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"""Tests for M7-T05: Meter CRUD + swap declaration + retroactive recompute API.
Coverage matrix
---------------
GET /api/energy/meters
- unauthenticated → 401
- authenticated, no meters → 200, items=[]
- after declaring meters → items ordered by started_at asc
POST /api/energy/meters
- unauthenticated → 401
- missing CSRF → 403
- valid (first meter, no active) → 201, MeterResponse
- valid swap (active meter exists) → 201, old meter closed, new meter active
- retroactive started_at → 201, triggers recompute for affected window
- started_at before active meter's started_at (overlap) → 422
PATCH /api/energy/meters/{id}
- unauthenticated → 401
- missing CSRF → 403
- not found → 404
- rename label → 200, label updated
- edit note → 200, note updated
- correct started_at (retroactive) → 200, triggers recompute for affected window
- started_at interval violation → 422
Retroactive recompute integration
- PATCH started_at change triggers recompute over min(old, new)..now window
- POST retroactive declaration triggers recompute from new started_at
"""
from __future__ import annotations
from datetime import UTC, datetime
from unittest.mock import patch
import pytest
from fastapi.testclient import TestClient
from sqlalchemy import create_engine, select
from sqlalchemy.orm import Session
from app.models.energy import Meter
# ---------------------------------------------------------------------------
# Shared helpers
# ---------------------------------------------------------------------------
_CSRF = "test-csrf-token"
def _login(client: TestClient) -> None:
resp = client.post(
"/api/auth/login",
json={"username": "admin", "password": "test-password"},
)
assert resp.status_code == 200, f"Login failed: {resp.status_code} {resp.text}"
def _declare_payload(**overrides) -> dict:
base = {
"label": "Test Meter",
"started_at": datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC).isoformat(),
"reason": "initial",
"commodity": "electricity",
}
base.update(overrides)
return base
# ---------------------------------------------------------------------------
# Fixtures
# ---------------------------------------------------------------------------
@pytest.fixture(autouse=True)
def mock_publish_discovery():
"""Auto-mock publish_discovery for all tests in this module.
The meters API now calls _trigger_discovery_republish (best-effort) after
every successful write. publish_discovery is lazy-imported inside that
helper, so we patch it at its canonical source path
(app.services.ha_discovery.publish_discovery). Tests that need to assert
the call receive this fixture explicitly; all others benefit from the
isolation it provides (no live MQTT broker required).
"""
with patch(
"app.services.ha_discovery.publish_discovery",
return_value=None,
) as mock:
yield mock
@pytest.fixture()
def meters_client(auth_database):
"""TestClient + SQLAlchemy engine for Meter API tests."""
from app.main import create_app
app_url = auth_database["app_url"]
engine = create_engine(app_url, connect_args={"check_same_thread": False})
fastapi_app = create_app()
with TestClient(fastapi_app) as test_client:
yield test_client, engine
engine.dispose()
# ---------------------------------------------------------------------------
# GET /api/energy/meters
# ---------------------------------------------------------------------------
def test_list_meters_unauthenticated_returns_401(meters_client):
client, _ = meters_client
resp = client.get("/api/energy/meters")
assert resp.status_code == 401
def test_list_meters_empty(meters_client):
client, _ = meters_client
_login(client)
resp = client.get("/api/energy/meters")
assert resp.status_code == 200
body = resp.json()
assert body["items"] == []
assert body["total"] == 0
def test_list_meters_ordered_by_started_at(meters_client):
"""After declaring two meters, list returns them in ascending started_at order."""
