Files
ceres-solver/internal/ceres/parameter_block_ordering.cc
T

180 lines
6.2 KiB
C++
Raw Normal View History

2012-04-30 23:09:08 -07:00
// Ceres Solver - A fast non-linear least squares minimizer
2022-02-20 02:22:17 +01:00
// Copyright 2022 Google Inc. All rights reserved.
// http://ceres-solver.org/
2012-04-30 23:09:08 -07:00
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// * Redistributions of source code must retain the above copyright notice,
// this list of conditions and the following disclaimer.
// * Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
// * Neither the name of Google Inc. nor the names of its contributors may be
// used to endorse or promote products derived from this software without
// specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
// AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
// IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
// ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
// LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
// CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
// SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
// INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
// CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
// ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
// POSSIBILITY OF SUCH DAMAGE.
//
// Author: sameeragarwal@google.com (Sameer Agarwal)
#include "ceres/parameter_block_ordering.h"
2012-04-30 23:09:08 -07:00
2023-01-16 07:38:05 -08:00
#include <map>
2018-03-30 16:16:59 -07:00
#include <memory>
2023-01-16 07:38:05 -08:00
#include <set>
2018-03-29 22:01:29 -07:00
#include <unordered_set>
2023-01-16 07:38:05 -08:00
#include <vector>
2018-03-30 16:16:59 -07:00
2012-04-30 23:09:08 -07:00
#include "ceres/graph.h"
#include "ceres/graph_algorithms.h"
#include "ceres/map_util.h"
#include "ceres/parameter_block.h"
#include "ceres/program.h"
#include "ceres/residual_block.h"
2014-08-17 13:14:50 -07:00
#include "ceres/wall_time.h"
#include "glog/logging.h"
2012-04-30 23:09:08 -07:00
2022-04-21 17:41:10 -07:00
namespace ceres::internal {
2012-04-30 23:09:08 -07:00
2013-05-17 22:52:21 -07:00
int ComputeStableSchurOrdering(const Program& program,
2023-01-11 16:51:38 +00:00
std::vector<ParameterBlock*>* ordering) {
2018-08-27 07:12:43 -07:00
CHECK(ordering != nullptr);
ordering->clear();
2014-08-17 13:14:50 -07:00
EventLogger event_logger("ComputeStableSchurOrdering");
auto graph = CreateHessianGraph(program);
2014-08-17 13:14:50 -07:00
event_logger.AddEvent("CreateHessianGraph");
2023-01-14 05:54:24 -08:00
const std::vector<ParameterBlock*>& parameter_blocks =
program.parameter_blocks();
2018-03-29 22:01:29 -07:00
const std::unordered_set<ParameterBlock*>& vertices = graph->vertices();
2022-02-20 02:22:17 +01:00
for (auto* parameter_block : parameter_blocks) {
if (vertices.count(parameter_block) > 0) {
ordering->push_back(parameter_block);
2013-05-17 22:52:21 -07:00
}
}
2014-08-17 13:14:50 -07:00
event_logger.AddEvent("Preordering");
2013-05-17 22:52:21 -07:00
int independent_set_size = StableIndependentSetOrdering(*graph, ordering);
2014-08-17 13:14:50 -07:00
event_logger.AddEvent("StableIndependentSet");
2013-05-17 22:52:21 -07:00
// Add the excluded blocks to back of the ordering vector.
2022-02-20 02:22:17 +01:00
for (auto* parameter_block : parameter_blocks) {
2013-05-17 22:52:21 -07:00
if (parameter_block->IsConstant()) {
ordering->push_back(parameter_block);
}
}
2014-08-17 13:14:50 -07:00
event_logger.AddEvent("ConstantParameterBlocks");
2013-05-17 22:52:21 -07:00
return independent_set_size;
}
2012-04-30 23:09:08 -07:00
int ComputeSchurOrdering(const Program& program,
2023-01-11 16:51:38 +00:00
std::vector<ParameterBlock*>* ordering) {
2018-08-27 07:12:43 -07:00
CHECK(ordering != nullptr);
ordering->clear();
2012-04-30 23:09:08 -07:00
auto graph = CreateHessianGraph(program);
2012-08-17 16:16:32 -07:00
int independent_set_size = IndependentSetOrdering(*graph, ordering);
2023-01-14 05:54:24 -08:00
const std::vector<ParameterBlock*>& parameter_blocks =
program.parameter_blocks();
2012-04-30 23:09:08 -07:00
// Add the excluded blocks to back of the ordering vector.
