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home-assistant-arkteos/custom_components/arkteos/sensor.py
T
2026-07-21 12:05:30 +02:00

397 lines
14 KiB
Python

"""Capteurs natifs en lecture seule pour les données Arkteos."""
from __future__ import annotations
from dataclasses import dataclass
from typing import Final, Literal
from homeassistant.components.sensor import (
SensorDeviceClass,
SensorEntity,
SensorEntityDescription,
SensorStateClass,
)
from homeassistant.const import (
EntityCategory,
PERCENTAGE,
REVOLUTIONS_PER_MINUTE,
SIGNAL_STRENGTH_DECIBELS_MILLIWATT,
UnitOfElectricPotential,
UnitOfFrequency,
UnitOfPower,
UnitOfPressure,
UnitOfTemperature,
UnitOfTime,
)
from homeassistant.helpers.device_registry import DeviceInfo
from homeassistant.helpers.entity_platform import AddEntitiesCallback
from . import _get_client
from .client import ArkteosClient
from .const import DOMAIN
from .entity import ArkteosEntity
FRIGO_FRAME_TYPE: Final = "frigo"
REGULATION_FRAME_TYPE: Final = "regulation"
FRIGO_STATUS_OPTIONS: Final = (
"Arret",
"Refroidissement",
"Chauffage",
"Degivrage",
"Inconnu",
)
PAC_STATUS_OPTIONS: Final = (
"Arret",
"Attente",
"Chaud",
"Froid",
"Hors Gel",
"Ext Chaud",
"Ext Froid",
"Chaud Froid",
"ECS",
"Piscine",
"Inconnu",
)
@dataclass(frozen=True, kw_only=True)
class ArkteosSensorDescription(SensorEntityDescription):
"""Description d'un capteur et du type de trame qui l'alimente."""
frame_type: Literal["frigo", "regulation"]
FRIGO_SENSORS: Final[tuple[ArkteosSensorDescription, ...]] = (
ArkteosSensorDescription(
key="exterieur_temp",
translation_key="exterieur_temp",
frame_type=FRIGO_FRAME_TYPE,
device_class=SensorDeviceClass.TEMPERATURE,
native_unit_of_measurement=UnitOfTemperature.CELSIUS,
state_class=SensorStateClass.MEASUREMENT,
suggested_display_precision=1,
),
ArkteosSensorDescription(
key="nb_degivrages",
translation_key="nb_degivrages",
frame_type=FRIGO_FRAME_TYPE,
state_class=SensorStateClass.TOTAL_INCREASING,
),
ArkteosSensorDescription(
key="temps_compresseur",
translation_key="temps_compresseur",
frame_type=FRIGO_FRAME_TYPE,
device_class=SensorDeviceClass.DURATION,
native_unit_of_measurement=UnitOfTime.HOURS,
state_class=SensorStateClass.TOTAL_INCREASING,
),
ArkteosSensorDescription(
key="nb_cycles_compresseur",
translation_key="nb_cycles_compresseur",
frame_type=FRIGO_FRAME_TYPE,
state_class=SensorStateClass.TOTAL_INCREASING,
),
ArkteosSensorDescription(
key="freq_comp_actuelle",
translation_key="freq_comp_actuelle",
frame_type=FRIGO_FRAME_TYPE,
device_class=SensorDeviceClass.FREQUENCY,
native_unit_of_measurement=UnitOfFrequency.HERTZ,
state_class=SensorStateClass.MEASUREMENT,
),
ArkteosSensorDescription(
key="freq_comp_cible",
translation_key="freq_comp_cible",
frame_type=FRIGO_FRAME_TYPE,
device_class=SensorDeviceClass.FREQUENCY,
native_unit_of_measurement=UnitOfFrequency.HERTZ,
state_class=SensorStateClass.MEASUREMENT,
),
ArkteosSensorDescription(
key="fan_speed_evaporator_1",
translation_key="fan_speed_evaporator_1",
frame_type=FRIGO_FRAME_TYPE,
native_unit_of_measurement=REVOLUTIONS_PER_MINUTE,
state_class=SensorStateClass.MEASUREMENT,
),
ArkteosSensorDescription(
key="dc_voltage",
translation_key="dc_voltage",
frame_type=FRIGO_FRAME_TYPE,
device_class=SensorDeviceClass.VOLTAGE,
native_unit_of_measurement=UnitOfElectricPotential.VOLT,
state_class=SensorStateClass.MEASUREMENT,
),
ArkteosSensorDescription(
key="statut_frigo_s",
translation_key="statut_frigo_s",
frame_type=FRIGO_FRAME_TYPE,
device_class=SensorDeviceClass.ENUM,
options=FRIGO_STATUS_OPTIONS,
),
ArkteosSensorDescription(
key="statut_frigo",
translation_key="statut_frigo",
frame_type=FRIGO_FRAME_TYPE,
entity_category=EntityCategory.DIAGNOSTIC,
entity_registry_enabled_default=False,
),
ArkteosSensorDescription(
key="active_error_fri",
translation_key="active_error_fri",
frame_type=FRIGO_FRAME_TYPE,
entity_category=EntityCategory.DIAGNOSTIC,
),
)
