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Merged eigen/eigen into default
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@@ -293,7 +293,8 @@ struct inplace_transpose_selector<MatrixType,false> { // non square matrix
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* Notice however that this method is only useful if you want to replace a matrix by its own transpose.
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* If you just need the transpose of a matrix, use transpose().
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*
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* \note if the matrix is not square, then \c *this must be a resizable matrix.
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* \note if the matrix is not square, then \c *this must be a resizable matrix.
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* This excludes (non-square) fixed-size matrices, block-expressions and maps.
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*
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* \sa transpose(), adjoint(), adjointInPlace() */
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template<typename Derived>
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@@ -324,6 +325,7 @@ inline void DenseBase<Derived>::transposeInPlace()
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* If you just need the adjoint of a matrix, use adjoint().
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*
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* \note if the matrix is not square, then \c *this must be a resizable matrix.
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* This excludes (non-square) fixed-size matrices, block-expressions and maps.
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*
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* \sa transpose(), adjoint(), transposeInPlace() */
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template<typename Derived>
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@@ -1128,6 +1128,8 @@ EIGEN_DONT_INLINE void gemm_pack_lhs<Scalar, Index, Pack1, Pack2, StorageOrder,
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enum { PacketSize = packet_traits<Scalar>::size };
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EIGEN_ASM_COMMENT("EIGEN PRODUCT PACK LHS");
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EIGEN_UNUSED_VARIABLE(stride);
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EIGEN_UNUSED_VARIABLE(offset);
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eigen_assert(((!PanelMode) && stride==0 && offset==0) || (PanelMode && stride>=depth && offset<=stride));
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eigen_assert( (StorageOrder==RowMajor) || ((Pack1%PacketSize)==0 && Pack1<=4*PacketSize) );
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conj_if<NumTraits<Scalar>::IsComplex && Conjugate> cj;
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@@ -1215,6 +1217,8 @@ EIGEN_DONT_INLINE void gemm_pack_rhs<Scalar, Index, nr, ColMajor, Conjugate, Pan
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::operator()(Scalar* blockB, const Scalar* rhs, Index rhsStride, Index depth, Index cols, Index stride, Index offset)
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{
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EIGEN_ASM_COMMENT("EIGEN PRODUCT PACK RHS COLMAJOR");
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EIGEN_UNUSED_VARIABLE(stride);
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EIGEN_UNUSED_VARIABLE(offset);
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eigen_assert(((!PanelMode) && stride==0 && offset==0) || (PanelMode && stride>=depth && offset<=stride));
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conj_if<NumTraits<Scalar>::IsComplex && Conjugate> cj;
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Index packet_cols = (cols/nr) * nr;
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@@ -1266,6 +1270,8 @@ EIGEN_DONT_INLINE void gemm_pack_rhs<Scalar, Index, nr, RowMajor, Conjugate, Pan
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::operator()(Scalar* blockB, const Scalar* rhs, Index rhsStride, Index depth, Index cols, Index stride, Index offset)
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{
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EIGEN_ASM_COMMENT("EIGEN PRODUCT PACK RHS ROWMAJOR");
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EIGEN_UNUSED_VARIABLE(stride);
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EIGEN_UNUSED_VARIABLE(offset);
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eigen_assert(((!PanelMode) && stride==0 && offset==0) || (PanelMode && stride>=depth && offset<=stride));
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conj_if<NumTraits<Scalar>::IsComplex && Conjugate> cj;
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Index packet_cols = (cols/nr) * nr;
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@@ -80,11 +80,8 @@ EIGEN_DONT_INLINE static void run(
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Index rows, Index cols,
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const LhsScalar* lhs, Index lhsStride,
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const RhsScalar* rhs, Index rhsIncr,
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ResScalar* res, Index
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#ifdef EIGEN_INTERNAL_DEBUGGING
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resIncr
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#endif
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, RhsScalar alpha);
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ResScalar* res, Index resIncr,
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RhsScalar alpha);
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};
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template<typename Index, typename LhsScalar, bool ConjugateLhs, typename RhsScalar, bool ConjugateRhs, int Version>
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@@ -92,12 +89,10 @@ EIGEN_DONT_INLINE void general_matrix_vector_product<Index,LhsScalar,ColMajor,Co
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Index rows, Index cols,
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const LhsScalar* lhs, Index lhsStride,
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const RhsScalar* rhs, Index rhsIncr,
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ResScalar* res, Index
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#ifdef EIGEN_INTERNAL_DEBUGGING
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resIncr
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#endif
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, RhsScalar alpha)
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ResScalar* res, Index resIncr,
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RhsScalar alpha)
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{
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EIGEN_UNUSED_VARIABLE(resIncr);
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eigen_internal_assert(resIncr==1);
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#ifdef _EIGEN_ACCUMULATE_PACKETS
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#error _EIGEN_ACCUMULATE_PACKETS has already been defined
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@@ -351,7 +346,7 @@ EIGEN_DONT_INLINE static void run(
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Index rows, Index cols,
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const LhsScalar* lhs, Index lhsStride,
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const RhsScalar* rhs, Index rhsIncr,
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ResScalar* res, Index resIncr,
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ResScalar* res, Index resIncr,
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ResScalar alpha);
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};
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@@ -365,6 +360,7 @@ EIGEN_DONT_INLINE void general_matrix_vector_product<Index,LhsScalar,RowMajor,Co
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{
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EIGEN_UNUSED_VARIABLE(rhsIncr);
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eigen_internal_assert(rhsIncr==1);
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#ifdef _EIGEN_ACCUMULATE_PACKETS
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#error _EIGEN_ACCUMULATE_PACKETS has already been defined
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#endif
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@@ -261,7 +261,12 @@
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#endif
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// Suppresses 'unused variable' warnings.
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#define EIGEN_UNUSED_VARIABLE(var) (void)var;
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namespace Eigen {
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namespace internal {
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template<typename T> void ignore_unused_variable(const T&) {}
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}
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}
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#define EIGEN_UNUSED_VARIABLE(var) Eigen::internal::ignore_unused_variable(var);
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#if !defined(EIGEN_ASM_COMMENT)
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#if (defined __GNUC__) && ( defined(__i386__) || defined(__x86_64__) )
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