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15 Commits
8 changed files with 301 additions and 245 deletions
+30
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@@ -0,0 +1,30 @@
---
name: Bug report
about: Create a report to help us improve
title: ''
labels: ''
assignees: Dielee
---
**Describe the bug**
A clear and concise description of what the bug is.
**To Reproduce**
Steps to reproduce the behavior:
1. Go to '...'
2. Click on '....'
3. Scroll down to '....'
4. See error
**Expected behavior**
A clear and concise description of what you expected to happen.
**Screenshots**
If applicable, add screenshots to help explain your problem.
**Version info**
The version you are using and the method you are using (Docker container/HA Addon/Cloned repo)
**Additional context**
Add any other context about the problem here.
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@@ -0,0 +1,20 @@
---
name: Feature request
about: Suggest an idea for this project
title: ''
labels: ''
assignees: ''
---
**Is your feature request related to a problem? Please describe.**
A clear and concise description of what the problem is. Ex. I'm always frustrated when [...]
**Describe the solution you'd like**
A clear and concise description of what you want to happen.
**Describe alternatives you've considered**
A clear and concise description of any alternative solutions or features you've considered.
**Additional context**
Add any other context or screenshots about the feature request here.
+3 -1
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@@ -10,6 +10,8 @@ Maybe this component works also with other Volvo cars. Please try out the native
- C40 PHEV (2022)
- XC90 T8 PHEV (2023)
- XC60 PHEV (2023)
- XC60 PHEV (2022)
- V90 PHEV T8 (2019)
Please let me know if your car works with this addon so I can expand the list!
@@ -30,7 +32,7 @@ NOTE: Energy status currently available only for cars in the Europe / Middle Eas
Just install this addon with the following command.
Please note to fill in your settings inside the environment variables.
`docker run --pull=always -e CONF_updateInterval=300 -e CONF_babelLocale='de' -e CONF_mqtt='@json {"broker": "", "username": "", "password": ""}' -e CONF_volvoData='@json {"username": "", "password": "", "vin": "", "vccapikey": ""}' -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": ""}' -e CONF_volvoData='@json {"username": "", "password": "", "vin": "", "vccapikey": ""}' -e TZ='Europe/Berlin' --name volvo2mqtt ghcr.io/dielee/volvo2mqtt:latest`
<b>HA Add-On:</b><br>
+1 -1
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@@ -1,6 +1,6 @@
name: "Volvo2Mqtt"
description: "Volvo AAOS MQTT bridge"
version: "1.2.1"
version: "1.3.1"
slug: "volvo2mqtt"
init: false
url: "https://github.com/Dielee/volvo2mqtt"
+38 -35
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@@ -1,6 +1,6 @@
from config import settings
VERSION = "v1.2.1"
VERSION = "v1.3.1"
OAUTH_URL = "https://volvoid.eu.volvocars.com/as/token.oauth2"
VEHICLES_URL = "https://api.volvocars.com/connected-vehicle/v1/vehicles"
@@ -14,43 +14,46 @@ CAR_UNLOCK_URL = "https://api.volvocars.com/connected-vehicle/v2/vehicles/{0}/co
RECHARGE_STATE_URL = "https://api.volvocars.com/energy/v1/vehicles/{0}/recharge-status"
ODOMETER_STATE_URL = "https://api.volvocars.com/connected-vehicle/v2/vehicles/{0}/odometer"
LOCATION_STATE_URL = "https://api.volvocars.com/location/v1/vehicles/{0}/location"
TYRE_STATE_URL = "https://api.volvocars.com/connected-vehicle/v2/vehicles/{0}/tyres"
ENGINE_STATE_URL = "https://api.volvocars.com/connected-vehicle/v2/vehicles/{0}/engine-status"
BATTERY_CHARGE_STATE_URL = "https://api.volvocars.com/connected-vehicle/v2/vehicles/{0}/battery-charge-level"
