// This file is part of Eigen, a lightweight C++ template library // for linear algebra. // // Copyright (C) 2008 Gael Guennebaud // // Eigen is free software; you can redistribute it and/or // modify it under the terms of the GNU Lesser General Public // License as published by the Free Software Foundation; either // version 3 of the License, or (at your option) any later version. // // Alternatively, you can redistribute it and/or // modify it under the terms of the GNU General Public License as // published by the Free Software Foundation; either version 2 of // the License, or (at your option) any later version. // // Eigen is distributed in the hope that it will be useful, but WITHOUT ANY // WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS // FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License or the // GNU General Public License for more details. // // You should have received a copy of the GNU Lesser General Public // License and a copy of the GNU General Public License along with // Eigen. If not, see . #ifndef EIGEN_ARRAY_FUNCTORS_H #define EIGEN_ARRAY_FUNCTORS_H /** \internal * \array_module * * \brief Template functor to add a scalar to a fixed other one * * \sa class CwiseUnaryOp, Array::operator+ */ /* If you wonder why doing the ei_pset1() in packetOp() is an optimization check ei_scalar_multiple_op */ template struct ei_scalar_add_op { typedef typename ei_packet_traits::type PacketScalar; // FIXME default copy constructors seems bugged with std::complex<> inline ei_scalar_add_op(const ei_scalar_add_op& other) : m_other(other.m_other) { } inline ei_scalar_add_op(const Scalar& other) : m_other(other) { } inline Scalar operator() (const Scalar& a) const { return a + m_other; } inline const PacketScalar packetOp(const PacketScalar& a) const { return ei_padd(a, ei_pset1(m_other)); } const Scalar m_other; }; template struct ei_functor_traits > { enum { Cost = NumTraits::AddCost, PacketAccess = ei_packet_traits::size>1 }; }; /** \internal * * \array_module * * \brief Template functor to compute the square root of a scalar * * \sa class CwiseUnaryOp, Cwise::sqrt() */ template struct ei_scalar_sqrt_op { EIGEN_EMPTY_STRUCT_CTOR(ei_scalar_sqrt_op) inline const Scalar operator() (const Scalar& a) const { return ei_sqrt(a); } typedef typename ei_packet_traits::type Packet; inline Packet packetOp(const Packet& a) const { return ei_psqrt(a); } }; template struct ei_functor_traits > { enum { Cost = 5 * NumTraits::MulCost, PacketAccess = ei_packet_traits::HasSqrt }; }; /** \internal * * \array_module * * \brief Template functor to compute the cosine of a scalar * * \sa class CwiseUnaryOp, Cwise::cos() */ template struct ei_scalar_cos_op { EIGEN_EMPTY_STRUCT_CTOR(ei_scalar_cos_op) inline Scalar operator() (const Scalar& a) const { return ei_cos(a); } typedef typename ei_packet_traits::type Packet; inline Packet packetOp(const Packet& a) const { return ei_pcos(a); } }; template struct ei_functor_traits > { enum { Cost = 5 * NumTraits::MulCost, PacketAccess = ei_packet_traits::HasCos }; }; /** \internal * * \array_module * * \brief Template functor to compute the sine of a scalar * * \sa class CwiseUnaryOp, Cwise::sin() */ template struct ei_scalar_sin_op { EIGEN_EMPTY_STRUCT_CTOR(ei_scalar_sin_op) inline const Scalar operator() (const Scalar& a) const { return ei_sin(a); } typedef typename ei_packet_traits::type Packet; inline Packet packetOp(const Packet& a) const { return ei_psin(a); } }; template struct ei_functor_traits > { enum { Cost = 5 * NumTraits::MulCost, PacketAccess = ei_packet_traits::HasSin }; }; /** \internal * * \array_module * * \brief Template functor to raise a scalar to a power * * \sa class CwiseUnaryOp, Cwise::pow */ template struct ei_scalar_pow_op { // FIXME default copy constructors seems bugged with std::complex<> inline ei_scalar_pow_op(const ei_scalar_pow_op& other) : m_exponent(other.m_exponent) { } inline ei_scalar_pow_op(const Scalar& exponent) : m_exponent(exponent) {} inline Scalar operator() (const Scalar& a) const { return ei_pow(a, m_exponent); } const Scalar m_exponent; }; template struct ei_functor_traits > { enum { Cost = 5 * NumTraits::MulCost, PacketAccess = false }; }; /** \internal * * \array_module * * \brief Template functor to compute the inverse of a scalar * * \sa class CwiseUnaryOp, Cwise::inverse() */ template struct ei_scalar_inverse_op { EIGEN_EMPTY_STRUCT_CTOR(ei_scalar_inverse_op) inline Scalar operator() (const Scalar& a) const { return Scalar(1)/a; } template inline const PacketScalar packetOp(const PacketScalar& a) const { return ei_pdiv(ei_pset1(Scalar(1)),a); } }; template struct ei_functor_traits > { enum { Cost = NumTraits::MulCost, PacketAccess = int(ei_packet_traits::size)>1 }; }; /** \internal * * \array_module * * \brief Template functor to compute the square of a scalar * * \sa class CwiseUnaryOp, Cwise::square() */ template struct ei_scalar_square_op { EIGEN_EMPTY_STRUCT_CTOR(ei_scalar_square_op) inline Scalar operator() (const Scalar& a) const { return a*a; } template inline const PacketScalar packetOp(const PacketScalar& a) const { return ei_pmul(a,a); } }; template struct ei_functor_traits > { enum { Cost = NumTraits::MulCost, PacketAccess = int(ei_packet_traits::size)>1 }; }; /** \internal * * \array_module * * \brief Template functor to compute the cube of a scalar * * \sa class CwiseUnaryOp, Cwise::cube() */ template struct ei_scalar_cube_op { EIGEN_EMPTY_STRUCT_CTOR(ei_scalar_cube_op) inline Scalar operator() (const Scalar& a) const { return a*a*a; } template inline const PacketScalar packetOp(const PacketScalar& a) const { return ei_pmul(a,ei_pmul(a,a)); } }; template struct ei_functor_traits > { enum { Cost = 2*NumTraits::MulCost, PacketAccess = int(ei_packet_traits::size)>1 }; }; // default ei_functor_traits for STL functors: template struct ei_functor_traits > { enum { Cost = NumTraits::MulCost, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = NumTraits::MulCost, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = NumTraits::AddCost, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = NumTraits::AddCost, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = NumTraits::AddCost, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = 1, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = 1, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = 1, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = 1, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = 1, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = 1, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = 1, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = 1, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = 1, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = ei_functor_traits::Cost, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = ei_functor_traits::Cost, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = 1 + ei_functor_traits::Cost, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = 1 + ei_functor_traits::Cost, PacketAccess = false }; }; #ifdef EIGEN_STDEXT_SUPPORT template struct ei_functor_traits > { enum { Cost = 0, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = 0, PacketAccess = false }; }; template struct ei_functor_traits > > { enum { Cost = 0, PacketAccess = false }; }; template struct ei_functor_traits > > { enum { Cost = 0, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = ei_functor_traits::Cost + ei_functor_traits::Cost, PacketAccess = false }; }; template struct ei_functor_traits > { enum { Cost = ei_functor_traits::Cost + ei_functor_traits::Cost + ei_functor_traits::Cost, PacketAccess = false }; }; #endif // EIGEN_STDEXT_SUPPORT #endif // EIGEN_ARRAY_FUNCTORS_H