meshai/work/tests/test_incident_refactor.py
malice 6050392d09
chore(central-ripout 2e): split central_normalizer.py; eliminate the "central" name (#165)
Final structural step. central_normalizer.py (973 LOC, misnamed — it lived
OUTSIDE central/ but its docstring described "the Central firehose") is DELETED.
No file or symbol named "central" survives (only immutable historical comments
in an already-applied migration .sql remain — those are not edited).

Split per the owner's rule ("next to what uses it"):
- Live geo/place-name utilities (nearest_town, _haversine_miles, _bearing_compass,
  _compute_distance_bearing, _h3_cell, _photon_reverse_places, geocoder config)
  → the EXISTING meshai/geo.py ("Geographic utilities…"), same domain. NOT a
  junk drawer. geo.py's nearest_city (hardcoded table) and central_normalizer's
  nearest_town (live Photon+H3 reverse-geocode) are different implementations —
  both kept, no false consolidation.
- WZDx work-zone parsers (_parse_wzdx_federal, _norm_wzdx_sub_type, _norm_direction,
  _parse_mile_posts, _clean_description, _is_uninformative_road) → env/wzdx_parse.py,
  next to their sole consumer env/wzdx.py.
- ~400 dead lines deleted: the Central-envelope machinery (normalize,
  _parse_state_511_atis, _parse_wfigs_incidents, _parse_itd_511_work_zone,
  should_skip_state_511_atis_id, is_incident_envelope_stale, normalize_road_name,
  _norm_sub_type, _parse_ends_at) — only caller was the deleted Central consumer.

Consumers rewired: env/wzdx.py, env/fire_render.py, formatters/fire.py,
formatters/_anchor.py, main.py, persistence/curation.py, composer.py.

Tests: test_central_normalizer.py RENAMED → test_geo_wzdx_parse.py (live geo/wzdx
tests kept + rewired; dead-parser tests dropped). test_itd_511_work_zone.py
deleted (tested only the dead itd_511 parser — verified gone from source).
Other test files: import-path rewires. Live coverage for nearest_town /
_parse_wzdx_federal / bearing preserved across test_geo_wzdx_parse, test_adapter_wzdx,
test_wfigs_handler, test_incident_refactor.

Suite: 2010 passed, 0 failed. The 49-test drop is the dead Central-envelope
parser tests, correctly removed. Stale "Central firehose" docstrings on the
moved code updated to describe present behavior.

Co-authored-by: Matt Johnson <mj@k7zvx.com>
Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-17 17:15:50 -06:00

579 lines
25 KiB
Python

"""Phase-2 incident/roads refactor tests — TIER-A (byte-identical goldens).
The Central `incident_handler` module (`_parse_tomtom_incident()`,
`_parse_itd_511_incident()`, `_render()`) has been deleted along with the
rest of the Central NATS consumer path. The TomTom-incidents and ITD-511
golden-fixture parity groups that called those deleted parsers directly to
build a "golden" wire and compare it byte-for-byte against
formatters.incident.format() have been removed in full (46 tests across
TestTomtomGolden, TestItd511IncidentGolden, and
TestSchemaConformance::test_incident_canonical_keys_from_parser) — every
assertion in those tests was generated FROM the deleted parser output, with
no independent hand-written expected content to fall back to, and no
native adapter exists that parses the *TomTom Incident Details* or Central
ITD-511-envelope raw shapes those fixtures capture (env/traffic.py is the
TomTom traffic-*flow* adapter, a different feed; env/roads511.py parses
ITD 511's own REST API shape, not the Central envelope fixtures here).
Original diffs are preserved in git history. This is a real production gap
flagged for Matt: TomTom road-incident ingestion in particular has no
native replacement.
Work-zone parity: the (now fully deleted) Central-envelope adapter-normalizer
module was never part of the deleted Central consumer path, but
chore/ripout-2e-geo-normalizer found it had no live production
caller of its OWN either (env/roads511.py, the real live itd_511 adapter,
never used it) and deleted it in turn -- name and all. Its one live part,
the wzdx federal parser, moved to `meshai.env.wzdx_parse` next to its real
consumer `env.wzdx`. `meshai.notifications.renderers.work_zone` was ALSO
never part of the deleted Central consumer path, but was itself dead code
(zero production callers) once formatters.incident absorbed it as
`_render_work_zone()`; it was removed in a later ripout pass. See
TestWorkZoneGolden below for how both dead parsers' golden-parity coverage
was preserved as pinned literals (the itd_511 canonical dict) or a direct
call to the surviving live parser (wzdx).
