Files
astro/basic/moon_max_declination_perf_test.go
T
b612 16c62a97d5 feat: 完善时标与天象几何计算并扩展输出接口
- 新增时标、ΔT 模型、质心时间与 UT1 支持
- 改进日月食、月掩、行星事件及路径边界计算
- 完善恒星三维自行与动态距离传播
- 扩展 SVG、GeoJSON、KML 输出与底层距离换算工具
- 整理中英文手册、示例资源及回归测试
2026-09-23 18:55:12 +08:00

92 lines
3.0 KiB
Go

package basic
import (
"math"
"testing"
)
// 本文件用改动前的“七个候选全精修”实现做差分对照与 A/B 基准。
func moonMaximumDeclinationReferenceSearch(jd float64, coeffs moonMaxDeclinationCoefficients, direction int, includeCurrent bool) DeclinationEvent {
if !finite(jd) {
return DeclinationEvent{}
}
cfg := moonMaximumDeclinationSearchConfig(coeffs)
centerK := moonMaximumDeclinationOffset(jd, coeffs)
found := false
bestDistance := math.Inf(1)
var best DeclinationEvent
for offset := -moonMaxDeclinationSearchSpan; offset <= moonMaxDeclinationSearchSpan; offset++ {
event := moonMaximumDeclinationEvent(centerK+offset, coeffs, cfg)
delta := event.JD - jd
if !moonMaximumDeclinationMatchesDirection(delta, direction, includeCurrent) {
continue
}
distance := math.Abs(delta)
if !found || distance < bestDistance || (distance == bestDistance && moonMaximumDeclinationEarlier(event, best)) {
best = event
bestDistance = distance
found = true
}
}
return best
}
func moonMaximumDeclinationReferenceClosest(jd float64, coeffs moonMaxDeclinationCoefficients) DeclinationEvent {
if !finite(jd) {
return DeclinationEvent{}
}
last := moonMaximumDeclinationReferenceSearch(jd, coeffs, -1, true)
next := moonMaximumDeclinationReferenceSearch(jd, coeffs, 1, false)
lastDistance := math.Abs(jd - last.JD)
nextDistance := math.Abs(next.JD - jd)
if lastDistance <= nextDistance {
return last
}
return next
}
func TestMoonMaximumDeclinationPruningMatchesFullSearch(t *testing.T) {
for _, coeffs := range []moonMaxDeclinationCoefficients{moonMaxDeclinationNorthCoefficients, moonMaxDeclinationSouthCoefficients} {
for jd := JDCalc(2024, 1, 1); jd <= JDCalc(2025, 6, 1); jd += 2.5 {
for _, direction := range []struct {
name string
dir int
includeCurrent bool
fn func(float64) DeclinationEvent
}{
{"Last", -1, true, func(v float64) DeclinationEvent {
return moonMaximumDeclinationSearch(v, coeffs, -1, true)
}},
{"Next", 1, false, func(v float64) DeclinationEvent {
return moonMaximumDeclinationSearch(v, coeffs, 1, false)
}},
} {
want := moonMaximumDeclinationReferenceSearch(jd, coeffs, direction.dir, direction.includeCurrent)
got := direction.fn(jd)
if got != want {
t.Fatalf("k=%v %s(%v) = %+v, want %+v", coeffs.sign, direction.name, jd, got, want)
}
}
wantClosest := moonMaximumDeclinationReferenceClosest(jd, coeffs)
if got := moonClosestMaximumDeclination(jd, coeffs); got != wantClosest {
t.Fatalf("k=%v Closest(%v) = %+v, want %+v", coeffs.sign, jd, got, wantClosest)
}
}
}
}
func BenchmarkMoonMaximumDeclinationFullSearchReference(b *testing.B) {
jd := JDCalc(2025, 3, 1)
b.Run("Next", func(b *testing.B) {
for i := 0; i < b.N; i++ {
_ = moonMaximumDeclinationReferenceSearch(jd, moonMaxDeclinationNorthCoefficients, 1, false)
}
})
b.Run("Closest", func(b *testing.B) {
for i := 0; i < b.N; i++ {
_ = moonMaximumDeclinationReferenceClosest(jd, moonMaxDeclinationNorthCoefficients)
}
})
}