlock)rwlock)->lock, TRUE))
542 return 0;
544 strong_alias(__pthread_rwlock_rdlock, pthread_rwlock_rdlock);
546 int __pthread_rwlock_tryrdlock(pthread_rwlock_t *rwlock)
548 if (!init_done) return 0;
549 if (!((wine_rwlock)rwlock)->lock)
550 rwlock_real_init( rwlock );
552 if (!RtlAcquireResourceShared(((wine_rwlock)rwlock)->lock, FALSE)) {
553 errno = EBUSY;
554 return -1;
556 return 0;
558 strong_alias(__pthread_rwlock_tryrdlock, pthread_rwlock_tryrdlock);
560 int __pthread_rwlock_wrlock(pthread_rwlock_t *rwlock)
562 if (!init_done) return 0;
563 if (!((wine_rwlock)rwlock)->lock)
564 rwlock_real_init( rwlock );
566 while(TRUE)
567 if (RtlAcquireResourceExclusive(((wine_rwlock)rwlock)->lock, TRUE))
568 return 0;
570 strong_alias(__pthread_rwlock_wrlock, pthread_rwlock_wrlock);
572 int __pthread_rwlock_trywrlock(pthread_rwlock_t *rwlock)
574 if (!init_done) return 0;
575 if (!((wine_rwlock)rwlock)->lock)
576 rwlock_real_init( rwlock );
578 if (!RtlAcquireResourceExclusive(((wine_rwlock)rwlock)->lock, FALSE)) {
579 errno = EBUSY;
580 return -1;
582 return 0;
584 strong_alias(__pthread_rwlock_trywrlock, pthread_rwlock_trywrlock);
586 int __pthread_rwlock_unlock(pthread_rwlock_t *rwlock)
588 if (!((wine_rwlock)rwlock)->lock) return 0;
589 RtlReleaseResource( ((wine_rwlock)rwlock)->lock );
590 return 0;
592 strong_alias(__pthread_rwlock_unlock, pthread_rwlock_unlock);
594 /**** READ-WRITE LOCK ATTRIBUTES *****/
595 /* not implemented right now */
597 int pthread_rwlockattr_init(pthread_rwlockattr_t *attr)
599 return 0;
602 int __pthread_rwlockattr_destroy(pthread_rwlockattr_t *attr)
604 return 0;
606 strong_alias(__pthread_rwlockattr_destroy, pthread_rwlockattr_destroy);
608 int pthread_rwlockattr_getkind_np(const pthread_rwlockattr_t *attr, int *pref)
610 *pref = 0;
611 return 0;
614 int pthread_rwlockattr_setkind_np(pthread_rwlockattr_t *attr, int pref)
616 return 0;
618 #endif /* glibc 2.2 */
620 /***** MISC *****/
622 pthread_t pthread_self(void)
624 return (pthread_t)GetCurrentThreadId();
627 int pthread_equal(pthread_t thread1, pthread_t thread2)
629 return (DWORD)thread1 == (DWORD)thread2;
632 void pthread_exit(void *retval)
634 /* FIXME: pthread cleanup */
635 ExitThread((DWORD)retval);
638 int pthread_setcanceltype(int type, int *oldtype)
640 if (oldtype) *oldtype = PTHREAD_CANCEL_ASYNCHRONOUS;
641 return 0;
644 /***** ANTI-OVERRIDES *****/
645 /* pthreads tries to override these, point them back to libc */
647 int sigaction(int signum, const struct sigaction *act, struct sigaction *oldact)
649 if (!libc_sigaction)
651 libc_sigaction = dlsym( RTLD_NEXT, "sigaction" );
652 assert( libc_sigaction );
654 return libc_sigaction(signum, act, oldact);
657 #else /* __GLIBC__ */
659 void PTHREAD_init_done(void)
663 #endif /* __GLIBC__ */