meshai/work/tests/test_coverage_area.py

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"""Tests for meshai/coverage_area.py — Shapely geometry gate.
Includes a reproduction of the LA/OR leak that originally triggered this work:
an event whose geometry is firmly inside California must be DROPPED when only
an Idaho coverage box is configured.
Bbox/coordinate convention (GeoJSON):
bbox = [west, south, east, north] = [min_lon, min_lat, max_lon, max_lat]
Point = [lon, lat]
Idaho reference area (magic-valley to eastern border, generous):
west=-117, south=42, east=-111, north=44
"""
from __future__ import annotations
import json
from unittest.mock import MagicMock, patch
import pytest
from meshai.coverage_area import (
MonitoringArea,
areas_from_config,
build_geom_json,
classify_event_areas,
classify_geom_areas,
event_in_areas,
)
from meshai.env.nws import NWSAlertsAdapter
from meshai.notifications.events import make_event
from meshai.notifications.pipeline.coverage_filter import (
CoverageFilter,
FAIL_CLOSED_CATEGORIES,
)
from meshai.config import Coverage
# ---------------------------------------------------------------------------
# Reference areas
# ---------------------------------------------------------------------------
IDAHO = MonitoringArea(north=44.0, south=42.0, east=-111.0, west=-117.0)
# Second non-contiguous box covering Yellowstone / eastern corner of WY
YELLOWSTONE = MonitoringArea(north=45.2, south=44.0, east=-109.5, west=-111.5)
IDAHO_AREAS = [IDAHO]
TWO_AREAS = [IDAHO, YELLOWSTONE]
# A point firmly inside Idaho (Twin Falls area)
TF_LON, TF_LAT = -114.47, 42.56
# A point at downtown Los Angeles — should be OUT of Idaho
LA_LON, LA_LAT = -118.24, 34.05
# A CA polygon enclosing the LA area (4-corner box + close)
CA_POLYGON_COORDS = [
[-119.0, 33.5],
[-117.5, 33.5],
[-117.5, 34.6],
[-119.0, 34.6],
[-119.0, 33.5],
]
CA_POLYGON_GEOJSON = json.dumps({
"type": "Polygon",
"coordinates": [CA_POLYGON_COORDS],
})
# A polygon straddling the Idaho western border (partly in Oregon, partly Idaho)
STRADDLER_COORDS = [
[-117.5, 42.5], # in Oregon
[-116.0, 42.5], # in Idaho
[-116.0, 43.5], # in Idaho
[-117.5, 43.5], # in Oregon
[-117.5, 42.5],
]
STRADDLER_GEOJSON = json.dumps({
"type": "Polygon",
"coordinates": [STRADDLER_COORDS],
})
# ===========================================================================
# MonitoringArea.as_box
# ===========================================================================
class TestMonitoringArea:
def test_as_box_is_shapely_polygon(self):
from shapely.geometry import box
b = IDAHO.as_box()
expected = box(IDAHO.west, IDAHO.south, IDAHO.east, IDAHO.north)
assert b.equals(expected)
def test_frozen_immutability(self):
with pytest.raises(Exception):
IDAHO.north = 99.0 # type: ignore[misc]
# ===========================================================================
# build_geom_json — geometry extraction priority
# ===========================================================================
class TestBuildGeomJson:
def test_none_input_returns_none(self):
assert build_geom_json(None) is None
def test_empty_dict_returns_none(self):
assert build_geom_json({}) is None
def test_geometry_wins_over_bbox(self):
geo = {
"geometry": {"type": "Point", "coordinates": [TF_LON, TF_LAT]},
