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							89 lines
						
					
					
						
							3.3 KiB
						
					
					
				
			
		
		
	
	
							89 lines
						
					
					
						
							3.3 KiB
						
					
					
				| import pytest
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| import json
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| import random
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| import time
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| import capnp
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| 
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| import cereal.messaging as messaging
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| from cereal.services import SERVICE_LIST
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| from openpilot.common.params import Params
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| from openpilot.common.transformations.coordinates import ecef2geodetic
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| 
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| from openpilot.system.manager.process_config import managed_processes
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| 
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| 
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| class TestLocationdProc:
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|   LLD_MSGS = ['gpsLocationExternal', 'cameraOdometry', 'carState', 'liveCalibration',
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|               'accelerometer', 'gyroscope', 'magnetometer']
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| 
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|   def setup_method(self):
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|     self.pm = messaging.PubMaster(self.LLD_MSGS)
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| 
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|     self.params = Params()
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|     self.params.put_bool("UbloxAvailable", True)
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|     managed_processes['locationd'].prepare()
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|     managed_processes['locationd'].start()
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| 
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|   def teardown_method(self):
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|     managed_processes['locationd'].stop()
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| 
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|   def get_msg(self, name, t):
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|     try:
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|       msg = messaging.new_message(name)
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|     except capnp.lib.capnp.KjException:
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|       msg = messaging.new_message(name, 0)
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| 
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|     if name == "gpsLocationExternal":
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|       msg.gpsLocationExternal.flags = 1
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|       msg.gpsLocationExternal.hasFix = True
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|       msg.gpsLocationExternal.verticalAccuracy = 1.0
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|       msg.gpsLocationExternal.speedAccuracy = 1.0
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|       msg.gpsLocationExternal.bearingAccuracyDeg = 1.0
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|       msg.gpsLocationExternal.vNED = [0.0, 0.0, 0.0]
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|       msg.gpsLocationExternal.latitude = float(self.lat)
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|       msg.gpsLocationExternal.longitude = float(self.lon)
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|       msg.gpsLocationExternal.unixTimestampMillis = t * 1e6
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|       msg.gpsLocationExternal.altitude = float(self.alt)
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|     #if name == "gnssMeasurements":
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|     #  msg.gnssMeasurements.measTime = t
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|     #  msg.gnssMeasurements.positionECEF.value = [self.x , self.y, self.z]
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|     #  msg.gnssMeasurements.positionECEF.std = [0,0,0]
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|     #  msg.gnssMeasurements.positionECEF.valid = True
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|     #  msg.gnssMeasurements.velocityECEF.value = []
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|     #  msg.gnssMeasurements.velocityECEF.std = [0,0,0]
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|     #  msg.gnssMeasurements.velocityECEF.valid = True
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|     elif name == 'cameraOdometry':
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|       msg.cameraOdometry.rot = [0.0, 0.0, 0.0]
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|       msg.cameraOdometry.rotStd = [0.0, 0.0, 0.0]
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|       msg.cameraOdometry.trans = [0.0, 0.0, 0.0]
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|       msg.cameraOdometry.transStd = [0.0, 0.0, 0.0]
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|     msg.logMonoTime = t
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|     msg.valid = True
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|     return msg
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| 
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|   def test_params_gps(self):
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|     random.seed(123489234)
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|     self.params.remove('LastGPSPosition')
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| 
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|     self.x = -2710700 + (random.random() * 1e5)
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|     self.y = -4280600 + (random.random() * 1e5)
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|     self.z = 3850300 + (random.random() * 1e5)
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|     self.lat, self.lon, self.alt = ecef2geodetic([self.x, self.y, self.z])
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| 
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|     # get fake messages at the correct frequency, listed in services.py
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|     msgs = []
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|     for sec in range(65):
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|       for name in self.LLD_MSGS:
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|         for j in range(int(SERVICE_LIST[name].frequency)):
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|           msgs.append(self.get_msg(name, int((sec + j / SERVICE_LIST[name].frequency) * 1e9)))
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| 
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|     for msg in sorted(msgs, key=lambda x: x.logMonoTime):
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|       self.pm.send(msg.which(), msg)
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|       if msg.which() == "cameraOdometry":
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|         self.pm.wait_for_readers_to_update(msg.which(), 0.1, dt=0.005)
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|     time.sleep(1)  # wait for async params write
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| 
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|     lastGPS = json.loads(self.params.get('LastGPSPosition'))
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|     assert lastGPS['latitude'] == pytest.approx(self.lat, abs=0.001)
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|     assert lastGPS['longitude'] == pytest.approx(self.lon, abs=0.001)
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|     assert lastGPS['altitude'] == pytest.approx(self.alt, abs=0.001)
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| 
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