mirror of
https://gitlab.com/libeigen/eigen.git
synced 2026-04-10 11:34:33 +08:00
lot of cleaning:
- clean the *_PUBLIC_INTERFACE_* - update Diagonal, ReturnByValue, ForceAlignedAccess, UnaryView, etc. to support array - many other small stuff
This commit is contained in:
@@ -1,7 +1,7 @@
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// 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 Gael Guennebaud <g.gael@free.fr>
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// Copyright (C) 2009-2010 Gael Guennebaud <g.gael@free.fr>
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//
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// Eigen is free software; you can redistribute it and/or
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// modify it under the terms of the GNU Lesser General Public
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@@ -185,8 +185,8 @@ struct ei_blas_traits<CwiseUnaryOp<ei_scalar_conjugate_op<Scalar>, NestedXpr> >
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IsComplex = NumTraits<Scalar>::IsComplex,
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NeedToConjugate = Base::NeedToConjugate ? 0 : IsComplex
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};
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static inline ExtractType extract(const XprType& x) { return Base::extract(x._expression()); }
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static inline Scalar extractScalarFactor(const XprType& x) { return ei_conj(Base::extractScalarFactor(x._expression())); }
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static inline ExtractType extract(const XprType& x) { return Base::extract(x.nestedExpression()); }
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static inline Scalar extractScalarFactor(const XprType& x) { return ei_conj(Base::extractScalarFactor(x.nestedExpression())); }
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};
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// pop scalar multiple
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@@ -197,9 +197,9 @@ struct ei_blas_traits<CwiseUnaryOp<ei_scalar_multiple_op<Scalar>, NestedXpr> >
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typedef ei_blas_traits<NestedXpr> Base;
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typedef CwiseUnaryOp<ei_scalar_multiple_op<Scalar>, NestedXpr> XprType;
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typedef typename Base::ExtractType ExtractType;
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static inline ExtractType extract(const XprType& x) { return Base::extract(x._expression()); }
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static inline ExtractType extract(const XprType& x) { return Base::extract(x.nestedExpression()); }
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static inline Scalar extractScalarFactor(const XprType& x)
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{ return x._functor().m_other * Base::extractScalarFactor(x._expression()); }
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{ return x.functor().m_other * Base::extractScalarFactor(x.nestedExpression()); }
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};
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// pop opposite
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@@ -210,9 +210,9 @@ struct ei_blas_traits<CwiseUnaryOp<ei_scalar_opposite_op<Scalar>, NestedXpr> >
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typedef ei_blas_traits<NestedXpr> Base;
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typedef CwiseUnaryOp<ei_scalar_opposite_op<Scalar>, NestedXpr> XprType;
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typedef typename Base::ExtractType ExtractType;
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static inline ExtractType extract(const XprType& x) { return Base::extract(x._expression()); }
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static inline ExtractType extract(const XprType& x) { return Base::extract(x.nestedExpression()); }
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static inline Scalar extractScalarFactor(const XprType& x)
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{ return - Base::extractScalarFactor(x._expression()); }
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{ return - Base::extractScalarFactor(x.nestedExpression()); }
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};
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// pop/push transpose
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@@ -232,8 +232,8 @@ struct ei_blas_traits<Transpose<NestedXpr> >
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enum {
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IsTransposed = Base::IsTransposed ? 0 : 1
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};
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static inline const ExtractType extract(const XprType& x) { return Base::extract(x._expression()); }
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static inline Scalar extractScalarFactor(const XprType& x) { return Base::extractScalarFactor(x._expression()); }
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static inline const ExtractType extract(const XprType& x) { return Base::extract(x.nestedExpression()); }
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static inline Scalar extractScalarFactor(const XprType& x) { return Base::extractScalarFactor(x.nestedExpression()); }
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};
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#endif // EIGEN_BLASUTIL_H
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@@ -1,7 +1,7 @@
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// 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 Gael Guennebaud <g.gael@free.fr>
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// Copyright (C) 2008-2010 Gael Guennebaud <g.gael@free.fr>
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// Copyright (C) 2006-2008 Benoit Jacob <jacob.benoit.1@gmail.com>
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//
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// Eigen is free software; you can redistribute it and/or
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@@ -281,50 +281,30 @@ using Eigen::ei_cos;
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* Just a side note. Commenting within defines works only by documenting
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* behind the object (via '!<'). Comments cannot be multi-line and thus
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* we have these extra long lines. What is confusing doxygen over here is
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* that we use '\' and basically have a bunch of typedefs with their
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* that we use '\' and basically have a bunch of typedefs with their
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* documentation in a single line.