client, _ = meters_client
_login(client)
t0 = datetime(2024, 6, 1, 0, 0, 0, tzinfo=UTC)
t1 = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
with patch("app.api.routes.api.meters.recompute_range", return_value=0):
# Declare first meter (initial)
resp1 = client.post(
"/api/energy/meters",
json=_declare_payload(label="Meter A", started_at=t0.isoformat(), reason="initial"),
headers={"X-CSRF-Token": _CSRF},
)
assert resp1.status_code == 201
# Declare swap meter
resp2 = client.post(
"/api/energy/meters",
json=_declare_payload(label="Meter B", started_at=t1.isoformat(), reason="meter_swap"),
headers={"X-CSRF-Token": _CSRF},
)
assert resp2.status_code == 201
resp = client.get("/api/energy/meters")
assert resp.status_code == 200
body = resp.json()
assert body["total"] == 2
items = body["items"]
# Ordered by started_at ascending: Meter A first, Meter B second
assert items[0]["label"] == "Meter A"
assert items[1]["label"] == "Meter B"
# Meter B is active (ended_at is null)
assert items[1]["ended_at"] is None
# Meter A is closed
assert items[0]["ended_at"] is not None
# ---------------------------------------------------------------------------
# POST /api/energy/meters
# ---------------------------------------------------------------------------
def test_declare_meter_unauthenticated_returns_401(meters_client):
client, _ = meters_client
resp = client.post(
"/api/energy/meters",
json=_declare_payload(),
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 401
def test_declare_meter_missing_csrf_returns_403(meters_client):
client, _ = meters_client
_login(client)
resp = client.post("/api/energy/meters", json=_declare_payload())
assert resp.status_code == 403
def test_declare_meter_first_no_active(meters_client):
"""Declaring the first meter succeeds without closing any previous meter."""
client, engine = meters_client
_login(client)
t0 = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
with patch("app.api.routes.api.meters.recompute_range", return_value=0):
resp = client.post(
"/api/energy/meters",
json=_declare_payload(label="First Meter", started_at=t0.isoformat(), reason="initial"),
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 201
body = resp.json()
assert body["label"] == "First Meter"
assert body["commodity"] == "electricity"
assert body["reason"] == "initial"
assert body["ended_at"] is None # active
# DB check: one meter, active
with Session(engine) as s:
meters = s.execute(select(Meter)).scalars().all()
assert len(meters) == 1
assert meters[0].ended_at is None
def test_declare_meter_swap_closes_previous(meters_client):
"""Declaring a swap closes the previous active meter at started_at."""
client, engine = meters_client
_login(client)
t0 = datetime(2024, 6, 1, 0, 0, 0, tzinfo=UTC)
t1 = datetime(2025, 3, 15, 12, 0, 0, tzinfo=UTC)
with patch("app.api.routes.api.meters.recompute_range", return_value=0):
# First meter
resp1 = client.post(
"/api/energy/meters",
json=_declare_payload(label="Old Meter", started_at=t0.isoformat(), reason="initial"),
headers={"X-CSRF-Token": _CSRF},
)
assert resp1.status_code == 201
old_id = resp1.json()["id"]
# Swap
resp2 = client.post(
"/api/energy/meters",
json=_declare_payload(label="New Meter", started_at=t1.isoformat(), reason="meter_swap"),
headers={"X-CSRF-Token": _CSRF},
)
assert resp2.status_code == 201
body2 = resp2.json()
assert body2["label"] == "New Meter"
assert body2["ended_at"] is None # new meter is active
# DB check: old meter is closed at t1
with Session(engine) as s:
old_meter = s.get(Meter, old_id)
assert old_meter is not None
assert old_meter.ended_at is not None
# ended_at should equal t1 (modulo naive/aware round-trip)
ended_naive = old_meter.ended_at
if ended_naive.tzinfo is None:
ended_naive = ended_naive.replace(tzinfo=UTC)
assert ended_naive == t1
def test_declare_meter_overlap_returns_422(meters_client):
"""Declaring a meter with started_at before active meter's started_at → 422."""
