📄 make_pop.h
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// -*- mode: c++; c-indent-level: 4; c++-member-init-indent: 8; comment-column: 35; -*-//-----------------------------------------------------------------------------// make_pop.h// (c) Maarten Keijzer, Marc Schoenauer and GeNeura Team, 2001/* 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 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: todos@geneura.ugr.es, http://geneura.ugr.es Marc.Schoenauer@polytechnique.fr mkeijzer@dhi.dk *///-----------------------------------------------------------------------------#ifndef _make_pop_h#define _make_pop_h#include <ctime> // for time(0) for random seeding#include <eoPop.h>#include <eoInit.h>#include <utils/eoRNG.h>#include <utils/eoParser.h>#include <utils/eoState.h>///////////////////////////////// INIT POP ////////////////////////////////** * Templatized version of parser-based construct of the population * + other initializations that are NOT representation-dependent. * * It must then be instantiated, and compiled on its own for a given EOType * (see e.g. ga.h and ga.pp in dir ga)*/template <class EOT>eoPop<EOT>& do_make_pop(eoParser & _parser, eoState& _state, eoInit<EOT> & _init){ // random seed eoValueParam<uint32_t>& seedParam = _parser.createParam(uint32_t(0), "seed", "Random number seed", 'S'); if (seedParam.value() == 0) seedParam.value() = time(0); eoValueParam<unsigned>& popSize = _parser.createParam(unsigned(20), "popSize", "Population Size", 'P', "Evolution Engine"); // Either load or initialize // create an empty pop and let the state handle the memory eoPop<EOT>& pop = _state.takeOwnership(eoPop<EOT>()); eoValueParam<std::string>& loadNameParam = _parser.createParam(std::string(""), "Load","A save file to restart from",'L', "Persistence" ); eoValueParam<bool> & recomputeFitnessParam = _parser.createParam(false, "recomputeFitness", "Recompute the fitness after re-loading the pop.?", 'r', "Persistence" ); if (loadNameParam.value() != "") // something to load { // create another state for reading eoState inState; // a state for loading - WITHOUT the parser // register the rng and the pop in the state, so they can be loaded, // and the present run will be the exact continuation of the saved run // eventually with different parameters inState.registerObject(pop); inState.registerObject(rng); inState.load(loadNameParam.value()); // load the pop and the rng // the fitness is read in the file: // do only evaluate the pop if the fitness has changed if (recomputeFitnessParam.value()) { for (unsigned i=0; i<pop.size(); i++) pop[i].invalidate(); } if (pop.size() < popSize.value()) std::cerr << "WARNING, only " << pop.size() << " individuals read in file " << loadNameParam.value() << "\nThe remaining " << popSize.value() - pop.size() << " will be randomly drawn" << std::endl; if (pop.size() > popSize.value()) { std::cerr << "WARNING, Load file contained too many individuals. Only the best will be retained" << std::endl; pop.resize(popSize.value()); } } else // nothing loaded from a file { rng.reseed(seedParam.value()); } if (pop.size() < popSize.value()) // missing some guys { // Init pop from the randomizer: need to use the append function pop.append(popSize.value(), _init); } // for future stateSave, register the algorithm into the state _state.registerObject(_parser); _state.registerObject(pop); _state.registerObject(rng); return pop;}#endif
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