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/*
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sendmessagetask.h - Outgoing OSCAR Messaging Handler
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Copyright (c) 2004 by Matt Rogers <mattr@kde.org>
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Kopete (c) 2002-2004 by the Kopete developers <kopete-devel@kde.org>
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*************************************************************************
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* *
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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 of the License, or *
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* (at your option) any later version. *
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* *
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*************************************************************************
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*/
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#include "sendmessagetask.h"
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#include <kapplication.h>
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#include <kdebug.h>
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#include "connection.h"
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#include "oscartypes.h"
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#include "transfer.h"
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SendMessageTask::SendMessageTask(Task* parent): Task(parent)
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{
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m_autoResponse = false;
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m_cookieCount = 0x7FFF;
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}
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SendMessageTask::~SendMessageTask()
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{
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}
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void SendMessageTask::setMessage( const Oscar::Message& msg )
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{
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m_message = msg;
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}
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void SendMessageTask::setAutoResponse( bool autoResponse )
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{
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m_autoResponse = autoResponse;
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}
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void SendMessageTask::onGo()
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{
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if ( m_message.textArray().isEmpty() && m_message.type() == 1 ) // at least channel 2 needs to send empty messages
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{
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setError(-1, "No message to send");
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return;
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}
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// Check Message to see what SNAC to use
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int snacSubfamily = 0x0006;
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if ( ( m_message.type() == 2 ) && m_message.hasProperty( Oscar::Message::AutoResponse ) )
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{ // an auto response is send for ack of channel 2 messages
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kdDebug(OSCAR_RAW_DEBUG) << k_funcinfo << "Sending SNAC 0x0B instead of 0x06 " << endl;
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snacSubfamily = 0x000B;
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}
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FLAP f = { 0x02, 0, 0 };
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SNAC s = { 0x0004, snacSubfamily, 0x0000, client()->snacSequence() };
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Buffer* b = new Buffer();
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if ( snacSubfamily == 0x0006 )
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{
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DWORD cookie1 = KApplication::random();
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DWORD cookie2 = KApplication::random();
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b->addDWord( cookie1 );
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b->addDWord( cookie2 );
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}
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else
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{
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b->addString( m_message.icbmCookie() ); // in automated response, we need the same cookie as in the request
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}
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b->addWord( m_message.type() );
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b->addByte( m_message.receiver().length() );
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b->addString( m_message.receiver().latin1(), m_message.receiver().length() );
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if ( snacSubfamily == 0x0006 )
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{
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/* send a regular message */
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switch ( m_message.type() )
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{
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case 1:
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addChannel1Data( b );
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break;
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case 2:
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addChannel2Data( b );
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break;
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case 4:
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addChannel4Data( b );
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break;
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}
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// Add the TLV to indicate if this is an autoresponse: 0x00040000
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// Right now, only supported for the AIM client, I'm not sure about ICQ
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// For some reason you can't have both a 0x0004 and 0x0003 TLV in the same
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// SNAC, if you do the AIM server complains
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if ( !client()->isIcq() && (m_autoResponse == true) )
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{
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TLV tlv4( 0x0004, 0, NULL);
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b->addTLV( tlv4 );
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}
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else
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{
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b->addDWord( 0x00030000 ); //empty TLV 3 to get an ack from the server
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}
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if ( client()->isIcq() && m_message.type() != 2 && ! m_message.hasProperty( Oscar::Message::StatusMessageRequest ) )
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b->addDWord( 0x00060000 ); //empty TLV 6 to store message on the server if not online
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}
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else
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{
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/* send an autoresponse */
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b->addWord( 0x0003 ); // reason code: 1: channel not supported; 2: busted payload; 3: channel specific;
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//TODO: i hardcoded it for now, since we don't suppoert error messages atm anyway
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addRendezvousMessageData( b );
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}
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Transfer* t = createTransfer( f, s, b );
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kdDebug(OSCAR_RAW_DEBUG) << k_funcinfo << "SENDING: " << t->toString() << endl;
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send( t );
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setSuccess(true);
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}
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void SendMessageTask::addBasicTLVs( Buffer* b )
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{
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//TODO add stuff like user class, user status, online time, etc TLVS
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}
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void SendMessageTask::addChannel1Data( Buffer* b )
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{
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Buffer tlv2buffer;
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//Send features TLV using data from gaim. Features are different
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//depending on whether we're ICQ or AIM
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if ( client()->isIcq() )
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{
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tlv2buffer.addDWord( 0x05010002 ); //TLV 0x0501, length 2
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tlv2buffer.addWord( 0x0106 ); //TLV 0x0501 data
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}
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else
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{
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tlv2buffer.addDWord( 0x05010004 ); //TLV 0x0501, length 4
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tlv2buffer.addDWord( 0x01010102 ); //TLV 0x0501 data.
