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14 changed files with 1092 additions and 70 deletions

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@@ -1,5 +1,61 @@
# Changelog # Changelog
## 0.7.10 - 2026-06-16
- WebSocket-State-Changes aktualisieren einen internen Home-Assistant-State-
Cache und werten Aktoren direkt gegen diesen frischen Event-Zustand aus.
- Event-Auswertungen lösen keine REST-Statusabfrage mehr aus, bevor sie
aktive Aktoren schalten.
## 0.7.9 - 2026-06-15
- Event-basierte Vorhersagen verwenden den frischen Sensorzustand direkt aus
dem Home-Assistant-WebSocket-Event, damit Kontextwechsel ohne REST-Race sofort
bewertet und geschaltet werden können
- Regressionstest stellt sicher, dass ein Türsensor-Event trotz veraltetem
HA-Snapshot direkt `light.turn_on` auslöst
## 0.7.8 - 2026-06-15
- Home-Assistant-WebSocket-Listener deaktiviert den clientseitigen Keepalive-
Ping, damit stabile HA-Verbindungen nicht durch Ping-Timeouts ständig neu
aufgebaut werden
- Fallback-Auswertung läuft bei getrenntem WebSocket kurzfristig alle 5 Sekunden,
damit übernommene Aktoren nicht ohne Steuerung bleiben
## 0.7.7 - 2026-06-15
- WebSocket-State-Changes lesen jetzt das echte Home-Assistant-Eventformat
(`event.data.entity_id`), damit Kontextwechsel wie Türsensoren sofort
Vorhersagen und Schaltungen auslösen statt erst beim nächsten Statusabruf
## 0.7.6 - 2026-06-14
- Kontextvorschläge blenden zusätzlich Batterie-, Status-, Node-, Last-Seen-
und Basic-Entities aus, sofern sie nicht bewusst manuell ausgewählt wurden
## 0.7.5 - 2026-06-14
- Kontextvorschläge weiter geschärft: Standardliste zeigt nur gleiche Räume,
gemeinsame Geräte/Tokens oder echte globale Außenwerte
- Diagnosewerte wie MQTT-, WiFi-, Restart- und Connect-Zähler werden nicht mehr
als fachliche Kontextvorschläge angeboten
## 0.7.4 - 2026-06-14
- Kontext-Auswahl liefert jetzt aktorbezogene Vorschläge statt einer pauschalen
Roh-Liste aller Sensoren und Zustände
- Dashboard-Auswahl für Aktoren und Kontext nach Typ/Kategorie gruppiert und
durchsuchbar; lange Listen werden begrenzt statt mobil unbedienbar zu werden
- Manuelle Entity-ID-Eingabe ergänzt, damit relevante Sensoren auch ohne
Dropdown-Treffer gespeichert werden können
- Irrelevante System-/VPN-/pfSense-Sensoren tauchen bei Lichtaktoren ohne
fachlichen Bezug nicht mehr als Standardvorschläge auf
## 0.7.3 - 2026-06-14
- Automatische Kontextzuordnung ignoriert generische Bereiche wie `Monitoring`,
damit System-/Disk-/Überhitzungssensoren nicht fälschlich Lichtaktoren erklären
- Aktor-Auswahl auf tatsächlich sicher steuerbare Domains begrenzt:
`light`, `switch`, `cover`, `fan`, `humidifier`
- Neue manuelle Kontext-Zuordnung pro Aktor: Haupt-Messsensor optional setzen und
mehrere relevante Kontext-Entities wie PIR, Außenhelligkeit, Luftfeuchtigkeit
oder andere Lichtzustände auswählen
- Dashboard-Dropdown durch echtes Select plus Suche ersetzt; mobile Bedienung und
Aktor-Details enthalten Speichern/Neu-laden-Aktionen für manuelle Kontextwahl
## 0.7.2 - 2026-06-14 ## 0.7.2 - 2026-06-14
- Home-Assistant-Entity-Metadaten werden in Batches gelesen, damit große HA- - Home-Assistant-Entity-Metadaten werden in Batches gelesen, damit große HA-
Installationen nicht mehr am Template-Ausgabe-Limit scheitern Installationen nicht mehr am Template-Ausgabe-Limit scheitern

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@@ -1,5 +1,5 @@
name: SillyHome Next name: SillyHome Next
version: "0.7.2" version: "0.7.10"
slug: sillyhome_next slug: sillyhome_next
description: Lernt automatisch aus deinem Verhalten und steuert freigegebene Aktoren description: Lernt automatisch aus deinem Verhalten und steuert freigegebene Aktoren
url: http://192.168.6.31:3000/pino/sillyhome-next url: http://192.168.6.31:3000/pino/sillyhome-next

