2009-08-31 22:26:15 -04:00
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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 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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// modify it under the terms of the GNU Lesser General Public
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// License as published by the Free Software Foundation; either
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// version 3 of the License, or (at your option) any later version.
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//
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// Alternatively, you can redistribute it and/or
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// modify it under the terms of the GNU General Public License as
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// published by the Free Software Foundation; either version 2 of
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// the License, or (at your option) any later version.
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//
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// Eigen is distributed in the hope that it will be useful, but WITHOUT ANY
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// WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
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// FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License or the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public
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// License and a copy of the GNU General Public License along with
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// Eigen. If not, see <http://www.gnu.org/licenses/>.
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#ifndef EIGEN_JACOBISVD_H
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#define EIGEN_JACOBISVD_H
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2009-09-15 11:53:24 +02:00
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// forward declarations (needed by ICC)
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2009-09-27 17:00:10 +02:00
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// the empty bodies are required by VC
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2009-09-15 11:53:24 +02:00
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template<typename MatrixType, unsigned int Options, bool IsComplex = NumTraits<typename MatrixType::Scalar>::IsComplex>
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2009-09-27 17:00:10 +02:00
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struct ei_svd_precondition_2x2_block_to_be_real {};
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2009-09-15 11:53:24 +02:00
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template<typename MatrixType, unsigned int Options,
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bool PossiblyMoreRowsThanCols = (Options & AtLeastAsManyColsAsRows) == 0
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&& (MatrixType::RowsAtCompileTime==Dynamic
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|| (MatrixType::RowsAtCompileTime>MatrixType::ColsAtCompileTime))>
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2009-09-27 17:18:19 +02:00
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struct ei_svd_precondition_if_more_rows_than_cols;
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2009-09-15 11:53:24 +02:00
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template<typename MatrixType, unsigned int Options,
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bool PossiblyMoreColsThanRows = (Options & AtLeastAsManyRowsAsCols) == 0
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&& (MatrixType::ColsAtCompileTime==Dynamic
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|| (MatrixType::ColsAtCompileTime>MatrixType::RowsAtCompileTime))>
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2009-09-27 17:18:19 +02:00
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struct ei_svd_precondition_if_more_cols_than_rows;
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2009-09-15 11:53:24 +02:00
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2009-08-31 22:26:15 -04:00
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/** \ingroup SVD_Module
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* \nonstableyet
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*
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* \class JacobiSVD
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*
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* \brief Jacobi SVD decomposition of a square matrix
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*
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* \param MatrixType the type of the matrix of which we are computing the SVD decomposition
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2009-09-03 02:53:51 -04:00
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* \param Options a bit field of flags offering the following options: \c SkipU and \c SkipV allow to skip the computation of
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* the unitaries \a U and \a V respectively; \c AtLeastAsManyRowsAsCols and \c AtLeastAsManyRowsAsCols allows
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* to hint the compiler to only generate the corresponding code paths; \c Square is equivantent to the combination of
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* the latter two bits and is useful when you know that the matrix is square. Note that when this information can
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* be automatically deduced from the matrix type (e.g. a Matrix3f is always square), Eigen does it for you.