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}
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//we only send one message part. There's only one client that actually uses
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//them and it's quite old and infrequently used
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tlv2buffer.addWord( 0x0101 ); //add TLV(0x0101) also known as TLV(257)
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tlv2buffer.addWord( m_message.textArray().size() + 4 ); // add TLV length
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if ( m_message.encoding() == Oscar::Message::UserDefined )
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{
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kdDebug(OSCAR_RAW_DEBUG) << k_funcinfo << "Sending outgoing message in "
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<< "per-contact encoding" << endl;
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tlv2buffer.addWord( 0x0000 );
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tlv2buffer.addWord( 0x0000 );
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}
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else
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{
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kdDebug(OSCAR_RAW_DEBUG) << k_funcinfo << "Sending outgoing message as "
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<< "UCS-2" << endl;
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tlv2buffer.addWord( 0x0002 );
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tlv2buffer.addWord( 0x0000 );
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}
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tlv2buffer.addString( m_message.textArray() );
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TLV tlv2( 0x0002, tlv2buffer.length(), tlv2buffer.buffer() );
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b->addTLV( tlv2 );
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}
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void SendMessageTask::addChannel2Data( Buffer* b )
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{
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kdDebug(OSCAR_RAW_DEBUG) << k_funcinfo << "Trying to send type 2 message!" << endl;
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Buffer tlv5buffer;
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tlv5buffer.addWord( 0 ); // 0 = request; other possibilities: 1 = cancel; 2 = accept;
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//TODO: i hardcoded it for now, don't yet what to use the other stuff for
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// message id cookie. needs to be the same one as above, thus copy first eight bytes of buffer
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Buffer* tmp = new Buffer(b->buffer(), 8);
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tlv5buffer.addString( tmp->buffer(), 8 );
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delete tmp;
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/* send our client capability. oscardocs say this one means we support type 2 messages,
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ethereal say it means we support server relay. however, it's what most clients send,
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even official ones...
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*/
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// too lazy to think about byte order :)
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tlv5buffer.addByte( 0x09 );
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tlv5buffer.addByte( 0x46 );
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tlv5buffer.addByte( 0x13 );
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tlv5buffer.addByte( 0x49 );
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tlv5buffer.addByte( 0x4C );
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tlv5buffer.addByte( 0x7F );
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tlv5buffer.addByte( 0x11 );
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tlv5buffer.addByte( 0xD1 );
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tlv5buffer.addByte( 0x82 );
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tlv5buffer.addByte( 0x22 );
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tlv5buffer.addByte( 0x44 );
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tlv5buffer.addByte( 0x45 );
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tlv5buffer.addByte( 0x53 );
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tlv5buffer.addByte( 0x54 );
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tlv5buffer.addByte( 0x00 );
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tlv5buffer.addByte( 0x00 );
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// These are optional, would probably be a god ide to start using them, though
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// add TLV 03: internal ip
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// tlv5buffer.addWord( 0x0003 ); // TLV Type
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// tlv5buffer.addWord( 0x0004 ); // TLV Length
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// tlv5buffer.addDWord( 0x00000000 ); // TLV Data: Internal IP
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// add TLV 05: listening port
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// tlv5buffer.addWord( 0x0005 ); // TLV Type
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// tlv5buffer.addWord( 0x0002 ); // TLV Length
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// tlv5buffer.addWord( 0x0000 ); // TLV Data: listening port
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// add TLV 0A: acktype (1 = normal message)
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tlv5buffer.addWord( 0x000A ); // TLV Type
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tlv5buffer.addWord( 0x0002 ); // TLV Length
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tlv5buffer.addWord( 0x0001 ); // TLV Data: unknown, usually 1
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// add TLV 0B: unknown
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// tlv5buffer.addWord( 0x000B ); // TLV Type
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// tlv5buffer.addWord( 0x0002 ); // TLV Length
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// tlv5buffer.addWord( 0x0000 ); // TLV Data: unknown
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// add TLV 0F: unknown
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tlv5buffer.addWord( 0x000F ); // TLV Type
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tlv5buffer.addWord( 0x0000 ); // TLV Length
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// TLV Data: empty
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/* now comes the important TLV 0x2711 */
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Buffer tlv2711buffer;
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addRendezvousMessageData( &tlv2711buffer );
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TLV tlv2711( 0x2711, tlv2711buffer.length(), tlv2711buffer.buffer() );
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tlv5buffer.addTLV( tlv2711 );
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TLV tlv5( 0x0005, tlv5buffer.length(), tlv5buffer.buffer() );
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b->addTLV( tlv5 );
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}
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void SendMessageTask::addChannel4Data( Buffer* b )
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{
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//TODO
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}
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void SendMessageTask::addRendezvousMessageData( Buffer* b )
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{
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// first data segment
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b->addLEWord( 0x001B ); // length of this data segment, always 27
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// protocol version
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// miranda,licq use 8, gaim,icq5 use 9, icq2003b uses 10.
