12 #ifndef EIGEN_GENERALIZEDEIGENSOLVER_H
13 #define EIGEN_GENERALIZEDEIGENSOLVER_H
66 RowsAtCompileTime = MatrixType::RowsAtCompileTime,
67 ColsAtCompileTime = MatrixType::ColsAtCompileTime,
68 Options = MatrixType::Options,
69 MaxRowsAtCompileTime = MatrixType::MaxRowsAtCompileTime,
70 MaxColsAtCompileTime = MatrixType::MaxColsAtCompileTime
74 typedef typename MatrixType::Scalar
Scalar;
123 m_vectorsOkay(false),
134 : m_eivec(size, size),
138 m_vectorsOkay(false),
156 : m_eivec(A.rows(), A.cols()),
160 m_vectorsOkay(false),
164 compute(A, B, computeEigenvectors);
180 eigen_assert(m_vectorsOkay &&
"Eigenvectors for GeneralizedEigenSolver were not calculated.");
204 eigen_assert(m_valuesOkay &&
"GeneralizedEigenSolver is not initialized.");
215 eigen_assert(m_valuesOkay &&
"GeneralizedEigenSolver is not initialized.");
226 eigen_assert(m_valuesOkay &&
"GeneralizedEigenSolver is not initialized.");
257 eigen_assert(m_valuesOkay &&
"EigenSolver is not initialized.");
258 return m_realQZ.
info();
271 static void check_template_parameters()
273 EIGEN_STATIC_ASSERT_NON_INTEGER(
Scalar);
280 bool m_valuesOkay, m_vectorsOkay;
281 RealQZ<MatrixType> m_realQZ;
285 template<
typename MatrixType>
286 GeneralizedEigenSolver<MatrixType>&
289 check_template_parameters();
293 eigen_assert(A.cols() == A.rows() && B.cols() == A.rows() && B.cols() == B.rows());
294 Index size = A.cols();
295 m_valuesOkay =
false;
296 m_vectorsOkay =
false;
299 m_realQZ.compute(A, B, computeEigenvectors);
300 if (m_realQZ.info() ==
Success)
303 m_alphas.resize(size);
304 m_betas.resize(size);
305 if (computeEigenvectors)
307 m_eivec.resize(size,size);
320 if (i == size - 1 || mS.coeff(i+1, i) ==
Scalar(0))
323 m_alphas.
coeffRef(i) = mS.diagonal().coeff(i);
324 m_betas.coeffRef(i) = mT.diagonal().coeff(i);
325 if (computeEigenvectors)
327 v.setConstant(
Scalar(0.0));
328 v.coeffRef(i) =
Scalar(1.0);
330 if(abs(m_betas.coeffRef(i)) >= (std::numeric_limits<RealScalar>::min)())
333 const Scalar alpha = real(m_alphas.coeffRef(i));
334 const Scalar beta = m_betas.coeffRef(i);
335 for (
Index j = i-1; j >= 0; j--)
337 const Index st = j+1;
338 const Index sz = i-j;
339 if (j > 0 && mS.coeff(j, j-1) !=
Scalar(0))
342 Matrix<Scalar, 2, 1> rhs = (alpha*mT.template block<2,Dynamic>(j-1,st,2,sz) - beta*mS.template block<2,Dynamic>(j-1,st,2,sz)) .lazyProduct( v.segment(st,sz) );
343 Matrix<Scalar, 2, 2> lhs = beta * mS.template block<2,2>(j-1,j-1) - alpha * mT.template block<2,2>(j-1,j-1);
344 v.template segment<2>(j-1) = lhs.partialPivLu().solve(rhs);
349 v.coeffRef(j) = -v.segment(st,sz).transpose().cwiseProduct(beta*mS.block(j,st,1,sz) - alpha*mT.block(j,st,1,sz)).sum() / (beta*mS.coeffRef(j,j) - alpha*mT.coeffRef(j,j));
353 m_eivec.col(i).real().noalias() = m_realQZ.matrixZ().transpose() * v;
354 m_eivec.col(i).real().normalize();
355 m_eivec.col(i).imag().setConstant(0);
366 RealScalar a = mT.diagonal().coeff(i),
367 b = mT.diagonal().coeff(i+1);
368 const RealScalar beta = m_betas.coeffRef(i) = m_betas.coeffRef(i+1) = a*b;
376 m_alphas.coeffRef(i) = conj(alpha);
377 m_alphas.coeffRef(i+1) = alpha;
379 if (computeEigenvectors) {
384 cv.
coeffRef(i) = -(
static_cast<Scalar>(beta*mS.coeffRef(i,i+1)) - alpha*mT.coeffRef(i,i+1))
385 / (
static_cast<Scalar>(beta*mS.coeffRef(i,i)) - alpha*mT.coeffRef(i,i));
386 for (
Index j = i-1; j >= 0; j--)
388 const Index st = j+1;
389 const Index sz = i+1-j;
390 if (j > 0 && mS.coeff(j, j-1) !=
Scalar(0))
393 Matrix<ComplexScalar, 2, 1> rhs = (alpha*mT.template block<2,Dynamic>(j-1,st,2,sz) - beta*mS.template block<2,Dynamic>(j-1,st,2,sz)) .lazyProduct( cv.segment(st,sz) );
395 cv.template segment<2>(j-1) = lhs.partialPivLu().solve(rhs);
398 cv.
coeffRef(j) = cv.segment(st,sz).transpose().cwiseProduct(beta*mS.block(j,st,1,sz) - alpha*mT.block(j,st,1,sz)).sum()
399 / (alpha*mT.coeffRef(j,j) -
static_cast<Scalar>(beta*mS.coeffRef(j,j)));
402 m_eivec.col(i+1).noalias() = (m_realQZ.matrixZ().transpose() * cv);
403 m_eivec.col(i+1).normalize();
404 m_eivec.col(i) = m_eivec.col(i+1).conjugate();
411 m_vectorsOkay = computeEigenvectors;
418 #endif // EIGEN_GENERALIZEDEIGENSOLVER_H