| // This file is part of Eigen, a lightweight C++ template library |
| // for linear algebra. |
| // |
| // Copyright (C) 2011 Gael Guennebaud <g.gael@free.fr> |
| // |
| // This Source Code Form is subject to the terms of the Mozilla |
| // Public License v. 2.0. If a copy of the MPL was not distributed |
| // with this file, You can obtain one at http://mozilla.org/MPL/2.0/. |
| // SPDX-License-Identifier: MPL-2.0 |
| |
| #include "sparse_solver.h" |
| |
| template <typename Solver> |
| void verify_determinant_asserts(const Solver& solver) { |
| VERIFY_RAISES_ASSERT(solver.determinant()); |
| VERIFY_RAISES_ASSERT(solver.absDeterminant()); |
| VERIFY_RAISES_ASSERT(solver.logAbsDeterminant()); |
| VERIFY_RAISES_ASSERT(solver.signDeterminant()); |
| } |
| |
| // factorize_preordered() breaks out of its column loop on a bad pivot but still sets m_factorizationIsOk, |
| // leaving the tail of D -- and of L's diagonal -- unwritten. The determinant accessors read exactly those, |
| // so they check info() too, as the dense LLT ones do. |
| template <typename SparseMatrixType> |
| void test_simplicial_cholesky_determinant_asserts() { |
| typedef typename SparseMatrixType::Scalar Scalar; |
| const Index n = 6; |
| |
| // A zero pivot stops all four classes; SimplicialLLT alone also rejects a negative one. |
| SparseMatrixType zero_pivot(n, n), negative_pivot(n, n); |
| for (Index i = 0; i < n; ++i) { |
| zero_pivot.insert(i, i) = (i == 0) ? Scalar(0) : Scalar(1); |
| negative_pivot.insert(i, i) = (i == n - 1) ? Scalar(-1) : Scalar(1); |
| } |
| zero_pivot.makeCompressed(); |
| negative_pivot.makeCompressed(); |
| |
| SimplicialLLT<SparseMatrixType> llt(zero_pivot); |
| VERIFY(llt.info() == NumericalIssue); |
| verify_determinant_asserts(llt); |
| |
| SimplicialLLT<SparseMatrixType> indefinite_llt(negative_pivot); |
| VERIFY(indefinite_llt.info() == NumericalIssue); |
| verify_determinant_asserts(indefinite_llt); |
| |
| SimplicialLDLT<SparseMatrixType> ldlt(zero_pivot); |
| VERIFY(ldlt.info() == NumericalIssue); |
| verify_determinant_asserts(ldlt); |
| |
| SimplicialNonHermitianLLT<SparseMatrixType> nhllt(zero_pivot); |
| VERIFY(nhllt.info() == NumericalIssue); |
| verify_determinant_asserts(nhllt); |
| |
| SimplicialNonHermitianLDLT<SparseMatrixType> nhldlt(zero_pivot); |
| VERIFY(nhldlt.info() == NumericalIssue); |
| verify_determinant_asserts(nhldlt); |
| |
| // The deprecated SimplicialCholesky exposes determinant() alone, and reads the same tail. |
| SimplicialCholesky<SparseMatrixType> deprecated(zero_pivot); |
| VERIFY(deprecated.info() == NumericalIssue); |
| VERIFY_RAISES_ASSERT(deprecated.determinant()); |
| |
| // info() alone would not reject an unfactorized decomposition: it is constructed Success. |
| SimplicialLDLT<SparseMatrixType> unfactorized; |
| verify_determinant_asserts(unfactorized); |
| } |
| |
| template <typename T, typename I_, int flag> |
| void test_simplicial_cholesky_T() { |
| typedef SparseMatrix<T, flag, I_> SparseMatrixType; |
| SimplicialCholesky<SparseMatrixType, Lower> chol_colmajor_lower_amd; |
| SimplicialCholesky<SparseMatrixType, Upper> chol_colmajor_upper_amd; |
| SimplicialLLT<SparseMatrixType, Lower> llt_colmajor_lower_amd; |
| SimplicialLLT<SparseMatrixType, Upper> llt_colmajor_upper_amd; |
| SimplicialLDLT<SparseMatrixType, Lower> ldlt_colmajor_lower_amd; |
| SimplicialLDLT<SparseMatrixType, Upper> ldlt_colmajor_upper_amd; |
| SimplicialLDLT<SparseMatrixType, Lower, NaturalOrdering<I_> > ldlt_colmajor_lower_nat; |
