127 lines
4.6 KiB
C++
127 lines
4.6 KiB
C++
// Copyright (c) 2022 Samsung Research America
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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#include <algorithm>
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#include <string>
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#include <limits>
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#include <memory>
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#include <vector>
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#include <utility>
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#include "nav2_util/node_utils.hpp"
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#include "nav2_util/geometry_utils.hpp"
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#include "nav_2d_utils/tf_help.hpp"
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#include "nav2_graceful_controller/path_handler.hpp"
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#include "nav2_core/exceptions.hpp"
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namespace nav2_graceful_controller
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{
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using nav2_util::geometry_utils::euclidean_distance;
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PathHandler::PathHandler(
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tf2::Duration transform_tolerance,
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std::shared_ptr<tf2_ros::Buffer> tf,
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std::shared_ptr<nav2_costmap_2d::Costmap2DROS> costmap_ros)
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: transform_tolerance_(transform_tolerance), tf_buffer_(tf), costmap_ros_(costmap_ros)
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{
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}
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nav_msgs::msg::Path PathHandler::transformGlobalPlan(
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const geometry_msgs::msg::PoseStamped & pose,
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double max_robot_pose_search_dist)
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{
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// Check first if the plan is empty
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if (global_plan_.poses.empty()) {
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throw nav2_core::PlannerException("Received plan with zero length");
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}
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// Let's get the pose of the robot in the frame of the plan
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geometry_msgs::msg::PoseStamped robot_pose;
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if (!nav_2d_utils::transformPose(
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tf_buffer_, global_plan_.header.frame_id, pose, robot_pose,
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transform_tolerance_))
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{
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throw nav2_core::PlannerException("Unable to transform robot pose into global plan's frame");
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}
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// Find the first pose in the global plan that's further than max_robot_pose_search_dist
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// from the robot using integrated distance
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auto closest_pose_upper_bound =
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nav2_util::geometry_utils::first_after_integrated_distance(
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global_plan_.poses.begin(), global_plan_.poses.end(), max_robot_pose_search_dist);
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// First find the closest pose on the path to the robot
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// bounded by when the path turns around (if it does) so we don't get a pose from a later
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// portion of the path
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auto transformation_begin =
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nav2_util::geometry_utils::min_by(
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global_plan_.poses.begin(), closest_pose_upper_bound,
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[&robot_pose](const geometry_msgs::msg::PoseStamped & ps) {
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return euclidean_distance(robot_pose, ps);
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});
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// We'll discard points on the plan that are outside the local costmap
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double dist_threshold = std::max(
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costmap_ros_->getCostmap()->getSizeInMetersX(),
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costmap_ros_->getCostmap()->getSizeInMetersY()) / 2.0;
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auto transformation_end = std::find_if(
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transformation_begin, global_plan_.poses.end(),
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[&](const auto & global_plan_pose) {
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return euclidean_distance(global_plan_pose, robot_pose) > dist_threshold;
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});
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// Lambda to transform a PoseStamped from global frame to local
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auto transformGlobalPoseToLocal = [&](const auto & global_plan_pose) {
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geometry_msgs::msg::PoseStamped stamped_pose, transformed_pose;
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stamped_pose.header.frame_id = global_plan_.header.frame_id;
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stamped_pose.header.stamp = robot_pose.header.stamp;
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stamped_pose.pose = global_plan_pose.pose;
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if (!nav_2d_utils::transformPose(
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tf_buffer_, costmap_ros_->getBaseFrameID(), stamped_pose,
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transformed_pose, transform_tolerance_))
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{
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throw nav2_core::PlannerException("Unable to transform plan pose into local frame");
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}
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transformed_pose.pose.position.z = 0.0;
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return transformed_pose;
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};
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// Transform the near part of the global plan into the robot's frame of reference.
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nav_msgs::msg::Path transformed_plan;
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transformed_plan.header.frame_id = costmap_ros_->getBaseFrameID();
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transformed_plan.header.stamp = robot_pose.header.stamp;
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std::transform(
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transformation_begin, transformation_end,
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std::back_inserter(transformed_plan.poses),
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transformGlobalPoseToLocal);
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// Remove the portion of the global plan that we've already passed so we don't
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// process it on the next iteration (this is called path pruning)
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global_plan_.poses.erase(begin(global_plan_.poses), transformation_begin);
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if (transformed_plan.poses.empty()) {
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throw nav2_core::PlannerException("Resulting plan has 0 poses in it.");
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}
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return transformed_plan;
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}
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void PathHandler::setPlan(const nav_msgs::msg::Path & path)
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{
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global_plan_ = path;
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}
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} // namespace nav2_graceful_controller
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