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13 Commits
Author SHA1 Message Date
Linus DietzandGitHub a1881a87d8 Added dynamic icons lock, battery and window state (#45)
#43
2023-07-01 15:06:23 +02:00
Linus Dietz 8c0ce8976e get distanceToEmpty sensor from connected api 2023-06-30 12:21:28 +02:00
Linus DietzandGitHub 34a0b9b2a7 Optimize logging (#41)
* Move print statements to logger

* Add external log location for addon usage

* Add more detailed logs for debug

* Bump version
2023-06-30 11:16:57 +02:00
Linus DietzandGitHub 67320c32f6 Optimize climate timer (#40)
* Add logic to turn climate switch off if driver door is opened

* Update car data after climate state change

* Climate stop on left or right door open

* Bump version
2023-06-29 17:46:34 +02:00
Dielee 30f415cb1f Merge branch 'main' of https://github.com/Dielee/volvo2mqtt into main 2023-06-29 15:16:05 +02:00
Dielee 241b2f7ba4 Fix app crash on credential refresh 2023-06-29 15:15:49 +02:00
Linus Dietz 80017f64e3 Fix app crash on credential refresh 2023-06-29 15:14:24 +02:00
Linus Dietz 47357fb582 Add "Washer Fluid Level" and "Distance to Empty" sensors 2023-06-29 08:36:23 +02:00
Linus Dietz 9f1209e628 Fix wrong return values for not working endpoints 2023-06-29 08:06:31 +02:00
Linus DietzandGitHub f0d4d68792 Add value conversion from metric to imperial (#36)
* Convert km to miles, km/h to mp/h if babelLocale is en_GB or en_US #34

* Remove unused variable

* Change speed unit for imperial system // Bump version
2023-06-27 15:29:48 +02:00
Linus DietzandGitHub 140a735773 Update README.md 2023-06-27 14:24:43 +02:00
Linus Dietz ebcabc6ff4 rework error message for get_vehicles 2023-06-27 09:11:07 +02:00
Linus Dietz c995c2a44d Optimize error message for get_vehicles 2023-06-27 09:09:28 +02:00
10 changed files with 596 additions and 399 deletions
+2
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@@ -2,3 +2,5 @@
venv venv
src/settings.dev.json src/settings.dev.json
.env .env
/src/volvo2mqtt.log
/src/volvo2mqtt.log.1
+1 -1
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@@ -60,7 +60,7 @@ NOTE: Energy status currently available only for cars in the Europe / Middle Eas
Just install this addon with the following command. Just install this addon with the following command.
Please note to fill in your settings inside the environment variables. Please note to fill in your settings inside the environment variables.
`docker run -d --pull=always -e CONF_updateInterval=300 -e CONF_babelLocale='de' -e CONF_mqtt='@json {"broker": "", "username": "", "password": "", "port": 1883}' -e CONF_volvoData='@json {"username": "", "password": "", "vin": "", "vccapikey": "", "odometerMultiplier": 1, "averageSpeedDivider": 1, "averageFuelConsumptionMultiplier": 1}' -e TZ='Europe/Berlin' --name volvo2mqtt ghcr.io/dielee/volvo2mqtt:latest` `docker run -d --pull=always -e CONF_updateInterval=300 -e CONF_babelLocale='de' -e CONF_mqtt='@json {"broker": "", "username": "", "password": "", "port": 1883}' -e CONF_volvoData='@json {"username": "", "password": "", "vin": "", "vccapikey": "", "odometerMultiplier": 1, "averageSpeedDivider": 1, "averageFuelConsumptionMultiplier": 1}' -e TZ='Europe/Berlin' --name volvo2mqtt ghcr.io/dielee/volvo2mqtt:latest`
<b>HA Add-On:</b><br> <b>HA Add-On:</b><br>
+2 -1
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@@ -15,6 +15,7 @@ RUN pip install -r requirements.txt
# copy the content of the local src directory to the working directory # copy the content of the local src directory to the working directory
COPY / . COPY / .
RUN chmod a+x /volvoAAOS2mqtt/run.sh
# command to run on container start # command to run on container start
CMD [ "python", "-u", "./main.py" ] CMD [ "/volvoAAOS2mqtt/run.sh" ]
+3 -1
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@@ -1,10 +1,12 @@
name: "Volvo2Mqtt" name: "Volvo2Mqtt"
description: "Volvo AAOS MQTT bridge" description: "Volvo AAOS MQTT bridge"
version: "1.5.6" version: "1.6.4"
slug: "volvo2mqtt" slug: "volvo2mqtt"
init: false init: false
url: "https://github.com/Dielee/volvo2mqtt" url: "https://github.com/Dielee/volvo2mqtt"
apparmor: true apparmor: true
map:
- addons:rw
options: options:
updateInterval: 300 updateInterval: 300
babelLocale: null babelLocale: null
+41 -4
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@@ -1,6 +1,6 @@
from config import settings from config import settings
VERSION = "v1.5.6" VERSION = "v1.6.4"
OAUTH_URL = "https://volvoid.eu.volvocars.com/as/token.oauth2" OAUTH_URL = "https://volvoid.eu.volvocars.com/as/token.oauth2"
VEHICLES_URL = "https://api.volvocars.com/connected-vehicle/v1/vehicles" VEHICLES_URL = "https://api.volvocars.com/connected-vehicle/v1/vehicles"
@@ -20,6 +20,21 @@ BATTERY_CHARGE_STATE_URL = "https://api.volvocars.com/connected-vehicle/v2/vehic
FUEL_STATE_URL = "https://api.volvocars.com/connected-vehicle/v2/vehicles/{0}/fuel" FUEL_STATE_URL = "https://api.volvocars.com/connected-vehicle/v2/vehicles/{0}/fuel"
STATISTICS_URL = "https://api.volvocars.com/connected-vehicle/v2/vehicles/{0}/statistics" STATISTICS_URL = "https://api.volvocars.com/connected-vehicle/v2/vehicles/{0}/statistics"
units = {
"en_GB": {
"divider": 1.60934,
"electric_range": {"unit": "mi"},
"odometer": {"unit": "mi"},
"average_speed": {"unit": "mph"}
},
"en_US": {
"divider": 1.60934,
"electric_range": {"unit": "mi"},
"odometer": {"unit": "mi"},
"average_speed": {"unit": "mph"}
}
}
availability_topic = "volvoAAOS2mqtt/availability" availability_topic = "volvoAAOS2mqtt/availability"
charging_system_states = {"CHARGING_SYSTEM_CHARGING": "Charging", "CHARGING_SYSTEM_IDLE": "Idle", charging_system_states = {"CHARGING_SYSTEM_CHARGING": "Charging", "CHARGING_SYSTEM_IDLE": "Idle",
