Ajout d'une random walk
git-svn-id: svn://scm.gforge.inria.fr/svnroot/paradiseo@1670 331e1502-861f-0410-8da2-ba01fb791d7f
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165
branches/newMo/src/explorer/moRandomWalkExplorer.h
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branches/newMo/src/explorer/moRandomWalkExplorer.h
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/*
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<moRandomWalkExplorer.h>
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Copyright (C) DOLPHIN Project-Team, INRIA Lille - Nord Europe, 2006-2010
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Sébastien Verel, Arnaud Liefooghe, Jérémie Humeau
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This software is governed by the CeCILL license under French law and
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abiding by the rules of distribution of free software. You can use,
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modify and/ or redistribute the software under the terms of the CeCILL
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license as circulated by CEA, CNRS and INRIA at the following URL
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"http://www.cecill.info".
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As a counterpart to the access to the source code and rights to copy,
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modify and redistribute granted by the license, users are provided only
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with a limited warranty and the software's author, the holder of the
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economic rights, and the successive licensors have only limited liability.
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In this respect, the user's attention is drawn to the risks associated
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with loading, using, modifying and/or developing or reproducing the
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software by the user in light of its specific status of free software,
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that may mean that it is complicated to manipulate, and that also
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therefore means that it is reserved for developers and experienced
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professionals having in-depth computer knowledge. Users are therefore
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encouraged to load and test the software's suitability as regards their
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requirements in conditions enabling the security of their systems and/or
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data to be ensured and, more generally, to use and operate it in the
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same conditions as regards security.
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The fact that you are presently reading this means that you have had
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knowledge of the CeCILL license and that you accept its terms.
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ParadisEO WebSite : http://paradiseo.gforge.inria.fr
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Contact: paradiseo-help@lists.gforge.inria.fr
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*/
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#ifndef _moRandomWalkexplorer_h
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#define _moRandomWalkexplorer_h
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#include <explorer/moNeighborhoodExplorer.h>
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#include <comparator/moNeighborComparator.h>
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#include <comparator/moSolNeighborComparator.h>
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/**
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* Explorer for a first imporvement heuristic
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*/
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template< class Neighborhood >
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class moRandomWalkExplorer : public moNeighborhoodExplorer<Neighborhood>
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{
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public:
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typedef typename Neighborhood::EOT EOT ;
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typedef typename Neighborhood::Neighbor Neighbor ;
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using moNeighborhoodExplorer<Neighborhood>::neighborhood;
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using moNeighborhoodExplorer<Neighborhood>::eval;
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/**
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* Constructor
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* @param _neighborhood the neighborhood
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* @param _eval the evaluation function
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* @param _comparator a neighbor comparator
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*/
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moRandomWalkExplorer(Neighborhood& _neighborhood, moEval<Neighbor>& _eval, unsigned _nbStep) : moNeighborhoodExplorer<Neighborhood>(_neighborhood, _eval), nbStep(_nbStep) {
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isAccept = false;
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current=new Neighbor();
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// number of step done
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step = 0;
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}
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/**
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* Destructor
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*/
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~moRandomWalkExplorer(){
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delete current;
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}
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/**
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* initialization of the number of step to be done
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*/
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virtual void initParam(EOT & solution){
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step = 0;
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isAccept = true;
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};
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/**
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* increase the number of step
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*/
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virtual void updateParam(EOT & solution){
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step++;
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};
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/**
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* terminate: NOTHING TO DO
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*/
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virtual void terminate(EOT & solution){};
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/**
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* Explore the neighborhood with only one random solution
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* @param _solution
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*/
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virtual void operator()(EOT & _solution){
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//est qu'on peut initializer
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//Test if _solution has a Neighbor
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if(neighborhood.hasNeighbor(_solution)){
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//init the first neighbor
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neighborhood.init(_solution, (*current));
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//eval the _solution moved with the neighbor and stock the result in the neighbor
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eval(_solution, (*current));
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isAccept = true;
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}
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else{
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//if _solution hasn't neighbor,
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isAccept=false;
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}
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};
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/**
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* continue if there is a neighbor and it is remainds some steps to do
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* @param _solution the solution
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* @return true there is some steps to do
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*/
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virtual bool isContinue(EOT & _solution) {
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return (step < nbStep) && isAccept ;
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};
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/**
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* move the solution with the best neighbor
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* @param _solution the solution to move
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*/
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virtual void move(EOT & _solution) {
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//move the solution
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(*current).move(_solution);
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//update its fitness
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_solution.fitness((*current).fitness());
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};
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/**
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* accept test if an amelirated neighbor was be found
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* @param _solution the solution
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* @return true if the best neighbor ameliorate the fitness
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*/
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virtual bool accept(EOT & _solution) {
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if(neighborhood.hasNeighbor(_solution)){
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isAccept = true ;
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}
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return isAccept;
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};
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private:
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// current number of step
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unsigned int step;
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// maximum number of steps to do
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unsigned int nbStep;
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//Pointer on the best and the current neighbor
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Neighbor* current;
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// true if the move is accepted
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bool isAccept ;
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};
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#endif
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@ -6,8 +6,10 @@ LINK_DIRECTORIES(${PARADISEO_EO_BIN_DIR}/lib)
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ADD_EXECUTABLE(testSimpleHC testSimpleHC.cpp)
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ADD_EXECUTABLE(testSimpleHC testSimpleHC.cpp)
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ADD_EXECUTABLE(testFirstImpr testFirstImpr.cpp)
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ADD_EXECUTABLE(testFirstImpr testFirstImpr.cpp)
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ADD_EXECUTABLE(testRandomWalk testRandomWalk.cpp)
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#ADD_EXECUTABLE(testWithMove testWithMove.cpp)
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#ADD_EXECUTABLE(testWithMove testWithMove.cpp)
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TARGET_LINK_LIBRARIES(testSimpleHC eoutils ga eo)
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TARGET_LINK_LIBRARIES(testSimpleHC eoutils ga eo)
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TARGET_LINK_LIBRARIES(testFirstImpr eoutils ga eo)
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TARGET_LINK_LIBRARIES(testFirstImpr eoutils ga eo)
