Files
astro/eclipse/svg/solar_envelope_regression_test.go
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package svg
import (
"encoding/xml"
"io"
"strconv"
"strings"
"testing"
"time"
"b612.me/astro/eclipse"
"b612.me/astro/internal/svgmap"
)
func TestSolarSVGUsesAuthoritativeCentralBand(t *testing.T) {
zone := time.FixedZone("UTC+8", 8*3600)
for _, fixture := range []struct {
date time.Time
lon, lat float64
}{
{time.Date(2012, 5, 21, 0, 0, 0, 0, zone), 120.4913, 27.4779},
{time.Date(2056, 7, 13, 0, 0, 0, 0, zone), -64.3737, -5.4978},
{time.Date(2164, 3, 23, 0, 0, 0, 0, zone), -120.575, 48.75},
{time.Date(2026, 8, 12, 0, 0, 0, 0, zone), -5.991755201, 45.070085755},
} {
t.Run(fixture.date.Format("2006-01-02"), func(t *testing.T) {
partial, ok := eclipse.SolarEclipsePartialFootprints(fixture.date, eclipse.SolarEclipsePartialFootprintOptions{Step: 2 * time.Minute, BoundaryPoints: 96})
if !ok {
t.Fatal("missing eclipse")
}
central, ok := eclipse.SolarEclipseCentralPath(fixture.date, eclipse.SolarEclipsePathOptions{Step: 2 * time.Minute})
if !ok {
t.Fatal("missing central path")
}
frame := svgmap.Frame{Width: 36000, Height: 18000, Projection: svgmap.ProjectionEquirectangular}
var builder strings.Builder
writeSolarEclipseCentralPath(&builder, central, partial.CentralBandFootprints, partial.CentralBandSegments, frame, partial.Eclipse.Type)
if !strings.Contains(builder.String(), `class="central-eclipse-band" data-source="besselian-critical-envelope"`) {
t.Fatal("old central fill used")
}
x, y, _ := frame.Project(fixture.lon, fixture.lat)
inside := false
for _, ring := range svgClosedPathRings(t, builder.String()) {
inside = inside || pointInLunarVisibilityPolygon(x, y, ring)
}
if !inside {
t.Fatal("rendered central band omits visible site")
}
full, ok := SolarEclipseMapSVG(fixture.date, SolarEclipseMapSVGOptions{Projection: EclipseMapProjectionEquirectangular})
if !ok || !strings.Contains(full, `class="central-eclipse-band" data-source="besselian-critical-envelope"`) {
t.Fatal("public SVG does not use core envelope")
}
})
}
}
func svgClosedPathRings(t *testing.T, value string) [][][2]float64 {
t.Helper()
decoder := xml.NewDecoder(strings.NewReader(value))
var rings [][][2]float64
for {
token, err := decoder.Token()
if err == io.EOF {
break
}
if err != nil {
t.Fatal(err)
}
tag, ok := token.(xml.StartElement)
if !ok || tag.Name.Local != "path" {
continue
}
for _, attribute := range tag.Attr {
if attribute.Name.Local != "d" || !strings.Contains(attribute.Value, "Z") {
continue
}
fields := strings.Fields(attribute.Value)
var ring [][2]float64
for index := 0; index < len(fields); {
if fields[index] == "Z" {
rings = append(rings, ring)
ring = nil
index++
continue
}
if (fields[index] != "M" && fields[index] != "L") || index+2 >= len(fields) {
t.Fatalf("unexpected path %q", attribute.Value)
}
x, err := strconv.ParseFloat(fields[index+1], 64)
if err != nil {
t.Fatal(err)
}
y, err := strconv.ParseFloat(fields[index+2], 64)
if err != nil {
t.Fatal(err)
}
ring = append(ring, [2]float64{x, y})
index += 3
}
}
}
return rings
}
func TestSolarPolarSVGUsesAuthoritativeCentralBand(t *testing.T) {
for _, day := range [][3]int{
{2003, 11, 23}, {2021, 12, 4}, {2039, 12, 15}, {2061, 10, 13}, {2981, 10, 19},
} {
date := time.Date(day[0], time.Month(day[1]), day[2], 0, 0, 0, 0, time.UTC)
t.Run(date.Format("2006-01-02"), func(t *testing.T) {
for _, projection := range []EclipseMapProjection{EclipseMapProjectionEquirectangular, EclipseMapProjectionSouthPolar} {
value, ok := SolarEclipseMapSVG(date, SolarEclipseMapSVGOptions{Projection: projection})
if !ok || !strings.Contains(value, `class="central-eclipse-band" data-source="besselian-critical-envelope"`) {
t.Fatalf("projection %s discarded the core central envelope", projection)
}
}
})
}
}