Refactor move_base initialization and update costmap config
- Remove automatic initialize() call from MoveBase constructor - Comment out frame_id and plugins in local costmap config - Remove unused two_points_global_params.yaml config file
This commit is contained in:
parent
a7c4b39c6e
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a06beb70b8
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@ -1,8 +1,8 @@
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local_costmap:
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frame_id: odom
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plugins:
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- {name: obstacles, type: "costmap_2d::VoxelLayer" }
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- {name: inflation, type: "costmap_2d::InflationLayer" }
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# frame_id: odom
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# plugins:
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# - {name: obstacles, type: "costmap_2d::VoxelLayer" }
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# - {name: inflation, type: "costmap_2d::InflationLayer" }
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obstacles:
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enabled: true
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footprint_clearing_enabled: true
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@ -1,3 +0,0 @@
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base_global_planner: TwoPointsPlanner
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TwoPointsPlanner:
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lethal_obstacle: 20
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@ -32,7 +32,6 @@ move_base::MoveBase::MoveBase(TFListenerPtr tf)
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runPlanner_(false), setup_(false), p_freq_change_(false), c_freq_change_(false), new_global_plan_(false),
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pause_ctr_(false), paused_(false)
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{
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initialize(tf);
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}
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move_base::MoveBase::~MoveBase()
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@ -70,195 +69,201 @@ void move_base::MoveBase::initialize(TFListenerPtr tf)
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if (!initialized_)
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{
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tf_ = tf;
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// NodeHandle("~") will automatically load YAML files from config directory
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robot::NodeHandle nh("~");
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private_nh_ = nh;
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recovery_trigger_ = PLANNING_R;
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robot::NodeHandle nh1 = robot::NodeHandle(nh);
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nh1.setParam("local_costmap/obstacles/enabled", false);
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// nh.printAllParams();
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// nh1.printAllParams();
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// nh.printAllParams();
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// get some parameters that will be global to the move base node
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printf("[%s:%d] Getting planner parameters\n", __FILE__, __LINE__);
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std::string global_planner, local_planner;
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private_nh_.getParam("base_global_planner", global_planner, std::string(""));
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printf("[%s:%d] global_planner: %s\n", __FILE__, __LINE__, global_planner.c_str());
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private_nh_.getParam("base_local_planner", local_planner, std::string(""));
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printf("[%s:%d] local_planner: %s\n", __FILE__, __LINE__, local_planner.c_str());
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// // get some parameters that will be global to the move base node
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// std::string global_planner, local_planner;
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// private_nh_.getParam("base_global_planner", global_planner, std::string(""));
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// printf("[%s:%d] global_planner: %s\n", __FILE__, __LINE__, global_planner.c_str());
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// private_nh_.getParam("base_local_planner", local_planner, std::string(""));
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// printf("[%s:%d] local_planner: %s\n", __FILE__, __LINE__, local_planner.c_str());
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// Handle nested YAML nodes for costmap config
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std::string robot_base_frame;
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private_nh_.getParam("robot_base_frame", robot_base_frame, std::string("base_footprint"));
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std::string global_frame;
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private_nh_.getParam("global_frame", global_frame, std::string("map"));
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robot_base_frame_ = robot_base_frame;
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global_frame_ = global_frame;
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double planner_frequency;
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private_nh_.getParam("planner_frequency", planner_frequency, 0.0);
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planner_frequency_ = planner_frequency;
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double controller_frequency;
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private_nh_.getParam("controller_frequency", controller_frequency, 20.0);
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controller_frequency_ = controller_frequency;
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double planner_patience;
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private_nh_.getParam("planner_patience", planner_patience, 5.0);
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planner_patience_ = planner_patience;
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private_nh_.getParam("controller_patience", controller_patience_, 15.0);
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double max_planning_retries;
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private_nh_.getParam("max_planning_retries", max_planning_retries, -1.0);
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max_planning_retries_ = max_planning_retries;
