2026-05-01 22:38:44 +08:00
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package basic
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import (
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"math"
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"testing"
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)
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2026-08-06 12:00:56 +08:00
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func TestRefractionFromTrueAltitudeStandardAtmosphere(t *testing.T) {
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assertClose(t, "RefractionFromTrue@0deg", RefractionFromTrueAltitude(0, 1010, 10), 0.483032, 0.0001)
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assertClose(t, "RefractionFromTrue@45deg", RefractionFromTrueAltitude(45, 1010, 10), 0.016878, 0.0001)
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assertClose(t, "ApparentAltitude@0deg", ApparentAltitude(0, 1010, 10), 0.483032, 0.0001)
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}
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func TestRefractionFromApparentAltitudeUsesApparentInput(t *testing.T) {
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// 视地平线处修正约为 34.5 角分,而不是真高度角公式在 0 度返回的 29 角分 / At the apparent horizon the correction is about 34.5 arcminutes, not
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// 29 角分 / the 29 arcminutes returned by the true-altitude formula at 0 degrees.
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assertClose(t, "RefractionFromApparent@0deg", RefractionFromApparentAltitude(0, 1010, 10), 0.574, 0.001)
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assertClose(t, "TrueAltitude@0deg", TrueAltitude(0, 1010, 10), -0.574, 0.001)
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2026-05-01 22:38:44 +08:00
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}
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func TestRefractionRoundTrip(t *testing.T) {
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cases := []struct {
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altitude float64
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pressureHPa float64
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temperatureC float64
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}{
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{-1, 980, 25},
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{0, 1010, 10},
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{5, 1013.25, 15},
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{15, 900, -10},
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{45, 1010, 0},
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{80, 1030, 30},
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}
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for _, tc := range cases {
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apparentAltitude := ApparentAltitude(tc.altitude, tc.pressureHPa, tc.temperatureC)
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trueAltitude := TrueAltitude(apparentAltitude, tc.pressureHPa, tc.temperatureC)
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assertClose(t, "TrueAltitudeRoundTrip", trueAltitude, tc.altitude, 1e-9)
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trueFromApparent := TrueAltitude(tc.altitude, tc.pressureHPa, tc.temperatureC)
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apparentFromTrue := ApparentAltitude(trueFromApparent, tc.pressureHPa, tc.temperatureC)
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assertClose(t, "ApparentAltitudeRoundTrip", apparentFromTrue, tc.altitude, 1e-9)
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}
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}
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2026-08-06 12:00:56 +08:00
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func TestRefractionRoundTripNearZenith(t *testing.T) {
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for _, trueAltitude := range []float64{89.90, 89.95, 89.99} {
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apparentAltitude := ApparentAltitude(trueAltitude, 1010, 10)
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if math.IsNaN(apparentAltitude) || math.IsInf(apparentAltitude, 0) {
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t.Fatalf("true altitude %.2f produced invalid apparent altitude %v", trueAltitude, apparentAltitude)
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}
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got := TrueAltitude(apparentAltitude, 1010, 10)
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if math.IsNaN(got) || math.IsInf(got, 0) {
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t.Fatalf("apparent altitude %.12f produced invalid true altitude %v", apparentAltitude, got)
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}
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assertClose(t, "NearZenithRoundTrip", got, trueAltitude, 1e-9)
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if refraction := RefractionFromApparentAltitude(apparentAltitude, 1010, 10); math.IsNaN(refraction) || math.IsInf(refraction, 0) {
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t.Fatalf("apparent altitude %.12f produced invalid refraction %v", apparentAltitude, refraction)
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}
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}
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}
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func TestRefractionExtremeTemperatureInverse(t *testing.T) {
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const (
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apparentAltitude = 0.0
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pressureHPa = 1010.0
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)
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trueAltitude := TrueAltitude(apparentAltitude, pressureHPa, -273)
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if math.IsNaN(trueAltitude) || math.IsInf(trueAltitude, 0) {
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t.Fatalf("-273 C inverse returned invalid true altitude %v", trueAltitude)
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}
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assertClose(t, "ExtremeTemperatureRoundTrip",
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ApparentAltitude(trueAltitude, pressureHPa, -273), apparentAltitude, 1e-9)
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for _, temperatureC := range []float64{-273.14, math.Nextafter(refractionAbsoluteZeroC, math.Inf(1))} {
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if got := TrueAltitude(apparentAltitude, pressureHPa, temperatureC); !math.IsNaN(got) {
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t.Errorf("temperature %.17g C inverse = %v, want NaN when the model has no root", temperatureC, got)
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}
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if got := RefractionFromApparentAltitude(apparentAltitude, pressureHPa, temperatureC); !math.IsNaN(got) {
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t.Errorf("temperature %.17g C apparent refraction = %v, want NaN when the model has no root", temperatureC, got)
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}
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}
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}
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2026-05-01 22:38:44 +08:00
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func TestRefractionScalingAndBounds(t *testing.T) {
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2026-08-06 12:00:56 +08:00
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lowPressure := RefractionFromTrueAltitude(0, 980, 10)
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highPressure := RefractionFromTrueAltitude(0, 1030, 10)
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2026-05-01 22:38:44 +08:00
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if !(lowPressure < highPressure) {
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t.Fatalf("pressure scaling mismatch: low %.12f high %.12f", lowPressure, highPressure)
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}
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2026-08-06 12:00:56 +08:00
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cold := RefractionFromTrueAltitude(0, 1010, 0)
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hot := RefractionFromTrueAltitude(0, 1010, 30)
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2026-05-01 22:38:44 +08:00
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if !(cold > hot) {
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t.Fatalf("temperature scaling mismatch: cold %.12f hot %.12f", cold, hot)
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}
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2026-08-06 12:00:56 +08:00
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if RefractionFromTrueAltitude(-6, 1010, 10) != 0 {
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2026-05-01 22:38:44 +08:00
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t.Fatalf("refraction below lower limit should be 0")
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}
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2026-08-06 12:00:56 +08:00
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if RefractionFromTrueAltitude(95, 1010, 10) != 0 {
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2026-05-01 22:38:44 +08:00
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t.Fatalf("refraction above upper limit should be 0")
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}
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2026-08-06 12:00:56 +08:00
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if !math.IsNaN(RefractionFromTrueAltitude(0, 0, 10)) {
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2026-05-01 22:38:44 +08:00
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t.Fatalf("invalid pressure should produce NaN")
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}
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2026-08-06 12:00:56 +08:00
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if !math.IsNaN(RefractionFromTrueAltitude(0, 1010, -274)) {
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2026-05-01 22:38:44 +08:00
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t.Fatalf("invalid temperature should produce NaN")
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}
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2026-08-06 12:00:56 +08:00
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if !math.IsNaN(RefractionFromTrueAltitude(0, 1010, -273.15)) {
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t.Fatalf("absolute zero should produce NaN")
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}
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for _, temperatureC := range []float64{-273, -273.14} {
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refraction := RefractionFromTrueAltitude(0, 1010, temperatureC)
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if math.IsNaN(refraction) || math.IsInf(refraction, 0) || refraction <= 0 {
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t.Fatalf("temperature %.2f C produced invalid refraction %v", temperatureC, refraction)
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}
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}
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2026-05-01 22:38:44 +08:00
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}
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