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TARGET_LINK_LIBRARIES(testRandomWalk eoutils ga eo)
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#TARGET_LINK_LIBRARIES(testWithMove eoutils ga eo)
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#TARGET_LINK_LIBRARIES(testWithMove eoutils ga eo)
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branches/newMo/tutorial/oneMax/application/testRandomWalk.cpp
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branches/newMo/tutorial/oneMax/application/testRandomWalk.cpp
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//-----------------------------------------------------------------------------
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/** testRandomWalk.cpp
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*
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* SV - 22/01/10
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*
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*/
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//-----------------------------------------------------------------------------
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// standard includes
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#define HAVE_SSTREAM
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#include <stdexcept> // runtime_error
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#include <iostream> // cout
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#include <sstream> // ostrstream, istrstream
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#include <fstream>
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#include <string.h>
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// the general include for eo
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#include <eo>
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#include <ga.h>
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using namespace std;
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//-----------------------------------------------------------------------------
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// fitness function
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#include <funcOneMax.h>
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#include <eoInt.h>
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#include <neighborhood/moRndWithReplNeighborhood.h>
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#include <oneMaxBitNeighbor.h>
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#include <eval/moFullEvalByModif.h>
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#include <eval/moFullEvalByCopy.h>
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#include <continuator/moTrueContinuator.h>
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#include <algo/moLocalSearch.h>
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#include <explorer/moRandomWalkExplorer.h>
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// REPRESENTATION
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//-----------------------------------------------------------------------------
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typedef eoBit<unsigned> Indi;
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typedef moBitNeighbor<unsigned int> Neighbor ; // incremental evaluation
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typedef moRndWithReplNeighborhood<Neighbor> Neighborhood ;
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void main_function(int argc, char **argv)
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{
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/* =========================================================
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*
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* Parameters
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*
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* ========================================================= */
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// First define a parser from the command-line arguments
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eoParser parser(argc, argv);
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// For each parameter, define Parameter, read it through the parser,
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// and assign the value to the variable
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eoValueParam<uint32_t> seedParam(time(0), "seed", "Random number seed", 'S');
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parser.processParam( seedParam );
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unsigned seed = seedParam.value();
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// description of genotype
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eoValueParam<unsigned int> vecSizeParam(8, "vecSize", "Genotype size", 'V');
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parser.processParam( vecSizeParam, "Representation" );
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unsigned vecSize = vecSizeParam.value();
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eoValueParam<unsigned int> stepParam(10, "nbStep", "Number of steps of the random walk", 'n');
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parser.processParam( stepParam, "Representation" );
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unsigned nbStep = stepParam.value();
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// the name of the "status" file where all actual parameter values will be saved
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string str_status = parser.ProgramName() + ".status"; // default value
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eoValueParam<string> statusParam(str_status.c_str(), "status", "Status file");
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parser.processParam( statusParam, "Persistence" );
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// do the following AFTER ALL PARAMETERS HAVE BEEN PROCESSED
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// i.e. in case you need parameters somewhere else, postpone these
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if (parser.userNeedsHelp()){
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parser.printHelp(cout);
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exit(1);
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}
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if (statusParam.value() != ""){
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ofstream os(statusParam.value().c_str());
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os << parser;// and you can use that file as parameter file
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}
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/* =========================================================
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*
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* Random seed
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*
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* ========================================================= */
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//reproducible random seed: if you don't change SEED above,
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// you'll aways get the same result, NOT a random run
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rng.reseed(seed);
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/* =========================================================
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*
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* Eval fitness function
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*
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* ========================================================= */
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FuncOneMax<Indi> eval(vecSize);
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/* =========================================================
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*
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* Initilisation of the solution
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*
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* ========================================================= */
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// a Indi random initializer
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eoUniformGenerator<bool> uGen;
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eoInitFixedLength<Indi> random(vecSize, uGen);
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/* =========================================================
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*
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* evaluation of a neighbor solution
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*
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* ========================================================= */
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moFullEvalByModif<Neighbor> fulleval(eval);
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//An eval by copy can be used instead of the eval by modif
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//moFullEvalByCopy<Neighbor> fulleval(eval);
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/* =========================================================
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*
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* the neighborhood of a solution
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*
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* ========================================================= */
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Neighborhood neighborhood(vecSize);
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/* =========================================================
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*
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* a neighborhood explorer solution
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*
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* ========================================================= */
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moRandomWalkExplorer<Neighborhood> explorer(neighborhood, fulleval, nbStep);
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/* =========================================================
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*
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* the local search algorithm
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*
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* ========================================================= */
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moTrueContinuator<Neighborhood> continuator;//always continue
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moLocalSearch< moRandomWalkExplorer<Neighborhood>, moTrueContinuator<Neighborhood> > localSearch(explorer, continuator, eval);
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/* =========================================================
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*
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* execute the local search from random sollution
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*
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* ========================================================= */
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Indi solution;
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random(solution);
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//Can be eval here, else it will be done at the beginning of the localSearch
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//eval(solution);
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std::cout << "initial: " << solution << std::endl ;
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localSearch(solution);
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std::cout << "final: " << solution << std::endl ;
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}
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// A main that catches the exceptions
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int main(int argc, char **argv)
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{
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try{
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main_function(argc, argv);
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}
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catch(exception& e){
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cout << "Exception: " << e.what() << '\n';
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}
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return 1;
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}
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