FUEL_STATE_URL = "https://api.volvocars.com/connected-vehicle/v2/vehicles/{0}/fuel"
charging_system_states = {"CHARGING_SYSTEM_CHARGING": "Charging", "CHARGING_SYSTEM_IDLE": "Idle",
"CHARGING_SYSTEM_FAULT": "Fault", "CHARGING_SYSTEM_UNSPECIFIED": "Unspecified"}
supported_sensors = [
{"name": "Battery Charge Level", "id": "battery_charge_level", "unit": "%", "icon": "car-battery", "url": RECHARGE_STATE_URL},
{"name": "Electric Range", "id": "electric_range", "unit": "km" if settings["babelLocale"] != "en_US" else "mi", "icon": "map-marker-distance", "url": RECHARGE_STATE_URL},
{"name": "Estimated Charging Time", "id": "estimated_charging_time", "unit": "minutes", "icon": "timer-sync-outline", "url": RECHARGE_STATE_URL},
{"name": "Charging System Status", "id": "charging_system_status", "icon": "ev-plug-ccs2", "url": RECHARGE_STATE_URL},
{"name": "Estimated Charging Finish Time", "id": "estimated_charging_finish_time", "icon": "timer-sync-outline", "url": RECHARGE_STATE_URL},
{"name": "Odometer", "id": "odometer", "unit": "km" if settings["babelLocale"] != "en_US" else "mi", "icon": "counter", "url": ODOMETER_STATE_URL},
{"name": "Last Data Update", "id": "last_data_update", "icon": "timer", "url": ""},
{"name": "Window Front Left", "id": "window_front_left", "icon": "car-door-lock", "url": WINDOWS_STATE_URL},
{"name": "Window Front Right", "id": "window_front_right", "icon": "car-door-lock", "url": WINDOWS_STATE_URL},
{"name": "Window Rear Left", "id": "window_rear_left", "icon": "car-door-lock", "url": WINDOWS_STATE_URL},
{"name": "Window Rear Right", "id": "window_rear_right", "icon": "car-door-lock", "url": WINDOWS_STATE_URL},
{"name": "Door Front Left", "id": "door_front_left", "icon": "car-door-lock", "url": LOCK_STATE_URL},
{"name": "Door Front Right", "id": "door_front_right", "icon": "car-door-lock", "url": LOCK_STATE_URL},
{"name": "Door Rear Left", "id": "door_rear_left", "icon": "car-door-lock", "url": LOCK_STATE_URL},
{"name": "Door Rear Right", "id": "door_rear_right", "icon": "car-door-lock", "url": LOCK_STATE_URL},
{"name": "Tailgate", "id": "tailgate", "icon": "car-door-lock", "url": LOCK_STATE_URL},
{"name": "Engine Hood", "id": "engine_hood", "icon": "car-door-lock", "url": LOCK_STATE_URL},
{"name": "Tank Lid", "id": "tank_lid", "icon": "car-door-lock", "url": LOCK_STATE_URL}
]
charging_connection_states = {"CONNECTION_STATUS_DISCONNECTED": "Disconnected", "CONNECTION_STATUS_UNSPECIFIED": "Unspecified",
"CONNECTION_STATUS_CONNECTED_DC": "Connected DC", "CONNECTION_STATUS_CONNECTED_AC": "Connected AC"}
supported_switches = [
{"name": "Air Conditioning", "id": "climate_status", "icon": "air-conditioner"},
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": 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": "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 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": "Odometer", "domain": "sensor", "id": "odometer", "unit": "km" if settings["babelLocale"] != "en_US" else "mi", "icon": "counter", "url": ODOMETER_STATE_URL},
{"name": "Last Data Update", "domain": "sensor", "id": "last_data_update", "icon": "timer", "url": ""},
{"name": "Window Front Left", "domain": "sensor", "id": "window_front_left", "icon": "car-door-lock", "url": WINDOWS_STATE_URL},
{"name": "Window Front Right", "domain": "sensor", "id": "window_front_right", "icon": "car-door-lock", "url": WINDOWS_STATE_URL},
{"name": "Window Rear Left", "domain": "sensor", "id": "window_rear_left", "icon": "car-door-lock", "url": WINDOWS_STATE_URL},
{"name": "Window Rear Right", "domain": "sensor", "id": "window_rear_right", "icon": "car-door-lock", "url": WINDOWS_STATE_URL},