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@@ -13,6 +13,7 @@ from app.actuators.models import (
AssignmentSource, AssignmentSource,
LifecycleAuditEntry, LifecycleAuditEntry,
LifecycleStatus, LifecycleStatus,
ManualOverride,
ModelLifecycleState, ModelLifecycleState,
ReconciliationState, ReconciliationState,
model_id_for_actuator, model_id_for_actuator,
@@ -47,6 +48,7 @@ _STOPWORDS = frozenset(
"light", "light",
"licht", "licht",
"lichtschalter", "lichtschalter",
"monitoring",
"power", "power",
"sensor", "sensor",
"state", "state",
@@ -55,6 +57,7 @@ _STOPWORDS = frozenset(
"value", "value",
} }
) )
_GENERIC_AREA_NAMES = frozenset({"monitoring", "system", "technik"})
_NUMERIC_AUTO_ACCEPT_SCORE = 0.82 _NUMERIC_AUTO_ACCEPT_SCORE = 0.82
_NUMERIC_AUTO_ACCEPT_MIN_SCORE = 0.5 _NUMERIC_AUTO_ACCEPT_MIN_SCORE = 0.5
_NUMERIC_MIN_MARGIN = 0.18 _NUMERIC_MIN_MARGIN = 0.18
@@ -62,6 +65,45 @@ _CONTEXT_AUTO_ACCEPT_SCORE = 0.78
_CONTEXT_AUTO_ACCEPT_MIN_SCORE = 0.3 _CONTEXT_AUTO_ACCEPT_MIN_SCORE = 0.3
_MAX_CONTEXT_SELECTIONS = 5 _MAX_CONTEXT_SELECTIONS = 5
_AUDIT_LIMIT = 20 _AUDIT_LIMIT = 20
_MANUAL_CONTEXT_DOMAINS = frozenset({
"binary_sensor",
"climate",
"cover",
"device_tracker",
"fan",
"humidifier",
"light",
"person",
"sensor",
"switch",
"weather",
})
_CONTEXT_SUGGESTION_LIMIT = 120
_OUTDOOR_TOKENS = frozenset({"aussen", "außen", "outdoor", "garten", "terrasse", "balkon"})
_DIAGNOSTIC_TOKENS = frozenset({
"basic",
"battery",
"connect",
"count",
"diagnostic",
"firmware",
"gesehen",
"last",
"linkquality",
"knoten",
"knotens",
"mqtt",
"node",
"reason",
"restart",
"rssi",
"signal",
"ssid",
"status",
"uptime",
"wifi",
"zuletzt",
})
class ActuatorReconciliationService: class ActuatorReconciliationService:
@@ -88,11 +130,117 @@ class ActuatorReconciliationService:
def get_actuator(self, actuator_entity_id: str) -> ActuatorRecord: def get_actuator(self, actuator_entity_id: str) -> ActuatorRecord:
return self._store.get(actuator_entity_id) return self._store.get(actuator_entity_id)
def suggest_context_options(
self,
actuator_entity_id: str,
*,
limit: int = _CONTEXT_SUGGESTION_LIMIT,
) -> list[HaEntitySummary]:
entities = {entity.entity_id: entity for entity in self._ha_reader.read_entities()}
discovered = {entity.entity_id: entity for entity in self._ha_reader.discover()}
actuator = entities.get(actuator_entity_id)
if actuator is None:
raise KeyError("Aktuator-Konfiguration nicht gefunden.")
selected_ids = _selected_context_ids(self._store.get(actuator_entity_id))
ranked: list[tuple[float, str, HaEntitySummary]] = []
for entity in entities.values():
if entity.entity_id == actuator_entity_id or entity.domain not in _MANUAL_CONTEXT_DOMAINS:
continue
role = _manual_context_role(entity, discovered.get(entity.entity_id))
score, _ = _score_candidate(
actuator,
entity,
role,
context=role is not EntityRole.MEASUREMENT,
)
selected = entity.entity_id in selected_ids
if selected:
score = max(score, 1.0)
if not selected and (
_is_diagnostic_context(entity)
or not _has_context_relationship(actuator, entity)
):
continue
if not selected and score < 0.1:
continue
ranked.append((score, _context_sort_group(entity), entity))
ranked.sort(
key=lambda item: (
-item[0],
item[1],
item[2].area_name or "",
item[2].friendly_name or item[2].entity_id,
item[2].entity_id,
)
)
return [entity for _, _, entity in ranked[:limit]]
def delete_actuator(self, actuator_entity_id: str) -> None: def delete_actuator(self, actuator_entity_id: str) -> None:
model_id = model_id_for_actuator(actuator_entity_id) model_id = model_id_for_actuator(actuator_entity_id)
self._registry.archive(model_id) self._registry.archive(model_id)
self._store.delete(actuator_entity_id) self._store.delete(actuator_entity_id)
def set_manual_assignment(
self,
actuator_entity_id: str,
*,
numeric_entity_id: str | None,
context_entity_ids: list[str],
note: str | None = None,
) -> ActuatorRecord:
now = datetime.now(timezone.utc)
record = self._store.get(actuator_entity_id)
entities = {entity.entity_id: entity for entity in self._ha_reader.read_entities()}
actuator = entities.get(actuator_entity_id)
if actuator is None:
raise KeyError("Aktuator-Konfiguration nicht gefunden.")
selected_context_ids = list(dict.fromkeys(context_entity_ids))
selected_ids = [
entity_id
for entity_id in [numeric_entity_id, *selected_context_ids]
if entity_id
]
missing = [entity_id for entity_id in selected_ids if entity_id not in entities]
if missing:
raise ValueError(f"Unbekannte Home-Assistant-Entity: {', '.join(missing)}")
if actuator_entity_id in selected_ids:
raise ValueError("Der Aktor selbst kann nicht als Kontextsensor verwendet werden.")
override = ManualOverride(
numeric_entity_id=numeric_entity_id,
context_entity_ids=selected_context_ids,
updated_at=now,
note=note,
)
assignment = self._manual_assignment(override)
lifecycle = self._reconcile_lifecycle(
actuator=actuator,
assignment=assignment,
lifecycle=record.lifecycle.model_copy(update={"last_reconciled_at": now}),
now=now,
)
updated = record.model_copy(
update={
"assignment": assignment,
"manual_override": override,
"numeric_candidates": _merge_manual_candidates(
record.numeric_candidates,
entities,
[numeric_entity_id] if numeric_entity_id else [],
role=EntityRole.MEASUREMENT,
),
"context_candidates": _merge_manual_candidates(
record.context_candidates,
entities,
selected_context_ids,
role=EntityRole.CONTEXT,
),
"lifecycle": lifecycle,
"updated_at": now,
}
)
return self._store.upsert(updated)
def reconcile_all(self, trigger: str = "manual") -> ReconciliationState: def reconcile_all(self, trigger: str = "manual") -> ReconciliationState:
state = self._store.load_reconciliation_state().model_copy( state = self._store.load_reconciliation_state().model_copy(
update={ update={
@@ -198,11 +346,15 @@ class ActuatorReconciliationService:
), ),
context=True, context=True,
) )
assignment = self._select_assignment( assignment = (
self._manual_assignment(record.manual_override)
if record.manual_override is not None
else self._select_assignment(
actuator=actuator, actuator=actuator,
numeric_candidates=numeric_candidates, numeric_candidates=numeric_candidates,
context_candidates=context_candidates, context_candidates=context_candidates,
) )
)
lifecycle = self._reconcile_lifecycle( lifecycle = self._reconcile_lifecycle(
actuator=actuator, actuator=actuator,
assignment=assignment, assignment=assignment,
@@ -212,7 +364,7 @@ class ActuatorReconciliationService:
updated = record.model_copy( updated = record.model_copy(
update={ update={
"assignment": assignment, "assignment": assignment,
"manual_override": None, "manual_override": record.manual_override,
"numeric_candidates": numeric_candidates, "numeric_candidates": numeric_candidates,
"context_candidates": context_candidates, "context_candidates": context_candidates,
"lifecycle": lifecycle, "lifecycle": lifecycle,
@@ -228,6 +380,23 @@ class ActuatorReconciliationService:
) )
return updated return updated
@staticmethod
def _manual_assignment(override: ManualOverride) -> AssignmentSelection:
selected_context_ids = list(dict.fromkeys(override.context_entity_ids))
selected_count = len(selected_context_ids) + (1 if override.numeric_entity_id else 0)
return AssignmentSelection(
selected_numeric_entity_id=override.numeric_entity_id,
selected_context_entity_ids=selected_context_ids,
source=AssignmentSource.MANUAL,
confidence=1.0 if selected_count else 0.0,
review_required=selected_count == 0,
reason=(
f"Manuell festgelegt: {selected_count} Kontext-Entity(s) werden verwendet."
if selected_count
else "Manuelle Zuordnung enthält noch keine Kontext-Entities."
),
)
def _select_assignment( def _select_assignment(
self, self,
*, *,
@@ -507,6 +676,73 @@ def _filter_candidates(
return result return result
def _selected_context_ids(record: ActuatorRecord) -> set[str]:
result = set(record.assignment.selected_context_entity_ids)
if record.assignment.selected_numeric_entity_id:
result.add(record.assignment.selected_numeric_entity_id)
if record.manual_override is not None:
result.update(record.manual_override.context_entity_ids)
if record.manual_override.numeric_entity_id:
result.add(record.manual_override.numeric_entity_id)
return result
def _manual_context_role(
entity: HaEntitySummary,
discovered: DiscoveredEntity | None,
) -> EntityRole:
if discovered is not None and discovered.role is not EntityRole.UNSUPPORTED:
return discovered.role
if entity.domain == "sensor":
return EntityRole.MEASUREMENT
if entity.domain == "binary_sensor":
return EntityRole.BINARY_CONTEXT
return EntityRole.CONTEXT
def _context_sort_group(entity: HaEntitySummary) -> str:
device_class = entity.device_class or ""
if device_class in {"motion", "occupancy", "presence"}:
return "01_presence"
if device_class in {"illuminance"}:
return "02_brightness"
if device_class in {"door", "garage_door", "opening", "window"}:
return "03_opening"
if device_class in {"humidity", "moisture"}:
return "04_humidity"
if device_class in {"power", "energy", "current", "voltage"}:
return "05_power"
if entity.domain in {"light", "switch"}:
return "06_states"
return f"20_{entity.domain}_{device_class}"
def _is_diagnostic_context(entity: HaEntitySummary) -> bool:
tokens = _metadata_tokens(entity, include_stopwords=True)
return bool(tokens.intersection(_DIAGNOSTIC_TOKENS))
def _has_context_relationship(actuator: HaEntitySummary, entity: HaEntitySummary) -> bool:
if (
actuator.area_name
and entity.area_name
and actuator.area_name == entity.area_name
and actuator.area_name.lower() not in _GENERIC_AREA_NAMES
):
return True
if actuator.device_id and entity.device_id and actuator.device_id == entity.device_id:
return True
if actuator.device_name and entity.device_name and actuator.device_name == entity.device_name:
return True
if _metadata_tokens(actuator).intersection(_metadata_tokens(entity)):
return True
entity_tokens = _metadata_tokens(entity, include_stopwords=True)
return bool(
entity_tokens.intersection(_OUTDOOR_TOKENS)
and entity.device_class in {"illuminance", "humidity", "temperature"}
)
def _score_candidate( def _score_candidate(
actuator: HaEntitySummary, actuator: HaEntitySummary,
entity: HaEntitySummary, entity: HaEntitySummary,
@@ -522,7 +758,12 @@ def _score_candidate(
if overlap: if overlap:
score += min(0.4, 0.1 * len(overlap)) score += min(0.4, 0.1 * len(overlap))
evidence.append(f"Gemeinsame Tokens: {', '.join(overlap[:4])}") evidence.append(f"Gemeinsame Tokens: {', '.join(overlap[:4])}")
if actuator.area_name and entity.area_name and actuator.area_name == entity.area_name: if (
actuator.area_name
and entity.area_name
and actuator.area_name == entity.area_name
and actuator.area_name.lower() not in _GENERIC_AREA_NAMES
):
score += 0.35 score += 0.35
evidence.append(f"Gleicher Bereich: {actuator.area_name}") evidence.append(f"Gleicher Bereich: {actuator.area_name}")
if actuator.device_id and entity.device_id and actuator.device_id == entity.device_id: if actuator.device_id and entity.device_id and actuator.device_id == entity.device_id:
@@ -547,9 +788,59 @@ def _score_candidate(
if context and role is EntityRole.BINARY_CONTEXT: if context and role is EntityRole.BINARY_CONTEXT:
score += 0.05 score += 0.05
evidence.append("Binärer Kontextsensor bevorzugt für Zusatzkontext.") evidence.append("Binärer Kontextsensor bevorzugt für Zusatzkontext.")
if entity_tokens.intersection(_OUTDOOR_TOKENS) and entity.device_class in {
"illuminance",
"humidity",
"temperature",
}:
score += 0.1
evidence.append("Außenmesswert ist oft als übergreifender Kontext relevant.")
return round(min(score, 1.0), 4), evidence return round(min(score, 1.0), 4), evidence
def _merge_manual_candidates(
candidates: list[AssignmentCandidate],
entities: dict[str, HaEntitySummary],
selected_entity_ids: list[str],
*,
role: EntityRole,
) -> list[AssignmentCandidate]:
by_id = {candidate.entity_id: candidate for candidate in candidates}
for entity_id in selected_entity_ids:
existing = by_id.get(entity_id)
if existing is not None:
by_id[entity_id] = existing.model_copy(
update={
"auto_accepted": True,
"confidence": 1.0,
"evidence": [
*existing.evidence,
"Manuell vom Nutzer als relevant festgelegt.",
],
}
)
continue
entity = entities.get(entity_id)
if entity is None:
continue
by_id[entity_id] = AssignmentCandidate(
entity_id=entity.entity_id,
domain=entity.domain,
role=role,
device_class=entity.device_class,
state_class=entity.state_class,
unit_of_measurement=entity.unit_of_measurement,
friendly_name=entity.friendly_name,
area_name=entity.area_name,
device_name=entity.device_name,
score=1.0,
confidence=1.0,
auto_accepted=True,
evidence=["Manuell vom Nutzer als relevant festgelegt."],
)
return sorted(by_id.values(), key=lambda item: (-item.confidence, item.entity_id))
def _preferred_device_classes(domain: str, *, context: bool) -> frozenset[str]: def _preferred_device_classes(domain: str, *, context: bool) -> frozenset[str]:
if context: if context:
return frozenset({"door", "garage_door", "motion", "occupancy", "opening", "presence"}) return frozenset({"door", "garage_door", "motion", "occupancy", "opening", "presence"})
@@ -565,7 +856,7 @@ def _preferred_device_classes(domain: str, *, context: bool) -> frozenset[str]:
return frozenset(mapping.get(domain, {"power", "energy", "temperature"})) return frozenset(mapping.get(domain, {"power", "energy", "temperature"}))
def _metadata_tokens(entity: HaEntitySummary) -> set[str]: def _metadata_tokens(entity: HaEntitySummary, *, include_stopwords: bool = False) -> set[str]:
raw_values = [ raw_values = [
entity.entity_id, entity.entity_id,
entity.friendly_name, entity.friendly_name,
@@ -577,7 +868,7 @@ def _metadata_tokens(entity: HaEntitySummary) -> set[str]:
if value is None: if value is None:
continue continue
for token in _TOKEN_PATTERN.findall(value.lower().replace("_", " ")): for token in _TOKEN_PATTERN.findall(value.lower().replace("_", " ")):
if len(token) < 3 or token in _STOPWORDS: if len(token) < 3 or (not include_stopwords and token in _STOPWORDS):
continue continue
tokens.add(token) tokens.add(token)
return tokens return tokens

