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https://github.com/ceres-solver/ceres-solver.git
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f59059fffb
* Fix workspace type in CUDADenseQR and CUDADenseCholesky -- Workspace sizes are in terms of number of elements, not bytes. * Add cuda-memcheck tests to catch such CUDA memory errors in the future. Change-Id: I3dd0f0947daba9e4c6cd0216bef81d694547d505
208 lines
8.3 KiB
C++
208 lines
8.3 KiB
C++
// Ceres Solver - A fast non-linear least squares minimizer
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// Copyright 2022 Google Inc. All rights reserved.
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// http://ceres-solver.org/
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//
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions are met:
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//
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// * Redistributions of source code must retain the above copyright notice,
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// this list of conditions and the following disclaimer.
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// * Redistributions in binary form must reproduce the above copyright notice,
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// this list of conditions and the following disclaimer in the documentation
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// and/or other materials provided with the distribution.
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// * Neither the name of Google Inc. nor the names of its contributors may be
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// used to endorse or promote products derived from this software without
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// specific prior written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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// AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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// IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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// ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
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// LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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// CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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// SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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// INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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// CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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// ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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// POSSIBILITY OF SUCH DAMAGE.
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//
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// Author: sameeragarwal@google.com (Sameer Agarwal)
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#ifndef CERES_INTERNAL_DENSE_QR_H_
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#define CERES_INTERNAL_DENSE_QR_H_
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// This include must come before any #ifndef check on Ceres compile options.
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// clang-format off
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#include "ceres/internal/config.h"
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// clang-format on
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#include <memory>
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#include <vector>
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#include "Eigen/Dense"
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#include "ceres/internal/disable_warnings.h"
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#include "ceres/internal/eigen.h"
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#include "ceres/internal/export.h"
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#include "ceres/linear_solver.h"
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#include "glog/logging.h"
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#ifndef CERES_NO_CUDA
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#include "ceres/context_impl.h"
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#include "ceres/cuda_buffer.h"
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#include "cublas_v2.h"
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#include "cuda_runtime.h"
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#include "cusolverDn.h"
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#endif // CERES_NO_CUDA
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namespace ceres {
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namespace internal {
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// An interface that abstracts away the internal details of various dense linear
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// algebra libraries and offers a simple API for solving dense linear systems
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// using a QR factorization.
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class CERES_NO_EXPORT DenseQR {
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public:
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static std::unique_ptr<DenseQR> Create(const LinearSolver::Options& options);
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virtual ~DenseQR();
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// Computes the QR factorization of the given matrix.
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//
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// The input matrix lhs is assumed to be a column-major num_rows x num_cols
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// matrix.
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//
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// The input matrix lhs may be modified by the implementation to store the
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// factorization, irrespective of whether the factorization succeeds or not.
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// As a result it is the user's responsibility to ensure that lhs is valid
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// when Solve is called.
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virtual LinearSolverTerminationType Factorize(int num_rows,
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int num_cols,
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double* lhs,
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std::string* message) = 0;
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// Computes the solution to the equation
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//
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// lhs * solution = rhs
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//
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// Calling Solve without calling Factorize is undefined behaviour. It is the
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// user's responsibility to ensure that the input matrix lhs passed to
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// Factorize has not been freed/modified when Solve is called.
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virtual LinearSolverTerminationType Solve(const double* rhs,
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double* solution,
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std::string* message) = 0;
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// Convenience method which combines a call to Factorize and Solve. Solve is
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// only called if Factorize returns LINEAR_SOLVER_SUCCESS.
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//
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// The input matrix lhs may be modified by the implementation to store the
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// factorization, irrespective of whether the method succeeds or not. It is
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// the user's responsibility to ensure that lhs is valid if and when Solve is
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// called again after this call.
