mirror of
https://gitlab.ewi.tudelft.nl/ee2l1/2025-2026/A.K.03.git
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Merge branch 'Module4' into 'main'
UI Code + Some progress on Module 4 See merge request ee2l1/2025-2026/A.K.03!6
This commit is contained in:
commit
6f99f06f5a
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{
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"cells": [
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{
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"cell_type": "markdown",
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"metadata": {},
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"source": [
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"\n",
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"[Table of Contents](0_Table_of_Contents.ipynb)"
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]
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},
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{
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"cell_type": "markdown",
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"metadata": {},
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0
student_code/.editorconfig
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0
student_code/.editorconfig
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91
student_code/car.py
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91
student_code/car.py
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from serial import Serial
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#from Manual.KITT_Simulator.serial_simulator import Serial
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class KITT:
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current_speed = 150
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current_angle = 150
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beacon_state = False
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def __init__(self, port, baudrate=115200):
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# Initialize the serial connection
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# self.serial = Serial(port, baudrate, rtscts=True)
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self.serial = Serial(port, baudrate,rtscts=True)
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# Initialize beacon parameters here using send_command
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# Set carrier frequency, bit frequency, repetition count, and code pattern
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carrier_frequency_value = 10000
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carrier_frequency = carrier_frequency_value.to_bytes(2, byteorder='big')
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self.send_command(b"F"+carrier_frequency+b"\n")
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bit_frequency_value = 5000
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bit_frequency = bit_frequency_value.to_bytes(2, byteorder='big')
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self.send_command(b"B"+bit_frequency+b"\n")
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desired_repetition_frequency = 2 # Replace with your value
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repetition_count_value = bit_frequency_value // desired_repetition_frequency
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repetition_count = repetition_count_value.to_bytes(2, byteorder='big')
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# Ensure repetition_count_value is at least 32
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repetition_count_value = max(repetition_count_value, 32)
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repetition_count = repetition_count_value.to_bytes(2, byteorder='big')
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self.send_command(b"R"+repetition_count+b"\n")
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code_value = 0x67676767 # Replace with your code
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code = code_value.to_bytes(4, byteorder='big')
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self.send_command(b"C"+code+b"\n")
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def send_command(self, command):
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# Send the command string over the serial connection
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self.serial.write(command)
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#print(command)
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def set_speed(self, speed):
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# Send the motor speed command using send_command
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# Use the format 'M<speed>\n'
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self.send_command(f"M{speed}\n".encode())
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self.current_speed = speed
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def get_speed(self):
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return self.current_speed
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def set_angle(self, angle):
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# Send the steering angle command using send_command
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# Use the format 'D<angle>\n'
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self.send_command(f"D{angle}\n".encode())
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self.current_angle = angle
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def get_angle(self):
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return self.current_angle
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def stop(self):
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# Stop the car by setting speed and angle to neutral (150)
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# Call set_speed and set_angle with 150
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self.set_speed(150)
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self.set_angle(150)
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def start_beacon(self):
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# Send commands to start the beacon
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# Use the command 'A1\n'
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self.send_command(b"A1\n")
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def stop_beacon(self):
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# Send commands to stop the beacon
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# Use the command 'A0\n'
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self.send_command(b"A0\n")
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def toggle_beacon(self):
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if self.beacon_state:
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self.beacon_state = False
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self.stop_beacon()
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else:
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self.beacon_state = True
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self.start_beacon()
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def get_beacon_state(self):
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return self.beacon_state
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def close(self):
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# Close the serial connection
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# self.serial.close()
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self.serial.close()
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@ -1,7 +1,12 @@
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from serial import Serial
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#from Manual.KITT_Simulator.serial_simulator import Serial
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class KITT:
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current_speed = 150
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current_angle = 150
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beacon_state = False
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def __init__(self, port, baudrate=115200):
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# Initialize the serial connection
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# self.serial = Serial(port, baudrate, rtscts=True)
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@ -33,19 +38,25 @@ class KITT:
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def send_command(self, command):
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# Send the command string over the serial connection
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self.serial.write(command)
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print(command)
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#print(command)
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def set_speed(self, speed):
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# Send the motor speed command using send_command
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# Use the format 'M<speed>\n'
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self.send_command(f"M{speed}\n".encode())
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self.current_speed = speed
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def get_speed(self):
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return self.current_speed
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def set_angle(self, angle):
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# Send the steering angle command using send_command
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# Use the format 'D<angle>\n'
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self.send_command(f"D{angle}\n".encode())
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self.current_angle = angle
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def get_angle(self):
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return self.current_angle
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def stop(self):
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# Stop the car by setting speed and angle to neutral (150)
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@ -63,6 +74,17 @@ class KITT:
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# Use the command 'A0\n'
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self.send_command(b"A0\n")
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def toggle_beacon(self):
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if self.beacon_state:
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self.beacon_state = False
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self.stop_beacon()
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else:
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self.beacon_state = True
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self.start_beacon()
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def get_beacon_state(self):
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return self.beacon_state
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def close(self):
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# Close the serial connection
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# self.serial.close()
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174
student_code/ui.py
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174
student_code/ui.py
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import queue
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import threading
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import time