@@ -31,15 +46,36 @@ charging_connection_states = {"CONNECTION_STATUS_DISCONNECTED": "Disconnected",
window_states = {"CLOSED": "OFF", "OPEN": "ON"} window_states = {"CLOSED": "OFF", "OPEN": "ON"}
door_states = {"CLOSED": "OFF", "OPEN": "ON"} door_states = {"CLOSED": "OFF", "OPEN": "ON"}
icon_states = {
"lock_status": {"UNLOCKED": "lock-open-alert", "LOCKED": "lock"},
"door_front_left": {"ON": "car-door", "OFF": "car-door-lock"},
"door_front_right": {"ON": "car-door", "OFF": "car-door-lock"},
"door_rear_left": {"ON": "car-door", "OFF": "car-door-lock"},
"door_rear_right": {"ON": "car-door", "OFF": "car-door-lock"},
"battery_charge_level": [
{"from": 100, "to": 100, "icon": "battery"},
{"from": 99, "to": 90, "icon": "battery-90"},
{"from": 89, "to": 80, "icon": "battery-80"},
{"from": 79, "to": 70, "icon": "battery-70"},
{"from": 69, "to": 60, "icon": "battery-60"},
{"from": 59, "to": 50, "icon": "battery-50"},
{"from": 49, "to": 40, "icon": "battery-40"},
{"from": 39, "to": 30, "icon": "battery-30"},
{"from": 29, "to": 20, "icon": "battery-20"},
{"from": 19, "to": 10, "icon": "battery-10"},
{"from": 9, "to": 0, "icon": "battery-alert-variant-outline"},
]
}
supported_entities = [ supported_entities = [
{"name": "Battery Charge Level", "domain": "sensor", "id": "battery_charge_level", "unit": "%", "icon": "car-battery", "url": RECHARGE_STATE_URL}, {"name": "Battery Charge Level", "domain": "sensor", "id": "battery_charge_level", "unit": "%", "icon": "car-battery", "url": RECHARGE_STATE_URL},
{"name": "Battery Charge Level", "domain": "sensor", "id": "battery_charge_level", "unit": "%", "icon": "car-battery", "url": BATTERY_CHARGE_STATE_URL}, {"name": "Battery Charge Level", "domain": "sensor", "id": "battery_charge_level", "unit": "%", "icon": "car-battery", "url": BATTERY_CHARGE_STATE_URL},
{"name": "Electric Range", "domain": "sensor", "id": "electric_range", "unit": "km" if settings["babelLocale"] != "en_US" else "mi", "icon": "map-marker-distance", "url": RECHARGE_STATE_URL}, {"name": "Electric Range", "domain": "sensor", "id": "electric_range", "unit": "km" if not units.get(settings["babelLocale"]) else units[settings["babelLocale"]]["electric_range"]["unit"], "icon": "map-marker-distance", "url": RECHARGE_STATE_URL},
{"name": "Estimated Charging Time", "domain": "sensor", "id": "estimated_charging_time", "unit": "minutes", "icon": "timer-sync-outline", "url": RECHARGE_STATE_URL}, {"name": "Estimated Charging Time", "domain": "sensor", "id": "estimated_charging_time", "unit": "minutes", "icon": "timer-sync-outline", "url": RECHARGE_STATE_URL},
{"name": "Charging System Status", "domain": "sensor", "id": "charging_system_status", "icon": "ev-station", "url": RECHARGE_STATE_URL}, {"name": "Charging System Status", "domain": "sensor", "id": "charging_system_status", "icon": "ev-station", "url": RECHARGE_STATE_URL},
{"name": "Charging Connection Status", "domain": "sensor", "id": "charging_connection_status", "icon": "ev-plug-ccs2", "url": RECHARGE_STATE_URL}, {"name": "Charging Connection Status", "domain": "sensor", "id": "charging_connection_status", "icon": "ev-plug-ccs2", "url": RECHARGE_STATE_URL},
{"name": "Estimated Charging Finish Time", "domain": "sensor", "id": "estimated_charging_finish_time", "icon": "timer-sync-outline", "url": RECHARGE_STATE_URL}, {"name": "Estimated Charging Finish Time", "domain": "sensor", "id": "estimated_charging_finish_time", "icon": "timer-sync-outline", "url": RECHARGE_STATE_URL},
{"name": "Odometer", "domain": "sensor", "id": "odometer", "unit": "km" if settings["babelLocale"] != "en_US" else "mi", "icon": "counter", "url": ODOMETER_STATE_URL}, {"name": "Odometer", "domain": "sensor", "id": "odometer", "unit": "km" if not units.get(settings["babelLocale"]) else units[settings["babelLocale"]]["odometer"]["unit"], "icon": "counter", "url": ODOMETER_STATE_URL},
{"name": "Last Data Update", "domain": "sensor", "id": "last_data_update", "icon": "timer", "url": ""}, {"name": "Last Data Update", "domain": "sensor", "id": "last_data_update", "icon": "timer", "url": ""},
{"name": "Window Front Left", "domain": "binary_sensor", "device_class": "window", "id": "window_front_left", "icon": "car-door-lock", "url": WINDOWS_STATE_URL}, {"name": "Window Front Left", "domain": "binary_sensor", "device_class": "window", "id": "window_front_left", "icon": "car-door-lock", "url": WINDOWS_STATE_URL},
{"name": "Window Front Right", "domain": "binary_sensor", "device_class": "window", "id": "window_front_right", "icon": "car-door-lock", "url": WINDOWS_STATE_URL}, {"name": "Window Front Right", "domain": "binary_sensor", "device_class": "window", "id": "window_front_right", "icon": "car-door-lock", "url": WINDOWS_STATE_URL},
@@ -64,5 +100,6 @@ supported_entities = [
{"name": "Engine State", "domain": "sensor", "id": "engine_state", "icon": "engine", "url": ENGINE_STATE_URL}, {"name": "Engine State", "domain": "sensor", "id": "engine_state", "icon": "engine", "url": ENGINE_STATE_URL},
{"name": "Fuel Level", "domain": "sensor", "id": "fuel_level", "unit": "liters", "icon": "fuel", "url": FUEL_STATE_URL}, {"name": "Fuel Level", "domain": "sensor", "id": "fuel_level", "unit": "liters", "icon": "fuel", "url": FUEL_STATE_URL},
{"name": "Average Fuel Consumption", "domain": "sensor", "id": "average_fuel_consumption", "unit": "liters", "icon": "fuel", "url": STATISTICS_URL}, {"name": "Average Fuel Consumption", "domain": "sensor", "id": "average_fuel_consumption", "unit": "liters", "icon": "fuel", "url": STATISTICS_URL},
{"name": "Average Speed", "domain": "sensor", "id": "average_speed", "unit": "km/h" if settings["babelLocale"] != "en_US" else "mp/h", "icon": "speedometer", "url": STATISTICS_URL} {"name": "Distance to Empty", "domain": "sensor", "id": "distance_to_empty", "unit": "km" if not units.get(settings["babelLocale"]) else units[settings["babelLocale"]]["odometer"]["unit"], "icon": "map-marker-distance", "url": STATISTICS_URL},
