eoEsChromInit.h

00001 //
00002 /* (c) Maarten Keijzer 2000, GeNeura Team, 1998 - EEAAX 1999
00003 
00004 This library is free software; you can redistribute it and/or modify it under
00005 the terms of the GNU Lesser General Public License as published by the Free
00006 Software Foundation; either version 2 of the License, or (at your option) any
00007 later version.
00008 
00009 This library is distributed in the hope that it will be useful, but WITHOUT ANY
00010 WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A
00011 PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details.
00012 
00013 You should have received a copy of the GNU Lesser General Public License along
00014 with this library; if not, write to the Free Software Foundation, Inc., 59
00015 Temple Place, Suite 330, Boston, MA 02111-1307 USA
00016 
00017 Contact: http://eodev.sourceforge.net
00018          todos@geneura.ugr.es, http://geneura.ugr.es
00019          Marc.Schoenauer@polytechnique.fr
00020          mak@dhi.dk
00021  */
00022 
00023 
00024 #ifndef _eoEsChromInit_H
00025 #define _eoEsChromInit_H
00026 
00027 #include <cmath>
00028 #include <vector>
00029 
00030 #include <es/eoRealInitBounded.h>
00031 #include <es/eoEsSimple.h>
00032 #include <es/eoEsStdev.h>
00033 #include <es/eoEsFull.h>
00034 
00035 #ifndef M_PI
00036 #define M_PI 3.1415926535897932384626433832795
00037 #endif
00038 
00054 template <class EOT>
00055 class eoEsChromInit : public eoRealInitBounded<EOT>
00056 {
00057 public:
00058 
00059     using eoRealInitBounded<EOT>::size;
00060     using eoRealInitBounded<EOT>::theBounds;
00061 
00062     typedef typename EOT::Fitness FitT;
00063 
00071     eoEsChromInit(eoRealVectorBounds& _bounds, double _sigma = 0.3, bool _to_scale=false)
00072         : eoRealInitBounded<EOT>(_bounds)
00073         {
00074             // a bit of pre-computations, to save time later (even if some are useless)
00075             //
00076             // first, in the case of one unique sigma
00077             // sigma is scaled by the average range (if that means anything!)
00078             if (_to_scale)
00079             {
00080                 double scaleUnique = 0;
00081                 for (unsigned i=0; i<size(); i++)
00082                     scaleUnique += theBounds().range(i);
00083                 scaleUnique /= size();
00084                 uniqueSigma = _sigma * scaleUnique;
00085             }
00086             else
00087                 uniqueSigma = _sigma;
00088             // now the case of a vector of sigmas first allocate space according
00089             // to the size of the bounds (see eoRealInitBounded)
00090             vecSigma.resize(size());
00091             // each sigma is scaled by the range of the corresponding variable
00092             for(unsigned i=0; i<size(); i++)
00093                 if(_to_scale)
00094                     vecSigma[i] = _sigma * theBounds().range(i);
00095                 else
00096                     vecSigma[i] = _sigma;
00097         }
00098 
00099 
00109     eoEsChromInit(eoRealVectorBounds& _bounds, std::vector<double> _vecSigma)
00110         : eoRealInitBounded<EOT>(_bounds), uniqueSigma(_vecSigma[0]), vecSigma(_vecSigma)
00111         {}
00112 
00113 
00114     void operator()(EOT& _eo)
00115         {
00116             eoRealInitBounded<EOT>::operator()(_eo);
00117             create_self_adapt(_eo);
00118             _eo.invalidate();
00119         }
00120 
00121 
00122 private:
00123 
00128     void create_self_adapt(eoReal<FitT>&)
00129         {}
00130 
00131 
00132 
00139     void create_self_adapt(eoEsSimple<FitT>& result)
00140         {
00141             // pre-computed in the Ctor
00142             result.stdev = uniqueSigma;
00143         }
00144 
00145 
00146 
00155     void create_self_adapt(eoEsStdev<FitT>& result)
00156         {
00157             // pre-computed in the constructor
00158             result.stdevs = vecSigma;
00159         }
00160 
00161 
00162 
00169     void create_self_adapt(eoEsFull<FitT>& result)
00170         {
00171             // first the stdevs (pre-computed in the Ctor)
00172             result.stdevs = vecSigma;
00173             unsigned int theSize = size();
00174             // nb of rotation angles: N*(N-1)/2 (in general!)
00175             result.correlations.resize(theSize*(theSize - 1) / 2);
00176             for (unsigned i=0; i<result.correlations.size(); ++i)
00177             {
00178                 // uniform in [-PI, PI)
00179                 result.correlations[i] = rng.uniform(2 * M_PI) - M_PI;
00180             }
00181         }
00182 
00183 
00184 
00186     double uniqueSigma;
00187 
00189     std::vector<double> vecSigma;
00190 };
00191 
00192 #endif
00193 
00194 
00195 
00196 // Local Variables:
00197 // coding: iso-8859-1
00198 // mode:C++
00199 // c-file-style: "Stroustrup"
00200 // comment-column: 35
00201 // fill-column: 80
00202 // End:

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