|  | 
 | #include <stdlib.h> | 
 | #include <stdio.h> | 
 | #include <errno.h> | 
 | #include </usr/include/thread.h> | 
 | #undef _POSIX_THREADS | 
 |  | 
 |  | 
 | /* | 
 |  * Initialization. | 
 |  */ | 
 | static void PyThread__init_thread(void) | 
 | { | 
 | } | 
 |  | 
 | /* | 
 |  * Thread support. | 
 |  */ | 
 | struct func_arg { | 
 | 	void (*func)(void *); | 
 | 	void *arg; | 
 | }; | 
 |  | 
 | static void * | 
 | new_func(void *funcarg) | 
 | { | 
 | 	void (*func)(void *); | 
 | 	void *arg; | 
 |  | 
 | 	func = ((struct func_arg *) funcarg)->func; | 
 | 	arg = ((struct func_arg *) funcarg)->arg; | 
 | 	free(funcarg); | 
 | 	(*func)(arg); | 
 | 	return 0; | 
 | } | 
 |  | 
 |  | 
 | long | 
 | PyThread_start_new_thread(void (*func)(void *), void *arg) | 
 | { | 
 | 	thread_t tid; | 
 | 	struct func_arg *funcarg; | 
 |  | 
 | 	dprintf(("PyThread_start_new_thread called\n")); | 
 | 	if (!initialized) | 
 | 		PyThread_init_thread(); | 
 | 	funcarg = (struct func_arg *) malloc(sizeof(struct func_arg)); | 
 | 	funcarg->func = func; | 
 | 	funcarg->arg = arg; | 
 | 	if (thr_create(0, 0, new_func, funcarg, | 
 | 		       THR_DETACHED | THR_NEW_LWP, &tid)) { | 
 | 		perror("thr_create"); | 
 | 		free((void *) funcarg); | 
 | 		return -1; | 
 | 	} | 
 | 	return tid; | 
 | } | 
 |  | 
 | long | 
 | PyThread_get_thread_ident(void) | 
 | { | 
 | 	if (!initialized) | 
 | 		PyThread_init_thread(); | 
 | 	return thr_self(); | 
 | } | 
 |  | 
 | void  | 
 | PyThread_exit_thread(void) | 
 | { | 
 | 	dprintf(("PyThread_exit_thread called\n")); | 
 | 	if (!initialized) | 
 | 		exit(0); | 
 | 	thr_exit(0); | 
 | } | 
 |  | 
 | /* | 
 |  * Lock support. | 
 |  */ | 
 | PyThread_type_lock  | 
 | PyThread_allocate_lock(void) | 
 | { | 
 | 	mutex_t *lock; | 
 |  | 
 | 	dprintf(("PyThread_allocate_lock called\n")); | 
 | 	if (!initialized) | 
 | 		PyThread_init_thread(); | 
 |  | 
 | 	lock = (mutex_t *) malloc(sizeof(mutex_t)); | 
 | 	if (mutex_init(lock, USYNC_THREAD, 0)) { | 
 | 		perror("mutex_init"); | 
 | 		free((void *) lock); | 
 | 		lock = 0; | 
 | 	} | 
 | 	dprintf(("PyThread_allocate_lock() -> %p\n", lock)); | 
 | 	return (PyThread_type_lock) lock; | 
 | } | 
 |  | 
 | void  | 
 | PyThread_free_lock(PyThread_type_lock lock) | 
 | { | 
 | 	dprintf(("PyThread_free_lock(%p) called\n", lock)); | 
 | 	mutex_destroy((mutex_t *) lock); | 
 | 	free((void *) lock); | 
 | } | 
 |  | 
 | int  | 
 | PyThread_acquire_lock(PyThread_type_lock lock, int waitflag) | 
 | { | 
 | 	int success; | 
 |  | 
 | 	dprintf(("PyThread_acquire_lock(%p, %d) called\n", lock, waitflag)); | 
 | 	if (waitflag) | 
 | 		success = mutex_lock((mutex_t *) lock); | 
 | 	else | 
 | 		success = mutex_trylock((mutex_t *) lock); | 
 | 	if (success < 0) | 
 | 		perror(waitflag ? "mutex_lock" : "mutex_trylock"); | 
 | 	else | 
 | 		success = !success; /* solaris does it the other way round */ | 
 | 	dprintf(("PyThread_acquire_lock(%p, %d) -> %d\n", lock, waitflag, success)); | 
 | 	return success; | 
 | } | 
 |  | 
 | void  | 
 | PyThread_release_lock(PyThread_type_lock lock) | 
 | { | 
 | 	dprintf(("PyThread_release_lock(%p) called\n", lock)); | 
 | 	if (mutex_unlock((mutex_t *) lock)) | 
 | 		perror("mutex_unlock"); | 
 | } |