mirror of
https://github.com/SHC-ASTRA/rover-ros2.git
synced 2026-02-11 09:20:40 +00:00
feat: add arm support to headless (headless_combine #16)
Create new headless_pkg with Core + Arm Toggle with dpad up/down; up for arm, down for core
This commit is contained in:
14
anchor.service
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14
anchor.service
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[Unit]
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Description=Autostart the anchor node for controlling the rover and its modules
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After=systemd-user-sessions.service
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Requires=systemd-user-sessions.service
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[Service]
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ExecStart=/home/clucky/rover-ros2/auto_start/auto_start_anchor.sh
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Restart=always
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RestartSec=5
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User=clucky
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Environment=PYTHONUNBUFFERED=1
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[Install]
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WantedBy=multi-user.target
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24
auto_start/auto_start_anchor.sh
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24
auto_start/auto_start_anchor.sh
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#!/bin/bash
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# Wait for a network interface to be up (not necessarily online)
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while ! ip link show | grep -q "state UP"; do
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echo "[INFO] Waiting for active network interface..."
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sleep 1
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done
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echo "[INFO] Network interface is up!"
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# Your actual ROS node start command goes here
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echo "[INFO] Starting ROS node..."
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# Source ROS 2 Humble setup script
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source /opt/ros/humble/setup.bash
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# Source your workspace setup script
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source /home/clucky/rover-ros2/install/setup.bash
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# CD to directory
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cd /home/clucky/rover-ros2/
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# Launch the ROS 2 node with the desired mode
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ros2 launch rover_launch.py mode:=anchor
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24
auto_start/auto_start_core_headless.sh
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24
auto_start/auto_start_core_headless.sh
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#!/bin/bash
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# Wait for a network interface to be up (not necessarily online)
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while ! ip link show | grep -q "state UP"; do
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echo "[INFO] Waiting for active network interface..."
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sleep 1
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done
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echo "[INFO] Network interface is up!"
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# Your actual ROS node start command goes here
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echo "[INFO] Starting ROS node..."
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# Source ROS 2 Humble setup script
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source /opt/ros/humble/setup.bash
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# Source your workspace setup script
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source /home/clucky/rover-ros2/install/setup.bash
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# CD to directory
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cd /home/clucky/rover-ros2/
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# Launch the ROS 2 node
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ros2 run core_pkg headless
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25
auto_start/auto_start_headless_full.sh
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25
auto_start/auto_start_headless_full.sh
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#!/bin/bash
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# Wait for a network interface to be up (not necessarily online)
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while ! ip link show | grep -q "state UP"; do
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echo "[INFO] Waiting for active network interface..."
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sleep 1
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done
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echo "[INFO] Network interface is up!"
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# Your actual ROS node start command goes here
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echo "[INFO] Starting ROS node..."
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# Source ROS 2 Humble setup script
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source /opt/ros/humble/setup.bash
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# Source your workspace setup script
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source /home/clucky/rover-ros2/install/setup.bash
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# CD to directory
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cd /home/clucky/rover-ros2/
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# Launch the ROS 2 node
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ros2 run headless_pkg headless_full
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14
core_headless.service
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14
core_headless.service
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[Unit]
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Description=Autostart headless core node for controlling the rover without a base station
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After=systemd-user-sessions.service
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Requires=systemd-user-sessions.service
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[Service]
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ExecStart=/home/clucky/rover-ros2/auto_start/auto_start_core_headless.sh
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Restart=always
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RestartSec=10
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User=clucky
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Environment=PYTHONUNBUFFERED=1
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[Install]
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WantedBy=multi-user.target
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14
headless_full.service
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14
headless_full.service
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[Unit]
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Description=Autostart headless core node for controlling the rover without a base station
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After=systemd-user-sessions.service
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Requires=systemd-user-sessions.service
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[Service]
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ExecStart=/home/clucky/rover-ros2/auto_start/auto_start_headless_full.sh
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Restart=always
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RestartSec=10
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User=clucky
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Environment=PYTHONUNBUFFERED=1
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[Install]
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WantedBy=multi-user.target
