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180 lines
5.6 KiB
C++
180 lines
5.6 KiB
C++
// unit test file atanh.hpp for the special functions test suite
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// (C) Copyright Hubert Holin 2003.
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// Distributed under the Boost Software License, Version 1.0. (See
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// accompanying file LICENSE_1_0.txt or copy at
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// http://www.boost.org/LICENSE_1_0.txt)
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#include <functional>
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#include <iomanip>
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//#include <iostream>
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#define BOOST_TEST_MAiN
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#include <boost/math/special_functions/atanh.hpp>
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#include <boost/test/unit_test.hpp>
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template<typename T>
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T atanh_error_evaluator(T x)
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{
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using ::std::abs;
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using ::std::tanh;
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using ::std::cosh;
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using ::std::numeric_limits;
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using ::boost::math::atanh;
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static T const epsilon = numeric_limits<float>::epsilon();
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T y = tanh(x);
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T z = atanh(y);
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T absolute_error = abs(z-x);
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T relative_error = absolute_error/(cosh(x)*cosh(x));
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T scaled_error = relative_error/epsilon;
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return(scaled_error);
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}
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BOOST_TEST_CASE_TEMPLATE_FUNCTION(atanh_test, T)
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{
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using ::std::abs;
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using ::std::tanh;
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using ::std::log;
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using ::std::numeric_limits;
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using ::boost::math::atanh;
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BOOST_TEST_MESSAGE("Testing atanh in the real domain for "
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<< string_type_name<T>::_() << ".");
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BOOST_CHECK_PREDICATE(::std::less_equal<T>(),
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(abs(atanh<T>(static_cast<T>(0))))
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(numeric_limits<T>::epsilon()));
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BOOST_CHECK_PREDICATE(::std::less_equal<T>(),
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(abs(atanh<T>(static_cast<T>(3)/5) - log(static_cast<T>(2))))
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(numeric_limits<T>::epsilon()));
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BOOST_CHECK_PREDICATE(::std::less_equal<T>(),
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(abs(atanh<T>(static_cast<T>(-3)/5) + log(static_cast<T>(2))))
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(numeric_limits<T>::epsilon()));
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for (int i = 0; i <= 100; i++)
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{
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T x = static_cast<T>(i-50)/static_cast<T>(5);
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T y = tanh(x);
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if (
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(abs(y-static_cast<T>(1)) >= numeric_limits<T>::epsilon())&&
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(abs(y+static_cast<T>(1)) >= numeric_limits<T>::epsilon())
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)
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{
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BOOST_CHECK_PREDICATE(::std::less_equal<T>(),
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(atanh_error_evaluator(x))
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(static_cast<T>(4)));
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}
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}
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//
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// Error handling checks:
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//
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BOOST_MATH_CHECK_THROW(atanh(T(-1)), std::overflow_error);
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BOOST_MATH_CHECK_THROW(atanh(T(1)), std::overflow_error);
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BOOST_MATH_CHECK_THROW(atanh(T(-2)), std::domain_error);
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BOOST_MATH_CHECK_THROW(atanh(T(2)), std::domain_error);
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}
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void atanh_manual_check()
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{
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using ::std::abs;
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using ::std::tanh;
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using ::std::numeric_limits;
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BOOST_TEST_MESSAGE(" ");
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BOOST_TEST_MESSAGE("atanh");
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for (int i = 0; i <= 100; i++)
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{
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float xf = static_cast<float>(i-50)/static_cast<float>(5);
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double xd = static_cast<double>(i-50)/static_cast<double>(5);
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long double xl =
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static_cast<long double>(i-50)/static_cast<long double>(5);
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float yf = tanh(xf);
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double yd = tanh(xd);
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(void) &yd; // avoid "unused variable" warning
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long double yl = tanh(xl);
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(void) &yl; // avoid "unused variable" warning
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if (
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std::numeric_limits<float>::has_infinity &&
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std::numeric_limits<double>::has_infinity &&
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std::numeric_limits<long double>::has_infinity
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)
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{
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#ifndef BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS
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BOOST_TEST_MESSAGE( ::std::setw(15)
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<< atanh_error_evaluator(xf)
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<< ::std::setw(15)
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<< atanh_error_evaluator(xd)
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<< ::std::setw(15)
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<< atanh_error_evaluator(xl));
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#else
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BOOST_TEST_MESSAGE( ::std::setw(15)
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<< atanh_error_evaluator(xf)
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<< ::std::setw(15)
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<< atanh_error_evaluator(xd));
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#endif
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}
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else
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{
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if (
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(abs(yf-static_cast<float>(1)) <
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numeric_limits<float>::epsilon())||
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(abs(yf+static_cast<float>(1)) <
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numeric_limits<float>::epsilon())||
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(abs(yf-static_cast<double>(1)) <
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numeric_limits<double>::epsilon())||
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(abs(yf+static_cast<double>(1)) <
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numeric_limits<double>::epsilon())||
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(abs(yf-static_cast<long double>(1)) <
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numeric_limits<long double>::epsilon())||
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(abs(yf+static_cast<long double>(1)) <
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numeric_limits<long double>::epsilon())
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)
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{
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BOOST_TEST_MESSAGE("Platform's numerics may lack precision.");
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}
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else
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{
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#ifndef BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS
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BOOST_TEST_MESSAGE( ::std::setw(15)
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<< atanh_error_evaluator(xf)
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<< ::std::setw(15)
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<< atanh_error_evaluator(xd)
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<< ::std::setw(15)
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<< atanh_error_evaluator(xl));
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#else
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BOOST_TEST_MESSAGE( ::std::setw(15)
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<< atanh_error_evaluator(xf)
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<< ::std::setw(15)
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<< atanh_error_evaluator(xd));
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#endif
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}
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}
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}
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BOOST_TEST_MESSAGE(" ");
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}
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