{"name": "Door Front Left", "domain": "sensor", "id": "door_front_left", "icon": "car-door-lock", "url": LOCK_STATE_URL},
{"name": "Door Front Right", "domain": "sensor", "id": "door_front_right", "icon": "car-door-lock", "url": LOCK_STATE_URL},
{"name": "Door Rear Left", "domain": "sensor", "id": "door_rear_left", "icon": "car-door-lock", "url": LOCK_STATE_URL},
{"name": "Door Rear Right", "domain": "sensor", "id": "door_rear_right", "icon": "car-door-lock", "url": LOCK_STATE_URL},
{"name": "Tailgate", "domain": "sensor", "id": "tailgate", "icon": "car-door-lock", "url": LOCK_STATE_URL},
{"name": "Engine Hood", "domain": "sensor", "id": "engine_hood", "icon": "car-door-lock", "url": LOCK_STATE_URL},
{"name": "Tank Lid", "domain": "sensor", "id": "tank_lid", "icon": "car-door-lock", "url": LOCK_STATE_URL},
{"name": "Air Conditioning", "domain": "switch", "id": "climate_status", "icon": "air-conditioner"},
{"name": "Lock state", "domain": "lock", "id": "lock_status", "icon": "lock", "url": LOCK_STATE_URL},
{"name": "Force Update Data", "domain": "button", "id": "update_data", "icon": "update", "url": ""},
{"name": "Location", "domain": "device_tracker", "id": "location", "icon": "map-marker-radius", "url": LOCATION_STATE_URL},
{"name": "Tire Front Left", "domain": "sensor", "id": "tyre_front_left", "icon": "car-tire-alert", "url": TYRE_STATE_URL},
{"name": "Tire Front Right", "domain": "sensor", "id": "tyre_front_right", "icon": "car-tire-alert", "url": TYRE_STATE_URL},
{"name": "Tire Rear Left", "domain": "sensor", "id": "tyre_rear_left", "icon": "car-tire-alert", "url": TYRE_STATE_URL},
{"name": "Tire Rear Right", "domain": "sensor", "id": "tyre_rear_right", "icon": "car-tire-alert", "url": TYRE_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}
]
supported_locks = [
{"name": "Lock state", "id": "lock_status", "icon": "lock", "url": LOCK_STATE_URL}
]
supported_buttons = [
{"name": "Force Update Data", "id": "update_data", "icon": "update", "url": ""}
]
supported_device_trackers = [
{"name": "Location", "id": "location", "icon": "map-marker-radius", "url": LOCATION_STATE_URL}
]
+66 -144
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@@ -7,9 +7,7 @@ from datetime import datetime
from babel.dates import format_datetime
from config import settings
from const import CLIMATE_START_URL, CLIMATE_STOP_URL, CAR_LOCK_URL, \
CAR_UNLOCK_URL, supported_sensors, supported_buttons, supported_switches, \
supported_locks, supported_device_trackers
CAR_UNLOCK_URL
mqtt_client: mqtt.Client
@@ -44,37 +42,41 @@ def on_disconnect(client, userdata, rc):
def on_message(client, userdata, msg):
if msg.topic in subscribed_topics:
try:
vin = msg.topic.split('/')[2].split('_')[0]
payload = msg.payload.decode("UTF-8")
if "climate_status" in msg.topic:
global assumed_climate_state, climate_timer
if payload == "ON":
api_thread = Thread(target=volvo.api_call, args=(CLIMATE_START_URL, "POST", vin))
api_thread.start()
assumed_climate_state[vin] = "ON"
# Starting timer to disable climate after 30 mins
climate_timer = Timer(1 * 60, volvo.disable_climate, (vin, ))
climate_timer.start()
update_car_data()
elif payload == "OFF":
api_thread = Thread(target=volvo.api_call, args=(CLIMATE_STOP_URL, "POST", vin))
api_thread.start()
assumed_climate_state[vin] = "OFF"
# Stop timer if active
if climate_timer.is_alive():
climate_timer.cancel()
update_car_data()
elif "lock_status" in msg.topic:
if payload == "LOCK":
volvo.api_call(CAR_LOCK_URL, "POST", vin)
update_car_data()
elif payload == "UNLOCK":
volvo.api_call(CAR_UNLOCK_URL, "POST", vin)
update_car_data()
elif "update_data" in msg.topic:
if payload == "PRESS":
update_car_data(True)
except IndexError:
print("Error - Cannot get vin from MQTT topic!")
