/////////////////////////////////////////////////////////////////////////////// // Copyright 2018 John Maddock. Distributed under 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_MP_EIGEN_HPP #define BOOST_MP_EIGEN_HPP #include #include // // Generic Eigen support code: // namespace Eigen { template struct NumTraits > { typedef boost::multiprecision::number self_type; typedef typename boost::multiprecision::scalar_result_from_possible_complex::type Real; typedef self_type NonInteger; // Not correct but we can't do much better?? typedef double Literal; typedef self_type Nested; enum { IsComplex = boost::multiprecision::number_category::value == boost::multiprecision::number_kind_complex, IsInteger = boost::multiprecision::number_category::value == boost::multiprecision::number_kind_integer, ReadCost = 1, AddCost = 4, MulCost = 8, IsSigned = std::numeric_limits::is_specialized ? std::numeric_limits::is_signed : true, RequireInitialization = 1, }; static Real epsilon() { return std::numeric_limits::epsilon(); } static Real dummy_precision() { return 1000 * epsilon(); } static Real highest() { return (std::numeric_limits::max)(); } static Real lowest() { return (std::numeric_limits::min)(); } static int digits10_imp(const boost::mpl::true_&) { return std::numeric_limits::digits10; } template static int digits10_imp(const boost::mpl::bool_&) { return Real::default_precision(); } static int digits10() { return digits10_imp(boost::mpl::bool_ < std::numeric_limits::digits10 && (std::numeric_limits::digits10 != INT_MAX) ? true : false > ()); } }; template struct NumTraits > : public NumTraits::result_type> { }; #define BOOST_MP_EIGEN_SCALAR_TRAITS_DECL(A) \ template \ struct ScalarBinaryOpTraits, A, BinaryOp> \ { \ /*static_assert(boost::multiprecision::is_compatible_arithmetic_type >::value, "Interoperability with this arithmetic type is not supported.");*/ \ typedef boost::multiprecision::number ReturnType; \ }; \ template \ struct ScalarBinaryOpTraits, BinaryOp> \ { \ /*static_assert(boost::multiprecision::is_compatible_arithmetic_type >::value, "Interoperability with this arithmetic type is not supported.");*/ \ typedef boost::multiprecision::number ReturnType; \ }; BOOST_MP_EIGEN_SCALAR_TRAITS_DECL(float) BOOST_MP_EIGEN_SCALAR_TRAITS_DECL(double) BOOST_MP_EIGEN_SCALAR_TRAITS_DECL(long double) BOOST_MP_EIGEN_SCALAR_TRAITS_DECL(char) BOOST_MP_EIGEN_SCALAR_TRAITS_DECL(unsigned char) BOOST_MP_EIGEN_SCALAR_TRAITS_DECL(signed char) BOOST_MP_EIGEN_SCALAR_TRAITS_DECL(short) BOOST_MP_EIGEN_SCALAR_TRAITS_DECL(unsigned short) BOOST_MP_EIGEN_SCALAR_TRAITS_DECL(int) BOOST_MP_EIGEN_SCALAR_TRAITS_DECL(unsigned int) BOOST_MP_EIGEN_SCALAR_TRAITS_DECL(long) BOOST_MP_EIGEN_SCALAR_TRAITS_DECL(unsigned long) #if 0 template struct ScalarBinaryOpTraits, boost::multiprecision::number, BinaryOp> { static_assert( boost::multiprecision::is_compatible_arithmetic_type, boost::multiprecision::number >::value || boost::multiprecision::is_compatible_arithmetic_type, boost::multiprecision::number >::value, "Interoperability with this arithmetic type is not supported."); typedef typename boost::mpl::if_c, boost::multiprecision::number >::value, boost::multiprecision::number, boost::multiprecision::number >::type ReturnType; }; template struct ScalarBinaryOpTraits, boost::multiprecision::et_on>, boost::multiprecision::mpfr_float, BinaryOp> { typedef boost::multiprecision::number, boost::multiprecision::et_on> ReturnType; }; template struct ScalarBinaryOpTraits { typedef boost::multiprecision::number, boost::multiprecision::et_on> ReturnType; }; template struct ScalarBinaryOpTraits, boost::multiprecision::number, BinaryOp> { typedef boost::multiprecision::number ReturnType; }; #endif template struct ScalarBinaryOpTraits, boost::multiprecision::detail::expression, BinaryOp> { static_assert(boost::is_convertible::result_type, boost::multiprecision::number >::value, "Interoperability with this arithmetic type is not supported."); typedef boost::multiprecision::number ReturnType; }; template struct ScalarBinaryOpTraits, boost::multiprecision::number, BinaryOp> { static_assert(boost::is_convertible::result_type, boost::multiprecision::number >::value, "Interoperability with this arithmetic type is not supported."); typedef boost::multiprecision::number ReturnType; }; namespace internal { template struct conj_retval; template struct conj_impl; template struct conj_retval > { typedef typename boost::multiprecision::detail::expression::result_type type; }; template struct conj_impl, true> { EIGEN_DEVICE_FUNC static inline typename boost::multiprecision::detail::expression::result_type run(const typename boost::multiprecision::detail::expression& x) { return conj(x); } }; } // namespace internal } // namespace Eigen #endif