Coverage went from 54 of 107 upload parameters to all 107, adding roughly 34
entities. New families: Type5 lightning, Type6 water leak (CH1-7), Type8
particulate matter, Type10 CO2 and Type11 CO, plus the parameters missing from
existing families - absolute pressure, feels-like temperature, the 10-minute
average wind speed, and the per-channel probe type.
Device classes follow Home Assistant's own list (PM25, PM10, AQI, CO2, CO,
DISTANCE, ATMOSPHERIC_PRESSURE, WIND_SPEED, and binary MOISTURE for leaks), so
the readings work with statistics and unit conversion without template helpers.
Batteries were the trap. The API annotates two incompatible conventions -
"(Normal=1, Low battery=0)" and "(0~5) remark: 5 is full" - and mixing them up is
silent, because a level battery read as a flag reports "not low" for every level
above empty. Eight new binary batteries (t5lsbat, t6c1-7bat) and three new level
batteries (t8bat, t10bat, t11bat) are classified from the document, and
tests/test_wslink_api_coverage.py pins each one to the wording it came from.
Water leak and battery use opposite conventions in the same family (leak 1 means
wet, battery 0 means low), so `on_value` moved into the description and one
entity class now serves both instead of two that differ by a comparison.
`t1cn` was in the API but wired to nothing, so a disconnected outdoor probe kept
publishing its last readings. Gating it required fixing the gate first: an absent
connection flag was treated as "disconnected", which would have blanked
temperature, wind and rain outright on any firmware that omits `t1cn`. Absence is
now treated as no information, and only an explicit non-1 drops the readings.
The probe type (`t234cXtp`) decides whether a channel's humidity reading is air
humidity or soil moisture, which are different device classes. It is resolved
once, when the entity is created, because Home Assistant records the device class
in the entity registry; swapping the physical probe means reinstalling.
Two parameters are handled with a documented caveat: `inbat` is the only battery
whose scale the API does not state and stays a 0/1 flag, and `t5lst` has no unit
(the vendor example uses 9999) so it is read as minutes with 9999 meaning
"nothing recorded".
Also replaces the now-stale TODO block in const.py - it listed exactly these
sensors as unimplemented - and documents the complete coverage in the README.
- 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>
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