Sprout/sprout/math/float2_sig_exp.hpp

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#ifndef SPROUT_MATH_FLOAT2_SIG_EXP_HPP
#define SPROUT_MATH_FLOAT2_SIG_EXP_HPP
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#include <limits>
#include <type_traits>
#include <sprout/config.hpp>
#include <sprout/math/detail/config.hpp>
#include <sprout/detail/pow.hpp>
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#include <sprout/math/float2_exponent.hpp>
#include <sprout/type_traits/enabler_if.hpp>
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#include <sprout/utility/pair/pair.hpp>
namespace sprout {
namespace math {
namespace detail {
template<typename T>
inline SPROUT_CONSTEXPR sprout::pair<T, int>
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float2_sig_exp_impl(T x, int exp) {
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typedef sprout::pair<T, int> type;
return x == 0 ? type(T(0), exp)
: x == std::numeric_limits<T>::infinity() ? type(std::numeric_limits<T>::infinity(), exp)
: x == -std::numeric_limits<T>::infinity() ? type(-std::numeric_limits<T>::infinity(), exp)
: x == std::numeric_limits<T>::quiet_NaN() ? type(std::numeric_limits<T>::quiet_NaN(), exp)
: type(x / sprout::detail::pow_n(T(2), exp), exp)
;
}
template<
typename FloatType,
typename sprout::enabler_if<std::is_floating_point<FloatType>::value>::type = sprout::enabler
>
inline SPROUT_CONSTEXPR sprout::pair<FloatType, int>
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float2_sig_exp(FloatType x) {
return sprout::math::detail::float2_sig_exp_impl(x, sprout::math::float2_exponent(x));
}
template<
typename IntType,
typename sprout::enabler_if<std::is_integral<IntType>::value>::type = sprout::enabler
>
inline SPROUT_CONSTEXPR sprout::pair<double, int>
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float2_sig_exp(IntType x) {
return sprout::math::detail::float2_sig_exp(static_cast<double>(x));
}
} // namespace detail
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using sprout::math::detail::float2_sig_exp;
} // namespace math
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using sprout::math::float2_sig_exp;
} // namespace sprout
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#endif // #ifndef SPROUT_MATH_FLOAT2_SIG_EXP_HPP