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jeremybenn |
// posix-threads.cc - interface between libjava and POSIX threads.
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/* Copyright (C) 1998, 1999, 2000, 2001, 2004, 2006 Free Software Foundation
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This file is part of libgcj.
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This software is copyrighted work licensed under the terms of the
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Libgcj License. Please consult the file "LIBGCJ_LICENSE" for
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details. */
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// TO DO:
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// * Document signal handling limitations
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#include <config.h>
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#include "posix.h"
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#include "posix-threads.h"
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// If we're using the Boehm GC, then we need to override some of the
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// thread primitives. This is fairly gross.
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#ifdef HAVE_BOEHM_GC
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#include <gc.h>
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#endif /* HAVE_BOEHM_GC */
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#include <stdlib.h>
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#include <time.h>
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#include <signal.h>
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#include <errno.h>
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#include <limits.h>
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#ifdef HAVE_UNISTD_H
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#include <unistd.h> // To test for _POSIX_THREAD_PRIORITY_SCHEDULING
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#endif
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#include <gcj/cni.h>
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#include <jvm.h>
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#include <java/lang/Thread.h>
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#include <java/lang/System.h>
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#include <java/lang/Long.h>
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#include <java/lang/OutOfMemoryError.h>
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#include <java/lang/InternalError.h>
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// This is used to implement thread startup.
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struct starter
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{
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_Jv_ThreadStartFunc *method;
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_Jv_Thread_t *data;
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};
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// This is the key used to map from the POSIX thread value back to the
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// Java object representing the thread. The key is global to all
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// threads, so it is ok to make it a global here.
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pthread_key_t _Jv_ThreadKey;
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// This is the key used to map from the POSIX thread value back to the
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// _Jv_Thread_t* representing the thread.
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pthread_key_t _Jv_ThreadDataKey;
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// We keep a count of all non-daemon threads which are running. When
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// this reaches zero, _Jv_ThreadWait returns.
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static pthread_mutex_t daemon_mutex;
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static pthread_cond_t daemon_cond;
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static int non_daemon_count;
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// The signal to use when interrupting a thread.
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#if defined(LINUX_THREADS) || defined(FREEBSD_THREADS)
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// LinuxThreads (prior to glibc 2.1) usurps both SIGUSR1 and SIGUSR2.
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// GC on FreeBSD uses both SIGUSR1 and SIGUSR2.
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# define INTR SIGHUP
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#else /* LINUX_THREADS */
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# define INTR SIGUSR2
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#endif /* LINUX_THREADS */
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//
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// These are the flags that can appear in _Jv_Thread_t.
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//
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// Thread started.
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#define FLAG_START 0x01
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// Thread is daemon.
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#define FLAG_DAEMON 0x02
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int
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_Jv_MutexLock (_Jv_Mutex_t *mu)
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{
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pthread_t self = pthread_self ();
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if (mu->owner == self)
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{
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mu->count++;
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}
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else
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{
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JvSetThreadState holder (_Jv_ThreadCurrent(), JV_BLOCKED);
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# ifdef LOCK_DEBUG
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int result = pthread_mutex_lock (&mu->mutex);
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if (0 != result)
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{
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fprintf(stderr, "Pthread_mutex_lock returned %d\n", result);
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for (;;) {}
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}
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# else
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pthread_mutex_lock (&mu->mutex);
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# endif
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mu->count = 1;
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mu->owner = self;
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}
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return 0;
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}
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// Wait for the condition variable "CV" to be notified.
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// Return values:
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// 0: the condition was notified, or the timeout expired.
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// _JV_NOT_OWNER: the thread does not own the mutex "MU".
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// _JV_INTERRUPTED: the thread was interrupted. Its interrupted flag is set.
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int
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_Jv_CondWait (_Jv_ConditionVariable_t *cv, _Jv_Mutex_t *mu,
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jlong millis, jint nanos)
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{
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pthread_t self = pthread_self();
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if (mu->owner != self)
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return _JV_NOT_OWNER;
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struct timespec ts;
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JvThreadState new_state = JV_WAITING;
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if (millis > 0 || nanos > 0)
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{
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// Calculate the abstime corresponding to the timeout.
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unsigned long long seconds;
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unsigned long usec;
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// For better accuracy, should use pthread_condattr_setclock
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// and clock_gettime.
