11 #ifndef EIGEN_GLOBAL_FUNCTIONS_H    12 #define EIGEN_GLOBAL_FUNCTIONS_H    14 #ifdef EIGEN_PARSED_BY_DOXYGEN    16 #define EIGEN_ARRAY_DECLARE_GLOBAL_UNARY(NAME,FUNCTOR,DOC_OP,DOC_DETAILS) \    23   template<typename Derived> \    24   inline const Eigen::CwiseUnaryOp<Eigen::internal::FUNCTOR<typename Derived::Scalar>, const Derived> \    25   NAME(const Eigen::ArrayBase<Derived>& x);    29 #define EIGEN_ARRAY_DECLARE_GLOBAL_UNARY(NAME,FUNCTOR,DOC_OP,DOC_DETAILS) \    30   template<typename Derived> \    31   inline const Eigen::CwiseUnaryOp<Eigen::internal::FUNCTOR<typename Derived::Scalar>, const Derived> \    32   (NAME)(const Eigen::ArrayBase<Derived>& x) { \    33     return Eigen::CwiseUnaryOp<Eigen::internal::FUNCTOR<typename Derived::Scalar>, const Derived>(x.derived()); \    36 #endif // EIGEN_PARSED_BY_DOXYGEN    38 #define EIGEN_ARRAY_DECLARE_GLOBAL_EIGEN_UNARY(NAME,FUNCTOR) \    40   template<typename Derived> \    41   struct NAME##_retval<ArrayBase<Derived> > \    43     typedef const Eigen::CwiseUnaryOp<Eigen::internal::FUNCTOR<typename Derived::Scalar>, const Derived> type; \    45   template<typename Derived> \    46   struct NAME##_impl<ArrayBase<Derived> > \    48     static inline typename NAME##_retval<ArrayBase<Derived> >::type run(const Eigen::ArrayBase<Derived>& x) \    50       return typename NAME##_retval<ArrayBase<Derived> >::type(x.derived()); \   100 #ifdef EIGEN_PARSED_BY_DOXYGEN   101   template<
typename Derived,
typename ScalarExponent>
   102   inline const CwiseBinaryOp<internal::scalar_pow_op<Derived::Scalar,ScalarExponent>,Derived,Constant<ScalarExponent> >
   105   template<
typename Derived,
typename ScalarExponent>
   106   inline typename internal::enable_if<   !(internal::is_same<typename Derived::Scalar,ScalarExponent>::value) && 
EIGEN_SCALAR_BINARY_SUPPORTED(pow,
typename Derived::Scalar,ScalarExponent),
   109     return x.derived().
pow(exponent);
   112   template<
typename Derived>
   115     return x.derived().
pow(exponent);
   130   template<
typename Derived,
typename ExponentDerived>
   153 #ifdef EIGEN_PARSED_BY_DOXYGEN   154   template<
typename Scalar,
typename Derived>
   158   template<
typename Scalar, 
typename Derived>
   167   template<
typename Derived>
   187 #endif // EIGEN_GLOBAL_FUNCTIONS_H EIGEN_DEVICE_FUNC const CoshReturnType cosh() const
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const CwiseAbs2ReturnType cwiseAbs2() const
EIGEN_DEVICE_FUNC const Log1pReturnType log1p() const
EIGEN_DEVICE_FUNC const CosReturnType cos() const
EIGEN_STRONG_INLINE EIGEN_DEVICE_FUNC bool() isfinite(const half &a)
EIGEN_STRONG_INLINE EIGEN_DEVICE_FUNC half pow(const half &a, const half &b)
internal::traits< Derived >::Scalar Scalar
#define EIGEN_ARRAY_DECLARE_GLOBAL_EIGEN_UNARY(NAME, FUNCTOR)
EIGEN_DEVICE_FUNC RealReturnType real() const
EIGEN_DEVICE_FUNC const Log1pReturnType log1p() const
EIGEN_DEVICE_FUNC RealReturnType real() const
const EIGEN_SCALAR_BINARYOP_EXPR_RETURN_TYPE(typename Derived::Scalar, Derived, pow) pow(const typename Derived
EIGEN_DEVICE_FUNC const RoundReturnType round() const
EIGEN_DEVICE_FUNC const ErfReturnType erf() const
EIGEN_DEVICE_FUNC const TanhReturnType tanh() const
EIGEN_DEVICE_FUNC const CubeReturnType cube() const
EIGEN_DEVICE_FUNC const TanhReturnType tanh() const
EIGEN_DEVICE_FUNC const SqrtReturnType sqrt() const
EIGEN_DEVICE_FUNC const TanReturnType tan() const
const Eigen::CwiseBinaryOp< Eigen::internal::scalar_pow_op< typename Derived::Scalar, typename ExponentDerived::Scalar >, const Derived, const ExponentDerived > pow(const Eigen::ArrayBase< Derived > &x, const Eigen::ArrayBase< ExponentDerived > &exponents)
EIGEN_DEVICE_FUNC const SinReturnType sin() const
EIGEN_DEVICE_FUNC const DigammaReturnType digamma() const
EIGEN_STRONG_INLINE EIGEN_DEVICE_FUNC bool() isinf(const half &a)
EIGEN_DEVICE_FUNC const LogReturnType log() const
EIGEN_DEVICE_FUNC const ErfcReturnType erfc() const
EIGEN_DEVICE_FUNC const SinhReturnType sinh() const