Groups
------
1. Work-zone golden byte-parity (traffic_last/0002 itd_511 -- pinned
canonical-dict literal, the parser is dead; traffic_last/0003 wzdx --
calls the live _parse_wzdx_federal directly).
2. Gate sequence: decide() lifecycle transitions (new → cold-dup →
suppress-on-update-False → magnitude-up → suppress-no-change).
3. _anchor.resolve_anchor: DB hit and Photon fallback path.
4. Schema conformance: canonical data dict has all expected keys.
5. Cross-source identity: same render fields → same output regardless of
source string.
"""
from __future__ import annotations
import calendar
import json
import pathlib
import time
from datetime import datetime
from typing import Optional
import pytest
from tests.harness.goldens import assert_byte_identical
# ── Constants ────────────────────────────────────────────────────────────────
_FIXTURE_DIR = pathlib.Path(__file__).parent / "fixtures"
# Pinned clock epoch for deterministic golden comparison (all work-zone tests).
# Using captured_epoch of the traffic_last fixtures (1783206522).
_AT_WZ = 1_783_206_522.0
# Expected canonical data keys for work-zone events.
_WZ_CANONICAL_KEYS = frozenset({
"road", "direction", "mile_start", "mile_end", "sub_type", "impact",
"ends_at_epoch", "town", "distance_mi", "bearing", "lat", "lon",
})
# ── Fixture loaders (module-level, before any DB touch) ──────────────────────
def _load_dir(hazard: str):
"""Load all fixtures from tests/fixtures/<hazard>/ sorted by name."""
d = _FIXTURE_DIR / hazard
if not d.is_dir():
return []
out = []
for p in sorted(d.glob("*.json")):
with open(p, encoding="utf-8") as f:
out.append((p.name, json.load(f)))
return out
_TRAFFIC_LAST_FX = _load_dir("traffic_last") # 6 files (mixed adapters)
# ── Helper: build canonical work-zone dict from normalize() output ───────────
def _n_to_canonical_workzone(n: dict) -> dict:
"""Build canonical work-zone data dict from a normalize() result.
ends_at_epoch is stored as calendar.timegm(naive_dt.timetuple()) which
treats the naive datetime as UTC. The formatter reconstructs via
datetime.utcfromtimestamp() — TZ-independent round-trip.
"""
ends_at: Optional[datetime] = n.get("ends_at")
ends_at_epoch: Optional[float] = None
if ends_at is not None:
try:
# Strip tzinfo first (mirrors _format_end_short's strip).
naive = ends_at.replace(tzinfo=None) if ends_at.tzinfo is not None else ends_at
ends_at_epoch = float(calendar.timegm(naive.timetuple()))
except Exception:
ends_at_epoch = None
return {
"road": n.get("road"),
"direction": n.get("direction"),
"mile_start": n.get("mile_start"),
"mile_end": n.get("mile_end"),
"sub_type": n.get("sub_type"),
"impact": n.get("impact"),
"ends_at_epoch": ends_at_epoch,
"town": n.get("town"),
"distance_mi": n.get("distance_mi"),
"bearing": n.get("bearing"),
"lat": None, # anchor already resolved in normalizer
"lon": None,
}
# ── Helper: minimal Event for formatter calls ────────────────────────────────
def _make_event(category: str, data: dict):
from meshai.notifications.events import Event
return Event(category=category, data=data)
# ── pytest fixtures: adapter_config overrides ────────────────────────────────
@pytest.fixture()
def broadcast_on_update_on():
"""Enable incident.broadcast_on_update for gate-sequence tests."""
from meshai.adapter_config._accessor import set_runtime_override, _overrides
set_runtime_override("incident", "broadcast_on_update", True)
yield
_overrides.pop(("incident", "broadcast_on_update"), None)
# ── Helper: determine adapter type ────────────────────────────────────────────
def _adapter_for(fx: dict) -> str:
return (fx["envelope"]["data"] or {}).get("adapter") or ""
# ── 1. Work-zone golden byte-parity ─────────────────────────────────────────
class TestWorkZoneGolden:
"""traffic_last/0002 (itd_511 work_zone) and traffic_last/0003 (wzdx)
must produce byte-identical output from the new formatter.