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#ifdef HAVE_GETTIMEOFDAY
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timeval tv;
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gettimeofday (&tv, NULL);
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usec = tv.tv_usec;
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seconds = tv.tv_sec;
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#else
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unsigned long long startTime = java::lang::System::currentTimeMillis();
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seconds = startTime / 1000;
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/* Assume we're about half-way through this millisecond. */
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usec = (startTime % 1000) * 1000 + 500;
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#endif
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/* These next two statements cannot overflow. */
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usec += nanos / 1000;
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usec += (millis % 1000) * 1000;
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/* These two statements could overflow only if tv.tv_sec was
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insanely large. */
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seconds += millis / 1000;
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seconds += usec / 1000000;
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ts.tv_sec = seconds;
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if (ts.tv_sec < 0 || (unsigned long long)ts.tv_sec != seconds)
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{
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// We treat a timeout that won't fit into a struct timespec
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// as a wait forever.
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millis = nanos = 0;
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}
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else
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/* This next statement also cannot overflow. */
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ts.tv_nsec = (usec % 1000000) * 1000 + (nanos % 1000);
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}
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_Jv_Thread_t *current = _Jv_ThreadCurrentData ();
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java::lang::Thread *current_obj = _Jv_ThreadCurrent ();
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pthread_mutex_lock (¤t->wait_mutex);
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// Now that we hold the wait mutex, check if this thread has been
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// interrupted already.
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if (current_obj->interrupt_flag)
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{
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pthread_mutex_unlock (¤t->wait_mutex);
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return _JV_INTERRUPTED;
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}
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// Set the thread's state.
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JvSetThreadState holder (current_obj, new_state);
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// Add this thread to the cv's wait set.
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current->next = NULL;
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if (cv->first == NULL)
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cv->first = current;
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else
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for (_Jv_Thread_t *t = cv->first;; t = t->next)
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{
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if (t->next == NULL)
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{
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t->next = current;
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break;
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}
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}
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// Record the current lock depth, so it can be restored when we re-aquire it.
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int count = mu->count;
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// Release the monitor mutex.
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mu->count = 0;
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mu->owner = 0;
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pthread_mutex_unlock (&mu->mutex);
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int r = 0;
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bool done_sleeping = false;
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while (! done_sleeping)
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{
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if (millis == 0 && nanos == 0)
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r = pthread_cond_wait (¤t->wait_cond, ¤t->wait_mutex);
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else
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r = pthread_cond_timedwait (¤t->wait_cond, ¤t->wait_mutex,
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&ts);
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// In older glibc's (prior to 2.1.3), the cond_wait functions may
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// spuriously wake up on a signal. Catch that here.
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if (r != EINTR)
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done_sleeping = true;
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}
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// Check for an interrupt *before* releasing the wait mutex.
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jboolean interrupted = current_obj->interrupt_flag;
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pthread_mutex_unlock (¤t->wait_mutex);
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// Reaquire the monitor mutex, and restore the lock count.
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pthread_mutex_lock (&mu->mutex);
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mu->owner = self;
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mu->count = count;
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// If we were interrupted, or if a timeout occurred, remove ourself from
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// the cv wait list now. (If we were notified normally, notify() will have
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// already taken care of this)
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if (r == ETIMEDOUT || interrupted)
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{
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_Jv_Thread_t *prev = NULL;
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for (_Jv_Thread_t *t = cv->first; t != NULL; t = t->next)
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{
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if (t == current)
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{
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if (prev != NULL)
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prev->next = t->next;
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else
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cv->first = t->next;
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t->next = NULL;
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break;
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}
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prev = t;
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}
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if (interrupted)
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return _JV_INTERRUPTED;
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}
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return 0;
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}
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int
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_Jv_CondNotify (_Jv_ConditionVariable_t *cv, _Jv_Mutex_t *mu)
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{
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if (_Jv_MutexCheckMonitor (mu))
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return _JV_NOT_OWNER;
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_Jv_Thread_t *target;
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_Jv_Thread_t *prev = NULL;
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for (target = cv->first; target != NULL; target = target->next)
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{
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pthread_mutex_lock (&target->wait_mutex);
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if (target->thread_obj->interrupt_flag)
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{
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// Don't notify a thread that has already been interrupted.