return None
payload = msg.payload.decode("UTF-8")
if "climate_status" in msg.topic:
global assumed_climate_state, climate_timer
if payload == "ON":
api_thread = Thread(target=volvo.api_call, args=(CLIMATE_START_URL, "POST", vin))
api_thread.start()
assumed_climate_state[vin] = "ON"
# Starting timer to disable climate after 30 mins
climate_timer = Timer(1 * 60, volvo.disable_climate, (vin, ))
climate_timer.start()
update_car_data()
elif payload == "OFF":
api_thread = Thread(target=volvo.api_call, args=(CLIMATE_STOP_URL, "POST", vin))
api_thread.start()
assumed_climate_state[vin] = "OFF"
# Stop timer if active
if climate_timer.is_alive():
climate_timer.cancel()
update_car_data()
elif "lock_status" in msg.topic:
if payload == "LOCK":
volvo.api_call(CAR_LOCK_URL, "POST", vin)
update_car_data()
elif payload == "UNLOCK":
volvo.api_call(CAR_UNLOCK_URL, "POST", vin)
update_car_data()
elif "update_data" in msg.topic:
if payload == "PRESS":
update_car_data(True)
def update_loop():
@@ -90,136 +92,56 @@ def update_car_data(force_update=False):
global last_data_update
last_data_update = format_datetime(datetime.now(), format="medium", locale=settings["babelLocale"])
for vin in volvo.vins:
for device_tracker in supported_device_trackers:
state = volvo.api_call(device_tracker["url"], "GET", vin, device_tracker["id"], force_update)
mqtt_client.publish(
f"homeassistant/device_tracker/{vin}_{device_tracker['id']}/attributes",
json.dumps(state)
)
for entity in volvo.supported_endpoints[vin]:
if entity["domain"] == "button":
continue
for lock in supported_locks:
state = volvo.api_call(lock["url"], "GET", vin, lock["id"], force_update)
mqtt_client.publish(
f"homeassistant/lock/{vin}_{lock['id']}/state",
state
)
for switch in supported_switches:
if switch["id"] == "climate_status":
if entity["id"] == "climate_status":
state = assumed_climate_state[vin]
else:
state = "OFF"
mqtt_client.publish(
f"homeassistant/switch/{vin}_{switch['id']}/state",
state
)
for sensor in supported_sensors:
if sensor["id"] == "last_data_update":
elif entity["id"] == "last_data_update":
state = last_data_update
else:
state = volvo.api_call(sensor["url"], "GET", vin, sensor["id"], force_update)
state = volvo.api_call(entity["url"], "GET", vin, entity["id"], force_update)
if entity["domain"] == "device_tracker":
topic = f"homeassistant/{entity['domain']}/{vin}_{entity['id']}/attributes"
else:
topic = f"homeassistant/{entity['domain']}/{vin}_{entity['id']}/state"
mqtt_client.publish(
f"homeassistant/sensor/{vin}_{sensor['id']}/state",
state
topic,
json.dumps(state) if isinstance(state, dict) else state
)
def create_ha_devices():
global subscribed_topics
for vin in volvo.vins:
device = volvo.get_vehicle_details(vin)
for device_tracker in supported_device_trackers:
for entity in volvo.supported_endpoints[vin]:
config = {
"name": device_tracker['name'],
"object_id": f"volvo_{vin}_{device_tracker['id']}",
"name": entity['name'],
"object_id": f"volvo_{vin}_{entity['id']}",
"schema": "state",
"icon": f"mdi:{device_tracker['icon']}",
"state_topic": f"homeassistant/device_tracker/{vin}_{device_tracker['id']}/state",
"icon": f"mdi:{entity['icon']}",
"state_topic": f"homeassistant/{entity['domain']}/{vin}_{entity['id']}/state",
"device": device,
"unique_id": f"volvoAAOS2mqtt_{vin}_{device_tracker['id']}",