client, _ = meters_client
_login(client)
t0 = datetime(2025, 6, 1, 0, 0, 0, tzinfo=UTC)
t_before = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
with patch("app.api.routes.api.meters.recompute_range", return_value=0):
# Declare first meter
resp = client.post(
"/api/energy/meters",
json=_declare_payload(started_at=t0.isoformat(), reason="initial"),
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 201
# Attempt to declare a meter before t0 → overlap error
# (t_before is in the past so would trigger recompute, but service layer raises first)
resp2 = client.post(
"/api/energy/meters",
json=_declare_payload(
label="Backdated Meter", started_at=t_before.isoformat(), reason="meter_swap"
),
headers={"X-CSRF-Token": _CSRF},
)
assert resp2.status_code == 422
assert "started_at" in resp2.json()["detail"].lower()
def test_declare_meter_missing_fields_returns_422(meters_client):
"""Missing required fields (started_at, reason) → 422 from Pydantic validation."""
client, _ = meters_client
_login(client)
resp = client.post(
"/api/energy/meters",
json={"label": "No Reason Meter"}, # missing started_at and reason
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 422
def test_declare_meter_response_fields(meters_client):
"""POST response contains all expected MeterResponse fields."""
client, _ = meters_client
_login(client)
t0 = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
with patch("app.api.routes.api.meters.recompute_range", return_value=0):
resp = client.post(
"/api/energy/meters",
json=_declare_payload(
label="Full Fields Meter",
started_at=t0.isoformat(),
reason="home_move",
note="Testing note",
),
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 201
body = resp.json()
for field in ("id", "label", "commodity", "started_at", "ended_at", "reason", "note", "created_at"):
assert field in body, f"Missing field {field!r} in response"
assert body["note"] == "Testing note"
assert body["reason"] == "home_move"
def test_declare_meter_retroactive_triggers_recompute(meters_client):
"""Declaring a meter with started_at in the past triggers recompute_range.
Both POST calls are made with recompute_range mocked so the test does not
spend time iterating over thousands of empty quarter-hour periods.
"""
client, _ = meters_client
_login(client)
t0 = datetime(2024, 1, 1, 0, 0, 0, tzinfo=UTC)
t_past = datetime(2025, 3, 1, 0, 0, 0, tzinfo=UTC)
with patch(
"app.api.routes.api.meters.recompute_range", return_value=5
) as mock_recompute:
# First meter (initial); also in the past, so recompute is called here too.
client.post(
"/api/energy/meters",
json=_declare_payload(started_at=t0.isoformat(), reason="initial"),
headers={"X-CSRF-Token": _CSRF},
)
# Reset call count before the swap we are actually testing.
mock_recompute.reset_mock()
# Retroactive swap: started_at in the past → should trigger recompute
resp = client.post(
"/api/energy/meters",
json=_declare_payload(
label="Retroactive Swap", started_at=t_past.isoformat(), reason="meter_swap"
),
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 201
# recompute_range should have been called with start == t_past
assert mock_recompute.called
call_args = mock_recompute.call_args
recompute_start = call_args[0][1] # positional arg index 1 (session is 0)
# Normalise for comparison
if recompute_start.tzinfo is None:
recompute_start = recompute_start.replace(tzinfo=UTC)
assert recompute_start <= t_past
# ---------------------------------------------------------------------------
# PATCH /api/energy/meters/{id}
# ---------------------------------------------------------------------------
def test_patch_meter_unauthenticated_returns_401(meters_client):
client, _ = meters_client
resp = client.patch(
"/api/energy/meters/1",
json={"label": "Renamed"},
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 401
def test_patch_meter_missing_csrf_returns_403(meters_client):
client, _ = meters_client
_login(client)
t0 = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
with patch("app.api.routes.api.meters.recompute_range", return_value=0):
resp = client.post(
"/api/energy/meters",
json=_declare_payload(started_at=t0.isoformat()),
headers={"X-CSRF-Token": _CSRF},
)
meter_id = resp.json()["id"]
resp = client.patch(f"/api/energy/meters/{meter_id}", json={"label": "Renamed"})
assert resp.status_code == 403
def test_patch_meter_not_found_returns_404(meters_client):
client, _ = meters_client
_login(client)
resp = client.patch(
"/api/energy/meters/99999",
json={"label": "Does Not Exist"},
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 404
def test_patch_meter_rename_label(meters_client):
"""PATCH label updates the meter's human-readable label."""