{"name": "Average Speed", "domain": "sensor", "id": "average_speed", "unit": "km/h" if not units.get(settings["babelLocale"]) else units[settings["babelLocale"]]["average_speed"]["unit"], "icon": "speedometer", "url": STATISTICS_URL}
] ]
+4 -2
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@@ -1,12 +1,14 @@
import logging
from volvo import authorize from volvo import authorize
from mqtt import update_loop, connect from mqtt import update_loop, connect
from const import VERSION from const import VERSION
from util import set_tz from util import set_tz, setup_logging
if __name__ == '__main__': if __name__ == '__main__':
print("Starting volvo2mqtt version " + VERSION)
set_tz() set_tz()
setup_logging()
logging.info("Starting volvo2mqtt version " + VERSION)
authorize() authorize()
connect() connect()
update_loop() update_loop()
+82 -14
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@@ -1,3 +1,4 @@
import logging
import time import time
import paho.mqtt.client as mqtt import paho.mqtt.client as mqtt
import json import json
@@ -8,7 +9,7 @@ from datetime import datetime
from babel.dates import format_datetime from babel.dates import format_datetime
from config import settings from config import settings
from const import CLIMATE_START_URL, CLIMATE_STOP_URL, CAR_LOCK_URL, \ from const import CLIMATE_START_URL, CLIMATE_STOP_URL, CAR_LOCK_URL, \
CAR_UNLOCK_URL, availability_topic CAR_UNLOCK_URL, availability_topic, icon_states
mqtt_client: mqtt.Client mqtt_client: mqtt.Client
@@ -16,6 +17,8 @@ subscribed_topics = []
assumed_climate_state = {} assumed_climate_state = {}
last_data_update = None last_data_update = None
climate_timer = {} climate_timer = {}
door_status = {}
devices = {}
def connect(): def connect():
@@ -47,41 +50,60 @@ def on_connect(client, userdata, flags, rc):
def on_disconnect(client, userdata, rc): def on_disconnect(client, userdata, rc):
print("MQTT disconnected, reconnecting automatically") logging.warning("MQTT disconnected, reconnecting automatically")
def on_message(client, userdata, msg): def on_message(client, userdata, msg):
try: try:
vin = msg.topic.split('/')[2].split('_')[0] vin = msg.topic.split('/')[2].split('_')[0]
except IndexError: except IndexError:
print("Error - Cannot get vin from MQTT topic!") logging.error("Error - Cannot get vin from MQTT topic!")
return None return None
payload = msg.payload.decode("UTF-8") payload = msg.payload.decode("UTF-8")
if "climate_status" in msg.topic: if "climate_status" in msg.topic:
global assumed_climate_state, climate_timer global assumed_climate_state, climate_timer, door_status
if payload == "ON": if payload == "ON":
api_thread = Thread(target=volvo.api_call, args=(CLIMATE_START_URL, "POST", vin)) # Start the api call in another thread for HA performance
api_thread.start() Thread(target=volvo.api_call, args=(CLIMATE_START_URL, "POST", vin)).start()
assumed_climate_state[vin] = "ON"
# Start door check thread to turn off climate if driver door is opened
door_thread = Thread(target=volvo.check_door_status, args=(vin, ))
door_thread.start()
door_status[vin] = door_thread
# Starting timer to disable climate after 30 mins # Starting timer to disable climate after 30 mins
climate_timer[vin] = Timer(30 * 60, volvo.disable_climate, (vin, )) climate_timer[vin] = Timer(30 * 60, volvo.disable_climate, (vin, ))
climate_timer[vin].start() climate_timer[vin].start()
# Set and update switch status
assumed_climate_state[vin] = "ON"
update_car_data() update_car_data()
elif payload == "OFF": elif payload == "OFF":
api_thread = Thread(target=volvo.api_call, args=(CLIMATE_STOP_URL, "POST", vin)) # Start the api call in another thread for HA performance
api_thread.start() Thread(target=volvo.api_call, args=(CLIMATE_STOP_URL, "POST", vin)).start()
assumed_climate_state[vin] = "OFF"
# Stop timer if active # Stop door check thread if running
if door_status[vin].is_alive():
door_status[vin].do_run = False
# Stop climate timer if active
if climate_timer[vin].is_alive(): if climate_timer[vin].is_alive():
climate_timer[vin].cancel() climate_timer[vin].cancel()
# Set and update switch status
assumed_climate_state[vin] = "OFF"
update_car_data() update_car_data()
elif "lock_status" in msg.topic: elif "lock_status" in msg.topic:
if payload == "LOCK": if payload == "LOCK":
volvo.api_call(CAR_LOCK_URL, "POST", vin) volvo.api_call(CAR_LOCK_URL, "POST", vin)
# Force set unlocked state in HA because of slow api response
update_car_data(True, {"entity_id": "lock_status", "vin": vin, "state": "LOCKED"}) update_car_data(True, {"entity_id": "lock_status", "vin": vin, "state": "LOCKED"})
elif payload == "UNLOCK": elif payload == "UNLOCK":
volvo.api_call(CAR_UNLOCK_URL, "POST", vin) volvo.api_call(CAR_UNLOCK_URL, "POST", vin)
# Force set unlocked state in HA because of slow api response
update_car_data(True, {"entity_id": "lock_status", "vin": vin, "state": "UNLOCKED"}) update_car_data(True, {"entity_id": "lock_status", "vin": vin, "state": "UNLOCKED"})
elif "update_data" in msg.topic: elif "update_data" in msg.topic:
if payload == "PRESS": if payload == "PRESS":
@@ -91,10 +113,10 @@ def on_message(client, userdata, msg):
def update_loop(): def update_loop():
create_ha_devices() create_ha_devices()
while True: while True:
print("Sending mqtt update...") logging.info("Sending mqtt update...")
send_heartbeat() send_heartbeat()
update_car_data() update_car_data()
print("Mqtt update done. Next run in " + str(settings["updateInterval"]) + " seconds.") logging.info("Mqtt update done. Next run in " + str(settings["updateInterval"]) + " seconds.")
