meshai/work/tests/test_satpass_compass_fallback.py

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"""Tests for compass direction fallback on satpass_predict envelopes.
Proves the fix for empty compass on satpass_predict broadcasts:
(a) satpass_predict-shape envelope (raw azimuth degrees, NO _compass fields)
produces non-empty compass directions in the wire message.
(b) n2yo-shape envelope with precomputed _compass strings is unchanged.
(c) Envelope with neither raw azimuths nor _compass strings produces
empty compass, no crash.
Uses verbatim field shapes from the live AO-27 predict envelope.
"""
from __future__ import annotations
import copy
import json
import pytest
# ── Live AO-27 satpass_predict envelope (no _compass fields) ─────────
AO27_PREDICT_ENVELOPE = {
"id": "filer:36122:2026-06-13T06:12:00+00:00",
"source": "central.echo6.co",
"type": "central.pass.satpass_predict.v1",
"time": "2026-06-13T06:12:00+00:00",
"datacontenttype": "application/json",
"centralschemaversion": "1.0",
"centralcategory": "pass.satpass_predict",
"centralseverity": 1,
"specversion": "1.0",
"data": {
"id": "filer:36122:2026-06-13T06:12:00+00:00",
"adapter": "satpass_predict",
"category": "pass.satpass_predict",
"time": "2026-06-13T06:12:00Z",
"expires": None,
"severity": 1,
"geo": {
"centroid": [-114.6, 42.57],
"bbox": None,
"regions": ["US-ID"],
"primary_region": "US-ID",
"geometry": None,
},
"data": {
"observer_name": "Filer",
"observer_slug": "filer",
"observer_state": "ID",
"norad_id": 36122,
"satellite_name": "EYESAT A (AO-27)",
"aos_time": "2026-06-13T06:12:00+00:00",
"peak_time": "2026-06-13T06:18:00+00:00",
"los_time": "2026-06-13T06:24:00+00:00",
"max_elevation_deg": 62.3,
"azimuth_at_aos": 163.2,
"azimuth_at_peak": 245.0,
"azimuth_at_los": 348.7,
"duration_s": 720,
},
},
}
# ── n2yo envelope with precomputed _compass strings ──────────────────
N2YO_ENVELOPE = {
"id": "filer:28654:2026-06-10T04:34:40+00:00",
"source": "central.echo6.co",
"type": "central.pass.n2yo_visualpasses.v1",
"time": "2026-06-10T04:41:35+00:00",
"datacontenttype": "application/json",
"centralschemaversion": "1.0",
"centralcategory": "pass.n2yo_visualpasses",
"centralseverity": 1,
"specversion": "1.0",
"data": {
"id": "filer:28654:2026-06-10T04:34:40+00:00",
"adapter": "n2yo_visualpasses",
"category": "pass.n2yo_visualpasses",
"time": "2026-06-10T04:41:35Z",
"expires": None,
"severity": 1,
"geo": {
"centroid": [-114.6, 42.57],
"bbox": None,
"regions": ["US-ID"],
"primary_region": "US-ID",
"geometry": None,
},
"data": {
"observer_name": "Filer",
"observer_slug": "filer",
"observer_state": "ID",
"norad_id": 28654,
"satellite_name": "NOAA 18",
"aos_time": "2026-06-10T04:34:40+00:00",
"peak_time": "2026-06-10T04:41:35+00:00",
"los_time": "2026-06-10T04:48:30+00:00",
"max_elevation_deg": 22.69,
"magnitude": 6.7,
"azimuth_at_aos": 125.6,
"azimuth_at_aos_compass": "SE",
"azimuth_at_peak": 63.0,
"azimuth_at_peak_compass": "ENE",
"azimuth_at_los": 359.5,
"azimuth_at_los_compass": "N",
"duration_s": 630,
},
},
}
def _enable_satpass(norad_ids=None):
"""Set satpass.enabled=true with permissive filters."""
from meshai.persistence import get_db
from meshai.adapter_config import invalidate_cache
conn = get_db()
conn.execute(
"UPDATE adapter_config SET value_json='true' "
"WHERE adapter='satpass' AND key='enabled'"
)
conn.execute(
"UPDATE adapter_config SET value_json='5' "
"WHERE adapter='satpass' AND key='min_elevation'"
)
conn.execute(
"UPDATE adapter_config SET value_json='false' "
"WHERE adapter='satpass' AND key='dry_run'"
)
if norad_ids is None:
norad_ids = [36122, 28654]
conn.execute(
"UPDATE adapter_config SET value_json=? "
"WHERE adapter='satpass' AND key='norad_ids'",
(json.dumps(norad_ids),)
)
invalidate_cache()
def _clear_handler_flags():
from meshai.central.satpass_handler import handle_satpass
for attr in ("_disabled_logged", "_no_norad_ids_logged"):
if hasattr(handle_satpass, attr):
delattr(handle_satpass, attr)
def _ingest_and_consolidate(env, subject, *, now, data=None):
"""Drive the two-call async satpass contract (ingest → consolidate).
handle_satpass() ingests the pass and returns None; the consumer then
runs consolidate_satpass_pending(), which yields the (wire, data) to
broadcast (or None). Returns the consolidation result so a test can
assert on the real broadcast wire.