"bbox": [-115.0, 42.0, -113.0, 43.0],
}
result = build_geom_json(geo)
assert json.loads(result) == {"type": "Point", "coordinates": [TF_LON, TF_LAT]}
def test_bbox_renders_as_polygon(self):
geo = {"bbox": [-115.0, 42.0, -113.0, 43.0]}
result = build_geom_json(geo)
parsed = json.loads(result)
assert parsed["type"] == "Polygon"
coords = parsed["coordinates"][0]
# should be a closed ring of 5 points
assert len(coords) == 5
assert coords[0] == coords[-1]
def test_centroid_renders_as_point(self):
geo = {"centroid": [TF_LON, TF_LAT]}
result = build_geom_json(geo)
parsed = json.loads(result)
assert parsed == {"type": "Point", "coordinates": [TF_LON, TF_LAT]}
def test_bbox_wins_over_centroid(self):
geo = {
"bbox": [-115.0, 42.0, -113.0, 43.0],
"centroid": [LA_LON, LA_LAT],
}
result = build_geom_json(geo)
assert "Polygon" in result
def test_returns_none_if_no_usable_shape(self):
geo = {"name": "irrelevant"}
assert build_geom_json(geo) is None
# ===========================================================================
# classify_geom_areas
# ===========================================================================
class TestClassifyGeomAreas:
def test_null_geom_returns_null_geom(self):
assert classify_geom_areas(None, IDAHO_AREAS) == "null-geom"
def test_no_area_returns_no_area(self):
geom_json = json.dumps({"type": "Point", "coordinates": [TF_LON, TF_LAT]})
assert classify_geom_areas(geom_json, []) == "no-area"
def test_idaho_point_in_bounds(self):
geom_json = json.dumps({"type": "Point", "coordinates": [TF_LON, TF_LAT]})
assert classify_geom_areas(geom_json, IDAHO_AREAS) == "in-bounds"
def test_la_point_out_of_bounds(self):
"""LA repro: a point at (34.05N, 118.24W) must be OUT of an Idaho box."""
geom_json = json.dumps({"type": "Point", "coordinates": [LA_LON, LA_LAT]})
assert classify_geom_areas(geom_json, IDAHO_AREAS) == "out-of-bounds"
def test_ca_polygon_out_of_bounds(self):
"""CA polygon straddling 34N should be fully outside Idaho."""
assert classify_geom_areas(CA_POLYGON_GEOJSON, IDAHO_AREAS) == "out-of-bounds"
def test_straddler_polygon_in_bounds(self):
"""Polygon crossing the ID/OR border still intersects Idaho → in-bounds."""
assert classify_geom_areas(STRADDLER_GEOJSON, IDAHO_AREAS) == "in-bounds"
def test_invalid_geom_returns_invalid_geom(self):
assert classify_geom_areas("this is not json", IDAHO_AREAS) == "invalid-geom"
def test_empty_geom_string_returns_invalid_geom(self):
assert classify_geom_areas("", IDAHO_AREAS) == "invalid-geom"
def test_multi_area_union_point_in_second_box(self):
"""A point inside the Yellowstone box (not Idaho) → in-bounds via union."""
# Yellowstone area: north=45.2, south=44.0, east=-109.5, west=-111.5
ys_point = json.dumps({"type": "Point", "coordinates": [-110.5, 44.5]})
assert classify_geom_areas(ys_point, TWO_AREAS) == "in-bounds"
def test_multi_area_union_point_in_neither_box(self):
"""A point in Wyoming (but not in either box) → out-of-bounds."""
# Far eastern Wyoming, outside both boxes
wy_point = json.dumps({"type": "Point", "coordinates": [-104.0, 42.5]})
assert classify_geom_areas(wy_point, TWO_AREAS) == "out-of-bounds"
def test_border_edge_point_is_in_bounds(self):
"""A point exactly on the Idaho box edge → in-bounds (intersects semantics)."""
