513 lines
16 KiB
C++
513 lines
16 KiB
C++
/*********************************************************************
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*
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* Software License Agreement (BSD License)
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*
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* Copyright (c) 2008, 2013, Willow Garage, Inc.
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* Copyright (c) 2015, Fetch Robotics, Inc.
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* All rights reserved.
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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
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* are met:
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*
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* * Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* * Redistributions in binary form must reproduce the above
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* copyright notice, this list of conditions and the following
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* disclaimer in the documentation and/or other materials provided
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* with the distribution.
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* * Neither the name of Willow Garage, Inc. nor the names of its
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* contributors may be used to endorse or promote products derived
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* from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
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* FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
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* COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
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* BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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* LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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* CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
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* 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: Eitan Marder-Eppstein
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* David V. Lu!!
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*********************************************************************/
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#include "nav2_costmap_2d/static_layer.hpp"
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#include <algorithm>
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#include <string>
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#include "pluginlib/class_list_macros.hpp"
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#include "tf2/convert.h"
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#include "tf2_geometry_msgs/tf2_geometry_msgs.hpp"
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#include "nav2_util/validate_messages.hpp"
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PLUGINLIB_EXPORT_CLASS(nav2_costmap_2d::StaticLayer, nav2_costmap_2d::Layer)
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using nav2_costmap_2d::NO_INFORMATION;
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using nav2_costmap_2d::LETHAL_OBSTACLE;
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using nav2_costmap_2d::FREE_SPACE;
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using rcl_interfaces::msg::ParameterType;
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namespace nav2_costmap_2d
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{
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StaticLayer::StaticLayer()
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: map_buffer_(nullptr)
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{
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}
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StaticLayer::~StaticLayer()
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{
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}
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void
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StaticLayer::onInitialize()
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{
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global_frame_ = layered_costmap_->getGlobalFrameID();
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getParameters();
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rclcpp::QoS map_qos(10); // initialize to default
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if (map_subscribe_transient_local_) {
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map_qos.transient_local();
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map_qos.reliable();
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map_qos.keep_last(1);
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}
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RCLCPP_INFO(
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logger_,
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"Subscribing to the map topic (%s) with %s durability",
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map_topic_.c_str(),
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map_subscribe_transient_local_ ? "transient local" : "volatile");
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auto node = node_.lock();
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if (!node) {
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throw std::runtime_error{"Failed to lock node"};
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}
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map_sub_ = node->create_subscription<nav_msgs::msg::OccupancyGrid>(
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map_topic_, map_qos,
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std::bind(&StaticLayer::incomingMap, this, std::placeholders::_1));
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if (subscribe_to_updates_) {
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RCLCPP_INFO(logger_, "Subscribing to updates");
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map_update_sub_ = node->create_subscription<map_msgs::msg::OccupancyGridUpdate>(
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map_topic_ + "_updates",
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rclcpp::SystemDefaultsQoS(),
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std::bind(&StaticLayer::incomingUpdate, this, std::placeholders::_1));
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}
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}
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void
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StaticLayer::activate()
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{
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}
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void
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StaticLayer::deactivate()
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{
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dyn_params_handler_.reset();
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}
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void
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StaticLayer::reset()
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{
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has_updated_data_ = true;
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current_ = false;
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}
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void
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StaticLayer::getParameters()
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{
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int temp_lethal_threshold = 0;
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double temp_tf_tol = 0.0;
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declareParameter("enabled", rclcpp::ParameterValue(true));
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declareParameter("subscribe_to_updates", rclcpp::ParameterValue(false));
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declareParameter("map_subscribe_transient_local", rclcpp::ParameterValue(true));
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declareParameter("transform_tolerance", rclcpp::ParameterValue(0.0));
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declareParameter("map_topic", rclcpp::ParameterValue(""));
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declareParameter("footprint_clearing_enabled", rclcpp::ParameterValue(false));
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auto node = node_.lock();
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if (!node) {
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throw std::runtime_error{"Failed to lock node"};
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}
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node->get_parameter(name_ + "." + "enabled", enabled_);
