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- #include "ceres/residual_block.h"
- #include <algorithm>
- #include <cstddef>
- #include <vector>
- #include "ceres/corrector.h"
- #include "ceres/cost_function.h"
- #include "ceres/internal/eigen.h"
- #include "ceres/internal/fixed_array.h"
- #include "ceres/loss_function.h"
- #include "ceres/manifold.h"
- #include "ceres/parameter_block.h"
- #include "ceres/residual_block_utils.h"
- #include "ceres/small_blas.h"
- using Eigen::Dynamic;
- namespace ceres::internal {
- ResidualBlock::ResidualBlock(
- const CostFunction* cost_function,
- const LossFunction* loss_function,
- const std::vector<ParameterBlock*>& parameter_blocks,
- int index)
- : cost_function_(cost_function),
- loss_function_(loss_function),
- parameter_blocks_(
- new ParameterBlock*[cost_function->parameter_block_sizes().size()]),
- index_(index) {
- CHECK(cost_function_ != nullptr);
- std::copy(parameter_blocks.begin(),
- parameter_blocks.end(),
- parameter_blocks_.get());
- }
- bool ResidualBlock::Evaluate(const bool apply_loss_function,
- double* cost,
- double* residuals,
- double** jacobians,
- double* scratch) const {
- const int num_parameter_blocks = NumParameterBlocks();
- const int num_residuals = cost_function_->num_residuals();
-
-
- FixedArray<const double*, 8> parameters(num_parameter_blocks);
- for (int i = 0; i < num_parameter_blocks; ++i) {
- parameters[i] = parameter_blocks_[i]->state();
- }
-
- FixedArray<double*, 8> global_jacobians(num_parameter_blocks);
- if (jacobians != nullptr) {
- for (int i = 0; i < num_parameter_blocks; ++i) {
- const ParameterBlock* parameter_block = parameter_blocks_[i];
- if (jacobians[i] != nullptr &&
- parameter_block->PlusJacobian() != nullptr) {
- global_jacobians[i] = scratch;
- scratch += num_residuals * parameter_block->Size();
- } else {
- global_jacobians[i] = jacobians[i];
- }
- }
- }
-
- bool outputting_residuals = (residuals != nullptr);
- if (!outputting_residuals) {
- residuals = scratch;
- }
-
-
-
- double** eval_jacobians =
- (jacobians != nullptr) ? global_jacobians.data() : nullptr;
- InvalidateEvaluation(*this, cost, residuals, eval_jacobians);
- if (!cost_function_->Evaluate(parameters.data(), residuals, eval_jacobians)) {
- return false;
- }
- if (!IsEvaluationValid(*this, parameters.data(), residuals, eval_jacobians)) {
-
- std::string message =
- "\n\n"
- "Error in evaluating the ResidualBlock.\n\n"
- "There are two possible reasons. Either the CostFunction did not evaluate and fill all \n"
- "residual and jacobians that were requested or there was a non-finite value (nan/infinite)\n"
- "generated during the or jacobian computation. \n\n" +
- EvaluationToString(
- *this, parameters.data(), cost, residuals, eval_jacobians);
-
- LOG(WARNING) << message;
- return false;
- }
- double squared_norm = VectorRef(residuals, num_residuals).squaredNorm();
-
- if (jacobians != nullptr) {
- for (int i = 0; i < num_parameter_blocks; ++i) {
- if (jacobians[i] != nullptr) {
- const ParameterBlock* parameter_block = parameter_blocks_[i];
-
- if (parameter_block->PlusJacobian() != nullptr) {
-
- MatrixMatrixMultiply<Dynamic, Dynamic, Dynamic, Dynamic, 0>(
- global_jacobians[i],
- num_residuals,
- parameter_block->Size(),
- parameter_block->PlusJacobian(),
- parameter_block->Size(),
- parameter_block->TangentSize(),
- jacobians[i],
- 0,
- 0,
- num_residuals,
- parameter_block->TangentSize());
- }
- }
- }
- }
- if (loss_function_ == nullptr || !apply_loss_function) {
- *cost = 0.5 * squared_norm;
- return true;
- }
- double rho[3];
- loss_function_->Evaluate(squared_norm, rho);
- *cost = 0.5 * rho[0];
-
-
- if (jacobians == nullptr && !outputting_residuals) {
- return true;
- }
-
-
- Corrector correct(squared_norm, rho);
- if (jacobians != nullptr) {
- for (int i = 0; i < num_parameter_blocks; ++i) {
- if (jacobians[i] != nullptr) {
- const ParameterBlock* parameter_block = parameter_blocks_[i];
-
- correct.CorrectJacobian(num_residuals,
- parameter_block->TangentSize(),
- residuals,
- jacobians[i]);
- }
- }
- }
-
- if (outputting_residuals) {
- correct.CorrectResiduals(num_residuals, residuals);
- }
- return true;
- }
- int ResidualBlock::NumScratchDoublesForEvaluate() const {
-
-
-
-
-
-
- int num_parameters = NumParameterBlocks();
- int scratch_doubles = 1;
- for (int i = 0; i < num_parameters; ++i) {
- const ParameterBlock* parameter_block = parameter_blocks_[i];
- if (parameter_block->PlusJacobian() != nullptr) {
- scratch_doubles += parameter_block->Size();
- }
- }
- scratch_doubles *= NumResiduals();
- return scratch_doubles;
- }
- }
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