# Exactly on the western edge of Idaho box (lon=-117, lat=43)
edge = json.dumps({"type": "Point", "coordinates": [-117.0, 43.0]})
assert classify_geom_areas(edge, IDAHO_AREAS) == "in-bounds"
# ===========================================================================
# areas_from_config
# ===========================================================================
class TestAreasFromConfig:
def test_from_areas_list(self):
cov = Coverage(areas=[
{"name": "Idaho", "west": -117.0, "south": 42.0, "east": -111.0, "north": 44.0}
])
areas = areas_from_config(cov)
assert len(areas) == 1
a = areas[0]
assert a.west == -117.0 and a.south == 42.0
assert a.east == -111.0 and a.north == 44.0
def test_falls_back_to_bbox(self):
cov = Coverage(bbox=[-117.0, 42.0, -111.0, 44.0])
areas = areas_from_config(cov)
assert len(areas) == 1
assert areas[0].west == -117.0
def test_areas_takes_precedence_over_bbox(self):
cov = Coverage(
bbox=[-110.0, 30.0, -100.0, 35.0], # TX — totally different
areas=[{"name": "ID", "west": -117.0, "south": 42.0, "east": -111.0, "north": 44.0}],
)
areas = areas_from_config(cov)
assert len(areas) == 1
assert areas[0].west == -117.0 # Idaho, not TX
def test_empty_config_returns_empty(self):
cov = Coverage()
assert areas_from_config(cov) == []
def test_multi_area_list(self):
cov = Coverage(areas=[
{"name": "Idaho", "west": -117.0, "south": 42.0, "east": -111.0, "north": 44.0},
{"name": "Yellowstone", "west": -111.5, "south": 44.0, "east": -109.5, "north": 45.2},
])
areas = areas_from_config(cov)
assert len(areas) == 2
def test_malformed_area_dict_skipped(self):
cov = Coverage(areas=[
{"name": "bad"}, # missing west/south/east/north
{"name": "Idaho", "west": -117.0, "south": 42.0, "east": -111.0, "north": 44.0},
])
areas = areas_from_config(cov)
assert len(areas) == 1 # only the valid one
# ===========================================================================
# event_in_areas
# ===========================================================================
class TestEventInAreas:
def _event_with_geom(self, geometry_dict, lat=None, lon=None):
return make_event(
source="nws", category="weather_warning", severity="priority",
title="Test", lat=lat, lon=lon,
data={"geometry": geometry_dict},
)
def _event_with_centroid(self, lat, lon):
return make_event(
source="nws", category="weather_warning", severity="priority",
title="Test", lat=lat, lon=lon,
)
def test_idaho_centroid_kept(self):
event = self._event_with_centroid(TF_LAT, TF_LON)
assert event_in_areas(event, IDAHO_AREAS) is True
def test_la_centroid_dropped(self):
"""LA-repro: centroid at (34.05, -118.24) must be dropped by Idaho gate."""
event = self._event_with_centroid(LA_LAT, LA_LON)
assert event_in_areas(event, IDAHO_AREAS) is False
def test_ca_polygon_dropped(self):
"""LA-repro: event carrying a CA polygon must be dropped by Idaho gate."""
ca_geom = {"type": "Polygon", "coordinates": [CA_POLYGON_COORDS]}
event = self._event_with_geom(ca_geom)
assert event_in_areas(event, IDAHO_AREAS) is False
def test_idaho_polygon_kept(self):
idaho_geom = {
"type": "Polygon",
"coordinates": [[
[-115.0, 42.5], [-113.0, 42.5], [-113.0, 43.5],
[-115.0, 43.5], [-115.0, 42.5],
]],
}
event = self._event_with_geom(idaho_geom)
assert event_in_areas(event, IDAHO_AREAS) is True
def test_no_geometry_kept_fail_open(self):
"""Event with no lat/lon and no data geometry → null-geom → kept."""
event = make_event(
source="swpc", category="kp_index", severity="priority",
title="No geometry event",
)
assert event_in_areas(event, IDAHO_AREAS) is True
def test_empty_areas_kept(self):
event = self._event_with_centroid(LA_LAT, LA_LON)
assert event_in_areas(event, []) is True
def test_event_with_bbox_in_data(self):
"""Event carrying data[bbox] (not geometry) is classified via bbox polygon."""
event = make_event(
source="firms", category="wildfire_hotspot", severity="priority",
title="Fire",
data={"bbox": [-114.5, 42.5, -113.5, 43.5]}, # Idaho bbox
)
assert event_in_areas(event, IDAHO_AREAS) is True
def test_event_with_out_of_area_bbox_in_data(self):
event = make_event(
source="firms", category="wildfire_hotspot", severity="priority",
title="Fire",
data={"bbox": [-119.0, 33.5, -117.5, 34.6]}, # CA bbox
)
assert event_in_areas(event, IDAHO_AREAS) is False
# ===========================================================================
# CoverageFilter — unit tests
# ===========================================================================
class TestCoverageFilter:
def _make_filter(self, areas=None, enabled=True, excluded=None, received=None):
if received is None:
received = []
flt = CoverageFilter(
next_handler=received.append,
areas=areas if areas is not None else IDAHO_AREAS,
enabled=enabled,
excluded_adapters=set(excluded or []),
)
return flt, received
# -- LA leak repro -------------------------------------------------------
def test_la_event_with_polygon_dropped(self):
"""LA-repro: event with CA polygon GeoJSON is dropped by Idaho gate."""