"json_attributes_topic": f"homeassistant/device_tracker/{vin}_{device_tracker['id']}/attributes"
"unique_id": f"volvoAAOS2mqtt_{vin}_{entity['id']}"
}
mqtt_client.publish(
f"homeassistant/device_tracker/volvoAAOS2mqtt/{vin}_{device_tracker['id']}/config",
json.dumps(config),
)
if entity.get('unit'):
config["unit_of_measurement"] = entity["unit"]
for button in supported_buttons:
command_topic = f"homeassistant/button/{vin}_{button['id']}/command"
config = {
"name": button['name'],
"object_id": f"volvo_{vin}_{button['id']}",
"schema": "state",
"icon": f"mdi:{button['icon']}",
"state_topic": f"homeassistant/button/{vin}_{button['id']}/state",
"command_topic": command_topic,
"device": device,
"unique_id": f"volvoAAOS2mqtt_{vin}_{button['id']}",
}
mqtt_client.publish(
f"homeassistant/button/volvoAAOS2mqtt/{vin}_{button['id']}/config",
json.dumps(config),
)
subscribed_topics.append(command_topic)
mqtt_client.subscribe(command_topic)
if entity.get('domain') == "device_tracker":
config["json_attributes_topic"] = f"homeassistant/{entity['domain']}/{vin}_{entity['id']}/attributes"
for lock in supported_locks:
command_topic = f"homeassistant/lock/{vin}_{lock['id']}/command"
config = {
"name": lock['name'],
"object_id": f"volvo_{vin}_{lock['id']}",
"schema": "state",
"icon": f"mdi:{lock['icon']}",
"state_topic": f"homeassistant/lock/{vin}_{lock['id']}/state",
"command_topic": command_topic,
"optimistic": False,
"device": device,
"unique_id": f"volvoAAOS2mqtt_{vin}_{lock['id']}",
}
mqtt_client.publish(
f"homeassistant/lock/volvoAAOS2mqtt/{vin}_{lock['id']}/config",
json.dumps(config),
)
subscribed_topics.append(command_topic)
mqtt_client.subscribe(command_topic)
for switch in supported_switches:
command_topic = f"homeassistant/switch/{vin}_{switch['id']}/command"
config = {
"name": switch['name'],
"object_id": f"volvo_{vin}_{switch['id']}",
"schema": "state",
"icon": f"mdi:{switch['icon']}",
"state_topic": f"homeassistant/switch/{vin}_{switch['id']}/state",
"command_topic": command_topic,
"optimistic": False,
"device": device,
"unique_id": f"volvoAAOS2mqtt_{vin}_{switch['id']}",
}
mqtt_client.publish(
f"homeassistant/switch/volvoAAOS2mqtt/{vin}_{switch['id']}/config",
json.dumps(config),
)
subscribed_topics.append(command_topic)
mqtt_client.subscribe(command_topic)
for sensor in supported_sensors:
config = {
"name": sensor['name'],
"object_id": f"volvo_{vin}_{sensor['id']}",
"schema": "state",
"icon": f"mdi:{sensor['icon']}",
"state_topic": f"homeassistant/sensor/{vin}_{sensor['id']}/state",
"device": device,
"unique_id": f"volvoAAOS2mqtt_{vin}_{sensor['id']}",
}
if "unit" in sensor:
config["unit_of_measurement"] = sensor["unit"]
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/sensor/volvoAAOS2mqtt/{vin}_{sensor['id']}/config",
f"homeassistant/{entity['domain']}/volvoAAOS2mqtt/{vin}_{entity['id']}/config",
json.dumps(config),
)
time.sleep(2)
+17
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@@ -0,0 +1,17 @@
def keys_exists(element, *keys):
""""
Check if *keys (nested) exists in `element` (dict).
Thanks stackoverflow: https://stackoverflow.com/questions/43491287/elegant-way-to-check-if-a-nested-key-exists-in-a-dict
"""
if not isinstance(element, dict):
raise AttributeError('keys_exists() expects dict as first argument.')
if len(keys) == 0:
raise AttributeError('keys_exists() expects at least two arguments, one given.')
