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5eb8d1f0b0
and pthread_resume_all_np(). These suspend and resume all threads except the current thread, respectively. The existing functions pthread_single_np() and pthread_multi_np(), which formerly had no effect, now exhibit the same behaviour and pthread_suspend_all_np() and pthread_resume_all_np(). These functions have been added mostly for the native java port. Don't allow the uthread kernel pipe to use the same descriptors as stdio. Mostily submitted by Oswald Buddenhagen <ossi@kde.org>. Correct some minor style nits.
232 lines
5.5 KiB
C
232 lines
5.5 KiB
C
/*
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* David Leonard <d@openbsd.org>, 1999. Public domain.
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* $FreeBSD$
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*/
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#include <sys/errno.h>
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#include <pthread.h>
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#include "pthread_private.h"
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static void finish_cancellation(void *arg);
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__weak_reference(_pthread_cancel, pthread_cancel);
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__weak_reference(_pthread_setcancelstate, pthread_setcancelstate);
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__weak_reference(_pthread_setcanceltype, pthread_setcanceltype);
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__weak_reference(_pthread_testcancel, pthread_testcancel);
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int
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_pthread_cancel(pthread_t pthread)
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{
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int ret;
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if ((ret = _find_thread(pthread)) != 0) {
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/* NOTHING */
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} else if (pthread->state == PS_DEAD || pthread->state == PS_DEADLOCK
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|| (pthread->flags & PTHREAD_EXITING) != 0) {
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ret = 0;
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} else {
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/* Protect the scheduling queues: */
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_thread_kern_sig_defer();
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if (((pthread->cancelflags & PTHREAD_CANCEL_DISABLE) != 0) ||
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(((pthread->cancelflags & PTHREAD_CANCEL_ASYNCHRONOUS) == 0) &&
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((pthread->cancelflags & PTHREAD_AT_CANCEL_POINT) == 0)))
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/* Just mark it for cancellation: */
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pthread->cancelflags |= PTHREAD_CANCELLING;
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else {
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/*
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* Check if we need to kick it back into the
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* run queue:
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*/
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switch (pthread->state) {
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case PS_RUNNING:
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/* No need to resume: */
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pthread->cancelflags |= PTHREAD_CANCELLING;
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break;
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case PS_SPINBLOCK:
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case PS_FDR_WAIT:
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case PS_FDW_WAIT:
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case PS_POLL_WAIT:
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case PS_SELECT_WAIT:
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/* Remove these threads from the work queue: */
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if ((pthread->flags & PTHREAD_FLAGS_IN_WORKQ)
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!= 0)
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PTHREAD_WORKQ_REMOVE(pthread);
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/* Fall through: */
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case PS_SIGTHREAD:
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case PS_SLEEP_WAIT:
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case PS_WAIT_WAIT:
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case PS_SIGSUSPEND:
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case PS_SIGWAIT:
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/* Interrupt and resume: */
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pthread->interrupted = 1;
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pthread->cancelflags |= PTHREAD_CANCELLING;
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PTHREAD_NEW_STATE(pthread,PS_RUNNING);
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break;
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case PS_JOIN:
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/*
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* Disconnect the thread from the joinee:
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*/
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if (pthread->join_status.thread != NULL) {
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pthread->join_status.thread->joiner
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= NULL;
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pthread->join_status.thread = NULL;
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}
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pthread->cancelflags |= PTHREAD_CANCELLING;
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PTHREAD_NEW_STATE(pthread, PS_RUNNING);
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break;
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case PS_SUSPENDED:
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case PS_MUTEX_WAIT:
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case PS_COND_WAIT:
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case PS_FDLR_WAIT:
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case PS_FDLW_WAIT:
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case PS_FILE_WAIT:
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/*
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* Threads in these states may be in queues.
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* In order to preserve queue integrity, the
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* cancelled thread must remove itself from the
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* queue. Mark the thread as interrupted and
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* needing cancellation, and set the state to
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* running. When the thread resumes, it will
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* remove itself from the queue and call the
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* cancellation completion routine.
