forked from peter/volvo2mqtt
Move energy api to v2
This commit is contained in:
+192
-186
@@ -600,196 +600,202 @@ def cached_request(url, method, vin, force_update=False, key_change=False):
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def parse_api_data(data, sensor_id=None):
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if sensor_id != "api_backend_status":
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data = data["data"]
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if sensor_id == "battery_charge_level":
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return data["batteryChargeLevel"]["value"] if util.keys_exists(data, "batteryChargeLevel") else None
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elif sensor_id == "battery_capacity":
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return data["batteryCapacityKWH"] if util.keys_exists(data, "batteryCapacityKWH") else None
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elif sensor_id == "electric_range":
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return util.convert_metric_values(data["electricRange"]["value"]) \
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if util.keys_exists(data, "electricRange") else None
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elif sensor_id == "charging_system_status":
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return charging_system_states[data["chargingSystemStatus"]["value"]] \
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if util.keys_exists(data, "chargingSystemStatus") else None
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elif sensor_id == "charging_connection_status":
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return charging_connection_states[data["chargingConnectionStatus"]["value"]] \
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if util.keys_exists(data, "chargingConnectionStatus") else None
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elif sensor_id == "estimated_charging_time":
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if util.keys_exists(data, "chargingSystemStatus"):
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charging_system_state = charging_system_states[data["chargingSystemStatus"]["value"]]
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if charging_system_state == "Charging":
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return data["estimatedChargingTime"]["value"] if util.keys_exists(data, "estimatedChargingTime") else ""
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if sensor_id in ["battery_charge_level", "electric_range", "charging_system_status",
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"charging_connection_status", "estimated_charging_time", "estimated_charging_finish_time"]:
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if sensor_id == "battery_charge_level":
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return data["batteryChargeLevel"]["value"] if util.keys_exists(data, "batteryChargeLevel") else None
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elif sensor_id == "electric_range":
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return util.convert_metric_values(data["electricRange"]["value"]) \
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if util.keys_exists(data, "electricRange") else None
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elif sensor_id == "charging_system_status":
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return charging_system_states[data["chargingStatus"]["value"]] \
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if util.keys_exists(data, "chargingStatus") else None
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elif sensor_id == "charging_connection_status":
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return charging_connection_states[data["chargerConnectionStatus"]["value"]] \
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if util.keys_exists(data, "chargerConnectionStatus") else None
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elif sensor_id == "estimated_charging_time":
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if util.keys_exists(data, "chargingStatus"):
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charging_system_state = charging_system_states[data["chargingStatus"]["value"]]
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if charging_system_state == "Charging":
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return data["estimatedChargingTimeToTargetBatteryChargeLevel"]["value"] if util.keys_exists(data,
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"estimatedChargingTimeToTargetBatteryChargeLevel") else ""
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else:
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return 0
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return None
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elif sensor_id == "estimated_charging_finish_time":
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if util.keys_exists(data, "estimatedChargingTimeToTargetBatteryChargeLevel"):
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charging_system_state = charging_system_states[data["chargingStatus"]["value"]]
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if charging_system_state == "Charging":
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charging_time = int(
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data["estimatedChargingTimeToTargetBatteryChargeLevel"]["value"] if util.keys_exists(data, "estimatedChargingTimeToTargetBatteryChargeLevel")
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else 0)
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charging_finished = datetime.now(util.TZ) + timedelta(minutes=charging_time)
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return format_datetime(charging_finished, format="medium", locale=settings["babelLocale"])
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else:
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return ""
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return None
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return None
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else:
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if sensor_id != "api_backend_status":
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data = data["data"]
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if sensor_id == "lock_status":
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return data["centralLock"]["value"] if util.keys_exists(data, "centralLock") else None
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elif sensor_id == "battery_capacity":
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return data["batteryCapacityKWH"] if util.keys_exists(data, "batteryCapacityKWH") else None
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elif sensor_id == "odometer":
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return util.convert_metric_values(int(data["odometer"]["value"])) \
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if util.keys_exists(data, "odometer") else None
