optimized eoProportional and added universalselect
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2 changed files with 125 additions and 8 deletions
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@ -32,11 +32,13 @@
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#include <utils/eoRNG.h>
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#include <utils/selectors.h>
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#include <eoSelectOne.h>
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#include <eoPop.h>
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//-----------------------------------------------------------------------------
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/** eoProportionalSelect: select an individual proportional to her stored fitness
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value
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Changed the algorithm to make use of a cumulative array of fitness scores,
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This changes the algorithm from O(n) per call to O(log n) per call. (MK)
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*/
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//-----------------------------------------------------------------------------
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@ -44,8 +46,7 @@ template <class EOT> class eoProportionalSelect: public eoSelectOne<EOT>
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{
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public:
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/// Sanity check
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eoProportionalSelect(const eoPop<EOT>& pop = eoPop<EOT>()):
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total((pop.size() == 0) ? -1.0 : sum_fitness(pop))
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eoProportionalSelect(const eoPop<EOT>& pop = eoPop<EOT>())
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{
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if (minimizing_fitness<EOT>())
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throw std::logic_error("eoProportionalSelect: minimizing fitness");
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@ -53,18 +54,32 @@ public:
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void setup(const eoPop<EOT>& _pop)
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{
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total = sum_fitness(_pop);
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if (_pop.size() == 0) return;
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cumulative.resize(_pop.size());
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cumulative[0] = _pop[0].fitness();
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for (unsigned i = 1; i < _pop.size(); ++i)
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{
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cumulative[i] = _pop[i].fitness() + cumulative[i-1];
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}
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}
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/** do the selection, call roulette_wheel.
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/** do the selection,
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*/
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const EOT& operator()(const eoPop<EOT>& _pop)
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{
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return roulette_wheel(_pop, total) ;
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if (cumulative.size() == 0) setup(_pop);
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double fortune = rng.uniform() * cumulative.back();
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typename FitVec::iterator result = std::upper_bound(cumulative.begin(), cumulative.end(), fortune);
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return _pop[result - cumulative.begin()];
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}
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private :
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typename EOT::Fitness total;
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typedef std::vector<typename EOT::Fitness> FitVec;
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FitVec cumulative;
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};
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#endif
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102
eo/src/eoStochasticUniversalSelect.h
Executable file
102
eo/src/eoStochasticUniversalSelect.h
Executable file
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@ -0,0 +1,102 @@
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// -*- mode: c++; c-indent-level: 4; c++-member-init-indent: 8; comment-column: 35; -*-
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//-----------------------------------------------------------------------------
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// eoStochasticUniversalSelect.h
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// (c) Maarten Keijzer 2003
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/*
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2 of the License, or (at your option) any later version.
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This library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with this library; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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Contact: todos@geneura.ugr.es, http://geneura.ugr.es
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Marc.Schoenauer@polytechnique.fr
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mkeijzer@cs.vu.nl
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*/
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//-----------------------------------------------------------------------------
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#ifndef eoStochasticUniversalSelect_h
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#define eoStochasticUniversalSelect_h
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//-----------------------------------------------------------------------------
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#include <utils/eoRNG.h>
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#include <eoSelectOne.h>
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//-----------------------------------------------------------------------------
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/** eoStochasticUniversalSelect: select an individual proportional to her stored fitness
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value, but in contrast with eoStochasticUniversalSelect, get rid of most finite sampling effects
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by doing all selections in one go, using a single random number.
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*/
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//-----------------------------------------------------------------------------
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template <class EOT> class eoStochasticUniversalSelect: public eoSelectOne<EOT>
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{
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public:
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/// Sanity check
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eoStochasticUniversalSelect(const eoPop<EOT>& pop = eoPop<EOT>())
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{
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if (minimizing_fitness<EOT>())
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throw std::logic_error("eoStochasticUniversalSelect: minimizing fitness");
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}
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void setup(const eoPop<EOT>& _pop)
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{
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if (_pop.size() == 0) return;
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std::vector<typename EOT::Fitness> cumulative(_pop.size());
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cumulative[0] = _pop[0].fitness();
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for (unsigned i = 1; i < _pop.size(); ++i)
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{
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cumulative[i] = _pop[i].fitness() + cumulative[i-1];
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}
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indices.reserve(_pop.size());
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indices.resize(0);
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double fortune = rng.uniform() * cumulative.back();
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double step = cumulative.back() / double(_pop.size());
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unsigned i = std::upper_bound(cumulative.begin(), cumulative.end(), fortune) - cumulative.begin();
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while (indices.size() < _pop.size()) {
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while (cumulative[i] < fortune) {i++;} // linear search is good enough as we average one step each time
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indices.push_back(i);
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fortune += step;
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if (fortune >= cumulative.back()) { // start at the beginning
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fortune -= cumulative.back();
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i = 0;
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}
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}
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}
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/** do the selection,
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*/
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const EOT& operator()(const eoPop<EOT>& _pop)
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{
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if (indices.empty()) setup(_pop);
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unsigned index = indices.back();
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indices.pop_back();
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return _pop[index];
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}
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private :
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typedef std::vector<unsigned> IndexVec;
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IndexVec indices;
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};
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#endif
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