EIGEN_DEVICE_FUNC const LogReturnType log() const
EIGEN_DEVICE_FUNC const InverseReturnType inverse() const
EIGEN_DEVICE_FUNC const CubeReturnType cube() const
EIGEN_DEVICE_FUNC const LgammaReturnType lgamma() const
EIGEN_DEVICE_FUNC const CwiseSqrtReturnType cwiseSqrt() const
internal::enable_if< !(internal::is_same< typename Derived::Scalar, Scalar >::value) &&EIGEN_SCALAR_BINARY_SUPPORTED(pow, Scalar, typename Derived::Scalar), const EIGEN_SCALAR_BINARYOP_EXPR_RETURN_TYPE(Scalar, Derived, pow) >::type pow(const Scalar &x, const Eigen::ArrayBase< Derived > &exponents)
EIGEN_DEVICE_FUNC const InverseReturnType inverse() const
EIGEN_DEVICE_FUNC const AtanReturnType atan() const
EIGEN_DEVICE_FUNC const ExpReturnType exp() const
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const AbsReturnType abs() const
EIGEN_DEVICE_FUNC const FloorReturnType floor() const
EIGEN_DEVICE_FUNC const ImagReturnType imag() const
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const ArgReturnType arg() const
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Abs2ReturnType abs2() const
Generic expression where a coefficient-wise binary operator is applied to two expressions. 
EIGEN_DEVICE_FUNC const SquareReturnType square() const
#define EIGEN_ARRAY_DECLARE_GLOBAL_UNARY(NAME, FUNCTOR, DOC_OP, DOC_DETAILS)
CwiseNullaryOp< scalar_constant_op< Scalar >, const typename conditional< is_same< typename traits< Expr >::XprKind, MatrixXpr >::value, matrix_type, array_type >::type > type
EIGEN_DEVICE_FUNC const DigammaReturnType digamma() const
EIGEN_DEVICE_FUNC const CeilReturnType ceil() const
EIGEN_DEVICE_FUNC const AcosReturnType acos() const
EIGEN_DEVICE_FUNC const SquareReturnType square() const
EIGEN_DEVICE_FUNC ConjugateReturnType conjugate() const
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const ArgReturnType arg() const
#define EIGEN_SCALAR_BINARY_SUPPORTED(OPNAME, TYPEA, TYPEB)
EIGEN_DEVICE_FUNC const SignReturnType sign() const
internal::enable_if< !(internal::is_same< typename Derived::Scalar, ScalarExponent >::value) &&EIGEN_SCALAR_BINARY_SUPPORTED(pow, typename Derived::Scalar, ScalarExponent), const EIGEN_EXPR_BINARYOP_SCALAR_RETURN_TYPE(Derived, ScalarExponent, pow) >::type pow(const Eigen::ArrayBase< Derived > &x, const ScalarExponent &exponent)
EIGEN_DEVICE_FUNC const RsqrtReturnType rsqrt() const
EIGEN_DEVICE_FUNC const SqrtReturnType sqrt() const
EIGEN_DEVICE_FUNC const SinhReturnType sinh() const
EIGEN_DEVICE_FUNC const LgammaReturnType lgamma() const
Base class for all 1D and 2D array, and related expressions. 
EIGEN_DEVICE_FUNC const AsinReturnType asin() const
EIGEN_DEVICE_FUNC ConjugateReturnType conjugate() const
EIGEN_DEVICE_FUNC const FloorReturnType floor() const
EIGEN_DEVICE_FUNC const RsqrtReturnType rsqrt() const
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const CwiseAbsReturnType cwiseAbs() const
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Abs2ReturnType abs2() const
EIGEN_DEVICE_FUNC const AcosReturnType acos() const
EIGEN_DEVICE_FUNC const ErfReturnType erf() const
EIGEN_DEVICE_FUNC const AtanReturnType atan() const
EIGEN_DEVICE_FUNC const Log10ReturnType log10() const
EIGEN_DEVICE_FUNC const TanReturnType tan() const
EIGEN_DEVICE_FUNC const SignReturnType sign() const
EIGEN_DEVICE_FUNC const ImagReturnType imag() const
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const AbsReturnType abs() const
EIGEN_DEVICE_FUNC const ErfcReturnType erfc() const
EIGEN_DEVICE_FUNC const CosReturnType cos() const
EIGEN_DEVICE_FUNC const ExpReturnType exp() const
EIGEN_STRONG_INLINE EIGEN_DEVICE_FUNC bool() isnan(const half &a)
const EIGEN_EXPR_BINARYOP_SCALAR_RETURN_TYPE(Derived, typename Derived::Scalar, pow) pow(const Eigen
EIGEN_DEVICE_FUNC const CoshReturnType cosh() const
EIGEN_DEVICE_FUNC const AsinReturnType asin() const
EIGEN_DEVICE_FUNC const CeilReturnType ceil() const
EIGEN_DEVICE_FUNC const SinReturnType sin() const
EIGEN_DEVICE_FUNC const RoundReturnType round() const