Replace the weconnect library with carconnectivity and carconnectivity-connector-volkswagen. The connector is configured via a dict passed to CarConnectivity(); startup()/fetch_all() replace login()/update(). All domain extractors in data_model.py are rewritten for the new object model (vehicle.charging.*, vehicle.get_electric_drive(), vehicle.climatization.*, etc.). Remaining time fields are now derived from estimated_date_reached DateAttributes. Battery temperatures are read directly in °C (no Kelvin conversion). Auth error handling drops the manual re-login since the connector manages token refresh internally. Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
270 lines
9.0 KiB
Python
270 lines
9.0 KiB
Python
import logging
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from datetime import datetime, timezone
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log = logging.getLogger(__name__)
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# ── value helpers ─────────────────────────────────────────────────────────────
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def _str(attr) -> str:
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"""Return the string value of a CarConnectivity attribute."""
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return str(attr)
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def _phys(value, unit: str) -> dict:
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return {"value": value, "unit": unit}
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def _remaining_min(estimated_date_reached_attr) -> float | None:
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"""Compute remaining minutes from an estimated_date_reached DateAttribute."""
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edr = estimated_date_reached_attr.value
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if edr is None:
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return None
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return max(0.0, (edr - datetime.now(timezone.utc)).total_seconds() / 60)
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# ── domain extractors ─────────────────────────────────────────────────────────
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def extract_charging(vehicle) -> dict | None:
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result: dict = {}
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try:
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ch = vehicle.charging
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status: dict = {
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"chargingState": _str(ch.state),
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"chargeType": _str(ch.type),
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}
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try:
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status["chargePower"] = _phys(ch.power.value, "kW")
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except Exception:
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pass
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try:
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rem = _remaining_min(ch.estimated_date_reached)
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if rem is not None:
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status["remainingChargingTimeToComplete"] = _phys(round(rem), "min")
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except Exception:
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pass
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result["chargingStatus"] = status
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except Exception:
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log.debug("chargingStatus unavailable", exc_info=True)
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try:
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ed = vehicle.get_electric_drive()
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result["batteryStatus"] = {
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"currentSOC": _phys(ed.level.value, "%"),
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"cruisingRangeElectric": _phys(ed.range.value, "km"),
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}
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except Exception:
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log.debug("charging/batteryStatus unavailable", exc_info=True)
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try:
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cfg = vehicle.charging.settings
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result["chargingSettings"] = {
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"targetSOC": _phys(cfg.target_level.value, "%"),
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"maxChargeCurrentAC": _phys(cfg.maximum_current.value, "A"),
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"autoUnlockPlugWhenCharged": _str(cfg.auto_unlock),
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}
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except Exception:
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log.debug("chargingSettings unavailable", exc_info=True)
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try:
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conn = vehicle.charging.connector
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result["plugStatus"] = {
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"plugConnectionState": _str(conn.connection_state),
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"plugLockState": _str(conn.lock_state),
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"externalPower": _str(conn.external_power),
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}
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except Exception:
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log.debug("plugStatus unavailable", exc_info=True)
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return result or None
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def extract_climatisation(vehicle) -> dict | None:
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result: dict = {}
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try:
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cl = vehicle.climatization
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status: dict = {"climatisationState": _str(cl.state)}
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try:
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rem = _remaining_min(cl.estimated_date_reached)
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if rem is not None:
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status["remainingClimatisationTime"] = _phys(round(rem), "min")
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except Exception:
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pass
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result["climatisationStatus"] = status
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except Exception:
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log.debug("climatisationStatus unavailable", exc_info=True)
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try:
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cs = vehicle.climatization.settings
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result["climatisationSettings"] = {
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"targetTemperature": _phys(cs.target_temperature.value, "degC"),
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}
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except Exception:
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log.debug("climatisationSettings unavailable", exc_info=True)
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try:
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wh = vehicle.window_heatings
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result["windowHeatingStatus"] = {
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name: _str(win.heating_state)
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for name, win in wh.heatings.items()
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}
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except Exception:
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log.debug("windowHeatingStatus unavailable", exc_info=True)
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return result or None
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def extract_measurements(vehicle) -> dict | None:
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result: dict = {}
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try:
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result["odometerStatus"] = {"odometer": _phys(vehicle.odometer.value, "km")}
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except Exception:
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log.debug("odometerStatus unavailable", exc_info=True)
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try:
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ed = vehicle.get_electric_drive()
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electric_range = ed.range.value
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result["rangeStatus"] = {
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"electricRange": _phys(electric_range, "km"),
