forked from I2P_Developers/i2p.i2p
This is an I2P port of snark [http://klomp.org/snark], a GPL'ed bittorrent client
The build in tracker has been removed for simplicity.
Example usage:
java -jar lib/i2psnark.jar myFile.torrent
or, a more verbose setting:
java -jar lib/i2psnark.jar --eepproxy 127.0.0.1 4444 \
--i2cp 127.0.0.1 7654 "inbound.length=2 outbound.length=2" \
--debug 6 myFile.torrent
This commit is contained in:
342
apps/i2psnark/java/src/org/klomp/snark/PeerConnectionOut.java
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342
apps/i2psnark/java/src/org/klomp/snark/PeerConnectionOut.java
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@@ -0,0 +1,342 @@
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/* PeerConnectionOut - Keeps a queue of outgoing messages and delivers them.
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Copyright (C) 2003 Mark J. Wielaard
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This file is part of Snark.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2, or (at your option)
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any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software Foundation,
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Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*/
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package org.klomp.snark;
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import java.io.*;
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import java.net.*;
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import java.util.*;
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class PeerConnectionOut implements Runnable
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{
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private final Peer peer;
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private final DataOutputStream dout;
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private Thread thread;
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private boolean quit;
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// Contains Messages.
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private List sendQueue = new ArrayList();
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public PeerConnectionOut(Peer peer, DataOutputStream dout)
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{
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this.peer = peer;
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this.dout = dout;
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quit = false;
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thread = new Thread(this);
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thread.start();
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}
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/**
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* Continuesly monitors for more outgoing messages that have to be send.
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* Stops if quit is true of an IOException occurs.
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*/
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public void run()
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{
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try
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{
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while (!quit)
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{
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Message m = null;
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PeerState state = null;
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synchronized(sendQueue)
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{
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while (!quit && sendQueue.isEmpty())
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{
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try
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{
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// Make sure everything will reach the other side.
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dout.flush();
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// Wait till more data arrives.
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sendQueue.wait();
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}
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catch (InterruptedException ie)
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{
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/* ignored */
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}
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}
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state = peer.state;
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if (!quit && state != null)
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{
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// Piece messages are big. So if there are other
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// (control) messages make sure they are send first.
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// Also remove request messages from the queue if
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// we are currently being choked to prevent them from
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// being send even if we get unchoked a little later.
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// (Since we will resent them anyway in that case.)
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// And remove piece messages if we are choking.
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Iterator it = sendQueue.iterator();
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while (m == null && it.hasNext())
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{
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Message nm = (Message)it.next();
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if (nm.type == Message.PIECE)
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{
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if (state.choking)
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it.remove();
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nm = null;
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}
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else if (nm.type == Message.REQUEST && state.choked)
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{
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it.remove();
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nm = null;
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}
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if (m == null && nm != null)
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{
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m = nm;
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it.remove();
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}
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}
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if (m == null && sendQueue.size() > 0)
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m = (Message)sendQueue.remove(0);
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}
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}
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if (m != null)
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{
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if (Snark.debug >= Snark.ALL)
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Snark.debug("Send " + peer + ": " + m, Snark.ALL);
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m.sendMessage(dout);
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// Remove all piece messages after sending a choke message.
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if (m.type == Message.CHOKE)
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removeMessage(Message.PIECE);
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// XXX - Should also register overhead...
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if (m.type == Message.PIECE)
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state.uploaded(m.len);
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m = null;
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}
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}
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}
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catch (IOException ioe)
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{
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// Ignore, probably other side closed connection.
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}
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catch (Throwable t)
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{
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Snark.debug(peer + ": " + t, Snark.ERROR);
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t.printStackTrace();
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}
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finally
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{
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quit = true;
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peer.disconnect();
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}
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}
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public void disconnect()
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{
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synchronized(sendQueue)
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{
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if (quit == true)
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return;
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quit = true;
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thread.interrupt();
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sendQueue.clear();
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sendQueue.notify();
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}
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}
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/**
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* Adds a message to the sendQueue and notifies the method waiting
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* on the sendQueue to change.
