Files
astro/geojson/solar_polar_projection_regression_test.go
T
b612 2bf8478639 feat: 完善日月食与月掩几何链路并扩展历法接口
- 新增日月食中心带、偏食带、阴影足迹、等时线、食分线及升落边界计算,支持极区与混合食拓扑
- 新增日食单时刻阴影求解器、站心状态查询、批量采样和 ΔT 覆盖接口
- 重构恒星与行星月掩路径,补充有限盘面接触、站心修正、掩带宽度、极区投影及升落边界
- 扩展 SVG 与 GeoJSON 输出,支持详细面板、全球/极区/地球投影、边界闭合、时间标记和拓扑签名
- 扩展日月食候选搜索、局地搜索、沙罗序列预计算与范围外推,补充系列锚点和成员一致性校验
- 补齐古历纪年、儒略历独有闰日、多公历候选、历法改革跨日及精确日期运算接口
- 优化 ΔT、章动、恒星时、月球地平线、事件根搜索和本地星历缓存,降低重复计算开销并提升边界稳定
2026-09-17 12:27:40 +08:00

92 lines
3.3 KiB
Go

package geojson_test
import (
"encoding/json"
"math"
"testing"
"time"
"b612.me/astro/eclipse"
"b612.me/astro/geojson"
)
func TestSolarPolarProjectedPhaseCoverage(t *testing.T) {
for _, date := range [][3]int{{163, 3, 22}, {564, 9, 21}, {936, 9, 18}, {1327, 9, 16}, {3429, 9, 21}, {3820, 9, 20}, {3932, 3, 20}, {4008, 3, 20}, {4026, 9, 24}} {
day := time.Date(date[0], time.Month(date[1]), date[2], 0, 0, 0, 0, time.UTC)
t.Run(day.Format("2006-01-02"), func(t *testing.T) {
partial, ok := eclipse.SolarEclipsePartialFootprints(day, eclipse.SolarEclipsePartialFootprintOptions{
Step: 5 * time.Minute, CentralShadowStep: 5 * time.Minute, RiseSetStep: 2 * time.Minute, BoundaryPoints: 96,
})
if !ok {
t.Fatal("missing eclipse")
}
data, err := geojson.MarshalSolarEclipse(partial, nil)
if err != nil {
t.Fatal(err)
}
band := featureWithRole(t, decodeCollection(t, data), "partial-band")
var polygons [][][][]float64
if err := json.Unmarshal(band.Geometry.Coordinates, &polygons); err != nil {
t.Fatal(err)
}
for _, curve := range partial.RiseSetCurves {
for _, segment := range curve.Segments {
for _, p := range segment {
if !geoJSONMultiPolygonContains(polygons, p.Longitude, p.Latitude) {
if miss := geoJSONMultiPolygonBoundaryDistanceKM(polygons, []float64{p.Longitude, p.Latitude}); miss > 2 {
t.Fatalf("projected phase point %.8f/%.8f misses by %.3f km", p.Longitude, p.Latitude, miss)
}
}
}
}
}
})
}
}
func TestSolarProjectedPolarAndPartialRingsDoNotCross(t *testing.T) {
for _, date := range [][3]int{{33, 9, 12}, {767, 4, 3}, {1527, 11, 23}, {2459, 5, 3}, {2981, 10, 19}, {3284, 2, 8}} {
day := time.Date(date[0], time.Month(date[1]), date[2], 0, 0, 0, 0, time.UTC)
t.Run(day.Format("2006-01-02"), func(t *testing.T) {
partial, ok := eclipse.SolarEclipsePartialFootprints(day, eclipse.SolarEclipsePartialFootprintOptions{
Step: 5 * time.Minute, CentralShadowStep: 5 * time.Minute, RiseSetStep: 2 * time.Minute, BoundaryPoints: 96,
})
if !ok {
t.Fatal("missing eclipse")
}
central, hasCentral := eclipse.SolarEclipseCentralPath(day, eclipse.SolarEclipsePathOptions{Step: time.Minute, TargetSpacingKM: 500})
var centralPath *eclipse.SolarEclipsePath
if hasCentral {
centralPath = &central
}
data, err := geojson.MarshalSolarEclipse(partial, centralPath)
if err != nil {
t.Fatal(err)
}
for _, f := range decodeCollection(t, data).Features {
if f.Properties["role"] != "partial-band" && f.Properties["role"] != "central-band" {
continue
}
var polygons [][][][]float64
if err := json.Unmarshal(f.Geometry.Coordinates, &polygons); err != nil {
t.Fatal(err)
}
for pi, polygon := range polygons {
for _, ring := range polygon {
for i := 0; i+1 < len(ring); i++ {
for j := i + 2; j+1 < len(ring); j++ {
if i == 0 && j+1 == len(ring)-1 || math.Abs(ring[i][0]) == 180 && math.Abs(ring[i+1][0]) == 180 || math.Abs(ring[j][0]) == 180 && math.Abs(ring[j+1][0]) == 180 {
continue
}
if geoJSONSegmentsCross(ring[i], ring[i+1], ring[j], ring[j+1]) {
t.Fatalf("%s component %d crosses at %d/%d: %v %v / %v %v", f.Properties["role"], pi, i, j, ring[i], ring[i+1], ring[j], ring[j+1])
}
}
}
}
}
}
})
}
}