_element = element
for key in keys:
try:
_element = _element[key]
except KeyError:
return False
return True
+126 -64
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@@ -3,15 +3,16 @@ from datetime import datetime, timedelta
import mqtt
from config import settings
from babel.dates import format_datetime
from const import charging_system_states, CLIMATE_START_URL, \
from util import keys_exists
from const import charging_system_states, charging_connection_states, CLIMATE_START_URL, \
OAUTH_URL, VEHICLES_URL, VEHICLE_DETAILS_URL, RECHARGE_STATE_URL, \
WINDOWS_STATE_URL, LOCK_STATE_URL
WINDOWS_STATE_URL, LOCK_STATE_URL, TYRE_STATE_URL, supported_entities, BATTERY_CHARGE_STATE_URL
session = requests.Session()
session.headers = {
"vcc-api-key": settings["volvoData"]["vccapikey"],
"content-type": "application/json",
"accept": "*/*"
"vcc-api-key": settings["volvoData"]["vccapikey"],
"content-type": "application/json",
"accept": "*/*"
}
token_expires_at: datetime
@@ -23,20 +24,23 @@ window_cached_api_response = {}
window_api_last_update = {}
door_cached_api_response = {}
door_api_last_update = {}
tyre_cached_api_response = {}
tyre_api_last_update = {}
supported_endpoints = {}
def authorize():
headers = {
"authorization": "Basic aDRZZjBiOlU4WWtTYlZsNnh3c2c1WVFxWmZyZ1ZtSWFEcGhPc3kxUENhVXNpY1F0bzNUUjVrd2FKc2U0QVpkZ2ZJZmNMeXc=",
"content-type": "application/x-www-form-urlencoded",
"accept": "application/json"
"authorization": "Basic aDRZZjBiOlU4WWtTYlZsNnh3c2c1WVFxWmZyZ1ZtSWFEcGhPc3kxUENhVXNpY1F0bzNUUjVrd2FKc2U0QVpkZ2ZJZmNMeXc=",
"content-type": "application/x-www-form-urlencoded",
"accept": "application/json"
}
body = {
"username": settings.volvoData["username"],
"password": settings.volvoData["password"],
"grant_type": "password",
"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"],
"grant_type": "password",
"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"
}
auth = requests.post(OAUTH_URL, data=body, headers=headers)
if auth.status_code == 200:
@@ -48,6 +52,7 @@ def authorize():
refresh_token = data["refresh_token"]
get_vehicles()
check_supported_endpoints()
else:
message = auth.json()
raise Exception(message["error_description"])
@@ -57,14 +62,14 @@ def refresh_auth():
print("Refreshing credentials")
global refresh_token
headers = {
"authorization": "Basic aDRZZjBiOlU4WWtTYlZsNnh3c2c1WVFxWmZyZ1ZtSWFEcGhPc3kxUENhVXNpY1F0bzNUUjVrd2FKc2U0QVpkZ2ZJZmNMeXc=",
"content-type": "application/x-www-form-urlencoded",
"accept": "application/json"
"authorization": "Basic aDRZZjBiOlU4WWtTYlZsNnh3c2c1WVFxWmZyZ1ZtSWFEcGhPc3kxUENhVXNpY1F0bzNUUjVrd2FKc2U0QVpkZ2ZJZmNMeXc=",
"content-type": "application/x-www-form-urlencoded",
"accept": "application/json"
}
body = {
"grant_type": "refresh_token",
"refresh_token": refresh_token
"grant_type": "refresh_token",
"refresh_token": refresh_token
}
auth = requests.post(OAUTH_URL, data=body, headers=headers)
if auth.status_code == 200:
@@ -112,19 +117,19 @@ def get_vehicle_details(vin):
if settings["debug"]:
print(response.text)
device = {
"identifiers": [f"volvoAAOS2mqtt_{vin}"],
"manufacturer": "Volvo",
"model": data['descriptions']['model'],
"name": f"{data['descriptions']['model']} ({data['modelYear']}) - {vin}",
}
"identifiers": [f"volvoAAOS2mqtt_{vin}"],
"manufacturer": "Volvo",
"model": data['descriptions']['model'],
"name": f"{data['descriptions']['model']} ({data['modelYear']}) - {vin}",
}
elif response.status_code == 500 and not settings.volvoData["vin"]:
# Workaround for some cars that are not returning vehicle details
device = {
"identifiers": [f"volvoAAOS2mqtt_{vin}"],
"manufacturer": "Volvo",
"model": vin,
"name": f"Volvo - {vin}",
}
"identifiers": [f"volvoAAOS2mqtt_{vin}"],
"manufacturer": "Volvo",
"model": vin,
"name": f"Volvo - {vin}",
}
else:
raise Exception("Getting vehicle details failed. Status Code: " + str(response.status_code) +
". Error: " + response.text)
@@ -132,6 +137,28 @@ def get_vehicle_details(vin):
return device
def check_supported_endpoints():
global supported_endpoints
for vin in vins:
supported_endpoints[vin] = []
for entity in supported_entities:
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]):
# If battery charge level could be found in recharge-api, skip the second battery charge sensor
continue
if entity.get('url'):
state = api_call(entity["url"], "GET", vin, entity["id"])
else:
state = ""
if state is not None:
print("Success! " + entity["name"] + " is supported by your vehicle.")