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*/
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private void addMessage(Message m)
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{
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synchronized(sendQueue)
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{
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sendQueue.add(m);
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sendQueue.notify();
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}
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}
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/**
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* Removes a particular message type from the queue.
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*
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* @param type the Message type to remove.
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* @returns true when a message of the given type was removed, false
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* otherwise.
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*/
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private boolean removeMessage(int type)
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{
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boolean removed = false;
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synchronized(sendQueue)
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{
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Iterator it = sendQueue.iterator();
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while (it.hasNext())
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{
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Message m = (Message)it.next();
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if (m.type == type)
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{
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it.remove();
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removed = true;
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}
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}
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}
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return removed;
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}
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void sendAlive()
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{
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Message m = new Message();
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m.type = Message.KEEP_ALIVE;
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addMessage(m);
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}
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void sendChoke(boolean choke)
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{
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// We cancel the (un)choke but keep PIECE messages.
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// PIECE messages are purged if a choke is actually send.
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synchronized(sendQueue)
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{
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int inverseType = choke ? Message.UNCHOKE
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: Message.CHOKE;
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if (!removeMessage(inverseType))
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{
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Message m = new Message();
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if (choke)
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m.type = Message.CHOKE;
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else
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m.type = Message.UNCHOKE;
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addMessage(m);
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}
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}
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}
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void sendInterest(boolean interest)
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{
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synchronized(sendQueue)
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{
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int inverseType = interest ? Message.UNINTERESTED
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: Message.INTERESTED;
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if (!removeMessage(inverseType))
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{
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Message m = new Message();
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if (interest)
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m.type = Message.INTERESTED;
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else
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m.type = Message.UNINTERESTED;
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addMessage(m);
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}
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}
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}
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void sendHave(int piece)
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{
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Message m = new Message();
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m.type = Message.HAVE;
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m.piece = piece;
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addMessage(m);
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}
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void sendBitfield(BitField bitfield)
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{
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Message m = new Message();
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m.type = Message.BITFIELD;
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m.data = bitfield.getFieldBytes();
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m.off = 0;
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m.len = m.data.length;
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addMessage(m);
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}
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void sendRequests(List requests)
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{
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Iterator it = requests.iterator();
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while (it.hasNext())
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{
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Request req = (Request)it.next();
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sendRequest(req);
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}
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}
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void sendRequest(Request req)
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{
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Message m = new Message();
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m.type = Message.REQUEST;
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m.piece = req.piece;
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m.begin = req.off;
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m.length = req.len;
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addMessage(m);
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}
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void sendPiece(int piece, int begin, int length, byte[] bytes)
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{
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Message m = new Message();
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m.type = Message.PIECE;
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m.piece = piece;
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m.begin = begin;
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m.length = length;
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m.data = bytes;
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m.off = begin;
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m.len = length;
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addMessage(m);
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}
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void sendCancel(Request req)
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{
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// See if it is still in our send queue
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synchronized(sendQueue)
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{
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Iterator it = sendQueue.iterator();
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while (it.hasNext())
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{
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Message m = (Message)it.next();
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if (m.type == Message.REQUEST
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&& m.piece == req.piece
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&& m.begin == req.off
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&& m.length == req.len)
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it.remove();
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}
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}
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// Always send, just to be sure it it is really canceled.
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Message m = new Message();
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m.type = Message.CANCEL;
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m.piece = req.piece;
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m.begin = req.off;
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m.length = req.len;
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addMessage(m);
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}
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// Called by the PeerState when the other side doesn't want this
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// request to be handled anymore. Removes any pending Piece Message
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// from out send queue.
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void cancelRequest(int piece, int begin, int length)
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{
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synchronized (sendQueue)
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{
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Iterator it = sendQueue.iterator();
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while (it.hasNext())
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{
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Message m = (Message)it.next();
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if (m.type == Message.PIECE
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&& m.piece == piece
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&& m.begin == begin
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&& m.length == length)
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it.remove();
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}
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}
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}
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}
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Reference in New Issue
Block a user