| SimplicialLDLT<SparseMatrixType, Upper, NaturalOrdering<I_> > ldlt_colmajor_upper_nat; |
| SimplicialNonHermitianLLT<SparseMatrixType, Lower> nhllt_colmajor_lower_amd; |
| SimplicialNonHermitianLLT<SparseMatrixType, Upper> nhllt_colmajor_upper_amd; |
| SimplicialNonHermitianLDLT<SparseMatrixType, Lower> nhldlt_colmajor_lower_amd; |
| SimplicialNonHermitianLDLT<SparseMatrixType, Upper> nhldlt_colmajor_upper_amd; |
| SimplicialNonHermitianLDLT<SparseMatrixType, Lower, NaturalOrdering<I_> > nhldlt_colmajor_lower_nat; |
| SimplicialNonHermitianLDLT<SparseMatrixType, Upper, NaturalOrdering<I_> > nhldlt_colmajor_upper_nat; |
| |
| check_sparse_spd_solving(chol_colmajor_lower_amd); |
| check_sparse_spd_solving(chol_colmajor_upper_amd); |
| check_sparse_spd_solving(llt_colmajor_lower_amd); |
| check_sparse_spd_solving(llt_colmajor_upper_amd); |
| check_sparse_spd_solving(ldlt_colmajor_lower_amd); |
| check_sparse_spd_solving(ldlt_colmajor_upper_amd); |
| check_sparse_nonhermitian_solving(nhllt_colmajor_lower_amd); |
| check_sparse_nonhermitian_solving(nhllt_colmajor_upper_amd); |
| check_sparse_nonhermitian_solving(nhldlt_colmajor_lower_amd); |
| check_sparse_nonhermitian_solving(nhldlt_colmajor_upper_amd); |
| |
| check_sparse_spd_determinant(chol_colmajor_lower_amd); |
| check_sparse_spd_determinant(chol_colmajor_upper_amd); |
| check_sparse_spd_determinant(llt_colmajor_lower_amd); |
| check_sparse_spd_determinant(llt_colmajor_upper_amd); |
| check_sparse_spd_determinant(ldlt_colmajor_lower_amd); |
| check_sparse_spd_determinant(ldlt_colmajor_upper_amd); |
| check_sparse_nonhermitian_determinant(nhllt_colmajor_lower_amd); |
| check_sparse_nonhermitian_determinant(nhllt_colmajor_upper_amd); |
| check_sparse_nonhermitian_determinant(nhldlt_colmajor_lower_amd); |
| check_sparse_nonhermitian_determinant(nhldlt_colmajor_upper_amd); |
| |
| check_sparse_spd_log_abs_determinant(llt_colmajor_lower_amd); |
| check_sparse_spd_log_abs_determinant(llt_colmajor_upper_amd); |
| check_sparse_spd_log_abs_determinant(ldlt_colmajor_lower_amd); |
| check_sparse_spd_log_abs_determinant(ldlt_colmajor_upper_amd); |
| check_sparse_nonhermitian_log_abs_determinant(nhllt_colmajor_lower_amd); |
| check_sparse_nonhermitian_log_abs_determinant(nhllt_colmajor_upper_amd); |
| check_sparse_nonhermitian_log_abs_determinant(nhldlt_colmajor_lower_amd); |
| check_sparse_nonhermitian_log_abs_determinant(nhldlt_colmajor_upper_amd); |
| |
| test_simplicial_cholesky_determinant_asserts<SparseMatrixType>(); |
| |
| check_sparse_spd_solving(ldlt_colmajor_lower_nat, (std::min)(300, EIGEN_TEST_MAX_SIZE), 1000); |
| check_sparse_spd_solving(ldlt_colmajor_upper_nat, (std::min)(300, EIGEN_TEST_MAX_SIZE), 1000); |
| check_sparse_nonhermitian_solving(nhldlt_colmajor_lower_nat, (std::min)(300, EIGEN_TEST_MAX_SIZE), 1000); |
| check_sparse_nonhermitian_solving(nhldlt_colmajor_upper_nat, (std::min)(300, EIGEN_TEST_MAX_SIZE), 1000); |
| } |
| |
| EIGEN_DECLARE_TEST(simplicial_cholesky) { |
| CALL_SUBTEST_11((test_simplicial_cholesky_T<double, int, ColMajor>())); |
| CALL_SUBTEST_12((test_simplicial_cholesky_T<std::complex<double>, int, ColMajor>())); |
| CALL_SUBTEST_13((test_simplicial_cholesky_T<double, long int, ColMajor>())); |
| CALL_SUBTEST_21((test_simplicial_cholesky_T<double, int, RowMajor>())); |
| CALL_SUBTEST_22((test_simplicial_cholesky_T<std::complex<double>, int, RowMajor>())); |
| CALL_SUBTEST_23((test_simplicial_cholesky_T<double, long int, RowMajor>())); |
| } |