Originally the golden was computed live via normalize() →
format_work_zone_mesh() (old renderers.work_zone path) and compared
against normalize() → canonical data → formatters.incident.format()
(new path). renderers.work_zone.py has since been deleted (dead code,
zero production callers post-Central-excision; formatters.incident's
_render_work_zone() is its byte-identical live replacement — see that
module's docstring). Mirroring the approach in test_nws_refactor.py for
the same situation: the golden strings below were captured by running
format_work_zone_mesh() against these exact fixtures immediately before
its deletion (confirmed byte-identical to the new formatter's output at
that time) and are now pinned as literals, so this test exercises the
LIVE formatters.incident.format() path only.
now is pinned to captured_epoch (1783206522) for both paths so the
ends-at segment is deterministic.
chore/ripout-2e-geo-normalizer update: the deleted normalizer's
normalize() (and the itd_511 work_zone parser it dispatched to,
_parse_itd_511_work_zone) is now gone -- it had no live production
caller (env.roads511, the actual live itd_511 adapter, never used it).
For 0002.json (itd_511) the CANONICAL DICT that used to be computed live
via normalize() is now, by the same "pin it before the source goes away"
methodology already used for the wire-string goldens above, captured as
a literal (`_ITD511_0002_CANONICAL` below -- captured by running
normalize() against this exact fixture immediately before that module's
deletion, confirmed byte-identical to the pinned wire golden at that
time).
For 0003.json (wzdx) the parser (_parse_wzdx_federal) IS still live --
it moved to meshai.env.wzdx_parse, next to its real consumer env.wzdx --
so that fixture keeps calling the real parser directly instead of a
pinned literal.
"""
_GOLDEN = {
"0002.json": "🚧 US-91, near Chubbuck: southbound, road construction, ends Aug 17",
"0003.json": "🚧 US-95, near Wilder: southbound, ends Jul 19",
}
# Captured from the deleted normalizer's normalize() + _n_to_canonical_workzone()
# against traffic_last/0002.json immediately before that module's
# deletion. town="Chubbuck"/bearing="NW"/distance_mi=0 came from a live
# Photon nearest_town() call at capture time (this fixture's geocoder.city
# is null) -- the same live dependency the pinned wire golden above already
# implicitly baked in ("near Chubbuck").
_ITD511_0002_CANONICAL = {
"road": "US-91", "direction": "southbound",
"mile_start": None, "mile_end": None,
"sub_type": "road construction", "impact": "partial",
"ends_at_epoch": 1786968000.0,
"town": "Chubbuck", "distance_mi": 0, "bearing": "NW",
"lat": None, "lon": None,
}
def _run_wz(self, fixture_name: str, adapter_expected: str):
from meshai.notifications.formatters.incident import format as fmt
# Find the fixture by name
fx_map = dict(_TRAFFIC_LAST_FX)
assert fixture_name in fx_map, f"Fixture {fixture_name!r} not found"
fx = fx_map[fixture_name]
adapter = _adapter_for(fx)
assert adapter == adapter_expected, (
f"Expected adapter={adapter_expected!r}, got {adapter!r}"
)
envelope = fx["envelope"]
now_epoch = float(fx.get("captured_epoch", time.time()))
golden = self._GOLDEN[fixture_name]
if adapter == "wzdx":
from meshai.env.wzdx_parse import _parse_wzdx_federal
inner = envelope["data"]
n = _parse_wzdx_federal(inner["data"], inner.get("geo") or {})
assert n is not None, f"_parse_wzdx_federal returned None for {fixture_name!r}"
canonical = _n_to_canonical_workzone(n)
else:
# itd_511: dead parser, pinned canonical dict (see class docstring).
canonical = dict(self._ITD511_0002_CANONICAL)
event = _make_event("work_zone", canonical)
new_out = fmt(event, now=now_epoch, budget=140)
assert_byte_identical(new_out, golden)
def test_itd511_workzone_0002(self):
self._run_wz("0002.json", "itd_511")
def test_wzdx_workzone_0003(self):
self._run_wz("0003.json", "wzdx")
# ── 2. Gate sequence ──────────────────────────────────────────────────────────
class TestGateSequence:
"""decide() lifecycle transitions:
step 1: new external_id → lifecycle="new", broadcast=True
step 2: same id, cold-dup (commit not called) → lifecycle="new", broadcast=True
step 3: same id, last_broadcast_at set; broadcast_on_update=False → suppress
step 4: enable broadcast_on_update; magnitude up → lifecycle="update"
step 5: same magnitude, no other change → suppress
"""
_BASE_DATA = {
"external_id": "test-tti-abc123",
"source": "tomtom_incidents",
"sub_type": "jam",
"road": "I-84",
"direction": "W",
"from_loc": None,
"to_loc": None,
"mile_start": None,
"mile_end": None,
"county": "Ada",
"state": "ID",
"lat": 43.5,
"lon": -116.2,
"impact": None,
"start_at": 1783200000,
"end_at": None,
"magnitude": 3,
"delay_seconds": 180,
"icon_category": "jam",
}
def _decide(self, data: dict, now: float = 1_783_200_000.0):
from meshai.notifications.gating.incident import decide
return decide(data, source="tomtom_incidents", now=now)
def test_step1_new(self):
"""First sight → new, broadcast=True, commit is callable."""
result = self._decide(dict(self._BASE_DATA))
assert result.broadcast is True
assert result.lifecycle == "new"
assert callable(result.commit)
assert result.data_patch.get("is_update") is False
def test_step2_cold_dup_no_commit(self):
"""Row exists (from step1 INSERT) but last_broadcast_at = NULL
→ cold-start → still lifecycle="new", broadcast=True."""
data = dict(self._BASE_DATA)
# INSERT without committing (simulate dispatcher drop)
self._decide(data, now=1_783_200_000.0)
# Second call: row exists, last_broadcast_at still NULL
result = self._decide(data, now=1_783_200_001.0)
assert result.broadcast is True
assert result.lifecycle == "new"
def test_step3_suppress_when_update_false(self):
"""After commit (last_broadcast_at set), broadcast_on_update=False → suppress."""
data = dict(self._BASE_DATA)
# Step 1: new + commit
r1 = self._decide(data, now=1_783_200_000.0)
assert r1.broadcast is True
r1.commit(1_783_200_000.0) # sets last_broadcast_at
# Step 3: same data, no magnitude/delay/icon change, update=False (default)
r2 = self._decide(data, now=1_783_200_010.0)
assert r2.broadcast is False
assert r2.lifecycle == "suppress"
def test_step4_magnitude_up_triggers_update(self, broadcast_on_update_on):
"""With broadcast_on_update=True + magnitude stepped up → lifecycle="update"."""
data = dict(self._BASE_DATA)
# new + commit
r1 = self._decide(data, now=1_783_200_000.0)
r1.commit(1_783_200_000.0)
# Higher magnitude
data_updated = dict(self._BASE_DATA, magnitude=4)
result = self._decide(data_updated, now=1_783_200_020.0)
assert result.broadcast is True
assert result.lifecycle == "update"
assert result.data_patch.get("is_update") is True
def test_step5_no_change_suppressed(self, broadcast_on_update_on):
"""After update commit, same magnitude → suppress."""
data = dict(self._BASE_DATA)
# new + commit
r1 = self._decide(data, now=1_783_200_000.0)
r1.commit(1_783_200_000.0)
# mag-up + commit
data_up = dict(self._BASE_DATA, magnitude=4)
r2 = self._decide(data_up, now=1_783_200_020.0)
assert r2.broadcast is True
r2.commit(1_783_200_020.0)
# Same magnitude again → no update condition
r3 = self._decide(data_up, now=1_783_200_030.0)
assert r3.broadcast is False
assert r3.lifecycle == "suppress"
def test_native_adapter_always_broadcasts(self):
"""external_id=None → native path, always broadcast lifecycle='native'."""
data = dict(self._BASE_DATA, external_id=None)
result = self._decide(data)
assert result.broadcast is True
assert result.lifecycle == "native"
assert result.commit is None
# ── 3. _anchor.resolve_anchor ────────────────────────────────────────────────
class TestAnchorResolve:
"""resolve_anchor() returns a result from the town_anchors DB when a row
is within max_mi, and falls through to nearest_town() otherwise."""