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2009-08-31 22:26:15 -04:00
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*
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* \sa MatrixBase::jacobiSvd()
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*/
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template<typename MatrixType, unsigned int Options> class JacobiSVD
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{
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private:
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typedef typename MatrixType::Scalar Scalar;
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typedef typename NumTraits<typename MatrixType::Scalar>::Real RealScalar;
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enum {
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ComputeU = (Options & SkipU) == 0,
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ComputeV = (Options & SkipV) == 0,
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RowsAtCompileTime = MatrixType::RowsAtCompileTime,
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ColsAtCompileTime = MatrixType::ColsAtCompileTime,
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DiagSizeAtCompileTime = EIGEN_SIZE_MIN(RowsAtCompileTime,ColsAtCompileTime),
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MaxRowsAtCompileTime = MatrixType::MaxRowsAtCompileTime,
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MaxColsAtCompileTime = MatrixType::MaxColsAtCompileTime,
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MaxDiagSizeAtCompileTime = EIGEN_SIZE_MIN(MaxRowsAtCompileTime,MaxColsAtCompileTime),
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MatrixOptions = MatrixType::Options
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};
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2009-09-01 13:18:03 +02:00
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typedef Matrix<Scalar, Dynamic, Dynamic, MatrixOptions> DummyMatrixType;
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typedef typename ei_meta_if<ComputeU,
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Matrix<Scalar, RowsAtCompileTime, RowsAtCompileTime,
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MatrixOptions, MaxRowsAtCompileTime, MaxRowsAtCompileTime>,
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DummyMatrixType>::ret MatrixUType;
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typedef typename ei_meta_if<ComputeV,
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Matrix<Scalar, ColsAtCompileTime, ColsAtCompileTime,
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MatrixOptions, MaxColsAtCompileTime, MaxColsAtCompileTime>,
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DummyMatrixType>::ret MatrixVType;
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typedef typename ei_plain_diag_type<MatrixType, RealScalar>::type SingularValuesType;
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typedef typename ei_plain_row_type<MatrixType>::type RowType;
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typedef typename ei_plain_col_type<MatrixType>::type ColType;
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typedef Matrix<Scalar, DiagSizeAtCompileTime, DiagSizeAtCompileTime,
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MatrixOptions, MaxDiagSizeAtCompileTime, MaxDiagSizeAtCompileTime>
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WorkMatrixType;
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public:
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JacobiSVD() : m_isInitialized(false) {}
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2009-09-01 13:18:03 +02:00
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JacobiSVD(const MatrixType& matrix) : m_isInitialized(false)
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{
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compute(matrix);
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}
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2009-09-01 13:18:03 +02:00
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2009-08-31 22:26:15 -04:00
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JacobiSVD& compute(const MatrixType& matrix);
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2009-08-31 22:26:15 -04:00
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const MatrixUType& matrixU() const
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{
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ei_assert(m_isInitialized && "JacobiSVD is not initialized.");
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return m_matrixU;
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}
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const SingularValuesType& singularValues() const
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{
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ei_assert(m_isInitialized && "JacobiSVD is not initialized.");
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return m_singularValues;
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}
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const MatrixVType& matrixV() const
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{
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ei_assert(m_isInitialized && "JacobiSVD is not initialized.");
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return m_matrixV;
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}
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protected:
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MatrixUType m_matrixU;
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MatrixVType m_matrixV;
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SingularValuesType m_singularValues;
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bool m_isInitialized;
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2009-09-01 13:18:03 +02:00
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2009-08-31 22:26:15 -04:00
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template<typename _MatrixType, unsigned int _Options, bool _IsComplex>
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friend struct ei_svd_precondition_2x2_block_to_be_real;
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2009-09-03 02:53:51 -04:00
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template<typename _MatrixType, unsigned int _Options, bool _PossiblyMoreRowsThanCols>
