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							188 lines
						
					
					
						
							4.5 KiB
						
					
					
				
			
		
		
	
	
							188 lines
						
					
					
						
							4.5 KiB
						
					
					
				#!/usr/bin/env python3
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# set up wheel
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import array
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import os
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import struct
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from fcntl import ioctl
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from typing import NoReturn
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# Iterate over the joystick devices.
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print('Available devices:')
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for fn in os.listdir('/dev/input'):
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    if fn.startswith('js'):
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        print(f'  /dev/input/{fn}')
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# We'll store the states here.
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axis_states = {}
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button_states = {}
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# These constants were borrowed from linux/input.h
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axis_names = {
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    0x00 : 'x',
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    0x01 : 'y',
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    0x02 : 'z',
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    0x03 : 'rx',
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    0x04 : 'ry',
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    0x05 : 'rz',
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    0x06 : 'trottle',
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    0x07 : 'rudder',
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    0x08 : 'wheel',
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    0x09 : 'gas',
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    0x0a : 'brake',
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    0x10 : 'hat0x',
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    0x11 : 'hat0y',
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    0x12 : 'hat1x',
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    0x13 : 'hat1y',
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    0x14 : 'hat2x',
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    0x15 : 'hat2y',
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    0x16 : 'hat3x',
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    0x17 : 'hat3y',
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    0x18 : 'pressure',
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    0x19 : 'distance',
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    0x1a : 'tilt_x',
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    0x1b : 'tilt_y',
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    0x1c : 'tool_width',
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    0x20 : 'volume',
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    0x28 : 'misc',
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}
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button_names = {
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    0x120 : 'trigger',
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    0x121 : 'thumb',
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    0x122 : 'thumb2',
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    0x123 : 'top',
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    0x124 : 'top2',
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    0x125 : 'pinkie',
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    0x126 : 'base',
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    0x127 : 'base2',
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    0x128 : 'base3',
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    0x129 : 'base4',
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    0x12a : 'base5',
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    0x12b : 'base6',
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    0x12f : 'dead',
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    0x130 : 'a',
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    0x131 : 'b',
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    0x132 : 'c',
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    0x133 : 'x',
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    0x134 : 'y',
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    0x135 : 'z',
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    0x136 : 'tl',
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    0x137 : 'tr',
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    0x138 : 'tl2',
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    0x139 : 'tr2',
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    0x13a : 'select',
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    0x13b : 'start',
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    0x13c : 'mode',
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    0x13d : 'thumbl',
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    0x13e : 'thumbr',
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    0x220 : 'dpad_up',
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    0x221 : 'dpad_down',
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    0x222 : 'dpad_left',
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    0x223 : 'dpad_right',
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    # XBox 360 controller uses these codes.
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    0x2c0 : 'dpad_left',
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    0x2c1 : 'dpad_right',
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    0x2c2 : 'dpad_up',
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    0x2c3 : 'dpad_down',
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}
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axis_map = []
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button_map = []
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def wheel_poll_thread(q: 'Queue[str]') -> NoReturn:
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  # Open the joystick device.
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  fn = '/dev/input/js0'
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  print(f'Opening {fn}...')
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  jsdev = open(fn, 'rb')
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  # Get the device name.
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  #buf = bytearray(63)
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  buf = array.array('B', [0] * 64)
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  ioctl(jsdev, 0x80006a13 + (0x10000 * len(buf)), buf)  # JSIOCGNAME(len)
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  js_name = buf.tobytes().rstrip(b'\x00').decode('utf-8')
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  print(f'Device name: {js_name}')
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  # Get number of axes and buttons.
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  buf = array.array('B', [0])
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  ioctl(jsdev, 0x80016a11, buf)  # JSIOCGAXES
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  num_axes = buf[0]
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  buf = array.array('B', [0])
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  ioctl(jsdev, 0x80016a12, buf)  # JSIOCGBUTTONS
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  num_buttons = buf[0]
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  # Get the axis map.
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  buf = array.array('B', [0] * 0x40)
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  ioctl(jsdev, 0x80406a32, buf)  # JSIOCGAXMAP
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  for _axis in buf[:num_axes]:
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      axis_name = axis_names.get(_axis, f'unknown(0x{_axis:02x})')
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      axis_map.append(axis_name)
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      axis_states[axis_name] = 0.0
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  # Get the button map.
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  buf = array.array('H', [0] * 200)
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  ioctl(jsdev, 0x80406a34, buf)  # JSIOCGBTNMAP
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  for btn in buf[:num_buttons]:
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      btn_name = button_names.get(btn, f'unknown(0x{btn:03x})')
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      button_map.append(btn_name)
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      button_states[btn_name] = 0
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  print('%d axes found: %s' % (num_axes, ', '.join(axis_map)))
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  print('%d buttons found: %s' % (num_buttons, ', '.join(button_map)))
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  # Enable FF
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  import evdev  # pylint: disable=import-error
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  from evdev import ecodes, InputDevice  # pylint: disable=import-error
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  device = evdev.list_devices()[0]
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  evtdev = InputDevice(device)
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  val = 24000
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  evtdev.write(ecodes.EV_FF, ecodes.FF_AUTOCENTER, val)
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  while True:
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    evbuf = jsdev.read(8)
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    value, mtype, number = struct.unpack('4xhBB', evbuf)
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    # print(mtype, number, value)
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    if mtype & 0x02:  # wheel & paddles
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      axis = axis_map[number]
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      if axis == "z":  # gas
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        fvalue = value / 32767.0
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        axis_states[axis] = fvalue
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        normalized = (1 - fvalue) * 50
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        q.put(f"throttle_{normalized:f}")
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      elif axis == "rz":  # brake
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        fvalue = value / 32767.0
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        axis_states[axis] = fvalue
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        normalized = (1 - fvalue) * 50
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        q.put(f"brake_{normalized:f}")
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      elif axis == "x":  # steer angle
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        fvalue = value / 32767.0
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        axis_states[axis] = fvalue
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        normalized = fvalue
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        q.put(f"steer_{normalized:f}")
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    elif mtype & 0x01:  # buttons
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      if value == 1: # press down
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        if number in [0, 19]:  # X
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          q.put("cruise_down")
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        elif number in [3, 18]:  # triangle
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          q.put("cruise_up")
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        elif number in [1, 6]:  # square
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          q.put("cruise_cancel")
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        elif number in [10, 21]:  # R3
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          q.put("reverse_switch")
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if __name__ == '__main__':
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  from multiprocessing import Process, Queue
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  q: Queue[str] = Queue()
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  p = Process(target=wheel_poll_thread, args=(q,))
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  p.start()
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