/* This file is part of solidity. solidity is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. solidity is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with solidity. If not, see . */ // SPDX-License-Identifier: GPL-3.0 #include #include #include #include #include #include using namespace std; using namespace solidity::yul; using namespace boost::test_tools; namespace fs = boost::filesystem; namespace solidity::phaser::test { BOOST_AUTO_TEST_SUITE(Phaser, *boost::unit_test::label("nooptions")) BOOST_AUTO_TEST_SUITE(TestHelpersTest) BOOST_AUTO_TEST_CASE(ChromosomeLengthMetric_evaluate_should_return_chromosome_length) { BOOST_TEST(ChromosomeLengthMetric{}.evaluate(Chromosome()) == 0); BOOST_TEST(ChromosomeLengthMetric{}.evaluate(Chromosome("a")) == 1); BOOST_TEST(ChromosomeLengthMetric{}.evaluate(Chromosome("aaaaa")) == 5); } BOOST_AUTO_TEST_CASE(wholeChromosomeReplacement_should_replace_whole_chromosome_with_another) { function mutation = wholeChromosomeReplacement(Chromosome("aaa")); BOOST_TEST(mutation(Chromosome("ccc")) == Chromosome("aaa")); } BOOST_AUTO_TEST_CASE(geneSubstitution_should_change_a_single_gene_at_a_given_index) { Chromosome chromosome("aaccff"); function mutation1 = geneSubstitution(0, chromosome.optimisationSteps()[5]); BOOST_TEST(mutation1(chromosome) == Chromosome("faccff")); function mutation2 = geneSubstitution(5, chromosome.optimisationSteps()[0]); BOOST_TEST(mutation2(chromosome) == Chromosome("aaccfa")); } BOOST_AUTO_TEST_CASE(chromosomeLengths_should_return_lengths_of_all_chromosomes_in_a_population) { shared_ptr fitnessMetric = make_shared(); Population population1(fitnessMetric, {Chromosome(), Chromosome("a"), Chromosome("aa"), Chromosome("aaa")}); BOOST_TEST((chromosomeLengths(population1) == vector{0, 1, 2, 3})); Population population2(fitnessMetric); BOOST_TEST((chromosomeLengths(population2) == vector{})); } BOOST_AUTO_TEST_CASE(countDifferences_should_return_zero_for_identical_chromosomes) { BOOST_TEST(countDifferences(Chromosome(), Chromosome()) == 0); BOOST_TEST(countDifferences(Chromosome("a"), Chromosome("a")) == 0); BOOST_TEST(countDifferences(Chromosome("afxT"), Chromosome("afxT")) == 0); } BOOST_AUTO_TEST_CASE(countDifferences_should_count_mismatched_positions_in_chromosomes_of_the_same_length) { BOOST_TEST(countDifferences(Chromosome("a"), Chromosome("f")) == 1); BOOST_TEST(countDifferences(Chromosome("aa"), Chromosome("ac")) == 1); BOOST_TEST(countDifferences(Chromosome("ac"), Chromosome("cc")) == 1); BOOST_TEST(countDifferences(Chromosome("aa"), Chromosome("cc")) == 2); BOOST_TEST(countDifferences(Chromosome("afxT"), Chromosome("Txfa")) == 4); } BOOST_AUTO_TEST_CASE(countDifferences_should_count_missing_characters_as_differences) { BOOST_TEST(countDifferences(Chromosome(""), Chromosome("a")) == 1); BOOST_TEST(countDifferences(Chromosome("a"), Chromosome("")) == 1); BOOST_TEST(countDifferences(Chromosome("aa"), Chromosome("")) == 2); BOOST_TEST(countDifferences(Chromosome("aaa"), Chromosome("")) == 3); BOOST_TEST(countDifferences(Chromosome("aa"), Chromosome("aaaa")) == 2); BOOST_TEST(countDifferences(Chromosome("aa"), Chromosome("aacc")) == 2); BOOST_TEST(countDifferences(Chromosome("aa"), Chromosome("cccc")) == 4); } BOOST_AUTO_TEST_CASE(enumerateOptimisationSteps_should_assing_indices_to_all_available_optimisation_steps) { map stepsAndAbbreviations = OptimiserSuite::stepNameToAbbreviationMap(); map stepsAndIndices = enumerateOptmisationSteps(); BOOST_TEST(stepsAndIndices.size() == stepsAndAbbreviations.size()); set stepsSoFar; for (auto& [name, index]: stepsAndIndices) { BOOST_TEST(index >= 0); BOOST_TEST(index <= stepsAndAbbreviations.size()); BOOST_TEST(stepsAndAbbreviations.count(name) == 1); BOOST_TEST(stepsSoFar.count(name) == 0); stepsSoFar.insert(name); } } BOOST_AUTO_TEST_CASE(TemporaryDirectory_should_create_and_delete_a_unique_and_empty_directory) { fs::path dirPath; { TemporaryDirectory tempDir("temporary-directory-test-"); dirPath = tempDir.path(); BOOST_TEST(dirPath.stem().string().find("temporary-directory-test-") == 