// This file is part of Eigen, a lightweight C++ template library // for linear algebra. // // Copyright (C) 2009 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_REPLICATE_H #define EIGEN_REPLICATE_H /** \nonstableyet * \class Replicate * * \brief Expression of the multiple replication of a matrix or vector * * \param MatrixType the type of the object we are replicating * * This class represents an expression of the multiple replication of a matrix or vector. * It is the return type of DenseBase::replicate() and most of the time * this is the only way it is used. * * \sa DenseBase::replicate() */ template struct ei_traits > : ei_traits { typedef typename MatrixType::Scalar Scalar; typedef typename ei_traits::StorageType StorageType; typedef typename ei_nested::type MatrixTypeNested; typedef typename ei_unref::type _MatrixTypeNested; enum { RowsAtCompileTime = RowFactor==Dynamic || int(MatrixType::RowsAtCompileTime)==Dynamic ? Dynamic : RowFactor * MatrixType::RowsAtCompileTime, ColsAtCompileTime = ColFactor==Dynamic || int(MatrixType::ColsAtCompileTime)==Dynamic ? Dynamic : ColFactor * MatrixType::ColsAtCompileTime, MaxRowsAtCompileTime = RowsAtCompileTime, MaxColsAtCompileTime = ColsAtCompileTime, Flags = _MatrixTypeNested::Flags & HereditaryBits, CoeffReadCost = _MatrixTypeNested::CoeffReadCost }; }; template class Replicate : public MatrixType::template MakeBase< Replicate >::Type { public: typedef typename MatrixType::template MakeBase< Replicate >::Type Base; _EIGEN_GENERIC_PUBLIC_INTERFACE(Replicate) template inline explicit Replicate(const OriginalMatrixType& matrix) : m_matrix(matrix), m_rowFactor(RowFactor), m_colFactor(ColFactor) { EIGEN_STATIC_ASSERT((ei_is_same_type::ret), THE_MATRIX_OR_EXPRESSION_THAT_YOU_PASSED_DOES_NOT_HAVE_THE_EXPECTED_TYPE) ei_assert(RowFactor!=Dynamic && ColFactor!=Dynamic); } template inline Replicate(const OriginalMatrixType& matrix, int rowFactor, int colFactor) : m_matrix(matrix), m_rowFactor(rowFactor), m_colFactor(colFactor) { EIGEN_STATIC_ASSERT((ei_is_same_type::ret), THE_MATRIX_OR_EXPRESSION_THAT_YOU_PASSED_DOES_NOT_HAVE_THE_EXPECTED_TYPE) } inline int rows() const { return m_matrix.rows() * m_rowFactor.value(); } inline int cols() const { return m_matrix.cols() * m_colFactor.value(); } inline Scalar coeff(int row, int col) const { return m_matrix.coeff(row%m_matrix.rows(), col%m_matrix.cols()); } protected: const typename MatrixType::Nested m_matrix; const ei_int_if_dynamic m_rowFactor; const ei_int_if_dynamic m_colFactor; }; /** \nonstableyet * \return an expression of the replication of \c *this * * Example: \include MatrixBase_replicate.cpp * Output: \verbinclude MatrixBase_replicate.out * * \sa VectorwiseOp::replicate(), DenseBase::replicate(int,int), class Replicate */ template template inline const Replicate DenseBase::replicate() const { return Replicate(derived()); } /** \nonstableyet * \return an expression of the replication of \c *this * * Example: \include MatrixBase_replicate_int_int.cpp * Output: \verbinclude MatrixBase_replicate_int_int.out * * \sa VectorwiseOp::replicate(), DenseBase::replicate(), class Replicate */ template inline const Replicate DenseBase::replicate(int rowFactor,int colFactor) const { return Replicate(derived(),rowFactor,colFactor); } /** \nonstableyet * \return an expression of the replication of each column (or row) of \c *this * * Example: \include DirectionWise_replicate_int.cpp * Output: \verbinclude DirectionWise_replicate_int.out * * \sa VectorwiseOp::replicate(), DenseBase::replicate(), class Replicate */ template const Replicate VectorwiseOp::replicate(int factor) const { return Replicate (_expression(),Direction==Vertical?factor:1,Direction==Horizontal?factor:1); } #endif // EIGEN_REPLICATE_H