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friend struct ei_svd_precondition_if_more_rows_than_cols;
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template<typename _MatrixType, unsigned int _Options, bool _PossiblyMoreRowsThanCols>
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friend struct ei_svd_precondition_if_more_cols_than_rows;
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2009-08-31 22:26:15 -04:00
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};
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2009-09-15 11:53:24 +02:00
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template<typename MatrixType, unsigned int Options>
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struct ei_svd_precondition_2x2_block_to_be_real<MatrixType, Options, false>
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2009-08-31 22:26:15 -04:00
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{
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typedef JacobiSVD<MatrixType, Options> SVD;
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static void run(typename SVD::WorkMatrixType&, JacobiSVD<MatrixType, Options>&, int, int) {}
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2009-08-31 22:26:15 -04:00
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};
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template<typename MatrixType, unsigned int Options>
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struct ei_svd_precondition_2x2_block_to_be_real<MatrixType, Options, true>
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{
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typedef JacobiSVD<MatrixType, Options> SVD;
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typedef typename MatrixType::Scalar Scalar;
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typedef typename MatrixType::RealScalar RealScalar;
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enum { ComputeU = SVD::ComputeU, ComputeV = SVD::ComputeV };
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static void run(typename SVD::WorkMatrixType& work_matrix, JacobiSVD<MatrixType, Options>& svd, int p, int q)
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{
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2009-09-01 13:18:03 +02:00
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Scalar z;
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2009-09-02 15:04:10 +02:00
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PlanarRotation<Scalar> rot;
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2009-08-31 22:26:15 -04:00
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RealScalar n = ei_sqrt(ei_abs2(work_matrix.coeff(p,p)) + ei_abs2(work_matrix.coeff(q,p)));
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if(n==0)
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{
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z = ei_abs(work_matrix.coeff(p,q)) / work_matrix.coeff(p,q);
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work_matrix.row(p) *= z;
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if(ComputeU) svd.m_matrixU.col(p) *= ei_conj(z);
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z = ei_abs(work_matrix.coeff(q,q)) / work_matrix.coeff(q,q);
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work_matrix.row(q) *= z;
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if(ComputeU) svd.m_matrixU.col(q) *= ei_conj(z);
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}
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else
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{
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rot.c() = ei_conj(work_matrix.coeff(p,p)) / n;
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rot.s() = work_matrix.coeff(q,p) / n;
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2009-09-02 15:04:10 +02:00
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work_matrix.applyOnTheLeft(p,q,rot);
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if(ComputeU) svd.m_matrixU.applyOnTheRight(p,q,rot.adjoint());
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2009-08-31 22:26:15 -04:00
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if(work_matrix.coeff(p,q) != Scalar(0))
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{
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Scalar z = ei_abs(work_matrix.coeff(p,q)) / work_matrix.coeff(p,q);
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work_matrix.col(q) *= z;
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if(ComputeV) svd.m_matrixV.col(q) *= z;
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}
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if(work_matrix.coeff(q,q) != Scalar(0))
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{
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z = ei_abs(work_matrix.coeff(q,q)) / work_matrix.coeff(q,q);
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work_matrix.row(q) *= z;
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if(ComputeU) svd.m_matrixU.col(q) *= ei_conj(z);
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}
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}
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2009-09-01 13:18:03 +02:00
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}
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2009-08-31 22:26:15 -04:00
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};
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template<typename MatrixType, typename RealScalar>
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void ei_real_2x2_jacobi_svd(const MatrixType& matrix, int p, int q,
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PlanarRotation<RealScalar> *j_left,
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PlanarRotation<RealScalar> *j_right)
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2009-08-31 22:26:15 -04:00
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{
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Matrix<RealScalar,2,2> m;
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m << ei_real(matrix.coeff(p,p)), ei_real(matrix.coeff(p,q)),
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ei_real(matrix.coeff(q,p)), ei_real(matrix.coeff(q,q));
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2009-09-02 15:04:10 +02:00