flt, received = self._make_filter()
ca_geom = {"type": "Polygon", "coordinates": [CA_POLYGON_COORDS]}
event = make_event(
source="nws", category="weather_warning", severity="priority",
title="Severe Thunderstorm Warning — Los Angeles County",
lat=LA_LAT, lon=LA_LON,
data={"geometry": ca_geom},
)
flt.handle(event)
assert len(received) == 0, "LA event with CA polygon must be dropped"
def test_la_event_with_centroid_dropped(self):
"""LA-repro: event with centroid at LA is dropped by Idaho gate."""
flt, received = self._make_filter()
event = make_event(
source="nws", category="weather_warning", severity="priority",
title="LA weather alert", lat=LA_LAT, lon=LA_LON,
)
flt.handle(event)
assert len(received) == 0, "LA centroid event must be dropped"
# -- Idaho events pass ---------------------------------------------------
def test_idaho_event_kept(self):
flt, received = self._make_filter()
event = make_event(
source="nws", category="weather_warning", severity="priority",
title="Idaho alert", lat=TF_LAT, lon=TF_LON,
)
flt.handle(event)
assert len(received) == 1
# -- Disabled / no-areas pass-through ------------------------------------
def test_coverage_disabled_keeps_everything(self):
flt, received = self._make_filter(enabled=False)
event = make_event(
source="nws", category="weather_warning", severity="priority",
title="LA alert", lat=LA_LAT, lon=LA_LON,
)
flt.handle(event)
assert len(received) == 1
def test_empty_areas_keeps_everything(self):
flt, received = self._make_filter(areas=[])
event = make_event(
source="nws", category="weather_warning", severity="priority",
title="LA alert", lat=LA_LAT, lon=LA_LON,
)
flt.handle(event)
assert len(received) == 1
# -- Excluded adapter bypass ---------------------------------------------
def test_excluded_adapter_bypasses_gate(self):
"""Events from excluded adapters pass even if out of area."""
flt, received = self._make_filter(excluded=["swpc"])
event = make_event(
source="swpc", category="kp_index", severity="priority",
title="Solar event", lat=LA_LAT, lon=LA_LON,
)
flt.handle(event)
assert len(received) == 1
def test_non_excluded_adapter_is_gated(self):
"""Events from non-excluded adapters still go through the gate."""
flt, received = self._make_filter(excluded=["swpc"])
event = make_event(
source="nws", category="weather_warning", severity="priority",
title="LA alert", lat=LA_LAT, lon=LA_LON,
)
flt.handle(event)
assert len(received) == 0
# -- fail-open -----------------------------------------------------------
def test_no_geometry_event_kept_fail_open(self):
"""Events with no geometry (null-geom) are kept (fail-open)."""
flt, received = self._make_filter()
event = make_event(
source="swpc", category="kp_index", severity="priority",
title="Solar storm — no location",
)
flt.handle(event)
assert len(received) == 1
# -- multi-area union ----------------------------------------------------
def test_multi_area_point_in_second_box_kept(self):
flt, received = self._make_filter(areas=TWO_AREAS)
# A point in the Yellowstone box (not Idaho proper)
event = make_event(
source="nws", category="weather_warning", severity="priority",
title="Yellowstone area alert", lat=44.5, lon=-110.5,
)
flt.handle(event)
assert len(received) == 1
def test_multi_area_point_in_neither_dropped(self):
flt, received = self._make_filter(areas=TWO_AREAS)
# Far eastern Wyoming — outside both boxes
event = make_event(
source="nws", category="weather_warning", severity="priority",
title="Wyoming alert", lat=42.5, lon=-104.0,
)
flt.handle(event)
assert len(received) == 0
# ===========================================================================
# Pipeline wiring — CoverageFilter is in the chain
# ===========================================================================
class TestCoverageFilterPipelineWiring:
def test_coverage_filter_wired_in_pipeline(self):
"""build_pipeline stashes coverage_filter in _pipeline_components."""
