Camera backend abstraction wrapping fswebcam/ffmpeg/libcamera-still via subprocess, with DemoCamera fallback generating valid JPEG from raw bytes. Capture pipeline writes JPEG + JSON sidecar always, optional FITS (astropy) and EXIF (Pillow) when available. Thread-safe orchestrator with session tracking, sequence numbering, and date-based output directories. Trigger system: manual capture, configurable interval timer, and pass event detection (AOS/TCA/LOS) with 0.5-degree TCA hysteresis. PassEventDetector runs in the Craft tracking loop, fires callbacks to the camera overlay. F6 overlay follows the F5 ConsoleOverlay pattern — ModalScreen with install_screen persistence. Status panel, scrollable capture log, interval controls, and AOS/TCA/LOS toggle buttons. Tagline: "a generic AZ/EL positioner that doesn't care about wavelength" added to TUI header subtitle. 51 new tests (77 total passing).
284 lines
8.8 KiB
Python
284 lines
8.8 KiB
Python
"""Test capture triggers — interval timer and pass event detection.
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IntervalTimer fires at configurable intervals.
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PassEventDetector detects AOS/TCA/LOS transitions with hysteresis.
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"""
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import threading
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import time
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from birdcage_tui.capture_triggers import (
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IntervalTimer,
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PassEventDetector,
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TriggerEvent,
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TriggerType,
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)
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class _EventCollector:
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"""Collects trigger events for test assertions."""
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def __init__(self):
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self.events: list[TriggerEvent] = []
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self._lock = threading.Lock()
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def __call__(self, event: TriggerEvent) -> None:
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with self._lock:
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self.events.append(event)
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@property
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def count(self) -> int:
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with self._lock:
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return len(self.events)
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def types(self) -> list[TriggerType]:
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with self._lock:
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return [e.trigger_type for e in self.events]
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# ------------------------------------------------------------------
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# IntervalTimer tests
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# ------------------------------------------------------------------
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def test_interval_timer_fires():
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"""Timer should fire at least once within 2x the interval."""
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collector = _EventCollector()
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timer = IntervalTimer(callback=collector, interval_seconds=0.2)
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timer.start()
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time.sleep(0.5)
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timer.stop()
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assert collector.count >= 1
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assert all(e.trigger_type == TriggerType.INTERVAL for e in collector.events)
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def test_interval_timer_stop():
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"""Timer should stop cleanly and not fire after stop()."""
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collector = _EventCollector()
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timer = IntervalTimer(callback=collector, interval_seconds=0.1)
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timer.start()
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time.sleep(0.25)
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timer.stop()
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count_at_stop = collector.count
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time.sleep(0.3)
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assert collector.count == count_at_stop # No new events
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def test_interval_timer_set_interval():
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"""set_interval should update the interval property."""
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collector = _EventCollector()
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timer = IntervalTimer(callback=collector, interval_seconds=10.0)
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assert timer.interval == 10.0
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timer.set_interval(5.0)
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assert timer.interval == 5.0
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# Minimum clamp
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timer.set_interval(0.5)
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assert timer.interval >= 0.5
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def test_interval_timer_double_start():
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"""Starting twice should be safe (no duplicate threads)."""
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collector = _EventCollector()
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timer = IntervalTimer(callback=collector, interval_seconds=0.2)
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timer.start()
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timer.start() # Should be no-op
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time.sleep(0.5)
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timer.stop()
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assert collector.count >= 1
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def test_interval_timer_is_running():
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"""is_running property should reflect timer state."""
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collector = _EventCollector()
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timer = IntervalTimer(callback=collector, interval_seconds=1.0)
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assert not timer.is_running
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timer.start()
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assert timer.is_running
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timer.stop()
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assert not timer.is_running
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# ------------------------------------------------------------------
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# PassEventDetector tests
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# ------------------------------------------------------------------
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def test_pass_detector_aos():
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"""WAITING -> TRACKING should fire AOS."""
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collector = _EventCollector()
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detector = PassEventDetector(on_event=collector)
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detector.enable(TriggerType.AOS)
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detector.update("WAITING", "ISS", 0.0)
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detector.update("TRACKING", "ISS", 20.0)
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assert collector.count == 1
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assert collector.events[0].trigger_type == TriggerType.AOS
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assert "ISS" in collector.events[0].detail
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def test_pass_detector_los():
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"""TRACKING -> WAITING should fire LOS."""
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collector = _EventCollector()
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detector = PassEventDetector(on_event=collector)
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detector.enable(TriggerType.LOS)
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detector.update("TRACKING", "ISS", 45.0)
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detector.update("WAITING", "ISS", 5.0)
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assert collector.count == 1
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assert collector.events[0].trigger_type == TriggerType.LOS
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def test_pass_detector_tca():
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"""Elevation peak detection with hysteresis."""