View File

@@ -32,6 +32,12 @@ class AutomationControlRequest(BaseModel):
enabled: bool enabled: bool
class ManualAssignmentRequest(BaseModel):
numeric_entity_id: str | None = Field(default=None, pattern=r"^[a-z0-9_]+\.[a-z0-9_]+$")
context_entity_ids: list[str] = Field(default_factory=list)
note: str | None = Field(default=None, max_length=500)
@router.get("/discovery", response_model=list[HaEntitySummary]) @router.get("/discovery", response_model=list[HaEntitySummary])
def discover_actuators(ha_reader: HaReader = Depends(get_ha_reader)) -> list[HaEntitySummary]: def discover_actuators(ha_reader: HaReader = Depends(get_ha_reader)) -> list[HaEntitySummary]:
entities = {entity.entity_id: entity for entity in ha_reader.read_entities()} entities = {entity.entity_id: entity for entity in ha_reader.read_entities()}
@@ -42,6 +48,19 @@ def discover_actuators(ha_reader: HaReader = Depends(get_ha_reader)) -> list[HaE
return [entities[entity_id] for entity_id in actuator_ids if entity_id in entities] return [entities[entity_id] for entity_id in actuator_ids if entity_id in entities]
@router.get("/context-options", response_model=list[HaEntitySummary])
def context_options(
request: Request,
actuator_entity_id: str | None = Query(default=None, pattern=r"^[a-z0-9_]+\.[a-z0-9_]+$"),
) -> list[HaEntitySummary]:
if actuator_entity_id is None:
return []
try:
return _service(request).suggest_context_options(actuator_entity_id)
except KeyError as exc:
raise HTTPException(status_code=404, detail=str(exc)) from exc
@router.get("", response_model=list[ActuatorRecord]) @router.get("", response_model=list[ActuatorRecord])
def list_configured(request: Request) -> list[ActuatorRecord]: def list_configured(request: Request) -> list[ActuatorRecord]:
return _service(request).list_configured() return _service(request).list_configured()
@@ -116,6 +135,27 @@ def set_activation(
raise HTTPException(status_code=409, detail=str(exc)) from exc raise HTTPException(status_code=409, detail=str(exc)) from exc
@router.post("/{actuator_entity_id}/assignment", response_model=ActuatorRecord)
def set_manual_assignment(
actuator_entity_id: str,
payload: ManualAssignmentRequest,
request: Request,
) -> ActuatorRecord:
try:
record = _service(request).set_manual_assignment(
actuator_entity_id,
numeric_entity_id=payload.numeric_entity_id,
context_entity_ids=payload.context_entity_ids,
note=payload.note,
)
_behavior(request).train(record.actuator_entity_id)
return _behavior(request).evaluate(record.actuator_entity_id)
except KeyError as exc:
raise HTTPException(status_code=404, detail=str(exc)) from exc
except ValueError as exc:
raise HTTPException(status_code=422, detail=str(exc)) from exc
@router.post( @router.post(
"/{actuator_entity_id}/related-automations/refresh", "/{actuator_entity_id}/related-automations/refresh",
response_model=ActuatorRecord, response_model=ActuatorRecord,

View File

@@ -1,6 +1,7 @@
from __future__ import annotations from __future__ import annotations
import logging import logging
from collections.abc import Sequence
from datetime import datetime, timedelta, timezone from datetime import datetime, timedelta, timezone
from zoneinfo import ZoneInfo from zoneinfo import ZoneInfo
@@ -18,6 +19,7 @@ from app.actuators.store import ActuatorStore
from app.config import Settings from app.config import Settings
from app.ha.exceptions import HaClientError from app.ha.exceptions import HaClientError
from app.ha.history import LogbookEntry, StateHistoryPoint, StateHistorySeries from app.ha.history import LogbookEntry, StateHistoryPoint, StateHistorySeries
from app.ha.models import HaEntitySummary
from app.ha.reader import HaReader from app.ha.reader import HaReader
_MAX_PATTERNS = 500 _MAX_PATTERNS = 500
@@ -187,11 +189,19 @@ class BehaviorEngine:
results.append(record) results.append(record)
return results return results
def evaluate(self, actuator_entity_id: str) -> ActuatorRecord: def evaluate(
self,
actuator_entity_id: str,
*,
context_state_overrides: dict[str, str | None] | None = None,
context_changed_at_overrides: dict[str, datetime | None] | None = None,
current_entities: Sequence[HaEntitySummary] | None = None,
) -> ActuatorRecord:
record = self._store.get(actuator_entity_id) record = self._store.get(actuator_entity_id)
now = datetime.now(timezone.utc) now = datetime.now(timezone.utc)
if current_entities is None:
try: try:
entities = {entity.entity_id: entity for entity in self._ha_reader.read_entities()} current_entities = self._ha_reader.read_entities()
except HaClientError as exc: except HaClientError as exc:
logger.warning("Current HA state unavailable for %s: %s", actuator_entity_id, exc) logger.warning("Current HA state unavailable for %s: %s", actuator_entity_id, exc)
return self._save_behavior( return self._save_behavior(
@@ -204,6 +214,7 @@ class BehaviorEngine:
} }
), ),
) )
entities = {entity.entity_id: entity for entity in current_entities}
actuator = entities.get(actuator_entity_id) actuator = entities.get(actuator_entity_id)
if actuator is None: if actuator is None:
return self._save_behavior( return self._save_behavior(
@@ -230,6 +241,22 @@ class BehaviorEngine:
entity_id: entities[entity_id].last_changed entity_id: entities[entity_id].last_changed
for entity_id in current_context for entity_id in current_context
} }
selected_context_ids = {
entity_id
for entity_id in (
[
record.assignment.selected_numeric_entity_id,
*record.assignment.selected_context_entity_ids,
]
)
if entity_id
}
for entity_id, state in (context_state_overrides or {}).items():
if entity_id in selected_context_ids and state is not None:
current_context[entity_id] = state
for entity_id, changed_at in (context_changed_at_overrides or {}).items():
if entity_id in current_context:
current_context_changed_at[entity_id] = changed_at or now
prediction = predict_behavior( prediction = predict_behavior(
record.behavior.patterns, record.behavior.patterns,
current_context=current_context, current_context=current_context,
@@ -608,20 +635,30 @@ class BehaviorEngine:
) )
return self._store.upsert(updated) return self._store.upsert(updated)
def handle_state_change(self, entity_id: str, new_state: dict[str, object] | None) -> None: def handle_state_change(
self,
entity_id: str,
new_state: dict[str, object] | None,
*,
current_entities: Sequence[HaEntitySummary] | None = None,
) -> None:
"""Wird bei jedem HA-State-Change aufgerufen und löst sofortige Vorhersage aus. """Wird bei jedem HA-State-Change aufgerufen und löst sofortige Vorhersage aus.
- Wenn entity_id ein Aktor ist: evaluate() direkt. - Wenn entity_id ein Aktor ist: evaluate() direkt.
- Wenn entity_id ein Kontext-Entity ist: alle betroffenen Aktoren evaluieren. - Wenn entity_id ein Kontext-Entity ist: alle betroffenen Aktoren evaluieren.
- Wenn current_entities gesetzt ist, kommt die Auswertung direkt aus dem
WebSocket-State-Cache statt aus einer frischen REST-Abfrage.
""" """
# Aktor direkt evaluieren # Aktor direkt evaluieren
for record in self._store.list(): for record in self._store.list():
if record.actuator_entity_id == entity_id: if record.actuator_entity_id == entity_id:
try: try:
self.evaluate(record.actuator_entity_id) self.evaluate(record.actuator_entity_id, current_entities=current_entities)
except Exception: except Exception:
logger.exception("Event-basierte Vorhersage fehlgeschlagen für %s", record.actuator_entity_id) logger.exception("Event-basierte Vorhersage fehlgeschlagen für %s", record.actuator_entity_id)
return return
event_state = _event_state(new_state)
event_changed_at = _event_changed_at(new_state) or datetime.now(timezone.utc)
# Kontext-Entity: alle Aktoren finden, die diesen Kontext nutzen # Kontext-Entity: alle Aktoren finden, die diesen Kontext nutzen
affected_actuators = [ affected_actuators = [
record.actuator_entity_id record.actuator_entity_id
@@ -633,11 +670,38 @@ class BehaviorEngine:
] ]
for actuator_entity_id in affected_actuators: for actuator_entity_id in affected_actuators:
try: try:
self.evaluate(actuator_entity_id) self.evaluate(
actuator_entity_id,
context_state_overrides={entity_id: event_state},
context_changed_at_overrides={entity_id: event_changed_at},
current_entities=current_entities,
)
except Exception: except Exception:
logger.exception("Event-basierte Vorhersage fehlgeschlagen für %s", actuator_entity_id) logger.exception("Event-basierte Vorhersage fehlgeschlagen für %s", actuator_entity_id)
def _event_state(new_state: dict[str, object] | None) -> str | None:
if not isinstance(new_state, dict):
return None
state = new_state.get("state")
return state if isinstance(state, str) else None
def _event_changed_at(new_state: dict[str, object] | None) -> datetime | None:
if not isinstance(new_state, dict):
return None
value = new_state.get("last_changed") or new_state.get("last_updated")
if not isinstance(value, str):
return None
try:
parsed = datetime.fromisoformat(value.replace("Z", "+00:00"))
except ValueError:
return None
if parsed.tzinfo is None:
return parsed.replace(tzinfo=timezone.utc)
return parsed
def predict_behavior( def predict_behavior(
patterns: list[BehaviorPattern], patterns: list[BehaviorPattern],
*, *,