0); BOOST_TEST(fs::equivalent(dirPath.parent_path(), fs::temp_directory_path())); BOOST_TEST(fs::is_directory(dirPath)); BOOST_TEST(fs::is_empty(dirPath)); } BOOST_TEST(!fs::exists(dirPath)); } BOOST_AUTO_TEST_CASE(TemporaryDirectory_should_delete_its_directory_even_if_not_empty) { fs::path dirPath; { TemporaryDirectory tempDir("temporary-directory-test-"); dirPath = tempDir.path(); BOOST_TEST(fs::is_directory(dirPath)); { ofstream tmpFile((dirPath / "test-file.txt").string()); tmpFile << "Delete me!" << endl; } assert(fs::is_regular_file(dirPath / "test-file.txt")); } BOOST_TEST(!fs::exists(dirPath / "test-file.txt")); } BOOST_AUTO_TEST_CASE(TemporaryDirectory_memberPath_should_construct_paths_relative_to_the_temporary_directory) { TemporaryDirectory tempDir("temporary-directory-test-"); BOOST_TEST(fs::equivalent(tempDir.memberPath(""), tempDir.path())); BOOST_TEST(fs::equivalent(tempDir.memberPath("."), tempDir.path() / fs::path("."))); BOOST_TEST(fs::equivalent(tempDir.memberPath(".."), tempDir.path() / fs::path(".."))); // NOTE: fs::equivalent() only works with paths that actually exist { ofstream file; file.open(tempDir.memberPath("file.txt"), ios::out); } BOOST_TEST(fs::equivalent(tempDir.memberPath("file.txt"), tempDir.path() / fs::path("file.txt"))); { fs::create_directories(tempDir.memberPath("a/b/")); ofstream file; file.open(tempDir.memberPath("a/b/file.txt"), ios::out); } BOOST_TEST(fs::equivalent(tempDir.memberPath("a/b/file.txt"), tempDir.path() / fs::path("a") / fs::path("b") / fs::path("file.txt"))); } BOOST_AUTO_TEST_CASE(stripWhitespace_should_remove_all_whitespace_characters_from_a_string) { BOOST_TEST(stripWhitespace("") == ""); BOOST_TEST(stripWhitespace(" ") == ""); BOOST_TEST(stripWhitespace(" \n\t\v ") == ""); BOOST_TEST(stripWhitespace("abc") == "abc"); BOOST_TEST(stripWhitespace(" abc") == "abc"); BOOST_TEST(stripWhitespace("abc ") == "abc"); BOOST_TEST(stripWhitespace(" a b c ") == "abc"); BOOST_TEST(stripWhitespace(" a b\tc\n") == "abc"); BOOST_TEST(stripWhitespace(" a b \n\n c \n\t\v") == "abc"); } BOOST_AUTO_TEST_CASE(countSubstringOccurrences_should_count_non_overlapping_substring_occurrences_in_a_string) { BOOST_TEST(countSubstringOccurrences("aaabcdcbaaa", "a") == 6); BOOST_TEST(countSubstringOccurrences("aaabcdcbaaa", "aa") == 2); BOOST_TEST(countSubstringOccurrences("aaabcdcbaaa", "aaa") == 2); BOOST_TEST(countSubstringOccurrences("aaabcdcbaaa", "aaab") == 1); BOOST_TEST(countSubstringOccurrences("aaabcdcbaaa", "b") == 2); BOOST_TEST(countSubstringOccurrences("aaabcdcbaaa", "d") == 1); BOOST_TEST(countSubstringOccurrences("aaabcdcbaaa", "cdc") == 1); BOOST_TEST(countSubstringOccurrences("aaabcdcbaaa", "x") == 0); BOOST_TEST(countSubstringOccurrences("aaabcdcbaaa", "aaaa") == 0); BOOST_TEST(countSubstringOccurrences("aaabcdcbaaa", "dcd") == 0); BOOST_TEST(countSubstringOccurrences("", "a") == 0); BOOST_TEST(countSubstringOccurrences("", "aa") == 0); BOOST_TEST(countSubstringOccurrences("a", "aa") == 0); } BOOST_AUTO_TEST_CASE(mean_should_calculate_statistical_mean) { BOOST_TEST(mean({0}) == 0.0); BOOST_TEST(mean({0, 0, 0, 0}) == 0.0); BOOST_TEST(mean({5, 5, 5, 5}) == 5.0); BOOST_TEST(mean({0, 1, 2, 3}) == 1.5); BOOST_TEST(mean({-4, -3, -2, -1, 0, 1, 2, 3}) == -0.5); BOOST_TEST(mean({1.3, 1.1, 0.0, 1.5, 1.1, 2.0, 1.5, 1.5}) == 1.25); } BOOST_AUTO_TEST_CASE(meanSquaredError_should_calculate_average_squared_difference_between_samples_and_expected_value) { BOOST_TEST(meanSquaredError({0}, 0.0) == 0.0); BOOST_TEST(meanSquaredError({0}, 1.0) == 1.0); BOOST_TEST(meanSquaredError({0, 0, 0, 0}, 0.0) == 0.0); BOOST_TEST(meanSquaredError({0, 0, 0, 0}, 1.0) == 1.0); BOOST_TEST(meanSquaredError({0, 0, 0, 0}, 2.0) == 4.0); BOOST_TEST(meanSquaredError({5, 5, 5, 5}, 1.0) == 16.0); BOOST_TEST(meanSquaredError({0, 1, 2, 3}, 2.0) == 1.5); BOOST_TEST(meanSquaredError({-4, -3, -2, -1, 0, 1, 2, 3}, -4.0) == 17.5); BOOST_TEST(meanSquaredError({1.3, 1.1, 0.0, 1.5, 1.1, 2.0, 1.5, 1.5}, 1.0) == 0.3575, tolerance(0.0001)); } BOOST_AUTO_TEST_SUITE_END() BOOST_AUTO_TEST_SUITE_END() }