peo: lessons 1,2 and 3 modified
git-svn-id: svn://scm.gforge.inria.fr/svnroot/paradiseo@999 331e1502-861f-0410-8da2-ba01fb791d7f
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8 changed files with 123 additions and 79 deletions
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@ -1,7 +1,7 @@
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/*
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* <main.cpp>
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* Copyright (C) DOLPHIN Project-Team, INRIA Futurs, 2006-2007
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* (C) OPAC Team, INRIA, 2007
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* Copyright (C) DOLPHIN Project-Team, INRIA Futurs, 2006-2008
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* (C) OPAC Team, INRIA, 2008
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*
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* Clive Canape
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*
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@ -52,18 +52,17 @@ int main (int __argc, char *__argv[])
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{
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peo :: init( __argc, __argv );
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const unsigned int VEC_SIZE = 2;
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const unsigned int POP_SIZE = 20;
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const unsigned int MAX_GEN = 300;
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const double INIT_POSITION_MIN = -2.0;
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const double INIT_POSITION_MAX = 2.0;
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const float CROSS_RATE = 0.8;
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const double EPSILON = 0.01;
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const float MUT_RATE = 0.3;
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// MIG_FREQ define the frequency of the migration.
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const unsigned int MIG_FREQ = 10;
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// MIG_SIZE define the size of each migration.
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const unsigned int MIG_SIZE = 5;
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eoParser parser(__argc, __argv);
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unsigned int POP_SIZE = parser.createParam((unsigned int)(20), "popSize", "Population size",'P',"Param").value();
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unsigned int MAX_GEN = parser.createParam((unsigned int)(100), "maxGen", "Maximum number of generations",'G',"Param").value();
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double EPSILON = parser.createParam(0.01, "mutEpsilon", "epsilon for mutation",'e',"Param").value();
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double CROSS_RATE = parser.createParam(0.25, "pCross", "Crossover probability",'C',"Param").value();
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double MUT_RATE = parser.createParam(0.35, "pMut", "Mutation probability",'M',"Param").value();
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unsigned int VEC_SIZE = parser.createParam((unsigned int)(2), "vecSize", "Vector size",'V',"Param").value();
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double INIT_POSITION_MIN = parser.createParam(-2.0, "pMin", "Init position min",'N',"Param").value();
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double INIT_POSITION_MAX = parser.createParam(2.0, "pMax", "Init position max",'X',"Param").value();
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unsigned int MIG_FREQ = parser.createParam((unsigned int)(10), "migFreq", "Migration frequency",'F',"Param").value();
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unsigned int MIG_SIZE = parser.createParam((unsigned int)(5), "migSize", "Migration size",'S',"Param").value();
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rng.reseed (time(0));
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// Define the topology of your island model
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@ -86,16 +85,24 @@ int main (int __argc, char *__argv[])
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peoTransform<Indi> transform(crossover,CROSS_RATE,mutation,MUT_RATE);
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eoPop < Indi > pop;
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pop.append (POP_SIZE, random);
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eoPlusReplacement<Indi> replace;
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// Define a synchronous island
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// Seclection
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eoRandomSelect<Indi> mig_select_one;
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eoSelector <Indi, eoPop<Indi> > mig_select (mig_select_one,MIG_SIZE,pop);
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// Replacement
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eoPlusReplacement<Indi> replace;
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eoReplace <Indi, eoPop<Indi> > mig_replace (replace,pop);
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// Island
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peoSyncIslandMig<eoPop<Indi>, eoPop<Indi> > mig(MIG_FREQ,mig_select,mig_replace,topology);
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checkpoint.add(mig);
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eoEasyEA< Indi > eaAlg( checkpoint, eval, select, transform, replace );
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peoWrapper parallelEA( eaAlg, pop);
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eval.setOwner(parallelEA);
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transform.setOwner(parallelEA);
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// setOwner
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mig.setOwner(parallelEA);
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/*****************************************************************************************/
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@ -1,7 +1,7 @@
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/*
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* <main.cpp>
