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Three sensor entities per AL profile expose the curve's current outputs plus actual sun elevation as graphable numerics with SensorStateClass.MEASUREMENT, so HA's recorder + apexcharts-card chart them natively: - sensor.<profile>_output_brightness (% — from self._settings) - sensor.<profile>_output_color_temp (K — from self._settings) - sensor.<profile>_sun_elevation (° — from sun.sun.attributes.elevation) Architecture: master switch publishes computed outputs to hass.data[DOMAIN][entry_id]["outputs"] after each curve tick, then fires a per-entry dispatcher signal. Sensors subscribe and read from the cache. Single computation path, push-based updates, no polling. The existing master switch attributes (brightness_pct, color_temp_kelvin, synthetic sun_position in [-1,+1]) are unchanged — sensors are purely additive. Manifest bumped to 2.2.0-cdit.1 (minor; no breaking changes). Artifact realignment along the way: Q2 answer assumed sun_position was Sun2 elevation degrees, but reading color_and_brightness.py revealed it's a synthetic float in [-1,+1] derived from the brightness curve. Switched to pulling actual elevation from sun.sun (Decision 8 added), renamed sensor from sun_position to sun_elevation. Friendly names use asymmetric "Output" prefix to dodge collision with the adapt-brightness switch and Min/Max color-temp numbers. Remaining: group 6 (manual live-HA verification on homeassistant.onca-blenny.ts.net) — requires HACS deploy. 15 new sensor tests pass; full suite green (123/123). openspec validate --strict green. ruff clean on new files.
123 lines
4.3 KiB
Python
123 lines
4.3 KiB
Python
"""Sensor platform for the Adaptive Lighting integration (CDiT fork).
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Each config entry exposes three read-only output sensors that publish the
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curve's current target values + the actual sun elevation:
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- ``sensor.<profile>_output_brightness`` (% — from self._settings["brightness_pct"])
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- ``sensor.<profile>_output_color_temp`` (K — from self._settings["color_temp_kelvin"])
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- ``sensor.<profile>_sun_elevation`` (° — from sun.sun.attributes["elevation"])
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The sensors update via a per-entry dispatcher signal fired by the master
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switch after every curve evaluation. They are pure readers — no curve math
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runs in the sensor class. See ``add-output-sensors/design.md`` decisions
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2, 3, and 8.
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"""
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from __future__ import annotations
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import logging
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from typing import TYPE_CHECKING
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from homeassistant.components.sensor import SensorEntity, SensorStateClass
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from homeassistant.core import callback
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from homeassistant.helpers.device_registry import DeviceEntryType
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from homeassistant.helpers.dispatcher import async_dispatcher_connect
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from homeassistant.helpers.entity import DeviceInfo
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from .const import DOMAIN, OUTPUT_SENSORS, SIGNAL_OUTPUTS_UPDATED
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if TYPE_CHECKING:
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from homeassistant.config_entries import ConfigEntry
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from homeassistant.core import HomeAssistant
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from homeassistant.helpers.entity_platform import AddEntitiesCallback
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_LOGGER = logging.getLogger(__name__)
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async def async_setup_entry(
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hass: HomeAssistant,
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config_entry: ConfigEntry,
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async_add_entities: AddEntitiesCallback,
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) -> None:
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"""Create the three output sensors for this config entry."""
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entities = [
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AdaptiveOutputSensor(
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hass=hass,
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entry=config_entry,
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output_key=row["key"],
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display_name=row["name"],
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unit=row["unit"],
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icon=row["icon"],
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)
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for row in OUTPUT_SENSORS
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]
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async_add_entities(entities)
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class AdaptiveOutputSensor(SensorEntity):
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"""One read-only output value from an AL profile's curve tick."""
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_attr_has_entity_name = True
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_attr_should_poll = False
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_attr_state_class = SensorStateClass.MEASUREMENT
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_attr_device_class = None # explicit — no fitting HA device class
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def __init__(
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self,
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*,
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hass: HomeAssistant,
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entry: ConfigEntry,
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output_key: str,
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display_name: str,
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unit: str,
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icon: str,
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) -> None:
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"""Initialise a single output sensor entity."""
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self._hass = hass
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self._entry = entry
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self._output_key = output_key
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self._attr_name = display_name
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self._attr_translation_key = output_key
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self._attr_unique_id = f"{entry.entry_id}_{output_key}"
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self._attr_native_unit_of_measurement = unit
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self._attr_icon = icon
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# Renders as `unknown` until the first dispatcher signal arrives.
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# Do NOT use RestoreEntity — restored values would be stale (the
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# sun has moved); `unknown` for one tick is honest.
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self._attr_native_value = None
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@property
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def device_info(self) -> DeviceInfo:
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"""Group with the profile's switches and number entities."""
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profile_name = self._entry.data.get("name") or self._entry.title
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return DeviceInfo(
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identifiers={(DOMAIN, profile_name)},
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name=profile_name,
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entry_type=DeviceEntryType.SERVICE,
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)
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async def async_added_to_hass(self) -> None:
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"""Subscribe to the per-entry outputs-updated dispatcher signal."""
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await super().async_added_to_hass()
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signal = SIGNAL_OUTPUTS_UPDATED.format(entry_id=self._entry.entry_id)
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self.async_on_remove(
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async_dispatcher_connect(
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self._hass,
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signal,
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self._handle_outputs_updated,
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),
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)
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@callback
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def _handle_outputs_updated(self) -> None:
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"""Read this sensor's value from the cache and write state."""
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outputs = (
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self._hass.data.get(DOMAIN, {})
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.get(self._entry.entry_id, {})
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.get("outputs")
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)
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if not outputs:
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# Early signal (e.g., setup race) — leave state as unknown.
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return
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self._attr_native_value = outputs.get(self._output_key)
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self.async_write_ha_state()
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