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**/
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#define _EIGEN_GENERIC_PUBLIC_INTERFACE(Derived) \
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#define EIGEN_GENERIC_PUBLIC_INTERFACE_NEW(Derived) \
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typedef typename Eigen::ei_traits<Derived>::Scalar Scalar; /*!< \brief Numeric type, e.g. float, double, int or std::complex<float>. */ \
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typedef typename Eigen::NumTraits<Scalar>::Real RealScalar; /*!< \brief The underlying numeric type for composed scalar types. \details In cases where Scalar is e.g. std::complex<T>, T were corresponding to RealScalar. */ \
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typedef typename Base::CoeffReturnType CoeffReturnType; /*!< \brief The return type for coefficient access. \details Depending on whether the object allows direct coefficient access (e.g. for a MatrixXd), this type is either 'const Scalar&' or simply 'Scalar' for objects that do not allow direct coefficient access. */ \
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typedef typename Eigen::ei_nested<Derived>::type Nested; \
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enum { RowsAtCompileTime = Eigen::ei_traits<Derived>::RowsAtCompileTime, \
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ColsAtCompileTime = Eigen::ei_traits<Derived>::ColsAtCompileTime, \
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Flags = Eigen::ei_traits<Derived>::Flags, \
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CoeffReadCost = Eigen::ei_traits<Derived>::CoeffReadCost, \
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SizeAtCompileTime = Base::SizeAtCompileTime, \
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MaxSizeAtCompileTime = Base::MaxSizeAtCompileTime, \
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IsVectorAtCompileTime = Base::IsVectorAtCompileTime };
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#define EIGEN_DENSE_PUBLIC_INTERFACE(Derived) \
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typedef typename Eigen::ei_traits<Derived>::Scalar Scalar; /*!< \brief Numeric type, e.g. float, double, int or std::complex<float>. */ \
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typedef typename Eigen::NumTraits<Scalar>::Real RealScalar; /*!< \brief The underlying numeric type for composed scalar types. \details In cases where Scalar is e.g. std::complex<T>, T were corresponding to RealScalar. */ \
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typedef typename Base::PacketScalar PacketScalar; \
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typedef typename Base::CoeffReturnType CoeffReturnType; /*!< \brief The return type for coefficient access. \details Depending on whether the object allows direct coefficient access (e.g. for a MatrixXd), this type is either 'const Scalar&' or simply 'Scalar' for objects that do not allow direct coefficient access. */ \
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typedef typename Eigen::ei_nested<Derived>::type Nested; \
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enum { RowsAtCompileTime = Eigen::ei_traits<Derived>::RowsAtCompileTime, \
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ColsAtCompileTime = Eigen::ei_traits<Derived>::ColsAtCompileTime, \
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MaxRowsAtCompileTime = Eigen::ei_traits<Derived>::MaxRowsAtCompileTime, \
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MaxColsAtCompileTime = Eigen::ei_traits<Derived>::MaxColsAtCompileTime, \
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Flags = Eigen::ei_traits<Derived>::Flags, \
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CoeffReadCost = Eigen::ei_traits<Derived>::CoeffReadCost, \
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SizeAtCompileTime = Base::SizeAtCompileTime, \
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MaxSizeAtCompileTime = Base::MaxSizeAtCompileTime, \
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IsVectorAtCompileTime = Base::IsVectorAtCompileTime };
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#define EIGEN_GENERIC_PUBLIC_INTERFACE(Derived) \
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typedef Eigen::MatrixBase<Derived> Base; \
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_EIGEN_GENERIC_PUBLIC_INTERFACE(Derived)
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#define EIGEN_GENERIC_PUBLIC_INTERFACE_NEW(Derived) \
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typedef typename Eigen::ei_traits<Derived>::Scalar Scalar; \
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typedef typename Eigen::NumTraits<Scalar>::Real RealScalar; \
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typedef typename Base::CoeffReturnType CoeffReturnType; \
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typedef typename Eigen::ei_nested<Derived>::type Nested; \
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enum { RowsAtCompileTime = Eigen::ei_traits<Derived>::RowsAtCompileTime, \
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ColsAtCompileTime = Eigen::ei_traits<Derived>::ColsAtCompileTime, \
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Flags = Eigen::ei_traits<Derived>::Flags, \
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CoeffReadCost = Eigen::ei_traits<Derived>::CoeffReadCost, \
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SizeAtCompileTime = Base::SizeAtCompileTime, \
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MaxSizeAtCompileTime = Base::MaxSizeAtCompileTime, \
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IsVectorAtCompileTime = Base::IsVectorAtCompileTime };
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#define _EIGEN_DENSE_PUBLIC_INTERFACE(Derived) \
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typedef typename Eigen::ei_traits<Derived>::Scalar Scalar; \
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typedef typename Eigen::NumTraits<Scalar>::Real RealScalar; \
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typedef typename Base::PacketScalar PacketScalar; \
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typedef typename Base::CoeffReturnType CoeffReturnType; \
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typedef typename Eigen::ei_nested<Derived>::type Nested; \
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enum { RowsAtCompileTime = Eigen::ei_traits<Derived>::RowsAtCompileTime, \
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ColsAtCompileTime = Eigen::ei_traits<Derived>::ColsAtCompileTime, \
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MaxRowsAtCompileTime = Eigen::ei_traits<Derived>::MaxRowsAtCompileTime, \
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@@ -334,11 +314,8 @@ using Eigen::ei_cos;
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SizeAtCompileTime = Base::SizeAtCompileTime, \
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MaxSizeAtCompileTime = Base::MaxSizeAtCompileTime, \
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IsVectorAtCompileTime = Base::IsVectorAtCompileTime }; \
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using Base::derived;
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#define EIGEN_DENSE_PUBLIC_INTERFACE(Derived) \
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typedef Eigen::MatrixBase<Derived> Base; \
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_EIGEN_DENSE_PUBLIC_INTERFACE(Derived)
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using Base::derived; \
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using Base::const_cast_derived;
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#define EIGEN_ENUM_MIN(a,b) (((int)a <= (int)b) ? (int)a : (int)b)
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