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/***************************************************************************
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* Copyright (C) 2005 by David Saxton *
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* david@bluehaze.org *
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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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#include "pin.h"
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#include <assert.h>
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#include <kdebug.h>
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Pin::Pin( ECNode * parent )
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{
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assert(parent);
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m_pECNode = parent;
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m_voltage = 0.;
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m_current = 0.;
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m_eqId = -2;
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m_bCurrentIsKnown = false;
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m_groundType = Pin::gt_never;
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}
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Pin::~Pin()
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{
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WireList::iterator end = m_inputWireList.end();
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for ( WireList::iterator it = m_inputWireList.begin(); it != end; ++it )
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delete *it;
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end = m_outputWireList.end();
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for ( WireList::iterator it = m_outputWireList.begin(); it != end; ++it )
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delete *it;
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}
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PinList Pin::localConnectedPins( ) const
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{
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// kdDebug() << k_funcinfo << "Input wires: "<<m_inputWireList.size()<<" Output wires: " << m_outputWireList.size() << " Switch connected: " << m_switchConnectedPins.size() << endl;
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PinList pins;
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WireList::const_iterator end = m_inputWireList.end();
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for ( WireList::const_iterator it = m_inputWireList.begin(); it != end; ++it )
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{
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if (*it)
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pins << (*it)->startPin();
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}
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end = m_outputWireList.end();
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for ( WireList::const_iterator it = m_outputWireList.begin(); it != end; ++it )
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{
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if (*it)
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pins << (*it)->endPin();
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}
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pins += m_switchConnectedPins;
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return pins;
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}
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void Pin::setSwitchConnected( Pin * pin, bool isConnected )
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{
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if (!pin)
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return;
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if (isConnected)
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{
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if ( !m_switchConnectedPins.contains(pin) )
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m_switchConnectedPins.append(pin);
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}
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else
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m_switchConnectedPins.remove(pin);
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}
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void Pin::addCircuitDependentPin( Pin * pin )
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{
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if ( pin && !m_circuitDependentPins.contains(pin) )
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m_circuitDependentPins.append(pin);
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}
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void Pin::addGroundDependentPin( Pin * pin )
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{
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if ( pin && !m_groundDependentPins.contains(pin) )
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m_groundDependentPins.append(pin);
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}
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void Pin::removeDependentPins()
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{
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m_circuitDependentPins.clear();
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m_groundDependentPins.clear();
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}
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void Pin::addElement( Element * e )
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{
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if ( !e || m_elementList.contains(e) )
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return;
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m_elementList.append(e);
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}
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void Pin::removeElement( Element * e )
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{
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m_elementList.remove(e);
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}
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void Pin::addSwitch( Switch * sw )
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{
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if ( !sw || m_switchList.contains( sw ) )
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return;
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m_switchList << sw;
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}
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void Pin::removeSwitch( Switch * sw )
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{
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m_switchList.remove( sw );
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}
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void Pin::addInputWire( Wire * wire )
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{
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if ( wire && !m_inputWireList.contains(wire) )
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m_inputWireList << wire;
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}
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void Pin::addOutputWire( Wire * wire )
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{
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if ( wire && !m_outputWireList.contains(wire) )
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m_outputWireList << wire;
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}
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bool Pin::calculateCurrentFromWires()
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{
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m_inputWireList.remove( (Wire*)0l );
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m_outputWireList.remove( (Wire*)0l );
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const WireList inputs = m_inputWireList;
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const WireList outputs = m_outputWireList;
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m_current = 0.0;
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WireList::const_iterator end = inputs.end();
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for ( WireList::const_iterator it = inputs.begin(); it != end; ++it )
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{
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if ( !(*it)->currentIsKnown() )
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return false;
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m_current -= (*it)->current();
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}
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end = outputs.end();
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for ( WireList::const_iterator it = outputs.begin(); it != end; ++it )
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{
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if ( !(*it)->currentIsKnown() )
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return false;
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m_current += (*it)->current();
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}
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m_bCurrentIsKnown = true;
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return true;
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}
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