349 lines
11 KiB
Python
349 lines
11 KiB
Python
"""Support for Fronius devices."""
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from __future__ import annotations
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import copy
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from datetime import timedelta
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import logging
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from typing import Any
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from pyfronius import Fronius, FroniusError
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import voluptuous as vol
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from homeassistant.components.sensor import (
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PLATFORM_SCHEMA,
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STATE_CLASS_MEASUREMENT,
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STATE_CLASS_TOTAL_INCREASING,
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SensorEntity,
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)
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from homeassistant.const import (
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CONF_DEVICE,
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CONF_MONITORED_CONDITIONS,
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CONF_RESOURCE,
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CONF_SCAN_INTERVAL,
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CONF_SENSOR_TYPE,
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DEVICE_CLASS_BATTERY,
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DEVICE_CLASS_CURRENT,
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DEVICE_CLASS_ENERGY,
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DEVICE_CLASS_POWER,
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DEVICE_CLASS_POWER_FACTOR,
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DEVICE_CLASS_TEMPERATURE,
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DEVICE_CLASS_TIMESTAMP,
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DEVICE_CLASS_VOLTAGE,
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)
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from homeassistant.core import callback
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from homeassistant.helpers.aiohttp_client import async_get_clientsession
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import homeassistant.helpers.config_validation as cv
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from homeassistant.helpers.entity_platform import AddEntitiesCallback
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from homeassistant.helpers.event import async_track_time_interval
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_LOGGER = logging.getLogger(__name__)
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CONF_SCOPE = "scope"
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TYPE_INVERTER = "inverter"
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TYPE_STORAGE = "storage"
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TYPE_METER = "meter"
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TYPE_POWER_FLOW = "power_flow"
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TYPE_LOGGER_INFO = "logger_info"
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SCOPE_DEVICE = "device"
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SCOPE_SYSTEM = "system"
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DEFAULT_SCOPE = SCOPE_DEVICE
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DEFAULT_DEVICE = 0
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DEFAULT_INVERTER = 1
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DEFAULT_SCAN_INTERVAL = timedelta(seconds=60)
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SENSOR_TYPES = [
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TYPE_INVERTER,
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TYPE_STORAGE,
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TYPE_METER,
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TYPE_POWER_FLOW,
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TYPE_LOGGER_INFO,
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]
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SCOPE_TYPES = [SCOPE_DEVICE, SCOPE_SYSTEM]
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PREFIX_DEVICE_CLASS_MAPPING = [
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("state_of_charge", DEVICE_CLASS_BATTERY),
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("temperature", DEVICE_CLASS_TEMPERATURE),
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("power_factor", DEVICE_CLASS_POWER_FACTOR),
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("power", DEVICE_CLASS_POWER),
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("energy", DEVICE_CLASS_ENERGY),
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("current", DEVICE_CLASS_CURRENT),
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("timestamp", DEVICE_CLASS_TIMESTAMP),
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("voltage", DEVICE_CLASS_VOLTAGE),
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]
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PREFIX_STATE_CLASS_MAPPING = [
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("state_of_charge", STATE_CLASS_MEASUREMENT),
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("temperature", STATE_CLASS_MEASUREMENT),
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("power_factor", STATE_CLASS_MEASUREMENT),
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("power", STATE_CLASS_MEASUREMENT),
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("energy", STATE_CLASS_TOTAL_INCREASING),
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("current", STATE_CLASS_MEASUREMENT),
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("timestamp", STATE_CLASS_MEASUREMENT),
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("voltage", STATE_CLASS_MEASUREMENT),
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]
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def _device_id_validator(config):
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"""Ensure that inverters have default id 1 and other devices 0."""