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node->get_parameter(name_ + "." + "subscribe_to_updates", subscribe_to_updates_);
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node->get_parameter(name_ + "." + "footprint_clearing_enabled", footprint_clearing_enabled_);
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std::string private_map_topic, global_map_topic;
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node->get_parameter(name_ + "." + "map_topic", private_map_topic);
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node->get_parameter("map_topic", global_map_topic);
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if (!private_map_topic.empty()) {
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map_topic_ = private_map_topic;
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} else {
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map_topic_ = global_map_topic;
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}
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node->get_parameter(
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name_ + "." + "map_subscribe_transient_local",
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map_subscribe_transient_local_);
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node->get_parameter("track_unknown_space", track_unknown_space_);
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node->get_parameter("use_maximum", use_maximum_);
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node->get_parameter("lethal_cost_threshold", temp_lethal_threshold);
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node->get_parameter("unknown_cost_value", unknown_cost_value_);
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node->get_parameter("trinary_costmap", trinary_costmap_);
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node->get_parameter("transform_tolerance", temp_tf_tol);
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// Enforce bounds
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lethal_threshold_ = std::max(std::min(temp_lethal_threshold, 100), 0);
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map_received_ = false;
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map_received_in_update_bounds_ = false;
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transform_tolerance_ = tf2::durationFromSec(temp_tf_tol);
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// Add callback for dynamic parameters
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dyn_params_handler_ = node->add_on_set_parameters_callback(
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std::bind(
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&StaticLayer::dynamicParametersCallback,
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this, std::placeholders::_1));
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}
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void
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StaticLayer::processMap(const nav_msgs::msg::OccupancyGrid & new_map)
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{
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RCLCPP_DEBUG(logger_, "StaticLayer: Process map");
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unsigned int size_x = new_map.info.width;
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unsigned int size_y = new_map.info.height;
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RCLCPP_DEBUG(
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logger_,
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"StaticLayer: Received a %d X %d map at %f m/pix", size_x, size_y,
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new_map.info.resolution);
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// resize costmap if size, resolution or origin do not match
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Costmap2D * master = layered_costmap_->getCostmap();
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if (!layered_costmap_->isRolling() && (master->getSizeInCellsX() != size_x ||
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master->getSizeInCellsY() != size_y ||
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master->getResolution() != new_map.info.resolution ||
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master->getOriginX() != new_map.info.origin.position.x ||
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master->getOriginY() != new_map.info.origin.position.y ||
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!layered_costmap_->isSizeLocked()))
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{
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// Update the size of the layered costmap (and all layers, including this one)
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RCLCPP_INFO(
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logger_,
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"StaticLayer: Resizing costmap to %d X %d at %f m/pix", size_x, size_y,
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new_map.info.resolution);
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layered_costmap_->resizeMap(
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size_x, size_y, new_map.info.resolution,
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new_map.info.origin.position.x,
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new_map.info.origin.position.y,
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true);
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} else if (size_x_ != size_x || size_y_ != size_y || // NOLINT
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resolution_ != new_map.info.resolution ||
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origin_x_ != new_map.info.origin.position.x ||
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origin_y_ != new_map.info.origin.position.y)
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{
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// only update the size of the costmap stored locally in this layer
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RCLCPP_INFO(
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logger_,
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"StaticLayer: Resizing static layer to %d X %d at %f m/pix", size_x, size_y,
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new_map.info.resolution);
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resizeMap(
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size_x, size_y, new_map.info.resolution,
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new_map.info.origin.position.x, new_map.info.origin.position.y);
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}
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unsigned int index = 0;
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// we have a new map, update full size of map
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std::lock_guard<Costmap2D::mutex_t> guard(*getMutex());
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// initialize the costmap with static data
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for (unsigned int i = 0; i < size_y; ++i) {
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for (unsigned int j = 0; j < size_x; ++j) {
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unsigned char value = new_map.data[index];
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costmap_[index] = interpretValue(value);
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++index;
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}
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}
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map_frame_ = new_map.header.frame_id;
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x_ = y_ = 0;
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width_ = size_x_;
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height_ = size_y_;
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has_updated_data_ = true;
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current_ = true;
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}
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void
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StaticLayer::matchSize()
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{
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// If we are using rolling costmap, the static map size is
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// unrelated to the size of the layered costmap
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if (!layered_costmap_->isRolling()) {
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Costmap2D * master = layered_costmap_->getCostmap();
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resizeMap(
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master->getSizeInCellsX(), master->getSizeInCellsY(), master->getResolution(),
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master->getOriginX(), master->getOriginY());
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}
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}
