Add evaluator shortcut for triangular ?= product

This commit is contained in:
Gael Guennebaud 2014-02-18 17:43:16 +01:00
parent 8169c6ac59
commit 5b78780def
3 changed files with 79 additions and 6 deletions

View File

@ -233,6 +233,24 @@ template<typename _MatrixType, unsigned int _Mode> class TriangularView
EIGEN_DEVICE_FUNC EIGEN_DEVICE_FUNC
inline Index innerStride() const { return m_matrix.innerStride(); } inline Index innerStride() const { return m_matrix.innerStride(); }
#ifdef EIGEN_TEST_EVALUATORS
/** \sa MatrixBase::operator+=() */
template<typename Other>
EIGEN_DEVICE_FUNC
TriangularView& operator+=(const DenseBase<Other>& other) {
internal::call_assignment_no_alias(*this, other.derived(), internal::add_assign_op<Scalar>());
return *this;
}
/** \sa MatrixBase::operator-=() */
template<typename Other>
EIGEN_DEVICE_FUNC
TriangularView& operator-=(const DenseBase<Other>& other) {
internal::call_assignment_no_alias(*this, other.derived(), internal::sub_assign_op<Scalar>());
return *this;
}
#else
/** \sa MatrixBase::operator+=() */ /** \sa MatrixBase::operator+=() */
template<typename Other> template<typename Other>
EIGEN_DEVICE_FUNC EIGEN_DEVICE_FUNC
@ -241,6 +259,7 @@ template<typename _MatrixType, unsigned int _Mode> class TriangularView
template<typename Other> template<typename Other>
EIGEN_DEVICE_FUNC EIGEN_DEVICE_FUNC
TriangularView& operator-=(const DenseBase<Other>& other) { return *this = m_matrix - other.derived(); } TriangularView& operator-=(const DenseBase<Other>& other) { return *this = m_matrix - other.derived(); }
#endif
/** \sa MatrixBase::operator*=() */ /** \sa MatrixBase::operator*=() */
EIGEN_DEVICE_FUNC EIGEN_DEVICE_FUNC
TriangularView& operator*=(const typename internal::traits<MatrixType>::Scalar& other) { return *this = m_matrix * other; } TriangularView& operator*=(const typename internal::traits<MatrixType>::Scalar& other) { return *this = m_matrix * other; }
@ -527,12 +546,18 @@ template<typename _MatrixType, unsigned int _Mode> class TriangularView
#endif // EIGEN_TEST_EVALUATORS #endif // EIGEN_TEST_EVALUATORS
protected: #ifdef EIGEN_TEST_EVALUATORS
template<typename ProductType>
EIGEN_DEVICE_FUNC
EIGEN_STRONG_INLINE TriangularView& _assignProduct(const ProductType& prod, const Scalar& alpha);
protected:
#else
protected:
template<typename ProductDerived, typename Lhs, typename Rhs> template<typename ProductDerived, typename Lhs, typename Rhs>
EIGEN_DEVICE_FUNC EIGEN_DEVICE_FUNC
EIGEN_STRONG_INLINE TriangularView& assignProduct(const ProductBase<ProductDerived, Lhs,Rhs>& prod, const Scalar& alpha); EIGEN_STRONG_INLINE TriangularView& assignProduct(const ProductBase<ProductDerived, Lhs,Rhs>& prod, const Scalar& alpha);
#endif
MatrixTypeNested m_matrix; MatrixTypeNested m_matrix;
}; };
@ -720,7 +745,7 @@ template<typename OtherDerived>
inline TriangularView<MatrixType, Mode>& inline TriangularView<MatrixType, Mode>&
TriangularView<MatrixType, Mode>::operator=(const MatrixBase<OtherDerived>& other) TriangularView<MatrixType, Mode>::operator=(const MatrixBase<OtherDerived>& other)
{ {
internal::call_assignment(*this, other.template triangularView<Mode>(), internal::assign_op<Scalar>()); internal::call_assignment_no_alias(*this, other.derived(), internal::assign_op<Scalar>());
return *this; return *this;
} }
@ -1253,6 +1278,45 @@ void TriangularBase<Derived>::evalToLazy(MatrixBase<DenseDerived> &other) const
other.derived().resize(this->rows(), this->cols()); other.derived().resize(this->rows(), this->cols());
internal::call_triangular_assignment_loop<Derived::Mode,(Derived::Mode&SelfAdjoint)==0 /* SetOpposite */>(other.derived(), derived().nestedExpression()); internal::call_triangular_assignment_loop<Derived::Mode,(Derived::Mode&SelfAdjoint)==0 /* SetOpposite */>(other.derived(), derived().nestedExpression());
} }
namespace internal {
// Triangular = Product
template< typename DstXprType, typename Lhs, typename Rhs, typename Scalar>
struct Assignment<DstXprType, Product<Lhs,Rhs,DefaultProduct>, internal::assign_op<Scalar>, Dense2Triangular, Scalar>
{
typedef Product<Lhs,Rhs,DefaultProduct> SrcXprType;
static void run(DstXprType &dst, const SrcXprType &src, const internal::assign_op<Scalar> &)
{
dst.setZero();
dst._assignProduct(src, 1);
}
};
// Triangular += Product
template< typename DstXprType, typename Lhs, typename Rhs, typename Scalar>
struct Assignment<DstXprType, Product<Lhs,Rhs,DefaultProduct>, internal::add_assign_op<Scalar>, Dense2Triangular, Scalar>
{
typedef Product<Lhs,Rhs,DefaultProduct> SrcXprType;
static void run(DstXprType &dst, const SrcXprType &src, const internal::add_assign_op<Scalar> &)
{
dst._assignProduct(src, 1);
}
};
// Triangular -= Product
template< typename DstXprType, typename Lhs, typename Rhs, typename Scalar>
struct Assignment<DstXprType, Product<Lhs,Rhs,DefaultProduct>, internal::sub_assign_op<Scalar>, Dense2Triangular, Scalar>
{
typedef Product<Lhs,Rhs,DefaultProduct> SrcXprType;
static void run(DstXprType &dst, const SrcXprType &src, const internal::sub_assign_op<Scalar> &)
{
dst._assignProduct(src, -1);
}
};
} // end namespace internal
#endif #endif
#endif // EIGEN_ENABLE_EVALUATORS #endif // EIGEN_ENABLE_EVALUATORS

