All entities (weather, battery, health, native Ecowitt) now report through a
single device under the existing {(DOMAIN,)} identifier, removing the separate
"Ecowitt {model}" device that appeared whenever Ecowitt was enabled. This
collapses the previous two-device layout (and the duplicate/untranslated native
Ecowitt sensors living on the second device) into one.
The device model reflects the running station type via _station_model():
"Ecowitt <model>" when Ecowitt is active (model learned from the payload's
`model` field and stored on runtime_data.ecowitt_model), else "WSLink", else
"PWS". Device identity is centralised in data.build_device_info() and reused by
every platform.
No device-registry migration is required: the identifier is unchanged; only the
model/grouping change. Full device unification under a renamed hub is deferred
to the rename round.
Tests: device-info assertions updated to the shared device across the entity
suites; new _station_model/build_device_info branch coverage in test_data.py;
received_ecowitt now asserts the learned model. 320 passed, 100% coverage.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
- C1: received_data / received_ecowitt_data return 503 (not 500) when the entry is
mid-reload (runtime_data gone); add_new_sensors / add_new_binary_sensors are
defensive no-ops in that window too.
- C2/C3: Windy and Pocasi reserve their next send window *before* the await, so
concurrent webhooks can no longer both pass the rate-limit check and double-send
(which could falsely trip the auto-disable threshold).
- C5: EcowittBridge.set_add_entities flushes unmapped sensors parsed before the
platform was ready (aioecowitt fires new_sensor_cb only once per key).
- C6: a forwarder auto-disabling itself from the hot path no longer forces a full
config-entry reload (update_listener now skips reload for live-read flags
SENSORS_TO_LOAD / WINDY_ENABLED / POCASI_CZ_ENABLED).
- C7: to_int accepts decimal-formatted integers ("180.0").
- C8: forwarders use dt_util.utcnow() (UTC-aware) instead of naive datetime.now().
Tests updated; 305 passing, 100% coverage; ruff + basedpyright clean.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
- Reuse existing `WeatherDataUpdateCoordinator` instance across reloads instead of
creating a new one; routes keep pointing to the same coordinator, so entities
stay subscribed and updates never silently drop
- `update_listener` now skips full reload when only `SENSORS_TO_LOAD` changes
(auto-discovery); avoids the "frozen UI" window caused by temporary platform unload
- Replaced direct `route._handler` mutation with a proper `Routes` dispatcher;
all aiohttp routes are registered once and an internal dispatcher decides which
handler is active — safe to switch at runtime without touching the router
- Fixed `self.config_entry` / `self.config` inconsistency in coordinator
- `BatteryBinarySensor` now carries correct `device_info` (same identifiers as
`WeatherSensor`) → single device card in UI instead of two
- Translations for binary sensors must live under `entity.binary_sensor.*`,
not `entity.sensor.*`
- Fixed all tests broken by new `register_path(hass, coordinator, coordinator_h, entry)` signature
- Updated `_RouterStub` to accept `name=` kwargs and return objects with `.method`
- Added `async post()` to `_RequestStub` stubs
- Aligned `Routes` tests with new `method:path` dispatch key format and `show_enabled()` output
- Replaced `WindyApiKeyError` with `WindyPasswordMissing` to match actual exceptions
- Updated `_FakeResponse` to use HTTP status codes instead of response text strings
- Patched `persistent_notification.create` in Windy push tests to avoid `SimpleNamespace` errors
- Integrate aioecowitt to parse incoming weather station payloads and map sensors to the SWS pipeline.
- Add a new webhook endpoint at /weatherhub/{webhook_id} with support for dynamic route resolution.
- Expand battery binary sensor definitions and implement logic for dynamic entity creation.
- Bump version to 2.0.0-pre1.
Replace manual isinstance checks and casts with py_typecheck.checked()
to validate hass and entry data and return early on errors. Simplify
add_new_sensors by unwrapping values, renaming vars, and passing the
coordinator to WeatherSensor
integration
- Introduce HealthDiagnosticSensor for device health status reporting
- Add new constants and data keys for health sensor integration
- Wire health_sensor module into sensor platform setup
- Refactor sensor descriptions to improve derived sensor handling
- Implement pytest fixtures and comprehensive tests covering:
- Config flows and options validation
- Data reception and authentication
- Sensor platform setup and dynamic sensor addition
- Push integration with Pocasi.cz and Windy API
- Route dispatching and error handling
- Utilities, conversions, and translation functions
- Add detailed architecture overview in __init__.py
- Introduce shared runtime keys in data.py to avoid key conflicts
- Implement dual route dispatcher for webhook endpoint selection
- Enhance sensor platform for dynamic sensor addition without reloads
- Rename battery level "unknown" to "drained" with updated icons
- Improve utils.py with centralized helpers for remapping and discovery
- Update translations and strings for consistency
Adds support for displaying indoor console and channel 2 battery levels as sensors.
Updates sensor logic to use a common list to determine icon representation
Fixes#74
Adds an outside battery sensor to the integration, providing information about the battery level of the outdoor sensor.
This includes:
- Mapping the `t1bat` WSLink item to the `OUTSIDE_BATTERY` sensor.
- Implementing logic to convert the battery level to a human-readable text representation and a corresponding icon.
- Updates precipitation to intensity and fixes data type of battery level
Includes new sensor connection status constants and mappings
Updates WeatherSensor to handle null data values
Switches temperature unit to Celsius for WSLink sensors
Refines heat and chill index calculations with unit conversions
- A new constant `WIND_AZIMUT` is added to allow creating a wind direction sensor that returns a text value from `UnitOfDir` instead of just a numeric degree value.
- The wind direction sensor entity now optionally creates both a numeric wind direction sensor using `WIND_DIR` and a text-based azimuth sensor using `WIND_AZIMUT`. If the numeric one is enabled, the text one will also be added.
So in summary, these changes improve the usability of wind data by adding a more human-readable text version alongside the existing numeric version.