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139 lines
5.9 KiB
C++
139 lines
5.9 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) 2009-2015 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_SPARSE_DIAGONAL_PRODUCT_H
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#define EIGEN_SPARSE_DIAGONAL_PRODUCT_H
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// IWYU pragma: private
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#include "./InternalHeaderCheck.h"
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namespace Eigen {
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// The product of a diagonal matrix with a sparse matrix can be easily
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// implemented using expression template.
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// We have two consider very different cases:
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// 1 - diag * row-major sparse
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// => each inner vector <=> scalar * sparse vector product
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// => so we can reuse CwiseUnaryOp::InnerIterator
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// 2 - diag * col-major sparse
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// => each inner vector <=> densevector * sparse vector cwise product
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// => again, we can reuse specialization of CwiseBinaryOp::InnerIterator
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// for that particular case
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// The two other cases are symmetric.
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namespace internal {
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enum { SDP_AsScalarProduct, SDP_AsCwiseProduct };
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template <typename SparseXprType, typename DiagonalCoeffType, int SDP_Tag>
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struct sparse_diagonal_product_evaluator;
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template <typename Lhs, typename Rhs, int ProductTag>
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struct product_evaluator<Product<Lhs, Rhs, DefaultProduct>, ProductTag, DiagonalShape, SparseShape>
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: public sparse_diagonal_product_evaluator<Rhs, typename Lhs::DiagonalVectorType,
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Rhs::Flags & RowMajorBit ? SDP_AsScalarProduct : SDP_AsCwiseProduct> {
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typedef Product<Lhs, Rhs, DefaultProduct> XprType;
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enum { CoeffReadCost = HugeCost, Flags = Rhs::Flags & RowMajorBit, Alignment = 0 }; // FIXME CoeffReadCost & Flags
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typedef sparse_diagonal_product_evaluator<Rhs, typename Lhs::DiagonalVectorType,
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Rhs::Flags & RowMajorBit ? SDP_AsScalarProduct : SDP_AsCwiseProduct>
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Base;
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explicit product_evaluator(const XprType &xpr) : Base(xpr.rhs(), xpr.lhs().diagonal()) {}
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};
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template <typename Lhs, typename Rhs, int ProductTag>
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struct product_evaluator<Product<Lhs, Rhs, DefaultProduct>, ProductTag, SparseShape, DiagonalShape>
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: public sparse_diagonal_product_evaluator<Lhs, Transpose<const typename Rhs::DiagonalVectorType>,
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Lhs::Flags & RowMajorBit ? SDP_AsCwiseProduct : SDP_AsScalarProduct> {
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typedef Product<Lhs, Rhs, DefaultProduct> XprType;
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enum { CoeffReadCost = HugeCost, Flags = Lhs::Flags & RowMajorBit, Alignment = 0 }; // FIXME CoeffReadCost & Flags
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typedef sparse_diagonal_product_evaluator<Lhs, Transpose<const typename Rhs::DiagonalVectorType>,
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Lhs::Flags & RowMajorBit ? SDP_AsCwiseProduct : SDP_AsScalarProduct>
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Base;
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explicit product_evaluator(const XprType &xpr) : Base(xpr.lhs(), xpr.rhs().diagonal().transpose()) {}
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};
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template <typename SparseXprType, typename DiagonalCoeffType>
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struct sparse_diagonal_product_evaluator<SparseXprType, DiagonalCoeffType, SDP_AsScalarProduct> {
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protected:
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typedef typename evaluator<SparseXprType>::InnerIterator SparseXprInnerIterator;
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typedef typename SparseXprType::Scalar Scalar;
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public:
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class InnerIterator : public SparseXprInnerIterator {
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public:
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InnerIterator(const sparse_diagonal_product_evaluator &xprEval, Index outer)
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: SparseXprInnerIterator(xprEval.m_sparseXprImpl, outer), m_coeff(xprEval.m_diagCoeffImpl.coeff(outer)) {}
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EIGEN_STRONG_INLINE Scalar value() const { return m_coeff * SparseXprInnerIterator::value(); }
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protected:
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typename DiagonalCoeffType::Scalar m_coeff;
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};
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sparse_diagonal_product_evaluator(const SparseXprType &sparseXpr, const DiagonalCoeffType &diagCoeff)
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: m_sparseXprImpl(sparseXpr), m_diagCoeffImpl(diagCoeff) {}
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Index nonZerosEstimate() const { return m_sparseXprImpl.nonZerosEstimate(); }
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protected:
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evaluator<SparseXprType> m_sparseXprImpl;
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evaluator<DiagonalCoeffType> m_diagCoeffImpl;
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};
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template <typename SparseXprType, typename DiagCoeffType>
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struct sparse_diagonal_product_evaluator<SparseXprType, DiagCoeffType, SDP_AsCwiseProduct> {
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typedef typename SparseXprType::Scalar Scalar;
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typedef typename SparseXprType::StorageIndex StorageIndex;
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typedef typename nested_eval<DiagCoeffType, SparseXprType::IsRowMajor ? SparseXprType::RowsAtCompileTime
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: SparseXprType::ColsAtCompileTime>::type
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DiagCoeffNested;
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class InnerIterator {
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typedef typename evaluator<SparseXprType>::InnerIterator SparseXprIter;
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public:
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InnerIterator(const sparse_diagonal_product_evaluator &xprEval, Index outer)
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: m_sparseIter(xprEval.m_sparseXprEval, outer), m_diagCoeffNested(xprEval.m_diagCoeffNested) {}
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inline Scalar value() const { return m_sparseIter.value() * m_diagCoeffNested.coeff(index()); }
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inline StorageIndex index() const { return m_sparseIter.index(); }
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inline Index outer() const { return m_sparseIter.outer(); }
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inline Index col() const { return SparseXprType::IsRowMajor ? m_sparseIter.index() : m_sparseIter.outer(); }
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inline Index row() const { return SparseXprType::IsRowMajor ? m_sparseIter.outer() : m_sparseIter.index(); }
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EIGEN_STRONG_INLINE InnerIterator &operator++() {
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++m_sparseIter;
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return *this;
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}
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inline operator bool() const { return m_sparseIter; }
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protected:
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SparseXprIter m_sparseIter;
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DiagCoeffNested m_diagCoeffNested;
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};
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sparse_diagonal_product_evaluator(const SparseXprType &sparseXpr, const DiagCoeffType &diagCoeff)
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: m_sparseXprEval(sparseXpr), m_diagCoeffNested(diagCoeff) {}
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Index nonZerosEstimate() const { return m_sparseXprEval.nonZerosEstimate(); }
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protected:
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evaluator<SparseXprType> m_sparseXprEval;
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DiagCoeffNested m_diagCoeffNested;
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};
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} // end namespace internal
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} // end namespace Eigen
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#endif // EIGEN_SPARSE_DIAGONAL_PRODUCT_H
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