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Add transpose, adjoint, conjugate methods to SelfAdjointView (useful to write generic code)
(grafted from 684cfc762d70e8ab766bc94968d8d5e462c44074 )
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@ -45,7 +45,7 @@ struct traits<SelfAdjointView<MatrixType, UpLo> > : traits<MatrixType>
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};
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}
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// FIXME could also be called SelfAdjointWrapper to be consistent with DiagonalWrapper ??
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template<typename _MatrixType, unsigned int UpLo> class SelfAdjointView
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: public TriangularBase<SelfAdjointView<_MatrixType, UpLo> >
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{
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@ -60,10 +60,12 @@ template<typename _MatrixType, unsigned int UpLo> class SelfAdjointView
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/** \brief The type of coefficients in this matrix */
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typedef typename internal::traits<SelfAdjointView>::Scalar Scalar;
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typedef typename MatrixType::StorageIndex StorageIndex;
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typedef typename internal::remove_all<typename MatrixType::ConjugateReturnType>::type MatrixConjugateReturnType;
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enum {
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Mode = internal::traits<SelfAdjointView>::Mode,
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Flags = internal::traits<SelfAdjointView>::Flags
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Flags = internal::traits<SelfAdjointView>::Flags,
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TransposeMode = ((Mode & Upper) ? Lower : 0) | ((Mode & Lower) ? Upper : 0)
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};
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typedef typename MatrixType::PlainObject PlainObject;
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@ -187,6 +189,36 @@ template<typename _MatrixType, unsigned int UpLo> class SelfAdjointView
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TriangularView<typename MatrixType::AdjointReturnType,TriMode> >::type(tmp2);
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}
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typedef SelfAdjointView<const MatrixConjugateReturnType,Mode> ConjugateReturnType;
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/** \sa MatrixBase::conjugate() const */
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EIGEN_DEVICE_FUNC
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inline const ConjugateReturnType conjugate() const
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{ return ConjugateReturnType(m_matrix.conjugate()); }
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typedef SelfAdjointView<const typename MatrixType::AdjointReturnType,TransposeMode> AdjointReturnType;
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/** \sa MatrixBase::adjoint() const */
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EIGEN_DEVICE_FUNC
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inline const AdjointReturnType adjoint() const
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{ return AdjointReturnType(m_matrix.adjoint()); }
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typedef SelfAdjointView<typename MatrixType::TransposeReturnType,TransposeMode> TransposeReturnType;
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/** \sa MatrixBase::transpose() */
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EIGEN_DEVICE_FUNC
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inline TransposeReturnType transpose()
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{
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EIGEN_STATIC_ASSERT_LVALUE(MatrixType)
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typename MatrixType::TransposeReturnType tmp(m_matrix);
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return TransposeReturnType(tmp);
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}
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typedef SelfAdjointView<const typename MatrixType::ConstTransposeReturnType,TransposeMode> ConstTransposeReturnType;
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/** \sa MatrixBase::transpose() const */
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EIGEN_DEVICE_FUNC
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inline const ConstTransposeReturnType transpose() const
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{
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return ConstTransposeReturnType(m_matrix.transpose());
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}
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/** \returns a const expression of the main diagonal of the matrix \c *this
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*
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* This method simply returns the diagonal of the nested expression, thus by-passing the SelfAdjointView decorator.
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@ -39,6 +39,24 @@ template<typename Scalar, int Size, int OtherSize> void symm(int size = Size, in
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VERIFY_IS_APPROX(rhs12 = (s1*m2).template selfadjointView<Lower>() * (s2*rhs1),
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rhs13 = (s1*m1) * (s2*rhs1));
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VERIFY_IS_APPROX(rhs12 = (s1*m2).transpose().template selfadjointView<Upper>() * (s2*rhs1),
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rhs13 = (s1*m1.transpose()) * (s2*rhs1));
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VERIFY_IS_APPROX(rhs12 = (s1*m2).template selfadjointView<Lower>().transpose() * (s2*rhs1),
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rhs13 = (s1*m1.transpose()) * (s2*rhs1));
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VERIFY_IS_APPROX(rhs12 = (s1*m2).conjugate().template selfadjointView<Lower>() * (s2*rhs1),
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rhs13 = (s1*m1).conjugate() * (s2*rhs1));
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VERIFY_IS_APPROX(rhs12 = (s1*m2).template selfadjointView<Lower>().conjugate() * (s2*rhs1),
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rhs13 = (s1*m1).conjugate() * (s2*rhs1));
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VERIFY_IS_APPROX(rhs12 = (s1*m2).adjoint().template selfadjointView<Upper>() * (s2*rhs1),
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rhs13 = (s1*m1).adjoint() * (s2*rhs1));
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VERIFY_IS_APPROX(rhs12 = (s1*m2).template selfadjointView<Lower>().adjoint() * (s2*rhs1),
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rhs13 = (s1*m1).adjoint() * (s2*rhs1));
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m2 = m1.template triangularView<Upper>(); rhs12.setRandom(); rhs13 = rhs12;
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m3 = m2.template selfadjointView<Upper>();
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VERIFY_IS_EQUAL(m1, m3);
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