mirror of git://gcc.gnu.org/git/gcc.git
				
				
				
			
		
			
				
	
	
		
			334 lines
		
	
	
		
			8.1 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			334 lines
		
	
	
		
			8.1 KiB
		
	
	
	
		
			C++
		
	
	
	
// natThread.cc - Native part of Thread class.
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/* Copyright (C) 1998, 1999, 2000  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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#include <config.h>
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#include <stdlib.h>
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#include <gcj/cni.h>
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#include <jvm.h>
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#include <java-threads.h>
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#include <java/lang/Thread.h>
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#include <java/lang/ThreadGroup.h>
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#include <java/lang/IllegalArgumentException.h>
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#include <java/lang/UnsupportedOperationException.h>
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#include <java/lang/IllegalThreadStateException.h>
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#include <java/lang/InterruptedException.h>
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#include <java/lang/NullPointerException.h>
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#include <jni.h>
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#ifdef ENABLE_JVMPI
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#include <jvmpi.h>
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#endif
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// This structure is used to represent all the data the native side
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// needs.  An object of this type is assigned to the `data' member of
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// the Thread class.
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struct natThread
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{
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  // These are used to interrupt sleep and join calls.  We can share a
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  // condition variable here since it only ever gets notified when the thread
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  // exits.
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  _Jv_Mutex_t join_mutex;
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  _Jv_ConditionVariable_t join_cond;
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  // This is private data for the thread system layer.
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  _Jv_Thread_t *thread;
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  // Each thread has its own JNI object.
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  JNIEnv *jni_env;
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};
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// This is called from the constructor to initialize the native side
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// of the Thread.
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void
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java::lang::Thread::initialize_native (void)
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{
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  // FIXME: this must interact with the GC in some logical way.  At
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  // the very least we must register a finalizer to clean up.  This
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  // isn't easy to do.  If the Thread object resurrects itself in its
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  // own finalizer then we will need to reinitialize this structure at
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  // any "interesting" point.
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  natThread *nt = (natThread *) _Jv_AllocBytes (sizeof (natThread));
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  data = reinterpret_cast<jobject> (nt);
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  _Jv_MutexInit (&nt->join_mutex);
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  _Jv_CondInit (&nt->join_cond);
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  _Jv_ThreadInitData (&nt->thread, this);
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  // FIXME: if JNI_ENV is set we will want to free it.  It is
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  // malloc()d.
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  nt->jni_env = NULL;
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}
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jint
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java::lang::Thread::countStackFrames (void)
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{
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  // NOTE: This is deprecated in JDK 1.2.
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  JvFail ("java::lang::Thread::countStackFrames unimplemented");
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  return 0;
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}
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java::lang::Thread *
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java::lang::Thread::currentThread (void)
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{
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  return _Jv_ThreadCurrent ();
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}
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void
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java::lang::Thread::destroy (void)
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{
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  // NOTE: This is marked as unimplemented in the JDK 1.2
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  // documentation.
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  JvFail ("java::lang::Thread::destroy unimplemented");
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}
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void
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java::lang::Thread::interrupt (void)
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{
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  natThread *nt = (natThread *) data;
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  _Jv_ThreadInterrupt (nt->thread);
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}
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void
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java::lang::Thread::join (jlong millis, jint nanos)
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{
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  if (millis < 0 || nanos < 0 || nanos > 999999)
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    _Jv_Throw (new IllegalArgumentException);
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  Thread *current = currentThread ();
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  // Here `NT' is the native structure for the thread we are trying to join.
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  natThread *nt = (natThread *) data;
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  // Now wait for: (1) an interrupt, (2) the thread to exit, or (3)
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  // the timeout to occur. 
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  _Jv_MutexLock (&nt->join_mutex);
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  if (! isAlive ())
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    {
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      _Jv_MutexUnlock (&nt->join_mutex);
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      return;
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    }
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  _Jv_CondWait (&nt->join_cond, &nt->join_mutex, millis, nanos);
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  _Jv_MutexUnlock (&nt->join_mutex);
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  if (current->isInterrupted (true))
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    _Jv_Throw (new InterruptedException);
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}
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void
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java::lang::Thread::resume (void)
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{
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  checkAccess ();
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  JvFail ("java::lang::Thread::resume unimplemented");
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}
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void
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java::lang::Thread::setPriority (jint newPriority)
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{
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  checkAccess ();
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  if (newPriority < MIN_PRIORITY || newPriority > MAX_PRIORITY)
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    _Jv_Throw (new IllegalArgumentException);
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  jint gmax = group->getMaxPriority();
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  if (newPriority > gmax)
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    newPriority = gmax;
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  priority = newPriority;
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  natThread *nt = (natThread *) data;
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  _Jv_ThreadSetPriority (nt->thread, priority);
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}
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void
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java::lang::Thread::sleep (jlong millis, jint nanos)
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{
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  if (millis < 0 || nanos < 0 || nanos > 999999)
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    _Jv_Throw (new IllegalArgumentException);
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  if (millis == 0 && nanos == 0)
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    ++nanos;
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  Thread *current = currentThread ();
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  // We use a condition variable to implement sleeping so that an
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  // interrupt can wake us up. 
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  natThread *nt = (natThread *) current->data;
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  _Jv_MutexLock (&nt->join_mutex);
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  _Jv_CondWait (&nt->join_cond, &nt->join_mutex, millis, nanos);
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  _Jv_MutexUnlock (&nt->join_mutex);
