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9 changed files with 200 additions and 36 deletions
+33
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@@ -0,0 +1,33 @@
# This workflow warns and then closes issues and PRs that have had no activity for a specified amount of time.
#
# You can adjust the behavior by modifying this file.
# For more information, see:
# https://github.com/actions/stale
name: Mark stale issues and pull requests
on:
schedule:
- cron: '0 0 * * *'
jobs:
stale:
runs-on: ubuntu-latest
permissions:
issues: write
pull-requests: write
steps:
- uses: actions/stale@v5
with:
repo-token: ${{ secrets.GITHUB_TOKEN }}
days-before-issue-stale: 15
days-before-pr-stale: 45
days-before-issue-close: 5
days-before-pr-close: 10
stale-issue-message: 'This issue is stale because it has been open 15 days with no activity. Remove stale label or comment or this will be closed in 5 days.'
stale-pr-message: 'This PR is stale because it has been open 20 days with no activity. Remove stale label or comment or this will be closed in 10 days.'
close-issue-message: 'This issue was closed because it has been stalled for 5 days with no activity.'
close-pr-message: 'This PR was closed because it has been stalled for 10 days with no activity.'
stale-issue-label: 'no-issue-activity'
stale-pr-label: 'no-pr-activity'
+9 -6
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@@ -1,10 +1,13 @@
name: "Volvo2Mqtt"
description: "Volvo AAOS MQTT bridge"
version: "1.6.3"
version: "1.7.1"
slug: "volvo2mqtt"
init: false
url: "https://github.com/Dielee/volvo2mqtt"
apparmor: true
codenotary: notary@home-assistant.io
services:
- 'mqtt:need'
map:
- addons:rw
options:
@@ -13,10 +16,10 @@ options:
TZ: null
debug: false
mqtt:
broker: null
port: 1883
username: ""
password: ""
broker: "auto_broker"
port: "auto_port"
username: "auto_user"
password: "auto_password"
volvoData:
username: null
password: null
@@ -32,7 +35,7 @@ schema:
debug: bool
mqtt:
broker: str
port: int(1,)
port: str
username: str?
password: str?
volvoData:
+32 -5
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@@ -1,6 +1,6 @@
from config import settings
VERSION = "v1.6.3"
VERSION = "v1.7.1"
OAUTH_URL = "https://volvoid.eu.volvocars.com/as/token.oauth2"
VEHICLES_URL = "https://api.volvocars.com/connected-vehicle/v1/vehicles"
@@ -19,19 +19,22 @@ ENGINE_STATE_URL = "https://api.volvocars.com/connected-vehicle/v2/vehicles/{0}/
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"
STATISTICS_URL = "https://api.volvocars.com/connected-vehicle/v2/vehicles/{0}/statistics"
ENGINE_DIAGNOSTICS_URL = "https://api.volvocars.com/connected-vehicle/v2/vehicles/{0}/engine"
units = {
"en_GB": {
"divider": 1.60934,
"electric_range": {"unit": "mi"},
"odometer": {"unit": "mi"},
"average_speed": {"unit": "mph"}
"average_speed": {"unit": "mph"},
"distance_to_empty": {"unit": "mi"}
},
"en_US": {
"divider": 1.60934,
"electric_range": {"unit": "mi"},
"odometer": {"unit": "mi"},
"average_speed": {"unit": "mph"}
"average_speed": {"unit": "mph"},
"distance_to_empty": {"unit": "mi"}
}
}
@@ -45,6 +48,29 @@ charging_connection_states = {"CONNECTION_STATUS_DISCONNECTED": "Disconnected",
window_states = {"CLOSED": "OFF", "OPEN": "ON"}
door_states = {"CLOSED": "OFF", "OPEN": "ON"}
engine_states = {"RUNNING": "ON", "STOPPED": "OFF"}
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"},
"engine_state": {"ON": "engine-outline", "OFF": "engine-off-outline"},
"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 = [
{"name": "Battery Charge Level", "domain": "sensor", "id": "battery_charge_level", "unit": "%", "icon": "car-battery", "url": RECHARGE_STATE_URL},
@@ -76,9 +102,10 @@ supported_entities = [
{"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": "Engine State", "domain": "binary_sensor", "device_class": "running", "id": "engine_state", "icon": "engine", "url": ENGINE_STATE_URL},
{"name": "Engine State", "domain": "binary_sensor", "device_class": "running", "id": "engine_state", "icon": "engine", "url": ENGINE_DIAGNOSTICS_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": "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": "Distance to Empty", "domain": "sensor", "id": "distance_to_empty", "unit": "km" if not units.get(settings["babelLocale"]) else units[settings["babelLocale"]]["distance_to_empty"]["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}
