#ifndef SPROUT_MATH_ATAN2_HPP #define SPROUT_MATH_ATAN2_HPP #include #include #include #include #include #include #include #include namespace sprout { namespace math { namespace detail { template< typename FloatType, typename sprout::enabler_if::value>::type = sprout::enabler > inline SPROUT_CONSTEXPR FloatType atan2(FloatType y, FloatType x) { return y == 0 ? x == 0 ? FloatType(0) : x < 0 ? sprout::math::pi() : FloatType(0) : x == 0 ? (y < 0 ? -1 : 1) * sprout::math::half_pi() : x == -std::numeric_limits::infinity() ? y == std::numeric_limits::infinity() ? sprout::math::three_quarters_pi() : y == -std::numeric_limits::infinity() ? -sprout::math::three_quarters_pi() : (y < 0 ? -1 : 1) * sprout::math::half_pi() : x == std::numeric_limits::infinity() ? y == std::numeric_limits::infinity() ? sprout::math::quarter_pi() : y == -std::numeric_limits::infinity() ? -sprout::math::quarter_pi() : FloatType(0) : y == std::numeric_limits::infinity() ? sprout::math::half_pi() : y == -std::numeric_limits::infinity() ? -sprout::math::half_pi() : x < 0 ? sprout::atan(y / x) + (y < 0 ? -1 : 1) * sprout::math::pi() : sprout::atan(y / x) ; } template< typename ArithmeticType1, typename ArithmeticType2, typename sprout::enabler_if< std::is_arithmetic::value && std::is_arithmetic::value >::type = sprout::enabler > inline SPROUT_CONSTEXPR typename sprout::float_promote::type atan2(ArithmeticType1 y, ArithmeticType2 x) { typedef typename sprout::float_promote::type type; return sprout::math::detail::atan2(static_cast(y), static_cast(x)); } } // namespace detail using NS_SPROUT_MATH_DETAIL::atan2; } // namespace math using sprout::math::atan2; } // namespace sprout #endif // #ifndef SPROUT_MATH_ATAN2_HPP