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PlanarRotation<RealScalar> rot1;
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RealScalar t = m.coeff(0,0) + m.coeff(1,1);
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RealScalar d = m.coeff(1,0) - m.coeff(0,1);
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if(t == RealScalar(0))
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{
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2009-09-01 13:18:03 +02:00
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rot1.c() = 0;
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rot1.s() = d > 0 ? 1 : -1;
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}
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else
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{
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RealScalar u = d / t;
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2009-09-01 13:18:03 +02:00
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rot1.c() = RealScalar(1) / ei_sqrt(1 + ei_abs2(u));
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rot1.s() = rot1.c() * u;
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}
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2009-09-02 15:04:10 +02:00
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m.applyOnTheLeft(0,1,rot1);
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j_right->makeJacobi(m,0,1);
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2009-09-01 13:18:03 +02:00
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*j_left = rot1 * j_right->transpose();
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2009-08-31 22:26:15 -04:00
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}
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2009-09-15 11:53:24 +02:00
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template<typename MatrixType, unsigned int Options, bool PossiblyMoreRowsThanCols>
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struct ei_svd_precondition_if_more_rows_than_cols
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{
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typedef JacobiSVD<MatrixType, Options> SVD;
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static bool run(const MatrixType&, typename SVD::WorkMatrixType&, JacobiSVD<MatrixType, Options>&) { return false; }
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};
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template<typename MatrixType, unsigned int Options>
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struct ei_svd_precondition_if_more_rows_than_cols<MatrixType, Options, true>
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{
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typedef JacobiSVD<MatrixType, Options> SVD;
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typedef typename MatrixType::Scalar Scalar;
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typedef typename MatrixType::RealScalar RealScalar;
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enum { ComputeU = SVD::ComputeU, ComputeV = SVD::ComputeV };
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static bool run(const MatrixType& matrix, typename SVD::WorkMatrixType& work_matrix, SVD& svd)
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{
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int rows = matrix.rows();
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int cols = matrix.cols();
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int diagSize = cols;
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if(rows > cols)
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{
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2009-10-28 18:19:29 -04:00
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FullPivHouseholderQR<MatrixType> qr(matrix);
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2010-01-07 21:15:32 +01:00
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work_matrix = qr.matrixQR().block(0,0,diagSize,diagSize).template triangularView<Upper>();
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if(ComputeU) svd.m_matrixU = qr.matrixQ();
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2009-11-18 12:41:24 -05:00
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if(ComputeV) svd.m_matrixV = qr.colsPermutation();
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2009-09-03 02:53:51 -04:00
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return true;
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}
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else return false;
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}
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};
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2009-09-15 11:53:24 +02:00
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template<typename MatrixType, unsigned int Options, bool PossiblyMoreColsThanRows>
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2009-09-03 02:53:51 -04:00
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struct ei_svd_precondition_if_more_cols_than_rows
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{
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typedef JacobiSVD<MatrixType, Options> SVD;
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static bool run(const MatrixType&, typename SVD::WorkMatrixType&, JacobiSVD<MatrixType, Options>&) { return false; }
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};
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template<typename MatrixType, unsigned int Options>
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struct ei_svd_precondition_if_more_cols_than_rows<MatrixType, Options, true>
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{
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typedef JacobiSVD<MatrixType, Options> SVD;
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typedef typename MatrixType::Scalar Scalar;
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typedef typename MatrixType::RealScalar RealScalar;
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enum {
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ComputeU = SVD::ComputeU,
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ComputeV = SVD::ComputeV,
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RowsAtCompileTime = SVD::RowsAtCompileTime,
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ColsAtCompileTime = SVD::ColsAtCompileTime,
