// (C) Copyright John Maddock 2006. // 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 #include #include #include #include #include #include #include #include template void print_test_result(const boost::math::tools::test_result& result, T worst, const char* name, const char* test) { using namespace std; T eps = pow(T(2), 1-boost::math::tools::digits()); std::cout << setprecision(4); std::cout << test << "(" << name << ") Max = " << (result.stat.max)()/eps << " RMS Mean=" << result.stat.rms()/eps << " worst case at point: " << worst << std::endl; } template void do_test_cbrt(const T& data, const char* type_name, const char* test_name) { typedef typename T::value_type row_type; typedef typename row_type::value_type value_type; typedef value_type (*pg)(value_type); pg funcp = boost::math::cbrt; boost::math::tools::test_result result; std::cout << "Testing " << test_name << " with type " << type_name << "\n~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~\n"; // // test erf against data: // result = boost::math::tools::test( data, boost::lambda::bind(funcp, boost::lambda::ret(boost::lambda::_1[1])), boost::lambda::ret(boost::lambda::_1[0])); result += boost::math::tools::test( data, boost::lambda::bind(funcp, -boost::lambda::ret(boost::lambda::_1[1])), -boost::lambda::ret(boost::lambda::_1[0])); print_test_result(result, data[result.worst_case][1], type_name, "boost::math::cbrt"); std::cout << std::endl; } template void test_cbrt(T, const char* name) { // // The actual test data is rather verbose, so it's in a separate file // // The contents are as follows, each row of data contains // three items, input value a, input value b and erf(a, b): // # include "cbrt_data.ipp" do_test_cbrt(cbrt_data, name, "cbrt Function"); } int test_main(int, char* []) { test_cbrt(0.1F, "float"); test_cbrt(0.1, "double"); test_cbrt(0.1L, "long double"); test_cbrt(boost::math::concepts::real_concept(0.1), "real_concept"); return 0; }