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elif sensor_id == "window_front_left":
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return window_states[data["frontLeftWindow"]["value"]] if util.keys_exists(data, "frontLeftWindow") \
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else None
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elif sensor_id == "window_front_right":
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return window_states[data["frontRightWindow"]["value"]] if util.keys_exists(data, "frontRightWindow") \
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else None
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elif sensor_id == "window_rear_left":
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return window_states[data["rearLeftWindow"]["value"]] if util.keys_exists(data, "rearLeftWindow") \
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else None
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elif sensor_id == "window_rear_right":
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return window_states[data["rearRightWindow"]["value"]] if util.keys_exists(data, "rearRightWindow") \
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else None
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elif sensor_id == "door_front_left":
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return door_states[data["frontLeftDoor"]["value"]] if util.keys_exists(data, "frontLeftDoor") else None
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elif sensor_id == "door_front_right":
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return door_states[data["frontRightDoor"]["value"]] \
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if util.keys_exists(data, "frontRightDoor") else None
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elif sensor_id == "door_rear_left":
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return door_states[data["rearLeftDoor"]["value"]] if util.keys_exists(data, "rearLeftDoor") else None
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elif sensor_id == "door_rear_right":
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return door_states[data["rearRightDoor"]["value"]] if util.keys_exists(data, "rearRightDoor") else None
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elif sensor_id == "tailgate":
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return door_states[data["tailgate"]["value"]] if util.keys_exists(data, "tailgate") else None
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elif sensor_id == "sunroof":
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return door_states[data["sunroof"]["value"]] if util.keys_exists(data, "sunroof") else None
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elif sensor_id == "engine_hood":
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return door_states[data["hood"]["value"]] if util.keys_exists(data, "hood") else None
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elif sensor_id == "tank_lid":
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return door_states[data["tankLid"]["value"]] if util.keys_exists(data, "tankLid") else None
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elif sensor_id == "tyre_front_left":
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return data["frontLeft"]["value"] if util.keys_exists(data, "frontLeft") else None
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elif sensor_id == "tyre_front_right":
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return data["frontRight"]["value"] if util.keys_exists(data, "frontRight") else None
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elif sensor_id == "tyre_rear_left":
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return data["rearLeft"]["value"] if util.keys_exists(data, "rearLeft") else None
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elif sensor_id == "tyre_rear_right":
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return data["rearRight"]["value"] if util.keys_exists(data, "rearRight") else None
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elif sensor_id == "engine_state":
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return engine_states[data["engineStatus"]["value"]] if util.keys_exists(data, "engineStatus") else None
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elif sensor_id == "fuel_level":
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if util.keys_exists(data, "fuelAmount"):
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fuel_amount = float(data["fuelAmount"]["value"])
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if fuel_amount > 0:
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return fuel_amount
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return None
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elif sensor_id == "average_fuel_consumption":
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average_fuel_con = 0
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if util.keys_exists(data, "averageFuelConsumption"):
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average_fuel_con = float(data["averageFuelConsumption"]["value"])
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elif util.keys_exists(data, "averageFuelConsumptionAutomatic"):
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average_fuel_con = float(data["averageFuelConsumptionAutomatic"]["value"])
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if average_fuel_con > 0:
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return average_fuel_con
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return None
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elif sensor_id == "average_speed":
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average_speed = 0
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if util.keys_exists(data, "averageSpeed"):
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average_speed = float(data["averageSpeed"]["value"])
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elif util.keys_exists(data, "averageSpeedAutomatic"):
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average_speed = float(data["averageSpeedAutomatic"]["value"])
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if average_speed != 0:
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return util.convert_metric_values(average_speed)
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return None
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elif sensor_id == "location":
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coordinates = {}
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if util.keys_exists(data, "geometry"):
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raw_data = data["geometry"]
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if util.keys_exists(raw_data, "coordinates"):
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coordinates = {"longitude": raw_data["coordinates"][0],
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"latitude": raw_data["coordinates"][1],