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pthread_mutex_unlock (&target->wait_mutex);
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prev = target;
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continue;
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}
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pthread_cond_signal (&target->wait_cond);
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pthread_mutex_unlock (&target->wait_mutex);
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| 283 |
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// Two concurrent notify() calls must not be delivered to the same
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// thread, so remove the target thread from the cv wait list now.
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if (prev == NULL)
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cv->first = target->next;
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else
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prev->next = target->next;
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| 290 |
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target->next = NULL;
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| 292 |
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break;
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| 293 |
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}
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| 294 |
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| 295 |
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return 0;
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| 296 |
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}
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| 297 |
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| 298 |
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int
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| 299 |
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_Jv_CondNotifyAll (_Jv_ConditionVariable_t *cv, _Jv_Mutex_t *mu)
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| 300 |
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{
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| 301 |
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if (_Jv_MutexCheckMonitor (mu))
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| 302 |
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return _JV_NOT_OWNER;
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| 303 |
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| 304 |
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_Jv_Thread_t *target;
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| 305 |
|
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_Jv_Thread_t *prev = NULL;
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| 306 |
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| 307 |
|
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for (target = cv->first; target != NULL; target = target->next)
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| 308 |
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{
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| 309 |
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pthread_mutex_lock (&target->wait_mutex);
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| 310 |
|
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pthread_cond_signal (&target->wait_cond);
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| 311 |
|
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pthread_mutex_unlock (&target->wait_mutex);
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| 312 |
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| 313 |
|
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if (prev != NULL)
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| 314 |
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prev->next = NULL;
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| 315 |
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prev = target;
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| 316 |
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}
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| 317 |
|
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if (prev != NULL)
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| 318 |
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prev->next = NULL;
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| 319 |
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| 320 |
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cv->first = NULL;
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| 321 |
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| 322 |
|
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return 0;
|
| 323 |
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}
|
| 324 |
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| 325 |
|
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void
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| 326 |
|
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_Jv_ThreadInterrupt (_Jv_Thread_t *data)
|
| 327 |
|
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{
|
| 328 |
|
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pthread_mutex_lock (&data->wait_mutex);
|
| 329 |
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|
| 330 |
|
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// Set the thread's interrupted flag *after* aquiring its wait_mutex. This
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| 331 |
|
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// ensures that there are no races with the interrupt flag being set after
|
| 332 |
|
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// the waiting thread checks it and before pthread_cond_wait is entered.
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| 333 |
|
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data->thread_obj->interrupt_flag = true;
|
| 334 |
|
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| 335 |
|
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// Interrupt blocking system calls using a signal.
|
| 336 |
|
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pthread_kill (data->thread, INTR);
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| 337 |
|
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| 338 |
|
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pthread_cond_signal (&data->wait_cond);
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| 339 |
|
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| 340 |
|
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pthread_mutex_unlock (&data->wait_mutex);
|
| 341 |
|
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}
|
| 342 |
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| 343 |
|
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/**
|
| 344 |
|
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* Releases the block on a thread created by _Jv_ThreadPark(). This
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| 345 |
|
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* method can also be used to terminate a blockage caused by a prior
|
| 346 |
|
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* call to park. This operation is unsafe, as the thread must be
|
| 347 |
|
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* guaranteed to be live.
|
| 348 |
|
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*
|
| 349 |
|
|
* @param thread the thread to unblock.
|
| 350 |
|
|
*/
|
| 351 |
|
|
void
|
| 352 |
|
|
ParkHelper::unpark ()
|
| 353 |
|
|
{
|
| 354 |
|
|
using namespace ::java::lang;
|
| 355 |
|
|
volatile obj_addr_t *ptr = &permit;
|
| 356 |
|
|
|
| 357 |
|
|
/* If this thread is in state RUNNING, give it a permit and return
|
| 358 |
|
|
immediately. */
|
| 359 |
|
|
if (compare_and_swap
|
| 360 |
|
|
(ptr, Thread::THREAD_PARK_RUNNING, Thread::THREAD_PARK_PERMIT))
|
| 361 |
|
|
return;
|
| 362 |
|
|
|
| 363 |
|
|
/* If this thread is parked, put it into state RUNNING and send it a
|
| 364 |
|
|
signal. */
|
| 365 |
|
|
if (compare_and_swap
|
| 366 |
|
|
(ptr, Thread::THREAD_PARK_PARKED, Thread::THREAD_PARK_RUNNING))
|
| 367 |
|
|
{
|
| 368 |
|
|
int result;
|
| 369 |
|
|
pthread_mutex_lock (&mutex);
|
| 370 |
|
|
result = pthread_cond_signal (&cond);
|
| 371 |
|
|
pthread_mutex_unlock (&mutex);
|
| 372 |
|
|
JvAssert (result == 0);
|
| 373 |
|
|
}
|
| 374 |
|
|
}
|
| 375 |
|
|
|
| 376 |
|
|
/**
|
| 377 |
|
|
* Sets our state to dead.