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unsigned char
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StaticLayer::interpretValue(unsigned char value)
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{
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// check if the static value is above the unknown or lethal thresholds
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if (track_unknown_space_ && value == unknown_cost_value_) {
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return NO_INFORMATION;
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} else if (!track_unknown_space_ && value == unknown_cost_value_) {
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return FREE_SPACE;
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} else if (value >= lethal_threshold_) {
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return LETHAL_OBSTACLE;
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} else if (trinary_costmap_) {
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return FREE_SPACE;
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}
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double scale = static_cast<double>(value) / lethal_threshold_;
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return scale * LETHAL_OBSTACLE;
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}
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void
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StaticLayer::incomingMap(const nav_msgs::msg::OccupancyGrid::SharedPtr new_map)
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{
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if (!nav2_util::validateMsg(*new_map)) {
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RCLCPP_ERROR(logger_, "Received map message is malformed. Rejecting.");
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return;
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}
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if (!map_received_) {
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processMap(*new_map);
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map_received_ = true;
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return;
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}
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std::lock_guard<Costmap2D::mutex_t> guard(*getMutex());
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map_buffer_ = new_map;
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}
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void
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StaticLayer::incomingUpdate(map_msgs::msg::OccupancyGridUpdate::ConstSharedPtr update)
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{
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std::lock_guard<Costmap2D::mutex_t> guard(*getMutex());
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if (update->y < static_cast<int32_t>(y_) ||
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y_ + height_ < update->y + update->height ||
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update->x < static_cast<int32_t>(x_) ||
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x_ + width_ < update->x + update->width)
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{
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RCLCPP_WARN(
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logger_,
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"StaticLayer: Map update ignored. Exceeds bounds of static layer.\n"
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"Static layer origin: %d, %d bounds: %d X %d\n"
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"Update origin: %d, %d bounds: %d X %d",
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x_, y_, width_, height_, update->x, update->y, update->width,
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update->height);
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return;
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}
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if (update->header.frame_id != map_frame_) {
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RCLCPP_WARN(
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logger_,
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"StaticLayer: Map update ignored. Current map is in frame %s "
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"but update was in frame %s",
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map_frame_.c_str(), update->header.frame_id.c_str());
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return;
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}
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unsigned int di = 0;
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for (unsigned int y = 0; y < update->height; y++) {
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unsigned int index_base = (update->y + y) * size_x_;
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for (unsigned int x = 0; x < update->width; x++) {
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unsigned int index = index_base + x + update->x;
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costmap_[index] = interpretValue(update->data[di++]);
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}
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}
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has_updated_data_ = true;
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}
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void
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StaticLayer::updateBounds(
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double robot_x, double robot_y, double robot_yaw, double * min_x,
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double * min_y,
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double * max_x,
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double * max_y)
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{
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if (!map_received_) {
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map_received_in_update_bounds_ = false;
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return;
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}
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map_received_in_update_bounds_ = true;
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std::lock_guard<Costmap2D::mutex_t> guard(*getMutex());
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// If there is a new available map, load it.
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if (map_buffer_) {
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processMap(*map_buffer_);
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map_buffer_ = nullptr;
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}
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if (!layered_costmap_->isRolling() ) {
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if (!(has_updated_data_ || has_extra_bounds_)) {
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return;
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}
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}
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useExtraBounds(min_x, min_y, max_x, max_y);
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double wx, wy;
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mapToWorld(x_, y_, wx, wy);
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*min_x = std::min(wx, *min_x);
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*min_y = std::min(wy, *min_y);
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mapToWorld(x_ + width_, y_ + height_, wx, wy);
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*max_x = std::max(wx, *max_x);
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*max_y = std::max(wy, *max_y);
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has_updated_data_ = false;
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updateFootprint(robot_x, robot_y, robot_yaw, min_x, min_y, max_x, max_y);
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}
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void
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StaticLayer::updateFootprint(
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double robot_x, double robot_y, double robot_yaw,
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double * min_x, double * min_y,
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double * max_x,
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double * max_y)
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{
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if (!footprint_clearing_enabled_) {return;}
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transformFootprint(robot_x, robot_y, robot_yaw, getFootprint(), transformed_footprint_);
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for (unsigned int i = 0; i < transformed_footprint_.size(); i++) {
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touch(transformed_footprint_[i].x, transformed_footprint_[i].y, min_x, min_y, max_x, max_y);
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}