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"gps_accuracy": 1}
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return coordinates
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elif sensor_id == "distance_to_empty_tank":
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if util.keys_exists(data, "distanceToEmptyTank"):
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distance_to_empty = int(data["distanceToEmptyTank"]["value"])
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if distance_to_empty > 0:
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return util.convert_metric_values(data["distanceToEmptyTank"]["value"])
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return None
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elif sensor_id == "distance_to_empty_battery":
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if util.keys_exists(data, "distanceToEmptyBattery"):
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distance_to_empty = int(data["distanceToEmptyBattery"]["value"])
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if distance_to_empty > 0:
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return util.convert_metric_values(data["distanceToEmptyBattery"]["value"])
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return None
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elif sensor_id == "hours_to_service":
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return data["engineHoursToService"]["value"] if util.keys_exists(data, "engineHoursToService") else None
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elif sensor_id == "km_to_service":
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if util.keys_exists(data, "distanceToService"):
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km_to_service = int(data["distanceToService"]["value"])
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if km_to_service > 0:
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return util.convert_metric_values(data["distanceToService"]["value"])
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return None
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elif sensor_id == "time_to_service":
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if util.keys_exists(data, "timeToService"):
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return str(data["timeToService"]["value"]) + " " + data["timeToService"]["unit"]
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else:
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return 0
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return None
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elif sensor_id == "estimated_charging_finish_time":
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if util.keys_exists(data, "chargingSystemStatus"):
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charging_system_state = charging_system_states[data["chargingSystemStatus"]["value"]]
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if charging_system_state == "Charging":
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charging_time = int(
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data["estimatedChargingTime"]["value"] if util.keys_exists(data, "estimatedChargingTime")
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else 0)
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charging_finished = datetime.now(util.TZ) + timedelta(minutes=charging_time)
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return format_datetime(charging_finished, format="medium", locale=settings["babelLocale"])
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else:
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return ""
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return None
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elif sensor_id == "lock_status":
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return data["centralLock"]["value"] if util.keys_exists(data, "centralLock") else None
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elif sensor_id == "odometer":
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return util.convert_metric_values(int(data["odometer"]["value"])) \
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if util.keys_exists(data, "odometer") else None
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elif sensor_id == "window_front_left":
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return window_states[data["frontLeftWindow"]["value"]] if util.keys_exists(data, "frontLeftWindow") \
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else None
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elif sensor_id == "window_front_right":
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return window_states[data["frontRightWindow"]["value"]] if util.keys_exists(data, "frontRightWindow") \
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else None
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elif sensor_id == "window_rear_left":
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return window_states[data["rearLeftWindow"]["value"]] if util.keys_exists(data, "rearLeftWindow") \
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else None
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elif sensor_id == "window_rear_right":
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return window_states[data["rearRightWindow"]["value"]] if util.keys_exists(data, "rearRightWindow") \
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else None
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elif sensor_id == "door_front_left":
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return door_states[data["frontLeftDoor"]["value"]] if util.keys_exists(data, "frontLeftDoor") else None
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elif sensor_id == "door_front_right":
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return door_states[data["frontRightDoor"]["value"]] \
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if util.keys_exists(data, "frontRightDoor") else None
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elif sensor_id == "door_rear_left":
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return door_states[data["rearLeftDoor"]["value"]] if util.keys_exists(data, "rearLeftDoor") else None
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elif sensor_id == "door_rear_right":
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return door_states[data["rearRightDoor"]["value"]] if util.keys_exists(data, "rearRightDoor") else None
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elif sensor_id == "tailgate":
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return door_states[data["tailgate"]["value"]] if util.keys_exists(data, "tailgate") else None
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elif sensor_id == "sunroof":
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return door_states[data["sunroof"]["value"]] if util.keys_exists(data, "sunroof") else None
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elif sensor_id == "engine_hood":