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* Copyright (C) DOLPHIN Project-Team, INRIA Futurs, 2006-2007
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* (C) OPAC Team, INRIA, 2007
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* Copyright (C) DOLPHIN Project-Team, INRIA Futurs, 2006-2008
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* (C) OPAC Team, INRIA, 2008
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*
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* Clive Canape
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*
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@ -50,18 +50,19 @@ double f (const Indi & _indi)
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int main (int __argc, char *__argv[])
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{
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peo :: init( __argc, __argv );
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const unsigned int VEC_SIZE = 2;
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const unsigned int POP_SIZE = 20;
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const unsigned int NEIGHBORHOOD_SIZE= 6;
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const unsigned int MAX_GEN = 100;
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const double INIT_POSITION_MIN = -2.0;
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const double INIT_POSITION_MAX = 2.0;
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const double INIT_VELOCITY_MIN = -1.;
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const double INIT_VELOCITY_MAX = 1.;
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const unsigned int MIG_FREQ = 10;
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const double omega = 1;
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const double C1 = 0.5;
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const double C2 = 2.;
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eoParser parser(__argc, __argv);
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unsigned int POP_SIZE = parser.createParam((unsigned int)(20), "popSize", "Population size",'P',"Param").value();
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unsigned int MAX_GEN = parser.createParam((unsigned int)(100), "maxGen", "Maximum number of generations",'G',"Param").value();
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unsigned int VEC_SIZE = parser.createParam((unsigned int)(2), "vecSize", "Vector size",'V',"Param").value();
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double INIT_POSITION_MIN = parser.createParam(-2.0, "pMin", "Init position min",'N',"Param").value();
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double INIT_POSITION_MAX = parser.createParam(2.0, "pMax", "Init position max",'X',"Param").value();
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double INIT_VELOCITY_MIN = parser.createParam(-1.0, "vMin", "Init velocity min",'n',"Param").value();
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double INIT_VELOCITY_MAX = parser.createParam(1.0, "vMax", "Init velocity max",'x',"Param").value();
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double omega = parser.createParam(1.0, "weight", "Weight",'w',"Param").value();
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double C1 = parser.createParam(0.5, "c1", "C1",'1',"Param").value();
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double C2 = parser.createParam(2.0, "c2t", "C2",'2',"Param").value();
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unsigned int NEIGHBORHOOD_SIZE = parser.createParam((unsigned int)(6), "neighSize", "Neighborhood size",'H',"Param").value();
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unsigned int MIG_FREQ = parser.createParam((unsigned int)(10), "migFreq", "Migration frequency",'F',"Param").value();
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rng.reseed (time(0));
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// Island model
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@ -135,7 +136,7 @@ int main (int __argc, char *__argv[])
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eoReplace <Indi, eoPop<Indi> > mig_replace2 (mig_replac2,pop2);
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// Island model
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// Asynchronous island
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peoAsyncIslandMig< eoPop<Indi>, eoPop<Indi> > mig(cont,mig_select, mig_replace, topologyMig);
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checkpoint.add( mig );
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@ -1,3 +1,21 @@
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###### Param ######
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--popSize=20 # -P : Population size
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--maxGen=200 # -G : Maximum number of generations
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--mutEpsilon=0.01 # -e : epsilon for mutation
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--pCross=0.80 # -C : Crossover probability
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--pMut=0.30 # -M : Mutation probability
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--vecSize=2 # -V : Vector size
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--pMin=-2.0 # -N : Init position min
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--pMax=2.0 # -X : Init position max
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--vMin=-1.0 # -n : Init velocity min
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--vMax=1.0 # -x : Init velocity max
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--neighSize=6 # -H : Neighborhood size
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--weight=1.0 # -w : Weight
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--c1=0.5 # -1 : C1
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--c2=2.0 # -2 : C2
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--migFreq=10 # -F : Migration frequency
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--migSize=5 # -S : Migration size
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## miscallenous parameters
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--debug=false
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