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/*
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smpppdunsettled.cpp
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Copyright (c) 2006 by Heiko Schaefer <heiko@rangun.de>
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Kopete (c) 2002-2006 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; version 2 of the License. *
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* *
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*************************************************************************
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*/
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#include <cstdlib>
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#include <openssl/md5.h>
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#include <tqregexp.h>
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#include <kdebug.h>
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#include <kstreamsocket.h>
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#include "smpppdready.h"
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#include "smpppdunsettled.h"
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using namespace SMPPPD;
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Unsettled * Unsettled::m_instance = NULL;
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Unsettled::Unsettled() {}
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Unsettled::~Unsettled() {}
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Unsettled * Unsettled::instance() {
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if(!m_instance) {
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m_instance = new Unsettled();
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}
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return m_instance;
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}
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bool Unsettled::connect(Client * client, const TQString& server, uint port) {
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if(!socket(client) ||
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socket(client)->state() != KNetwork::KStreamSocket::Connected ||
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socket(client)->state() != KNetwork::KStreamSocket::Connecting) {
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TQString resolvedServer = server;
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changeState(client, Ready::instance());
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disconnect(client);
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// since a lookup on a non-existant host can take a lot of time we
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// try to get the IP of server before and we do the lookup ourself
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KNetwork::KResolver resolver(server);
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resolver.start();
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if(resolver.wait(500)) {
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KNetwork::KResolverResults results = resolver.results();
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if(!results.empty()) {
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TQString ip = results[0].address().asInet().ipAddress().toString();
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kdDebug(14312) << k_funcinfo << "Found IP-Address for " << server << ": " << ip << endl;
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resolvedServer = ip;
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} else {
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kdWarning(14312) << k_funcinfo << "No IP-Address found for " << server << endl;
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return false;
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}
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} else {
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kdWarning(14312) << k_funcinfo << "Looking up hostname timed out, consider to use IP or correct host" << endl;
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return false;
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}
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setSocket(client, new KNetwork::KStreamSocket(resolvedServer, TQString::number(port)));
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socket(client)->setBlocking(TRUE);
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if(!socket(client)->connect()) {
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kdDebug(14312) << k_funcinfo << "Socket Error: " << KNetwork::KStreamSocket::errorString(socket(client)->error()) << endl;
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} else {
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kdDebug(14312) << k_funcinfo << "Successfully connected to smpppd \"" << server << ":" << port << "\"" << endl;
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static TQString verRex = "^SuSE Meta pppd \\(smpppd\\), Version (.*)$";
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static TQString clgRex = "^challenge = (.*)$";
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TQRegExp ver(verRex);
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TQRegExp clg(clgRex);
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TQString response = read(client)[0];
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if(response != TQString() &&
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ver.exactMatch(response)) {
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setServerID(client, response);
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setServerVersion(client, ver.cap(1));
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changeState(client, Ready::instance());
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return true;
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} else if(response != TQString() &&
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clg.exactMatch(response)) {
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if(password(client) != TQString()) {
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// we are challenged, ok, respond
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write(client, TQString("response = %1\n").tqarg(make_response(clg.cap(1).stripWhiteSpace(), password(client))).latin1());
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response = read(client)[0];
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if(ver.exactMatch(response)) {
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setServerID(client, response);
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setServerVersion(client, ver.cap(1));
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return true;
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} else {
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kdWarning(14312) << k_funcinfo << "SMPPPD responded: " << response << endl;
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changeState(client, Ready::instance());
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disconnect(client);
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}
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} else {
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kdWarning(14312) << k_funcinfo << "SMPPPD requested a challenge, but no password was supplied!" << endl;
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changeState(client, Ready::instance());
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disconnect(client);
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}
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}
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}
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}
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return false;
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}
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TQString Unsettled::make_response(const TQString& chex, const TQString& password) const {
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int size = chex.length ();
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if (size & 1)
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return "error";
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size >>= 1;
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// convert challenge from hex to bin
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TQString cbin;
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for (int i = 0; i < size; i++) {
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TQString tmp = chex.mid (2 * i, 2);
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cbin.append ((char) strtol (tmp.ascii (), 0, 16));
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}
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// calculate response
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unsigned char rbin[MD5_DIGEST_LENGTH];
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MD5state_st md5;
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MD5_Init (&md5);
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MD5_Update (&md5, cbin.ascii (), size);
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MD5_Update (&md5, password.ascii(), password.length ());
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MD5_Final (rbin, &md5);
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// convert response from bin to hex
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TQString rhex;
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for (int i = 0; i < MD5_DIGEST_LENGTH; i++) {
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char buffer[3];
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snprintf (buffer, 3, "%02x", rbin[i]);
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rhex.append (buffer);
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}
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return rhex;
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}
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