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import tkinter as tk
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from car import KITT
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import serial.tools.list_ports
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from pynput import keyboard
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if __name__ == "__main__":
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serial_selector = tk.Tk()
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serial_selector.title("Select serial port")
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ports = list(serial.tools.list_ports.comports())
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length = len(ports) * 25
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serial_selector.geometry(f"600x{length+50}")
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selected_port = tk.StringVar()
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for port in ports:
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tk.Radiobutton(serial_selector,text = f"{port.device}",variable=selected_port,value= port.device).pack()
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def select_port():
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global selected_port
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selected_port = selected_port.get()
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serial_selector.destroy()
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button = tk.Button(serial_selector, text="Select serial port", command=select_port)
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button.pack()
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serial_selector.mainloop()
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car = KITT(f"{selected_port}")
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root = tk.Tk()
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root.title("Patatje Oorloog")
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root.geometry("800x600")
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speed_label = tk.Label(root, text=f"Speed {car.get_speed()}")
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speed_label.grid(row = 0, column = 0)
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speed_var = tk.StringVar()
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speed_entry = tk.Entry(root, textvariable=speed_var)
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speed_entry.grid(row = 0, column = 1)
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def speed_btn():
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global car
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car.set_speed(speed_var.get())
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speed_label.config(text = f"Speed {car.get_speed()}")
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speed_set_btn = tk.Button(root, text="Set Speed", command=speed_btn)
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speed_set_btn.grid(row = 0, column = 2)
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angle_label = tk.Label(root, text=f"Angle {car.get_angle()}")
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angle_label.grid(row = 1, column = 0)
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angle_var = tk.StringVar()
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angle_entry = tk.Entry(root, textvariable=angle_var)
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angle_entry.grid(row=1, column=1)
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def angle_btn():
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global car
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car.set_angle(angle_var.get())
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angle_label.config(text=f"Speed {car.get_angle()}")
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angle_set_btn = tk.Button(root, text="Set Angle", command=angle_btn)
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angle_set_btn.grid(row=1, column=2)
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beacon_label = tk.Label(root, text=f"Beacon {car.get_beacon_state()}")
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beacon_label.grid(row = 2, column = 0)
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def toggle_beacon_btn():
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global car
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car.toggle_beacon()
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beacon_label.config(text = f"Beacon {car.get_beacon_state()}")
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beacon_toggle = tk.Button(root, text="Toggle Beacon", command=toggle_beacon_btn)
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beacon_toggle.grid(row = 2, column = 1)
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def close_btn_func():
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car.stop_beacon()
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car.stop()
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try:
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car.close()
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except OSError:
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pass
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root.destroy()
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close_btn = tk.Button(root, text="Close", command=close_btn_func)
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close_btn.grid(row = 10,column = 0)
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# Thread-safe queue for passing keys from listener to Tkinter
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key_queue = queue.Queue()
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last_key = None
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def start_listener():
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"""Start pynput listener in a background thread."""
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def on_press(key):
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# Put a string representation of the key into the queue
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global last_key
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try:
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key_queue.put(f"{key.char}")
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if True: #not key == last_key :
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if key.char == "w":
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car.set_speed(165)
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speed_label.config(text = f"Speed {car.get_speed()}")
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if key.char == "s":
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car.set_speed(140)
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speed_label.config(text=f"Speed {car.get_speed()}")
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if key.char == "a":
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car.set_angle(200)
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angle_label.config(text=f"Angle {car.get_angle()}")
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if key.char == "d":
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car.set_angle(100)
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angle_label.config(text=f"Angle {car.get_angle()}")
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#last_key = key
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except AttributeError:
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key_queue.put(str(key))
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if str(key) == "Key.space":
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car.toggle_beacon()
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beacon_label.config(text=f"Beacon {car.get_beacon_state()}")
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def on_release(key):
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# Stop listener if ESC is pressed
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if key == keyboard.Key.esc:
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return False
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try :
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if key.char == "w":
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car.set_speed(150)
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speed_label.config(text=f"Speed {car.get_speed()}")
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if key.char == "s":
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car.set_speed(150)
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speed_label.config(text=f"Speed {car.get_speed()}")
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if key.char == "a":
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car.set_angle(150)
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angle_label.config(text=f"Angle {car.get_angle()}")
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if key.char == "d":
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car.set_angle(150)
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angle_label.config(text=f"Angle {car.get_angle()}")
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except AttributeError:
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pass
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return None
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def run_listener():
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with keyboard.Listener(on_press=on_press,
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on_release=on_release) as listener:
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listener.join()
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# Run listener in its own thread so it does not block Tkinter
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t = threading.Thread(target=run_listener, daemon=True)
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t.start()
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def poll_queue():
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"""Check the queue for new keys and update the label."""
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try:
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while True:
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k = key_queue.get_nowait()
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current = label_var.get()
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label_var.set(f"Last key: {k}")
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except queue.Empty:
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pass
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# Schedule next poll
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root.after(10, poll_queue)
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label_var = tk.StringVar(value="Press any key (global). ESC stops listener.")
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label = tk.Label(root, textvariable=label_var, width=50)
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label.grid(row = 9,column = 0)
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start_button = tk.Button(root, text="Start listener", command=start_listener)
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start_button.grid(row = 9, column = 1)
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# Start polling the queue
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root.after(10, poll_queue)
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root.protocol("WM_DELETE_WINDOW", close_btn_func)
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root.mainloop()
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