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config = copy.deepcopy(config)
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for cond in config[CONF_MONITORED_CONDITIONS]:
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if CONF_DEVICE not in cond:
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if cond[CONF_SENSOR_TYPE] == TYPE_INVERTER:
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cond[CONF_DEVICE] = DEFAULT_INVERTER
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else:
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cond[CONF_DEVICE] = DEFAULT_DEVICE
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return config
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PLATFORM_SCHEMA = vol.Schema(
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vol.All(
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PLATFORM_SCHEMA.extend(
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{
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vol.Required(CONF_RESOURCE): cv.url,
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vol.Required(CONF_MONITORED_CONDITIONS): vol.All(
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cv.ensure_list,
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[
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{
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vol.Required(CONF_SENSOR_TYPE): vol.In(SENSOR_TYPES),
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vol.Optional(CONF_SCOPE, default=DEFAULT_SCOPE): vol.In(
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SCOPE_TYPES
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),
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vol.Optional(CONF_DEVICE): cv.positive_int,
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}
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],
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),
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}
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),
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_device_id_validator,
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)
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)
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async def async_setup_platform(hass, config, async_add_entities, discovery_info=None):
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"""Set up of Fronius platform."""
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session = async_get_clientsession(hass)
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fronius = Fronius(session, config[CONF_RESOURCE])
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scan_interval = config.get(CONF_SCAN_INTERVAL, DEFAULT_SCAN_INTERVAL)
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adapters = []
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# Creates all adapters for monitored conditions
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for condition in config[CONF_MONITORED_CONDITIONS]:
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device = condition[CONF_DEVICE]
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sensor_type = condition[CONF_SENSOR_TYPE]
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scope = condition[CONF_SCOPE]
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name = f"Fronius {condition[CONF_SENSOR_TYPE].replace('_', ' ').capitalize()} {device if scope == SCOPE_DEVICE else SCOPE_SYSTEM} {config[CONF_RESOURCE]}"
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if sensor_type == TYPE_INVERTER:
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if scope == SCOPE_SYSTEM:
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adapter_cls = FroniusInverterSystem
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else:
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adapter_cls = FroniusInverterDevice
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elif sensor_type == TYPE_METER:
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if scope == SCOPE_SYSTEM:
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adapter_cls = FroniusMeterSystem
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else:
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adapter_cls = FroniusMeterDevice
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elif sensor_type == TYPE_POWER_FLOW:
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adapter_cls = FroniusPowerFlow
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elif sensor_type == TYPE_LOGGER_INFO:
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adapter_cls = FroniusLoggerInfo
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else:
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adapter_cls = FroniusStorage
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adapters.append(adapter_cls(fronius, name, device, async_add_entities))
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# Creates a lamdba that fetches an update when called
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def adapter_data_fetcher(data_adapter):
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async def fetch_data(*_):
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await data_adapter.async_update()
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return fetch_data
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# Set up the fetching in a fixed interval for each adapter
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for adapter in adapters:
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fetch = adapter_data_fetcher(adapter)
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# fetch data once at set-up
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await fetch()
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async_track_time_interval(hass, fetch, scan_interval)
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class FroniusAdapter:
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"""The Fronius sensor fetching component."""
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def __init__(
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self, bridge: Fronius, name: str, device: int, add_entities: AddEntitiesCallback
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) -> None:
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"""Initialize the sensor."""
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self.bridge = bridge
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self._name = name
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self._device = device
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self._fetched: dict[str, Any] = {}
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self._available = True
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self.sensors: set[str] = set()
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self._registered_sensors: set[SensorEntity] = set()
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self._add_entities = add_entities
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@property
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def name(self):
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"""Return the name of the sensor."""
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return self._name
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@property
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def data(self):
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"""Return the state attributes."""
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return self._fetched
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@property
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def available(self):
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"""Whether the fronius device is active."""
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return self._available
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async def async_update(self):
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"""Retrieve and update latest state."""
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try:
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values = await self._update()
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except FroniusError as err:
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# fronius devices are often powered by self-produced solar energy
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# and henced turned off at night.