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// 9 seems to make things a litle difficult, 10 seems a little more like 8, but still more difficult
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b->addLEWord( 0x0008 ); // so stick with 8 for now :)
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for ( int i = 0; i < 16; i++)
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{
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b->addByte( 0x00 ); // pluginID or all zeros (see oscar docs)
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}
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b->addWord( 0x0000 ); // unknown
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b->addLEDWord( 0x00000003 ); // FIXME client capabilities: not sure, but should be ICQ Server Relay
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b->addByte( 0x0000 ); // unknown
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// channel 2 counter: in auto response, use original message value. s/t else otherwise (most anythig will work)
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int channel2Counter = 0xBEEF; // just some number for now
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if ( m_message.hasProperty( Oscar::Message::AutoResponse ) )
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channel2Counter = m_message.channel2Counter();
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else
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channel2Counter = (m_cookieCount--) & 0x7FFF;
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b->addLEWord( channel2Counter ); // channel 2 counter
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// second data segment
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b->addLEWord( 0x000E ); // length of this data segment, always 14
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b->addLEWord( channel2Counter ); // channel 2 counter
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for ( int i = 0; i < 12; i++)
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{
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b->addByte( 0x00 ); // unknown, usually all zeros
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}
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// actual message data segment
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// Message type
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if ( m_message.messageType() == 0x00 )
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b->addByte( 0x01 );
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else
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b->addByte( m_message.messageType() );
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int messageFlags = 0x00; // Normal
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if ( m_message.hasProperty( Oscar::Message::StatusMessageRequest ) )
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messageFlags = 0x03; // Auto message. required for both requesting and sending status messages
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else if ( m_message.hasProperty( Oscar::Message::AutoResponse ) )
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messageFlags = 0x00; // A regular type 2 msg ack requires 0x00 here...
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b->addByte( messageFlags );
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// status code, priority:
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// common (ICQ) practice seems to be: both 1 when requesting away message, both 0 otherwise
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// miranda sends 256/0 in away message request. it works, but i don't see the point...
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// other then that, don't yet really know what they are for.
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if ( m_message.hasProperty( Oscar::Message::StatusMessageRequest ) && ( ! m_message.hasProperty( Oscar::Message::AutoResponse ) ) )
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{
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b->addLEWord( 0x0001 ); // status (?)
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b->addLEWord( 0x0001 ); // priority (?)
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}
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else
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{
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b->addLEWord( 0x0000 ); // status (?)
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b->addLEWord( 0x0000 ); // priority (?)