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return door_states[data["hood"]["value"]] if util.keys_exists(data, "hood") else None
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elif sensor_id == "tank_lid":
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return door_states[data["tankLid"]["value"]] if util.keys_exists(data, "tankLid") else None
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elif sensor_id == "tyre_front_left":
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return data["frontLeft"]["value"] if util.keys_exists(data, "frontLeft") else None
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elif sensor_id == "tyre_front_right":
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return data["frontRight"]["value"] if util.keys_exists(data, "frontRight") else None
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elif sensor_id == "tyre_rear_left":
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return data["rearLeft"]["value"] if util.keys_exists(data, "rearLeft") else None
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elif sensor_id == "tyre_rear_right":
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return data["rearRight"]["value"] if util.keys_exists(data, "rearRight") else None
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elif sensor_id == "engine_state":
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return engine_states[data["engineStatus"]["value"]] if util.keys_exists(data, "engineStatus") else None
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elif sensor_id == "fuel_level":
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if util.keys_exists(data, "fuelAmount"):
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fuel_amount = float(data["fuelAmount"]["value"])
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if fuel_amount > 0:
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return fuel_amount
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return None
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elif sensor_id == "average_fuel_consumption":
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average_fuel_con = 0
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if util.keys_exists(data, "averageFuelConsumption"):
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average_fuel_con = float(data["averageFuelConsumption"]["value"])
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elif util.keys_exists(data, "averageFuelConsumptionAutomatic"):
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average_fuel_con = float(data["averageFuelConsumptionAutomatic"]["value"])
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return None
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elif sensor_id == "service_warning_status":
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return data["serviceWarning"]["value"] if util.keys_exists(data, "serviceWarning") else None
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elif sensor_id == "average_energy_consumption":
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average_energy_con = 0
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if util.keys_exists(data, "averageEnergyConsumption"):
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average_energy_con = data["averageEnergyConsumption"]["value"]
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elif util.keys_exists(data, "averageEnergyConsumptionAutomatic"):
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average_energy_con = data["averageEnergyConsumptionAutomatic"]["value"]
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if average_fuel_con > 0:
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return average_fuel_con
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return None
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elif sensor_id == "average_speed":
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average_speed = 0
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if util.keys_exists(data, "averageSpeed"):
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average_speed = float(data["averageSpeed"]["value"])
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elif util.keys_exists(data, "averageSpeedAutomatic"):
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average_speed = float(data["averageSpeedAutomatic"]["value"])
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if average_energy_con != 0:
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return average_energy_con
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return None
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elif sensor_id == "washer_fluid_warning":
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return data["washerFluidLevelWarning"]["value"] if util.keys_exists(data, "washerFluidLevelWarning") else None
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elif sensor_id == "warnings":
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warnings = 0
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cleaned_data = {}
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for key, dicts in data.items():
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contains_data = sum(value == "NO_WARNING" or value == "FAILURE" for value in dicts.values())
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if contains_data:
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warnings = warnings + 1
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cleaned_data[key] = dicts["value"]
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if average_speed != 0:
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return util.convert_metric_values(average_speed)
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return None
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elif sensor_id == "location":
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coordinates = {}
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if util.keys_exists(data, "geometry"):
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raw_data = data["geometry"]
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if util.keys_exists(raw_data, "coordinates"):
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coordinates = {"longitude": raw_data["coordinates"][0],
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"latitude": raw_data["coordinates"][1],
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"gps_accuracy": 1}
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return coordinates
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elif sensor_id == "distance_to_empty_tank":
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if util.keys_exists(data, "distanceToEmptyTank"):
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distance_to_empty = int(data["distanceToEmptyTank"]["value"])
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if distance_to_empty > 0:
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return util.convert_metric_values(data["distanceToEmptyTank"]["value"])
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return None
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elif sensor_id == "distance_to_empty_battery":
