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#ifndef EIGEN_BAND_TRIANGULARSOLVER_H |
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#define EIGEN_BAND_TRIANGULARSOLVER_H |
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namespace internal { |
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template<typename Index, int Mode, typename LhsScalar, bool ConjLhs, typename RhsScalar, int StorageOrder> |
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struct band_solve_triangular_selector; |
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template<typename Index, int Mode, typename LhsScalar, bool ConjLhs, typename RhsScalar> |
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struct band_solve_triangular_selector<Index,Mode,LhsScalar,ConjLhs,RhsScalar,RowMajor> |
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{ |
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typedef Map<const Matrix<LhsScalar,Dynamic,Dynamic,RowMajor>, 0, OuterStride<> > LhsMap; |
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typedef Map<Matrix<RhsScalar,Dynamic,1> > RhsMap; |
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enum { IsLower = (Mode&Lower) ? 1 : 0 }; |
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static void run(Index size, Index k, const LhsScalar* _lhs, Index lhsStride, RhsScalar* _other) |
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{ |
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const LhsMap lhs(_lhs,size,k+1,OuterStride<>(lhsStride)); |
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RhsMap other(_other,size,1); |
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typename internal::conditional< |
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ConjLhs, |
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const CwiseUnaryOp<typename internal::scalar_conjugate_op<LhsScalar>,LhsMap>, |
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const LhsMap&> |
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::type cjLhs(lhs); |
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for(int col=0 ; col<other.cols() ; ++col) |
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{ |
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for(int ii=0; ii<size; ++ii) |
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{ |
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int i = IsLower ? ii : size-ii-1; |
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int actual_k = (std::min)(k,ii); |
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int actual_start = IsLower ? k-actual_k : 1; |
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if(actual_k>0) |
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other.coeffRef(i,col) -= cjLhs.row(i).segment(actual_start,actual_k).transpose() |
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.cwiseProduct(other.col(col).segment(IsLower ? i-actual_k : i+1,actual_k)).sum(); |
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if((Mode&UnitDiag)==0) |
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other.coeffRef(i,col) /= cjLhs(i,IsLower ? k : 0); |
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} |
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} |
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} |
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}; |
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template<typename Index, int Mode, typename LhsScalar, bool ConjLhs, typename RhsScalar> |
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struct band_solve_triangular_selector<Index,Mode,LhsScalar,ConjLhs,RhsScalar,ColMajor> |
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{ |
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typedef Map<const Matrix<LhsScalar,Dynamic,Dynamic,ColMajor>, 0, OuterStride<> > LhsMap; |
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typedef Map<Matrix<RhsScalar,Dynamic,1> > RhsMap; |
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enum { IsLower = (Mode&Lower) ? 1 : 0 }; |
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static void run(Index size, Index k, const LhsScalar* _lhs, Index lhsStride, RhsScalar* _other) |
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{ |
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const LhsMap lhs(_lhs,k+1,size,OuterStride<>(lhsStride)); |
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RhsMap other(_other,size,1); |
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typename internal::conditional< |
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ConjLhs, |
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const CwiseUnaryOp<typename internal::scalar_conjugate_op<LhsScalar>,LhsMap>, |
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const LhsMap&> |
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::type cjLhs(lhs); |
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for(int col=0 ; col<other.cols() ; ++col) |
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{ |
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for(int ii=0; ii<size; ++ii) |
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{ |
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int i = IsLower ? ii : size-ii-1; |
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int actual_k = (std::min)(k,size-ii-1); |
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int actual_start = IsLower ? 1 : k-actual_k; |
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if((Mode&UnitDiag)==0) |
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other.coeffRef(i,col) /= cjLhs(IsLower ? 0 : k, i); |
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if(actual_k>0) |
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other.col(col).segment(IsLower ? i+1 : i-actual_k, actual_k) |
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-= other.coeff(i,col) * cjLhs.col(i).segment(actual_start,actual_k); |
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} |
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} |
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} |
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}; |
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} |
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#endif |
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