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double oscillation_timeout;
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private_nh_.getParam("oscillation_timeout", oscillation_timeout, 0.0);
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oscillation_timeout_ = oscillation_timeout;
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double oscillation_distance;
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private_nh_.getParam("oscillation_distance", oscillation_distance, 0.5);
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oscillation_distance_ = oscillation_distance;
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// // Handle nested YAML nodes for costmap config
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// std::string robot_base_frame;
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// private_nh_.getParam("robot_base_frame", robot_base_frame, std::string("base_footprint"));
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// std::string global_frame;
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// private_nh_.getParam("global_frame", global_frame, std::string("map"));
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// robot_base_frame_ = robot_base_frame;
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// global_frame_ = global_frame;
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// double planner_frequency;
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// private_nh_.getParam("planner_frequency", planner_frequency, 0.0);
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// planner_frequency_ = planner_frequency;
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// double controller_frequency;
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// private_nh_.getParam("controller_frequency", controller_frequency, 20.0);
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// controller_frequency_ = controller_frequency;
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// double planner_patience;
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// private_nh_.getParam("planner_patience", planner_patience, 5.0);
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// planner_patience_ = planner_patience;
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// private_nh_.getParam("controller_patience", controller_patience_, 15.0);
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// double max_planning_retries;
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// private_nh_.getParam("max_planning_retries", max_planning_retries, -1.0);
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// max_planning_retries_ = max_planning_retries;
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// double oscillation_timeout;
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// private_nh_.getParam("oscillation_timeout", oscillation_timeout, 0.0);
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// oscillation_timeout_ = oscillation_timeout;
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// double oscillation_distance;
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// private_nh_.getParam("oscillation_distance", oscillation_distance, 0.5);
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// oscillation_distance_ = oscillation_distance;
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double original_xy_goal_tolerance;
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private_nh_.getParam("xy_goal_tolerance", original_xy_goal_tolerance, 0.2);
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original_xy_goal_tolerance_ = original_xy_goal_tolerance;
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double original_yaw_goal_tolerance;
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private_nh_.getParam("yaw_goal_tolerance", original_yaw_goal_tolerance, 0.2);
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original_yaw_goal_tolerance_ = original_yaw_goal_tolerance;
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// double original_xy_goal_tolerance;
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// private_nh_.getParam("xy_goal_tolerance", original_xy_goal_tolerance, 0.2);
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// original_xy_goal_tolerance_ = original_xy_goal_tolerance;
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// double original_yaw_goal_tolerance;
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// private_nh_.getParam("yaw_goal_tolerance", original_yaw_goal_tolerance, 0.2);
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// original_yaw_goal_tolerance_ = original_yaw_goal_tolerance;
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// defined local planner name
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private_nh_.getParam("position_planner_name", position_planner_name_, std::string("mkt_algorithm/MKTPositionPlanner"));
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private_nh_.getParam("docking_planner_name", docking_planner_name_, std::string("mkt_algorithm/MKTDockingPlanner"));
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private_nh_.getParam("go_straight_planner_name", go_straight_planner_name_, std::string("mkt_algorithm/MKTGoStraightPlanner"));
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private_nh_.getParam("rotate_planner_name", rotate_planner_name_, std::string("mkt_algorithm/MKTRotatePlanner"));
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// // defined local planner name
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// private_nh_.getParam("position_planner_name", position_planner_name_, std::string("mkt_algorithm/MKTPositionPlanner"));
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// private_nh_.getParam("docking_planner_name", docking_planner_name_, std::string("mkt_algorithm/MKTDockingPlanner"));
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// private_nh_.getParam("go_straight_planner_name", go_straight_planner_name_, std::string("mkt_algorithm/MKTGoStraightPlanner"));
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// private_nh_.getParam("rotate_planner_name", rotate_planner_name_, std::string("mkt_algorithm/MKTRotatePlanner"));
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// parameters of make_plan service
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private_nh_.getParam("make_plan_clear_costmap", make_plan_clear_costmap_, false);
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private_nh_.getParam("make_plan_add_unreachable_goal", make_plan_add_unreachable_goal_, false);
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private_nh_.getParam("min_approach_linear_velocity", min_approach_linear_velocity_, 0.0);
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min_approach_linear_velocity_ *= 1.2;
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// set up plan triple buffer
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planner_plan_ = new std::vector<geometry_msgs::PoseStamped>();
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latest_plan_ = new std::vector<geometry_msgs::PoseStamped>();
