// (C) Copyright John Maddock 2014. // Use, modification and distribution are subject to the // Boost Software License, Version 1.0. (See accompanying file // LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt) #include #include "test_polygamma.hpp" //#include void expected_results() { // // Define the max and mean errors expected for // various compilers and platforms. // const char* largest_type; #ifndef BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS if(boost::math::policies::digits >() == boost::math::policies::digits >()) { largest_type = "(long\\s+)?double|real_concept"; } else { largest_type = "long double|real_concept"; } #else largest_type = "(long\\s+)?double|real_concept"; #endif add_expected_result( ".*", // compiler ".*", // stdlib ".*", // platform largest_type, // test type(s) ".*large arguments", // test data group ".*", 400, 200); // test function add_expected_result( ".*", // compiler ".*", // stdlib ".*", // platform largest_type, // test type(s) ".*negative.*", // test data group ".*", 800, 500); // test function #ifndef BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS if((std::numeric_limits::digits > std::numeric_limits::digits) && (std::numeric_limits::digits - std::numeric_limits::digits < 20)) { add_expected_result( ".*", // compiler ".*", // stdlib ".*", // platform "double", // test type(s) ".*bug cases.*", // test data group ".*", 100, 30); // test function } #endif add_expected_result( ".*", // compiler ".*", // stdlib ".*", // platform largest_type, // test type(s) ".*bug cases.*", // test data group ".*", 100000, 50000); // test function add_expected_result( ".*", // compiler ".*", // stdlib ".*", // platform largest_type, // test type(s) ".*", // test data group ".*", 40, 10); // test function // // Finish off by printing out the compiler/stdlib/platform names, // we do this to make it easier to mark up expected error rates. // std::cout << "Tests run with " << BOOST_COMPILER << ", " << BOOST_STDLIB << ", " << BOOST_PLATFORM << std::endl; } BOOST_AUTO_TEST_CASE( test_main ) { expected_results(); BOOST_MATH_CONTROL_FP; test_polygamma(0.0F, "float"); test_polygamma(0.0, "double"); #ifndef BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS test_polygamma(0.0L, "long double"); test_polygamma(boost::math::concepts::real_concept(0.1), "real_concept"); #endif #ifdef BOOST_FLOAT128_C //test_polygamma(BOOST_FLOAT128_C(0.0), "float128_t"); #endif }