151 lines
4.8 KiB
Python
151 lines
4.8 KiB
Python
#! /usr/bin/env python3
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# Copyright 2022 Joshua Wallace
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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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from geometry_msgs.msg import PoseStamped
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from nav2_simple_commander.robot_navigator import BasicNavigator
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import rclpy
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from ament_index_python.packages import get_package_share_directory
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import math
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import os
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import pickle
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import glob
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import time
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import numpy as np
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from random import seed
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from random import randint
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from random import uniform
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from transforms3d.euler import euler2quat
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def getPlannerResults(navigator, initial_pose, goal_pose, planners):
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results = []
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for planner in planners:
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path = navigator._getPathImpl(initial_pose, goal_pose, planner, use_start=True)
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if path is not None:
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results.append(path)
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else:
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return results
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return results
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def getRandomStart(costmap, max_cost, side_buffer, time_stamp, res):
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start = PoseStamped()
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start.header.frame_id = 'map'
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start.header.stamp = time_stamp
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while True:
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row = randint(side_buffer, costmap.shape[0]-side_buffer)
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col = randint(side_buffer, costmap.shape[1]-side_buffer)
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if costmap[row, col] < max_cost:
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start.pose.position.x = col*res
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start.pose.position.y = row*res
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yaw = uniform(0, 1) * 2*math.pi
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quad = euler2quat(0.0, 0.0, yaw)
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start.pose.orientation.w = quad[0]
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start.pose.orientation.x = quad[1]
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start.pose.orientation.y = quad[2]
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start.pose.orientation.z = quad[3]
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break
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return start
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def getRandomGoal(costmap, start, max_cost, side_buffer, time_stamp, res):
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goal = PoseStamped()
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goal.header.frame_id = 'map'
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goal.header.stamp = time_stamp
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while True:
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row = randint(side_buffer, costmap.shape[0]-side_buffer)
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col = randint(side_buffer, costmap.shape[1]-side_buffer)
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start_x = start.pose.position.x
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start_y = start.pose.position.y
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goal_x = col*res
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goal_y = row*res
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x_diff = goal_x - start_x
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y_diff = goal_y - start_y
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dist = math.sqrt(x_diff ** 2 + y_diff ** 2)
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if costmap[row, col] < max_cost and dist > 3.0:
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goal.pose.position.x = goal_x
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goal.pose.position.y = goal_y
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yaw = uniform(0, 1) * 2*math.pi
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quad = euler2quat(0.0, 0.0, yaw)
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goal.pose.orientation.w = quad[0]
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goal.pose.orientation.x = quad[1]
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goal.pose.orientation.y = quad[2]
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goal.pose.orientation.z = quad[3]
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break
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return goal
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def main():
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rclpy.init()
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navigator = BasicNavigator()
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# Set map to use, other options: 100by100_15, 100by100_10
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map_path = os.getcwd() + '/' + glob.glob('**/100by100_20.yaml', recursive=True)[0]
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navigator.changeMap(map_path)
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time.sleep(2)
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# Get the costmap for start/goal validation
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costmap_msg = navigator.getGlobalCostmap()
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costmap = np.asarray(costmap_msg.data)
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costmap.resize(costmap_msg.metadata.size_y, costmap_msg.metadata.size_x)
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planners = ['Navfn', 'ThetaStar', 'SmacHybrid', 'Smac2d', 'SmacLattice']
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max_cost = 210
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side_buffer = 100
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time_stamp = navigator.get_clock().now().to_msg()
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results = []
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seed(33)
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random_pairs = 100
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res = costmap_msg.metadata.resolution
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i = 0
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while len(results) != random_pairs:
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print("Cycle: ", i, "out of: ", random_pairs)
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start = getRandomStart(costmap, max_cost, side_buffer, time_stamp, res)
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goal = getRandomGoal(costmap, start, max_cost, side_buffer, time_stamp, res)
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print("Start", start)
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print("Goal", goal)
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result = getPlannerResults(navigator, start, goal, planners)
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if len(result) == len(planners):
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results.append(result)
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i = i + 1
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else:
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print("One of the planners was invalid")
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print("Write Results...")
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with open(os.getcwd() + '/results.pickle', 'wb+') as f:
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pickle.dump(results, f, pickle.HIGHEST_PROTOCOL)
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with open(os.getcwd() + '/costmap.pickle', 'wb+') as f:
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pickle.dump(costmap_msg, f, pickle.HIGHEST_PROTOCOL)
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with open(os.getcwd() + '/planners.pickle', 'wb+') as f:
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pickle.dump(planners, f, pickle.HIGHEST_PROTOCOL)
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print("Write Complete")
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exit(0)
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if __name__ == '__main__':
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main()
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