time.sleep(settings["updateInterval"]) time.sleep(settings["updateInterval"])
@@ -133,12 +155,58 @@ def update_car_data(force_update=False, overwrite={}):
topic, topic,
json.dumps(state) if isinstance(state, dict) else state json.dumps(state) if isinstance(state, dict) else state
) )
update_ha_device(entity, vin, state)
def update_ha_device(entity, vin, state):
icon_config = icon_states.get(entity["id"])
if icon_config and state:
if state.replace(".", "").isnumeric():
state = float(state)
icon = util.get_icon_between(icon_config, state)
else:
icon = icon_config[state]
else:
return None
logging.debug("Updating icon to " + icon + " for " + entity["id"])
config = {
"name": entity['name'],
"object_id": f"volvo_{vin}_{entity['id']}",
"schema": "state",
"icon": f"mdi:{icon}" if icon else f"mdi:{entity['icon']}",
"state_topic": f"homeassistant/{entity['domain']}/{vin}_{entity['id']}/state",
"device": devices[vin],
"unique_id": f"volvoAAOS2mqtt_{vin}_{entity['id']}",
"availability_topic": availability_topic
}
if entity.get("device_class"):
config["device_class"] = entity["device_class"]
if entity.get("unit"):
config["unit_of_measurement"] = entity["unit"]
if entity.get("domain") == "device_tracker":
config["json_attributes_topic"] = f"homeassistant/{entity['domain']}/{vin}_{entity['id']}/attributes"
if entity.get("domain") in ["switch", "lock", "button"]:
command_topic = f"homeassistant/{entity['domain']}/{vin}_{entity['id']}/command"
config["command_topic"] = command_topic
subscribed_topics.append(command_topic)
mqtt_client.subscribe(command_topic)
mqtt_client.publish(
f"homeassistant/{entity['domain']}/volvoAAOS2mqtt/{vin}_{entity['id']}/config",
json.dumps(config),
retain=True
)
def create_ha_devices(): def create_ha_devices():
global subscribed_topics global subscribed_topics, devices
for vin in volvo.vins: for vin in volvo.vins:
device = volvo.get_vehicle_details(vin) device = volvo.get_vehicle_details(vin)
devices[vin] = device
for entity in volvo.supported_endpoints[vin]: for entity in volvo.supported_endpoints[vin]:
config = { config = {
"name": entity['name'], "name": entity['name'],
+4
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@@ -0,0 +1,4 @@
#!/bin/bash
export IS_HA_ADDON="true"
python -u main.py
+53
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@@ -1,10 +1,54 @@
import logging
import pytz import pytz
import os import os
import sys
from logging import handlers
from datetime import datetime
from const import units
from config import settings from config import settings
from pathlib import Path
TZ = None TZ = None
def get_icon_between(icon_list, state):
icon = None
for s in icon_list:
if s["to"] <= state <= s["from"]:
icon = s["icon"]
return icon
def setup_logging():
log_location = "volvo2mqtt.log"
if os.environ.get("IS_HA_ADDON"):
check_existing_folder()
log_location = "/addons/volvo2mqtt/log/volvo2mqtt.log"
logging.Formatter.converter = lambda *args: datetime.now(tz=TZ).timetuple()
file_log_handler = logging.handlers.RotatingFileHandler(log_location, maxBytes=1000000, backupCount=1)
formatter = logging.Formatter(
'%(asctime)s volvo2mqtt [%(process)d] - %(levelname)s: %(message)s',
'%b %d %H:%M:%S')
file_log_handler.setFormatter(formatter)
logger = logging.getLogger()
console_log_handler = logging.StreamHandler(sys.stdout)
console_log_handler.setFormatter(formatter)
logger.addHandler(console_log_handler)
logger.addHandler(file_log_handler)
logger.setLevel(logging.INFO)
if "debug" in settings:
if settings["debug"]:
logger.setLevel(logging.DEBUG)
def check_existing_folder():
Path("/addons/volvo2mqtt/log/").mkdir(parents=True, exist_ok=True)
def keys_exists(element, *keys): def keys_exists(element, *keys):
"""" """"
Check if *keys (nested) exists in `element` (dict). Check if *keys (nested) exists in `element` (dict).
@@ -34,3 +78,12 @@ def set_tz():
TZ = pytz.timezone(settings_tz) TZ = pytz.timezone(settings_tz)
else: else:
raise Exception("No timezone setting found! Please read the README!") raise Exception("No timezone setting found! Please read the README!")
def convert_metric_values(value):
if keys_exists(units, settings["babelLocale"]):
divider = units[settings["babelLocale"]]["divider"]
return round((float(value) / divider), 2)
else:
return value
+404 -376
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@@ -1,376 +1,404 @@
import requests import logging
import mqtt import requests
import util import mqtt
from datetime import datetime, timedelta import util
from config import settings import time
from babel.dates import format_datetime from threading import Thread, currentThread
from const import charging_system_states, charging_connection_states, door_states, window_states, \ from datetime import datetime, timedelta
OAUTH_URL, VEHICLES_URL, VEHICLE_DETAILS_URL, RECHARGE_STATE_URL, CLIMATE_START_URL, \ from config import settings
WINDOWS_STATE_URL, LOCK_STATE_URL, TYRE_STATE_URL, supported_entities, BATTERY_CHARGE_STATE_URL, \ from babel.dates import format_datetime
STATISTICS_URL from const import charging_system_states, charging_connection_states, door_states, window_states, \
OAUTH_URL, VEHICLES_URL, VEHICLE_DETAILS_URL, RECHARGE_STATE_URL, CLIMATE_START_URL, \
session = requests.Session() WINDOWS_STATE_URL, LOCK_STATE_URL, TYRE_STATE_URL, supported_entities, BATTERY_CHARGE_STATE_URL, \
session.headers = { STATISTICS_URL, CLIMATE_STOP_URL
"vcc-api-key": settings["volvoData"]["vccapikey"],
"content-type": "application/json", session = requests.Session()
"accept": "*/*" session.headers = {
} "vcc-api-key": settings["volvoData"]["vccapikey"],
"content-type": "application/json",
token_expires_at: datetime "accept": "*/*"
refresh_token = None }
vins = []
supported_endpoints = {} token_expires_at: datetime
cached_requests = {} refresh_token = None
vins = []
supported_endpoints = {}
def authorize(): cached_requests = {}
headers = {
"authorization": "Basic aDRZZjBiOlU4WWtTYlZsNnh3c2c1WVFxWmZyZ1ZtSWFEcGhPc3kxUENhVXNpY1F0bzNUUjVrd2FKc2U0QVpkZ2ZJZmNMeXc=",
"content-type": "application/x-www-form-urlencoded", def authorize():
"accept": "application/json" headers = {
} "authorization": "Basic aDRZZjBiOlU4WWtTYlZsNnh3c2c1WVFxWmZyZ1ZtSWFEcGhPc3kxUENhVXNpY1F0bzNUUjVrd2FKc2U0QVpkZ2ZJZmNMeXc=",
"content-type": "application/x-www-form-urlencoded",
body = { "accept": "application/json"
"username": settings.volvoData["username"], }
"password": settings.volvoData["password"],
"grant_type": "password", body = {
"scope": "openid email profile care_by_volvo:financial_information:invoice:read care_by_volvo:financial_information:payment_method care_by_volvo:subscription:read customer:attributes customer:attributes:write order:attributes vehicle:attributes tsp_customer_api:all conve:brake_status conve:climatization_start_stop conve:command_accessibility conve:commands conve:diagnostics_engine_status conve:diagnostics_workshop conve:doors_status conve:engine_status conve:environment conve:fuel_status conve:honk_flash conve:lock conve:lock_status conve:navigation conve:odometer_status conve:trip_statistics conve:tyre_status conve:unlock conve:vehicle_relation conve:warnings conve:windows_status energy:battery_charge_level energy:charging_connection_status energy:charging_system_status energy:electric_range energy:estimated_charging_time energy:recharge_status vehicle:attributes" "username": settings.volvoData["username"],
} "password": settings.volvoData["password"],
auth = requests.post(OAUTH_URL, data=body, headers=headers) "grant_type": "password",