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# Therefore we will not print multiple errors when connection fails
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if self._available:
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self._available = False
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_LOGGER.error("Failed to update: %s", err)
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return
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self._available = True # reset connection failure
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attributes = self._fetched
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# Copy data of current fronius device
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for key, entry in values.items():
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# If the data is directly a sensor
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if "value" in entry:
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attributes[key] = entry
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self._fetched = attributes
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# Add discovered value fields as sensors
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# because some fields are only sent temporarily
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new_sensors = []
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for key in attributes:
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if key not in self.sensors:
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self.sensors.add(key)
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_LOGGER.info("Discovered %s, adding as sensor", key)
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new_sensors.append(FroniusTemplateSensor(self, key))
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self._add_entities(new_sensors, True)
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# Schedule an update for all included sensors
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for sensor in self._registered_sensors:
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sensor.async_schedule_update_ha_state(True)
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async def _update(self) -> dict:
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"""Return values of interest."""
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@callback
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def register(self, sensor):
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"""Register child sensor for update subscriptions."""
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self._registered_sensors.add(sensor)
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return lambda: self._registered_sensors.remove(sensor)
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class FroniusInverterSystem(FroniusAdapter):
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"""Adapter for the fronius inverter with system scope."""
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async def _update(self):
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"""Get the values for the current state."""
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return await self.bridge.current_system_inverter_data()
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class FroniusInverterDevice(FroniusAdapter):
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"""Adapter for the fronius inverter with device scope."""
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async def _update(self):
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"""Get the values for the current state."""
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return await self.bridge.current_inverter_data(self._device)
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class FroniusStorage(FroniusAdapter):
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"""Adapter for the fronius battery storage."""
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async def _update(self):
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"""Get the values for the current state."""
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return await self.bridge.current_storage_data(self._device)
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class FroniusMeterSystem(FroniusAdapter):
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"""Adapter for the fronius meter with system scope."""
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async def _update(self):
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"""Get the values for the current state."""
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return await self.bridge.current_system_meter_data()
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class FroniusMeterDevice(FroniusAdapter):
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"""Adapter for the fronius meter with device scope."""
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async def _update(self):
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"""Get the values for the current state."""
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return await self.bridge.current_meter_data(self._device)
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class FroniusPowerFlow(FroniusAdapter):
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"""Adapter for the fronius power flow."""
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async def _update(self):
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"""Get the values for the current state."""
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return await self.bridge.current_power_flow()
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class FroniusLoggerInfo(FroniusAdapter):
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"""Adapter for the fronius power flow."""
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async def _update(self):
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"""Get the values for the current state."""
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return await self.bridge.current_logger_info()
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class FroniusTemplateSensor(SensorEntity):
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"""Sensor for the single values (e.g. pv power, ac power)."""
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def __init__(self, parent: FroniusAdapter, key: str) -> None:
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"""Initialize a singular value sensor."""
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self._key = key
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self._attr_name = f"{key.replace('_', ' ').capitalize()} {parent.name}"
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self._parent = parent
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for prefix, device_class in PREFIX_DEVICE_CLASS_MAPPING:
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if self._key.startswith(prefix):
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self._attr_device_class = device_class
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break
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for prefix, state_class in PREFIX_STATE_CLASS_MAPPING:
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if self._key.startswith(prefix):
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self._attr_state_class = state_class
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break
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@property
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def should_poll(self):
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"""Device should not be polled, returns False."""
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return False
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@property
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def available(self):
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"""Whether the fronius device is active."""
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return self._parent.available
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async def async_update(self):
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"""Update the internal state."""
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state = self._parent.data.get(self._key)
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self._attr_native_value = state.get("value")
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if isinstance(self._attr_native_value, float):
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self._attr_native_value = round(self._attr_native_value, 2)
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self._attr_native_unit_of_measurement = state.get("unit")
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async def async_added_to_hass(self):
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"""Register at parent component for updates."""
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self.async_on_remove(self._parent.register(self))
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def __hash__(self):
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"""Hash sensor by hashing its name."""
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return hash(self.name)
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