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}
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void
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StaticLayer::updateCosts(
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nav2_costmap_2d::Costmap2D & master_grid,
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int min_i, int min_j, int max_i, int max_j)
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{
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std::lock_guard<Costmap2D::mutex_t> guard(*getMutex());
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if (!enabled_) {
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return;
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}
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if (!map_received_in_update_bounds_) {
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static int count = 0;
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// throttle warning down to only 1/10 message rate
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if (++count == 10) {
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RCLCPP_WARN(logger_, "Can't update static costmap layer, no map received");
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count = 0;
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}
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return;
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}
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if (footprint_clearing_enabled_) {
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setConvexPolygonCost(transformed_footprint_, nav2_costmap_2d::FREE_SPACE);
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}
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if (!layered_costmap_->isRolling()) {
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// if not rolling, the layered costmap (master_grid) has same coordinates as this layer
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if (!use_maximum_) {
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updateWithTrueOverwrite(master_grid, min_i, min_j, max_i, max_j);
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} else {
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updateWithMax(master_grid, min_i, min_j, max_i, max_j);
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}
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} else {
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// If rolling window, the master_grid is unlikely to have same coordinates as this layer
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unsigned int mx, my;
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double wx, wy;
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// Might even be in a different frame
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geometry_msgs::msg::TransformStamped transform;
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try {
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transform = tf_->lookupTransform(
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map_frame_, global_frame_, tf2::TimePointZero,
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transform_tolerance_);
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} catch (tf2::TransformException & ex) {
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RCLCPP_ERROR(logger_, "StaticLayer: %s", ex.what());
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return;
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}
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// Copy map data given proper transformations
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tf2::Transform tf2_transform;
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tf2::fromMsg(transform.transform, tf2_transform);
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for (int i = min_i; i < max_i; ++i) {
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for (int j = min_j; j < max_j; ++j) {
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// Convert master_grid coordinates (i,j) into global_frame_(wx,wy) coordinates
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layered_costmap_->getCostmap()->mapToWorld(i, j, wx, wy);
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// Transform from global_frame_ to map_frame_
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tf2::Vector3 p(wx, wy, 0);
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p = tf2_transform * p;
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// Set master_grid with cell from map
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if (worldToMap(p.x(), p.y(), mx, my)) {
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if (!use_maximum_) {
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master_grid.setCost(i, j, getCost(mx, my));
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} else {
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master_grid.setCost(i, j, std::max(getCost(mx, my), master_grid.getCost(i, j)));
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}
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}
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}
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}
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}
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current_ = true;
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}
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/**
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* @brief Callback executed when a parameter change is detected
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* @param event ParameterEvent message
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*/
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rcl_interfaces::msg::SetParametersResult
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StaticLayer::dynamicParametersCallback(
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std::vector<rclcpp::Parameter> parameters)
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{
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std::lock_guard<Costmap2D::mutex_t> guard(*getMutex());
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rcl_interfaces::msg::SetParametersResult result;
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for (auto parameter : parameters) {
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const auto & param_type = parameter.get_type();
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const auto & param_name = parameter.get_name();
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if (param_name == name_ + "." + "map_subscribe_transient_local" ||
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param_name == name_ + "." + "map_topic" ||
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param_name == name_ + "." + "subscribe_to_updates")
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{
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RCLCPP_WARN(
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logger_, "%s is not a dynamic parameter "
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"cannot be changed while running. Rejecting parameter update.", param_name.c_str());
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} else if (param_type == ParameterType::PARAMETER_DOUBLE) {
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if (param_name == name_ + "." + "transform_tolerance") {
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transform_tolerance_ = tf2::durationFromSec(parameter.as_double());
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}
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} else if (param_type == ParameterType::PARAMETER_BOOL) {
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if (param_name == name_ + "." + "enabled" && enabled_ != parameter.as_bool()) {
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enabled_ = parameter.as_bool();
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x_ = y_ = 0;
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width_ = size_x_;
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height_ = size_y_;
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has_updated_data_ = true;
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current_ = false;
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}
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} else if (param_type == ParameterType::PARAMETER_BOOL) {
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if (param_name == name_ + "." + "footprint_clearing_enabled") {
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footprint_clearing_enabled_ = parameter.as_bool();
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}
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}
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}
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result.successful = true;
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return result;
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}
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} // namespace nav2_costmap_2d
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