|
| 378 |
|
|
*/
|
| 379 |
|
|
void
|
| 380 |
|
|
ParkHelper::deactivate ()
|
| 381 |
|
|
{
|
| 382 |
|
|
permit = ::java::lang::Thread::THREAD_PARK_DEAD;
|
| 383 |
|
|
}
|
| 384 |
|
|
|
| 385 |
|
|
void
|
| 386 |
|
|
ParkHelper::init ()
|
| 387 |
|
|
{
|
| 388 |
|
|
pthread_mutex_init (&mutex, NULL);
|
| 389 |
|
|
pthread_cond_init (&cond, NULL);
|
| 390 |
|
|
permit = ::java::lang::Thread::THREAD_PARK_RUNNING;
|
| 391 |
|
|
}
|
| 392 |
|
|
|
| 393 |
|
|
/**
|
| 394 |
|
|
* Blocks the thread until a matching _Jv_ThreadUnpark() occurs, the
|
| 395 |
|
|
* thread is interrupted or the optional timeout expires. If an
|
| 396 |
|
|
* unpark call has already occurred, this also counts. A timeout
|
| 397 |
|
|
* value of zero is defined as no timeout. When isAbsolute is true,
|
| 398 |
|
|
* the timeout is in milliseconds relative to the epoch. Otherwise,
|
| 399 |
|
|
* the value is the number of nanoseconds which must occur before
|
| 400 |
|
|
* timeout. This call may also return spuriously (i.e. for no
|
| 401 |
|
|
* apparent reason).
|
| 402 |
|
|
*
|
| 403 |
|
|
* @param isAbsolute true if the timeout is specified in milliseconds from
|
| 404 |
|
|
* the epoch.
|
| 405 |
|
|
* @param time either the number of nanoseconds to wait, or a time in
|
| 406 |
|
|
* milliseconds from the epoch to wait for.
|
| 407 |
|
|
*/
|
| 408 |
|
|
void
|
| 409 |
|
|
ParkHelper::park (jboolean isAbsolute, jlong time)
|
| 410 |
|
|
{
|
| 411 |
|
|
using namespace ::java::lang;
|
| 412 |
|
|
volatile obj_addr_t *ptr = &permit;
|
| 413 |
|
|
|
| 414 |
|
|
/* If we have a permit, return immediately. */
|
| 415 |
|
|
if (compare_and_swap
|
| 416 |
|
|
(ptr, Thread::THREAD_PARK_PERMIT, Thread::THREAD_PARK_RUNNING))
|
| 417 |
|
|
return;
|
| 418 |
|
|
|
| 419 |
|
|
struct timespec ts;
|
| 420 |
|
|
|
| 421 |
|
|
if (time)
|
| 422 |
|
|
{
|
| 423 |
|
|
unsigned long long seconds;
|
| 424 |
|
|
unsigned long usec;
|
| 425 |
|
|
|
| 426 |
|
|
if (isAbsolute)
|
| 427 |
|
|
{
|
| 428 |
|
|
ts.tv_sec = time / 1000;
|
| 429 |
|
|
ts.tv_nsec = (time % 1000) * 1000 * 1000;
|
| 430 |
|
|
}
|
| 431 |
|
|
else
|
| 432 |
|
|
{
|
| 433 |
|
|
// Calculate the abstime corresponding to the timeout.
|
| 434 |
|
|
jlong nanos = time;
|
| 435 |
|
|
jlong millis = 0;
|
| 436 |
|
|
|
| 437 |
|
|
// For better accuracy, should use pthread_condattr_setclock
|
| 438 |
|
|
// and clock_gettime.