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MaxRowsAtCompileTime = SVD::MaxRowsAtCompileTime,
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MaxColsAtCompileTime = SVD::MaxColsAtCompileTime,
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MatrixOptions = SVD::MatrixOptions
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};
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2009-09-15 11:53:24 +02:00
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2009-09-03 02:53:51 -04:00
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static bool run(const MatrixType& matrix, typename SVD::WorkMatrixType& work_matrix, SVD& svd)
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|
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{
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int rows = matrix.rows();
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int cols = matrix.cols();
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int diagSize = rows;
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if(cols > rows)
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{
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typedef Matrix<Scalar,ColsAtCompileTime,RowsAtCompileTime,
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MatrixOptions,MaxColsAtCompileTime,MaxRowsAtCompileTime>
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TransposeTypeWithSameStorageOrder;
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2009-10-28 18:19:29 -04:00
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FullPivHouseholderQR<TransposeTypeWithSameStorageOrder> qr(matrix.adjoint());
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2010-01-07 21:15:32 +01:00
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work_matrix = qr.matrixQR().block(0,0,diagSize,diagSize).template triangularView<Upper>().adjoint();
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2009-09-03 02:53:51 -04:00
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if(ComputeV) svd.m_matrixV = qr.matrixQ();
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2009-11-18 12:41:24 -05:00
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if(ComputeU) svd.m_matrixU = qr.colsPermutation();
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2009-09-03 02:53:51 -04:00
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return true;
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|
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}
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else return false;
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}
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|
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};
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2009-08-31 22:26:15 -04:00
|
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|
template<typename MatrixType, unsigned int Options>
|
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|
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|
JacobiSVD<MatrixType, Options>& JacobiSVD<MatrixType, Options>::compute(const MatrixType& matrix)
|
|
|
|
|
{
|
2009-09-03 02:53:51 -04:00
|
|
|
WorkMatrixType work_matrix;
|
2009-09-02 06:36:55 -04:00
|
|
|
int rows = matrix.rows();
|
|
|
|
|
int cols = matrix.cols();
|
|
|
|
|
int diagSize = std::min(rows, cols);
|
|
|
|
|
m_singularValues.resize(diagSize);
|
2010-02-10 10:52:28 +01:00
|
|
|
const RealScalar precision = 2 * NumTraits<Scalar>::epsilon();
|
2009-08-31 22:26:15 -04:00
|
|
|
|
2009-09-03 02:53:51 -04:00
|
|
|
if(!ei_svd_precondition_if_more_rows_than_cols<MatrixType, Options>::run(matrix, work_matrix, *this)
|
|
|
|
|
&& !ei_svd_precondition_if_more_cols_than_rows<MatrixType, Options>::run(matrix, work_matrix, *this))
|
2009-09-02 06:36:55 -04:00
|
|
|
{
|
2009-09-03 02:53:51 -04:00
|
|
|
work_matrix = matrix.block(0,0,diagSize,diagSize);
|
2009-11-18 17:44:20 -05:00
|
|
|
if(ComputeU) m_matrixU.setIdentity(rows,rows);
|
|
|
|
|
if(ComputeV) m_matrixV.setIdentity(cols,cols);
|
2009-09-02 06:36:55 -04:00
|
|
|
}
|
2009-09-03 02:53:51 -04:00
|
|
|
|
|
|
|
|
bool finished = false;
|
|
|
|
|
while(!finished)
|
2009-08-31 22:26:15 -04:00
|
|
|
{
|
2009-09-03 02:53:51 -04:00
|
|
|
finished = true;
|
|
|
|
|
for(int p = 1; p < diagSize; ++p)
|
2009-08-31 22:26:15 -04:00
|
|
|
{
|
2009-09-03 02:53:51 -04:00
|
|
|
for(int q = 0; q < p; ++q)
|
2009-08-31 22:26:15 -04:00
|
|
|
{
|
2009-09-03 02:53:51 -04:00
|
|
|
if(std::max(ei_abs(work_matrix.coeff(p,q)),ei_abs(work_matrix.coeff(q,p)))
|
|
|
|
|
> std::max(ei_abs(work_matrix.coeff(p,p)),ei_abs(work_matrix.coeff(q,q)))*precision)
|
|
|
|
|
{
|
|
|
|
|
finished = false;
|
|
|
|
|
ei_svd_precondition_2x2_block_to_be_real<MatrixType, Options>::run(work_matrix, *this, p, q);
|
2009-08-31 22:26:15 -04:00
|
|
|
|
2009-09-03 02:53:51 -04:00
|
|
|
PlanarRotation<RealScalar> j_left, j_right;
|
|
|
|
|
ei_real_2x2_jacobi_svd(work_matrix, p, q, &j_left, &j_right);
|
2009-09-01 13:18:03 +02:00
|
|
|
|
2009-09-03 02:53:51 -04:00
|
|
|
work_matrix.applyOnTheLeft(p,q,j_left);
|
|
|
|
|
if(ComputeU) m_matrixU.applyOnTheRight(p,q,j_left.transpose());
|
2009-09-01 13:18:03 +02:00
|
|
|
|
2009-09-03 02:53:51 -04:00
|
|
|
work_matrix.applyOnTheRight(p,q,j_right);
|
|
|
|
|
if(ComputeV) m_matrixV.applyOnTheRight(p,q,j_right);
|
|
|
|
|
}
|
2009-08-31 22:26:15 -04:00
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
}
|
2009-09-01 13:18:03 +02:00
|
|
|
|
2009-09-02 06:36:55 -04:00
|
|
|
for(int i = 0; i < diagSize; ++i)
|
2009-08-31 22:26:15 -04:00
|
|
|
{
|
|
|
|
|
RealScalar a = ei_abs(work_matrix.coeff(i,i));
|
|
|
|
|
m_singularValues.coeffRef(i) = a;
|
|
|
|
|
if(ComputeU && (a!=RealScalar(0))) m_matrixU.col(i) *= work_matrix.coeff(i,i)/a;
|
|
|
|
|
}
|
|
|
|
|
|
2009-09-02 06:36:55 -04:00
|
|
|
for(int i = 0; i < diagSize; i++)
|
2009-08-31 22:26:15 -04:00
|
|
|
{
|
|
|
|
|
int pos;
|
2010-01-04 21:24:43 -05:00
|
|
|
m_singularValues.tail(diagSize-i).maxCoeff(&pos);
|
2009-08-31 22:26:15 -04:00
|
|
|
if(pos)
|
|
|
|
|
{
|
|
|
|
|
pos += i;
|
|
|
|
|
std::swap(m_singularValues.coeffRef(i), m_singularValues.coeffRef(pos));
|
|
|
|
|
if(ComputeU) m_matrixU.col(pos).swap(m_matrixU.col(i));
|
|
|
|
|
if(ComputeV) m_matrixV.col(pos).swap(m_matrixV.col(i));
|
|
|
|
|
}
|
|
|
|
|
}
|
2009-09-01 13:18:03 +02:00
|
|
|
|
2009-08-31 22:26:15 -04:00
|
|
|
m_isInitialized = true;
|
|
|
|
|
return *this;
|
|
|
|
|
}
|
|
|
|
|
#endif // EIGEN_JACOBISVD_H
|