if auth.status_code == 200: "scope": "openid email profile care_by_volvo:financial_information:invoice:read care_by_volvo:financial_information:payment_method care_by_volvo:subscription:read customer:attributes customer:attributes:write order:attributes vehicle:attributes tsp_customer_api:all conve:brake_status conve:climatization_start_stop conve:command_accessibility conve:commands conve:diagnostics_engine_status conve:diagnostics_workshop conve:doors_status conve:engine_status conve:environment conve:fuel_status conve:honk_flash conve:lock conve:lock_status conve:navigation conve:odometer_status conve:trip_statistics conve:tyre_status conve:unlock conve:vehicle_relation conve:warnings conve:windows_status energy:battery_charge_level energy:charging_connection_status energy:charging_system_status energy:electric_range energy:estimated_charging_time energy:recharge_status vehicle:attributes"
data = auth.json() }
session.headers.update({'authorization': "Bearer " + data["access_token"]}) auth = requests.post(OAUTH_URL, data=body, headers=headers)
if auth.status_code == 200:
global token_expires_at, refresh_token data = auth.json()
token_expires_at = datetime.now(util.TZ) + timedelta(seconds=(data["expires_in"] - 30)) session.headers.update({'authorization': "Bearer " + data["access_token"]})
refresh_token = data["refresh_token"]
global token_expires_at, refresh_token
get_vehicles() token_expires_at = datetime.now(util.TZ) + timedelta(seconds=(data["expires_in"] - 30))
check_supported_endpoints() refresh_token = data["refresh_token"]
else:
message = auth.json() get_vehicles()
raise Exception(message["error_description"]) check_supported_endpoints()
else:
message = auth.json()
def refresh_auth(): raise Exception(message["error_description"])
print("Refreshing credentials")
global refresh_token
headers = { def refresh_auth():
"authorization": "Basic aDRZZjBiOlU4WWtTYlZsNnh3c2c1WVFxWmZyZ1ZtSWFEcGhPc3kxUENhVXNpY1F0bzNUUjVrd2FKc2U0QVpkZ2ZJZmNMeXc=", logging.info("Refreshing credentials")
"content-type": "application/x-www-form-urlencoded", global refresh_token
"accept": "application/json" headers = {
} "authorization": "Basic aDRZZjBiOlU4WWtTYlZsNnh3c2c1WVFxWmZyZ1ZtSWFEcGhPc3kxUENhVXNpY1F0bzNUUjVrd2FKc2U0QVpkZ2ZJZmNMeXc=",
"content-type": "application/x-www-form-urlencoded",
body = { "accept": "application/json"
"grant_type": "refresh_token", }
"refresh_token": refresh_token
} body = {
auth = requests.post(OAUTH_URL, data=body, headers=headers) "grant_type": "refresh_token",
if auth.status_code == 200: "refresh_token": refresh_token
data = auth.json() }
session.headers.update({'authorization': "Bearer " + data["access_token"]})
try:
global token_expires_at auth = requests.post(OAUTH_URL, data=body, headers=headers)
token_expires_at = datetime.now(util.TZ) + timedelta(seconds=(data["expires_in"] - 30)) except requests.exceptions.RequestException as e:
refresh_token = data["refresh_token"] logging.error("Error refreshing credentials data: " + str(e))
return None
def get_vehicles(): if auth.status_code == 200:
global vins data = auth.json()
if not settings.volvoData["vin"]: session.headers.update({'authorization': "Bearer " + data["access_token"]})
vehicles = session.get(VEHICLES_URL)
if vehicles.status_code == 200: global token_expires_at
data = vehicles.json() token_expires_at = datetime.now(util.TZ) + timedelta(seconds=(data["expires_in"] - 30))
if len(data["data"]) > 0: refresh_token = data["refresh_token"]
for vehicle in data["data"]:
vins.append(vehicle["vin"])
else: def get_vehicles():
raise Exception("No vehicle in account " + settings.volvoData["username"] + " found.") global vins
else: if not settings.volvoData["vin"]:
raise Exception("Error getting vehicles: " + str(vehicles.status_code)) vehicles = session.get(VEHICLES_URL)
else: if vehicles.status_code == 200:
if isinstance(settings.volvoData["vin"], list): data = vehicles.json()
# If setting is a list, copy if len(data["data"]) > 0:
vins = settings.volvoData["vin"] for vehicle in data["data"]:
else: vins.append(vehicle["vin"])
# If setting is a string, append to list else:
vins.append(settings.volvoData["vin"]) raise Exception("No vehicle in account " + settings.volvoData["username"] + " found.")
else:
if len(vins) == 0: error = vehicles.json()
raise Exception("No vehicle found, exiting application!") raise Exception(
else: "Error getting vehicles: " + str(vehicles.status_code) + ". " + str(error["error"].get("message")))
initialize_climate(vins) else:
print("Vin: " + str(vins) + " found!") if isinstance(settings.volvoData["vin"], list):
# If setting is a list, copy
vins = settings.volvoData["vin"]
def get_vehicle_details(vin): else:
response = session.get(VEHICLE_DETAILS_URL.format(vin), timeout=15) # If setting is a string, append to list
if response.status_code == 200: vins.append(settings.volvoData["vin"])
data = response.json()["data"]
if "debug" in settings: if len(vins) == 0:
if settings["debug"]: raise Exception("No vehicle found, exiting application!")
print(response.text) else:
device = { initialize_climate(vins)
"identifiers": [f"volvoAAOS2mqtt_{vin}"], logging.info("Vin: " + str(vins) + " found!")
"manufacturer": "Volvo",
"model": data['descriptions']['model'],
"name": f"{data['descriptions']['model']} ({data['modelYear']}) - {vin}", def get_vehicle_details(vin):
} response = session.get(VEHICLE_DETAILS_URL.format(vin), timeout=15)
elif response.status_code == 500 and not settings.volvoData["vin"]: if response.status_code == 200:
# Workaround for some cars that are not returning vehicle details data = response.json()["data"]
device = { logging.debug(response.text)
"identifiers": [f"volvoAAOS2mqtt_{vin}"], device = {
"manufacturer": "Volvo", "identifiers": [f"volvoAAOS2mqtt_{vin}"],
"model": vin, "manufacturer": "Volvo",
"name": f"Volvo - {vin}", "model": data['descriptions']['model'],
} "name": f"{data['descriptions']['model']} ({data['modelYear']}) - {vin}",
else: }
raise Exception("Getting vehicle details failed. Status Code: " + str(response.status_code) + elif response.status_code == 500 and not settings.volvoData["vin"]:
". Error: " + response.text) # Workaround for some cars that are not returning vehicle details
device = {
return device "identifiers": [f"volvoAAOS2mqtt_{vin}"],
"manufacturer": "Volvo",
"model": vin,
def check_supported_endpoints(): "name": f"Volvo - {vin}",
global supported_endpoints }
for vin in vins: else:
supported_endpoints[vin] = [] raise Exception("Getting vehicle details failed. Status Code: " + str(response.status_code) +
for entity in supported_entities: ". Error: " + response.text)
if entity["id"] == "battery_charge_level" and entity["url"] == BATTERY_CHARGE_STATE_URL \
and any("battery_charge_level" in d["id"] for d in supported_endpoints[vin]): return device
# If battery charge level could be found in recharge-api, skip the second battery charge sensor
continue
def check_supported_endpoints():
if entity.get('url'): global supported_endpoints
state = api_call(entity["url"], "GET", vin, entity["id"]) for vin in vins:
else: supported_endpoints[vin] = []
state = "" for entity in supported_entities:
if entity["id"] == "battery_charge_level" and entity["url"] == BATTERY_CHARGE_STATE_URL \
if state is not None: and any("battery_charge_level" in d["id"] for d in supported_endpoints[vin]):
print("Success! " + entity["name"] + " is supported by your vehicle.") # If battery charge level could be found in recharge-api, skip the second battery charge sensor
supported_endpoints[vin].append(entity) continue
else:
print("Failed, " + entity["name"] + " is unfortunately not supported by your vehicle.") if entity.get('url'):
state = api_call(entity["url"], "GET", vin, entity["id"])
else:
def initialize_climate(vins): state = ""
for vin in vins:
mqtt.assumed_climate_state[vin] = "OFF" if state is not None:
logging.info("Success! " + entity["name"] + " is supported by your vehicle.")