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*/
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pthread->interrupted = 1;
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pthread->cancelflags |= PTHREAD_CANCEL_NEEDED;
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PTHREAD_NEW_STATE(pthread, PS_RUNNING);
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pthread->continuation = finish_cancellation;
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break;
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case PS_DEAD:
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case PS_DEADLOCK:
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case PS_STATE_MAX:
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/* Ignore - only here to silence -Wall: */
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break;
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}
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}
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/* Unprotect the scheduling queues: */
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_thread_kern_sig_undefer();
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ret = 0;
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}
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return (ret);
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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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struct pthread *curthread = _get_curthread();
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int ostate;
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int ret;
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ostate = curthread->cancelflags & PTHREAD_CANCEL_DISABLE;
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switch (state) {
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case PTHREAD_CANCEL_ENABLE:
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if (oldstate != NULL)
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*oldstate = ostate;
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curthread->cancelflags &= ~PTHREAD_CANCEL_DISABLE;
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if ((curthread->cancelflags & PTHREAD_CANCEL_ASYNCHRONOUS) != 0)
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pthread_testcancel();
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ret = 0;
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break;
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case PTHREAD_CANCEL_DISABLE:
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if (oldstate != NULL)
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*oldstate = ostate;
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curthread->cancelflags |= PTHREAD_CANCEL_DISABLE;
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ret = 0;
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break;
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default:
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ret = EINVAL;
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}
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return (ret);
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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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struct pthread *curthread = _get_curthread();
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int otype;
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int ret;
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otype = curthread->cancelflags & PTHREAD_CANCEL_ASYNCHRONOUS;
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switch (type) {
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case PTHREAD_CANCEL_ASYNCHRONOUS:
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if (oldtype != NULL)
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*oldtype = otype;
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curthread->cancelflags |= PTHREAD_CANCEL_ASYNCHRONOUS;
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pthread_testcancel();
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ret = 0;
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break;
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case PTHREAD_CANCEL_DEFERRED:
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if (oldtype != NULL)
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*oldtype = otype;
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curthread->cancelflags &= ~PTHREAD_CANCEL_ASYNCHRONOUS;
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ret = 0;
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break;
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default:
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ret = EINVAL;
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}
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return (ret);
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}
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void
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_pthread_testcancel(void)
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{
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struct pthread *curthread = _get_curthread();
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if (((curthread->cancelflags & PTHREAD_CANCEL_DISABLE) == 0) &&
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((curthread->cancelflags & PTHREAD_CANCELLING) != 0) &&
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((curthread->flags & PTHREAD_EXITING) == 0)) {
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/*
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* It is possible for this thread to be swapped out
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* while performing cancellation; do not allow it
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* to be cancelled again.
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*/
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curthread->cancelflags &= ~PTHREAD_CANCELLING;
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_thread_exit_cleanup();
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pthread_exit(PTHREAD_CANCELED);
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PANIC("cancel");
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}
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}
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void
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_thread_enter_cancellation_point(void)
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{
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struct pthread *curthread = _get_curthread();
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/* Look for a cancellation before we block: */
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pthread_testcancel();
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curthread->cancelflags |= PTHREAD_AT_CANCEL_POINT;
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}
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void
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_thread_leave_cancellation_point(void)
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{
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struct pthread *curthread = _get_curthread();
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curthread->cancelflags &= ~PTHREAD_AT_CANCEL_POINT;
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/* Look for a cancellation after we unblock: */
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pthread_testcancel();
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}
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static void
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finish_cancellation(void *arg)
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{
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struct pthread *curthread = _get_curthread();
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curthread->continuation = NULL;
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curthread->interrupted = 0;
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if ((curthread->cancelflags & PTHREAD_CANCEL_NEEDED) != 0) {
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curthread->cancelflags &= ~PTHREAD_CANCEL_NEEDED;
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_thread_exit_cleanup();
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pthread_exit(PTHREAD_CANCELED);
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}
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}
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