client, engine = meters_client
_login(client)
t0 = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
with patch("app.api.routes.api.meters.recompute_range", return_value=0):
resp = client.post(
"/api/energy/meters",
json=_declare_payload(label="Original Label", started_at=t0.isoformat()),
headers={"X-CSRF-Token": _CSRF},
)
meter_id = resp.json()["id"]
resp = client.patch(
f"/api/energy/meters/{meter_id}",
json={"label": "Updated Label"},
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 200
assert resp.json()["label"] == "Updated Label"
# DB check
with Session(engine) as s:
m = s.get(Meter, meter_id)
assert m.label == "Updated Label"
def test_patch_meter_edit_note(meters_client):
"""PATCH note updates the meter's note field."""
client, _ = meters_client
_login(client)
t0 = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
with patch("app.api.routes.api.meters.recompute_range", return_value=0):
resp = client.post(
"/api/energy/meters",
json=_declare_payload(started_at=t0.isoformat(), note=None),
headers={"X-CSRF-Token": _CSRF},
)
meter_id = resp.json()["id"]
resp = client.patch(
f"/api/energy/meters/{meter_id}",
json={"note": "Added a note"},
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 200
assert resp.json()["note"] == "Added a note"
def test_patch_meter_started_at_retroactive_triggers_recompute(meters_client):
"""PATCH started_at triggers recompute over min(old, new)..now window."""
client, _ = meters_client
_login(client)
# Set up two meters: initial + swap. All POST calls are mocked to avoid
# running recompute over thousands of empty historical periods.
t0 = datetime(2024, 1, 1, 0, 0, 0, tzinfo=UTC)
t1 = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
with patch("app.api.routes.api.meters.recompute_range", return_value=0):
client.post(
"/api/energy/meters",
json=_declare_payload(label="Meter A", started_at=t0.isoformat(), reason="initial"),
headers={"X-CSRF-Token": _CSRF},
)
resp_b = client.post(
"/api/energy/meters",
json=_declare_payload(label="Meter B", started_at=t1.isoformat(), reason="meter_swap"),
headers={"X-CSRF-Token": _CSRF},
)
meter_b_id = resp_b.json()["id"]
# Correct Meter B's started_at to a slightly different past timestamp
t1_corrected = datetime(2024, 12, 15, 0, 0, 0, tzinfo=UTC) # earlier than t1
with patch(
"app.api.routes.api.meters.recompute_range", return_value=10
) as mock_recompute:
resp = client.patch(
f"/api/energy/meters/{meter_b_id}",
json={"started_at": t1_corrected.isoformat()},
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 200
# recompute should be triggered
assert mock_recompute.called
call_args = mock_recompute.call_args
recompute_start = call_args[0][1]
if recompute_start.tzinfo is None:
recompute_start = recompute_start.replace(tzinfo=UTC)
# Window start should be min(t1_corrected, t1) = t1_corrected
assert recompute_start <= t1_corrected
def test_patch_meter_started_at_interval_violation_returns_422(meters_client):
"""PATCH started_at that would create an invalid interval → 422."""
client, _ = meters_client
_login(client)
# Set up: initial meter A, then swap to B. POST calls mocked to avoid slow recompute.
t0 = datetime(2024, 1, 1, 0, 0, 0, tzinfo=UTC)
t1 = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
with patch("app.api.routes.api.meters.recompute_range", return_value=0):
resp_a = client.post(
"/api/energy/meters",
json=_declare_payload(label="Meter A", started_at=t0.isoformat(), reason="initial"),
headers={"X-CSRF-Token": _CSRF},
)
meter_a_id = resp_a.json()["id"]
client.post(
"/api/energy/meters",
json=_declare_payload(label="Meter B", started_at=t1.isoformat(), reason="meter_swap"),
headers={"X-CSRF-Token": _CSRF},
)
# Try to set Meter A's started_at to after its ended_at (t1) → interval error
t_too_late = datetime(2025, 6, 1, 0, 0, 0, tzinfo=UTC)
resp = client.patch(
f"/api/energy/meters/{meter_a_id}",
json={"started_at": t_too_late.isoformat()},
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 422
def test_patch_meter_no_recompute_when_started_at_not_changed(meters_client):
"""PATCH that only changes label does NOT trigger recompute."""
