171 lines
6.5 KiB
C++
171 lines
6.5 KiB
C++
/*
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* <Short Description>
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* Copyright (C) 2024 Brett Terpstra
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program 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
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <https://www.gnu.org/licenses/>.
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*/
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/*
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* <Short Description>
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* Copyright (C) 2024 Brett Terpstra
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program 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
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <https://www.gnu.org/licenses/>.
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*/
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#include <blt/gp/program.h>
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#include <blt/gp/generators.h>
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#include <blt/gp/tree.h>
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#include <blt/std/logging.h>
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#include <blt/gp/transformers.h>
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#include <string_view>
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#include <iostream>
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static const auto SEED_FUNC = [] { return std::random_device()(); };
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blt::gp::gp_program program(SEED_FUNC); // NOLINT
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blt::gp::operation_t add([](float a, float b) { return a + b; }, "add"); // 0
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blt::gp::operation_t sub([](float a, float b) { return a - b; }, "sub"); // 1
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blt::gp::operation_t mul([](float a, float b) { return a * b; }, "mul"); // 2
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blt::gp::operation_t pro_div([](float a, float b) { return b == 0 ? 0.0f : a / b; }, "div"); // 3
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blt::gp::operation_t op_if([](bool b, float a, float c) { return b ? a : c; }, "if"); // 4
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blt::gp::operation_t eq_f([](float a, float b) { return a == b; }, "eq_f"); // 5
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blt::gp::operation_t eq_b([](bool a, bool b) { return a == b; }, "eq_b"); // 6
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blt::gp::operation_t lt([](float a, float b) { return a < b; }, "lt"); // 7
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blt::gp::operation_t gt([](float a, float b) { return a > b; }, "gt"); // 8
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blt::gp::operation_t op_and([](bool a, bool b) { return a && b; }, "and"); // 9
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blt::gp::operation_t op_or([](bool a, bool b) { return a || b; }, "or"); // 10
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blt::gp::operation_t op_xor([](bool a, bool b) { return static_cast<bool>(a ^ b); }, "xor"); // 11
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blt::gp::operation_t op_not([](bool b) { return !b; }, "not"); // 12
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auto lit = blt::gp::operation_t([]() {
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//static std::uniform_real_distribution<float> dist(-32000, 32000);
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// static std::uniform_real_distribution<float> dist(0.0f, 10.0f);
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return program.get_random().get_float(0.0f, 10.0f);
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}).set_ephemeral();
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/**
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* This is a test using multiple types with blt::gp
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*/
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int main()
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{
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blt::gp::operator_builder builder{};
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program.set_operations(builder.build(add, sub, mul, pro_div, op_if, eq_f, eq_b, lt, gt, op_and, op_or, op_xor, op_not, lit));
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blt::gp::ramped_half_initializer_t pop_init;
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auto pop = pop_init.generate(blt::gp::initializer_arguments{program, program.get_typesystem().get_type<float>().id(), 500, 3, 10});
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// for (auto& tree : pop.getIndividuals())
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// {
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// auto value = tree.get_evaluation_value<float>(nullptr);
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//
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// BLT_TRACE(value);
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// }
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blt::gp::crossover_t crossover;
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auto& ind = pop.get_individuals();
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std::vector<float> pre;
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std::vector<float> pos;
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blt::size_t errors = 0;
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BLT_INFO("Pre-Crossover:");
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for (auto& tree : pop.get_individuals())
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{
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auto f = tree.tree.get_evaluation_value<float>();
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pre.push_back(f);
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BLT_TRACE(f);
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}
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BLT_INFO("Crossover:");
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blt::gp::population_t new_pop;
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while (new_pop.get_individuals().size() < pop.get_individuals().size())
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{
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auto& random = program.get_random();
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blt::size_t first = random.get_size_t(0ul, pop.get_individuals().size());
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blt::size_t second;
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do
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{
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second = random.get_size_t(0ul, pop.get_individuals().size());
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} while (second == first);
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blt::gp::tree_t child1{program};
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blt::gp::tree_t child2{program};
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// crossover function assumes that children have been copied from parents
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child1.copy_fast(ind[first].tree);
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child2.copy_fast(ind[second].tree);
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auto results = crossover.apply(program, ind[first].tree, ind[second].tree, child1, child2);
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if (results)
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{
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// bool print_literals = true;
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// bool pretty_print = false;
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// bool print_returns = false;
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// BLT_TRACE("Parent 1: %f", ind[0].get_evaluation_value<float>());
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// ind[0].print(program, std::cout, print_literals, pretty_print, print_returns);
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// BLT_TRACE("Parent 2: %f", ind[1].get_evaluation_value<float>());
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// ind[1].print(program, std::cout, print_literals, pretty_print, print_returns);
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// BLT_TRACE("------------");
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// BLT_TRACE("Child 1: %f", results->child1.get_evaluation_value<float>());
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// results->child1.print(program, std::cout, print_literals, pretty_print, print_returns);
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// BLT_TRACE("Child 2: %f", results->child2.get_evaluation_value<float>());
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// results->child2.print(program, std::cout, print_literals, pretty_print, print_returns);
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new_pop.get_individuals().emplace_back(std::move(child1));
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new_pop.get_individuals().emplace_back(std::move(child2));
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} else
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{
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BLT_DEBUG("Crossover Failed.");
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errors++;
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new_pop.get_individuals().push_back(ind[first]);
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new_pop.get_individuals().push_back(ind[second]);
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}
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}
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BLT_INFO("Post-Crossover:");
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for (auto& tree : new_pop.for_each_tree())
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{
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auto f = tree.get_evaluation_value<float>();
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pos.push_back(f);
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BLT_TRACE(f);
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}
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BLT_INFO("Stats:");
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blt::size_t eq = 0;
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for (const auto& v : pos)
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{
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for (const auto m : pre)
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{
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if (v == m)
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{
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eq++;
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break;
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}
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}
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}
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BLT_INFO("Equal values: %ld", eq);
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BLT_INFO("Error times: %ld", errors);
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return 0;
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}
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