supported_endpoints[vin].append(entity)
def disable_climate(vin): else:
print("Turning climate off by timer!") logging.info("Failed, " + entity["name"] + " is unfortunately not supported by your vehicle.")
mqtt.assumed_climate_state[vin] = "OFF"
mqtt.update_car_data()
def initialize_climate(vins):
for vin in vins:
def api_call(url, method, vin, sensor_id=None, force_update=False): mqtt.assumed_climate_state[vin] = "OFF"
global token_expires_at
if datetime.now(util.TZ) >= token_expires_at:
refresh_auth() def disable_climate(vin):
logging.info("Turning climate off by timer!")
if url in [RECHARGE_STATE_URL, WINDOWS_STATE_URL, LOCK_STATE_URL, TYRE_STATE_URL, STATISTICS_URL]: mqtt.door_status[vin].do_run = False
# Minimize API calls for endpoints with multiple values mqtt.assumed_climate_state[vin] = "OFF"
response = cached_request(url, method, vin, force_update) mqtt.update_car_data()
if response is None:
# Exception caught while getting data from volvo api, doing nothing
return None def check_door_status(vin):
elif method == "GET": t = currentThread()
print("Starting " + method + " call against " + url) while getattr(t, "do_run", True):
try: lock_door_left = api_call(LOCK_STATE_URL, "GET", vin, "door_front_left", True)
response = session.get(url.format(vin), timeout=15) lock_door_right = api_call(LOCK_STATE_URL, "GET", vin, "door_front_right", True)
except requests.exceptions.RequestException as e: if lock_door_left == "ON" or lock_door_right == "ON":
print("Error getting data: " + str(e)) Thread(target=api_call, args=(CLIMATE_STOP_URL, "POST", vin)).start()
return "" mqtt.assumed_climate_state[vin] = "OFF"
elif method == "POST": mqtt.update_car_data()
print("Starting " + method + " call against " + url) break
try: time.sleep(5)
response = session.post(url.format(vin), timeout=20)
except requests.exceptions.RequestException as e:
print("Error getting data: " + str(e)) def api_call(url, method, vin, sensor_id=None, force_update=False):
return "" global token_expires_at
else: if datetime.now(util.TZ) >= token_expires_at:
print("Unkown method posted: " + method + ". Returning nothing") refresh_auth()
return ""
if url in [RECHARGE_STATE_URL, WINDOWS_STATE_URL, LOCK_STATE_URL, TYRE_STATE_URL, STATISTICS_URL]:
if response.status_code == 200: # Minimize API calls for endpoints with multiple values
data = response.json() response = cached_request(url, method, vin, force_update)
if "debug" in settings: if response is None:
if settings["debug"]: # Exception caught while getting data from volvo api, doing nothing
print(response.text) return None
else: elif method == "GET":
if url == CLIMATE_START_URL and response.status_code == 503: logging.debug("Starting " + method + " call against " + url)
print("Car in use, cannot start pre climatization") try:
mqtt.assumed_climate_state[vin] = "OFF" response = session.get(url.format(vin), timeout=15)
mqtt.update_car_data() except requests.exceptions.RequestException as e:
else: logging.error("Error getting data: " + str(e))
print("API Call failed. Status Code: " + str(response.status_code) + ". Error: " + response.text) return None
return "" elif method == "POST":
return parse_api_data(data, sensor_id) logging.debug("Starting " + method + " call against " + url)
try:
response = session.post(url.format(vin), timeout=20)
def cached_request(url, method, vin, force_update=False): except requests.exceptions.RequestException as e:
global cached_requests logging.error("Error getting data: " + str(e))
if not util.keys_exists(cached_requests, vin + "_" + url): return None
# No API Data cached, get fresh data from API else:
print("Starting " + method + " call against " + url) logging.error("Unkown method posted: " + method + ". Returning nothing")
try: return None
response = session.get(url.format(vin), timeout=15)
except requests.exceptions.RequestException as e: logging.debug("Response status code: " + str(response.status_code))
print("Error getting data: " + str(e)) if response.status_code == 200:
return None data = response.json()
logging.debug(response.text)
data = {"response": response, "last_update": datetime.now(util.TZ)} else:
cached_requests[vin + "_" + url] = data logging.debug(response.text)
else: if url == CLIMATE_START_URL and response.status_code == 503:
if (datetime.now(util.TZ) - cached_requests[vin + "_" + url]["last_update"]).total_seconds() >= settings["updateInterval"] \ logging.warning("Car in use, cannot start pre climatization")
or (force_update and (datetime.now(util.TZ) - cached_requests[vin + "_" + url]["last_update"]).total_seconds() >= 2): mqtt.assumed_climate_state[vin] = "OFF"
# Old Data in Cache, or force mode active, updating mqtt.update_car_data()
print("Starting " + method + " call against " + url) elif "extended-vehicle" in url and response.status_code == 403:
try: # Suppress 403 errors for unsupported extended-vehicle api cars
response = session.get(url.format(vin), timeout=15) logging.debug("Suppressed 403 for extended-vehicle API")
except requests.exceptions.RequestException as e: return None
print("Error getting data: " + str(e)) else:
return None logging.error("API Call failed. Status Code: " + str(response.status_code) + ". Error: " + response.text)
data = {"response": response, "last_update": datetime.now(util.TZ)} return None
cached_requests[vin + "_" + url] = data return parse_api_data(data, sensor_id)
else:
# Data is up do date, returning cached data
response = cached_requests[vin + "_" + url]["response"] def cached_request(url, method, vin, force_update=False):
return response global cached_requests
if not util.keys_exists(cached_requests, vin + "_" + url):
# No API Data cached, get fresh data from API
def parse_api_data(data, sensor_id=None): logging.debug("Starting " + method + " call against " + url)
data = data["data"] try:
if sensor_id == "battery_charge_level": response = session.get(url.format(vin), timeout=15)
return data["batteryChargeLevel"]["value"] if util.keys_exists(data, "batteryChargeLevel") else None except requests.exceptions.RequestException as e:
elif sensor_id == "electric_range": logging.error("Error getting data: " + str(e))
return data["electricRange"]["value"] if util.keys_exists(data, "electricRange") else None return None
elif sensor_id == "charging_system_status":