supported_endpoints[vin].append(entity)
else:
print("Failed, " + entity["name"] + " is unfortunately not supported by your vehicle.")
def initialize_climate(vins):
for vin in vins:
mqtt.assumed_climate_state[vin] = "OFF"
@@ -157,6 +184,9 @@ def api_call(url, method, vin, sensor_id=None, force_update=False):
elif url == LOCK_STATE_URL:
# Minimize API calls for door state
response = pull_door_api(url, method, vin, force_update)
elif url == TYRE_STATE_URL:
# Minimize API calls for tyre state
response = pull_tyre_api(url, method, vin, force_update)
elif method == "GET":
print("Starting " + method + " call against " + url)
response = session.get(url.format(vin), timeout=15)
@@ -175,18 +205,34 @@ def api_call(url, method, vin, sensor_id=None, force_update=False):
else:
if url == CLIMATE_START_URL and response.status_code == 503:
print("Car in use, cannot start pre climatization")
mqtt.assumed_climate_state = "OFF"
mqtt.assumed_climate_state[vin] = "OFF"
mqtt.update_car_data()
else:
print("API Call failed. Status Code: " + str(response.status_code) + ". Error: " + response.text)
return ""
state = parse_api_data(data, sensor_id)
if not state:
return ""
else:
return state
return parse_api_data(data, sensor_id)
def pull_tyre_api(url, method, vin, force_update=False):
global tyre_cached_api_response, tyre_api_last_update
if not vin in tyre_cached_api_response or force_update:
# No API Data for vin cached, get fresh data from API
print("Starting " + method + " call against " + url)
response = session.get(url.format(vin), timeout=15)
tyre_cached_api_response[vin] = response
tyre_api_last_update[vin] = datetime.now()
else:
if (datetime.now() - tyre_api_last_update[vin]).total_seconds() >= settings["updateInterval"]:
# Old Data in Cache, updating
print("Starting " + method + " call against " + url)
response = session.get(url.format(vin), timeout=15)
tyre_cached_api_response[vin] = response
tyre_api_last_update[vin] = datetime.now()
else:
# Data is up do date, returning cached data
response = tyre_cached_api_response[vin]
return response
def pull_door_api(url, method, vin, force_update=False):
global door_cached_api_response, door_api_last_update
@@ -252,66 +298,82 @@ def pull_recharge_api(url, method, vin, force_update=False):
def parse_api_data(data, sensor_id=None):
data = data["data"]
if sensor_id == "battery_charge_level":
return data["data"].get("batteryChargeLevel").get("value")
return data["batteryChargeLevel"]["value"] if keys_exists(data, "batteryChargeLevel") else None
elif sensor_id == "electric_range":
return data["data"].get("electricRange").get("value")
return data["electricRange"]["value"] if keys_exists(data, "electricRange") else None
elif sensor_id == "charging_system_status":
if "chargingSystemStatus" in data["data"]:
return charging_system_states[data["data"].get("chargingSystemStatus").get("value")]
else:
return ""
return charging_system_states[data["chargingSystemStatus"]["value"]] if keys_exists(data, "chargingSystemStatus") else None
elif sensor_id == "charging_connection_status":
return charging_connection_states[data["chargingConnectionStatus"]["value"]] if keys_exists(data, "chargingConnectionStatus") else None
elif sensor_id == "estimated_charging_time":
if "chargingSystemStatus" in data["data"]:
charging_system_state = charging_system_states[data["data"]["chargingSystemStatus"]["value"]]
if keys_exists(data, "chargingSystemStatus"):
charging_system_state = charging_system_states[data["chargingSystemStatus"]["value"]]
if charging_system_state == "Charging":
return data["data"]["estimatedChargingTime"]["value"]
return data["estimatedChargingTime"]["value"] if keys_exists(data, "estimatedChargingTime") else ""
else:
return 0
else:
return ""
return None
elif sensor_id == "estimated_charging_finish_time":
if "chargingSystemStatus" in data["data"]:
charging_system_state = charging_system_states[data["data"].get("chargingSystemStatus").get("value")]
if keys_exists(data, "chargingSystemStatus"):
charging_system_state = charging_system_states[data["chargingSystemStatus"]["value"]]