]
+2 -1
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@@ -2,11 +2,12 @@ import logging
from volvo import authorize
from mqtt import update_loop, connect
from const import VERSION
from util import set_tz, setup_logging
from util import set_tz, setup_logging, set_mqtt_settings
if __name__ == '__main__':
set_tz()
set_mqtt_settings()
setup_logging()
logging.info("Starting volvo2mqtt version " + VERSION)
authorize()
+58 -11
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@@ -9,7 +9,7 @@ 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, availability_topic
CAR_UNLOCK_URL, availability_topic, icon_states
mqtt_client: mqtt.Client
@@ -17,7 +17,8 @@ subscribed_topics = []
assumed_climate_state = {}
last_data_update = None
climate_timer = {}
door_status = {}
engine_status = {}
devices = {}
def connect():
@@ -61,21 +62,21 @@ def on_message(client, userdata, msg):
payload = msg.payload.decode("UTF-8")
if "climate_status" in msg.topic:
global assumed_climate_state, climate_timer, door_status
global assumed_climate_state, climate_timer, engine_status
if payload == "ON":
# Start the api call in another thread for HA performance
Thread(target=volvo.api_call, args=(CLIMATE_START_URL, "POST", vin)).start()
# 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
check_engine_thread = Thread(target=volvo.check_engine_status, args=(vin, ))
check_engine_thread.start()
engine_status[vin] = check_engine_thread
# Starting timer to disable climate after 30 mins
climate_timer[vin] = Timer(30 * 60, volvo.disable_climate, (vin, ))
climate_timer[vin].start()
# Set and update switch status
# Set and update switch status
assumed_climate_state[vin] = "ON"
update_car_data()
elif payload == "OFF":
@@ -83,8 +84,8 @@ def on_message(client, userdata, msg):
Thread(target=volvo.api_call, args=(CLIMATE_STOP_URL, "POST", vin)).start()
# Stop door check thread if running
if door_status[vin].is_alive():
door_status[vin].do_run = False
if engine_status[vin].is_alive():
engine_status[vin].do_run = False
# Stop climate timer if active
if climate_timer[vin].is_alive():
@@ -154,12 +155,58 @@ def update_car_data(force_update=False, overwrite={}):
topic,
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():
global subscribed_topics
global subscribed_topics, devices
for vin in volvo.vins:
device = volvo.get_vehicle_details(vin)
devices[vin] = device
for entity in volvo.supported_endpoints[vin]:
config = {
"name": entity['name'],
+6 -1
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@@ -1,4 +1,9 @@
#!/bin/bash
#!/command/with-contenv bashio
export IS_HA_ADDON="true"
export MQTTHOST=$(bashio::services mqtt "host")
export MQTTPORT=$(bashio::services mqtt "port")
export MQTTUSER=$(bashio::services mqtt "username")
export MQTTPASS=$(bashio::services mqtt "password")
python -u main.py
+2 -2
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@@ -10,10 +10,10 @@ configuration:
description: Set your local timezone eg. "Europe/Berlin" or "America/New_York"
debug:
name: API debug mode
description: Enable Volvo API debug, normaly this can stay off
description: Enable Volvo API debug, normaly this can stay off. If enabled, the complete log file can be found under \\<Your HA Host IP>\addons\volvo2mqtt\log\volvo2mqtt.log.
mqtt:
name: MQTT Broker settings
description: Broker is your mqtt broker IP eg "192.168.0.1". Mqtt username and password are optional. Broker port can be changed. If no value is given, port 1883 will be used.
description: Leave the settings as they are if you are using the MQTT Mosquitto Addon. If not, take a look at the readme from volvo2mqtt.
volvoData:
name: Volvo configuration options
description: You have to enter your Volvo app credentials. The username is normally your email, and the password is the password you use for your Volvo app. The vin can stay empty. The Add-On will use any vin inside your Volvo account. VCCAPI key is required and comes from your Volvo developer account. Odometer multiplier is sometimes 10, sometimes 1. The same is applicable for average speed divider and average fuel consumption. Leave it as it is if you don't know what's right. Take a look at the GitHub repo for more information!