return charging_system_states[data["chargingSystemStatus"]["value"]] if util.keys_exists(data, data = {"response": response, "last_update": datetime.now(util.TZ)}
"chargingSystemStatus") else None cached_requests[vin + "_" + url] = data
elif sensor_id == "charging_connection_status": else:
return charging_connection_states[data["chargingConnectionStatus"]["value"]] if util.keys_exists(data, if (datetime.now(util.TZ) - cached_requests[vin + "_" + url]["last_update"]).total_seconds() \
"chargingConnectionStatus") else None >= settings["updateInterval"] or (force_update and
elif sensor_id == "estimated_charging_time": (datetime.now(util.TZ) - cached_requests[vin + "_" + url]
if util.keys_exists(data, "chargingSystemStatus"): ["last_update"]).total_seconds() >= 2):
charging_system_state = charging_system_states[data["chargingSystemStatus"]["value"]] # Old Data in Cache, or force mode active, updating
if charging_system_state == "Charging": logging.debug("Starting " + method + " call against " + url)
return data["estimatedChargingTime"]["value"] if util.keys_exists(data, "estimatedChargingTime") else "" try:
else: response = session.get(url.format(vin), timeout=15)
return 0 except requests.exceptions.RequestException as e:
else: logging.error("Error getting data: " + str(e))
return None return None
elif sensor_id == "estimated_charging_finish_time": data = {"response": response, "last_update": datetime.now(util.TZ)}
if util.keys_exists(data, "chargingSystemStatus"): cached_requests[vin + "_" + url] = data
charging_system_state = charging_system_states[data["chargingSystemStatus"]["value"]] else:
if charging_system_state == "Charging": # Data is up do date, returning cached data
charging_time = int(data["estimatedChargingTime"]["value"] if util.keys_exists(data, "estimatedChargingTime") response = cached_requests[vin + "_" + url]["response"]
else 0) return response
charging_finished = datetime.now(util.TZ) + timedelta(minutes=charging_time)
return format_datetime(charging_finished, format="medium", locale=settings["babelLocale"])
else: def parse_api_data(data, sensor_id=None):
return "" data = data["data"]
else: if sensor_id == "battery_charge_level":
return None return data["batteryChargeLevel"]["value"] if util.keys_exists(data, "batteryChargeLevel") else None
elif sensor_id == "lock_status": elif sensor_id == "electric_range":
return data["carLocked"]["value"] if util.keys_exists(data, "carLocked") else None return util.convert_metric_values(data["electricRange"]["value"]) \
elif sensor_id == "odometer": if util.keys_exists(data, "electricRange") else None
multiplier = 1 elif sensor_id == "charging_system_status":
if util.keys_exists(settings["volvoData"], "odometerMultiplier"): return charging_system_states[data["chargingSystemStatus"]["value"]] \
multiplier = settings["volvoData"]["odometerMultiplier"] if util.keys_exists(data, "chargingSystemStatus") else None
if isinstance(multiplier, str): elif sensor_id == "charging_connection_status":
multiplier = 1 return charging_connection_states[data["chargingConnectionStatus"]["value"]] \
elif multiplier < 1: if util.keys_exists(data, "chargingConnectionStatus") else None
multiplier = 1 elif sensor_id == "estimated_charging_time":
return int(data["odometer"]["value"]) * multiplier if util.keys_exists(data, "odometer") else None if util.keys_exists(data, "chargingSystemStatus"):
elif sensor_id == "window_front_left": charging_system_state = charging_system_states[data["chargingSystemStatus"]["value"]]
return window_states[data["frontLeftWindowOpen"]["value"]] if util.keys_exists(data, "frontLeftWindowOpen") \ if charging_system_state == "Charging":
else None return data["estimatedChargingTime"]["value"] if util.keys_exists(data, "estimatedChargingTime") else ""
elif sensor_id == "window_front_right": else:
return window_states[data["frontRightWindowOpen"]["value"]] if util.keys_exists(data, "frontRightWindowOpen") \ return 0
else None return None
elif sensor_id == "window_rear_left": elif sensor_id == "estimated_charging_finish_time":
return window_states[data["rearLeftWindowOpen"]["value"]] if util.keys_exists(data, "rearLeftWindowOpen") \ if util.keys_exists(data, "chargingSystemStatus"):
else None charging_system_state = charging_system_states[data["chargingSystemStatus"]["value"]]
elif sensor_id == "window_rear_right": if charging_system_state == "Charging":
return window_states[data["rearRightWindowOpen"]["value"]] if util.keys_exists(data, "rearRightWindowOpen") \ charging_time = int(
else None data["estimatedChargingTime"]["value"] if util.keys_exists(data, "estimatedChargingTime")
elif sensor_id == "door_front_left": else 0)
return door_states[data["frontLeftDoorOpen"]["value"]] if util.keys_exists(data, "frontLeftDoorOpen") else None charging_finished = datetime.now(util.TZ) + timedelta(minutes=charging_time)
elif sensor_id == "door_front_right": return format_datetime(charging_finished, format="medium", locale=settings["babelLocale"])
return door_states[data["frontRightDoorOpen"]["value"]] if util.keys_exists(data, "frontRightDoorOpen") else None else:
elif sensor_id == "door_rear_left": return ""
return door_states[data["rearLeftDoorOpen"]["value"]] if util.keys_exists(data, "rearLeftDoorOpen") else None return None
elif sensor_id == "door_rear_right": elif sensor_id == "lock_status":
return door_states[data["rearRightDoorOpen"]["value"]] if util.keys_exists(data, "rearRightDoorOpen") else None return data["carLocked"]["value"] if util.keys_exists(data, "carLocked") else None
elif sensor_id == "tailgate": elif sensor_id == "odometer":
return door_states[data["tailGateOpen"]["value"]] if util.keys_exists(data, "tailGateOpen") else None multiplier = 1
elif sensor_id == "sunroof": if util.keys_exists(settings["volvoData"], "odometerMultiplier"):
return door_states[data["sunRoofOpen"]["value"]] if util.keys_exists(data, "sunRoofOpen") else None multiplier = settings["volvoData"]["odometerMultiplier"]
elif sensor_id == "engine_hood": if isinstance(multiplier, str):
return door_states[data["hoodOpen"]["value"]] if util.keys_exists(data, "hoodOpen") else None multiplier = 1
elif sensor_id == "tank_lid": elif multiplier < 1:
return door_states[data["tankLidOpen"]["value"]] if util.keys_exists(data, "tankLidOpen") else None multiplier = 1
