Files
astro/coord/perf_bench_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

41 lines
1.3 KiB
Go

package coord
import (
"testing"
"time"
"b612.me/astro/basic"
)
var benchmarkEclipticSink Ecliptic
func benchmarkEclipticInputs() (time.Time, float64, float64, float64, float64, float64, float64) {
return time.Date(2026, 1, 1, 0, 0, 0, 0, time.FixedZone("CST", 8*3600)), 139.7, 4.9, 121.4737, 31.2304, 0.00257, 20
}
func BenchmarkTopocentricEcliptic(b *testing.B) {
date, lon, lat, observerLon, observerLat, distanceAU, height := benchmarkEclipticInputs()
b.ReportAllocs()
b.ResetTimer()
sink := Ecliptic{}
for i := 0; i < b.N; i++ {
sink = TopocentricEcliptic(date, lon, lat, observerLon, observerLat, distanceAU, height)
}
benchmarkEclipticSink = sink
}
// BenchmarkTopocentricEclipticTwoWrappers 量的是分别调用 Lo/Bo 两个包装(各解一次)与组合入口的差距。
func BenchmarkTopocentricEclipticTwoWrappers(b *testing.B) {
date, lon, lat, observerLon, observerLat, distanceAU, height := benchmarkEclipticInputs()
b.ReportAllocs()
b.ResetTimer()
sink := Ecliptic{}
for i := 0; i < b.N; i++ {
sink = Ecliptic{
Lon: basic.TopocentricLo(lon, lat, observerLat, observerLon, jdUTC(date), distanceAU, height),
Lat: basic.TopocentricBo(lon, lat, observerLat, observerLon, jdUTC(date), distanceAU, height),
}
}
benchmarkEclipticSink = sink
}