View File

@@ -82,18 +82,11 @@ _BINARY_CONTEXT_CLASSES = frozenset({
"window", "window",
}) })
_ACTUATOR_DOMAINS = frozenset({ _ACTUATOR_DOMAINS = frozenset({
"button",
"climate",
"cover", "cover",
"fan", "fan",
"humidifier", "humidifier",
"light", "light",
"lock",
"scene",
"select",
"siren",
"switch", "switch",
"valve",
}) })
_CONTEXT_DOMAINS = frozenset({"device_tracker", "person", "sun", "weather", "zone"}) _CONTEXT_DOMAINS = frozenset({"device_tracker", "person", "sun", "weather", "zone"})
_LEARNABLE_CONTEXT_DOMAINS = frozenset({"device_tracker", "person", "weather"}) _LEARNABLE_CONTEXT_DOMAINS = frozenset({"device_tracker", "person", "weather"})

View File

@@ -3,6 +3,7 @@ import json
import logging import logging
from contextlib import asynccontextmanager, suppress from contextlib import asynccontextmanager, suppress
from collections.abc import AsyncIterator from collections.abc import AsyncIterator
from datetime import datetime, timezone
from pathlib import Path from pathlib import Path
from typing import cast from typing import cast
@@ -19,6 +20,7 @@ from app.behavior.engine import BehaviorEngine
from app.config import load_settings from app.config import load_settings
from app.core.exception_handlers import register_exception_handlers from app.core.exception_handlers import register_exception_handlers
from app.ha.client import HaClient, HaClientSettings from app.ha.client import HaClient, HaClientSettings
from app.ha.models import HaEntitySummary
from app.ha.reader import HaReader from app.ha.reader import HaReader
from app.ml.registry.model_registry import ModelRegistry from app.ml.registry.model_registry import ModelRegistry
from backend.routes.ml import init_ml_routes from backend.routes.ml import init_ml_routes
@@ -100,7 +102,7 @@ async def lifespan(app: FastAPI) -> AsyncIterator[None]:
app = FastAPI( app = FastAPI(
title="SillyHome Next API", title="SillyHome Next API",
description="Lokales Smart-Home-Intelligenzsystem für Home Assistant.", description="Lokales Smart-Home-Intelligenzsystem für Home Assistant.",
version="0.7.2", version="0.7.10",
lifespan=lifespan, lifespan=lifespan,
) )
app.state.settings = load_settings() app.state.settings = load_settings()
@@ -155,14 +157,20 @@ async def _ha_event_listener(app: FastAPI, client: HaClient) -> None:
"""Hört auf Home-Assistant-Websocket-Events und löst sofortige Vorhersagen aus.""" """Hört auf Home-Assistant-Websocket-Events und löst sofortige Vorhersagen aus."""
settings = app.state.settings settings = app.state.settings
engine = app.state.behavior_engine engine = app.state.behavior_engine
ha_reader = getattr(app.state, "ha_reader", None)
store = app.state.actuator_store store = app.state.actuator_store
if not isinstance(engine, BehaviorEngine) or not isinstance(store, ActuatorStore): if (
not isinstance(engine, BehaviorEngine)
or not isinstance(store, ActuatorStore)
or not isinstance(ha_reader, HaReader)
):
logger.error("BehaviorEngine oder ActuatorStore nicht initialisiert") logger.error("BehaviorEngine oder ActuatorStore nicht initialisiert")
ws_status = getattr(app.state, "ws_status", None) ws_status = getattr(app.state, "ws_status", None)
if ws_status is not None: if ws_status is not None:
ws_status.status = "error" ws_status.status = "error"
ws_status.error = "BehaviorEngine oder ActuatorStore nicht initialisiert" ws_status.error = "BehaviorEngine oder ActuatorStore nicht initialisiert"
return return
state_cache: dict[str, HaEntitySummary] = {}
ha_url = str(settings.ha_url).rstrip("/") ha_url = str(settings.ha_url).rstrip("/")
ws_url = ha_url.replace("http://", "ws://").replace("https://", "wss://") + "/api/websocket" ws_url = ha_url.replace("http://", "ws://").replace("https://", "wss://") + "/api/websocket"
auth_token = cast(str, settings.ha_token) auth_token = cast(str, settings.ha_token)
@@ -171,7 +179,7 @@ async def _ha_event_listener(app: FastAPI, client: HaClient) -> None:
if ws_status is not None: if ws_status is not None:
ws_status.status = "connecting" ws_status.status = "connecting"
try: try:
async with websockets.connect(ws_url) as websocket: async with websockets.connect(ws_url, ping_interval=None) as websocket:
auth_required_msg = await websocket.recv() auth_required_msg = await websocket.recv()
auth_required_data = json.loads(auth_required_msg) auth_required_data = json.loads(auth_required_msg)
if auth_required_data.get("type") != "auth_required": if auth_required_data.get("type") != "auth_required":
@@ -194,6 +202,7 @@ async def _ha_event_listener(app: FastAPI, client: HaClient) -> None:
continue continue
logger.info("WebSocket-Verbindung zu Home Assistant hergestellt") logger.info("WebSocket-Verbindung zu Home Assistant hergestellt")
state_cache = await asyncio.to_thread(_load_ha_state_cache, ha_reader)
if ws_status is not None: if ws_status is not None:
ws_status.status = "connected" ws_status.status = "connected"
ws_status.error = None ws_status.error = None
@@ -213,12 +222,23 @@ async def _ha_event_listener(app: FastAPI, client: HaClient) -> None:
event = data.get("event", {}) event = data.get("event", {})
if event.get("event_type") != "state_changed": if event.get("event_type") != "state_changed":
continue continue
entity_id = event.get("entity_id") event_data = event.get("data", {})
if not isinstance(event_data, dict):
logger.warning("State-Changed-Event ohne gültige Daten empfangen")
continue
entity_id = event_data.get("entity_id")
if not entity_id: if not entity_id:
continue continue
new_state = event_data.get("new_state")
_update_ha_state_cache(state_cache, entity_id, new_state)
# Prüfe, ob Entity ein Aktor oder relevanter Kontext ist # Prüfe, ob Entity ein Aktor oder relevanter Kontext ist
# Sofortige Vorhersage für betroffene Aktoren auslösen # Sofortige Vorhersage für betroffene Aktoren auslösen
await asyncio.to_thread(engine.handle_state_change, entity_id, event.get("new_state")) await asyncio.to_thread(
engine.handle_state_change,
entity_id,
new_state,
current_entities=list(state_cache.values()),
)
except json.JSONDecodeError: except json.JSONDecodeError:
logger.warning("Ungültige JSON-Nachricht von HA-WebSocket") logger.warning("Ungültige JSON-Nachricht von HA-WebSocket")
except Exception as exc: except Exception as exc:
@@ -244,7 +264,13 @@ async def _fallback_prediction(app: FastAPI) -> None:
Dies verhindert kompletten Ausfall der Vorhersagen bei Netzwerkproblemen. Dies verhindert kompletten Ausfall der Vorhersagen bei Netzwerkproblemen.
""" """
while True: while True:
await asyncio.sleep(app.state.settings.prediction_interval_seconds) ws_status = getattr(app.state, "ws_status", None)
websocket_connected = ws_status is not None and ws_status.status == "connected"
await asyncio.sleep(
app.state.settings.prediction_interval_seconds
if websocket_connected
else min(5, app.state.settings.prediction_interval_seconds)
)
# Nur ausführen, wenn WebSocket nicht verbunden ist # Nur ausführen, wenn WebSocket nicht verbunden ist
ws_status = getattr(app.state, "ws_status", None) ws_status = getattr(app.state, "ws_status", None)
if ws_status is None or ws_status.status != "connected": if ws_status is None or ws_status.status != "connected":
@@ -255,3 +281,67 @@ async def _fallback_prediction(app: FastAPI) -> None:
ws_status.status if ws_status else "unavailable", ws_status.status if ws_status else "unavailable",
) )
await asyncio.to_thread(engine.evaluate_all) await asyncio.to_thread(engine.evaluate_all)
def _load_ha_state_cache(reader: HaReader) -> dict[str, HaEntitySummary]:
return {entity.entity_id: entity for entity in reader.read_entities()}
def _update_ha_state_cache(
state_cache: dict[str, HaEntitySummary],
entity_id: str,
new_state: object,
) -> None:
if not isinstance(new_state, dict):
state_cache.pop(entity_id, None)
return
state_cache[entity_id] = _ha_entity_from_event(
entity_id,
new_state,
state_cache.get(entity_id),
)
def _ha_entity_from_event(
entity_id: str,
new_state: dict[str, object],
previous: HaEntitySummary | None,
) -> HaEntitySummary:
attributes = new_state.get("attributes")
attr = attributes if isinstance(attributes, dict) else {}
state_class = _optional_event_string(attr.get("state_class"))
device_class = _optional_event_string(attr.get("device_class"))
unit_of_measurement = _optional_event_string(attr.get("unit_of_measurement"))
friendly_name = _optional_event_string(attr.get("friendly_name"))
return HaEntitySummary(
entity_id=entity_id,
domain=entity_id.split(".", 1)[0],
state=_optional_event_string(new_state.get("state")),
last_changed=_event_datetime(new_state.get("last_changed"))
or _event_datetime(new_state.get("last_updated")),
state_class=state_class or (previous.state_class if previous else None),
device_class=device_class or (previous.device_class if previous else None),
unit_of_measurement=unit_of_measurement
or (previous.unit_of_measurement if previous else None),
friendly_name=friendly_name or (previous.friendly_name if previous else None),
area_id=previous.area_id if previous else None,
area_name=previous.area_name if previous else None,
device_id=previous.device_id if previous else None,
device_name=previous.device_name if previous else None,
)
def _optional_event_string(value: object) -> str | None:
return value if isinstance(value, str) else None
def _event_datetime(value: object) -> datetime | None:
if not isinstance(value, str):
return None
try:
parsed = datetime.fromisoformat(value.replace("Z", "+00:00"))
except ValueError:
return None
if parsed.tzinfo is None:
return parsed.replace(tzinfo=timezone.utc)
return parsed