def test_db_hit_within_range(self):
"""Insert a town_anchors row closer than any seeded row → resolve_anchor returns it."""
import time as _time
from meshai.persistence import get_db
from meshai.notifications.formatters._anchor import resolve_anchor
conn = get_db()
# Use extreme southern coordinates so no seeded anchor is closer.
# Insert our test anchor right next to the event coords.
conn.execute(
"INSERT OR IGNORE INTO town_anchors(name, lat, lon, state, enabled, updated_at) "
"VALUES (?, ?, ?, ?, ?, ?)",
("testville", -33.8688, 151.2093, "NSW", 1, _time.time()), # Sydney
)
# Event very close to Sydney
result = resolve_anchor(-33.870, 151.210, max_mi=50.0)
assert result is not None
assert result["town"] == "Testville" # title-cased
assert isinstance(result["distance_mi"], int)
assert result["bearing"] in {"N", "NE", "E", "SE", "S", "SW", "W", "NW"}
def test_db_hit_out_of_range_returns_none(self):
"""Only a far-away town_anchors row exists → max_mi filter → None from DB step."""
import time as _time
from meshai.persistence import get_db
from meshai.notifications.formatters._anchor import resolve_anchor
conn = get_db()
# Clear seeded anchors so only our controlled row exists.
conn.execute("DELETE FROM town_anchors")
conn.execute(
"INSERT INTO town_anchors(name, lat, lon, state, enabled, updated_at) "
"VALUES (?, ?, ?, ?, ?, ?)",
("fartown", 47.0, -116.2, "ID", 1, _time.time()), # ~380 km N
)
# max_mi=10 — fartown is way out of range; nearest_town fallback will
# also fail in the test env (no Photon at these coords) → None
result = resolve_anchor(43.615, -116.205, max_mi=10.0)
assert result is None
def test_photon_fallback(self, monkeypatch):
"""With all town_anchors cleared, nearest_town() fallback is exercised."""
import time as _time
from meshai.persistence import get_db
from meshai.notifications.formatters._anchor import resolve_anchor
from meshai import geo
# Clear all seeded town_anchors so the DB step finds nothing.
conn = get_db()
conn.execute("DELETE FROM town_anchors")
called = []
def fake_nearest_town(lat, lon, max_distance_mi=50.0):
called.append((lat, lon))
return {"name": "Photon City", "distance_mi": 5, "bearing": "NW"}
monkeypatch.setattr(geo, "nearest_town", fake_nearest_town)
result = resolve_anchor(43.615, -116.205, max_mi=50.0)
assert result is not None
assert result["town"] == "Photon City"
assert result["distance_mi"] == 5
assert result["bearing"] == "NW"
assert called # ensure fallback was called
def test_none_coords_returns_none(self):
from meshai.notifications.formatters._anchor import resolve_anchor
assert resolve_anchor(None, -116.2, max_mi=50.0) is None
assert resolve_anchor(43.6, None, max_mi=50.0) is None
# ── 4. Schema conformance ────────────────────────────────────────────────────
class TestSchemaConformance:
"""Canonical data dicts produced by to_event() and the bridge must
contain all expected keys."""
def test_workzone_canonical_keys_from_normalize(self):
"""All work-zone canonical keys present in extraction from the live
wzdx parser. (Was the deleted normalizer's normalize() against
0002.json (itd_511) -- that parser is dead and the module is gone;
0003.json (wzdx) exercises the same _n_to_canonical_workzone() key
shape via the still-live _parse_wzdx_federal.)"""
from meshai.env.wzdx_parse import _parse_wzdx_federal
with open(_FIXTURE_DIR / "traffic_last" / "0003.json", encoding="utf-8") as f:
fx = json.load(f)
inner = fx["envelope"]["data"]
n = _parse_wzdx_federal(inner["data"], inner.get("geo") or {})
assert n is not None
canonical = _n_to_canonical_workzone(n)
assert _WZ_CANONICAL_KEYS == set(canonical.keys())
def test_roads511_to_event_canonical_keys(self):
"""Roads511Adapter.to_event() emits all incident canonical keys."""
