//Init the number of threads per block #define BLOCK_SIZE 256 #include #include using namespace std; // The general include for eo #include #include // OneMax full eval function #include // OneMax increment eval function #include // One Max solution #include #include //To compute execution time #include // One Max neighbor #include // One Max ordered neighborhood #include //Algorithm and its components #include #include // The simulated annealing algorithm explorer #include //comparator #include //continuators #include #include #include #include #include //------------------------------------------------------------------------------------ // Define types of the representation solution, different neighbors and neighborhoods //------------------------------------------------------------------------------------ // REPRESENTATION typedef moCudaBitVector solution; typedef moCudaBitNeighbor Neighbor; typedef moCudaRndWithReplNeighborhood Neighborhood; void main_function(int argc, char **argv) { /* ========================================================= * * Parameters * * ========================================================= */ // First define a parser from the command-line arguments eoParser parser(argc, argv); // For each parameter, define Parameter, read it through the parser, // and assign the value to the variable eoValueParam seedParam(time(0), "seed", "Random number seed", 'S'); parser.processParam( seedParam ); unsigned seed = seedParam.value(); // description of genotype eoValueParam vecSizeParam(8, "vecSize", "Genotype size", 'V'); parser.processParam( vecSizeParam, "Representation" ); unsigned vecSize = vecSizeParam.value(); // the name of the "status" file where all actual parameter values will be saved string str_status = parser.ProgramName() + ".status"; // default value eoValueParam statusParam(str_status.c_str(), "status", "Status file"); parser.processParam( statusParam, "Persistence" ); // do the following AFTER ALL PARAMETERS HAVE BEEN PROCESSED // i.e. in case you need parameters somewhere else, postpone these if (parser.userNeedsHelp()) { parser.printHelp(cout); exit(1); } if (statusParam.value() != "") { ofstream os(statusParam.value().c_str()); os << parser;// and you can use that file as parameter file } /* ========================================================= * * Random seed * * ========================================================= */ //reproducible random seed: if you don't change SEED above, // you'll always get the same result, NOT a random run rng.reseed(seed); /* ========================================================= * * Initilisation of the solution * * ========================================================= */ solution sol(vecSize); /* ========================================================= * * Eval fitness function * * ========================================================= */ EvalOneMax eval; /* ========================================================= * * Evaluation of a solution neighbor's * * ========================================================= */ OneMaxIncrEval incr_eval; moCudaVectorEval > cueval(vecSize,incr_eval); /* ========================================================= * * a solution neighborhood * * ========================================================= */ Neighborhood neighborhood(vecSize,cueval); /* ========================================================= * * the cooling schedule of the process * * ========================================================= */ // initial temp, factor of decrease, number of steps without decrease, final temp. moSimpleCoolingSchedule coolingSchedule(500, 0.9, 1000, 0.01); /* ========================================================= * * the local search algorithm * * ========================================================= */ moSA SA(neighborhood, eval, cueval,coolingSchedule); /* ========================================================= * * execute the local search from random solution * * ========================================================= */ //init(solution); eval(sol); std::cout << "#########################################" << std::endl; std::cout << "initial : " << sol << std::endl; SA(sol); std::cout << "final : " << sol << std::endl; std::cout << "#########################################" << std::endl; } // A main that catc hes the exceptions int main(int argc, char **argv) { try { main_function(argc, argv); } catch (exception& e) { cout << "Exception: " << e.what() << '\n'; } return 1; }