View File

@@ -26,6 +26,7 @@
.bad { color: #ff8f8f; } .bad { color: #ff8f8f; }
label { display: block; margin: 9px 0 4px; color: #b9c9d6; } label { display: block; margin: 9px 0 4px; color: #b9c9d6; }
select,input,button { box-sizing: border-box; width: 100%; border-radius: 10px; border: 1px solid #3b4b5b; padding: 12px; background: #101820; color: #fff; font:inherit; } select,input,button { box-sizing: border-box; width: 100%; border-radius: 10px; border: 1px solid #3b4b5b; padding: 12px; background: #101820; color: #fff; font:inherit; }
select[multiple] { min-height:190px; }
button { min-height:44px; margin-top: 10px; background: #23715b; border: 0; font-weight: 700; cursor: pointer; } button { min-height:44px; margin-top: 10px; background: #23715b; border: 0; font-weight: 700; cursor: pointer; }
button.secondary { background: #37495c; } button.secondary { background: #37495c; }
button.danger { background: #7b3434; } button.danger { background: #7b3434; }
@@ -49,6 +50,11 @@
.actions { display:flex; flex-wrap:wrap; gap:8px; margin-top:10px; } .actions { display:flex; flex-wrap:wrap; gap:8px; margin-top:10px; }
.actions button { flex:1 1 180px; margin-top:0; } .actions button { flex:1 1 180px; margin-top:0; }
.detail-header { display:flex; justify-content:space-between; gap:12px; align-items:flex-start; flex-wrap:wrap; } .detail-header { display:flex; justify-content:space-between; gap:12px; align-items:flex-start; flex-wrap:wrap; }
.manual-context { margin-top:14px; background:#111a23; border:1px solid #31404d; border-radius:14px; padding:14px; }
.inline-controls { display:grid; grid-template-columns:repeat(auto-fit,minmax(160px,1fr)); gap:8px; margin:8px 0; }
.manual-entry { min-height:80px; resize:vertical; }
textarea { box-sizing:border-box; width:100%; border-radius:10px; border:1px solid #3b4b5b; padding:12px; background:#101820; color:#fff; font:inherit; }
optgroup { color:#cfe0ec; background:#101820; }
code { color:#cfe0ec; overflow-wrap:anywhere; } code { color:#cfe0ec; overflow-wrap:anywhere; }
@media (max-width: 760px) { @media (max-width: 760px) {
header { padding:18px 14px; } header { padding:18px 14px; }
@@ -121,6 +127,27 @@
<label for="actuator-input">Entitätsname oder Gerät aus Home Assistant</label> <label for="actuator-input">Entitätsname oder Gerät aus Home Assistant</label>
<input id="actuator-input" list="actuator-options" placeholder="z. B. light.licht_abstellraum" autocomplete="off"> <input id="actuator-input" list="actuator-options" placeholder="z. B. light.licht_abstellraum" autocomplete="off">
<datalist id="actuator-options"></datalist> <datalist id="actuator-options"></datalist>
<div class="inline-controls">
<div>
<label for="actuator-domain-filter">Typ</label>
<select id="actuator-domain-filter" onchange="renderActuatorSelect()">
<option value="">Alle steuerbaren Typen</option>
<option value="light">Lichter</option>
<option value="switch">Schalter / Helper</option>
<option value="cover">Rollläden / Cover</option>
<option value="fan">Lüftung / Ventilatoren</option>
<option value="humidifier">Befeuchter / Entfeuchter</option>
</select>
</div>
<div>
<label for="actuator-search">Liste durchsuchen</label>
<input id="actuator-search" placeholder="Raum, Gerät oder Entity" oninput="renderActuatorSelect()" autocomplete="off">
</div>
</div>
<label for="actuator-select">Oder aus Liste wählen</label>
<select id="actuator-select" onchange="selectActuatorFromList()">
<option value="">Geräteliste wird geladen ...</option>
</select>
<button onclick="configureActuator()">Gerät hinzufügen und Beobachtung starten</button> <button onclick="configureActuator()">Gerät hinzufügen und Beobachtung starten</button>
<p id="actuator-config-result" class="muted">Noch kein Aktor ausgewählt.</p> <p id="actuator-config-result" class="muted">Noch kein Aktor ausgewählt.</p>
</section> </section>
@@ -145,6 +172,9 @@ const escapeHtml = value => String(value ?? "")
.replaceAll('"', "&quot;") .replaceAll('"', "&quot;")
.replaceAll("'", "&#039;"); .replaceAll("'", "&#039;");
let currentActuatorId = null; let currentActuatorId = null;
let actuatorChoices = [];
let contextOptions = [];
let manualContextState = {options: [], selected: new Set()};
async function api(path, options = {}) { async function api(path, options = {}) {
const response = await fetch(path, {headers: {"Content-Type": "application/json"}, ...options}); const response = await fetch(path, {headers: {"Content-Type": "application/json"}, ...options});
@@ -186,6 +216,61 @@ function predictionLabel(record) {
: "Keine fällige Aktion"; : "Keine fällige Aktion";
} }
function entityLabel(entity) {
const area = entity.area_name || "Ohne Bereich";
const name = entity.friendly_name || entity.entity_id;
return `${area} - ${name} (${entity.entity_id})`;
}
function normalizedSearch(value) {
return String(value || "").toLowerCase().replaceAll("_", " ");
}
function matchesSearch(entity, query) {
if (!query) return true;
return normalizedSearch([
entity.entity_id,
entity.friendly_name,
entity.area_name,
entity.device_name,
entity.device_class,
entity.domain,
].filter(Boolean).join(" ")).includes(query);
}
function categoryForEntity(entity) {
const cls = entity.device_class || "";
if (entity.domain === "light") return "Lichtzustände";
if (entity.domain === "switch") return "Schalter / Helper";
if (["motion", "occupancy", "presence"].includes(cls)) return "PIR / Präsenz";
if (["illuminance"].includes(cls)) return "Helligkeit";
if (["door", "garage_door", "opening", "window"].includes(cls)) return "Tür / Fenster";
if (["humidity", "moisture"].includes(cls)) return "Luftfeuchtigkeit";
if (["temperature"].includes(cls)) return "Temperatur";
if (["power", "energy", "current", "voltage"].includes(cls)) return "Strom / Energie";
if (entity.domain === "binary_sensor") return "Binäre Sensoren";
if (entity.domain === "sensor") return "Weitere Messsensoren";
return "Weitere Zustände";
}
function optionGroups(entities, selectedIds = new Set()) {
const groups = new Map();
for (const entity of entities) {
const category = categoryForEntity(entity);
if (!groups.has(category)) groups.set(category, []);
groups.get(category).push(entity);
}
return Array.from(groups.entries()).map(([label, items]) => `
<optgroup label="${escapeHtml(label)}">
${items.map(entity => `
<option value="${escapeHtml(entity.entity_id)}" ${selectedIds.has(entity.entity_id) ? "selected" : ""}>
${escapeHtml(entityLabel(entity))}
</option>
`).join("")}
</optgroup>
`).join("");
}
async function loadOverview() { async function loadOverview() {
const status = document.getElementById("status"); const status = document.getElementById("status");
const chips = document.getElementById("status-chips"); const chips = document.getElementById("status-chips");
@@ -214,23 +299,101 @@ async function loadOverview() {
async function loadActuatorDiscovery() { async function loadActuatorDiscovery() {
const options = document.getElementById("actuator-options"); const options = document.getElementById("actuator-options");
const select = document.getElementById("actuator-select");
try { try {
const [available, configured] = await Promise.all([ const [available, configured] = await Promise.all([
api("v1/actuators/discovery"), api("v1/actuators/discovery"),
api("v1/actuators"), api("v1/actuators"),
]); ]);
const configuredIds = new Set(configured.map(record => record.actuator_entity_id)); const configuredIds = new Set(configured.map(record => record.actuator_entity_id));
const choices = available.filter(entity => !configuredIds.has(entity.entity_id)); actuatorChoices = available.filter(entity => !configuredIds.has(entity.entity_id));
options.innerHTML = choices.map(entity => options.innerHTML = actuatorChoices.slice(0, 120).map(entity =>
`<option value="${escapeHtml(entity.entity_id)}">${escapeHtml(entity.friendly_name || entity.entity_id)}${entity.area_name ? ` (${escapeHtml(entity.area_name)})` : ""}</option>` `<option value="${escapeHtml(entity.entity_id)}">${escapeHtml(entity.friendly_name || entity.entity_id)}${entity.area_name ? ` (${escapeHtml(entity.area_name)})` : ""}</option>`
).join(""); ).join("");
renderActuatorSelect();
} catch (error) { } catch (error) {
options.innerHTML = ""; options.innerHTML = "";
select.innerHTML = `<option value="">Geräteliste konnte nicht geladen werden</option>`;
} }
} }
function actuatorGroupLabel(domain) {
const labels = {
light: "Lichter",
switch: "Schalter / Helper",
cover: "Rollläden / Cover",
fan: "Lüftung / Ventilatoren",
humidifier: "Befeuchter / Entfeuchter",
};
return labels[domain] || domain;
}
function renderActuatorSelect() {
const select = document.getElementById("actuator-select");
if (!select) return;
const domain = document.getElementById("actuator-domain-filter")?.value || "";
const query = normalizedSearch(document.getElementById("actuator-search")?.value || "");