client, _ = meters_client
_login(client)
t0 = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
with patch("app.api.routes.api.meters.recompute_range", return_value=0) as mock_recompute:
resp = client.post(
"/api/energy/meters",
json=_declare_payload(started_at=t0.isoformat()),
headers={"X-CSRF-Token": _CSRF},
)
meter_id = resp.json()["id"]
mock_recompute.reset_mock()
resp = client.patch(
f"/api/energy/meters/{meter_id}",
json={"label": "Renamed Only"},
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 200
# recompute should NOT be triggered (no started_at change)
assert not mock_recompute.called
# ---------------------------------------------------------------------------
# Timeline continuity (recompute mocked to avoid slow computation over empty quarters)
# ---------------------------------------------------------------------------
def test_swap_timeline_continuity(meters_client):
"""After two swaps, meter timeline is contiguous and self-consistent."""
client, engine = meters_client
_login(client)
t0 = datetime(2023, 1, 1, 0, 0, 0, tzinfo=UTC)
t1 = datetime(2024, 1, 1, 0, 0, 0, tzinfo=UTC)
t2 = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
# Declare 3 meters in sequence. POST calls mocked to avoid slow recompute over
# years of empty quarter-hour periods.
with patch("app.api.routes.api.meters.recompute_range", return_value=0):
for label, ts, reason in [
("M1", t0, "initial"),
("M2", t1, "meter_swap"),
("M3", t2, "meter_swap"),
]:
resp = client.post(
"/api/energy/meters",
json=_declare_payload(label=label, started_at=ts.isoformat(), reason=reason),
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 201
# Verify timeline via list endpoint
resp = client.get("/api/energy/meters")
items = resp.json()["items"]
assert len(items) == 3
# M1: [t0, t1); M2: [t1, t2); M3: [t2, None)
m1 = next(i for i in items if i["label"] == "M1")
m2 = next(i for i in items if i["label"] == "M2")
m3 = next(i for i in items if i["label"] == "M3")
assert m1["ended_at"] is not None
assert m2["ended_at"] is not None
assert m3["ended_at"] is None # active
# ended_at of M1 == started_at of M2 (contiguous)
m1_ended = datetime.fromisoformat(m1["ended_at"]).replace(tzinfo=None)
m2_started = datetime.fromisoformat(m2["started_at"]).replace(tzinfo=None)
assert m1_ended == m2_started
m2_ended = datetime.fromisoformat(m2["ended_at"]).replace(tzinfo=None)
m3_started = datetime.fromisoformat(m3["started_at"]).replace(tzinfo=None)
assert m2_ended == m3_started
# ---------------------------------------------------------------------------
# Reason enum validation
# ---------------------------------------------------------------------------
def test_declare_meter_invalid_reason_returns_422(meters_client):
"""Unknown reason value → 422 from Pydantic enum validation."""
client, _ = meters_client
_login(client)
t0 = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
resp = client.post(
"/api/energy/meters",
json=_declare_payload(started_at=t0.isoformat(), reason="unknown_reason_xyz"),
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 422
# ---------------------------------------------------------------------------
# Retroactive recompute & boundary update (recompute mocked) — window coverage check
# ---------------------------------------------------------------------------
def test_patch_started_at_earlier_updates_boundary(meters_client):
"""Moving started_at earlier should update the previous meter's ended_at."""