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collector = _EventCollector()
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detector = PassEventDetector(on_event=collector)
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detector.enable(TriggerType.TCA)
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# Simulate ascending pass
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detector.update("TRACKING", "ISS", 20.0)
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detector.update("TRACKING", "ISS", 30.0)
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detector.update("TRACKING", "ISS", 40.0)
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detector.update("TRACKING", "ISS", 45.0) # Peak
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detector.update("TRACKING", "ISS", 44.8) # Small jitter, no trigger
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detector.update("TRACKING", "ISS", 44.4) # Below threshold
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detector.update("TRACKING", "ISS", 43.0) # Well below peak
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assert collector.count == 1
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assert collector.events[0].trigger_type == TriggerType.TCA
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assert "45.0" in collector.events[0].detail
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def test_pass_detector_hysteresis():
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"""Small jitter around peak should NOT trigger TCA."""
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collector = _EventCollector()
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detector = PassEventDetector(on_event=collector)
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detector.enable(TriggerType.TCA)
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# Simulate noisy plateau at peak
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detector.update("TRACKING", "ISS", 44.8)
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detector.update("TRACKING", "ISS", 45.0)
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detector.update("TRACKING", "ISS", 44.9) # -0.1 from peak
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detector.update("TRACKING", "ISS", 44.8) # -0.2 from peak
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detector.update("TRACKING", "ISS", 44.7) # -0.3 from peak
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# Still within hysteresis threshold (0.5 deg)
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assert collector.count == 0
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def test_pass_detector_tca_fires_once():
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"""TCA should fire only once per pass."""
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collector = _EventCollector()
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detector = PassEventDetector(on_event=collector)
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detector.enable(TriggerType.TCA)
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detector.update("TRACKING", "ISS", 45.0) # Peak
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detector.update("TRACKING", "ISS", 44.0) # -1.0, triggers TCA
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detector.update("TRACKING", "ISS", 43.0) # Should NOT trigger again
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detector.update("TRACKING", "ISS", 42.0)
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assert collector.count == 1
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def test_pass_detector_full_pass():
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"""Full pass should generate AOS + TCA + LOS in order."""
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collector = _EventCollector()
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detector = PassEventDetector(on_event=collector)
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detector.enable(TriggerType.AOS, TriggerType.TCA, TriggerType.LOS)
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# Pre-pass
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detector.update("WAITING", "ISS", 0.0)
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# AOS
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detector.update("TRACKING", "ISS", 5.0)
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# Ascending
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detector.update("TRACKING", "ISS", 20.0)
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detector.update("TRACKING", "ISS", 35.0)
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detector.update("TRACKING", "ISS", 45.0) # Peak
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# Descending (triggers TCA)
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detector.update("TRACKING", "ISS", 44.0)
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detector.update("TRACKING", "ISS", 30.0)
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detector.update("TRACKING", "ISS", 10.0)
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# LOS
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detector.update("WAITING", "ISS", 2.0)
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types = collector.types()
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assert types == [TriggerType.AOS, TriggerType.TCA, TriggerType.LOS]
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def test_pass_detector_disabled_triggers():
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"""Disabled triggers should not fire."""
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collector = _EventCollector()
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detector = PassEventDetector(on_event=collector)
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# Enable only AOS, not TCA or LOS
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detector.enable(TriggerType.AOS)
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detector.update("WAITING", "ISS", 0.0)
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detector.update("TRACKING", "ISS", 45.0)
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detector.update("TRACKING", "ISS", 30.0)
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detector.update("WAITING", "ISS", 0.0)
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# Only AOS should fire
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assert collector.count == 1
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assert collector.events[0].trigger_type == TriggerType.AOS
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def test_pass_detector_target_change_resets():
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"""Changing target should reset peak tracking."""
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collector = _EventCollector()
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detector = PassEventDetector(on_event=collector)
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detector.enable(TriggerType.TCA)
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# First target peaks at 45
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detector.update("TRACKING", "ISS", 45.0)
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# Switch to new target — peak resets
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detector.update("TRACKING", "NOAA 19", 30.0)
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detector.update("TRACKING", "NOAA 19", 35.0) # New peak
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detector.update("TRACKING", "NOAA 19", 34.0) # -1.0, triggers TCA
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assert collector.count == 1
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assert "NOAA 19" in collector.events[0].detail
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def test_pass_detector_reset():
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"""reset() should clear all internal state."""
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collector = _EventCollector()
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detector = PassEventDetector(on_event=collector)
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detector.enable(TriggerType.AOS)
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detector.update("TRACKING", "ISS", 45.0)
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detector.reset()
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# After reset, a new TRACKING should fire AOS again
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detector.update("WAITING", "ISS", 0.0)
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detector.update("TRACKING", "ISS", 20.0)
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assert collector.count == 2 # Initial + after reset
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def test_pass_detector_enable_disable():
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"""enable/disable should toggle trigger states."""
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collector = _EventCollector()
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detector = PassEventDetector(on_event=collector)
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detector.enable(TriggerType.AOS, TriggerType.LOS)
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assert detector.is_enabled(TriggerType.AOS)
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assert detector.is_enabled(TriggerType.LOS)
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assert not detector.is_enabled(TriggerType.TCA)
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detector.disable(TriggerType.AOS)
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assert not detector.is_enabled(TriggerType.AOS)
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assert detector.is_enabled(TriggerType.LOS)
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