gcc/libjava/java/lang/Thread.java
Bryce McKinlay b834f1fa06 Makefile.in: New #defines and friends for Thread.h.
* Makefile.in: New #defines and friends for Thread.h.
        * posix-threads.cc: (struct starter): Remove `object'.
        (_Jv_CondWait): Use interruptable condition variables and new
        recursive mutexes. New return codes on interrupt or non-ownership
        of mutex.
        (_Jv_CondNotify): Ditto.
        (_Jv_CondNotifyAll): Ditto.
        (_Jv_ThreadInterrupt): Set thread interrupt flag directly. Interrupt
        the target thread by signaling its wait condition.
        (_Jv_ThreadInitData): Set `thread_obj' in the thread data struct,
        not the starter struct. Initialize wait_mutex and wait_cond.
        (_Jv_MutexLock): New recursive mutex implementation. Moved from
        posix-threads.h.
        (_Jv_MutexUnlock): Ditto.
        (really_start): Set info->data->thread from pthread_self() to work
        around a race condition. Destroy wait_mutex and wait_cond when run()
        returns.
        * java/lang/Thread.java: (isInterrupted_): Renamed to overloaded
        `isInterrupted(boolean)'. Clear interrupted flag if clear_flag is
        set.
        startable_flag: New private field.
        (Thread): Initialize `startable_flag'.
        (toString): Check for null thread group.
        * java/lang/natThread.cc: (struct natThread): New fields
        `join_mutex', `join_cond'. Removed fields `joiner', `next'.
        (class locker): Removed.
        (initialize_native): Initialize `join_cond' and `join_mutex'.
        (interrupt): Now just calls _Jv_ThreadInterrupt().
        (join): Simplified. Just wait on the target thread's join condition.
        (finish_): Remove join list code. Unset thread group. Signal
        potential joiners by notifying the dying threads join_cond.
        (start): Check for illegal restarts.
        * java/lang/natObject.cc: Check for return value of _Jv_CondWait and
        act appropriatly.
        * include/posix-threads.h: Remove all HAVE_RECURSIVE_MUTEX related
        #defines and #ifdefs.
        (struct _Jv_Thread_t): New fields `thread_obj', `wait_cond',
        `wait_mutex', `next'.
        (struct _Jv_ConditionVariable_t): Define as a struct instead of
        directly mapping to pthread_cond_t.
        (struct _Jv_Mutex_t): New recursive implementation.
        (_Jv_PthreadCheckMonitor): Reimplemented. Simple `owner' check.
        _Jv_HaveCondDestroy: Never define this for posix-threads.
        (_Jv_CondNotify): Remove inline implementation(s), prototype instead.
        (_Jv_CondNotifyAll): Ditto.
        (_Jv_MutexLock): Ditto.
        (_Jv_MutexUnlock): Ditto.
        (_Jv_MutexInit): Changed to reflect new mutex implementation.
        (_Jv_MutexDestroy): Ditto.
        (_Jv_CondDestroy): Removed.
        (_Jv_PthreadGetMutex): Removed.
        * include/win32-threads.h: (_Jv_CondNotify): Guess _JV_NOT_OWNER on an
        error. Add a FIXME about this.
        (_Jv_CondNotifyAll): Ditto.
        * win32-threads.cc: (_Jv_CondWait): Return 0 on a timeout. Guess
        _JV_NOT_OWNER on other errors. Add FIXME.

