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  /external/eigen/doc/snippets/
HessenbergDecomposition_compute.cpp 4 cout << "The matrix H in the decomposition of A is:" << endl << hd.matrixH() << endl;
6 cout << "The matrix H in the decomposition of 2A is:" << endl << hd.matrixH() << endl;
HessenbergDecomposition_matrixH.cpp 4 MatrixXf H = hessOfA.matrixH();
HessenbergDecomposition_packedMatrix.cpp 7 << endl << hessOfA.matrixH() << endl;
  /external/eigen/test/
hessenberg.cpp 23 MatrixType H = hess.matrixH();
37 VERIFY_IS_EQUAL(cs1.matrixH().eval(), cs2.matrixH().eval());
44 VERIFY_RAISES_ASSERT( hessUninitialized.matrixH() );
  /external/eigen/test/eigen2/
eigen2_qr.cpp 39 VERIFY_IS_APPROX(b, hess.matrixQ() * hess.matrixH() * hess.matrixQ().adjoint());
40 VERIFY_IS_APPROX(tridiag.matrixT(), hess.matrixH());
43 VERIFY_IS_APPROX(b, hess.matrixQ() * hess.matrixH() * hess.matrixQ().adjoint());
  /external/eigen/Eigen/src/Eigenvalues/
ComplexSchur.h 192 * \param[in] matrixH Matrix in Hessenberg form H
197 * This routine assumes that the matrix is already reduced in Hessenberg form matrixH
209 ComplexSchur& computeFromHessenberg(const HessMatrixType& matrixH, const OrthMatrixType& matrixQ, bool computeU=true);
338 ComplexSchur<MatrixType>& ComplexSchur<MatrixType>::computeFromHessenberg(const HessMatrixType& matrixH, const OrthMatrixType& matrixQ, bool computeU)
340 m_matT = matrixH;
356 _this.m_matT = _this.m_hess.matrixH();
370 _this.m_matT = _this.m_hess.matrixH().template cast<ComplexScalar>();
RealSchur.h 171 * \param[in] matrixH Matrix in Hessenberg form H
176 * This routine assumes that the matrix is already reduced in Hessenberg form matrixH
188 RealSchur& computeFromHessenberg(const HessMatrixType& matrixH, const OrthMatrixType& matrixQ, bool computeU);
257 computeFromHessenberg(m_hess.matrixH(), m_hess.matrixQ(), computeU);
263 RealSchur<MatrixType>& RealSchur<MatrixType>::computeFromHessenberg(const HessMatrixType& matrixH, const OrthMatrixType& matrixQ, bool computeU)
265 m_matT = matrixH;
271 maxIters = m_maxIterationsPerRow * matrixH.rows();
HessenbergDecomposition.h 49 * computed, you can use the matrixH() and matrixQ() functions to construct
52 * The documentation for matrixH() contains an example of the typical use of
116 * \sa matrixH() for an example.
230 * \sa matrixH() for an example, class HouseholderSequence
260 MatrixHReturnType matrixH() const
325 * \brief Expression type for return value of HessenbergDecomposition::matrixH()
334 * HessenbergDecomposition::matrixH(); there is probably no other use for this

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