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21
src/headless_pkg/package.xml
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21
src/headless_pkg/package.xml
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<?xml version="1.0"?>
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<?xml-model href="http://download.ros.org/schema/package_format3.xsd" schematypens="http://www.w3.org/2001/XMLSchema"?>
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<package format="3">
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<name>headless_pkg</name>
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<version>1.0.0</version>
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<description>Headless rover control package to handle command interpretation and embedded interfacing.</description>
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<maintainer email="ds0196@uah.edu">David Sharpe</maintainer>
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<license>All Rights Reserved</license>
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<depend>rclpy</depend>
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<depend>ros2_interfaces_pkg</depend>
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<test_depend>ament_copyright</test_depend>
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<test_depend>ament_flake8</test_depend>
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<test_depend>ament_pep257</test_depend>
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<test_depend>python3-pytest</test_depend>
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<export>
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<build_type>ament_python</build_type>
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</export>
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</package>
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0
src/headless_pkg/resource/headless_pkg
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0
src/headless_pkg/resource/headless_pkg
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4
src/headless_pkg/setup.cfg
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4
src/headless_pkg/setup.cfg
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[develop]
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script_dir=$base/lib/headless_pkg
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[install]
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install_scripts=$base/lib/headless_pkg
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24
src/headless_pkg/setup.py
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24
src/headless_pkg/setup.py
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from setuptools import find_packages, setup
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package_name = 'headless_pkg'
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setup(
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name=package_name,
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version='1.0.0',
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packages=find_packages(exclude=['test']),
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data_files=[
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('share/ament_index/resource_index/packages', ['resource/' + package_name]),
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('share/' + package_name, ['package.xml']),
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],
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install_requires=['setuptools'],
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zip_safe=True,
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maintainer='David Sharpe',
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maintainer_email='ds0196@uah.edu',
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description='Headless rover control package to handle command interpretation and embedded interfacing.',
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license='All Rights Reserved',
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entry_points={
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'console_scripts': [
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"headless_full = src.headless_node:main",
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],
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},
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)
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0
src/headless_pkg/src/__init__.py
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0
src/headless_pkg/src/__init__.py
Normal file
217
src/headless_pkg/src/headless_node.py
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217
src/headless_pkg/src/headless_node.py
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import rclpy
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from rclpy.node import Node
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import pygame
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import time
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import serial
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import sys
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import threading
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import glob
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import os
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import importlib
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from std_msgs.msg import String
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from ros2_interfaces_pkg.msg import CoreControl, ArmManual
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os.environ["SDL_VIDEODRIVER"] = "dummy" # Prevents pygame from trying to open a display
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os.environ["SDL_AUDIODRIVER"] = "dummy" # Force pygame to use a dummy audio driver before pygame.init()
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max_speed = 90 #Max speed as a duty cycle percentage (1-100)
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core_stop_msg = CoreControl()
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core_stop_msg.left_stick = 0.0
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core_stop_msg.right_stick = 0.0
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core_stop_msg.max_speed = 0
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arm_stop_msg = ArmManual()
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arm_stop_msg.axis0 = 0
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arm_stop_msg.axis1 = 0
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arm_stop_msg.axis2 = 0
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arm_stop_msg.axis3 = 0
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arm_stop_msg.effector_roll = 0
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arm_stop_msg.effector_yaw = 0
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arm_stop_msg.gripper = 0
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arm_stop_msg.linear_actuator = 0
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arm_stop_msg.laser = 0
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ctrl_mode = "core"
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class Headless(Node):
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def __init__(self):
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# Initialize pygame first
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pygame.init()
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pygame.joystick.init()
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# Wait for a gamepad to be connected
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self.gamepad = None
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print("Waiting for gamepad connection...")
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while pygame.joystick.get_count() == 0:
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# Process any pygame events to keep it responsive
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for event in pygame.event.get():
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if event.type == pygame.QUIT:
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pygame.quit()
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sys.exit(0)
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time.sleep(1.0) # Check every second
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print("No gamepad found. Waiting...")
