// (C) Copyright Matt Borland 2021. // 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) #ifndef BOOST_MATH_CCMATH_COPYSIGN_HPP #define BOOST_MATH_CCMATH_COPYSIGN_HPP #include #include #include #include #include #include namespace boost::math::ccmath { namespace detail { template inline constexpr T copysign_impl(const T mag, const T sgn) noexcept { if(sgn >= 0) { return boost::math::ccmath::abs(mag); } else { return -boost::math::ccmath::abs(mag); } } } // Namespace detail template , bool> = true> inline constexpr Real copysign(Real mag, Real sgn) noexcept { if(BOOST_MATH_IS_CONSTANT_EVALUATED(mag)) { return boost::math::ccmath::detail::copysign_impl(mag, sgn); } else { using std::copysign; return copysign(mag, sgn); } } template inline constexpr auto copysign(T1 mag, T2 sgn) noexcept { if(BOOST_MATH_IS_CONSTANT_EVALUATED(mag)) { // If the type is an integer (e.g. epsilon == 0) then set the epsilon value to 1 so that type is at a minimum // cast to double constexpr auto T1p = std::numeric_limits::epsilon() > 0 ? std::numeric_limits::epsilon() : 1; constexpr auto T2p = std::numeric_limits::epsilon() > 0 ? std::numeric_limits::epsilon() : 1; using promoted_type = #ifndef BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS std::conditional_t>>>; #else >>; #endif return boost::math::ccmath::copysign(promoted_type(mag), promoted_type(sgn)); } else { using std::copysign; return copysign(mag, sgn); } } inline constexpr float copysignf(float mag, float sgn) noexcept { return boost::math::ccmath::copysign(mag, sgn); } #ifndef BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS inline constexpr long double copysignl(long double mag, long double sgn) noexcept { return boost::math::ccmath::copysign(mag, sgn); } #endif } // Namespaces #endif // BOOST_MATH_CCMATH_COPYSIGN_HPP