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controller_plan_ = new std::vector<geometry_msgs::PoseStamped>();
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// // parameters of make_plan service
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// private_nh_.getParam("make_plan_clear_costmap", make_plan_clear_costmap_, false);
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// private_nh_.getParam("make_plan_add_unreachable_goal", make_plan_add_unreachable_goal_, false);
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// private_nh_.getParam("min_approach_linear_velocity", min_approach_linear_velocity_, 0.0);
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// min_approach_linear_velocity_ *= 1.2;
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// // set up plan triple buffer
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// planner_plan_ = new std::vector<geometry_msgs::PoseStamped>();
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// latest_plan_ = new std::vector<geometry_msgs::PoseStamped>();
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// controller_plan_ = new std::vector<geometry_msgs::PoseStamped>();
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// set up the planner's thread
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planner_thread_ = new boost::thread(boost::bind(&move_base::MoveBase::planThread, this));
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// // set up the planner's thread
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// planner_thread_ = new boost::thread(boost::bind(&move_base::MoveBase::planThread, this));
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// we'll assume the radius of the robot to be consistent with what's specified for the costmaps
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// From config param
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double inscribed_radius;
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private_nh_.getParam("local_costmap/inscribed_radius", inscribed_radius, 0.2);
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double circumscribed_radius;
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private_nh_.getParam("local_costmap/circumscribed_radius", circumscribed_radius, 0.3);
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inscribed_radius_ = inscribed_radius;
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circumscribed_radius_ = circumscribed_radius;
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private_nh_.getParam("clearing_radius", clearing_radius_, 0.0);
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double conservative_reset_dist;
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private_nh_.getParam("conservative_reset_dist", conservative_reset_dist, 0.0);
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conservative_reset_dist_ = conservative_reset_dist;
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private_nh_.getParam("shutdown_costmaps", shutdown_costmaps_, false);
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private_nh_.getParam("clearing_rotation_allowed", clearing_rotation_allowed_, true);
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private_nh_.getParam("recovery_behavior_enabled", recovery_behavior_enabled_, true);
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// // we'll assume the radius of the robot to be consistent with what's specified for the costmaps
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// // From config param
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// double inscribed_radius;
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// private_nh_.getParam("local_costmap/inscribed_radius", inscribed_radius, 0.2);
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// double circumscribed_radius;
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// private_nh_.getParam("local_costmap/circumscribed_radius", circumscribed_radius, 0.3);
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// inscribed_radius_ = inscribed_radius;
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// circumscribed_radius_ = circumscribed_radius;
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// private_nh_.getParam("clearing_radius", clearing_radius_, 0.0);
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// double conservative_reset_dist;
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// private_nh_.getParam("conservative_reset_dist", conservative_reset_dist, 0.0);
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// conservative_reset_dist_ = conservative_reset_dist;
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// private_nh_.getParam("shutdown_costmaps", shutdown_costmaps_, false);
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// private_nh_.getParam("clearing_rotation_allowed", clearing_rotation_allowed_, true);
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// private_nh_.getParam("recovery_behavior_enabled", recovery_behavior_enabled_, true);
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// create the ros wrapper for the planner's costmap... and initializer a pointer we'll use with the underlying map
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planner_costmap_robot_ = new costmap_2d::Costmap2DROBOT("global_costmap", *tf_);
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planner_costmap_robot_->pause();
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// initialize the global planner
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try
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{
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planner_loader_ = boost::dll::import_alias<nav_core::BaseGlobalPlanner::Ptr()>(
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"/home/robotics/AGV/Diff_Wheel_Prj/pnkx_nav_core/build/src/Algorithms/Packages/global_planners/two_points_planner/libtwo_points_planner.so",
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global_planner,
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boost::dll::load_mode::append_decorations);
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// // create the ros wrapper for the planner's costmap... and initializer a pointer we'll use with the underlying map
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// planner_costmap_robot_ = new costmap_2d::Costmap2DROBOT("global_costmap", *tf_);
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// planner_costmap_robot_->pause();
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// // initialize the global planner
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// try
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// {
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// planner_loader_ = boost::dll::import_alias<nav_core::BaseGlobalPlanner::Ptr()>(
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// "/home/robotics/AGV/Diff_Wheel_Prj/pnkx_nav_core/build/src/Algorithms/Packages/global_planners/two_points_planner/libtwo_points_planner.so",
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// global_planner,
