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DiagonalProduct.h
1 // This file is part of Eigen, a lightweight C++ template library
2 // for linear algebra.
3 //
4 // Copyright (C) 2008 Gael Guennebaud <[email protected]>
5 // Copyright (C) 2007-2009 Benoit Jacob <[email protected]>
6 //
7 // This Source Code Form is subject to the terms of the Mozilla
8 // Public License v. 2.0. If a copy of the MPL was not distributed
9 // with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
10 
11 #ifndef EIGEN_DIAGONALPRODUCT_H
12 #define EIGEN_DIAGONALPRODUCT_H
13 
14 namespace Eigen {
15 
16 namespace internal {
17 template<typename MatrixType, typename DiagonalType, int ProductOrder>
18 struct traits<DiagonalProduct<MatrixType, DiagonalType, ProductOrder> >
19  : traits<MatrixType>
20 {
21  typedef typename scalar_product_traits<typename MatrixType::Scalar, typename DiagonalType::Scalar>::ReturnType Scalar;
22  enum {
23  RowsAtCompileTime = MatrixType::RowsAtCompileTime,
24  ColsAtCompileTime = MatrixType::ColsAtCompileTime,
25  MaxRowsAtCompileTime = MatrixType::MaxRowsAtCompileTime,
26  MaxColsAtCompileTime = MatrixType::MaxColsAtCompileTime,
27 
28  _StorageOrder = MatrixType::Flags & RowMajorBit ? RowMajor : ColMajor,
29  _ScalarAccessOnDiag = !((int(_StorageOrder) == ColMajor && int(ProductOrder) == OnTheLeft)
30  ||(int(_StorageOrder) == RowMajor && int(ProductOrder) == OnTheRight)),
31  _SameTypes = is_same<typename MatrixType::Scalar, typename DiagonalType::Scalar>::value,
32  // FIXME currently we need same types, but in the future the next rule should be the one
33  //_Vectorizable = bool(int(MatrixType::Flags)&PacketAccessBit) && ((!_PacketOnDiag) || (_SameTypes && bool(int(DiagonalType::DiagonalVectorType::Flags)&PacketAccessBit))),
34  _Vectorizable = bool(int(MatrixType::Flags)&PacketAccessBit) && _SameTypes && (_ScalarAccessOnDiag || (bool(int(DiagonalType::DiagonalVectorType::Flags)&PacketAccessBit))),
35  _LinearAccessMask = (RowsAtCompileTime==1 || ColsAtCompileTime==1) ? LinearAccessBit : 0,
36 
37  Flags = ((HereditaryBits|_LinearAccessMask|AlignedBit) & (unsigned int)(MatrixType::Flags)) | (_Vectorizable ? PacketAccessBit : 0),//(int(MatrixType::Flags)&int(DiagonalType::DiagonalVectorType::Flags)&AlignedBit),
38  Cost0 = EIGEN_ADD_COST(NumTraits<Scalar>::MulCost, MatrixType::CoeffReadCost),
39  CoeffReadCost = EIGEN_ADD_COST(Cost0,DiagonalType::DiagonalVectorType::CoeffReadCost)
40  };
41 };
42 }
43 
44 template<typename MatrixType, typename DiagonalType, int ProductOrder>
45 class DiagonalProduct : internal::no_assignment_operator,
46  public MatrixBase<DiagonalProduct<MatrixType, DiagonalType, ProductOrder> >
47 {
48  public:
49 
50  typedef MatrixBase<DiagonalProduct> Base;
51  EIGEN_DENSE_PUBLIC_INTERFACE(DiagonalProduct)
52 
53  inline DiagonalProduct(const MatrixType& matrix, const DiagonalType& diagonal)
54  : m_matrix(matrix), m_diagonal(diagonal)
55  {
56  eigen_assert(diagonal.diagonal().size() == (ProductOrder == OnTheLeft ? matrix.rows() : matrix.cols()));
57  }
58 
59  EIGEN_STRONG_INLINE Index rows() const { return m_matrix.rows(); }
60  EIGEN_STRONG_INLINE Index cols() const { return m_matrix.cols(); }
61 
62  EIGEN_STRONG_INLINE const Scalar coeff(Index row, Index col) const
63  {