|
| 439 |
|
|
#ifdef HAVE_GETTIMEOFDAY
|
| 440 |
|
|
timeval tv;
|
| 441 |
|
|
gettimeofday (&tv, NULL);
|
| 442 |
|
|
usec = tv.tv_usec;
|
| 443 |
|
|
seconds = tv.tv_sec;
|
| 444 |
|
|
#else
|
| 445 |
|
|
unsigned long long startTime
|
| 446 |
|
|
= java::lang::System::currentTimeMillis();
|
| 447 |
|
|
seconds = startTime / 1000;
|
| 448 |
|
|
/* Assume we're about half-way through this millisecond. */
|
| 449 |
|
|
usec = (startTime % 1000) * 1000 + 500;
|
| 450 |
|
|
#endif
|
| 451 |
|
|
/* These next two statements cannot overflow. */
|
| 452 |
|
|
usec += nanos / 1000;
|
| 453 |
|
|
usec += (millis % 1000) * 1000;
|
| 454 |
|
|
/* These two statements could overflow only if tv.tv_sec was
|
| 455 |
|
|
insanely large. */
|
| 456 |
|
|
seconds += millis / 1000;
|
| 457 |
|
|
seconds += usec / 1000000;
|
| 458 |
|
|
|
| 459 |
|
|
ts.tv_sec = seconds;
|
| 460 |
|
|
if (ts.tv_sec < 0 || (unsigned long long)ts.tv_sec != seconds)
|
| 461 |
|
|
{
|
| 462 |
|
|
// We treat a timeout that won't fit into a struct timespec
|
| 463 |
|
|
// as a wait forever.
|
| 464 |
|
|
millis = nanos = 0;
|
| 465 |
|
|
}
|
| 466 |
|
|
else
|
| 467 |
|
|
/* This next statement also cannot overflow. */
|
| 468 |
|
|
ts.tv_nsec = (usec % 1000000) * 1000 + (nanos % 1000);
|
| 469 |
|
|
}
|
| 470 |
|
|
}
|
| 471 |
|
|
|
| 472 |
|
|
pthread_mutex_lock (&mutex);
|
| 473 |
|
|
if (compare_and_swap
|
| 474 |
|
|
(ptr, Thread::THREAD_PARK_RUNNING, Thread::THREAD_PARK_PARKED))
|
| 475 |
|
|
{
|
| 476 |
|
|
int result = 0;
|
| 477 |
|
|
|
| 478 |
|
|
if (! time)
|
| 479 |
|
|
result = pthread_cond_wait (&cond, &mutex);
|
| 480 |
|
|
else
|
| 481 |
|
|
result = pthread_cond_timedwait (&cond, &mutex, &ts);
|
| 482 |
|
|
|
| 483 |
|
|
JvAssert (result == 0 || result == ETIMEDOUT);
|
| 484 |
|
|
|
| 485 |
|
|
/* If we were unparked by some other thread, this will already
|
| 486 |
|
|
be in state THREAD_PARK_RUNNING. If we timed out or were
|
| 487 |
|
|
interrupted, we have to do it ourself. */
|
| 488 |
|
|
permit = Thread::THREAD_PARK_RUNNING;
|
| 489 |
|
|
}
|
| 490 |
|
|
pthread_mutex_unlock (&mutex);
|
| 491 |
|
|
}
|
| 492 |
|
|
|
| 493 |
|
|
static void
|
| 494 |
|
|
handle_intr (int)
|
| 495 |
|
|
{
|
| 496 |
|
|
// Do nothing.
|
| 497 |
|
|
}
|
| 498 |
|
|
|
| 499 |
|
|
void
|
| 500 |
|
|
_Jv_BlockSigchld()
|
| 501 |
|
|
{
|
| 502 |
|
|
sigset_t mask;
|
| 503 |
|
|
sigemptyset (&mask);
|
| 504 |
|
|
sigaddset (&mask, SIGCHLD);
|
| 505 |
|
|
int c = pthread_sigmask (SIG_BLOCK, &mask, NULL);
|
| 506 |
|
|
if (c != 0)
|
| 507 |
|
|
JvFail (strerror (c));
|
| 508 |
|
|
}
|
| 509 |
|
|
|
| 510 |
|
|
void
|
| 511 |
|
|
_Jv_UnBlockSigchld()
|
| 512 |
|
|
{
|
| 513 |
|
|
sigset_t mask;
|
| 514 |
|
|
sigemptyset (&mask);
|
| 515 |
|
|
sigaddset (&mask, SIGCHLD);
|
| 516 |
|
|
int c = pthread_sigmask (SIG_UNBLOCK, &mask, NULL);
|
| 517 |
|
|
if (c != 0)
|
| 518 |
|
|
JvFail (strerror (c));
|
| 519 |
|
|
}
|
| 520 |
|
|
|
| 521 |
|
|
void
|
| 522 |
|
|
_Jv_InitThreads (void)
|
| 523 |
|
|
{
|
| 524 |
|
|
pthread_key_create (&_Jv_ThreadKey, NULL);
|
| 525 |
|
|
pthread_key_create (&_Jv_ThreadDataKey, NULL);
|
| 526 |
|
|
pthread_mutex_init (&daemon_mutex, NULL);
|
| 527 |
|
|
pthread_cond_init (&daemon_cond, 0);
|
| 528 |
|
|
non_daemon_count = 0;
|
| 529 |
|
|
|
| 530 |
|
|
// Arrange for the interrupt signal to interrupt system calls.
