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https://gitlab.com/libeigen/eigen.git
synced 2026-04-10 11:34:33 +08:00
Add support for NVCC5: most of the Core and part of LU are callable from CUDA code.
Still a lot to do.
This commit is contained in:
@@ -172,6 +172,7 @@ template<typename Derived> class DenseBase
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/** \returns the number of nonzero coefficients which is in practice the number
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* of stored coefficients. */
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EIGEN_DEVICE_FUNC
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inline Index nonZeros() const { return size(); }
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/** \returns true if either the number of rows or the number of columns is equal to 1.
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* In other words, this function returns
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@@ -183,6 +184,7 @@ template<typename Derived> class DenseBase
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* \note For a vector, this returns just 1. For a matrix (non-vector), this is the major dimension
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* with respect to the \ref TopicStorageOrders "storage order", i.e., the number of columns for a
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* column-major matrix, and the number of rows for a row-major matrix. */
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EIGEN_DEVICE_FUNC
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Index outerSize() const
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{
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return IsVectorAtCompileTime ? 1
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@@ -194,6 +196,7 @@ template<typename Derived> class DenseBase
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* \note For a vector, this is just the size. For a matrix (non-vector), this is the minor dimension
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* with respect to the \ref TopicStorageOrders "storage order", i.e., the number of rows for a
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* column-major matrix, and the number of columns for a row-major matrix. */
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EIGEN_DEVICE_FUNC
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Index innerSize() const
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{
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return IsVectorAtCompileTime ? this->size()
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@@ -204,6 +207,7 @@ template<typename Derived> class DenseBase
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* Matrix::resize() and Array::resize(). The present method only asserts that the new size equals the old size, and does
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* nothing else.
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*/
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EIGEN_DEVICE_FUNC
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void resize(Index newSize)
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{
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EIGEN_ONLY_USED_FOR_DEBUG(newSize);
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@@ -214,6 +218,7 @@ template<typename Derived> class DenseBase
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* Matrix::resize() and Array::resize(). The present method only asserts that the new size equals the old size, and does
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* nothing else.
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*/
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EIGEN_DEVICE_FUNC
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void resize(Index nbRows, Index nbCols)
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{
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EIGEN_ONLY_USED_FOR_DEBUG(nbRows);
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@@ -237,42 +242,54 @@ template<typename Derived> class DenseBase
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/** Copies \a other into *this. \returns a reference to *this. */
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template<typename OtherDerived>
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EIGEN_DEVICE_FUNC
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Derived& operator=(const DenseBase<OtherDerived>& other);
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/** Special case of the template operator=, in order to prevent the compiler
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* from generating a default operator= (issue hit with g++ 4.1)
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*/
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EIGEN_DEVICE_FUNC
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Derived& operator=(const DenseBase& other);
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template<typename OtherDerived>
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EIGEN_DEVICE_FUNC
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Derived& operator=(const EigenBase<OtherDerived> &other);
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template<typename OtherDerived>
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EIGEN_DEVICE_FUNC
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Derived& operator+=(const EigenBase<OtherDerived> &other);
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template<typename OtherDerived>
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EIGEN_DEVICE_FUNC
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Derived& operator-=(const EigenBase<OtherDerived> &other);
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template<typename OtherDerived>
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EIGEN_DEVICE_FUNC
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Derived& operator=(const ReturnByValue<OtherDerived>& func);
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#ifndef EIGEN_PARSED_BY_DOXYGEN
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/** Copies \a other into *this without evaluating other. \returns a reference to *this. */
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template<typename OtherDerived>
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EIGEN_DEVICE_FUNC
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Derived& lazyAssign(const DenseBase<OtherDerived>& other);
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#endif // not EIGEN_PARSED_BY_DOXYGEN
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EIGEN_DEVICE_FUNC
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CommaInitializer<Derived> operator<< (const Scalar& s);
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template<unsigned int Added,unsigned int Removed>
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const Flagged<Derived, Added, Removed> flagged() const;
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template<typename OtherDerived>
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EIGEN_DEVICE_FUNC
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CommaInitializer<Derived> operator<< (const DenseBase<OtherDerived>& other);
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EIGEN_DEVICE_FUNC
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Eigen::Transpose<Derived> transpose();
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typedef const Transpose<const Derived> ConstTransposeReturnType;
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EIGEN_DEVICE_FUNC
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ConstTransposeReturnType transpose() const;
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EIGEN_DEVICE_FUNC
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void transposeInPlace();
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#ifndef EIGEN_NO_DEBUG
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protected:
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@@ -346,6 +363,7 @@ template<typename Derived> class DenseBase
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* Notice that in the case of a plain matrix or vector (not an expression) this function just returns
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* a const reference, in order to avoid a useless copy.
