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/*
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rateclass.cpp - Rate Limiting Implementation
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Copyright (c) 2004 by Tom Linsky <thomas.linsky@cwru.edu>
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Copyright (c) 2004 by Matt Rogers <mattr@kde.org>
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Kopete (c) 2002-2003 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 "rateclass.h"
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#include <tqtimer.h>
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#include <kdebug.h>
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#include "transfer.h"
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using namespace Oscar;
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RateClass::RateClass( TQObject* parent )
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: TQObject( parent, 0 )
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{
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m_waitingToSend = false;
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m_packetTimer.start();
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}
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RateClass::~ RateClass()
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{
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dumpQueue();
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m_members.clear();
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}
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WORD RateClass::id() const
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{
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return m_rateInfo.classId;
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}
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void RateClass::setRateInfo( RateInfo newRateInfo )
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{
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m_rateInfo.classId = newRateInfo.classId;
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m_rateInfo.windowSize = newRateInfo.windowSize;
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m_rateInfo.clearLevel = newRateInfo.clearLevel;
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m_rateInfo.alertLevel = newRateInfo.alertLevel;
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m_rateInfo.limitLevel = newRateInfo.limitLevel;
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m_rateInfo.disconnectLevel = newRateInfo.disconnectLevel;
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m_rateInfo.currentLevel = newRateInfo.currentLevel;
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m_rateInfo.initialLevel = newRateInfo.initialLevel;
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m_rateInfo.maxLevel = newRateInfo.maxLevel;
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m_rateInfo.lastTime = newRateInfo.lastTime;
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m_rateInfo.currentState = newRateInfo.currentState;
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}
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void RateClass::addMember( const SNAC& s )
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{
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addMember( s.family, s.subtype );
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}
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void RateClass::addMember( WORD family, WORD subtype )
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{
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SnacPair snacPair;
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snacPair.family = family;
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snacPair.subtype = subtype;
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m_members.append( snacPair );
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}
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bool RateClass::isMember(const SNAC &s) const
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{
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TQValueList<SnacPair>::const_iterator it;
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TQValueList<SnacPair>::const_iterator spEnd = m_members.constEnd();
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for ( it = m_members.constBegin(); it != spEnd; ++it )
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{
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if ( ( *it ).family == s.family && ( *it ).subtype == s.subtype )
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return true;
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}
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return false;
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}
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bool RateClass::isMember( WORD family, WORD subtype ) const
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{
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TQValueList<SnacPair>::const_iterator it;
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TQValueList<SnacPair>::const_iterator spEnd = m_members.constEnd();
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for ( it = m_members.constBegin(); it != spEnd; ++it )
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{
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if ( ( *it ).family == family && ( *it ).subtype == subtype )
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{
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return true;
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}
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}
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return false;
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}
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void RateClass::enqueue( Transfer* t )
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{
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m_packetQueue.push_back( t );
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/*kdDebug(OSCAR_RAW_DEBUG) << k_funcinfo << "Send queue length is now: "
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<< m_packetQueue.count() << endl;*/
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setupTimer();
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}
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void RateClass::dequeue()
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{
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m_packetQueue.pop_front();
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}
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bool RateClass::queueIsEmpty() const
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{
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return m_packetQueue.isEmpty();
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}
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int RateClass::timeToInitialLevel()
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{
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DWORD newLevel = 0;
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//get time elapsed since the last packet was sent
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int timeDiff = m_packetTimer.elapsed();
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newLevel = calcNewLevel( timeDiff );
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if ( newLevel < m_rateInfo.initialLevel )
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{
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int waitTime = ( m_rateInfo.initialLevel * m_rateInfo.windowSize ) - ( ( m_rateInfo.windowSize - 1 ) * m_rateInfo.currentLevel );
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return waitTime;
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}
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return 0;
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}
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int RateClass::timeToNextSend()
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{
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DWORD newLevel = 0;
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//get time elapsed since the last packet was sent
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int timeDiff = m_packetTimer.elapsed();
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DWORD windowSize = m_rateInfo.windowSize;
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newLevel = calcNewLevel( timeDiff );
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//The maximum level at which we can safely send a packet
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DWORD maxPacket = m_rateInfo.alertLevel + RATE_SAFETY_TIME;
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/*kdDebug(OSCAR_RAW_DEBUG) << k_funcinfo << "Rate Information:"
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<< "\nWindow Size: " << windowSize
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<< "\nWindow Size - 1: " << windowSize - 1
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<< "\nOld Level: " << m_rateInfo.currentLevel
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<< "\nAlert Level: " << m_rateInfo.alertLevel
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<< "\nLimit Level: " << m_rateInfo.limitLevel
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<< "\nDisconnect Level: " << m_rateInfo.disconnectLevel
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<< "\nNew Level: " << newLevel
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<< "\nTime elapsed: " << timeDiff
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<< "\nMax level to send: " << maxPacket << endl; */
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//If we are one packet or less away from being blocked, wait to send
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if ( newLevel < maxPacket || newLevel < m_rateInfo.disconnectLevel )
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{
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int waitTime = ( windowSize * maxPacket ) - ( ( windowSize - 1 ) * m_rateInfo.currentLevel );
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kdDebug(OSCAR_RAW_DEBUG) << "We're sending too fast. Will wait " << waitTime << "ms before sending" << endl;
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return waitTime;
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}
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return 0;
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}
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DWORD RateClass::calcNewLevel( int timeDifference ) const
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{
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//kdDebug(OSCAR_RAW_DEBUG) << k_funcinfo << "Time since last packet: "
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// << timeDifference << endl;
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//Calculate new rate level
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//NewLevel = ( ( Window - 1 ) * OldLevel + TimeDiff )/Window
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//add 1 because we never want to round down or there will be problems
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uint newLevel = ( ( ( m_rateInfo.windowSize - 1 ) * m_rateInfo.currentLevel ) + timeDifference ) / m_rateInfo.windowSize;
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if ( newLevel > m_rateInfo.initialLevel )
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newLevel = m_rateInfo.initialLevel;
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return newLevel;
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}
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void RateClass::setupTimer()
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{
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if ( !m_waitingToSend )
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{
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m_waitingToSend = true;
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int ttns = timeToNextSend();
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if ( ttns <= 0 )
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{
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slotSend(); //send now
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}
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else
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{
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TQTimer::singleShot( ttns, this, TQT_SLOT( slotSend() ) ); //or send later
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}
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}
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}
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void RateClass::slotSend()
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{
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//kdDebug(OSCAR_RAW_DEBUG) << k_funcinfo << endl;
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if ( m_packetQueue.isEmpty() )
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return;
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//send then pop off the list
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emit dataReady( m_packetQueue.first() );
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dequeue();
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updateRateInfo();
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m_waitingToSend = false;
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// check if we still have packets to send
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if ( !m_packetQueue.isEmpty() )
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setupTimer();
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}
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void RateClass::updateRateInfo()
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{
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//Update rate info
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DWORD newLevel = calcNewLevel( m_packetTimer.elapsed() );
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m_rateInfo.currentLevel = newLevel;
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//kdDebug(OSCAR_RAW_DEBUG) << k_funcinfo << "Current Level = " << newLevel << endl;
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//restart the timer
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m_packetTimer.restart();
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}
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void RateClass::dumpQueue()
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{
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TQValueList<Transfer*>::iterator it = m_packetQueue.begin();
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while ( it != m_packetQueue.end() && m_packetQueue.count() > 0 )
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{
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Transfer* t = ( *it );
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it = m_packetQueue.remove( it );
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delete t;
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}
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}
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#include "rateclass.moc"
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//kate: tab-width 4; indent-mode csands;
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