public synchronized void start(boolean loop) {
   if (DEBUG || Printer.debug) Printer.debug("> DataPusher.start(loop=" + loop + ")");
   try {
     if (threadState == STATE_STOPPING) {
       // wait that the thread has finished stopping
       if (DEBUG || Printer.trace) Printer.trace("DataPusher.start(): calling stop()");
       stop();
     }
     looping = loop;
     newPos = 0;
     wantedState = STATE_PLAYING;
     if (!source.isOpen()) {
       if (DEBUG || Printer.trace) Printer.trace("DataPusher: source.open()");
       source.open(format);
     }
     if (DEBUG || Printer.trace) Printer.trace("DataPusher: source.flush()");
     source.flush();
     if (DEBUG || Printer.trace) Printer.trace("DataPusher: source.start()");
     source.start();
     if (pushThread == null) {
       if (DEBUG || Printer.debug) Printer.debug("DataPusher.start(): Starting push");
       pushThread =
           JSSecurityManager.createThread(
               this, null, // name
               false, // daemon
               -1, // priority
               true); // doStart
     }
     notifyAll();
   } catch (Exception e) {
     if (DEBUG || Printer.err) e.printStackTrace();
   }
   if (DEBUG || Printer.debug) Printer.debug("< DataPusher.start(loop=" + loop + ")");
 }
Esempio n. 2
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  public void deactivate() {
    active = false;
    microphone.stop();
    microphone.flush();

    speaker.stop();
    speaker.flush();
  }
Esempio n. 3
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 @Override
 public void onInactive() {
   if (audioLine != null) {
     audioLine.flush();
     audioLine.close();
     audioLine = null;
   }
 }
Esempio n. 4
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 public void activate() {
   active = true;
   microphone.flush();
   speaker.flush();
   speaker.start();
   blocker.release();
   microphone.start();
   microphone.flush();
 }
  public synchronized void stop() {
    if (DEBUG || Printer.debug) Printer.debug("> DataPusher.stop()");
    if (threadState == STATE_STOPPING || threadState == STATE_STOPPED || pushThread == null) {
      if (DEBUG || Printer.debug) Printer.debug("DataPusher.stop(): nothing to do");
      return;
    }
    if (DEBUG || Printer.debug) Printer.debug("DataPusher.stop(): Stopping push");

    wantedState = STATE_WAITING;
    if (source != null) {
      if (DEBUG || Printer.trace) Printer.trace("DataPusher: source.flush()");
      source.flush();
    }
    notifyAll();
    int maxWaitCount = 50; // 5 seconds
    while ((maxWaitCount-- >= 0) && (threadState == STATE_PLAYING)) {
      try {
        wait(100);
      } catch (InterruptedException e) {
      }
    }
    if (DEBUG || Printer.debug) Printer.debug("< DataPusher.stop()");
  }
 /** Write data to the source data line. */
 public void run() {
   byte[] buffer = null;
   boolean useStream = (ais != null);
   if (useStream) {
     buffer = new byte[BUFFER_SIZE];
   } else {
     buffer = audioData;
   }
   while (wantedState != STATE_STOPPING) {
     // try {
     if (wantedState == STATE_WAITING) {
       // wait for 5 seconds - maybe the clip is to be played again
       if (DEBUG || Printer.debug) Printer.debug("DataPusher.run(): waiting 5 seconds");
       try {
         synchronized (this) {
           threadState = STATE_WAITING;
           wantedState = STATE_STOPPING;
           wait(AUTO_CLOSE_TIME);
         }
       } catch (InterruptedException ie) {
       }
       if (DEBUG || Printer.debug) Printer.debug("DataPusher.run(): waiting finished");
       continue;
     }
     if (newPos >= 0) {
       pos = newPos;
       newPos = -1;
     }
     threadState = STATE_PLAYING;
     int toWrite = BUFFER_SIZE;
     if (useStream) {
       try {
         pos = 0; // always write from beginning of buffer
         // don't use read(byte[]), because some streams
         // may not override that method
         toWrite = ais.read(buffer, 0, buffer.length);
       } catch (java.io.IOException ioe) {
         // end of stream
         toWrite = -1;
       }
     } else {
       if (toWrite > audioDataByteLength - pos) {
         toWrite = audioDataByteLength - pos;
       }
       if (toWrite == 0) {
         toWrite = -1; // end of "stream"
       }
     }
     if (toWrite < 0) {
       if (DEBUG || Printer.debug) Printer.debug("DataPusher.run(): Found end of stream");
       if (!useStream && looping) {
         if (DEBUG || Printer.debug) Printer.debug("DataPusher.run(): setting pos back to 0");
         pos = 0;
         continue;
       }
       if (DEBUG || Printer.debug) Printer.debug("DataPusher.run(): calling drain()");
       wantedState = STATE_WAITING;
       source.drain();
       continue;
     }
     if (DEBUG || Printer.debug)
       Printer.debug("> DataPusher.run(): Writing " + toWrite + " bytes");
     int bytesWritten = source.write(buffer, pos, toWrite);
     pos += bytesWritten;
     if (DEBUG || Printer.debug)
       Printer.debug("< DataPusher.run(): Wrote " + bytesWritten + " bytes");
   }
   threadState = STATE_STOPPING;
   if (DEBUG || Printer.debug) Printer.debug("DataPusher: closing device");
   if (Printer.trace) Printer.trace("DataPusher: source.flush()");
   source.flush();
   if (DEBUG || Printer.trace) Printer.trace("DataPusher: source.stop()");
   source.stop();
   if (DEBUG || Printer.trace) Printer.trace("DataPusher: source.flush()");
   source.flush();
   if (DEBUG || Printer.trace) Printer.trace("DataPusher: source.close()");
   source.close();
   threadState = STATE_STOPPED;
   synchronized (this) {
     pushThread = null;
     notifyAll();
   }
   if (DEBUG || Printer.debug) Printer.debug("DataPusher:end of thread");
 }
Esempio n. 7
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 @Override
 public void onAudioFlush() {
   if (audioLine != null) audioLine.flush();
 }