from unittest.mock import MagicMock, AsyncMock
from meshai.notifications.pipeline import build_pipeline
config = Coverage.__new__(Coverage) # we need a full Config below
from meshai.config import Config
config = Config()
config.coverage = Coverage(
areas=[{"name": "Idaho", "west": -117.0, "south": 42.0,
"east": -111.0, "north": 44.0}],
enabled=True,
)
mock_backend = MagicMock()
mock_backend.generate = AsyncMock(return_value="stub")
bus = build_pipeline(config, mock_backend)
comps = bus._pipeline_components
assert "coverage_filter" in comps
cf = comps["coverage_filter"]
assert hasattr(cf, "handle")
assert isinstance(cf, CoverageFilter)
def test_coverage_filter_gate_fires_in_pipeline(self):
"""Events emitted to the bus from out-of-area are dropped before dispatch."""
from unittest.mock import MagicMock, AsyncMock
from meshai.notifications.pipeline import build_pipeline
from meshai.config import Config, NotificationToggle
config = Config()
config.coverage = Coverage(
areas=[{"name": "Idaho", "west": -117.0, "south": 42.0,
"east": -111.0, "north": 44.0}],
enabled=True,
)
# Enable weather toggle so ToggleFilter passes the event through to
# CoverageFilter (otherwise toggle filter swallows it first)
config.notifications.toggles["weather"].enabled = True
mock_backend = MagicMock()
mock_backend.generate = AsyncMock(return_value="stub")
received_by_tee: list = []
bus = build_pipeline(config, mock_backend)
# Monkeypatch the coverage_filter's next_handler to observe what reaches _tee
cf = bus._pipeline_components["coverage_filter"]
cf._next = received_by_tee.append # type: ignore[assignment]
# Emit an out-of-area LA event
la_event = make_event(
source="nws", category="weather_warning", severity="priority",
title="LA Thunderstorm Warning", lat=LA_LAT, lon=LA_LON,
)
bus.emit(la_event)
assert len(received_by_tee) == 0, "LA event must not reach _tee"
# Emit an in-area Idaho event
id_event = make_event(
source="nws", category="weather_warning", severity="priority",
title="Idaho Thunderstorm Warning", lat=TF_LAT, lon=TF_LON,
)
bus.emit(id_event)
assert len(received_by_tee) == 1, "Idaho event must reach _tee"
# ===========================================================================
# Idaho + MultiPolygon geometry fixtures (for the fail-closed / geometry work)
# ===========================================================================
# A polygon firmly inside the Idaho box (centroid ~ 42.9N, -114.2W → Twin Falls)
ID_POLYGON_COORDS = [
[-115.0, 42.5],
[-113.0, 42.5],
[-113.0, 43.5],
[-115.0, 43.5],
[-115.0, 42.5],
]
ID_POLYGON_GEOM = {"type": "Polygon", "coordinates": [ID_POLYGON_COORDS]}
# A MultiPolygon whose FIRST polygon's outer ring is inside Idaho; a second,
# far-away polygon (in Kansas) exercises the "first polygon wins" centroid rule.
KS_POLYGON_COORDS = [
[-98.0, 38.0],
[-97.0, 38.0],
[-97.0, 39.0],
[-98.0, 39.0],
[-98.0, 38.0],
]
ID_MULTIPOLYGON_GEOM = {
"type": "MultiPolygon",
"coordinates": [[ID_POLYGON_COORDS], [KS_POLYGON_COORDS]],
}
# ===========================================================================
# classify_event_areas — 3-state classification helper
# ===========================================================================
class TestClassifyEventAreas:
def test_idaho_polygon_in_bounds(self):
event = make_event(
source="nws", category="weather_advisory", severity="routine",
title="ID advisory", data={"geometry": ID_POLYGON_GEOM},
)
assert classify_event_areas(event, IDAHO_AREAS) == "in-bounds"
def test_ca_polygon_out_of_bounds(self):
ca_geom = {"type": "Polygon", "coordinates": [CA_POLYGON_COORDS]}
event = make_event(
source="nws", category="weather_advisory", severity="routine",
title="CA advisory", data={"geometry": ca_geom},
)
assert classify_event_areas(event, IDAHO_AREAS) == "out-of-bounds"
def test_no_geometry_no_centroid_is_null_geom(self):
"""The exact zone-only-alert shape: geometry=None, no lat/lon."""