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"totalRange": _phys(electric_range, "km"),
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}
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except Exception:
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log.debug("rangeStatus unavailable", exc_info=True)
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try:
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bat = vehicle.get_electric_drive().battery
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result["temperatureBatteryStatus"] = {
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"temperatureHvBatteryMax": _phys(bat.temperature_max.value, "degC"),
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"temperatureHvBatteryMin": _phys(bat.temperature_min.value, "degC"),
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}
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except Exception:
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log.debug("measurements/temperatureBatteryStatus unavailable", exc_info=True)
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try:
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result["temperatureOutsideStatus"] = {
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"temperatureOutside": _phys(vehicle.outside_temperature.value, "degC"),
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}
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except Exception:
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log.debug("temperatureOutsideStatus unavailable", exc_info=True)
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return result or None
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def extract_readiness(vehicle) -> dict | None:
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result: dict = {}
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try:
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conn_state = str(vehicle.connection_state)
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result["readinessStatus"] = {
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"connectionState": {
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"isOnline": conn_state == "online",
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"isActive": conn_state in ("online", "reachable"),
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},
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}
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except Exception:
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log.debug("readinessStatus unavailable", exc_info=True)
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return result or None
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def extract_parking(vehicle) -> dict | None:
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result: dict = {}
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try:
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pos = vehicle.position
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result["parkingPosition"] = {
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"lat": pos.latitude.value,
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"lon": pos.longitude.value,
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}
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except Exception:
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log.debug("parkingPosition unavailable", exc_info=True)
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return result or None
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def extract_access(vehicle) -> dict | None:
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result: dict = {}
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try:
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doors = vehicle.doors
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result["accessStatus"] = {
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"overallStatus": _str(doors.lock_state),
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"doors": {
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name: {
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"lockState": _str(door.lock_state),
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"openState": _str(door.open_state),
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}
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for name, door in doors.doors.items()
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},
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"windows": {
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name: {"openState": _str(win.open_state)}
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for name, win in vehicle.windows.windows.items()
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},
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}
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except Exception:
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log.debug("accessStatus unavailable", exc_info=True)
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return result or None
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ALL_DOMAINS: dict[str, callable] = {
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"charging": extract_charging,
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"climatisation": extract_climatisation,
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"measurements": extract_measurements,
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"readiness": extract_readiness,
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"parking": extract_parking,
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"access": extract_access,
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}
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def collect_snapshot(vehicle, domains: list[str]) -> dict:
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snapshot: dict = {"ts": datetime.now(timezone.utc).isoformat()}
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for domain in domains:
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data = ALL_DOMAINS[domain](vehicle)
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if data is not None:
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snapshot[domain] = data
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return snapshot
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# ── procedural fields ─────────────────────────────────────────────────────────
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def _get(data: dict, *keys):
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"""Navigate nested dicts safely; returns None if any key is missing."""
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for k in keys:
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if not isinstance(data, dict):
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return None
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data = data.get(k)
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return data
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def apply_procedural(record: dict) -> dict:
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"""Compute derived fields and store them under record['procedural'].
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Called for every new snapshot before storage and broadcast, and for
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historical records that lack the 'procedural' key before they are sent
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to clients. Add computed fields to the proc dict below.
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"""
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proc: dict = {}
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range_at_soc = _get(record, "measurements", "rangeStatus", "totalRange", "value")
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soc = _get(record, "charging", "batteryStatus", "currentSOC", "value")
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if range_at_soc is not None and soc:
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proc["range_at_100"] = _phys(round(100 * float(range_at_soc) / float(soc), 1), "km")
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# ── add computed fields here ──────────────────────────────────────────
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# Use _get(record, "domain", "statusObject", "field", "value") to
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# safely read any nested value. Always use {"value": ..., "unit": ...}
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# format so the GUI picks up the field automatically.
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#
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# Example — usable energy estimated from SOC and battery capacity:
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# soc = _get(record, "charging", "batteryStatus", "currentSOC", "value")
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# if soc is not None:
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# proc["energy_stored"] = {"value": round(soc / 100 * 77.0, 1), "unit": "kWh"}
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# ─────────────────────────────────────────────────────────────────────
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if proc:
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record["procedural"] = proc
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return record |