client, engine = meters_client
_login(client)
t0 = datetime(2024, 6, 1, 0, 0, 0, tzinfo=UTC)
t1 = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
t1_earlier = datetime(2024, 12, 1, 0, 0, 0, tzinfo=UTC)
with patch("app.api.routes.api.meters.recompute_range", return_value=0):
resp_a = client.post(
"/api/energy/meters",
json=_declare_payload(label="Meter A", started_at=t0.isoformat(), reason="initial"),
headers={"X-CSRF-Token": _CSRF},
)
meter_a_id = resp_a.json()["id"]
resp_b = client.post(
"/api/energy/meters",
json=_declare_payload(label="Meter B", started_at=t1.isoformat(), reason="meter_swap"),
headers={"X-CSRF-Token": _CSRF},
)
meter_b_id = resp_b.json()["id"]
# Correct Meter B's started_at to t1_earlier (moves boundary earlier)
resp = client.patch(
f"/api/energy/meters/{meter_b_id}",
json={"started_at": t1_earlier.isoformat()},
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 200
assert resp.json()["id"] == meter_b_id
# DB check: Meter A's ended_at should now equal t1_earlier
with Session(engine) as s:
meter_a = s.get(Meter, meter_a_id)
assert meter_a is not None
ended = meter_a.ended_at
if ended is not None and ended.tzinfo is None:
ended = ended.replace(tzinfo=UTC)
assert ended == t1_earlier
# ---------------------------------------------------------------------------
# FUE-T06: HA discovery re-publish triggered after meter writes
# ---------------------------------------------------------------------------
def test_declare_meter_triggers_publish_discovery(meters_client, mock_publish_discovery):
"""POST /api/energy/meters triggers publish_discovery after successful commit."""
client, _ = meters_client
_login(client)
t0 = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
with patch("app.api.routes.api.meters.recompute_range", return_value=0):
resp = client.post(
"/api/energy/meters",
json=_declare_payload(label="Discovery Meter", started_at=t0.isoformat()),
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 201
# publish_discovery must have been called exactly once after the declare.
mock_publish_discovery.assert_called_once()
def test_patch_meter_triggers_publish_discovery(meters_client, mock_publish_discovery):
"""PATCH /api/energy/meters/{id} triggers publish_discovery after successful commit."""
client, _ = meters_client
_login(client)
t0 = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
with patch("app.api.routes.api.meters.recompute_range", return_value=0):
resp = client.post(
"/api/energy/meters",
json=_declare_payload(label="Original Label", started_at=t0.isoformat()),
headers={"X-CSRF-Token": _CSRF},
)
meter_id = resp.json()["id"]
# Reset call count: the POST above also called publish_discovery.
mock_publish_discovery.reset_mock()
resp = client.patch(
f"/api/energy/meters/{meter_id}",
json={"label": "Renamed Label"},
headers={"X-CSRF-Token": _CSRF},
)
assert resp.status_code == 200
# publish_discovery must have been called exactly once after the PATCH.
mock_publish_discovery.assert_called_once()
def test_declare_meter_succeeds_when_publish_discovery_raises(meters_client):
"""publish_discovery raising an exception must NOT cause POST declare to return 500.
The _trigger_discovery_republish helper is best-effort: it swallows all
exceptions so that a broken MQTT / discovery layer never breaks the API.
"""
client, _ = meters_client
_login(client)
t0 = datetime(2025, 1, 1, 0, 0, 0, tzinfo=UTC)
with (
patch("app.api.routes.api.meters.recompute_range", return_value=0),
patch(
"app.services.ha_discovery.publish_discovery",
side_effect=RuntimeError("MQTT broker unreachable"),
),
):
resp = client.post(
"/api/energy/meters",
json=_declare_payload(label="Best Effort Meter", started_at=t0.isoformat()),
headers={"X-CSRF-Token": _CSRF},
)
# The meter must be created successfully despite the discovery failure.
assert resp.status_code == 201
assert resp.json()["label"] == "Best Effort Meter"