00001
00002
00003
00004
00005
00006
00007
00008
00009
00010
00011
00012
00013
00014
00015
00016
00017
00018
00019
00020
00021
00022
00023
00024
00025
00026
00027
00028
00029
00030
00031
00032
00033
00034
00035
00036
00037
00038 #ifndef MOEOSELECTORS_H_
00039 #define MOEOSELECTORS_H_
00040
00041 #include <comparator/moeoComparator.h>
00042
00043
00044 template <class It,class MOEOT>
00045 It mo_deterministic_tournament(It _begin, It _end, unsigned int _t_size,moeoComparator<MOEOT>& _comparator ,eoRng& _gen = rng)
00046 {
00047 It best = _begin + _gen.random(_end - _begin);
00048
00049 for (unsigned int i = 0; i < _t_size - 1; ++i)
00050 {
00051 It competitor = _begin + _gen.random(_end - _begin);
00052
00053 if (_comparator(*best, *competitor))
00054
00055 best=competitor;
00056 }
00057 return best;
00058 }
00059
00060
00061 template <class MOEOT>
00062 const MOEOT& mo_deterministic_tournament(const eoPop<MOEOT>& _pop, unsigned int _t_size,moeoComparator<MOEOT>& _comparator, eoRng& _gen = rng)
00063 {
00064 return *mo_deterministic_tournament(_pop.begin(), _pop.end(),_t_size,_comparator, _gen);
00065 }
00066
00067
00068 template <class MOEOT>
00069 MOEOT& mo_deterministic_tournament(eoPop<MOEOT>& _pop, unsigned int _t_size,moeoComparator<MOEOT>& _comparator,eoRng& _gen = rng)
00070 {
00071 return *mo_deterministic_tournament(_pop.begin(), _pop.end(), _t_size,_comparator, _gen);
00072 }
00073
00074
00075 template <class It,class MOEOT>
00076 It mo_stochastic_tournament(It _begin, It _end, double _t_rate,moeoComparator<MOEOT>& _comparator ,eoRng& _gen = rng)
00077 {
00078 It i1 = _begin + _gen.random(_end - _begin);
00079 It i2 = _begin + _gen.random(_end - _begin);
00080
00081 bool return_better = _gen.flip(_t_rate);
00082
00083 if (_comparator(*i1, *i2))
00084 {
00085 if (return_better) return i2;
00086
00087
00088 return i1;
00089 }
00090 else
00091 {
00092 if (return_better) return i1;
00093
00094 }
00095
00096
00097 return i2;
00098 }
00099
00100
00101 template <class MOEOT>
00102 const MOEOT& mo_stochastic_tournament(const eoPop<MOEOT>& _pop, double _t_rate,moeoComparator<MOEOT>& _comparator, eoRng& _gen = rng)
00103 {
00104 return *mo_stochastic_tournament(_pop.begin(), _pop.end(), _t_rate,_comparator, _gen);
00105 }
00106
00107
00108 template <class MOEOT>
00109 MOEOT& mo_stochastic_tournament(eoPop<MOEOT>& _pop, double _t_rate, eoRng& _gen = rng)
00110 {
00111 return *mo_stochastic_tournament(_pop.begin(), _pop.end(), _t_rate, _gen);
00112 }
00113
00114
00115 template <class It>
00116 It mo_roulette_wheel(It _begin, It _end, double total, eoRng& _gen = rng)
00117 {
00118
00119 float roulette = _gen.uniform(total);
00120
00121 if (roulette == 0.0)
00122 return _begin + _gen.random(_end - _begin);
00123
00124 It i = _begin;
00125
00126 while (roulette > 0.0)
00127 {
00128 roulette -= static_cast<double>(*(i++));
00129 }
00130
00131 return --i;
00132 }
00133
00134
00135 template <class MOEOT>
00136 const MOEOT& mo_roulette_wheel(const eoPop<MOEOT>& _pop, double total, eoRng& _gen = rng)
00137 {
00138 float roulette = _gen.uniform(total);
00139
00140 if (roulette == 0.0)
00141 return _pop[_gen.random(_pop.size())];
00142
00143 typename eoPop<MOEOT>::const_iterator i = _pop.begin();
00144
00145 while (roulette > 0.0)
00146 {
00147 roulette -= static_cast<double>((i++)->fitness());
00148 }
00149
00150 return *--i;
00151 }
00152
00153
00154 template <class MOEOT>
00155 MOEOT& mo_roulette_wheel(eoPop<MOEOT>& _pop, double total, eoRng& _gen = rng)
00156 {
00157 float roulette = _gen.uniform(total);
00158
00159 if (roulette == 0.0)
00160 return _pop[_gen.random(_pop.size())];
00161
00162 typename eoPop<MOEOT>::iterator i = _pop.begin();
00163
00164 while (roulette > 0.0)
00165 {
00166
00167 roulette -= static_cast<double>((i++)->fitness());
00168 }
00169
00170 return *--i;
00171 }
00172
00173
00174 #endif
00175
00176
00177
00178
00179
00180
00181
00182
00183