REGULATION_SENSORS: Final[tuple[ArkteosSensorDescription, ...]] = (
ArkteosSensorDescription(
key="puissance_inst_produite",
translation_key="puissance_inst_produite",
frame_type=REGULATION_FRAME_TYPE,
device_class=SensorDeviceClass.POWER,
native_unit_of_measurement=UnitOfPower.WATT,
state_class=SensorStateClass.MEASUREMENT,
),
ArkteosSensorDescription(
key="puissance_inst_consommee",
translation_key="puissance_inst_consommee",
frame_type=REGULATION_FRAME_TYPE,
device_class=SensorDeviceClass.POWER,
native_unit_of_measurement=UnitOfPower.WATT,
state_class=SensorStateClass.MEASUREMENT,
),
ArkteosSensorDescription(
key="temps_mise_sous_tension",
translation_key="temps_mise_sous_tension",
frame_type=REGULATION_FRAME_TYPE,
device_class=SensorDeviceClass.DURATION,
native_unit_of_measurement=UnitOfTime.HOURS,
state_class=SensorStateClass.TOTAL_INCREASING,
),
ArkteosSensorDescription(
key="modele_pac_s",
translation_key="modele_pac_s",
frame_type=REGULATION_FRAME_TYPE,
entity_category=EntityCategory.DIAGNOSTIC,
),
ArkteosSensorDescription(
key="modele_pac",
translation_key="modele_pac",
frame_type=REGULATION_FRAME_TYPE,
entity_category=EntityCategory.DIAGNOSTIC,
entity_registry_enabled_default=False,
),
ArkteosSensorDescription(
key="primaire_temp_eau_aller_consigne",
translation_key="primaire_temp_eau_aller_consigne",
frame_type=REGULATION_FRAME_TYPE,
device_class=SensorDeviceClass.TEMPERATURE,
native_unit_of_measurement=UnitOfTemperature.CELSIUS,
state_class=SensorStateClass.MEASUREMENT,
),
ArkteosSensorDescription(
key="primaire_temp_eau_aller",
translation_key="primaire_temp_eau_aller",
frame_type=REGULATION_FRAME_TYPE,
device_class=SensorDeviceClass.TEMPERATURE,
native_unit_of_measurement=UnitOfTemperature.CELSIUS,
state_class=SensorStateClass.MEASUREMENT,
),
ArkteosSensorDescription(
key="primaire_temp_eau_retour",
translation_key="primaire_temp_eau_retour",
frame_type=REGULATION_FRAME_TYPE,
device_class=SensorDeviceClass.TEMPERATURE,
native_unit_of_measurement=UnitOfTemperature.CELSIUS,
state_class=SensorStateClass.MEASUREMENT,
),
ArkteosSensorDescription(
key="primaire_debit_eau",
translation_key="primaire_debit_eau",
frame_type=REGULATION_FRAME_TYPE,
device_class=SensorDeviceClass.VOLUME_FLOW_RATE,
native_unit_of_measurement="L/h",
state_class=SensorStateClass.MEASUREMENT,
),
ArkteosSensorDescription(
key="primaire_pression",
translation_key="primaire_pression",
frame_type=REGULATION_FRAME_TYPE,
device_class=SensorDeviceClass.PRESSURE,
native_unit_of_measurement=UnitOfPressure.BAR,
state_class=SensorStateClass.MEASUREMENT,
),
ArkteosSensorDescription(
key="primaire_circulateur_consigne",
translation_key="primaire_circulateur_consigne",
frame_type=REGULATION_FRAME_TYPE,
native_unit_of_measurement=PERCENTAGE,
state_class=SensorStateClass.MEASUREMENT,
),
ArkteosSensorDescription(
key="zone1_temp_interieur",
translation_key="zone1_temp_interieur",
frame_type=REGULATION_FRAME_TYPE,
device_class=SensorDeviceClass.TEMPERATURE,
native_unit_of_measurement=UnitOfTemperature.CELSIUS,
state_class=SensorStateClass.MEASUREMENT,
entity_registry_enabled_default=False,
),
ArkteosSensorDescription(
key="zone1_consigne",
translation_key="zone1_consigne",
frame_type=REGULATION_FRAME_TYPE,
device_class=SensorDeviceClass.TEMPERATURE,
native_unit_of_measurement=UnitOfTemperature.CELSIUS,
state_class=SensorStateClass.MEASUREMENT,
entity_registry_enabled_default=False,
),
ArkteosSensorDescription(
key="ecs_temp_eau_milieu",
translation_key="ecs_temp_eau_milieu",
frame_type=REGULATION_FRAME_TYPE,
device_class=SensorDeviceClass.TEMPERATURE,
native_unit_of_measurement=UnitOfTemperature.CELSIUS,
state_class=SensorStateClass.MEASUREMENT,
),
ArkteosSensorDescription(
key="ecs_temp_eau_bas",
translation_key="ecs_temp_eau_bas",
frame_type=REGULATION_FRAME_TYPE,
device_class=SensorDeviceClass.TEMPERATURE,
native_unit_of_measurement=UnitOfTemperature.CELSIUS,
state_class=SensorStateClass.MEASUREMENT,
),
