/external/eigen/doc/examples/ |
D | TutorialLinAlgComputeTwice.cpp | 10 LLT<Matrix2f> llt; in main() local 16 llt.compute(A); in main() 17 cout << "The solution is:\n" << llt.solve(b) << endl; in main() 21 llt.compute(A); in main() 22 cout << "The solution is now:\n" << llt.solve(b) << endl; in main()
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/external/tensorflow/tensorflow/core/kernels/ |
D | matrix_solve_ls_op_impl.h | 116 const Eigen::LLT<Eigen::Ref<Matrix>, Eigen::Lower> llt(gramian); in ComputeMatrix() 118 context, llt.info() == Eigen::Success, in ComputeMatrix() 123 llt.solveInPlace(outputs->at(0)); in ComputeMatrix() 137 const Eigen::LLT<Eigen::Ref<Matrix>, Eigen::Lower> llt(gramian); in ComputeMatrix() 139 context, llt.info() == Eigen::Success, in ComputeMatrix() 143 outputs->at(0).noalias() = matrix.adjoint() * llt.solve(rhs); in ComputeMatrix()
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/external/eigen/test/ |
D | cholesky.cpp | 131 m2 += symmLo.template selfadjointView<Lower>().llt().solve(matB); in cholesky() 132 VERIFY_IS_APPROX(m2, m1 + symmLo.template selfadjointView<Lower>().llt().solve(matB)); in cholesky() 134 m2 -= symmLo.template selfadjointView<Lower>().llt().solve(matB); in cholesky() 135 VERIFY_IS_APPROX(m2, m1 - symmLo.template selfadjointView<Lower>().llt().solve(matB)); in cholesky() 137 m2.noalias() += symmLo.template selfadjointView<Lower>().llt().solve(matB); in cholesky() 138 VERIFY_IS_APPROX(m2, m1 + symmLo.template selfadjointView<Lower>().llt().solve(matB)); in cholesky() 140 m2.noalias() -= symmLo.template selfadjointView<Lower>().llt().solve(matB); in cholesky() 141 VERIFY_IS_APPROX(m2, m1 - symmLo.template selfadjointView<Lower>().llt().solve(matB)); in cholesky() 461 LLT<MatrixType> llt; in cholesky_verify_assert() local 462 VERIFY_RAISES_ASSERT(llt.matrixL()) in cholesky_verify_assert() [all …]
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/external/wpa_supplicant_8/src/fst/ |
D | fst_iface.c | 35 if (!i->cfg.llt) { in fst_iface_create() 37 i->cfg.llt = FST_DEFAULT_LLT_CFG_VALUE; in fst_iface_create()
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D | fst_session.c | 488 fst_session_set_llt(s, FST_LLT_VAL_TO_MS(le_to_host32(req->llt))); in fst_session_handle_setup_request() 798 void fst_session_set_llt(struct fst_session *s, u32 llt) in fst_session_set_llt() argument 800 s->data.llt_ms = llt; in fst_session_set_llt() 893 req.llt = host_to_le32(FST_LLT_MS_TO_VAL(s->data.llt_ms)); in fst_session_initiate_setup() 1272 long int llt = strtol(llt_str, &endp, 0); in fst_session_set_str_llt() local 1274 if (*endp || llt < 0 || (unsigned long int) llt > FST_MAX_LLT_MS) { in fst_session_set_str_llt() 1280 fst_session_set_llt(s, (u32) llt); in fst_session_set_str_llt() 1374 req.llt = host_to_le32(FST_LLT_MS_DEFAULT); in fst_test_req_send_fst_request()
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D | fst_defs.h | 50 le32 llt; member
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D | fst.h | 221 u32 llt; member
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D | fst_session.h | 28 void fst_session_set_llt(struct fst_session *s, u32 llt);
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D | fst_iface.h | 61 return i->cfg.llt; in fst_iface_get_llt()
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D | fst.c | 84 cfg->group_id, cfg->priority, cfg->llt); in fst_attach()
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D | fst_ctrl_iface.c | 898 cfg->llt = FST_DEFAULT_LLT_CFG_VALUE; in fst_parse_attach_command() 907 cfg->llt = val; in fst_parse_attach_command()
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/external/eigen/Eigen/ |
D | Cholesky | 21 * - MatrixBase::llt() 23 * - SelfAdjointView::llt()
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/external/eigen/unsupported/test/ |
D | mpreal_support.cpp | 43 X = S.selfadjointView<Lower>().llt().solve(B); in test_mpreal_support() 46 Xc = Sc.selfadjointView<Lower>().llt().solve(Bc); in test_mpreal_support()
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/external/eigen/doc/ |
D | A05_PortingFrom2To3.dox | 203 <tr><td>\code A.llt().solve(B,&X);\endcode</td> 204 <td>\code X = A.llt().solve(B); 205 X = A.selfadjointView<Lower>.llt().solve(B); 206 X = A.selfadjointView<Upper>.llt().solve(B);\endcode</td> 210 <tr><td>\code A.llt().solveInPlace(B);\endcode</td> 211 <td>\code B = A.llt().solve(B); 212 B = A.selfadjointView<Lower>.llt().solve(B); 213 B = A.selfadjointView<Upper>.llt().solve(B);\endcode</td>
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D | AsciiQuickReference.txt | 199 x = A.llt() .solve(b)); // A sym. p.d. #include <Eigen/Cholesky> 204 // .llt() -> .matrixL()
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D | UsingBlasLapackBackends.dox | 92 v1 = m2.selfadjointView<Upper>().llt().solve(v2);
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D | TutorialLinearAlgebra.dox | 90 <td>llt()</td>
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/external/eigen/failtest/ |
D | llt_int.cpp | 13 LLT<Matrix<SCALAR,Dynamic,Dynamic> > llt(Matrix<SCALAR,Dynamic,Dynamic>::Random(10,10)); in main() local
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/external/eigen/doc/snippets/ |
D | LLT_solve.cpp | 7 = (samples.adjoint() * samples).llt().solve((samples.adjoint()*elevations));
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/external/eigen/bench/ |
D | dense_solvers.cpp | 48 LLT<MatSquare> llt(size); in bench() local 59 BENCH(t_llt, tries, rep, compute_norm_equation(llt,A)); in bench()
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/external/eigen/bench/btl/libs/eigen2/ |
D | eigen2_interface.hh | 145 C = X.llt().matrixL(); in cholesky()
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/external/eigen/Eigen/src/Cholesky/ |
D | LLT.h | 516 MatrixBase<Derived>::llt() const 527 SelfAdjointView<MatrixType, UpLo>::llt() const
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/external/eigen/Eigen/src/Core/ |
D | SelfAdjointView.h | 235 const LLT<PlainObject, UpLo> llt() const;
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D | MatrixBase.h | 357 inline const LLT<PlainObject> llt() const;
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/external/swiftshader/third_party/llvm-7.0/llvm/docs/ |
D | GlobalISel.rst | 92 Class. Instead, generic vregs have a :ref:`gmir-llt`, and can be assigned 97 :ref:`gmir-llt` of the register, and, instead of the ``TargetRegisterClass``, 138 .. _gmir-llt: 469 backend -O1): because :ref:`gmir-llt` doesn't distinguish floating point from
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