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>
The suite predated the coordinator extraction and the typed runtime_data
migration: 5 modules failed to import and 18 tests failed.
- Import IncorrectDataError/WeatherDataUpdateCoordinator from .coordinator.
- Point received_data monkeypatch targets at custom_components.sws12500.coordinator.*
- Stub config entries with async_on_unload + runtime_data (SWSRuntimeData).
- Rewrite test_data, test_sensor_platform and test_integration_lifecycle off the
removed ENTRY_* hass.data keys onto runtime_data (route dispatcher reuse, ecowitt
POST route, no hass.data pop on unload, health first_refresh mocked).
- Update config_flow tests for the user menu (pws step) and the options menu
gaining wslink_port_setup.
- Fix VOCLevel.EXCELENT typo and stale t9 expectations (tuple battery list,
HCHO int coercion, connection-gated subset).
Result: 168 passed, 0 collection errors.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
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