Merge pull request #67 from outis1one/claude/fix-sunrise-sunset-observer-BA0Iy

Claude/fix sunrise sunset observer ba0 iy
This commit is contained in:
Outis
2026-05-02 08:49:31 -04:00
committed by GitHub
3 changed files with 79 additions and 3 deletions
+8
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@@ -295,8 +295,16 @@ Replace the date list with whatever range you need. Each run produces one `*-fi
# Inspect any moon-related stats for a frame
python3 moon_detect.py BASE_DIR/east/2026-04-29/21-07-00.jpg --debug /tmp/dbg.png
python3 moon_phase.py info 2026-04-29T21:07:00Z
# Smoke-test moon ephemeris + sunrise/sunset almanac against the last full moon
python3 test_last_full_moon.py
```
`test_last_full_moon.py` finds the most recent full moon, prints illumination, phase angle,
altitude/azimuth, and parallactic angle, then lists the sunrise and sunset for that day.
It exercises the full skyfield stack including the `sun_events_in_range()` almanac call —
useful after updating skyfield or changing observer config.
**Posting schedule**:
| Job | When the timer fires | When the artifact actually appears |
+5 -3
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@@ -67,6 +67,7 @@ _EPH_PATH = _here / 'de421.bsp'
_ts = None
_eph = None
_observer = None
_topos = None # bare geographic position; sunrise_sunset() adds earth itself
def _lazy():
@@ -75,7 +76,7 @@ def _lazy():
Lets the module be imported by tests and by --help paths even when
skyfield is missing or the ephemeris hasn't been downloaded yet.
"""
global _ts, _eph, _observer
global _ts, _eph, _observer, _topos
if _ts is not None:
return
from skyfield.api import Loader, wgs84
@@ -85,7 +86,8 @@ def _lazy():
_eph = loader('de421.bsp')
else:
_eph = loader('de421.bsp') # downloads on first run
_observer = _eph['earth'] + wgs84.latlon(LATITUDE, LONGITUDE)
_topos = wgs84.latlon(LATITUDE, LONGITUDE)
_observer = _eph['earth'] + _topos
def _to_utc(when: datetime) -> datetime:
@@ -192,7 +194,7 @@ def sun_events_in_range(
from skyfield.almanac import find_discrete, sunrise_sunset
t0 = _t(search_start)
t1 = _t(search_end)
times, values = find_discrete(t0, t1, sunrise_sunset(_eph, _observer))
times, values = find_discrete(t0, t1, sunrise_sunset(_eph, _topos))
return [(t.utc_datetime(), bool(v)) for t, v in zip(times, values)]
+66
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@@ -0,0 +1,66 @@
#!/usr/bin/env python3
"""test_last_full_moon.py — smoke-test moon_phase.py against the most recent full moon.
Exercises:
- full_moons_in_range() — phase detection
- sun_events_in_range() — sunrise/sunset almanac (requires bare topos, not earth+topos)
- illumination() / altaz() / parallactic_angle()
Run from the sky-cam directory:
python3 test_last_full_moon.py
"""
import sys
import pathlib
from datetime import datetime, timedelta, timezone
HERE = pathlib.Path(__file__).resolve().parent
sys.path.insert(0, str(HERE))
import moon_phase as mp
def main() -> int:
now = datetime.now(timezone.utc)
# Last full moon: search back up to 35 days
candidates = mp.full_moons_in_range(now - timedelta(days=35), now)
if not candidates:
print("ERROR: no full moon found in the last 35 days", file=sys.stderr)
return 1
fm = candidates[-1]
print(f"last full moon (UTC) : {fm.strftime('%Y-%m-%dT%H:%M:%SZ')}")
print(f"local : {mp._format_local(fm)}")
# Moon stats at exact full moon moment
illum = mp.illumination(fm)
pa = mp.phase_angle(fm)
alt, az = mp.altaz(fm)
para = mp.parallactic_angle(fm)
print(f"illumination : {illum:.4f} ({illum*100:.1f}%)")
print(f"phase angle : {pa:.2f}° (0° = full)")
print(f"altitude / azimuth : {alt:.2f}° / {az:.2f}°")
print(f"parallactic angle : {para:.2f}°")
print()
# Sunrise/sunset for the 24-hour window around the full moon — exercises the fix
day_start = fm.replace(hour=0, minute=0, second=0, microsecond=0)
day_end = day_start + timedelta(days=1)
events = mp.sun_events_in_range(day_start, day_end)
if events:
print(f"sun events on {day_start.strftime('%Y-%m-%d')} (UTC):")
for t, is_rise in events:
label = "sunrise" if is_rise else "sunset "
print(f" {label} {t.strftime('%H:%M:%S')} UTC ({mp._format_local(t)})")
else:
print(f"no sun events found on {day_start.strftime('%Y-%m-%d')} (polar location?)")
print()
print("OK")
return 0
if __name__ == "__main__":
sys.exit(main())