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if util.keys_exists(data, "distanceToEmptyBattery"):
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distance_to_empty = int(data["distanceToEmptyBattery"]["value"])
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if distance_to_empty > 0:
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return util.convert_metric_values(data["distanceToEmptyBattery"]["value"])
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return None
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elif sensor_id == "hours_to_service":
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return data["engineHoursToService"]["value"] if util.keys_exists(data, "engineHoursToService") else None
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elif sensor_id == "km_to_service":
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if util.keys_exists(data, "distanceToService"):
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km_to_service = int(data["distanceToService"]["value"])
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if km_to_service > 0:
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return util.convert_metric_values(data["distanceToService"]["value"])
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return None
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elif sensor_id == "time_to_service":
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if util.keys_exists(data, "timeToService"):
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return str(data["timeToService"]["value"]) + " " + data["timeToService"]["unit"]
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return cleaned_data if warnings > 0 else None
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elif sensor_id == "trip_fuel_consumption":
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trip_fuel_con = 0
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if util.keys_exists(data, "averageFuelConsumptionAutomatic"):
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trip_fuel_con = float(data["averageFuelConsumptionAutomatic"]["value"])
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if trip_fuel_con > 0:
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return trip_fuel_con
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return None
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elif sensor_id == "trip_distance":
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return util.convert_metric_values(int(data["tripMeterAutomatic"]["value"])) \
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if util.keys_exists(data, "tripMeterAutomatic") else None
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elif sensor_id == "trip_energy_consumption":
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trip_energy_con = 0
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if util.keys_exists(data, "averageEnergyConsumptionAutomatic"):
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trip_energy_con = data["averageEnergyConsumptionAutomatic"]["value"]
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if trip_energy_con != 0:
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return trip_energy_con
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return None
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elif sensor_id == "trip_speed":
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trip_speed = 0
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if util.keys_exists(data, "averageSpeedAutomatic"):
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trip_speed = float(data["averageSpeedAutomatic"]["value"])
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if trip_speed != 0:
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return util.convert_metric_values(trip_speed)
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return None
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else:
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return None
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elif sensor_id == "service_warning_status":
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return data["serviceWarning"]["value"] if util.keys_exists(data, "serviceWarning") else None
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elif sensor_id == "average_energy_consumption":
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average_energy_con = 0
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if util.keys_exists(data, "averageEnergyConsumption"):
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average_energy_con = data["averageEnergyConsumption"]["value"]
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elif util.keys_exists(data, "averageEnergyConsumptionAutomatic"):
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average_energy_con = data["averageEnergyConsumptionAutomatic"]["value"]
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if average_energy_con != 0:
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return average_energy_con
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return None
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elif sensor_id == "washer_fluid_warning":
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return data["washerFluidLevelWarning"]["value"] if util.keys_exists(data, "washerFluidLevelWarning") else None
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elif sensor_id == "warnings":
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warnings = 0
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cleaned_data = {}
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for key, dicts in data.items():
|
||||
contains_data = sum(value == "NO_WARNING" or value == "FAILURE" for value in dicts.values())
|
||||
if contains_data:
|
||||
warnings = warnings + 1
|
||||
cleaned_data[key] = dicts["value"]
|
||||
|
||||
return cleaned_data if warnings > 0 else None
|
||||
elif sensor_id == "trip_fuel_consumption":
|
||||
trip_fuel_con = 0
|
||||
if util.keys_exists(data, "averageFuelConsumptionAutomatic"):
|
||||
trip_fuel_con = float(data["averageFuelConsumptionAutomatic"]["value"])
|
||||
if trip_fuel_con > 0:
|
||||
return trip_fuel_con
|
||||
return None
|
||||
elif sensor_id == "trip_distance":
|
||||
return util.convert_metric_values(int(data["tripMeterAutomatic"]["value"])) \
|
||||
if util.keys_exists(data, "tripMeterAutomatic") else None
|
||||
elif sensor_id == "trip_energy_consumption":
|
||||
trip_energy_con = 0
|
||||
if util.keys_exists(data, "averageEnergyConsumptionAutomatic"):
|
||||
trip_energy_con = data["averageEnergyConsumptionAutomatic"]["value"]
|
||||
if trip_energy_con != 0:
|
||||
return trip_energy_con
|
||||
return None
|
||||
elif sensor_id == "trip_speed":
|
||||
trip_speed = 0
|
||||
if util.keys_exists(data, "averageSpeedAutomatic"):
|
||||
trip_speed = float(data["averageSpeedAutomatic"]["value"])
|
||||
if trip_speed != 0:
|
||||
return util.convert_metric_values(trip_speed)
|
||||
return None
|
||||
|
||||
else:
|
||||
return None
|
||||
|
||||
|
||||
|
||||
Reference in New Issue
Block a user