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180 lines
6.5 KiB
C++
180 lines
6.5 KiB
C++
// This file is part of Eigen, a lightweight C++ template library
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// for linear algebra.
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//
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// Copyright (C) 2008-2014 Gael Guennebaud <gael.guennebaud@inria.fr>
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//
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// This Source Code Form is subject to the terms of the Mozilla
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// Public License v. 2.0. If a copy of the MPL was not distributed
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// with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
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#ifndef EIGEN_SPARSEUTIL_H
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#define EIGEN_SPARSEUTIL_H
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namespace Eigen {
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#ifdef NDEBUG
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#define EIGEN_DBG_SPARSE(X)
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#else
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#define EIGEN_DBG_SPARSE(X) X
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#endif
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#define EIGEN_SPARSE_INHERIT_ASSIGNMENT_OPERATOR(Derived, Op) \
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template<typename OtherDerived> \
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EIGEN_STRONG_INLINE Derived& operator Op(const Eigen::SparseMatrixBase<OtherDerived>& other) \
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{ \
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return Base::operator Op(other.derived()); \
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} \
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EIGEN_STRONG_INLINE Derived& operator Op(const Derived& other) \
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{ \
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return Base::operator Op(other); \
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}
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#define EIGEN_SPARSE_INHERIT_SCALAR_ASSIGNMENT_OPERATOR(Derived, Op) \
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template<typename Other> \
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EIGEN_STRONG_INLINE Derived& operator Op(const Other& scalar) \
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{ \
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return Base::operator Op(scalar); \
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}
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#define EIGEN_SPARSE_INHERIT_ASSIGNMENT_OPERATORS(Derived) \
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EIGEN_SPARSE_INHERIT_ASSIGNMENT_OPERATOR(Derived, =)
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#define EIGEN_SPARSE_PUBLIC_INTERFACE(Derived) \
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EIGEN_GENERIC_PUBLIC_INTERFACE(Derived)
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const int CoherentAccessPattern = 0x1;
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const int InnerRandomAccessPattern = 0x2 | CoherentAccessPattern;
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const int OuterRandomAccessPattern = 0x4 | CoherentAccessPattern;
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const int RandomAccessPattern = 0x8 | OuterRandomAccessPattern | InnerRandomAccessPattern;
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template<typename Derived> class SparseMatrixBase;
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template<typename _Scalar, int _Flags = 0, typename _StorageIndex = int> class SparseMatrix;
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template<typename _Scalar, int _Flags = 0, typename _StorageIndex = int> class DynamicSparseMatrix;
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template<typename _Scalar, int _Flags = 0, typename _StorageIndex = int> class SparseVector;
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template<typename _Scalar, int _Flags = 0, typename _StorageIndex = int> class MappedSparseMatrix;
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template<typename MatrixType, unsigned int UpLo> class SparseSelfAdjointView;
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template<typename Lhs, typename Rhs> class SparseDiagonalProduct;
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template<typename MatrixType> class SparseView;
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template<typename Lhs, typename Rhs> class SparseSparseProduct;
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template<typename Lhs, typename Rhs> class SparseTimeDenseProduct;
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template<typename Lhs, typename Rhs> class DenseTimeSparseProduct;
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template<typename Lhs, typename Rhs, bool Transpose> class SparseDenseOuterProduct;
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template<typename Lhs, typename Rhs> struct SparseSparseProductReturnType;
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template<typename Lhs, typename Rhs,
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int InnerSize = EIGEN_SIZE_MIN_PREFER_FIXED(internal::traits<Lhs>::ColsAtCompileTime,internal::traits<Rhs>::RowsAtCompileTime)> struct DenseSparseProductReturnType;
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template<typename Lhs, typename Rhs,
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int InnerSize = EIGEN_SIZE_MIN_PREFER_FIXED(internal::traits<Lhs>::ColsAtCompileTime,internal::traits<Rhs>::RowsAtCompileTime)> struct SparseDenseProductReturnType;
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template<typename MatrixType,int UpLo> class SparseSymmetricPermutationProduct;
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namespace internal {
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template<typename T,int Rows,int Cols,int Flags> struct sparse_eval;
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template<typename T> struct eval<T,Sparse>
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: sparse_eval<T, traits<T>::RowsAtCompileTime,traits<T>::ColsAtCompileTime,traits<T>::Flags>
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{};
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template<typename T,int Cols,int Flags> struct sparse_eval<T,1,Cols,Flags> {
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typedef typename traits<T>::Scalar _Scalar;
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typedef typename traits<T>::StorageIndex _StorageIndex;
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public:
