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							147 lines
						
					
					
						
							4.3 KiB
						
					
					
				
			
		
		
	
	
							147 lines
						
					
					
						
							4.3 KiB
						
					
					
				#!/usr/bin/env python3
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import sys
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import time
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import random
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import datetime as dt
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import subprocess as sp
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import multiprocessing
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import threading
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from typing import Tuple, Any
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from laika.downloader import download_nav
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from laika.gps_time import GPSTime
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from laika.helpers import ConstellationId
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cache_dir = '/tmp/gpstest/'
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def download_rinex():
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  # TODO: check if there is a better way to get the full brdc file for LimeGPS
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  gps_time = GPSTime.from_datetime(dt.datetime.utcnow())
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  utc_time = dt.datetime.utcnow() - dt.timedelta(1)
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  gps_time = GPSTime.from_datetime(dt.datetime(utc_time.year, utc_time.month, utc_time.day))
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  return download_nav(gps_time, cache_dir, ConstellationId.GPS)
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def exec_LimeGPS_bin(rinex_file: str, location: str, duration: int):
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  # this functions should never return, cause return means, timeout is
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  # reached or it crashed
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  try:
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    cmd = ["LimeGPS/LimeGPS", "-e", rinex_file, "-l", location]
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    sp.check_output(cmd, timeout=duration)
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  except sp.TimeoutExpired:
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    print("LimeGPS timeout reached!")
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  except Exception as e:
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    print(f"LimeGPS crashed: {str(e)}")
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def run_lime_gps(rinex_file: str, location: str, duration: int):
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  print(f"LimeGPS {location} {duration}")
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  p = multiprocessing.Process(target=exec_LimeGPS_bin,
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                              args=(rinex_file, location, duration))
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  p.start()
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  return p
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def get_random_coords(lat, lon) -> Tuple[int, int]:
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  # jump around the world
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  # max values, lat: -90 to 90, lon: -180 to 180
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  lat_add = random.random()*20 + 10
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  lon_add = random.random()*20 + 20
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  lat = ((lat + lat_add + 90) % 180) - 90
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  lon = ((lon + lon_add + 180) % 360) - 180
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  return round(lat, 5), round(lon, 5)
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def get_continuous_coords(lat, lon) -> Tuple[int, int]:
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  # continuously move around the world
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  lat_add = random.random()*0.01
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  lon_add = random.random()*0.01
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  lat = ((lat + lat_add + 90) % 180) - 90
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  lon = ((lon + lon_add + 180) % 360) - 180
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  return round(lat, 5), round(lon, 5)
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rc_p: Any = None
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def exec_remote_checker(lat, lon, duration, ip_addr):
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  global rc_p
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  # TODO: good enough for testing
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  remote_cmd =  "export PYTHONPATH=/data/pythonpath:/data/pythonpath/pyextra && "
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  remote_cmd += "cd /data/openpilot && "
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  remote_cmd += f"timeout {duration} /usr/local/pyenv/shims/python tools/gpstest/remote_checker.py "
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  remote_cmd += f"{lat} {lon}"
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  ssh_cmd = ["ssh", "-i", "/home/batman/openpilot/xx/phone/key/id_rsa",
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             f"comma@{ip_addr}"]
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  ssh_cmd += [remote_cmd]
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  rc_p = sp.Popen(ssh_cmd, stdout=sp.PIPE)
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  rc_p.wait()
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  rc_output = rc_p.stdout.read()
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  print(f"Checker Result: {rc_output.strip().decode('utf-8')}")
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def run_remote_checker(spoof_proc, lat, lon, duration, ip_addr) -> bool:
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  checker_thread = threading.Thread(target=exec_remote_checker,
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                                    args=(lat, lon, duration, ip_addr))
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  checker_thread.start()
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  tcnt = 0
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  while True:
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    if not checker_thread.is_alive():
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      # assume this only happens when the signal got matched
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      return True
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    # the spoofing process has a timeout, kill checker if reached
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    if not spoof_proc.is_alive():
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      rc_p.kill()
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      # spoofing process died, assume timeout
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      print("Spoofing process timeout")
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      return False
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    print(f"Time elapsed: {tcnt}[s]", end = "\r")
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    time.sleep(1)
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    tcnt += 1
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def main():
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  if len(sys.argv) < 2:
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    print(f"usage: {sys.argv[0]} <ip_addr> [-c]")
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  ip_addr = sys.argv[1]
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  continuous_mode = False
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  if len(sys.argv) == 3 and sys.argv[2] == '-c':
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    print("Continuous Mode!")
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    continuous_mode = True
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  rinex_file = download_rinex()
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  duration = 60*3 # max runtime in seconds
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  lat, lon = get_random_coords(47.2020, 15.7403)
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  while True:
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    # spoof random location
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    spoof_proc = run_lime_gps(rinex_file, f"{lat},{lon},100", duration)
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    start_time = time.monotonic()
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    # remote checker runs blocking
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    if not run_remote_checker(spoof_proc, lat, lon, duration, ip_addr):
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      # location could not be matched by ublox module
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      pass
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    end_time = time.monotonic()
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    spoof_proc.terminate()
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    # -1 to count process startup
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    print(f"Time to get Signal: {round(end_time - start_time - 1, 4)}")
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    if continuous_mode:
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      lat, lon = get_continuous_coords(lat, lon)
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    else:
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      lat, lon = get_random_coords(lat, lon)
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if __name__ == "__main__":
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  main()
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