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// boost::dll::load_mode::append_decorations);
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planner_ = planner_loader_();
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if (!planner_)
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{
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robot::printf_red("[%s:%d] ERROR: planner_loader_() returned nullptr\n", __FILE__, __LINE__);
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throw std::runtime_error("Failed to load global planner " + global_planner);
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}
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if(planner_->initialize(global_planner, planner_costmap_robot_))
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printf("[%s:%d] Global planner initialized successfully\n", __FILE__, __LINE__);
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else
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robot::printf_red("[%s:%d] Global planner initialized failed\n", __FILE__, __LINE__);
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}
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catch (const std::exception &ex)
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{
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printf("[%s:%d] EXCEPTION in global planner: %s\n", __FILE__, __LINE__, ex.what());
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throw std::runtime_error("Failed to create the " + global_planner + " planner");
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}
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// create the ros wrapper for the controller's costmap... and initializer a pointer we'll use with the underlying map
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controller_costmap_robot_ = new costmap_2d::Costmap2DROBOT("local_costmap", *tf_);
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controller_costmap_robot_->pause();
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// create a local planner
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try
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{
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std::string path_file_so = "/home/robotics/AGV/Diff_Wheel_Prj/pnkx_nav_core/build/src/Navigations/Cores/nav_core_adapter/liblocal_planner_adapter.so";
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controller_loader_ =
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boost::dll::import_alias<nav_core::BaseLocalPlanner::Ptr()>(
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path_file_so, "LocalPlannerAdapter", boost::dll::load_mode::append_decorations);
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tc_ = controller_loader_();
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if (!tc_)
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{
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robot::printf_red("[%s:%d] ERROR: controller_loader_() returned nullptr\n", __FILE__, __LINE__);
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throw std::runtime_error("Failed to load local planner " + local_planner);
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}
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// tc_->initialize(local_planner, tf_.get(), controller_costmap_robot_);
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}
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catch (const std::exception &ex)
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{
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printf("[%s:%d] EXCEPTION in local planner: %s\n", __FILE__, __LINE__, ex.what());
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throw std::runtime_error("Failed to create the " + local_planner + " planner");
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}
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// planner_ = planner_loader_();
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// if (!planner_)
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// {
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// robot::printf_red("[%s:%d] ERROR: planner_loader_() returned nullptr\n", __FILE__, __LINE__);
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// throw std::runtime_error("Failed to load global planner " + global_planner);
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// }
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// if(planner_->initialize(global_planner, planner_costmap_robot_))
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// printf("[%s:%d] Global planner initialized successfully\n", __FILE__, __LINE__);
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// else
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// robot::printf_red("[%s:%d] Global planner initialized failed\n", __FILE__, __LINE__);
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// }
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// catch (const std::exception &ex)
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// {
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// printf("[%s:%d] EXCEPTION in global planner: %s\n", __FILE__, __LINE__, ex.what());
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// throw std::runtime_error("Failed to create the " + global_planner + " planner");
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// }
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// // create the ros wrapper for the controller's costmap... and initializer a pointer we'll use with the underlying map
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// controller_costmap_robot_ = new costmap_2d::Costmap2DROBOT("local_costmap", *tf_);
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// controller_costmap_robot_->pause();
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// // create a local planner
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// try
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// {
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// std::string path_file_so = "/home/robotics/AGV/Diff_Wheel_Prj/pnkx_nav_core/build/src/Navigations/Cores/nav_core_adapter/liblocal_planner_adapter.so";
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// controller_loader_ =
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// boost::dll::import_alias<nav_core::BaseLocalPlanner::Ptr()>(
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// path_file_so, "LocalPlannerAdapter", boost::dll::load_mode::append_decorations);
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// tc_ = controller_loader_();
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// if (!tc_)
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// {
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// robot::printf_red("[%s:%d] ERROR: controller_loader_() returned nullptr\n", __FILE__, __LINE__);
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// throw std::runtime_error("Failed to load local planner " + local_planner);
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// }