const filtered = actuatorChoices
.filter(entity => !domain || entity.domain === domain)
.filter(entity => matchesSearch(entity, query))
.slice(0, 120);
const domains = [...new Set(filtered.map(entity => entity.domain))].sort();
select.innerHTML = [
`<option value="">${filtered.length ? "Gerät auswählen ..." : "Keine passenden Geräte gefunden"}</option>`,
...domains.map(group => `
<optgroup label="${escapeHtml(actuatorGroupLabel(group))}">
${filtered
.filter(entity => entity.domain === group)
.map(entity => `<option value="${escapeHtml(entity.entity_id)}">${escapeHtml(entityLabel(entity))}</option>`)
.join("")}
</optgroup>
`),
].join("");
}
async function loadContextOptions(actuatorId) {
try {
contextOptions = await api(`v1/actuators/context-options?actuator_entity_id=${encodeURIComponent(actuatorId)}`);
} catch (error) {
contextOptions = [];
}
}
function selectActuatorFromList() {
const value = document.getElementById("actuator-select").value;
if (value) document.getElementById("actuator-input").value = value;
}
function renderManualContextSelect() {
const select = document.getElementById("manual-context-select");
if (!select) return;
const category = document.getElementById("manual-context-category")?.value || "";
const query = normalizedSearch(document.getElementById("manual-context-filter")?.value || "");
const selectedNow = new Set([
...manualContextState.selected,
...Array.from(select.selectedOptions).map(option => option.value),
]);
const filtered = manualContextState.options
.filter(entity => !category || categoryForEntity(entity) === category)
.filter(entity => matchesSearch(entity, query))
.slice(0, 80);
select.innerHTML = filtered.length
? optionGroups(filtered, selectedNow)
: `<option value="">Keine passenden Vorschläge</option>`;
}
function parseEntityIds(value) {
return String(value || "")
.split(/[\s,;]+/)
.map(item => item.trim())
.filter(Boolean);
}
async function configureActuator() { async function configureActuator() {
const actuatorId = document.getElementById("actuator-input").value.trim(); const actuatorId = (
document.getElementById("actuator-input").value.trim()
|| document.getElementById("actuator-select").value.trim()
);
const result = document.getElementById("actuator-config-result"); const result = document.getElementById("actuator-config-result");
if (!actuatorId) return; if (!actuatorId) return;
result.textContent = "Kontext wird automatisch analysiert ..."; result.textContent = "Kontext wird automatisch analysiert ...";
@@ -296,6 +459,7 @@ async function showActuator(actuatorId, evaluationMessage = "") {
} catch (_) { } catch (_) {
record = await api(`v1/actuators/${encodeURIComponent(actuatorId)}`); record = await api(`v1/actuators/${encodeURIComponent(actuatorId)}`);
} }
await loadContextOptions(actuatorId);
const contexts = [ const contexts = [
record.assignment.selected_numeric_entity_id, record.assignment.selected_numeric_entity_id,
...record.assignment.selected_context_entity_ids, ...record.assignment.selected_context_entity_ids,
@@ -309,6 +473,55 @@ async function showActuator(actuatorId, evaluationMessage = "") {
pattern => pattern.source === "automation", pattern => pattern.source === "automation",
).length; ).length;
const relatedAutomations = record.behavior.related_automations || []; const relatedAutomations = record.behavior.related_automations || [];
const manualContextIds = new Set(record.assignment.selected_context_entity_ids || []);
const numericOptions = contextOptions.filter(entity => entity.domain === "sensor");
const suggestedIds = new Set(contextOptions.map(entity => entity.entity_id));
const manualOnlyIds = [
record.assignment.selected_numeric_entity_id,
...manualContextIds,
].filter(entityId => entityId && !suggestedIds.has(entityId));
const contextCategories = [...new Set(contextOptions
.filter(entity => entity.entity_id !== record.actuator_entity_id)
.map(categoryForEntity))]
.sort();
manualContextState = {
options: contextOptions.filter(entity => entity.entity_id !== record.actuator_entity_id),
selected: manualContextIds,
};
const manualAssignment = `
<div class="manual-context">
<h3>Kontext selbst festlegen</h3>
<p class="muted">Die Vorschläge sind aktorbezogen vorsortiert. Wenn etwas fehlt, trage die Entity-ID unten manuell ein, z. B. PIR, Helligkeit außen, Luftfeuchtigkeit oder Lichtzustände.</p>
<label for="manual-numeric-select">Optionaler Haupt-Messsensor</label>
<select id="manual-numeric-select">
<option value="">Keinen numerischen Hauptsensor verwenden</option>
${optionGroups(numericOptions, new Set([record.assignment.selected_numeric_entity_id].filter(Boolean)))}
</select>
<div class="inline-controls">
<div>
<label for="manual-context-category">Kategorie</label>
<select id="manual-context-category" onchange="renderManualContextSelect()">
<option value="">Alle relevanten Vorschläge</option>
${contextCategories.map(category => `<option value="${escapeHtml(category)}">${escapeHtml(category)}</option>`).join("")}
</select>
</div>
<div>
<label for="manual-context-filter">Vorschläge durchsuchen</label>
<input id="manual-context-filter" placeholder="z. B. treppe, bewegung, lux" oninput="renderManualContextSelect()" autocomplete="off">
</div>
</div>
<label for="manual-context-select">Zusätzliche Kontext-Entities aus Vorschlägen</label>
<select id="manual-context-select" multiple>
${optionGroups(manualContextState.options.slice(0, 80), manualContextIds)}
</select>
<label for="manual-context-freeform">Entity-IDs manuell ergänzen</label>
<textarea id="manual-context-freeform" class="manual-entry" placeholder="Eine oder mehrere Entity-IDs, getrennt durch Komma, Leerzeichen oder neue Zeilen">${escapeHtml(manualOnlyIds.join("\n"))}</textarea>
<div class="actions">
<button onclick="saveManualAssignment('${escapeHtml(record.actuator_entity_id)}')">Diese Kontext-Auswahl speichern</button>
<button class="secondary" onclick="loadContextOptions('${escapeHtml(record.actuator_entity_id)}').then(() => showActuator('${escapeHtml(record.actuator_entity_id)}'))">Vorschläge neu laden</button>
</div>
</div>
`;
const activationButton = record.behavior.mode === "active" const activationButton = record.behavior.mode === "active"
? `<button class="danger" onclick="setActivation('${escapeHtml(record.actuator_entity_id)}', false, false, true)">SillyHome stoppen und pausierte HA-Automationen fortsetzen</button> ? `<button class="danger" onclick="setActivation('${escapeHtml(record.actuator_entity_id)}', false, false, true)">SillyHome stoppen und pausierte HA-Automationen fortsetzen</button>
<button class="secondary" onclick="setActivation('${escapeHtml(record.actuator_entity_id)}', false, false, false)">SillyHome stoppen; HA-Automationen pausiert lassen</button>` <button class="secondary" onclick="setActivation('${escapeHtml(record.actuator_entity_id)}', false, false, false)">SillyHome stoppen; HA-Automationen pausiert lassen</button>`
@@ -366,6 +579,7 @@ async function showActuator(actuatorId, evaluationMessage = "") {
${automationControls} ${automationControls}
<h3>Welche Zusammenhänge automatisch verwendet werden</h3> <h3>Welche Zusammenhänge automatisch verwendet werden</h3>
${evidence ? `<ul>${evidence}</ul>` : "<p class='warn'>Noch kein geeigneter Kontext erkannt. SillyHome prüft bei neuen HA-Daten erneut.</p>"} ${evidence ? `<ul>${evidence}</ul>` : "<p class='warn'>Noch kein geeigneter Kontext erkannt. SillyHome prüft bei neuen HA-Daten erneut.</p>"}
${manualAssignment}
`; `;
document.getElementById("detail").scrollIntoView({behavior: "smooth", block: "start"}); document.getElementById("detail").scrollIntoView({behavior: "smooth", block: "start"});
} catch (error) { } catch (error) {
@@ -373,6 +587,32 @@ async function showActuator(actuatorId, evaluationMessage = "") {
} }
} }
async function saveManualAssignment(actuatorId) {
const numericEntityId = document.getElementById("manual-numeric-select").value || null;
const selectedContextIds = Array.from(
document.getElementById("manual-context-select").selectedOptions,
).map(option => option.value).filter(value => value.includes("."));
const freeformContextIds = parseEntityIds(
document.getElementById("manual-context-freeform").value,
);
const contextEntityIds = [...new Set([...selectedContextIds, ...freeformContextIds])]
.filter(entityId => entityId !== numericEntityId);
try {
await api(`v1/actuators/${encodeURIComponent(actuatorId)}/assignment`, {
method: "POST",
body: JSON.stringify({
numeric_entity_id: numericEntityId,
context_entity_ids: contextEntityIds,
note: "Manuell im Dashboard gesetzt",
}),
});
await loadConfiguredActuators();
await showActuator(actuatorId, "Manuelle Kontext-Auswahl gespeichert.");
} catch (error) {
alert(error.message);
}
}
async function evaluateActuator(actuatorId) { async function evaluateActuator(actuatorId) {
try { try {
const record = await api( const record = await api(

