typedef CwiseUnaryOp, const Derived> AbsReturnType; typedef CwiseUnaryOp, const Derived> ArgReturnType; typedef CwiseUnaryOp, const Derived> Abs2ReturnType; typedef CwiseUnaryOp, const Derived> SqrtReturnType; typedef CwiseUnaryOp, const Derived> RsqrtReturnType; typedef CwiseUnaryOp, const Derived> SignReturnType; typedef CwiseUnaryOp, const Derived> InverseReturnType; typedef CwiseUnaryOp, const Derived> BooleanNotReturnType; typedef CwiseUnaryOp, const Derived> ExpReturnType; typedef CwiseUnaryOp, const Derived> LogReturnType; typedef CwiseUnaryOp, const Derived> Log1pReturnType; typedef CwiseUnaryOp, const Derived> Log10ReturnType; typedef CwiseUnaryOp, const Derived> CosReturnType; typedef CwiseUnaryOp, const Derived> SinReturnType; typedef CwiseUnaryOp, const Derived> TanReturnType; typedef CwiseUnaryOp, const Derived> AcosReturnType; typedef CwiseUnaryOp, const Derived> AsinReturnType; typedef CwiseUnaryOp, const Derived> AtanReturnType; typedef CwiseUnaryOp, const Derived> TanhReturnType; typedef CwiseUnaryOp, const Derived> SinhReturnType; typedef CwiseUnaryOp, const Derived> CoshReturnType; typedef CwiseUnaryOp, const Derived> SquareReturnType; typedef CwiseUnaryOp, const Derived> CubeReturnType; typedef CwiseUnaryOp, const Derived> RoundReturnType; typedef CwiseUnaryOp, const Derived> FloorReturnType; typedef CwiseUnaryOp, const Derived> CeilReturnType; typedef CwiseUnaryOp, const Derived> IsNaNReturnType; typedef CwiseUnaryOp, const Derived> IsInfReturnType; typedef CwiseUnaryOp, const Derived> IsFiniteReturnType; /** \returns an expression of the coefficient-wise absolute value of \c *this * * Example: \include Cwise_abs.cpp * Output: \verbinclude Cwise_abs.out * * \sa Math functions, abs2() */ EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const AbsReturnType abs() const { return AbsReturnType(derived()); } /** \returns an expression of the coefficient-wise phase angle of \c *this * * Example: \include Cwise_arg.cpp * Output: \verbinclude Cwise_arg.out * * \sa abs() */ EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const ArgReturnType arg() const { return ArgReturnType(derived()); } /** \returns an expression of the coefficient-wise squared absolute value of \c *this * * Example: \include Cwise_abs2.cpp * Output: \verbinclude Cwise_abs2.out * * \sa Math functions, abs(), square() */ EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const Abs2ReturnType abs2() const { return Abs2ReturnType(derived()); } /** \returns an expression of the coefficient-wise exponential of *this. * * This function computes the coefficient-wise exponential. The function MatrixBase::exp() in the * unsupported module MatrixFunctions computes the matrix exponential. * * Example: \include Cwise_exp.cpp * Output: \verbinclude Cwise_exp.out * * \sa Math functions, pow(), log(), sin(), cos() */ EIGEN_DEVICE_FUNC inline const ExpReturnType exp() const { return ExpReturnType(derived()); } /** \returns an expression of the coefficient-wise logarithm of *this. * * This function computes the coefficient-wise logarithm. The function MatrixBase::log() in the * unsupported module MatrixFunctions computes the matrix logarithm. * * Example: \include Cwise_log.cpp * Output: \verbinclude Cwise_log.out * * \sa Math functions, exp() */ EIGEN_DEVICE_FUNC inline const LogReturnType log() const { return LogReturnType(derived()); } /** \returns an expression of the coefficient-wise logarithm of 1 plus \c *this. * * In exact arithmetic, \c x.log() is equivalent to \c (x+1).log(), * however, with finite precision, this function is much more accurate when \c x is close to zero. * * \sa Math functions, log() */ EIGEN_DEVICE_FUNC inline const Log1pReturnType log1p() const { return Log1pReturnType(derived()); } /** \returns an expression of the coefficient-wise base-10 logarithm of *this. * * This function computes the coefficient-wise base-10 logarithm. * * Example: \include Cwise_log10.cpp * Output: \verbinclude Cwise_log10.out * * \sa Math functions, log() */ EIGEN_DEVICE_FUNC inline const Log10ReturnType log10() const { return Log10ReturnType(derived()); } /** \returns an expression of the coefficient-wise square root of *this. * * This function computes the coefficient-wise square root. The function MatrixBase::sqrt() in the * unsupported module MatrixFunctions computes the matrix square root. * * Example: \include Cwise_sqrt.cpp * Output: \verbinclude Cwise_sqrt.out * * \sa Math functions, pow(), square() */ EIGEN_DEVICE_FUNC inline const SqrtReturnType sqrt() const { return SqrtReturnType(derived()); } /** \returns an expression of the coefficient-wise inverse square root of *this. * * This function computes the coefficient-wise inverse square root. * * Example: \include Cwise_sqrt.cpp * Output: \verbinclude Cwise_sqrt.out * * \sa pow(), square() */ EIGEN_DEVICE_FUNC inline const RsqrtReturnType rsqrt() const { return RsqrtReturnType(derived()); } /** \returns an expression of the coefficient-wise signum of *this. * * This function computes the coefficient-wise signum. * * Example: \include Cwise_sign.cpp * Output: \verbinclude Cwise_sign.out * * \sa pow(), square() */ EIGEN_DEVICE_FUNC inline const SignReturnType sign() const { return SignReturnType(derived()); } /** \returns an expression of the coefficient-wise cosine of *this. * * This function computes the coefficient-wise cosine. The function MatrixBase::cos() in the * unsupported module MatrixFunctions computes the matrix cosine. * * Example: \include Cwise_cos.cpp * Output: \verbinclude Cwise_cos.out * * \sa Math functions, sin(), acos() */ EIGEN_DEVICE_FUNC inline const CosReturnType cos() const { return CosReturnType(derived()); } /** \returns an expression of the coefficient-wise sine of *this. * * This function computes the coefficient-wise sine. The function MatrixBase::sin() in the * unsupported module MatrixFunctions computes the matrix sine. * * Example: \include Cwise_sin.cpp * Output: \verbinclude Cwise_sin.out * * \sa Math functions, cos(), asin() */ EIGEN_DEVICE_FUNC inline const SinReturnType sin() const { return SinReturnType(derived()); } /** \returns an expression of the coefficient-wise tan of *this. * * Example: \include Cwise_tan.cpp * Output: \verbinclude Cwise_tan.out * * \sa Math functions, cos(), sin() */ EIGEN_DEVICE_FUNC inline const TanReturnType tan() const { return TanReturnType(derived()); } /** \returns an expression of the coefficient-wise arc tan of *this. * * Example: \include Cwise_atan.cpp * Output: \verbinclude Cwise_atan.out * * \sa Math functions, tan(), asin(), acos() */ EIGEN_DEVICE_FUNC inline const AtanReturnType atan() const { return AtanReturnType(derived()); } /** \returns an expression of the coefficient-wise arc cosine of *this. * * Example: \include Cwise_acos.cpp * Output: \verbinclude Cwise_acos.out * * \sa Math functions, cos(), asin() */ EIGEN_DEVICE_FUNC inline const AcosReturnType acos() const { return AcosReturnType(derived()); } /** \returns an expression of the coefficient-wise arc sine of *this. * * Example: \include Cwise_asin.cpp * Output: \verbinclude Cwise_asin.out * * \sa Math functions, sin(), acos() */ EIGEN_DEVICE_FUNC inline const AsinReturnType asin() const { return AsinReturnType(derived()); } /** \returns an expression of the coefficient-wise hyperbolic tan of *this. * * Example: \include Cwise_tanh.cpp * Output: \verbinclude Cwise_tanh.out * * \sa Math functions, tan(), sinh(), cosh() */ EIGEN_DEVICE_FUNC inline const TanhReturnType tanh() const { return TanhReturnType(derived()); } /** \returns an expression of the coefficient-wise hyperbolic sin of *this. * * Example: \include Cwise_sinh.cpp * Output: \verbinclude Cwise_sinh.out * * \sa Math functions, sin(), tanh(), cosh() */ EIGEN_DEVICE_FUNC inline const SinhReturnType sinh() const { return SinhReturnType(derived()); } /** \returns an expression of the coefficient-wise hyperbolic cos of *this. * * Example: \include Cwise_cosh.cpp * Output: \verbinclude Cwise_cosh.out * * \sa Math functions, tan(), sinh(), cosh() */ EIGEN_DEVICE_FUNC inline const CoshReturnType cosh() const { return CoshReturnType(derived()); } /** \returns an expression of the coefficient-wise inverse of *this. * * Example: \include Cwise_inverse.cpp * Output: \verbinclude Cwise_inverse.out * * \sa operator/(), operator*() */ EIGEN_DEVICE_FUNC inline const InverseReturnType inverse() const { return InverseReturnType(derived()); } /** \returns an expression of the coefficient-wise square of *this. * * Example: \include Cwise_square.cpp * Output: \verbinclude Cwise_square.out * * \sa Math functions, abs2(), cube(), pow() */ EIGEN_DEVICE_FUNC inline const SquareReturnType square() const { return SquareReturnType(derived()); } /** \returns an expression of the coefficient-wise cube of *this. * * Example: \include Cwise_cube.cpp * Output: \verbinclude Cwise_cube.out * * \sa Math functions, square(), pow() */ EIGEN_DEVICE_FUNC inline const CubeReturnType cube() const { return CubeReturnType(derived()); } /** \returns an expression of the coefficient-wise round of *this. * * Example: \include Cwise_round.cpp * Output: \verbinclude Cwise_round.out * * \sa Math functions, ceil(), floor() */ EIGEN_DEVICE_FUNC inline const RoundReturnType round() const { return RoundReturnType(derived()); } /** \returns an expression of the coefficient-wise floor of *this. * * Example: \include Cwise_floor.cpp * Output: \verbinclude Cwise_floor.out * * \sa Math functions, ceil(), round() */ EIGEN_DEVICE_FUNC inline const FloorReturnType floor() const { return FloorReturnType(derived()); } /** \returns an expression of the coefficient-wise ceil of *this. * * Example: \include Cwise_ceil.cpp * Output: \verbinclude Cwise_ceil.out * * \sa Math functions, floor(), round() */ EIGEN_DEVICE_FUNC inline const CeilReturnType ceil() const { return CeilReturnType(derived()); } /** \returns an expression of the coefficient-wise isnan of *this. * * Example: \include Cwise_isNaN.cpp * Output: \verbinclude Cwise_isNaN.out * * \sa isfinite(), isinf() */ EIGEN_DEVICE_FUNC inline const IsNaNReturnType isNaN() const { return IsNaNReturnType(derived()); } /** \returns an expression of the coefficient-wise isinf of *this. * * Example: \include Cwise_isInf.cpp * Output: \verbinclude Cwise_isInf.out * * \sa isnan(), isfinite() */ EIGEN_DEVICE_FUNC inline const IsInfReturnType isInf() const { return IsInfReturnType(derived()); } /** \returns an expression of the coefficient-wise isfinite of *this. * * Example: \include Cwise_isFinite.cpp * Output: \verbinclude Cwise_isFinite.out * * \sa isnan(), isinf() */ EIGEN_DEVICE_FUNC inline const IsFiniteReturnType isFinite() const { return IsFiniteReturnType(derived()); } /** \returns an expression of the coefficient-wise ! operator of *this * * \warning this operator is for expression of bool only. * * Example: \include Cwise_boolean_not.cpp * Output: \verbinclude Cwise_boolean_not.out * * \sa operator!=() */ EIGEN_DEVICE_FUNC inline const BooleanNotReturnType operator!() const { EIGEN_STATIC_ASSERT((internal::is_same::value), THIS_METHOD_IS_ONLY_FOR_EXPRESSIONS_OF_BOOL); return BooleanNotReturnType(derived()); } // --- SpecialFunctions module --- typedef CwiseUnaryOp, const Derived> LgammaReturnType; typedef CwiseUnaryOp, const Derived> DigammaReturnType; typedef CwiseUnaryOp, const Derived> ErfReturnType; typedef CwiseUnaryOp, const Derived> ErfcReturnType; /** \cpp11 \returns an expression of the coefficient-wise ln(|gamma(*this)|). * * \specialfunctions_module * * Example: \include Cwise_lgamma.cpp * Output: \verbinclude Cwise_lgamma.out * * \note This function supports only float and double scalar types in c++11 mode. To support other scalar types, * or float/double in non c++11 mode, the user has to provide implementations of lgamma(T) for any scalar * type T to be supported. * * \sa Math functions, digamma() */ EIGEN_DEVICE_FUNC inline const LgammaReturnType lgamma() const { return LgammaReturnType(derived()); } /** \returns an expression of the coefficient-wise digamma (psi, derivative of lgamma). * * \specialfunctions_module * * \note This function supports only float and double scalar types. To support other scalar types, * the user has to provide implementations of digamma(T) for any scalar * type T to be supported. * * \sa Math functions, Eigen::digamma(), Eigen::polygamma(), lgamma() */ EIGEN_DEVICE_FUNC inline const DigammaReturnType digamma() const { return DigammaReturnType(derived()); } /** \cpp11 \returns an expression of the coefficient-wise Gauss error * function of *this. * * \specialfunctions_module * * Example: \include Cwise_erf.cpp * Output: \verbinclude Cwise_erf.out * * \note This function supports only float and double scalar types in c++11 mode. To support other scalar types, * or float/double in non c++11 mode, the user has to provide implementations of erf(T) for any scalar * type T to be supported. * * \sa Math functions, erfc() */ EIGEN_DEVICE_FUNC inline const ErfReturnType erf() const { return ErfReturnType(derived()); } /** \cpp11 \returns an expression of the coefficient-wise Complementary error * function of *this. * * \specialfunctions_module * * Example: \include Cwise_erfc.cpp * Output: \verbinclude Cwise_erfc.out * * \note This function supports only float and double scalar types in c++11 mode. To support other scalar types, * or float/double in non c++11 mode, the user has to provide implementations of erfc(T) for any scalar * type T to be supported. * * \sa Math functions, erf() */ EIGEN_DEVICE_FUNC inline const ErfcReturnType erfc() const { return ErfcReturnType(derived()); }