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// // tc_->initialize(local_planner, tf_.get(), controller_costmap_robot_);
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// }
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// catch (const std::exception &ex)
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// {
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// printf("[%s:%d] EXCEPTION in local planner: %s\n", __FILE__, __LINE__, ex.what());
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// throw std::runtime_error("Failed to create the " + local_planner + " planner");
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// }
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// Start actively updating costmaps based on sensor data
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planner_costmap_robot_->start();
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controller_costmap_robot_->start();
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// // Start actively updating costmaps based on sensor data
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// planner_costmap_robot_->start();
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// controller_costmap_robot_->start();
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try
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{
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old_linear_fwd_ = tc_->getTwistLinear(true);
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old_linear_bwd_ = tc_->getTwistLinear(false);
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// try
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// {
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// old_linear_fwd_ = tc_->getTwistLinear(true);
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// old_linear_bwd_ = tc_->getTwistLinear(false);
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old_angular_fwd_ = tc_->getTwistAngular(true);
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old_angular_rev_ = tc_->getTwistAngular(false);
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}
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catch (const std::exception &e)
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{
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std::cerr << e.what() << '\n';
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}
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// old_angular_fwd_ = tc_->getTwistAngular(true);
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// old_angular_rev_ = tc_->getTwistAngular(false);
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// }
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// catch (const std::exception &e)
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// {
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// std::cerr << e.what() << '\n';
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// }
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// // advertise a service for getting a plan
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// make_plan_srv_ = private_nh.advertiseService("make_plan", &move_base::MoveBase::planService, this);
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// // // advertise a service for getting a plan
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// // make_plan_srv_ = private_nh.advertiseService("make_plan", &move_base::MoveBase::planService, this);
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// // advertise a service for clearing the costmaps
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// clear_costmaps_srv_ = private_nh.advertiseService("clear_costmaps", &move_base::MoveBase::clearCostmapsService, this);
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// // // advertise a service for clearing the costmaps
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// // clear_costmaps_srv_ = private_nh.advertiseService("clear_costmaps", &move_base::MoveBase::clearCostmapsService, this);
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// if we shutdown our costmaps when we're deactivated... we'll do that now
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if (shutdown_costmaps_)
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{
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planner_costmap_robot_->stop();
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controller_costmap_robot_->stop();
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}
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// // if we shutdown our costmaps when we're deactivated... we'll do that now
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// if (shutdown_costmaps_)
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// {
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// planner_costmap_robot_->stop();
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// controller_costmap_robot_->stop();
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// }
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// load any user specified recovery behaviors, and if that fails load the defaults
|
||||
if (!loadRecoveryBehaviors(private_nh_))
|
||||
{
|
||||
robot::printf_yellow("[%s:%d] Loading default recovery behaviors\n", __FILE__, __LINE__);
|
||||
loadDefaultRecoveryBehaviors();
|
||||
}
|
||||
// // load any user specified recovery behaviors, and if that fails load the defaults
|
||||
// if (!loadRecoveryBehaviors(private_nh_))
|
||||
// {
|
||||
// robot::printf_yellow("[%s:%d] Loading default recovery behaviors\n", __FILE__, __LINE__);
|
||||
// loadDefaultRecoveryBehaviors();
|
||||
// }
|
||||
|
||||
// initially, we'll need to make a plan
|
||||
state_ = move_base::PLANNING;
|
||||
// // initially, we'll need to make a plan
|
||||
// state_ = move_base::PLANNING;
|
||||
|
||||
// we'll start executing recovery behaviors at the beginning of our list
|
||||
recovery_index_ = 0;
|
||||
nav_feedback_ = std::make_shared<move_base_core::NavFeedback>();
|
||||
if (nav_feedback_)
|
||||
{
|
||||
nav_feedback_->navigation_state = move_base_core::State::PLANNING;
|
||||
nav_feedback_->is_ready = true;
|
||||
}
|
||||
else
|
||||
{
|
||||
robot::printf_red("[%s:%d] ERROR: nav_feedback_ is nullptr\n", __FILE__, __LINE__);
|
||||
}
|
||||
// // we'll start executing recovery behaviors at the beginning of our list
|
||||
// recovery_index_ = 0;
|
||||
// nav_feedback_ = std::make_shared<move_base_core::NavFeedback>();
|
||||
// if (nav_feedback_)
|
||||
// {
|
||||
// nav_feedback_->navigation_state = move_base_core::State::PLANNING;
|
||||
// nav_feedback_->is_ready = true;
|
||||
// }
|
||||
// else
|
||||
// {
|
||||
// robot::printf_red("[%s:%d] ERROR: nav_feedback_ is nullptr\n", __FILE__, __LINE__);
|
||||
// }
|
||||
|
||||
initialized_ = true;
|
||||
printf("[%s:%d] ========== End: initialize() - SUCCESS ==========\n", __FILE__, __LINE__);
|
||||
// initialized_ = true;
|
||||
// printf("[%s:%d] ========== End: initialize() - SUCCESS ==========\n", __FILE__, __LINE__);
|
||||
}
|
||||
else
|
||||
{
|
||||
|
|
|
|||
Loading…
Reference in New Issue
Block a user