View File

@@ -4,7 +4,7 @@ build-backend = "setuptools.build_meta"
[project] [project]
name = "sillyhome-next" name = "sillyhome-next"
version = "0.7.2" version = "0.7.10"
description = "Lokales Smart-Home-Intelligenzsystem für Home Assistant" description = "Lokales Smart-Home-Intelligenzsystem für Home Assistant"
requires-python = ">=3.11" requires-python = ">=3.11"
dependencies = [ dependencies = [

View File

@@ -7,7 +7,6 @@ from app.actuators.lifecycle import ActuatorReconciliationService
from app.actuators.models import ( from app.actuators.models import (
AssignmentSource, AssignmentSource,
LifecycleStatus, LifecycleStatus,
ManualOverride,
model_id_for_actuator, model_id_for_actuator,
) )
from app.actuators.store import ActuatorStore from app.actuators.store import ActuatorStore
@@ -79,7 +78,7 @@ def _service(
model_store=str(tmp_path / "models"), model_store=str(tmp_path / "models"),
automation_store=str(tmp_path / "automations"), automation_store=str(tmp_path / "automations"),
actuator_store=str(tmp_path / "actuators"), actuator_store=str(tmp_path / "actuators"),
history_days=14, history_days=31,
min_training_points=5, min_training_points=5,
retrain_stale_hours=24, retrain_stale_hours=24,
reconcile_interval_seconds=900, reconcile_interval_seconds=900,
@@ -240,7 +239,45 @@ def test_reconciliation_does_not_cross_assign_other_room_light_energy(
assert record.lifecycle.status is LifecycleStatus.ARCHIVED assert record.lifecycle.status is LifecycleStatus.ARCHIVED
def test_legacy_manual_override_is_cleared_and_automatic_mapping_wins(tmp_path: Path) -> None: def test_reconciliation_ignores_generic_monitoring_area_for_automatic_context(
tmp_path: Path,
) -> None:
start = datetime(2026, 6, 1, tzinfo=timezone.utc)
entities = [
HaEntitySummary(
entity_id="light.abstellkammer",
domain="light",
friendly_name="Licht Abstellkammer",
area_name="Monitoring",
),
HaEntitySummary(
entity_id="binary_sensor.disk_overheating",
domain="binary_sensor",
device_class="problem",
friendly_name="Max. fehlerhafte Sektoren ueberschritten",
area_name="Monitoring",
),
HaEntitySummary(
entity_id="sensor.router_power",
domain="sensor",
device_class="power",
state_class="measurement",
unit_of_measurement="W",
friendly_name="Router Leistung",
area_name="Monitoring",
),
]
service = _service(tmp_path, entities, {"sensor.router_power": _points(8, start, 1.0)})
record = service.configure_actuator("light.abstellkammer")
assert record.assignment.selected_numeric_entity_id is None
assert record.assignment.selected_context_entity_ids == []
assert record.assignment.review_required is True
assert record.lifecycle.status is LifecycleStatus.ARCHIVED
def test_manual_assignment_persists_and_wins_over_automatic_mapping(tmp_path: Path) -> None:
start = datetime(2026, 6, 1, tzinfo=timezone.utc) start = datetime(2026, 6, 1, tzinfo=timezone.utc)
entities = [ entities = [
HaEntitySummary( HaEntitySummary(
@@ -273,21 +310,18 @@ def test_legacy_manual_override_is_cleared_and_automatic_mapping_wins(tmp_path:
"sensor.abstellkammer_power": _points(8, start, 30.0), "sensor.abstellkammer_power": _points(8, start, 30.0),
} }
service = _service(tmp_path, entities, history) service = _service(tmp_path, entities, history)
configured = service.configure_actuator("light.abstellkammer") service.configure_actuator("light.abstellkammer")
legacy = configured.model_copy( service.set_manual_assignment(
update={ "light.abstellkammer",
"manual_override": ManualOverride(
numeric_entity_id="sensor.abstellkammer_power", numeric_entity_id="sensor.abstellkammer_power",
context_entity_ids=[], context_entity_ids=["sensor.abstellkammer_illuminance"],
note="Alte manuelle Zuordnung", note="Manuell wichtiger Sensor",
) )
}
)
service._store.upsert(legacy)
restarted = _service(tmp_path, entities, history) restarted = _service(tmp_path, entities, history)
record = restarted.reconcile_actuator("light.abstellkammer") record = restarted.reconcile_actuator("light.abstellkammer")
assert record.assignment.selected_numeric_entity_id == "sensor.abstellkammer_illuminance" assert record.assignment.selected_numeric_entity_id == "sensor.abstellkammer_power"
assert record.assignment.source.value == "automatic" assert record.assignment.selected_context_entity_ids == ["sensor.abstellkammer_illuminance"]
assert record.manual_override is None assert record.assignment.source is AssignmentSource.MANUAL
assert record.manual_override is not None

View File

@@ -115,6 +115,14 @@ def _install_service(tmp_path: Path) -> None:
friendly_name="Abstellkammer Bewegung", friendly_name="Abstellkammer Bewegung",
area_name="Abstellkammer", area_name="Abstellkammer",
), ),
HaEntitySummary(
entity_id="sensor.pfsense_interface_vpn_inbytes",
domain="sensor",
device_class="data_size",
state_class="measurement",
unit_of_measurement="KiB",
friendly_name="pfSense Interface VPN inbytes",
),
] ]
settings = Settings( settings = Settings(
ha_url="http://ha.local", ha_url="http://ha.local",
@@ -179,14 +187,43 @@ def test_actuator_api_configures_reconciles_and_removes(tmp_path: Path) -> None:
assert client.get("/v1/actuators").json() == [] assert client.get("/v1/actuators").json() == []
def test_manual_override_endpoint_is_not_exposed(tmp_path: Path) -> None: def test_manual_assignment_endpoint_updates_context(tmp_path: Path) -> None:
with TestClient(app) as client: with TestClient(app) as client:
_install_service(tmp_path) _install_service(tmp_path)
client.post("/v1/actuators", json={"actuator_entity_id": "light.abstellkammer"}) client.post("/v1/actuators", json={"actuator_entity_id": "light.abstellkammer"})
response = client.post( response = client.post(
"/v1/actuators/light.abstellkammer/override", "/v1/actuators/light.abstellkammer/assignment",
json={"numeric_entity_id": "sensor.abstellkammer_illuminance"}, json={
"numeric_entity_id": "sensor.abstellkammer_illuminance",
"context_entity_ids": ["binary_sensor.abstellkammer_motion"],
"note": "Manuell gesetzt",
},
) )
assert response.status_code == 404 assert response.status_code == 200
payload = response.json()
assert payload["assignment"]["source"] == "manual"
assert payload["assignment"]["selected_numeric_entity_id"] == (
"sensor.abstellkammer_illuminance"
)
assert payload["assignment"]["selected_context_entity_ids"] == [
"binary_sensor.abstellkammer_motion"
]
def test_context_options_returns_learnable_entities(tmp_path: Path) -> None:
with TestClient(app) as client:
_install_service(tmp_path)
client.post("/v1/actuators", json={"actuator_entity_id": "light.abstellkammer"})
response = client.get(
"/v1/actuators/context-options",
params={"actuator_entity_id": "light.abstellkammer"},
)
assert response.status_code == 200
entity_ids = {item["entity_id"] for item in response.json()}
assert "sensor.abstellkammer_illuminance" in entity_ids
assert "binary_sensor.abstellkammer_motion" in entity_ids
assert "sensor.pfsense_interface_vpn_inbytes" not in entity_ids