event = make_event(
source="nws", category="weather_advisory", severity="routine",
title="Heat Advisory (zone-only)", data={"geometry": None},
)
assert classify_event_areas(event, IDAHO_AREAS) == "null-geom"
def test_multipolygon_in_bounds(self):
event = make_event(
source="nws", category="weather_warning", severity="priority",
title="ID multipolygon warning", data={"geometry": ID_MULTIPOLYGON_GEOM},
)
assert classify_event_areas(event, IDAHO_AREAS) == "in-bounds"
# ===========================================================================
# CoverageFilter — fail-CLOSED for weather, fail-OPEN for everything else
# ===========================================================================
class TestCoverageFilterFailClosed:
def _make_filter(self, areas=None, excluded=None):
received: list = []
flt = CoverageFilter(
next_handler=received.append,
areas=areas if areas is not None else IDAHO_AREAS,
enabled=True,
excluded_adapters=set(excluded or []),
)
return flt, received
def test_fail_closed_categories_are_the_nws_categories(self):
"""Guard: the fail-closed set is exactly env/nws._derive_category's outputs."""
assert FAIL_CLOSED_CATEGORIES == {
"weather_warning", "weather_watch",
"weather_advisory", "weather_statement",
}
# -- THE REAL LA LEAK: zone-only advisory, no polygon, no centroid --------
def test_zone_only_advisory_no_geometry_dropped_failclosed(self):
"""REAL repro of the leak: a zone-only NWS Heat Advisory with NO polygon
and NO centroid, under an Idaho-only coverage area, is now DROPPED
(fail-closed). Previously the fail-open gate KEPT it wrong-region leak.
"""
flt, received = self._make_filter()
event = make_event(
source="nws", category="weather_advisory", severity="routine",
title="Heat Advisory issued for Los Angeles County",
# zone-only: geometry is explicitly None, and there is NO lat/lon
data={"geometry": None},
)
assert event.lat is None and event.lon is None # truly unlocatable
flt.handle(event)
assert len(received) == 0, (
"zone-only weather advisory with no geometry must be DROPPED "
"(fail-closed) — this is the exact LA leak"
)
def test_zone_only_statement_no_geometry_dropped_failclosed(self):
"""A weather_statement (Special Weather Statement) with no geometry is
also fail-closed all four NWS categories are covered."""
flt, received = self._make_filter()
event = make_event(
source="nws", category="weather_statement", severity="routine",
title="Special Weather Statement", data={"geometry": None},
)
flt.handle(event)
assert len(received) == 0
# -- out-of-bounds real polygon (CA) -------------------------------------
def test_ca_polygon_advisory_dropped_out_of_bounds(self):
flt, received = self._make_filter()
ca_geom = {"type": "Polygon", "coordinates": [CA_POLYGON_COORDS]}
event = make_event(
source="nws", category="weather_advisory", severity="routine",
title="CA advisory", data={"geometry": ca_geom},
)
flt.handle(event)
assert len(received) == 0, "out-of-bounds CA polygon must be dropped"
# -- in-bounds real polygon (ID) -----------------------------------------
def test_idaho_polygon_advisory_kept_in_bounds(self):
flt, received = self._make_filter()
event = make_event(
source="nws", category="weather_advisory", severity="routine",
title="ID advisory", data={"geometry": ID_POLYGON_GEOM},
)
flt.handle(event)
assert len(received) == 1, "in-bounds Idaho polygon must be kept"
def test_idaho_multipolygon_advisory_kept_in_bounds(self):
flt, received = self._make_filter()
event = make_event(
source="nws", category="weather_advisory", severity="routine",
title="ID multipolygon advisory", data={"geometry": ID_MULTIPOLYGON_GEOM},
)
flt.handle(event)
assert len(received) == 1, "in-bounds Idaho MultiPolygon must be kept"
# -- fail-OPEN preserved for non-weather ---------------------------------
def test_non_weather_no_geometry_kept_fail_open(self):
"""A non-weather event (quake) with no geometry AND no centroid is still
KEPT (fail-open unchanged) proves we did not over-tighten other
adapters. Only the FAIL_CLOSED_CATEGORIES are dropped when unlocatable.