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# Initialize the gamepad
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self.gamepad = pygame.joystick.Joystick(0)
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self.gamepad.init()
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print(f'Gamepad Found: {self.gamepad.get_name()}')
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# Now initialize the ROS2 node
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super().__init__("headless")
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self.create_timer(0.15, self.send_controls)
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self.core_publisher = self.create_publisher(CoreControl, '/core/control', 10)
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self.arm_publisher = self.create_publisher(ArmManual, '/arm/control/manual', 10)
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def run(self):
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# This thread makes all the update processes run in the background
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thread = threading.Thread(target=rclpy.spin, args={self}, daemon=True)
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thread.start()
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try:
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while rclpy.ok():
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self.send_controls()
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time.sleep(0.1) # Small delay to avoid CPU hogging
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except KeyboardInterrupt:
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sys.exit(0)
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def send_controls(self):
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for event in pygame.event.get():
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if event.type == pygame.QUIT:
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pygame.quit()
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sys.exit(0)
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# Check if controller is still connected
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if pygame.joystick.get_count() == 0:
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print("Gamepad disconnected. Exiting...")
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# Send one last zero control message
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self.core_publisher.publish(core_stop_msg)
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self.arm_publisher.publish(arm_stop_msg)
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self.get_logger().info("Final stop commands sent. Shutting down.")
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# Clean up
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pygame.quit()
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sys.exit(0)
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global ctrl_mode
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# Check for control mode change
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dpad_input = self.gamepad.get_hat(0)
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if dpad_input[1] == 1:
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ctrl_mode = "arm"
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elif dpad_input[1] == -1:
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ctrl_mode = "core"
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# CORE
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if ctrl_mode == "core":
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input = CoreControl()
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input.max_speed = max_speed
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# Collect controller state
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left_stick_y = deadzone(self.gamepad.get_axis(1))
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right_stick_y = deadzone(self.gamepad.get_axis(4))
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right_trigger = deadzone(self.gamepad.get_axis(5))
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# Right wheels
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input.right_stick = float(round(-1 * right_stick_y, 2))
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# Left wheels
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if right_trigger > 0:
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input.left_stick = input.right_stick
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else:
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input.left_stick = float(round(-1 * left_stick_y, 2))
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# Debug
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output = f'L: {input.left_stick}, R: {input.right_stick}, M: {max_speed}'
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self.get_logger().info(f"[Ctrl] {output}")
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self.core_publisher.publish(input)
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self.arm_publisher.publish(arm_stop_msg)
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# ARM
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if ctrl_mode == "arm":
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input = ArmManual()
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# Collect controller state
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left_stick_x = deadzone(self.gamepad.get_axis(0))
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left_stick_y = deadzone(self.gamepad.get_axis(1))
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left_trigger = deadzone(self.gamepad.get_axis(2))
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right_stick_x = deadzone(self.gamepad.get_axis(3))
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right_stick_y = deadzone(self.gamepad.get_axis(4))
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right_trigger = deadzone(self.gamepad.get_axis(5))
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right_bumper = self.gamepad.get_button(5)
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dpad_input = self.gamepad.get_hat(0)
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# EF Grippers
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if left_trigger > 0 and right_trigger > 0:
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input.gripper = 0
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elif left_trigger > 0:
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input.gripper = -1
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elif right_trigger > 0:
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input.gripper = 1
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# Axis 0
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if dpad_input[0] == 1:
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input.axis0 = 1
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elif dpad_input[0] == -1:
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input.axis0 = -1
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if right_bumper: # Control end effector
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# Effector yaw
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if left_stick_x > 0:
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input.effector_yaw = 1
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elif left_stick_x < 0:
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input.effector_yaw = -1
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# Effector roll
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if right_stick_x > 0:
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input.effector_roll = 1
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elif right_stick_x < 0:
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input.effector_roll = -1
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else: # Control arm axis
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# Axis 1
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if abs(left_stick_x) > .15:
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input.axis1 = round(left_stick_x)
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# Axis 2
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if abs(left_stick_y) > .15:
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input.axis2 = -1 * round(left_stick_y)
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# Axis 3
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if abs(right_stick_y) > .15:
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input.axis3 = -1 * round(right_stick_y)
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self.core_publisher.publish(core_stop_msg)
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self.arm_publisher.publish(input)
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def deadzone(value: float, threshold=0.05) -> float:
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if abs(value) < threshold:
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return 0
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return value
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def main(args=None):
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rclpy.init(args=args)
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node = Headless()
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rclpy.spin(node)
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rclpy.shutdown()
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if __name__ == '__main__':
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main()
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Reference in New Issue
Block a user