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typedef SparseVector<_Scalar, RowMajor, _StorageIndex> type;
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};
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template<typename T,int Rows,int Flags> struct sparse_eval<T,Rows,1,Flags> {
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typedef typename traits<T>::Scalar _Scalar;
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typedef typename traits<T>::StorageIndex _StorageIndex;
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public:
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typedef SparseVector<_Scalar, ColMajor, _StorageIndex> type;
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};
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// TODO this seems almost identical to plain_matrix_type<T, Sparse>
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template<typename T,int Rows,int Cols,int Flags> struct sparse_eval {
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typedef typename traits<T>::Scalar _Scalar;
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typedef typename traits<T>::StorageIndex _StorageIndex;
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enum { _Options = ((Flags&RowMajorBit)==RowMajorBit) ? RowMajor : ColMajor };
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public:
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typedef SparseMatrix<_Scalar, _Options, _StorageIndex> type;
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};
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template<typename T,int Flags> struct sparse_eval<T,1,1,Flags> {
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typedef typename traits<T>::Scalar _Scalar;
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public:
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typedef Matrix<_Scalar, 1, 1> type;
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};
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template<typename T> struct plain_matrix_type<T,Sparse>
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{
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typedef typename traits<T>::Scalar _Scalar;
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typedef typename traits<T>::StorageIndex _StorageIndex;
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enum { _Options = ((evaluator<T>::Flags&RowMajorBit)==RowMajorBit) ? RowMajor : ColMajor };
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public:
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typedef SparseMatrix<_Scalar, _Options, _StorageIndex> type;
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};
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template<typename T>
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struct plain_object_eval<T,Sparse>
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: sparse_eval<T, traits<T>::RowsAtCompileTime,traits<T>::ColsAtCompileTime, evaluator<T>::Flags>
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{};
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template<typename Decomposition, typename RhsType>
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struct solve_traits<Decomposition,RhsType,Sparse>
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{
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typedef typename sparse_eval<RhsType, RhsType::RowsAtCompileTime, RhsType::ColsAtCompileTime,traits<RhsType>::Flags>::type PlainObject;
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};
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template<typename Derived>
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struct generic_xpr_base<Derived, MatrixXpr, Sparse>
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{
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typedef SparseMatrixBase<Derived> type;
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};
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struct SparseTriangularShape { static std::string debugName() { return "SparseTriangularShape"; } };
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struct SparseSelfAdjointShape { static std::string debugName() { return "SparseSelfAdjointShape"; } };
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template<> struct glue_shapes<SparseShape,SelfAdjointShape> { typedef SparseSelfAdjointShape type; };
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template<> struct glue_shapes<SparseShape,TriangularShape > { typedef SparseTriangularShape type; };
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} // end namespace internal
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/** \ingroup SparseCore_Module
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*
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* \class Triplet
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*
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* \brief A small structure to hold a non zero as a triplet (i,j,value).
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*
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* \sa SparseMatrix::setFromTriplets()
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*/
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template<typename Scalar, typename StorageIndex=typename SparseMatrix<Scalar>::StorageIndex >
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class Triplet
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{
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public:
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Triplet() : m_row(0), m_col(0), m_value(0) {}
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Triplet(const StorageIndex& i, const StorageIndex& j, const Scalar& v = Scalar(0))
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: m_row(i), m_col(j), m_value(v)
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{}
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/** \returns the row index of the element */
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const StorageIndex& row() const { return m_row; }
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/** \returns the column index of the element */
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const StorageIndex& col() const { return m_col; }
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/** \returns the value of the element */
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const Scalar& value() const { return m_value; }
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protected:
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StorageIndex m_row, m_col;
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Scalar m_value;
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};
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} // end namespace Eigen
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#endif // EIGEN_SPARSEUTIL_H
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