if charging_system_state == "Charging":
charging_time = int(data["data"].get("estimatedChargingTime").get("value"))
charging_time = int(data["estimatedChargingTime"]["value"] if keys_exists(data, "estimatedChargingTime")
else 0)
charging_finished = datetime.now() + timedelta(minutes=charging_time)
return format_datetime(charging_finished, format="medium", locale=settings["babelLocale"])
else:
return None
return ""
else:
return None
elif sensor_id == "lock_status":
return data["data"].get("carLocked").get("value")
return data["carLocked"]["value"] if keys_exists(data, "carLocked") else None
elif sensor_id == "odometer":
return data["data"].get("odometer").get("value")
return int(data["odometer"]["value"]) * 10 if keys_exists(data, "odometer") else None
elif sensor_id == "window_front_left":
return data["data"].get("frontLeftWindowOpen").get("value")
return data["frontLeftWindowOpen"]["value"] if keys_exists(data, "frontLeftWindowOpen") else None
elif sensor_id == "window_front_right":
return data["data"].get("frontRightWindowOpen").get("value")
return data["frontRightWindowOpen"]["value"] if keys_exists(data, "frontRightWindowOpen") else None
elif sensor_id == "window_rear_left":
return data["data"].get("rearLeftWindowOpen").get("value")
return data["rearLeftWindowOpen"]["value"] if keys_exists(data, "rearLeftWindowOpen") else None
elif sensor_id == "window_rear_right":
return data["data"].get("rearRightWindowOpen").get("value")
return data["rearRightWindowOpen"]["value"] if keys_exists(data, "rearRightWindowOpen") else None
elif sensor_id == "door_front_left":
return data["data"].get("frontLeftDoorOpen").get("value")
return data["frontLeftDoorOpen"]["value"] if keys_exists(data, "frontLeftDoorOpen") else None
elif sensor_id == "door_front_right":
return data["data"].get("frontRightDoorOpen").get("value")
return data["frontRightDoorOpen"]["value"] if keys_exists(data, "frontRightDoorOpen") else None
elif sensor_id == "door_rear_left":
return data["data"].get("rearLeftDoorOpen").get("value")
return data["rearLeftDoorOpen"]["value"] if keys_exists(data, "rearLeftDoorOpen") else None
elif sensor_id == "door_rear_right":
return data["data"].get("rearRightDoorOpen").get("value")
return data["rearRightDoorOpen"]["value"] if keys_exists(data, "rearRightDoorOpen") else None
elif sensor_id == "tailgate":
return data["data"].get("tailGateOpen").get("value")
return data["tailGateOpen"]["value"] if keys_exists(data, "tailGateOpen") else None
elif sensor_id == "engine_hood":
return data["data"].get("hoodOpen").get("value")
return data["hoodOpen"]["value"] if keys_exists(data, "hoodOpen") else None
elif sensor_id == "tank_lid":
return data["data"].get("tankLidOpen").get("value")
return data["tankLidOpen"]["value"] if keys_exists(data, "tankLidOpen") else None
elif sensor_id == "tyre_front_left":
return data["frontLeftTyrePressure"]["value"] if keys_exists(data, "frontLeftTyrePressure") else None
elif sensor_id == "tyre_front_right":
return data["frontRightTyrePressure"]["value"] if keys_exists(data, "frontRightTyrePressure") else None
elif sensor_id == "tyre_rear_left":
return data["rearLeftTyrePressure"]["value"] if keys_exists(data, "rearLeftTyrePressure") else None
elif sensor_id == "tyre_rear_right":
return data["rearRightTyrePressure"]["value"] if keys_exists(data, "rearRightTyrePressure") else None
elif sensor_id == "engine_state":
return data["engineRunning"]["value"] if keys_exists(data, "engineRunning") else None
elif sensor_id == "fuel_level":
return data["fuelAmount"]["value"] if keys_exists(data, "fuelAmount") else None
elif sensor_id == "location":
coordinates = {}
if "geometry" in data["data"]:
raw_data = data["data"].get("geometry").get("coordinates")
coordinates = {"longitude": raw_data[0], "latitude": raw_data[1], "gps_accuracy": 1}
if keys_exists(data, "geometry"):
raw_data = data["geometry"]
if keys_exists(raw_data, "coordinates"):
coordinates = {"longitude": raw_data["coordinates"][0],
"latitude": raw_data["coordinates"][1],
"gps_accuracy": 1}
return coordinates
else:
return ""
return None