2022-02-20 02:22:17 +01:00
for (auto* parameter_block : parameter_blocks) {
2012-04-30 23:09:08 -07:00
if (parameter_block->IsConstant()) {
ordering->push_back(parameter_block);
}
}
return independent_set_size;
}
void ComputeRecursiveIndependentSetOrdering(const Program& program,
ParameterBlockOrdering* ordering) {
2018-08-27 07:12:43 -07:00
CHECK(ordering != nullptr);
ordering->Clear();
2023-01-14 05:54:24 -08:00
const std::vector<ParameterBlock*> parameter_blocks =
program.parameter_blocks();
auto graph = CreateHessianGraph(program);
int num_covered = 0;
int round = 0;
while (num_covered < parameter_blocks.size()) {
2023-01-11 16:51:38 +00:00
std::vector<ParameterBlock*> independent_set_ordering;
const int independent_set_size =
IndependentSetOrdering(*graph, &independent_set_ordering);
for (int i = 0; i < independent_set_size; ++i) {
ParameterBlock* parameter_block = independent_set_ordering[i];
ordering->AddElementToGroup(parameter_block->mutable_user_state(), round);
graph->RemoveVertex(parameter_block);
}
num_covered += independent_set_size;
++round;
}
}
std::unique_ptr<Graph<ParameterBlock*>> CreateHessianGraph(
const Program& program) {
auto graph = std::make_unique<Graph<ParameterBlock*>>();
2018-08-27 07:12:43 -07:00
CHECK(graph != nullptr);
2023-01-14 05:54:24 -08:00
const std::vector<ParameterBlock*>& parameter_blocks =
program.parameter_blocks();
2022-02-20 02:22:17 +01:00
for (auto* parameter_block : parameter_blocks) {
2012-04-30 23:09:08 -07:00
if (!parameter_block->IsConstant()) {
graph->AddVertex(parameter_block);
}
}
2023-01-14 05:54:24 -08:00
const std::vector<ResidualBlock*>& residual_blocks =
program.residual_blocks();
2022-02-20 02:22:17 +01:00
for (auto* residual_block : residual_blocks) {
2012-04-30 23:09:08 -07:00
const int num_parameter_blocks = residual_block->NumParameterBlocks();
ParameterBlock* const* parameter_blocks =
residual_block->parameter_blocks();
for (int j = 0; j < num_parameter_blocks; ++j) {
if (parameter_blocks[j]->IsConstant()) {
continue;
}
for (int k = j + 1; k < num_parameter_blocks; ++k) {
if (parameter_blocks[k]->IsConstant()) {
continue;
}
graph->AddEdge(parameter_blocks[j], parameter_blocks[k]);
}
}
}
return graph;
}
2014-05-29 22:49:27 -07:00
void OrderingToGroupSizes(const ParameterBlockOrdering* ordering,
2023-01-11 16:51:38 +00:00
std::vector<int>* group_sizes) {
2018-08-27 07:12:43 -07:00
CHECK(group_sizes != nullptr);
group_sizes->clear();
2022-02-02 13:17:29 -08:00
if (ordering == nullptr) {
2014-05-29 22:49:27 -07:00
return;
}
2023-01-16 07:38:05 -08:00
// TODO(sameeragarwal): Investigate if this should be a set or an
// unordered_set.
2023-01-11 16:51:38 +00:00
const std::map<int, std::set<double*>>& group_to_elements =
2014-05-29 22:49:27 -07:00
ordering->group_to_elements();
2018-03-29 22:01:29 -07:00
for (const auto& g_t_e : group_to_elements) {
group_sizes->push_back(g_t_e.second.size());
2014-05-29 22:49:27 -07:00
}
}
2022-04-21 17:41:10 -07:00
} // namespace ceres::internal