+34
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@@ -2,6 +2,7 @@ import logging
import pytz
import os
import sys
import config
from logging import handlers
from datetime import datetime
from const import units
@@ -11,6 +12,14 @@ from pathlib import Path
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"):
@@ -79,3 +88,28 @@ def convert_metric_values(value):
else:
return value
def set_mqtt_settings():
if os.environ.get("IS_HA_ADDON"):
if config.settings["mqtt"]["broker"] != "auto_broker" \
or config.settings["mqtt"]["port"] != "auto_port" \
or config.settings["mqtt"]["username"] != "auto_user" \
or config.settings["mqtt"]["password"] != "auto_password":
# If settings were manually set, use the manually set settings
return None
broker_host = os.getenv("MQTTHOST", None)
broker_port = os.getenv("MQTTPORT", None)
broker_user = os.getenv("MQTTUSER", None)
broker_pass = os.getenv("MQTTPASS", None)
if not broker_host or not broker_port:
raise Exception("MQTT connection could not be established. Please check if your MQTT Add-On is running!")
logging.debug("MQTT Credentials - Host " + broker_host + " Port: " + str(broker_port) +
" User: " + str(broker_user) + " Pass: " + str(broker_pass))
config.settings["mqtt"]["broker"] = broker_host
config.settings["mqtt"]["port"] = broker_port
config.settings["mqtt"]["username"] = broker_user
config.settings["mqtt"]["password"] = broker_pass
+24 -10
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@@ -3,14 +3,14 @@ import requests
import mqtt
import util
import time
from threading import Thread, currentThread
from threading import currentThread
from datetime import datetime, timedelta
from config import settings
from babel.dates import format_datetime
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, \
WINDOWS_STATE_URL, LOCK_STATE_URL, TYRE_STATE_URL, supported_entities, BATTERY_CHARGE_STATE_URL, \
STATISTICS_URL, CLIMATE_STOP_URL
STATISTICS_URL, ENGINE_DIAGNOSTICS_URL, engine_states
session = requests.Session()
session.headers = {
@@ -150,6 +150,11 @@ def check_supported_endpoints():
# If battery charge level could be found in recharge-api, skip the second battery charge sensor
continue
if entity["id"] == "engine_state" and entity["url"] == ENGINE_DIAGNOSTICS_URL \
and any("engine_state" in d["id"] for d in supported_endpoints[vin]):
# If engine state could be found in engine state endpoint, skip the second engine running sensor
continue
if entity.get('url'):
state = api_call(entity["url"], "GET", vin, entity["id"])
else:
@@ -169,18 +174,27 @@ def initialize_climate(vins):
def disable_climate(vin):
logging.info("Turning climate off by timer!")
mqtt.door_status[vin].do_run = False
mqtt.engine_status[vin].do_run = False
mqtt.assumed_climate_state[vin] = "OFF"
mqtt.update_car_data()
def check_door_status(vin):
def check_engine_status(vin):
endpoint_url = ""
engine_state_supported = False
for endpoint in supported_endpoints[vin]:
if "engine_state" == endpoint["id"]:
engine_state_supported = True
endpoint_url = endpoint["url"]
if not engine_state_supported:
# Exit thread as engine state is unsupported by car
return None
t = currentThread()
while getattr(t, "do_run", True):
lock_door_left = api_call(LOCK_STATE_URL, "GET", vin, "door_front_left", True)
lock_door_right = api_call(LOCK_STATE_URL, "GET", vin, "door_front_right", True)
if lock_door_left == "ON" or lock_door_right == "ON":
Thread(target=api_call, args=(CLIMATE_STOP_URL, "POST", vin)).start()
engine_state = api_call(endpoint_url, "GET", vin, "engine_state", True)
if engine_state == "ON":
mqtt.assumed_climate_state[vin] = "OFF"
mqtt.update_car_data()
break
@@ -253,7 +267,7 @@ def cached_request(url, method, vin, force_update=False):
if (datetime.now(util.TZ) - cached_requests[vin + "_" + url]["last_update"]).total_seconds() \
>= settings["updateInterval"] or (force_update and
(datetime.now(util.TZ) - cached_requests[vin + "_" + url]
["last_update"]).total_seconds() >= 2):
["last_update"]).total_seconds() >= 2):
# Old Data in Cache, or force mode active, updating
logging.debug("Starting " + method + " call against " + url)
try:
@@ -352,7 +366,7 @@ def parse_api_data(data, sensor_id=None):
elif sensor_id == "tyre_rear_right":
return data["rearRightTyrePressure"]["value"] if util.keys_exists(data, "rearRightTyrePressure") else None
elif sensor_id == "engine_state":
return data["engineRunning"]["value"] if util.keys_exists(data, "engineRunning") else None
return engine_states[data["engineRunning"]["value"]] if util.keys_exists(data, "engineRunning") else None
elif sensor_id == "fuel_level":
if util.keys_exists(data, "fuelAmount"):
fuel_amount = int(data["fuelAmount"]["value"])