|
| 531 |
|
|
struct sigaction act;
|
| 532 |
|
|
act.sa_handler = handle_intr;
|
| 533 |
|
|
sigemptyset (&act.sa_mask);
|
| 534 |
|
|
act.sa_flags = 0;
|
| 535 |
|
|
sigaction (INTR, &act, NULL);
|
| 536 |
|
|
|
| 537 |
|
|
// Block SIGCHLD here to ensure that any non-Java threads inherit the new
|
| 538 |
|
|
// signal mask.
|
| 539 |
|
|
_Jv_BlockSigchld();
|
| 540 |
|
|
|
| 541 |
|
|
// Check/set the thread stack size.
|
| 542 |
|
|
size_t min_ss = 32 * 1024;
|
| 543 |
|
|
|
| 544 |
|
|
if (sizeof (void *) == 8)
|
| 545 |
|
|
// Bigger default on 64-bit systems.
|
| 546 |
|
|
min_ss *= 2;
|
| 547 |
|
|
|
| 548 |
|
|
#ifdef PTHREAD_STACK_MIN
|
| 549 |
|
|
if (min_ss < PTHREAD_STACK_MIN)
|
| 550 |
|
|
min_ss = PTHREAD_STACK_MIN;
|
| 551 |
|
|
#endif
|
| 552 |
|
|
|
| 553 |
|
|
if (gcj::stack_size > 0 && gcj::stack_size < min_ss)
|
| 554 |
|
|
gcj::stack_size = min_ss;
|
| 555 |
|
|
}
|
| 556 |
|
|
|
| 557 |
|
|
_Jv_Thread_t *
|
| 558 |
|
|
_Jv_ThreadInitData (java::lang::Thread *obj)
|
| 559 |
|
|
{
|
| 560 |
|
|
_Jv_Thread_t *data = (_Jv_Thread_t *) _Jv_Malloc (sizeof (_Jv_Thread_t));
|
| 561 |
|
|
data->flags = 0;
|
| 562 |
|
|
data->thread_obj = obj;
|
| 563 |
|
|
|
| 564 |
|
|
pthread_mutex_init (&data->wait_mutex, NULL);
|
| 565 |
|
|
pthread_cond_init (&data->wait_cond, NULL);
|
| 566 |
|
|
|
| 567 |
|
|
return data;
|
| 568 |
|
|
}
|
| 569 |
|
|
|
| 570 |
|
|
void
|
| 571 |
|
|
_Jv_ThreadDestroyData (_Jv_Thread_t *data)
|
| 572 |
|
|
{
|
| 573 |
|
|
pthread_mutex_destroy (&data->wait_mutex);
|
| 574 |
|
|
pthread_cond_destroy (&data->wait_cond);
|
| 575 |
|
|
_Jv_Free ((void *)data);
|
| 576 |
|
|
}
|
| 577 |
|
|
|
| 578 |
|
|
void
|
| 579 |
|
|
_Jv_ThreadSetPriority (_Jv_Thread_t *data, jint prio)
|
| 580 |
|
|
{
|
| 581 |
|
|
#ifdef _POSIX_THREAD_PRIORITY_SCHEDULING
|
| 582 |
|
|
if (data->flags & FLAG_START)
|
| 583 |
|
|
{
|
| 584 |
|
|
struct sched_param param;
|
| 585 |
|
|
|
| 586 |
|
|
param.sched_priority = prio;
|
| 587 |
|
|
pthread_setschedparam (data->thread, SCHED_OTHER, ¶m);
|
| 588 |
|
|
}
|
| 589 |
|
|
#endif
|
| 590 |
|
|
}
|
| 591 |
|
|
|
| 592 |
|
|
void
|
| 593 |
|
|
_Jv_ThreadRegister (_Jv_Thread_t *data)
|
| 594 |
|
|
{
|
| 595 |
|
|
pthread_setspecific (_Jv_ThreadKey, data->thread_obj);
|
| 596 |
|
|
pthread_setspecific (_Jv_ThreadDataKey, data);
|
| 597 |
|
|
|
| 598 |
|
|
// glibc 2.1.3 doesn't set the value of `thread' until after start_routine
|
| 599 |
|
|
// is called. Since it may need to be accessed from the new thread, work
|
| 600 |
|
|
// around the potential race here by explicitly setting it again.
