Files
astro/basic/solar_eclipse_band_closure_scan_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

109 lines
4.4 KiB
Go

package basic
import (
"math"
"testing"
)
// 扫描式枚举是与三种子牛顿链彼此独立的取根路径:两边解出的地平闭包根必须一致。
func TestSolarEclipseClosureRootsMatchScan(t *testing.T) {
testCases := []struct {
name string
date [3]int
}{
{"1136-06-01", [3]int{1136, 6, 1}},
{"-1480-12-27", [3]int{-1480, 12, 27}},
{"5705-06-17", [3]int{5705, 6, 17}},
{"4862-09-28", [3]int{4862, 9, 28}},
{"2024-04-08", [3]int{2024, 4, 8}},
{"2024-10-02", [3]int{2024, 10, 2}},
{"2026-08-12", [3]int{2026, 8, 12}},
{"2009-07-22", [3]int{2009, 7, 22}},
{"2012-05-21", [3]int{2012, 5, 21}},
}
const (
distanceToleranceKM = 0.2
timeTolerance = 0.5
)
for _, tc := range testCases {
seed := JDCalc(tc.date[0], tc.date[1], float64(tc.date[2]))
footprints := SolarEclipsePartialFootprints(seed, SolarEclipsePartialFootprintOptions{
StepDays: 2.0 / 1440.0, BoundaryPoints: 96, RiseSetStepDays: 2.0 / 1440.0,
})
if len(footprints.CentralBandHorizonClosures) != 2 {
t.Fatalf("%s horizon closures=%d, want two", tc.name, len(footprints.CentralBandHorizonClosures))
}
solver := newSolarEclipseSolver(CalcMoonSHByJDE(seed, 0), SolarEclipseModelNASABulletinSplitK)
riseSetCurves, _ := solver.centralBandRiseSetCurves(footprints.Eclipse, SolarEclipsePartialFootprintOptions{
StepDays: 2.0 / 1440.0, BoundaryPoints: 96, RiseSetStepDays: 2.0 / 1440.0,
}, nil, true)
sides := solarEclipseCentralBandClosureSides(footprints, footprints.Eclipse)
for index, side := range sides {
scanned := solver.centralLimitHorizonRootsByScan(side.shadowContactJDE, side.innerContactJDE)
if len(scanned) != 2 {
t.Fatalf("%s side%d scan roots=%d, want two", tc.name, index, len(scanned))
}
// 扫描必须覆盖三种子牛顿链解出的每一个根:两条路径彼此独立。
first, last, axisOK := solver.centralLimitHorizonRootsNearAxisContact(
side.axisContactJDE, side.shadowContactJDE, side.innerContactJDE, side.direction,
)
curveRoots, _ := solver.centralLimitHorizonRootsFromCurves(
riseSetCurves, side.shadowContactJDE, side.innerContactJDE,
)
unionRoots, _ := solver.centralLimitHorizonRootsFromSampledBoundary(
side.shadowContactJDE, side.innerContactJDE, footprints.Eclipse.GreatestEclipse,
footprints.CentralBandFootprints, riseSetCurves,
)
chained := append([]SolarEclipsePathPoint{}, curveRoots...)
chained = append(chained, unionRoots...)
if axisOK {
chained = append(chained, first, last)
}
for _, root := range chained {
nearest := math.Inf(1)
for _, candidate := range scanned {
nearest = math.Min(nearest, solarEclipsePathDistanceKM(candidate, root))
}
if nearest > distanceToleranceKM {
t.Fatalf("%s side%d chain root %.3f km from every scan root", tc.name, index, nearest)
}
}
closure := footprints.CentralBandHorizonClosures[index]
for _, want := range []SolarEclipsePathPoint{closure[0], closure[len(closure)-1]} {
nearest, nearestJDE := math.Inf(1), 0.0
for _, root := range scanned {
if distance := solarEclipsePathDistanceKM(root, want); distance < nearest {
nearest, nearestJDE = distance, root.JDE
}
}
if nearest > distanceToleranceKM {
t.Fatalf("%s side%d scan root %.3f km from the closure root", tc.name, index, nearest)
}
if math.Abs(nearestJDE-want.JDE)*86400 > timeTolerance {
t.Fatalf("%s side%d scan root %.3f s from the closure root",
tc.name, index, math.Abs(nearestJDE-want.JDE)*86400)
}
}
}
}
}
// 扫描式枚举同样要复现「凑不齐一对根」的判定:不成对的奇点不能凭空造出解析中心带。
func TestSolarEclipseClosureScanRejectsIncompletePairs(t *testing.T) {
seed := JDCalc(1552, 7, 21)
footprints := SolarEclipsePartialFootprints(seed, SolarEclipsePartialFootprintOptions{
StepDays: 2.0 / 1440.0, BoundaryPoints: 96, RiseSetStepDays: 2.0 / 1440.0,
})
if len(footprints.CentralBandHorizonClosures) != 0 {
t.Fatalf("horizon closures=%d, want none", len(footprints.CentralBandHorizonClosures))
}
solver := newSolarEclipseSolver(CalcMoonSHByJDE(seed, 0), SolarEclipseModelNASABulletinSplitK)
for index, side := range solarEclipseCentralBandClosureSides(footprints, footprints.Eclipse) {
if scanned := solver.centralLimitHorizonRootsByScan(
side.shadowContactJDE, side.innerContactJDE,
); len(scanned) >= 2 {
t.Fatalf("side%d scan roots=%d, want fewer than two", index, len(scanned))
}
}
}