072339664d
* pthread.cc (+mangle_sem_name): New function. (sem_open): Ditto. (sem_close: Ditto. (sem_timedwait): Ditto. (sem_getvalue): Ditto. * thread.cc (semaphore::semaphore): Rearrange member initialization. Use appropriate security attribute for process shared semaphores. (semaphore::semaphore): New constructor for named semaphores. (semaphore::~semaphore): Care for semaphore name. (semaphore::_post): Accomodate failing ReleaseSemaphore. Use value returned by ReleaseSemaphore vor currentvalue. (semaphore::_getvalue): New method. (semaphore::_timedwait): Ditto. (semaphore::_fixup_after_fork): Rearrange. Don't fail for process shared semaphores. (semaphore::open): New method. (semaphore::timedwait): Ditto. (semaphore::post): Fix return value. Set errno appropriately. (semaphore::getvalue): New method. * thread.h (class semaphore): Add prototypes for open, getvalue, timedwait, _getvalue, _timedwait. Add prototypes for new constructor. Add name member. * include/semaphore.h: Add prototypes for sem_open, sem_close, sem_timedwait and sem_getvalue. include/cygwin/version.h: Bump API minor number.
242 lines
4.5 KiB
C++
242 lines
4.5 KiB
C++
/* pthread.cc: posix pthread interface for Cygwin
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Copyright 1998, 1999, 2000, 2001, 2002, 2003 Red Hat, Inc.
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Originally written by Marco Fuykschot <marco@ddi.nl>
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This file is part of Cygwin.
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This software is a copyrighted work licensed under the terms of the
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Cygwin license. Please consult the file "CYGWIN_LICENSE" for
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details. */
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#include "winsup.h"
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#include "thread.h"
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#include "cygerrno.h"
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#include <stdarg.h>
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#include <sys/fcntl.h>
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extern "C"
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{
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/* ThreadCreation */
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int
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pthread_create (pthread_t * thread, const pthread_attr_t * attr,
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void *(*start_routine) (void *), void *arg)
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{
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return pthread::create (thread, attr, start_routine, arg);
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}
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int
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pthread_once (pthread_once_t * once_control, void (*init_routine) (void))
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{
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return pthread::once (once_control, init_routine);
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}
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int
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pthread_atfork (void (*prepare)(void), void (*parent)(void), void (*child)(void))
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{
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return pthread::atfork (prepare, parent, child);
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}
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/* Thread Exit */
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void
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pthread_exit (void *value_ptr)
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{
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return pthread::self ()->exit (value_ptr);
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}
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int
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pthread_join (pthread_t thread, void **return_val)
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{
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return pthread::join (&thread, (void **) return_val);
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}
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int
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pthread_detach (pthread_t thread)
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{
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return pthread::detach (&thread);
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}
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/* This isn't a posix call... should we keep it? */
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int
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pthread_suspend (pthread_t thread)
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{
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return pthread::suspend (&thread);
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}
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/* same */
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int
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pthread_continue (pthread_t thread)
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{
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return pthread::resume (&thread);
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}
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unsigned long
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pthread_getsequence_np (pthread_t * thread)
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{
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if (!pthread::is_good_object (thread))
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return EINVAL;
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return (*thread)->getsequence_np ();
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}
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/* ID */
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pthread_t pthread_self ()
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{
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return pthread::self ();
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}
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/* Mutexes */
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int
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pthread_mutex_init (pthread_mutex_t * mutex, const pthread_mutexattr_t * attr)
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{
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return pthread_mutex::init (mutex, attr);
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}
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/* Synchronisation */
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int
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pthread_cond_init (pthread_cond_t * cond, const pthread_condattr_t * attr)
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{
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return pthread_cond::init (cond, attr);
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}
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/* RW Locks */
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int
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pthread_rwlock_init (pthread_rwlock_t *rwlock, const pthread_rwlockattr_t *attr)
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{
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return pthread_rwlock::init (rwlock, attr);
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}
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/* Cancelability */
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int
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pthread_cancel (pthread_t thread)
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{
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return pthread::cancel (thread);
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}
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int
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pthread_setcancelstate (int state, int *oldstate)
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{
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return pthread::self ()->setcancelstate (state, oldstate);
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}
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int
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pthread_setcanceltype (int type, int *oldtype)
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{
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return pthread::self ()->setcanceltype (type, oldtype);
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}
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void
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pthread_testcancel (void)
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{
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pthread::self ()->testcancel ();
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}
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void
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_pthread_cleanup_push (__pthread_cleanup_handler *handler)
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{
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pthread::self ()->push_cleanup_handler (handler);
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}
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void
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_pthread_cleanup_pop (int execute)
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{
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pthread::self ()->pop_cleanup_handler (execute);
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}
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/* Semaphores */
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int
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sem_init (sem_t * sem, int pshared, unsigned int value)
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{
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return semaphore::init (sem, pshared, value);
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}
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int
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sem_destroy (sem_t * sem)
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{
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return semaphore::destroy (sem);
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}
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/* Mangle semaphore name to follow windows naming rules. Prepend "Global\"
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if running on terminal service aware machine. Substitute invalid backslash
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by forward slash characters, hoping not to collide. */
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static bool
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mangle_sem_name (char *mangled, const char *name)
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{
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if (check_null_empty_str_errno (name))
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return false;
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int len = strlen (name);
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if (len > MAX_PATH
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|| (wincap.has_terminal_services () && len > MAX_PATH - 7))
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{
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set_errno (EINVAL);
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return false;
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}
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strcpy (mangled, wincap.has_terminal_services () ? "Global\\" : "");
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char *d = mangled + strlen (mangled);
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const char *s = name;
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while (*s)
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*d++ = (*s == '\\') ? '/' : *s++;
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*d = '\0';
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return true;
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}
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sem_t *
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sem_open (const char *name, int oflag, ...)
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{
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mode_t mode = 0;
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unsigned int value = 0;
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if (oflag & O_CREAT)
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{
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va_list ap;
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va_start (ap, oflag);
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mode = va_arg (ap, mode_t);
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value = va_arg (ap, unsigned int);
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va_end (ap);
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}
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char mangled_name[MAX_PATH + 1];
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if (!mangle_sem_name (mangled_name, name))
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return NULL;
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return semaphore::open (mangled_name, oflag, mode, value);
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}
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int
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sem_close (sem_t * sem)
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{
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return semaphore::destroy (sem);
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}
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int
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sem_wait (sem_t * sem)
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{
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return semaphore::wait (sem);
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}
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int
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sem_trywait (sem_t * sem)
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{
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return semaphore::trywait (sem);
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}
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int
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sem_timedwait (sem_t * sem, const struct timespec *abstime)
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{
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return semaphore::timedwait (sem, abstime);
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}
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int
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sem_post (sem_t * sem)
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{
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return semaphore::post (sem);
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}
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int
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sem_getvalue (sem_t * sem, int *sval)
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{
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return semaphore::getvalue (sem, sval);
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}
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}
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