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  if (current->isInterrupted (true))
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    _Jv_Throw (new InterruptedException);
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}
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void
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java::lang::Thread::finish_ ()
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{
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  natThread *nt = (natThread *) data;
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  group->removeThread (this);
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#ifdef ENABLE_JVMPI  
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  if (_Jv_JVMPI_Notify_THREAD_END)
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    {
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      JVMPI_Event event;
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      event.event_type = JVMPI_EVENT_THREAD_END;
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      event.env_id = _Jv_GetCurrentJNIEnv ();
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      _Jv_DisableGC ();
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      (*_Jv_JVMPI_Notify_THREAD_END) (&event);
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      _Jv_EnableGC ();
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    }
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#endif
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  group = NULL;
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  // Signal any threads that are waiting to join() us.
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  _Jv_MutexLock (&nt->join_mutex);
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  alive_flag = false;
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  _Jv_CondNotifyAll (&nt->join_cond, &nt->join_mutex);
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  _Jv_MutexUnlock (&nt->join_mutex);  
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}
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void
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java::lang::Thread::run_ (jobject obj)
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{
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  java::lang::Thread *thread = (java::lang::Thread *) obj;
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  try
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    {
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#ifdef ENABLE_JVMPI
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      if (_Jv_JVMPI_Notify_THREAD_START)
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	{
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	  JVMPI_Event event;
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	  jstring thread_name = thread->getName ();
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	  jstring group_name = NULL, parent_name = NULL;
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	  java::lang::ThreadGroup *group = thread->getThreadGroup ();
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	  if (group)
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	    {
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	      group_name = group->getName ();
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	      group = group->getParent ();
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	      if (group)
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		parent_name = group->getName ();
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	    }
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	  int thread_len = thread_name ? JvGetStringUTFLength (thread_name) : 0;
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	  int group_len = group_name ? JvGetStringUTFLength (group_name) : 0;
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	  int parent_len = parent_name ? JvGetStringUTFLength (parent_name) : 0;
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	  char thread_chars[thread_len + 1];
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	  char group_chars[group_len + 1];
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	  char parent_chars[parent_len + 1];
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	  if (thread_name)
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	    JvGetStringUTFRegion (thread_name, 0, 
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				  thread_name->length(), thread_chars);
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	  if (group_name)
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	    JvGetStringUTFRegion (group_name, 0, 
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				  group_name->length(), group_chars);
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	  if (parent_name)
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	    JvGetStringUTFRegion (parent_name, 0, 
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				  parent_name->length(), parent_chars);
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	  thread_chars[thread_len] = '\0';
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	  group_chars[group_len] = '\0';
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	  parent_chars[parent_len] = '\0';
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	  event.event_type = JVMPI_EVENT_THREAD_START;
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	  event.env_id = NULL;
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	  event.u.thread_start.thread_name = thread_chars;
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	  event.u.thread_start.group_name = group_chars;
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	  event.u.thread_start.parent_name = parent_chars;
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	  event.u.thread_start.thread_id = (jobjectID) thread;
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	  event.u.thread_start.thread_env_id = _Jv_GetCurrentJNIEnv ();
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	  _Jv_DisableGC ();
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	  (*_Jv_JVMPI_Notify_THREAD_START) (&event);
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	  _Jv_EnableGC ();
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	}
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#endif
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      thread->run ();
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    }
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  catch (java::lang::Throwable *t)
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    {
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      // Uncaught exceptions are forwarded to the ThreadGroup.  If
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      // this results in an uncaught exception, that is ignored.
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      try
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	{
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	  thread->group->uncaughtException (thread, t);
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	}
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      catch (java::lang::Throwable *f)
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	{
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	  // Nothing.
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	}
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    }
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  thread->finish_ ();
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}
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void
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java::lang::Thread::start (void)
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{
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  JvSynchronize sync (this);
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  // Its illegal to re-start() a thread, even if its dead.
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  if (!startable_flag)
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    _Jv_Throw (new IllegalThreadStateException);
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  alive_flag = true;
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  startable_flag = false;
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  natThread *nt = (natThread *) data;
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  _Jv_ThreadStart (this, nt->thread, (_Jv_ThreadStartFunc *) &run_);
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}
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void
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java::lang::Thread::stop (java::lang::Throwable *)
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{
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  _Jv_Throw (new UnsupportedOperationException
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	     (JvNewStringLatin1 ("java::lang::Thread::stop unimplemented")));
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}
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void
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java::lang::Thread::suspend (void)
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{
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  checkAccess ();
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  _Jv_Throw (new UnsupportedOperationException 
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	     (JvNewStringLatin1 ("java::lang::Thread::suspend unimplemented")));
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}
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void
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java::lang::Thread::yield (void)
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{
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  _Jv_ThreadYield ();
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}
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JNIEnv *
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_Jv_GetCurrentJNIEnv ()
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{
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  java::lang::Thread *t = _Jv_ThreadCurrent ();
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  if (t == NULL)
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    return NULL;
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  return ((natThread *) t->data)->jni_env;
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}
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void
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_Jv_SetCurrentJNIEnv (JNIEnv *env)
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{
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  java::lang::Thread *t = _Jv_ThreadCurrent ();
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  JvAssert (t != NULL);
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  ((natThread *) t->data)->jni_env = env;
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}
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