📄 modulevectorcomponent.cpp
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/* * Open BEAGLE * Copyright (C) 2001-2005 by Christian Gagne and Marc Parizeau * * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA * * Contact: * Laboratoire de Vision et Systemes Numeriques * Departement de genie electrique et de genie informatique * Universite Laval, Quebec, Canada, G1K 7P4 * http://vision.gel.ulaval.ca * *//*! * \file beagle/GP/src/ModuleVectorComponent.cpp * \brief Implementation of class ModuleVectorComponent. * \author Matthew Walker * \author Christian Gagne * $Revision: 1.6 $ * $Date: 2005/09/30 21:33:13 $ */ #include "beagle/GP.hpp"using namespace Beagle;/*! * \brief Construct module vector GP system component for evolutionary module acquisition. * \param inTreeAlloc Tree allocator used to generate used individuals. */GP::ModuleVectorComponent::ModuleVectorComponent(GP::Tree::Alloc::Handle inTreeAlloc) : Component("ModuleVector"), mModules(inTreeAlloc){ }/*! * \brief Read module vector from XML subtree with a context. * \param inIter XML iterator to read modules from. * \param ioSystem Evolutionary system. */void GP::ModuleVectorComponent::readWithSystem(PACC::XML::ConstIterator inIter, Beagle::System& ioSystem){ Beagle_StackTraceBeginM(); if((inIter->getType()!=PACC::XML::eData) || (inIter->getValue()!="ModuleVector")) throw Beagle_IOExceptionNodeM(*inIter, "tag <ModuleVector> expected!"); GP::Context::Handle lGPContext = castHandleT<GP::Context>(ioSystem.getContextAllocator().allocate()); GP::System& lGPSystem = castObjectT<GP::System&>(ioSystem); lGPContext->setSystemHandle(&lGPSystem); mModules.resize(0); GP::Tree::Alloc::Handle lTreeAlloc = castHandleT<GP::Tree::Alloc>(mModules.getTypeAlloc()); for(PACC::XML::ConstIterator lChild=inIter->getFirstChild(); lChild; ++lChild) { if((lChild->getType()==PACC::XML::eData) && (lChild->getValue()=="Genotype")) { if(lChild->getFirstChild()==NULL) mModules.push_back(NULL); else { mModules.push_back(lTreeAlloc->allocate()); lGPContext->setGenotypeHandle(mModules.back()); lGPContext->setGenotypeIndex(mModules.size()-1); mModules.back()->readWithContext(lChild, *lGPContext); } } } Beagle_StackTraceEndM("void GP::ModuleVectorComponent::readWithSystem(PACC::XML::ConstIterator inIter, Beagle::System& ioSystem)");}/*! * \brief Write modules into XML streamer. * \param ioStreamer XML streamer to write modules into. * \param inIndent Whether XML output should be indented. */void GP::ModuleVectorComponent::write(PACC::XML::Streamer& ioStreamer, bool inIndent) const{ Beagle_StackTraceBeginM(); ioStreamer.openTag("ModuleVector"); for(unsigned int i=0; i<mModules.size(); ++i) { if(mModules[i]==NULL) { ioStreamer.openTag("Genotype", inIndent); ioStreamer.closeTag(); } else mModules[i]->write(ioStreamer, inIndent); } ioStreamer.closeTag(); Beagle_StackTraceEndM("void GP::ModuleVectorComponent::write(PACC::XML::Streamer& ioStreamer, bool inIndent) const");}
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