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Fix misuse of dummy_precesion in eigenvalues solvers
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72744d93ef
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@ -324,11 +324,12 @@ template<typename MatrixType>
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MatrixType EigenSolver<MatrixType>::pseudoEigenvalueMatrix() const
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MatrixType EigenSolver<MatrixType>::pseudoEigenvalueMatrix() const
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{
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{
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eigen_assert(m_isInitialized && "EigenSolver is not initialized.");
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eigen_assert(m_isInitialized && "EigenSolver is not initialized.");
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const RealScalar precision = RealScalar(2)*NumTraits<RealScalar>::epsilon();
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Index n = m_eivalues.rows();
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Index n = m_eivalues.rows();
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MatrixType matD = MatrixType::Zero(n,n);
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MatrixType matD = MatrixType::Zero(n,n);
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for (Index i=0; i<n; ++i)
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for (Index i=0; i<n; ++i)
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{
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{
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if (internal::isMuchSmallerThan(numext::imag(m_eivalues.coeff(i)), numext::real(m_eivalues.coeff(i))))
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if (internal::isMuchSmallerThan(numext::imag(m_eivalues.coeff(i)), numext::real(m_eivalues.coeff(i)), precision))
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matD.coeffRef(i,i) = numext::real(m_eivalues.coeff(i));
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matD.coeffRef(i,i) = numext::real(m_eivalues.coeff(i));
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else
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else
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{
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{
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@ -345,11 +346,12 @@ typename EigenSolver<MatrixType>::EigenvectorsType EigenSolver<MatrixType>::eige
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{
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{
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eigen_assert(m_isInitialized && "EigenSolver is not initialized.");
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eigen_assert(m_isInitialized && "EigenSolver is not initialized.");
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eigen_assert(m_eigenvectorsOk && "The eigenvectors have not been computed together with the eigenvalues.");
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eigen_assert(m_eigenvectorsOk && "The eigenvectors have not been computed together with the eigenvalues.");
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const RealScalar precision = RealScalar(2)*NumTraits<RealScalar>::epsilon();
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Index n = m_eivec.cols();
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Index n = m_eivec.cols();
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EigenvectorsType matV(n,n);
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EigenvectorsType matV(n,n);
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for (Index j=0; j<n; ++j)
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for (Index j=0; j<n; ++j)
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{
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{
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if (internal::isMuchSmallerThan(numext::imag(m_eivalues.coeff(j)), numext::real(m_eivalues.coeff(j))) || j+1==n)
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if (internal::isMuchSmallerThan(numext::imag(m_eivalues.coeff(j)), numext::real(m_eivalues.coeff(j)), precision) || j+1==n)
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{
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{
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// we have a real eigen value
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// we have a real eigen value
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matV.col(j) = m_eivec.col(j).template cast<ComplexScalar>();
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matV.col(j) = m_eivec.col(j).template cast<ComplexScalar>();
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@ -492,11 +492,12 @@ ComputationInfo computeFromTridiagonal_impl(DiagType& diag, SubDiagType& subdiag
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typedef typename DiagType::RealScalar RealScalar;
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typedef typename DiagType::RealScalar RealScalar;
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const RealScalar considerAsZero = (std::numeric_limits<RealScalar>::min)();
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const RealScalar considerAsZero = (std::numeric_limits<RealScalar>::min)();
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const RealScalar precision = RealScalar(2)*NumTraits<RealScalar>::epsilon();
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while (end>0)
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while (end>0)
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{
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{
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for (Index i = start; i<end; ++i)
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for (Index i = start; i<end; ++i)
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if (internal::isMuchSmallerThan(abs(subdiag[i]),(abs(diag[i])+abs(diag[i+1]))) || abs(subdiag[i]) <= considerAsZero)
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if (internal::isMuchSmallerThan(abs(subdiag[i]),(abs(diag[i])+abs(diag[i+1])),precision) || abs(subdiag[i]) <= considerAsZero)
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subdiag[i] = 0;
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subdiag[i] = 0;
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// find the largest unreduced block
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// find the largest unreduced block
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