/* Copyright (c) 2014-2017, 2020-2021, Arvid Norberg Copyright (c) 2018, 2021, Alden Torres All rights reserved. You may use, distribute and modify this code under the terms of the BSD license, see LICENSE file. */ #include #include "test.hpp" #include "libtorrent/aux_/sliding_average.hpp" namespace { // normal distributed samples. mean=60 stddev=10 std::array samples = {{ 49, 51, 60, 46, 65, 53, 76, 59, 57, 54, 56, 51, 45, 80, 53, 62, 69, 67, 66, 56, 56, 61, 52, 61, 61, 62, 59, 53, 48, 68, 47, 47, 63, 51, 53, 54, 46, 65, 64, 64, 45, 68, 64, 66, 53, 42, 57, 58, 57, 47, 55, 59, 64, 61, 37, 67, 55, 52, 60, 60, 44, 57, 50, 77, 56, 54, 49, 68, 66, 64, 47, 60, 46, 47, 81, 74, 65, 62, 44, 75, 65, 43, 58, 59, 53, 67, 49, 51, 33, 47, 49, 50, 54, 48, 55, 80, 67, 51, 66, 52, 48, 57, 30, 51, 72, 65, 78, 56, 74, 68, 49, 66, 63, 57, 61, 62, 64, 62, 61, 52, 67, 64, 59, 61, 69, 60, 54, 69 }}; } // anonymous namespace using namespace lt; // make sure we react quickly for the first few samples TORRENT_TEST(reaction_time) { aux::sliding_average avg; avg.add_sample(-10); avg.add_sample(10); TEST_EQUAL(avg.mean(), 0); } TORRENT_TEST(reaction_time2) { aux::sliding_average avg; avg.add_sample(10); avg.add_sample(20); TEST_EQUAL(int(avg.mean()), 15); } // make sure we converge TORRENT_TEST(converge) { aux::sliding_average avg; avg.add_sample(100); for (int i = 0; i < 20; ++i) avg.add_sample(10); TEST_CHECK(abs(avg.mean() - 10) <= 3); } TORRENT_TEST(converge2) { aux::sliding_average avg; avg.add_sample(-100); for (int i = 0; i < 20; ++i) avg.add_sample(-10); TEST_CHECK(abs(avg.mean() + 10) <= 3); } // test with a more realistic input TORRENT_TEST(random_converge) { aux::sliding_average avg; for (auto sample : samples) avg.add_sample(sample); TEST_CHECK(abs(avg.mean() - 60) <= 3); } TORRENT_TEST(sliding_average) { aux::sliding_average avg; TEST_EQUAL(avg.mean(), 0); TEST_EQUAL(avg.avg_deviation(), 0); avg.add_sample(500); TEST_EQUAL(avg.mean(), 500); TEST_EQUAL(avg.avg_deviation(), 0); avg.add_sample(501); TEST_EQUAL(avg.avg_deviation(), 1); avg.add_sample(0); avg.add_sample(0); std::printf("avg: %d dev: %d\n", avg.mean(), avg.avg_deviation()); TEST_CHECK(abs(avg.mean() - 250) < 50); TEST_CHECK(abs(avg.avg_deviation() - 250) < 80); } TORRENT_TEST(positive_overflow) { aux::sliding_average avg; avg.add_sample(2'000'000'000); TEST_EQUAL(int(avg.mean()), 8'388'608); } TORRENT_TEST(negative_overflow) { aux::sliding_average avg; avg.add_sample(-2'000'000'000); TEST_EQUAL(int(avg.mean()), -8'388'607); } TORRENT_TEST(overflow) { aux::sliding_average avg; for (int i = 0; i < 20; ++i) avg.add_sample(-2'000'000'000); avg.add_sample(2'000'000'000); TEST_EQUAL(int(avg.mean()), -6'710'885); }