ArkteosSensorDescription(
key="ecs_consigne",
translation_key="ecs_consigne",
frame_type=REGULATION_FRAME_TYPE,
device_class=SensorDeviceClass.TEMPERATURE,
native_unit_of_measurement=UnitOfTemperature.CELSIUS,
state_class=SensorStateClass.MEASUREMENT,
),
ArkteosSensorDescription(
key="nb_cycles_compresseur_reg",
translation_key="nb_cycles_compresseur_reg",
frame_type=REGULATION_FRAME_TYPE,
state_class=SensorStateClass.TOTAL_INCREASING,
),
ArkteosSensorDescription(
key="statut_pac_s",
translation_key="statut_pac_s",
frame_type=REGULATION_FRAME_TYPE,
device_class=SensorDeviceClass.ENUM,
options=PAC_STATUS_OPTIONS,
),
ArkteosSensorDescription(
key="statut_pac",
translation_key="statut_pac",
frame_type=REGULATION_FRAME_TYPE,
entity_category=EntityCategory.DIAGNOSTIC,
entity_registry_enabled_default=False,
),
ArkteosSensorDescription(
key="active_error_reg",
translation_key="active_error_reg",
frame_type=REGULATION_FRAME_TYPE,
entity_category=EntityCategory.DIAGNOSTIC,
),
ArkteosSensorDescription(
key="signal_rf_sonde_1",
translation_key="signal_rf_sonde_1",
frame_type=REGULATION_FRAME_TYPE,
device_class=SensorDeviceClass.SIGNAL_STRENGTH,
native_unit_of_measurement=SIGNAL_STRENGTH_DECIBELS_MILLIWATT,
state_class=SensorStateClass.MEASUREMENT,
entity_category=EntityCategory.DIAGNOSTIC,
),
)
SENSOR_DESCRIPTIONS: Final = FRIGO_SENSORS + REGULATION_SENSORS
async def async_setup_entry(hass, entry, async_add_entities: AddEntitiesCallback) -> None:
"""Ajoute les capteurs alimentés par le client partagé de l'entrée."""
client = _get_client(hass, entry)
if client is None:
return
async_add_entities(ArkteosSensor(client, description) for description in SENSOR_DESCRIPTIONS)
class ArkteosSensor(ArkteosEntity, SensorEntity):
"""Expose une valeur validée issue d'un seul type de trame Arkteos."""
_attr_should_poll = False
def __init__(self, client: ArkteosClient, description: ArkteosSensorDescription) -> None:
super().__init__(client)
self.entity_description = description
self._attr_unique_id = f"arkteos_zuran4_{description.key}"
latest_data = self._latest_data()
self._has_received_frame = latest_data is not None
self._last_value = latest_data.get(description.key) if latest_data is not None else None
@property
def available(self) -> bool:
"""N'est disponible qu'après la première trame de son propre type."""
return self._client.available and self._has_received_frame
@property
def native_value(self) -> int | float | str | None:
"""Retourne la dernière valeur acceptée, sans accès réseau."""
return self._last_value
@property
def device_info(self) -> DeviceInfo:
"""Regroupe tous les capteurs sous l'unique PAC Arkteos."""
regulation_data = self._client.latest_regulation_data
model = "Zuran 4"
if regulation_data is not None:
detected_model = regulation_data.get("modele_pac_s")
if isinstance(detected_model, str):
model = detected_model
return DeviceInfo(
identifiers={(DOMAIN, "arkteos_zuran4")},
manufacturer="Arkteos",
model=model,
name="PAC Arkteos Zuran 4",
)
async def async_added_to_hass(self) -> None:
"""Abonne le capteur aux seules données transmises par le client."""
await super().async_added_to_hass()
self._client.add_data_callback(self._handle_data)
async def async_will_remove_from_hass(self) -> None:
"""Désabonne le callback de données avant la destruction."""
self._client.remove_data_callback(self._handle_data)
await super().async_will_remove_from_hass()
def _latest_data(self) -> dict[str, int | float | str] | None:
if self.entity_description.frame_type == FRIGO_FRAME_TYPE:
return self._client.latest_frigo_data
return self._client.latest_regulation_data
def _handle_data(
self,
frame_type: str,
data: dict[str, int | float | str],
_rejected: dict[str, int | float],
) -> None:
if frame_type != self.entity_description.frame_type:
return
self._has_received_frame = True
if self.entity_description.key in data:
self._last_value = data[self.entity_description.key]
self.async_write_ha_state()