View File

@@ -523,3 +523,137 @@ def test_prediction_ignores_stale_causal_context_state() -> None:
min_support=1, min_support=1,
window_minutes=30, window_minutes=30,
) is None ) is None
def test_state_change_uses_websocket_context_state_for_immediate_action(
tmp_path: Path,
) -> None:
now = datetime.now(timezone.utc).replace(microsecond=0)
settings = _settings(tmp_path)
store = ActuatorStore(settings.actuator_store)
record = store.configure("light.storage")
record = record.model_copy(
update={
"assignment": record.assignment.model_copy(
update={
"selected_context_entity_ids": ["binary_sensor.storage_door"],
}
),
"behavior": record.behavior.model_copy(
update={
"mode": BehaviorMode.ACTIVE,
"status": BehaviorStatus.TRAINED,
"activation_ready": True,
"patterns": [
BehaviorPattern(
target_state="on",
minute_of_day=60,
weekday=0,
context_states={"binary_sensor.storage_door": "on"},
trigger_entity_id="binary_sensor.storage_door",
trigger_from_state="off",
trigger_to_state="on",
source="automation",
weight=1.0,
observed_at=now - timedelta(days=days_ago),
)
for days_ago in (3, 2, 1)
],
}
),
}
)
store.upsert(record)
reader = FakeBehaviorReader(
entities=[
HaEntitySummary(entity_id="light.storage", domain="light", state="off"),
HaEntitySummary(
entity_id="binary_sensor.storage_door",
domain="binary_sensor",
state="off",
last_changed=now - timedelta(minutes=5),
),
],
history=[],
logbook=[],
)
engine = BehaviorEngine(ha_reader=reader, store=store, settings=settings)
engine.handle_state_change(
"binary_sensor.storage_door",
{"state": "on", "last_changed": now.isoformat()},
)
assert reader.service_calls == [
("light", "turn_on", {"entity_id": "light.storage"})
]
def test_state_change_uses_event_cache_without_rest_state_query(
tmp_path: Path,
) -> None:
now = datetime.now(timezone.utc).replace(microsecond=0)
settings = _settings(tmp_path)
store = ActuatorStore(settings.actuator_store)
record = store.configure("light.storage")
record = record.model_copy(
update={
"assignment": record.assignment.model_copy(
update={
"selected_context_entity_ids": ["binary_sensor.storage_door"],
}
),
"behavior": record.behavior.model_copy(
update={
"mode": BehaviorMode.ACTIVE,
"status": BehaviorStatus.TRAINED,
"activation_ready": True,
"patterns": [
BehaviorPattern(
target_state="on",
minute_of_day=60,
weekday=0,
context_states={"binary_sensor.storage_door": "on"},
trigger_entity_id="binary_sensor.storage_door",
trigger_from_state="off",
trigger_to_state="on",
source="automation",
weight=1.0,
observed_at=now - timedelta(days=days_ago),
)
for days_ago in (3, 2, 1)
],
}
),
}
)
store.upsert(record)
reader = FakeBehaviorReader(
entities=[],
history=[],
logbook=[],
)
def fail_read_entities() -> list[HaEntitySummary]:
raise AssertionError("Event-Auswertung darf keinen REST-State lesen.")
reader.read_entities = fail_read_entities # type: ignore[method-assign]
engine = BehaviorEngine(ha_reader=reader, store=store, settings=settings)
engine.handle_state_change(
"binary_sensor.storage_door",
{"state": "on", "last_changed": now.isoformat()},
current_entities=[
HaEntitySummary(entity_id="light.storage", domain="light", state="off"),
HaEntitySummary(
entity_id="binary_sensor.storage_door",
domain="binary_sensor",
state="on",
last_changed=now,
),
],
)
assert reader.service_calls == [
("light", "turn_on", {"entity_id": "light.storage"})
]

View File

@@ -12,6 +12,8 @@ def test_dashboard_is_served_at_root() -> None:
assert "So gehst du vor" in response.text assert "So gehst du vor" in response.text
assert "Gerät zum Lernen auswählen" in response.text assert "Gerät zum Lernen auswählen" in response.text
assert "Entitätsname oder Gerät aus Home Assistant" in response.text assert "Entitätsname oder Gerät aus Home Assistant" in response.text
assert "Oder aus Liste wählen" in response.text
assert "Liste durchsuchen" in response.text
assert "Wie gewohnt bedienen" in response.text assert "Wie gewohnt bedienen" in response.text
assert "Ohne deine spätere Freigabe wird nichts geschaltet" in response.text assert "Ohne deine spätere Freigabe wird nichts geschaltet" in response.text
assert "Du wählst keine Sensoren und erstellst keine Regeln" in response.text assert "Du wählst keine Sensoren und erstellst keine Regeln" in response.text
@@ -21,6 +23,11 @@ def test_dashboard_is_served_at_root() -> None:
assert "Pausieren" in response.text assert "Pausieren" in response.text
assert "Davon erkannte HA-Automationen" in response.text assert "Davon erkannte HA-Automationen" in response.text
assert "Aktuelle Situation auswerten" in response.text assert "Aktuelle Situation auswerten" in response.text
assert "Kontext selbst festlegen" in response.text
assert "Entity-IDs manuell ergänzen" in response.text
assert "manual-context-freeform" in response.text
assert "Diese Kontext-Auswahl speichern" in response.text
assert "manual-context-select" in response.text
assert "Die Prüfung simuliert keinen Sensorwechsel" in response.text assert "Die Prüfung simuliert keinen Sensorwechsel" in response.text
assert "Kein frischer passender Sensorwechsel erkannt" in response.text assert "Kein frischer passender Sensorwechsel erkannt" in response.text
assert "Vorhersage jetzt prüfen" not in response.text assert "Vorhersage jetzt prüfen" not in response.text

View File

@@ -1,4 +1,5 @@
import asyncio import asyncio
from collections.abc import Sequence
from pathlib import Path from pathlib import Path
from unittest.mock import MagicMock, patch from unittest.mock import MagicMock, patch
@@ -8,6 +9,8 @@ from fastapi.testclient import TestClient
from app.actuators.store import ActuatorStore from app.actuators.store import ActuatorStore
from app.behavior.engine import BehaviorEngine from app.behavior.engine import BehaviorEngine
from app.ha.models import HaEntitySummary
from app.ha.reader import HaReader
from app.main import _ha_event_listener, app as fastapi_app, lifespan from app.main import _ha_event_listener, app as fastapi_app, lifespan
@@ -41,10 +44,32 @@ class _RecordingBehaviorEngine(BehaviorEngine):
store=ActuatorStore(tmp_path / "actuators"), store=ActuatorStore(tmp_path / "actuators"),
settings=MagicMock(), settings=MagicMock(),
) )
self.state_changes: list[tuple[str, dict[str, object] | None]] = [] self.state_changes: list[
tuple[str, dict[str, object] | None, Sequence[HaEntitySummary] | None]
] = []
def handle_state_change(self, entity_id: str, new_state: dict[str, object] | None) -> None: def handle_state_change(
self.state_changes.append((entity_id, new_state)) self,
entity_id: str,
new_state: dict[str, object] | None,
*,
current_entities: Sequence[HaEntitySummary] | None = None,
) -> None:
self.state_changes.append((entity_id, new_state, current_entities))
class _FakeHaReader(HaReader):
def __init__(self) -> None:
pass
def read_entities(self) -> list[HaEntitySummary]:
return [
HaEntitySummary(
entity_id="light.test",
domain="light",
state="off",
)
]
def test_ha_event_listener_processes_state_change(tmp_path: Path) -> None: def test_ha_event_listener_processes_state_change(tmp_path: Path) -> None:
@@ -55,18 +80,22 @@ def test_ha_event_listener_processes_state_change(tmp_path: Path) -> None:
'{"type":"auth_ok"}', '{"type":"auth_ok"}',
( (
'{"type":"event","event":{"event_type":"state_changed",' '{"type":"event","event":{"event_type":"state_changed",'
'"entity_id":"light.test","new_state":{"state":"on"}}}' '"data":{"entity_id":"light.test","new_state":{"state":"on"}}}}'
), ),
asyncio.CancelledError(), asyncio.CancelledError(),
] ]
) )
with patch("websockets.connect", return_value=fake_ws): with patch("websockets.connect", return_value=fake_ws) as connect:
try: try:
await _ha_event_listener(mock_app, mock_client) await _ha_event_listener(mock_app, mock_client)
except asyncio.CancelledError: except asyncio.CancelledError:
pass pass
connect.assert_called_once_with(
"ws://homeassistant:8123/api/websocket",
ping_interval=None,
)
assert fake_ws.sent == [ assert fake_ws.sent == [
{"type": "auth", "access_token": "test-token"}, {"type": "auth", "access_token": "test-token"},
{"id": 1, "type": "subscribe_events", "event_type": "state_changed"}, {"id": 1, "type": "subscribe_events", "event_type": "state_changed"},
@@ -79,12 +108,19 @@ def test_ha_event_listener_processes_state_change(tmp_path: Path) -> None:
mock_app.state.ws_status = MagicMock() mock_app.state.ws_status = MagicMock()
mock_engine = _RecordingBehaviorEngine(tmp_path) mock_engine = _RecordingBehaviorEngine(tmp_path)
mock_app.state.behavior_engine = mock_engine mock_app.state.behavior_engine = mock_engine
mock_app.state.ha_reader = _FakeHaReader()
mock_store = ActuatorStore(tmp_path / "store") mock_store = ActuatorStore(tmp_path / "store")
mock_app.state.actuator_store = mock_store mock_app.state.actuator_store = mock_store
mock_client = MagicMock() mock_client = MagicMock()
anyio.run(run_test) anyio.run(run_test)
assert mock_engine.state_changes == [("light.test", {"state": "on"})] assert len(mock_engine.state_changes) == 1
entity_id, new_state, current_entities = mock_engine.state_changes[0]
assert entity_id == "light.test"
assert new_state == {"state": "on"}
assert current_entities == [
HaEntitySummary(entity_id="light.test", domain="light", state="on")
]
assert mock_app.state.ws_status.status == "connected" assert mock_app.state.ws_status.status == "connected"
assert mock_app.state.ws_status.error is None assert mock_app.state.ws_status.error is None