"""
from meshai.central.satpass_handler import (
handle_satpass, consolidate_satpass_pending,
drain_pending_consolidation_ids)
drain_pending_consolidation_ids()
assert handle_satpass(
env, subject, data=data if data is not None else {}, now=now) is None
for cid in drain_pending_consolidation_ids():
res = consolidate_satpass_pending(cid)
if res is not None:
return res
return None
# ── (a) satpass_predict envelope: raw azimuths → non-empty compass ───
def test_satpass_predict_compass_from_raw_azimuths():
"""satpass_predict envelope with only raw azimuth degrees produces
non-empty compass directions like SSEN in wire output."""
from meshai.central.satpass_handler import handle_satpass
_enable_satpass()
_clear_handler_flags()
now = 1781330520 # well before the AO-27 pass window
result = _ingest_and_consolidate(
AO27_PREDICT_ENVELOPE,
"central.sat.pass.us.id.filer",
now=now,
)
assert result is not None, "handler returned None for satpass_predict envelope"
wire, _ = result
# Single-line wire: extract the compass segment between "max NN° " and " (".
assert "\n" not in wire, f"Expected single line: {wire!r}"
compass = wire.split("° ", 1)[1].split(" (", 1)[0]
parts = compass.split("\u2192")
assert len(parts) == 3, f"Expected aos->peak->los sweep, got {parts!r}"
# 163.2 -> S, 245.0 -> SW (peak), 348.7 -> N (8-point compass)
assert parts[0] == "S", f"Expected S (from 163.2): {parts!r}"
assert parts[1] == "SW", f"Expected SW (from peak 245.0): {parts!r}"
assert parts[2] == "N", f"Expected N (from 348.7): {parts!r}"
# ── (b) n2yo envelope: precomputed _compass strings used as-is ───────
def test_n2yo_precomputed_compass_unchanged():
"""n2yo envelope with _compass string fields uses those strings,
not raw azimuth conversion."""
from meshai.central.satpass_handler import handle_satpass
_enable_satpass()
_clear_handler_flags()
now = 1781065800 # before NOAA-18 pass window
result = _ingest_and_consolidate(
N2YO_ENVELOPE,
"central.sat.pass.us.id.filer",
now=now,
)
assert result is not None, "handler returned None for n2yo envelope"
wire, _ = result
# Single-line wire: must use the precomputed strings verbatim: SE→ENE→N.
assert "\n" not in wire, f"Expected single line: {wire!r}"
compass = wire.split("° ", 1)[1].split(" (", 1)[0]
parts = compass.split("\u2192")
assert len(parts) == 3, f"Expected aos->peak->los sweep, got {parts!r}"
assert parts[0] == "SE", f"Expected precomputed aos SE: {parts!r}"
assert parts[1] == "ENE", f"Expected precomputed peak ENE: {parts!r}"
assert parts[2] == "N", f"Expected precomputed los N: {parts!r}"
# ── (c) envelope with neither → empty compass, no crash ──────────────
def test_no_compass_no_azimuth_no_crash():
"""Envelope with no _compass fields AND no raw azimuth fields
produces empty compass directions without crashing."""
from meshai.central.satpass_handler import handle_satpass
_enable_satpass()
_clear_handler_flags()
env = copy.deepcopy(AO27_PREDICT_ENVELOPE)
d = env["data"]["data"]
# Remove all azimuth fields
for key in ("azimuth_at_aos", "azimuth_at_los", "azimuth_at_peak",
"azimuth_at_aos_compass", "azimuth_at_los_compass",
"azimuth_at_peak_compass"):
d.pop(key, None)
now = 1781330520
result = _ingest_and_consolidate(
env,
"central.sat.pass.us.id.filer",
now=now,
)
assert result is not None, "handler crashed or returned None — should produce wire with empty compass"
wire, _ = result
# Single clean line; with no azimuth data the compass segment is simply
# omitted (no arrow, no stray double space) and the wire still renders.
assert "\n" not in wire, f"Expected single line: {wire!r}"
assert wire.startswith("\U0001F6F0")
assert "max" in wire
assert "min)" in wire
assert "\u2192" not in wire # empty compass -> no sweep arrows
assert "\u00b0 (" not in wire # no stray double space where compass would be
# No crash = test passes