package basic import ( "testing" "b612.me/astro/internal/geodata" ) // TestSolarEclipse18741010GrazingAnnularBandContainsSweep pins the other end of // the grazing annular family: a one-limit path whose analytic sweep returns a // band that still terminates 48 km inside its own sampled umbra. The band must // be rebuilt from those samples instead of being exported as the short ribbon. func TestSolarEclipse18741010GrazingAnnularBandContainsSweep(t *testing.T) { result := SolarEclipsePartialFootprints( JDECalc(1874, 10, 10), SolarEclipsePartialFootprintOptions{ StepDays: 2.0 / 1440.0, BoundaryPoints: 96, RiseSetStepDays: 2.0 / 1440.0, }, ) if result.Eclipse.Type != SolarEclipseAnnular || result.Eclipse.Centrality != SolarEclipseCentralOneLimit { t.Fatalf("type=%s centrality=%s, want a one-limit annular eclipse", result.Eclipse.Type, result.Eclipse.Centrality) } if len(result.CentralBandSegments) != 1 { t.Fatalf("central-band segments=%d, want one closed band", len(result.CentralBandSegments)) } ring := result.CentralBandSegments[0] if len(ring) < 4 || solarEclipsePathDistanceKM(ring[0], ring[len(ring)-1]) > 0.01 { t.Fatal("central-band envelope is not closed") } if !solarEclipseBandContainsFootprintsWithinKM( result.CentralBandSegments, result.CentralBandFootprints, solarEclipseCentralBandUnionContainmentToleranceKM, ) { t.Fatal("central band does not contain the sampled umbral footprints") } // A station with two minutes of annular phase, 14 degrees above the horizon, // used to fall outside the exported band by more than 400 km. matrix := [][]geodata.GeoPoint{geodataRingFromPath(ring)} point := []geodata.GeoPoint{{Longitude: 60.5, Latitude: 57.5}} if !geodata.SphericalPolygonsContainPoints(matrix, point)[0] { t.Fatal("central band misses the visible annular region at (60.5,57.5)") } }