"""
flt, received = self._make_filter()
event = make_event(
source="usgs", category="earthquake", severity="priority",
title="Quake with no geometry", # no lat/lon, no data geometry
)
assert event.lat is None and event.lon is None
assert event.category not in FAIL_CLOSED_CATEGORIES
flt.handle(event)
assert len(received) == 1, "non-weather unlocatable event must be KEPT (fail-open)"
def test_swpc_no_geometry_kept_fail_open(self):
"""SWPC (space weather, global) with no geometry stays fail-open."""
flt, received = self._make_filter()
event = make_event(
source="swpc", category="kp_index", severity="priority",
title="Geomagnetic storm — no location",
)
flt.handle(event)
assert len(received) == 1
# ===========================================================================
# NWS adapter — attaches raw alert geometry + MultiPolygon centroid, and the
# geometry flows env-event → to_event → Event.data["geometry"]
# ===========================================================================
def _nws_adapter():
config = MagicMock()
config.areas = ["ID"]
config.user_agent = "(test, test@example.com)"
config.severity_min = "moderate"
config.tick_seconds = 60
return NWSAlertsAdapter(config)
def _mock_urlopen_with_features(features):
"""Return a context-manager mock whose .read() yields a geo+json payload."""
payload = json.dumps({"features": features}).encode("utf-8")
resp = MagicMock()
resp.read.return_value = payload
resp.__enter__.return_value = resp
resp.__exit__.return_value = False
return resp
class TestNWSGeometryAttach:
def _fetch_one(self, geometry):
adapter = _nws_adapter()
feature = {
"properties": {
"id": "urn:oid:nws-test-1",
"event": "Heat Advisory",
"severity": "Moderate",
"headline": "Heat Advisory",
"description": "Hot.",
"areaDesc": "Test County",
},
"geometry": geometry,
}
resp = _mock_urlopen_with_features([feature])
with patch("meshai.env.nws.urlopen", return_value=resp):
adapter._fetch()
events = adapter.get_events()
assert len(events) == 1
return adapter, events[0]
def test_polygon_geometry_attached_to_event(self):
"""The parsed env event carries event['geometry'] = the feature geometry."""
_, event = self._fetch_one(ID_POLYGON_GEOM)
assert event["geometry"] == ID_POLYGON_GEOM
def test_polygon_centroid_computed(self):
_, event = self._fetch_one(ID_POLYGON_GEOM)
# centroid of the ID polygon ring ~ (42.9N, -114.2W) — inside Idaho
assert 42.0 <= event["lat"] <= 44.0
assert -117.0 <= event["lon"] <= -111.0
def test_multipolygon_geometry_attached_and_centroid_computed(self):
"""MultiPolygon: geometry attached verbatim + centroid from first
polygon's outer ring (must land in Idaho, not the far-away 2nd polygon).
"""
_, event = self._fetch_one(ID_MULTIPOLYGON_GEOM)
assert event["geometry"] == ID_MULTIPOLYGON_GEOM
# first polygon is the Idaho one → centroid inside Idaho
assert 42.0 <= event["lat"] <= 44.0
assert -117.0 <= event["lon"] <= -111.0
def test_zone_only_geometry_is_none(self):
"""A zone-only alert (no geometry) yields event['geometry'] is None and
NO centroid the exact unlocatable shape the gate fails closed on."""
_, event = self._fetch_one(None)
assert event["geometry"] is None
assert "lat" not in event and "lon" not in event
def test_to_event_carries_geometry_into_data(self):
"""Trace: env event['geometry'] → to_event → Event.data['geometry']."""
adapter, event = self._fetch_one(ID_POLYGON_GEOM)
pipeline_event = adapter.to_event(event)
assert pipeline_event.data["geometry"] == ID_POLYGON_GEOM
def test_to_event_carries_none_geometry_for_zone_only(self):
adapter, event = self._fetch_one(None)
pipeline_event = adapter.to_event(event)
assert pipeline_event.data["geometry"] is None