|
| 601 |
|
|
data->thread = pthread_self ();
|
| 602 |
|
|
|
| 603 |
|
|
# ifdef SLOW_PTHREAD_SELF
|
| 604 |
|
|
// Clear all self cache slots that might be needed by this thread.
|
| 605 |
|
|
int dummy;
|
| 606 |
|
|
int low_index = SC_INDEX(&dummy) + SC_CLEAR_MIN;
|
| 607 |
|
|
int high_index = SC_INDEX(&dummy) + SC_CLEAR_MAX;
|
| 608 |
|
|
for (int i = low_index; i <= high_index; ++i)
|
| 609 |
|
|
{
|
| 610 |
|
|
int current_index = i;
|
| 611 |
|
|
if (current_index < 0)
|
| 612 |
|
|
current_index += SELF_CACHE_SIZE;
|
| 613 |
|
|
if (current_index >= SELF_CACHE_SIZE)
|
| 614 |
|
|
current_index -= SELF_CACHE_SIZE;
|
| 615 |
|
|
_Jv_self_cache[current_index].high_sp_bits = BAD_HIGH_SP_VALUE;
|
| 616 |
|
|
}
|
| 617 |
|
|
# endif
|
| 618 |
|
|
// Block SIGCHLD which is used in natPosixProcess.cc.
|
| 619 |
|
|
_Jv_BlockSigchld();
|
| 620 |
|
|
}
|
| 621 |
|
|
|
| 622 |
|
|
void
|
| 623 |
|
|
_Jv_ThreadUnRegister ()
|
| 624 |
|
|
{
|
| 625 |
|
|
pthread_setspecific (_Jv_ThreadKey, NULL);
|
| 626 |
|
|
pthread_setspecific (_Jv_ThreadDataKey, NULL);
|
| 627 |
|
|
}
|
| 628 |
|
|
|
| 629 |
|
|
// This function is called when a thread is started. We don't arrange
|
| 630 |
|
|
// to call the `run' method directly, because this function must
|
| 631 |
|
|
// return a value.
|
| 632 |
|
|
static void *
|
| 633 |
|
|
really_start (void *x)
|
| 634 |
|
|
{
|
| 635 |
|
|
struct starter *info = (struct starter *) x;
|
| 636 |
|
|
|
| 637 |
|
|
_Jv_ThreadRegister (info->data);
|
| 638 |
|
|
|
| 639 |
|
|
info->method (info->data->thread_obj);
|
| 640 |
|
|
|
| 641 |
|
|
if (! (info->data->flags & FLAG_DAEMON))
|
| 642 |
|
|
{
|
| 643 |
|
|
pthread_mutex_lock (&daemon_mutex);
|
| 644 |
|
|
--non_daemon_count;
|
| 645 |
|
|
if (! non_daemon_count)
|
| 646 |
|
|
pthread_cond_signal (&daemon_cond);
|
| 647 |
|
|
pthread_mutex_unlock (&daemon_mutex);
|
| 648 |
|
|
}
|
| 649 |
|
|
|
| 650 |
|
|
return NULL;
|
| 651 |
|
|
}
|
| 652 |
|
|
|
| 653 |
|
|
void
|
| 654 |
|
|
_Jv_ThreadStart (java::lang::Thread *thread, _Jv_Thread_t *data,
|
| 655 |
|
|
_Jv_ThreadStartFunc *meth)
|
| 656 |
|
|
{
|
| 657 |
|
|
struct sched_param param;
|
| 658 |
|
|
pthread_attr_t attr;
|
| 659 |
|
|
struct starter *info;
|
| 660 |
|
|
|
| 661 |
|
|
if (data->flags & FLAG_START)
|
| 662 |
|
|
return;
|
| 663 |
|
|
data->flags |= FLAG_START;
|
| 664 |
|
|
|
| 665 |
|
|
// Block SIGCHLD which is used in natPosixProcess.cc.