64  return m_diagonal.diagonal().coeff(ProductOrder == OnTheLeft ? row : col) * m_matrix.coeff(row, col);
65  }
66 
67  EIGEN_STRONG_INLINE const Scalar coeff(Index idx) const
68  {
69  enum {
70  StorageOrder = int(MatrixType::Flags) & RowMajorBit ? RowMajor : ColMajor
71  };
72  return coeff(int(StorageOrder)==ColMajor?idx:0,int(StorageOrder)==ColMajor?0:idx);
73  }
74 
75  template<int LoadMode>
76  EIGEN_STRONG_INLINE PacketScalar packet(Index row, Index col) const
77  {
78  enum {
79  StorageOrder = Flags & RowMajorBit ? RowMajor : ColMajor
80  };
81  const Index indexInDiagonalVector = ProductOrder == OnTheLeft ? row : col;
82  return packet_impl<LoadMode>(row,col,indexInDiagonalVector,typename internal::conditional<
83  ((int(StorageOrder) == RowMajor && int(ProductOrder) == OnTheLeft)
84  ||(int(StorageOrder) == ColMajor && int(ProductOrder) == OnTheRight)), internal::true_type, internal::false_type>::type());
85  }
86 
87  template<int LoadMode>
88  EIGEN_STRONG_INLINE PacketScalar packet(Index idx) const
89  {
90  enum {
91  StorageOrder = int(MatrixType::Flags) & RowMajorBit ? RowMajor : ColMajor
92  };
93  return packet<LoadMode>(int(StorageOrder)==ColMajor?idx:0,int(StorageOrder)==ColMajor?0:idx);
94  }
95 
96  protected:
97  template<int LoadMode>
98  EIGEN_STRONG_INLINE PacketScalar packet_impl(Index row, Index col, Index id, internal::true_type) const
99  {
100  return internal::pmul(m_matrix.template packet<LoadMode>(row, col),
101  internal::pset1<PacketScalar>(m_diagonal.diagonal().coeff(id)));
102  }
103 
104  template<int LoadMode>
105  EIGEN_STRONG_INLINE PacketScalar packet_impl(Index row, Index col, Index id, internal::false_type) const
106  {
107  enum {
108  InnerSize = (MatrixType::Flags & RowMajorBit) ? MatrixType::ColsAtCompileTime : MatrixType::RowsAtCompileTime,
109  DiagonalVectorPacketLoadMode = (LoadMode == Aligned && (((InnerSize%16) == 0) || (int(DiagonalType::DiagonalVectorType::Flags)&AlignedBit)==AlignedBit) ? Aligned : Unaligned)
110  };
111  return internal::pmul(m_matrix.template packet<LoadMode>(row, col),
112  m_diagonal.diagonal().template packet<DiagonalVectorPacketLoadMode>(id));
113  }
114 
115  typename MatrixType::Nested m_matrix;
116  typename DiagonalType::Nested m_diagonal;
117 };
118 
121 template<typename Derived>
122 template<typename DiagonalDerived>
123 inline const DiagonalProduct<Derived, DiagonalDerived, OnTheRight>
124 MatrixBase<Derived>::operator*(const DiagonalBase<DiagonalDerived> &a_diagonal) const
125 {
126  return DiagonalProduct<Derived, DiagonalDerived, OnTheRight>(derived(), a_diagonal.derived());
127 }
128 
129 } // end namespace Eigen
130 
131 #endif // EIGEN_DIAGONALPRODUCT_H
Definition: Constants.h:264
const unsigned int PacketAccessBit
Definition: Constants.h:81
Definition: DenseBase.h:162
Definition: Constants.h:194
Definition: Constants.h:279
const ScalarMultipleReturnType operator*(const Scalar &scalar) const
Definition: MatrixBase.h:50
const unsigned int LinearAccessBit
Definition: Constants.h:117
internal::traits< Derived >::Index Index
The type of indices.
Definition: DenseBase.h:60
Definition: Constants.h:192
Definition: Constants.h:266
const unsigned int RowMajorBit
Definition: Constants.h:53
Definition: Constants.h:277
const unsigned int AlignedBit
Definition: Constants.h:147