From-SVN: r32773
2000-03-28 03:22:24 +01:00

300 lines
6.5 KiB
Java

// Thread.java - Thread class.
/* Copyright (C) 1998, 1999, 2000 Free Software Foundation
This file is part of libgcj.
This software is copyrighted work licensed under the terms of the
Libgcj License. Please consult the file "LIBGCJ_LICENSE" for
details. */
package java.lang;
import gnu.gcj.RawData;
/**
* @author Tom Tromey <tromey@cygnus.com>
* @date August 24, 1998
*/
/* Written using "Java Class Libraries", 2nd edition, ISBN 0-201-31002-3
* "The Java Language Specification", ISBN 0-201-63451-1
* plus online API docs for JDK 1.2 beta from http://www.javasoft.com.
* Status: Complete to version 1.1, with caveats
* Known problems:
* No attempt was made to implement suspend/resume
* (this could be done in some cases)
* Various methods which assume a VM are likewise unimplemented
* We do implement stop() even though it is deprecated.
*/
public class Thread implements Runnable
{
public final static int MAX_PRIORITY = 10;
public final static int MIN_PRIORITY = 1;
public final static int NORM_PRIORITY = 5;
public static int activeCount ()
{
return currentThread().getThreadGroup().activeCount();
}
public void checkAccess ()
{
SecurityManager s = System.getSecurityManager();
if (s != null)
s.checkAccess(this);
}
public native int countStackFrames ();
public static native Thread currentThread ();
public native void destroy ();
public static void dumpStack ()
{
(new Exception ("Stack trace")).printStackTrace ();
}
public static int enumerate (Thread[] threads)
{
return currentThread().group.enumerate(threads);
}
public final String getName ()
{
return name;
}
public final int getPriority ()
{
return priority;
}
public final ThreadGroup getThreadGroup ()
{
return group;
}
public native void interrupt ();
public static boolean interrupted ()
{
return currentThread().isInterrupted (true);
}
// Check the threads interrupted status. Note that this does not clear the
// thread's interrupted status (per JDK 1.2 online API documentation).
public boolean isInterrupted ()
{
return interrupt_flag;
}
public final boolean isAlive ()
{
return alive_flag;
}
public final boolean isDaemon ()
{
return daemon_flag;
}
public final void join () throws InterruptedException
{
join (0, 0);
}
public final void join (long timeout) throws InterruptedException
{
join (timeout, 0);
}
public final native void join (long timeout, int nanos)
throws InterruptedException;
public final native void resume ();
// This method exists only to avoid a warning from the C++ compiler.
private static final native void run_ (Object obj);
private final native void finish_ ();
// Check the thread's interrupted status. If clear_flag is true, the
// thread's interrupted status is also cleared.
private boolean isInterrupted (boolean clear_flag)
{
boolean r = interrupt_flag;
if (clear_flag && r)
{
// Only clear the flag if we saw it as set. Otherwise this could
// potentially cause us to miss an interrupt in a race condition,
// because this method is not synchronized.
interrupt_flag = false;
}
return r;
}
public void run ()
{
if (runnable != null)
runnable.run();
}
public final void setDaemon (boolean status)
{
checkAccess ();
if (isAlive ())
throw new IllegalThreadStateException ();
daemon_flag = status;
}
// TODO12:
// public ClassLoader getContextClassLoader()
// {
// }
// TODO12:
// public void setContextClassLoader(ClassLoader cl)
// {
// }
public final void setName (String n)
{
checkAccess ();
// The Class Libraries book says ``threadName cannot be null''. I
// take this to mean NullPointerException.
if (n == null)
throw new NullPointerException ();
name = n;
}
public final native void setPriority (int newPriority);
public static void sleep (long timeout) throws InterruptedException
{
sleep (timeout, 0);
}
public static native void sleep (long timeout, int nanos)
throws InterruptedException;
public synchronized native void start ();
public final void stop ()
{
// Argument doesn't matter, because this is no longer
// supported.
stop (null);
}
public final synchronized native void stop (Throwable e);
public final native void suspend ();
private final native void initialize_native ();
private final synchronized static String gen_name ()
{
String n;
n = "Thread-" + nextThreadNumber;
++nextThreadNumber;
return n;
}
public Thread (ThreadGroup g, Runnable r, String n)
{
// Note that CURRENT can be null when we are creating the very
// first thread. That's why we check it below.
Thread current = currentThread ();
if (g != null)
{
// If CURRENT is null, then we are creating the first thread.
// In this case we don't do the security check.
if (current != null)
g.checkAccess();
}
else
g = current.getThreadGroup();
// The Class Libraries book says ``threadName cannot be null''. I
// take this to mean NullPointerException.
if (n == null)
throw new NullPointerException ();
name = n;
group = g;
g.add(this);
runnable = r;
data = null;
interrupt_flag = false;
alive_flag = false;
startable_flag = true;
if (current != null)
{
daemon_flag = current.isDaemon();
priority = current.getPriority();
}
else
{
daemon_flag = false;
priority = NORM_PRIORITY;
}
initialize_native ();
}
public Thread ()
{
this (null, null, gen_name ());
}
public Thread (Runnable r)
{
this (null, r, gen_name ());
}
public Thread (String n)
{
this (null, null, n);
}
public Thread (ThreadGroup g, Runnable r)
{
this (g, r, gen_name ());
}
public Thread (ThreadGroup g, String n)
{
this (g, null, n);
}
public Thread (Runnable r, String n)
{
this (null, r, n);
}
public String toString ()
{
return "Thread[" + name + "," + priority + "," +
(group == null ? "" : group.getName()) + "]";
}
public static native void yield ();
// Private data.
private ThreadGroup group;
private String name;
private Runnable runnable;
private int priority;
private boolean daemon_flag;
private boolean interrupt_flag;
private boolean alive_flag;
private boolean startable_flag;
// Our native data.
private RawData data;
// Next thread number to assign.
private static int nextThreadNumber = 0;
}