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@ -264,6 +264,16 @@ struct general_product_to_triangular_selector<MatrixType,ProductType,UpLo,false>
} }
}; };
#ifdef EIGEN_TEST_EVALUATORS
template<typename MatrixType, unsigned int UpLo>
template<typename ProductType>
TriangularView<MatrixType,UpLo>& TriangularView<MatrixType,UpLo>::_assignProduct(const ProductType& prod, const Scalar& alpha)
{
general_product_to_triangular_selector<MatrixType, ProductType, UpLo, internal::traits<ProductType>::InnerSize==1>::run(m_matrix.const_cast_derived(), prod, alpha);
return *this;
}
#else
template<typename MatrixType, unsigned int UpLo> template<typename MatrixType, unsigned int UpLo>
template<typename ProductDerived, typename _Lhs, typename _Rhs> template<typename ProductDerived, typename _Lhs, typename _Rhs>
TriangularView<MatrixType,UpLo>& TriangularView<MatrixType,UpLo>::assignProduct(const ProductBase<ProductDerived, _Lhs,_Rhs>& prod, const Scalar& alpha) TriangularView<MatrixType,UpLo>& TriangularView<MatrixType,UpLo>::assignProduct(const ProductBase<ProductDerived, _Lhs,_Rhs>& prod, const Scalar& alpha)
@ -272,7 +282,7 @@ TriangularView<MatrixType,UpLo>& TriangularView<MatrixType,UpLo>::assignProduct(
return *this; return *this;
} }
#endif
} // end namespace Eigen } // end namespace Eigen
#endif // EIGEN_GENERAL_MATRIX_MATRIX_TRIANGULAR_H #endif // EIGEN_GENERAL_MATRIX_MATRIX_TRIANGULAR_H

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@ -114,8 +114,7 @@ template<typename MatrixType> void product_notemporary(const MatrixType& m)
VERIFY_EVALUATION_COUNT( Scalar tmp = 0; tmp += Scalar(RealScalar(1)) / (m3.transpose() * m3).diagonal().array().abs().sum(), 0 ); VERIFY_EVALUATION_COUNT( Scalar tmp = 0; tmp += Scalar(RealScalar(1)) / (m3.transpose() * m3).diagonal().array().abs().sum(), 0 );
// Zero temporaries for ... CoeffBasedProductMode // Zero temporaries for ... CoeffBasedProductMode
// - does not work with GCC because of the <..>, we'ld need variadic macros ... VERIFY_EVALUATION_COUNT( m3.col(0).template head<5>() * m3.col(0).transpose() + m3.col(0).template head<5>() * m3.col(0).transpose(), 0 );
//VERIFY_EVALUATION_COUNT( m3.col(0).head<5>() * m3.col(0).transpose() + m3.col(0).head<5>() * m3.col(0).transpose(), 0 );
// Check matrix * vectors // Check matrix * vectors
VERIFY_EVALUATION_COUNT( cvres.noalias() = m1 * cv1, 0 ); VERIFY_EVALUATION_COUNT( cvres.noalias() = m1 * cv1, 0 );