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*/
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EIGEN_DEVICE_FUNC
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EIGEN_STRONG_INLINE EvalReturnType eval() const
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{
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// Even though MSVC does not honor strong inlining when the return type
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@@ -380,14 +398,14 @@ template<typename Derived> class DenseBase
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template<bool Enable> inline const typename internal::conditional<Enable,ForceAlignedAccess<Derived>,Derived&>::type forceAlignedAccessIf() const;
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template<bool Enable> inline typename internal::conditional<Enable,ForceAlignedAccess<Derived>,Derived&>::type forceAlignedAccessIf();
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Scalar sum() const;
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Scalar mean() const;
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Scalar trace() const;
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EIGEN_DEVICE_FUNC Scalar sum() const;
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EIGEN_DEVICE_FUNC Scalar mean() const;
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EIGEN_DEVICE_FUNC Scalar trace() const;
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Scalar prod() const;
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EIGEN_DEVICE_FUNC Scalar prod() const;
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typename internal::traits<Derived>::Scalar minCoeff() const;
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typename internal::traits<Derived>::Scalar maxCoeff() const;
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EIGEN_DEVICE_FUNC typename internal::traits<Derived>::Scalar minCoeff() const;
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EIGEN_DEVICE_FUNC typename internal::traits<Derived>::Scalar maxCoeff() const;
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template<typename IndexType>
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typename internal::traits<Derived>::Scalar minCoeff(IndexType* row, IndexType* col) const;
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@@ -399,15 +417,18 @@ template<typename Derived> class DenseBase
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typename internal::traits<Derived>::Scalar maxCoeff(IndexType* index) const;
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template<typename BinaryOp>
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EIGEN_DEVICE_FUNC
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typename internal::result_of<BinaryOp(typename internal::traits<Derived>::Scalar)>::type
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redux(const BinaryOp& func) const;
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template<typename Visitor>
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EIGEN_DEVICE_FUNC
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void visit(Visitor& func) const;
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inline const WithFormat<Derived> format(const IOFormat& fmt) const;
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/** \returns the unique coefficient of a 1x1 expression */
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EIGEN_DEVICE_FUNC
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CoeffReturnType value() const
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{
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EIGEN_STATIC_ASSERT_SIZE_1x1(Derived)
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@@ -417,8 +438,8 @@ template<typename Derived> class DenseBase
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/////////// Array module ///////////
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bool all(void) const;
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bool any(void) const;
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bool all() const;
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bool any() const;
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Index count() const;
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typedef VectorwiseOp<Derived, Horizontal> RowwiseReturnType;
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@@ -480,14 +501,16 @@ template<typename Derived> class DenseBase
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// disable the use of evalTo for dense objects with a nice compilation error
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template<typename Dest> inline void evalTo(Dest& ) const
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template<typename Dest>
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EIGEN_DEVICE_FUNC
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inline void evalTo(Dest& ) const
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{
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EIGEN_STATIC_ASSERT((internal::is_same<Dest,void>::value),THE_EVAL_EVALTO_FUNCTION_SHOULD_NEVER_BE_CALLED_FOR_DENSE_OBJECTS);
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}
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protected:
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/** Default constructor. Do nothing. */
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DenseBase()
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EIGEN_DEVICE_FUNC DenseBase()
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{
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/* Just checks for self-consistency of the flags.
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* Only do it when debugging Eigen, as this borders on paranoiac and could slow compilation down
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@@ -500,9 +523,9 @@ template<typename Derived> class DenseBase
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}
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private:
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explicit DenseBase(int);
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DenseBase(int,int);
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template<typename OtherDerived> explicit DenseBase(const DenseBase<OtherDerived>&);
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EIGEN_DEVICE_FUNC explicit DenseBase(int);
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EIGEN_DEVICE_FUNC DenseBase(int,int);
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template<typename OtherDerived> EIGEN_DEVICE_FUNC explicit DenseBase(const DenseBase<OtherDerived>&);
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};
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} // end namespace Eigen
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