elif sensor_id == "tyre_front_left": return util.convert_metric_values(int(data["odometer"]["value"]) * multiplier) \
return data["frontLeftTyrePressure"]["value"] if util.keys_exists(data, "frontLeftTyrePressure") else None if util.keys_exists(data, "odometer") else None
elif sensor_id == "tyre_front_right": elif sensor_id == "window_front_left":
return data["frontRightTyrePressure"]["value"] if util.keys_exists(data, "frontRightTyrePressure") else None return window_states[data["frontLeftWindowOpen"]["value"]] if util.keys_exists(data, "frontLeftWindowOpen") \
elif sensor_id == "tyre_rear_left": else None
return data["rearLeftTyrePressure"]["value"] if util.keys_exists(data, "rearLeftTyrePressure") else None elif sensor_id == "window_front_right":
elif sensor_id == "tyre_rear_right": return window_states[data["frontRightWindowOpen"]["value"]] if util.keys_exists(data, "frontRightWindowOpen") \
return data["rearRightTyrePressure"]["value"] if util.keys_exists(data, "rearRightTyrePressure") else None else None
elif sensor_id == "engine_state": elif sensor_id == "window_rear_left":
return data["engineRunning"]["value"] if util.keys_exists(data, "engineRunning") else None return window_states[data["rearLeftWindowOpen"]["value"]] if util.keys_exists(data, "rearLeftWindowOpen") \
elif sensor_id == "fuel_level": else None
if util.keys_exists(data, "fuelAmount"): elif sensor_id == "window_rear_right":
fuel_amount = int(data["fuelAmount"]["value"]) return window_states[data["rearRightWindowOpen"]["value"]] if util.keys_exists(data, "rearRightWindowOpen") \
if fuel_amount > 0: else None
return fuel_amount elif sensor_id == "door_front_left":
else: return door_states[data["frontLeftDoorOpen"]["value"]] if util.keys_exists(data, "frontLeftDoorOpen") else None
return None elif sensor_id == "door_front_right":
else: return door_states[data["frontRightDoorOpen"]["value"]] \
return None if util.keys_exists(data, "frontRightDoorOpen") else None
elif sensor_id == "average_fuel_consumption": elif sensor_id == "door_rear_left":
if util.keys_exists(data, "averageFuelConsumption"): return door_states[data["rearLeftDoorOpen"]["value"]] if util.keys_exists(data, "rearLeftDoorOpen") else None
average_fuel_con = float(data["averageFuelConsumption"]["value"]) elif sensor_id == "door_rear_right":
if average_fuel_con > 0: return door_states[data["rearRightDoorOpen"]["value"]] if util.keys_exists(data, "rearRightDoorOpen") else None
multiplier = 1 elif sensor_id == "tailgate":
if util.keys_exists(settings["volvoData"], "averageFuelConsumptionMultiplier"): return door_states[data["tailGateOpen"]["value"]] if util.keys_exists(data, "tailGateOpen") else None
multiplier = settings["volvoData"]["averageFuelConsumptionMultiplier"] elif sensor_id == "sunroof":
if isinstance(multiplier, str): return door_states[data["sunRoofOpen"]["value"]] if util.keys_exists(data, "sunRoofOpen") else None
multiplier = 1 elif sensor_id == "engine_hood":
elif multiplier < 1: return door_states[data["hoodOpen"]["value"]] if util.keys_exists(data, "hoodOpen") else None
multiplier = 1 elif sensor_id == "tank_lid":
return average_fuel_con * multiplier return door_states[data["tankLidOpen"]["value"]] if util.keys_exists(data, "tankLidOpen") else None
else: elif sensor_id == "tyre_front_left":
return None return data["frontLeftTyrePressure"]["value"] if util.keys_exists(data, "frontLeftTyrePressure") else None
else: elif sensor_id == "tyre_front_right":
return None return data["frontRightTyrePressure"]["value"] if util.keys_exists(data, "frontRightTyrePressure") else None
elif sensor_id == "average_speed": elif sensor_id == "tyre_rear_left":
if util.keys_exists(data, "averageSpeed"): return data["rearLeftTyrePressure"]["value"] if util.keys_exists(data, "rearLeftTyrePressure") else None
average_speed = int(data["averageSpeed"]["value"]) elif sensor_id == "tyre_rear_right":
if average_speed > 1: return data["rearRightTyrePressure"]["value"] if util.keys_exists(data, "rearRightTyrePressure") else None
divider = 1 elif sensor_id == "engine_state":
if util.keys_exists(settings["volvoData"], "averageSpeedDivider"): return data["engineRunning"]["value"] if util.keys_exists(data, "engineRunning") else None
divider = settings["volvoData"]["averageSpeedDivider"] elif sensor_id == "fuel_level":
if isinstance(divider, str): if util.keys_exists(data, "fuelAmount"):
divider = 1 fuel_amount = int(data["fuelAmount"]["value"])
elif divider < 1: if fuel_amount > 0:
divider = 1 return fuel_amount
return average_speed / divider return None
else: elif sensor_id == "average_fuel_consumption":
return None if util.keys_exists(data, "averageFuelConsumption"):
else: average_fuel_con = float(data["averageFuelConsumption"]["value"])
return None if average_fuel_con > 0:
elif sensor_id == "location": multiplier = 1
coordinates = {} if util.keys_exists(settings["volvoData"], "averageFuelConsumptionMultiplier"):
if util.keys_exists(data, "geometry"): multiplier = settings["volvoData"]["averageFuelConsumptionMultiplier"]
raw_data = data["geometry"] if isinstance(multiplier, str):
if util.keys_exists(raw_data, "coordinates"): multiplier = 1
coordinates = {"longitude": raw_data["coordinates"][0], elif multiplier < 1:
"latitude": raw_data["coordinates"][1], multiplier = 1
"gps_accuracy": 1} return average_fuel_con * multiplier
return coordinates return None
else: elif sensor_id == "average_speed":
return None if util.keys_exists(data, "averageSpeed"):
average_speed = int(data["averageSpeed"]["value"])
if average_speed > 1:
divider = 1
if util.keys_exists(settings["volvoData"], "averageSpeedDivider"):
divider = settings["volvoData"]["averageSpeedDivider"]
if isinstance(divider, str):
divider = 1
elif divider < 1:
divider = 1
return util.convert_metric_values(average_speed / divider)
return None
elif sensor_id == "location":
coordinates = {}
if util.keys_exists(data, "geometry"):
raw_data = data["geometry"]
if util.keys_exists(raw_data, "coordinates"):
coordinates = {"longitude": raw_data["coordinates"][0],
"latitude": raw_data["coordinates"][1],
"gps_accuracy": 1}
return coordinates
elif sensor_id == "distance_to_empty":
if util.keys_exists(data, "distanceToEmpty"):
distance_to_empty = int(data["distanceToEmpty"]["value"])
if distance_to_empty > 0:
return util.convert_metric_values(data["distanceToEmpty"]["value"])
return None
else:
return None