|
| 666 |
|
|
// The current mask is inherited by the child thread.
|
| 667 |
|
|
_Jv_BlockSigchld();
|
| 668 |
|
|
|
| 669 |
|
|
param.sched_priority = thread->getPriority();
|
| 670 |
|
|
|
| 671 |
|
|
pthread_attr_init (&attr);
|
| 672 |
|
|
pthread_attr_setschedparam (&attr, ¶m);
|
| 673 |
|
|
pthread_attr_setdetachstate (&attr, PTHREAD_CREATE_DETACHED);
|
| 674 |
|
|
|
| 675 |
|
|
// Set stack size if -Xss option was given.
|
| 676 |
|
|
if (gcj::stack_size > 0)
|
| 677 |
|
|
{
|
| 678 |
|
|
int e = pthread_attr_setstacksize (&attr, gcj::stack_size);
|
| 679 |
|
|
if (e != 0)
|
| 680 |
|
|
JvFail (strerror (e));
|
| 681 |
|
|
}
|
| 682 |
|
|
|
| 683 |
|
|
info = (struct starter *) _Jv_AllocBytes (sizeof (struct starter));
|
| 684 |
|
|
info->method = meth;
|
| 685 |
|
|
info->data = data;
|
| 686 |
|
|
|
| 687 |
|
|
if (! thread->isDaemon())
|
| 688 |
|
|
{
|
| 689 |
|
|
pthread_mutex_lock (&daemon_mutex);
|
| 690 |
|
|
++non_daemon_count;
|
| 691 |
|
|
pthread_mutex_unlock (&daemon_mutex);
|
| 692 |
|
|
}
|
| 693 |
|
|
else
|
| 694 |
|
|
data->flags |= FLAG_DAEMON;
|
| 695 |
|
|
int r = pthread_create (&data->thread, &attr, really_start, (void *) info);
|
| 696 |
|
|
|
| 697 |
|
|
pthread_attr_destroy (&attr);
|
| 698 |
|
|
|
| 699 |
|
|
if (r)
|
| 700 |
|
|
{
|
| 701 |
|
|
const char* msg = "Cannot create additional threads";
|
| 702 |
|
|
throw new java::lang::OutOfMemoryError (JvNewStringUTF (msg));
|
| 703 |
|
|
}
|
| 704 |
|
|
}
|
| 705 |
|
|
|
| 706 |
|
|
void
|
| 707 |
|
|
_Jv_ThreadWait (void)
|
| 708 |
|
|
{
|
| 709 |
|
|
pthread_mutex_lock (&daemon_mutex);
|
| 710 |
|
|
if (non_daemon_count)
|
| 711 |
|
|
pthread_cond_wait (&daemon_cond, &daemon_mutex);
|
| 712 |
|
|
pthread_mutex_unlock (&daemon_mutex);
|
| 713 |
|
|
}
|
| 714 |
|
|
|
| 715 |
|
|
#if defined(SLOW_PTHREAD_SELF)
|
| 716 |
|
|
|
| 717 |
|
|
#include "sysdep/locks.h"
|
| 718 |
|
|
|
| 719 |
|
|
// Support for pthread_self() lookup cache.
|
| 720 |
|
|
volatile self_cache_entry _Jv_self_cache[SELF_CACHE_SIZE];
|
| 721 |
|
|
|
| 722 |
|
|
_Jv_ThreadId_t
|
| 723 |
|
|
_Jv_ThreadSelf_out_of_line(volatile self_cache_entry *sce, size_t high_sp_bits)
|
| 724 |
|
|
{
|
| 725 |
|
|
pthread_t self = pthread_self();
|
| 726 |
|
|
sce -> high_sp_bits = high_sp_bits;
|
| 727 |
|
|
write_barrier();
|
| 728 |
|
|
sce -> self = self;
|
| 729 |
|
|
return self;
|
| 730 |
|
|
}
|
| 731 |
|
|
|
| 732 |
|
|
#endif /* SLOW_PTHREAD_SELF */
|