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LinearSolverTerminationType FactorAndSolve(int num_rows,
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int num_cols,
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double* lhs,
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const double* rhs,
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double* solution,
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std::string* message);
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};
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class CERES_NO_EXPORT EigenDenseQR final : public DenseQR {
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public:
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LinearSolverTerminationType Factorize(int num_rows,
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int num_cols,
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double* lhs,
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std::string* message) override;
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LinearSolverTerminationType Solve(const double* rhs,
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double* solution,
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std::string* message) override;
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private:
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using QRType = Eigen::HouseholderQR<Eigen::Ref<ColMajorMatrix>>;
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std::unique_ptr<QRType> qr_;
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};
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#ifndef CERES_NO_LAPACK
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class CERES_NO_EXPORT LAPACKDenseQR final : public DenseQR {
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public:
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LinearSolverTerminationType Factorize(int num_rows,
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int num_cols,
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double* lhs,
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std::string* message) override;
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LinearSolverTerminationType Solve(const double* rhs,
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double* solution,
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std::string* message) override;
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private:
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double* lhs_ = nullptr;
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int num_rows_;
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int num_cols_;
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LinearSolverTerminationType termination_type_ = LINEAR_SOLVER_FATAL_ERROR;
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Vector work_;
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Vector tau_;
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Vector q_transpose_rhs_;
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};
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#endif // CERES_NO_LAPACK
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#ifndef CERES_NO_CUDA
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// Implementation of DenseQR using the 32-bit cuSolverDn interface. A
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// requirement for using this solver is that the lhs must not be rank deficient.
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// This is because cuSolverDn does not implement the singularity-checking
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// wrapper trtrs, hence this solver directly uses trsv from CUBLAS for the
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// backsubstitution.
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class CERES_NO_EXPORT CUDADenseQR final : public DenseQR {
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public:
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static std::unique_ptr<CUDADenseQR> Create(
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const LinearSolver::Options& options);
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CUDADenseQR(const CUDADenseQR&) = delete;
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CUDADenseQR& operator=(const CUDADenseQR&) = delete;
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LinearSolverTerminationType Factorize(int num_rows,
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int num_cols,
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double* lhs,
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std::string* message) override;
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LinearSolverTerminationType Solve(const double* rhs,
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double* solution,
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std::string* message) override;
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private:
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CUDADenseQR();
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// Picks up the cuSolverDN, cuBLAS, and cuStream handles from the context. If
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// the context is unable to initialize CUDA, returns false with a
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// human-readable message indicating the reason.
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bool Init(ContextImpl* context, std::string* message);
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// Handle to the cuSOLVER context.
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cusolverDnHandle_t cusolver_handle_ = nullptr;
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// Handle to cuBLAS context.
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cublasHandle_t cublas_handle_ = nullptr;
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// CUDA device stream.
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cudaStream_t stream_ = nullptr;
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// Number of rowns in the A matrix, to be cached between calls to *Factorize
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// and *Solve.
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size_t num_rows_ = 0;
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// Number of columns in the A matrix, to be cached between calls to *Factorize
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// and *Solve.
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size_t num_cols_ = 0;
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// GPU memory allocated for the A matrix (lhs matrix).
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CudaBuffer<double> lhs_;
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// GPU memory allocated for the B matrix (rhs vector).
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CudaBuffer<double> rhs_;
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// GPU memory allocated for the TAU matrix (scaling of householder vectors).
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CudaBuffer<double> tau_;
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// Scratch space for cuSOLVER on the GPU.
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CudaBuffer<double> device_workspace_;
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// Required for error handling with cuSOLVER.
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CudaBuffer<int> error_;
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// Cache the result of Factorize to ensure that when Solve is called, the
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// factiorization of lhs is valid.
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LinearSolverTerminationType factorize_result_ = LINEAR_SOLVER_FATAL_ERROR;
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};
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#endif // CERES_NO_CUDA
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} // namespace internal
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} // namespace ceres
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#include "ceres/internal/reenable_warnings.h"
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#endif // CERES_INTERNAL_DENSE_QR_H_
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