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- #ifndef CERES_PUBLIC_INTERNAL_LINE_PARAMETERIZATION_H_
- #define CERES_PUBLIC_INTERNAL_LINE_PARAMETERIZATION_H_
- #include "householder_vector.h"
- namespace ceres {
- template <int AmbientSpaceDimension>
- bool LineParameterization<AmbientSpaceDimension>::Plus(
- const double* x_ptr,
- const double* delta_ptr,
- double* x_plus_delta_ptr) const {
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- static constexpr int kDim = AmbientSpaceDimension;
- using AmbientVector = Eigen::Matrix<double, kDim, 1>;
- using AmbientVectorRef = Eigen::Map<Eigen::Matrix<double, kDim, 1>>;
- using ConstAmbientVectorRef =
- Eigen::Map<const Eigen::Matrix<double, kDim, 1>>;
- using ConstTangentVectorRef =
- Eigen::Map<const Eigen::Matrix<double, kDim - 1, 1>>;
- ConstAmbientVectorRef o(x_ptr);
- ConstAmbientVectorRef d(x_ptr + kDim);
- ConstTangentVectorRef delta_o(delta_ptr);
- ConstTangentVectorRef delta_d(delta_ptr + kDim - 1);
- AmbientVectorRef o_plus_delta(x_plus_delta_ptr);
- AmbientVectorRef d_plus_delta(x_plus_delta_ptr + kDim);
- const double norm_delta_d = delta_d.norm();
- o_plus_delta = o;
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- if (norm_delta_d == 0.0) {
- d_plus_delta = d;
- if (delta_o.isZero(0.0)) {
- return true;
- }
- }
-
- AmbientVector v;
- double beta;
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- internal::ComputeHouseholderVector<ConstAmbientVectorRef, double, kDim>(
- d, &v, &beta);
- if (norm_delta_d != 0.0) {
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- const double norm_delta_div_2 = 0.5 * norm_delta_d;
- const double sin_delta_by_delta =
- std::sin(norm_delta_div_2) / norm_delta_div_2;
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- AmbientVector y;
- y.template head<kDim - 1>() = 0.5 * sin_delta_by_delta * delta_d;
- y[kDim - 1] = std::cos(norm_delta_div_2);
- d_plus_delta = d.norm() * (y - v * (beta * (v.transpose() * y)));
- }
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- AmbientVector y;
- y << 0.5 * delta_o, 0;
- o_plus_delta += y - v * (beta * (v.transpose() * y));
- return true;
- }
- template <int AmbientSpaceDimension>
- bool LineParameterization<AmbientSpaceDimension>::ComputeJacobian(
- const double* x_ptr, double* jacobian_ptr) const {
- static constexpr int kDim = AmbientSpaceDimension;
- using AmbientVector = Eigen::Matrix<double, kDim, 1>;
- using ConstAmbientVectorRef =
- Eigen::Map<const Eigen::Matrix<double, kDim, 1>>;
- using MatrixRef = Eigen::Map<
- Eigen::Matrix<double, 2 * kDim, 2 * (kDim - 1), Eigen::RowMajor>>;
- ConstAmbientVectorRef d(x_ptr + kDim);
- MatrixRef jacobian(jacobian_ptr);
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- jacobian.setZero();
- AmbientVector v;
- double beta;
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- internal::ComputeHouseholderVector<ConstAmbientVectorRef, double, kDim>(
- d, &v, &beta);
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- for (int i = 0; i < kDim - 1; ++i) {
- jacobian.block(0, i, kDim, 1) = -0.5 * beta * v(i) * v;
- jacobian.col(i)(i) += 0.5;
- }
- jacobian.template block<kDim, kDim - 1>(kDim, kDim - 1) =
- jacobian.template block<kDim, kDim - 1>(0, 0) * d.norm();
- return true;
- }
- }
- #endif
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