Package index
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eig_partial() - Compute a partial eigendecomposition.
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eig_full() - Compute a full dense eigendecomposition
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svd_partial() - Compute a partial singular-value decomposition.
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generalized_schur() - Compute a dense generalized Schur decomposition
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generalized_svd() - Compute a dense generalized singular value decomposition
Certified PSD geometry
Validate real PSD forms, inspect evidence, and work on their certified image spaces.
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psd_tolerance() - Create a scale-aware PSD tolerance
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psd_policy() - Create a certified PSD classification policy
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psd_identity() - Construct a certified identity PSD factor
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psd_factor() - Construct a certified real-double PSD factor
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psd_gram_factor() - Construct a supplied Gram PSD factor
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psd_laplacian() - Construct a structural sparse graph-Laplacian PSD factor
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psd_capabilities() - Inspect certified PSD capabilities
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psd_spectrum() - Return a complete certified PSD spectrum
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psd_rank() - Return certified tolerance-relative PSD rank
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psd_nullity() - Return certified numerical or algebraic nullity
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psd_apply() - Apply a certified PSD action to a vector or block
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psd_operator() - Expose a certified PSD action as an eigencore operator
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psd_reduce() - Reduce an original-coordinate block to canonical PSD image coordinates
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psd_lift() - Lift canonical PSD image coordinates
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psd_solve() - Strictly solve a compatible singular PSD system
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psd_gram() - Compute a PSD Gram or cross-Gram block
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psd_orthonormalize() - PSD-orthonormalize a block modulo the certified null space
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psd_reduced_operator() - Construct the Euclidean operator induced on a certified PSD image
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eigs() - RSpectra-compatible eigen shim.
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eigs_sym() - RSpectra-compatible symmetric eigen shim.
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svds() - RSpectra-compatible SVD shim.
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eigen_problem() - Define an eigenproblem.
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svd_problem() - Define an SVD problem.
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plan_solver() - Plan a solver for a problem.
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solve(<eigencore_plan>) - Execute a frozen eigencore solver plan.
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solve(<eigencore_eigen_problem>) - Solve a planned eigenproblem.
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solve(<eigencore_svd_problem>) - Solve a planned SVD problem.
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linear_operator() - Create a block-native linear operator.
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as_operator() - Convert an object to an eigencore operator.
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operator_identity() - Return operator identity and revision provenance.
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adjoint() - Return the adjoint operator.
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check_adjoint() - Check an operator adjoint identity.
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compose() - Compose two operators.
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crossprod_operator() - Create A^* A as an operator.
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symmetric_operator() - Mark an operator as symmetric/Hermitian.
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scale_cols() - Scale operator columns.
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scale_rows() - Scale operator rows.
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center() - Center an operator by rows or columns.
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largest() - Target the largest algebraic values.
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smallest() - Target the smallest algebraic values.
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largest_magnitude() - Target the largest values by magnitude.
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smallest_magnitude() - Target the smallest values by magnitude.
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largest_real() - Target the largest real part.
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smallest_real() - Target the smallest real part.
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largest_imaginary() - Target the largest imaginary part.
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smallest_imaginary() - Target the smallest imaginary part.
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both_ends() - Target both algebraic ends.
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nearest() - Target values nearest a shift.
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auto() - Automatic solver choice.
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lanczos() - Hermitian Lanczos method descriptor.
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lobpcg() - LOBPCG method descriptor.
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golub_kahan() - Golub-Kahan bidiagonalization method descriptor.
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randomized() - Randomized SVD method descriptor.
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shift_invert() - Shift-invert method descriptor.
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shifted_cholesky_preconditioner() - Shifted Cholesky preconditioner.
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shifted_diagonal_preconditioner() - Shifted diagonal preconditioner.
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shifted_tridiagonal_preconditioner() - Shifted tridiagonal preconditioner.
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euclidean() - Euclidean vector space descriptor.
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hermitian() - Hermitian/symmetric operator structure descriptor.
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general() - General operator structure descriptor.
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certificate() - Extract a result certificate.
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residuals(<eigencore_eigen_result>)residuals(<eigencore_svd_result>)residuals(<eigencore_certificate>) - Extract residual diagnostics.
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backward_error() - Extract backward-error diagnostics.
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values() - Extract computed values.
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alpha_beta() - Extract homogeneous generalized coordinates.
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vectors() - Extract eigenvectors.
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left_vectors() - Extract left singular vectors or left eigenvectors.
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right_vectors() - Extract right singular vectors.
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diagnostics() - Extract diagnostics.
Reusable workflows and work accounting
Persist certified basis state, inspect its memory, and compare typed solver work.
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restart_state() - Extract a reusable spectral restart state.
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retained_bytes() - Return retained-memory accounting.
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work() - Extract typed logical work diagnostics.