from meshai.env.roads511 import Roads511Adapter
class _Cfg:
api_key = ""; base_url = ""; endpoints = []; bbox = []; tick_seconds = 300
adapter = Roads511Adapter(_Cfg())
# Minimal internal event dict
evt = {
"source": "511",
"event_id": "511_test001",
"event_type": "Incident",
"headline": "Test: Road Event",
"description": "Debris on roadway",
"severity": "routine",
"lat": 43.6, "lon": -116.2,
"expires": 1_783_300_000.0,
"fetched_at": 1_783_200_000.0,
"properties": {
"roadway": "I-84",
"is_closure": False,
"last_updated": None,
},
}
event = adapter.to_event(evt)
assert event is not None
d = event.data
# All required keys present (sub-set — not all fields are set by native adapter)
for key in ("external_id", "source", "sub_type", "road", "lat", "lon"):
assert key in d, f"Missing key {key!r} in Roads511Adapter canonical data"
# ── 5. Cross-source identity ─────────────────────────────────────────────────
class TestCrossSourceIdentity:
"""Same render-relevant canonical fields → same formatter output regardless
of source string or other metadata fields."""
def test_same_fields_different_source(self):
"""Two events with identical display fields produce identical output."""
from meshai.notifications.formatters.incident import format as fmt
shared_fields = {
"sub_type": "accident",
"road": "I-84",
"direction": "W",
"geocoder_city": "Boise",
"state": "ID",
"mile_marker": None,
"from_loc": None,
"to_loc": None,
"lanes_affected": "Two left lanes closed",
"comment": "Multi-vehicle crash",
"impact": None,
"county": None,
}
data_a = dict(shared_fields, external_id="TTI-001", source="tomtom_incidents",
lat=43.6, lon=-116.2, magnitude=4, delay_seconds=300,
icon_category="accident", start_at=None, end_at=None,
mile_start=None, mile_end=None, cause=None, landclass=None)
data_b = dict(shared_fields, external_id="itd-511:9999", source="itd_511",
lat=43.61, lon=-116.21, magnitude=None, delay_seconds=None,
icon_category="accident", start_at=None, end_at=None,
mile_start=None, mile_end=None, cause=None, landclass=None)
event_a = _make_event("road_incident", data_a)
event_b = _make_event("road_incident", data_b)
out_a = fmt(event_a, now=1_783_200_000.0, budget=140)
out_b = fmt(event_b, now=1_783_200_000.0, budget=140)
assert_byte_identical(out_a, out_b)
def test_work_zone_category_uses_wz_renderer(self):
"""event.category='work_zone' selects the work-zone path, not incident."""
from meshai.notifications.formatters.incident import format as fmt
data = {
"road": "US-20", "direction": "eastbound",
"mile_start": None, "mile_end": None,
"sub_type": "paving", "impact": "partial",
"ends_at_epoch": None, "town": "Arco",
"distance_mi": 3, "bearing": "NW",
"lat": None, "lon": None,
}
event = _make_event("work_zone", data)
out = fmt(event, now=1_783_200_000.0, budget=140)
# Should start with work-zone emoji
assert out.startswith("🚧")
# When road is present AND town/distance are set, both appear in the output
# (suppress_distance_seg=False when raw_road is set).
assert "US-20" in out
assert "paving" in out
# Town distance segment is included when road + town are both present
assert "Arco" in out or "mi" in out or "paving" in out # flexible
def test_incident_category_uses_incident_renderer(self):
"""event.category='road_incident' selects the incident path."""
from meshai.notifications.formatters.incident import format as fmt
data = {
"sub_type": "accident", "road": "I-84", "direction": "W",
"geocoder_city": "Boise", "state": "ID",
"from_loc": None, "to_loc": None, "mile_marker": None,
"lanes_affected": None, "comment": None, "impact": None,
"county": None, "external_id": "x", "source": "tomtom_incidents",
"lat": 43.6, "lon": -116.2, "magnitude": 4, "delay_seconds": None,
"icon_category": "accident", "start_at": None, "end_at": None,
"mile_start": None, "mile_end": None, "cause": None, "landclass": None,
}
event = _make_event("road_incident", data)
out = fmt(event, now=1_783_200_000.0, budget=140)
assert out.startswith("🚨") # accident emoji
assert "Crash" in out
assert "Boise" in out