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fix(backend): fiabilise le tri des lectures/predictions et la detection de redemarrage a zero
2026-09-18 16:58:03 +02:00

172 lines
6.1 KiB
Python

from datetime import UTC, datetime
import pytest
from sqlalchemy.ext.asyncio import AsyncSession
from app.models.energy import Prediction
from app.repositories.prediction import PredictionRepository
from tests.repositories.test_site import creer as creer_site
from tests.repositories.test_site import identifiant as identifiant_site
pytestmark = pytest.mark.integration
async def creer_prediction(
session: AsyncSession, *, site_id: str, **overrides: object
) -> Prediction:
prediction = Prediction(
site_id=site_id,
target_at=overrides.get("target_at", datetime(2026, 9, 16, tzinfo=UTC)),
target_metric=overrides.get("target_metric", "consumption_kwh"),
period_minutes=overrides.get("period_minutes", 60),
predicted_value=overrides.get("predicted_value", 42.0),
model_reference=overrides.get("model_reference", "lightgbm-test"),
status=overrides.get("status", "available"),
failure_reason=overrides.get("failure_reason"),
)
session.add(prediction)
await session.flush()
return prediction
async def test_list_since_excludes_predictions_before_the_cutoff(session: AsyncSession) -> None:
site = await creer_site(session)
depot = PredictionRepository(session)
dedans = await creer_prediction(
session, site_id=site.site_id, target_at=datetime(2026, 9, 16, tzinfo=UTC)
)
await creer_prediction(
session, site_id=site.site_id, target_at=datetime(2026, 9, 1, tzinfo=UTC)
)
resultats = await depot.list_since(
since=datetime(2026, 9, 10, tzinfo=UTC), site_id=site.site_id
)
identifiants = [p.prediction_id for p in resultats]
await session.rollback()
assert identifiants == [dedans.prediction_id]
async def test_list_since_excludes_predictions_that_are_not_available(
session: AsyncSession,
) -> None:
site = await creer_site(session)
depot = PredictionRepository(session)
await creer_prediction(
session,
site_id=site.site_id,
target_at=datetime(2026, 9, 16, tzinfo=UTC),
status="insufficient_data",
predicted_value=None,
failure_reason="pas assez d'historique",
)
resultats = await depot.list_since(since=datetime(2026, 9, 1, tzinfo=UTC), site_id=site.site_id)
await session.rollback()
assert list(resultats) == []
async def test_list_since_breaks_a_target_at_tie_by_ascending_prediction_id(
session: AsyncSession,
) -> None:
# `prediction` n'a pas d'unicité sur `(site_id, target_at)` : deux runs de scoring sans
# nouvelle lecture entre-temps produisent deux lignes `available` à la même cible. Sans ce
# départage, `_detect_anomaly` retiendrait une ligne au hasard plutôt que le run le plus
# récent.
site = await creer_site(session)
depot = PredictionRepository(session)
cible = datetime(2026, 9, 16, tzinfo=UTC)
premier_run = await creer_prediction(
session, site_id=site.site_id, target_at=cible, predicted_value=10.0
)
second_run = await creer_prediction(
session, site_id=site.site_id, target_at=cible, predicted_value=20.0
)
resultats = await depot.list_since(since=datetime(2026, 9, 1, tzinfo=UTC), site_id=site.site_id)
identifiants = [p.prediction_id for p in resultats]
await session.rollback()
assert identifiants == [premier_run.prediction_id, second_run.prediction_id]
async def test_list_since_filters_by_site_id(session: AsyncSession) -> None:
premier = await creer_site(session)
second = await creer_site(session)
depot = PredictionRepository(session)
voulue = await creer_prediction(session, site_id=premier.site_id)
await creer_prediction(session, site_id=second.site_id)
resultats = await depot.list_since(
since=datetime(2026, 8, 1, tzinfo=UTC), site_id=premier.site_id
)
identifiants = [p.prediction_id for p in resultats]
await session.rollback()
assert identifiants == [voulue.prediction_id]
async def test_latest_by_site_keeps_only_the_most_recent_target(session: AsyncSession) -> None:
site = await creer_site(session)
depot = PredictionRepository(session)
ancienne = await creer_prediction(
session, site_id=site.site_id, target_at=datetime(2026, 9, 1, tzinfo=UTC)
)
recente = await creer_prediction(
session, site_id=site.site_id, target_at=datetime(2026, 9, 15, tzinfo=UTC)
)
resultats = await depot.latest_by_site()
identifiants = [
p.prediction_id
for p in resultats
if p.prediction_id in (ancienne.prediction_id, recente.prediction_id)
]
await session.rollback()
assert identifiants == [recente.prediction_id]
async def test_latest_by_site_returns_one_row_per_site(session: AsyncSession) -> None:
premier = await creer_site(session)
second = await creer_site(session)
depot = PredictionRepository(session)
voulue_premier = await creer_prediction(session, site_id=premier.site_id)
voulue_second = await creer_prediction(session, site_id=second.site_id)
resultats = await depot.latest_by_site()
identifiants = {p.site_id for p in resultats if p.site_id in (premier.site_id, second.site_id)}
await session.rollback()
assert identifiants == {voulue_premier.site_id, voulue_second.site_id}
async def test_latest_by_site_keeps_an_insufficient_data_prediction(session: AsyncSession) -> None:
site = await creer_site(session)
depot = PredictionRepository(session)
voulue = await creer_prediction(
session,
site_id=site.site_id,
status="insufficient_data",
predicted_value=None,
failure_reason="pas assez d'historique",
)
resultats = await depot.latest_by_site()
identifiants = [p.prediction_id for p in resultats if p.site_id == site.site_id]
await session.rollback()
assert identifiants == [voulue.prediction_id]
async def test_latest_by_site_returns_an_empty_list_when_there_is_nothing(
session: AsyncSession,
) -> None:
depot = PredictionRepository(session)
resultats = [p for p in await depot.latest_by_site() if p.site_id == identifiant_site()]
assert resultats == []