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}
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b->addLEWord( m_message.textArray().size() + 1 ); // length of string + zero termination
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b->addString( m_message.textArray() ); // string itself
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b->addByte( 0x00 ); // zero termination
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b->addLEDWord( 0x00000000 ); // foreground
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b->addLEDWord( 0x00FFFFFF ); // foreground
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if ( m_message.encoding() == Oscar::Message::UTF8 )
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{
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b->addLEDWord( 38 );
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b->addString( "{0946134E-4C7F-11D1-8222-444553540000}", 38 );
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}
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}
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/* Old oscarsocket code, which is here for reference in case this doesn't work
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TQTextCodec *codec = 0L;
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WORD charset = 0x0000; // default to ascii
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WORD charsubset = 0x0000;
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int length = message.length();
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unsigned char *utfMessage = 0L;
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codec=TQTextCodec::codecForMib(3); // US-ASCII
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if(codec)
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{
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if(codec->canEncode(message)) // this returns true for some accented western european chars but kopete can't decode on receipt
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{
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//kdDebug(14151) << k_funcinfo << "Going to encode as US-ASCII" << endl;
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// We are forcing kopete to send messages using ISO-8859-1
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// It's a hack and should be reimplemented in a better way
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charset=0x0003;
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codec=TQTextCodec::codecForMib(4);
|
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|
//kdDebug(14151) << k_funcinfo << "Now trying ISO-8859-1" << endl;
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}
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else
|
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{
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|
codec=0L; // we failed encoding it as US-ASCII
|
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|
|
//kdDebug(14151) << k_funcinfo << "Cannot encode as US-ASCII" << endl;
|
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|
}
|
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|
}
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|
// if we couldn't encode it as ascii, and either the client says it can do UTF8, or we have no
|
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|
|
// contact specific encoding set, might as well send it as UTF-16BE as as ISO-8859-1
|
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|
|
if ( !codec && ( contact->hasCap(CAP_UTF8) || !contact->encoding() ) )
|
|
|
|
{
|
|
|
|
// use UTF is peer supports it and encoding as US-ASCII failed
|
|
|
|
length=message.length()*2;
|
|
|
|
utfMessage=new unsigned char[length];
|
|
|
|
for(unsigned int l=0; l<message.length(); l++)
|
|
|
|
{
|
|
|
|
utfMessage[l*2]=message.tqunicode()[l].row();
|
|
|
|
utfMessage[(l*2)+1]=message.tqunicode()[l].cell();
|
|
|
|
}
|
|
|
|
charset=0x0002; // send UTF-16BE
|
|
|
|
}
|
|
|
|
|
|
|
|
// no codec and no charset and per-contact encoding set
|
|
|
|
if(!codec && charset != 0x0002 && contact->encoding() != 0)
|
|
|
|
{
|
|
|
|
codec=TQTextCodec::codecForMib(contact->encoding());
|
|
|
|
if(codec)
|
|
|
|
charset=0x0003; //send as ISO-8859-1
|
|
|
|
}
|
|
|
|
|
|
|
|
if(!codec && charset != 0x0002) // it's neither tqunicode nor did we find a codec so far!
|
|
|
|
{
|
|
|
|
kdDebug(14151) << k_funcinfo <<
|
|
|
|
"Couldn't find suitable encoding for outgoing message, " <<
|
|
|
|
"encoding using ISO-8859-1, prepare for receiver getting unreadable text :)" << endl;
|
|
|
|
charset=0x0003;
|
|
|
|
codec=TQTextCodec::codecForMib(4); // ISO-8859-1
|
|
|
|
}
|
|
|
|
|
|
|
|
tlv2.addWord(0x0101); //add TLV(0x0101) also known as TLV(257)
|
|
|
|
tlv2.addWord(length + 0x04); // add TLV length
|
|
|
|
tlv2.addWord(charset); // normal char set
|
|
|
|
tlv2.addWord(charsubset); // normal char set
|
|
|
|
|
|
|
|
if(utfMessage)
|
|
|
|
{
|
|
|
|
kdDebug(14151) << k_funcinfo << "Outgoing message encoded as 'UTF-16BE'" << endl;
|
|
|
|
tlv2.addString(utfMessage, length); // the actual message
|
|
|
|
delete [] utfMessage;
|
|
|
|
}
|
|
|
|
else
|
|
|
|
{
|
|
|
|
kdDebug(14151) << k_funcinfo << "Outgoing message encoded as '" << codec->name() << "'" << endl;
|
|
|
|
TQCString outgoingMessage=codec->fromUnicode(message);
|
|
|
|
tlv2.addString(outgoingMessage, length); // the actual message
|
|
|
|
}
|
|
|
|
// ====================================================================================
|
|
|
|
|
|
|
|
outbuf.addTLV(0x0002, tlv2.length(), tlv2.buffer());
|
|
|
|
|
|
|
|
if(isAuto) // No clue about this stuff, probably AIM-specific [mETz]
|
|
|
|
{
|
|
|
|
outbuf.addWord(0x0004);
|
|
|
|
outbuf.addWord(0x0000);
|
|
|
|
}
|
|
|
|
|
|
|
|
if(mIsICQ)
|
|
|
|
{
|
|
|
|
//outbuf.addWord(0x0003); // TLV.Type(0x03) - request an ack from server
|
|
|
|
//outbuf.addWord(0x0000);
|
|
|
|
|
|
|
|
outbuf.addWord(0x0006); // TLV.Type(0x06) - store message if recipient offline
|
|
|
|
outbuf.addWord(0x0000);
|
|
|
|
}
|
|
|
|
|
|
|
|
sendBuf(outbuf,0x02);
|
|
|
|
*/
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
//kate: tab-width 4; indent-mode csands;
|