232 lines
6.5 KiB
TypeScript
232 lines
6.5 KiB
TypeScript
import { describe, expect, it } from "vitest";
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import {
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analyseCollection,
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haversine,
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simplifyLine,
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toDms,
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} from "../../src/geo/analysis";
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import {
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appendFeature,
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listPositionReferences,
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measureSegment,
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replaceFeature,
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reverseFeatureTracks,
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summarizeTracks,
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updatePosition,
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} from "../../src/geo/editor";
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import {
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parseCoordinateCsv,
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parseGeoJson,
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parseGpx,
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serializeGeo,
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} from "../../src/geo/formats";
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describe("geospatial formats", () => {
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it("parses GeoJSON and preserves safe scalar properties", () => {
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const result = parseGeoJson(
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'{"type":"Feature","properties":{"name":"A","nested":{"x":1}},"geometry":{"type":"Point","coordinates":[13.4,52.5]}}',
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);
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expect(result.collection.features[0]?.properties).toEqual({ name: "A" });
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});
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it("rejects XML document types", () =>
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expect(() => parseGpx("<!DOCTYPE gpx><gpx/>")).toThrow(/DOCTYPE/u));
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it("rejects excessive XML nesting before DOM construction", () =>
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expect(() => parseGpx(`${"<x>".repeat(257)}${"</x>".repeat(257)}`)).toThrow(
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/256-level/u,
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));
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it("round-trips coordinate CSV into valid GeoJSON", () => {
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const result = parseCoordinateCsv(
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"name,lat,lon,elevation\nBerlin,52.5,13.4,42",
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);
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expect(
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parseGeoJson(serializeGeo(result.collection, "geojson").text).collection,
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).toEqual(result.collection);
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});
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it("preserves every GeoJSON multi geometry and bounded collections", () => {
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const result = parseGeoJson(
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JSON.stringify({
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type: "Feature",
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properties: { name: "Mixed" },
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geometry: {
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type: "GeometryCollection",
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geometries: [
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{
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type: "MultiPoint",
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coordinates: [
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[1, 2],
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[3, 4],
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],
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},
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{
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type: "MultiLineString",
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coordinates: [
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[
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[0, 0],
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[1, 0],
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],
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[
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[2, 0],
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[3, 0],
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],
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],
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},
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{
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type: "MultiPolygon",
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coordinates: [
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[
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[
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[0, 0],
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[1, 0],
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[0, 0],
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],
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],
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],
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},
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],
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},
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}),
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);
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expect(
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parseGeoJson(serializeGeo(result.collection, "geojson").text).collection,
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).toEqual(result.collection);
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expect(analyseCollection(result.collection)).toMatchObject({
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points: 9,
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features: 1,
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});
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expect(serializeGeo(result.collection, "kml").text).toContain(
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"<MultiGeometry>",
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);
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expect(serializeGeo(result.collection, "gpx").text).toContain("<trkseg>");
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});
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it("bounds nested GeometryCollections", () => {
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let geometry: unknown = { type: "Point", coordinates: [0, 0] };
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for (let index = 0; index < 18; index += 1)
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geometry = { type: "GeometryCollection", geometries: [geometry] };
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expect(() => parseGeoJson(JSON.stringify(geometry))).toThrow(
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/nesting limit/iu,
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);
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});
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});
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describe("geospatial analysis", () => {
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it("uses great-circle distance", () =>
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expect(haversine([0, 0], [1, 0])).toBeCloseTo(111_195, -1));
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it("simplifies a line while preserving endpoints", () =>
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expect(
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simplifyLine(
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[
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[0, 0],
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[0.001, 0.00001],
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[0.002, 0],
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],
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10,
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),
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).toEqual([
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[0, 0],
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[0.002, 0],
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]));
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it("analyses distance and elevation", () =>
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expect(
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analyseCollection({
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type: "FeatureCollection",
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features: [
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{
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type: "Feature",
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properties: {},
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geometry: {
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type: "LineString",
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coordinates: [
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[0, 0, 10],
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[0.01, 0, 25],
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],
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},
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},
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],
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}),
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).toMatchObject({ points: 2, features: 1, ascent: 15, descent: 0 }));
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it("formats directional DMS", () =>
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expect(toDms(-13.5, "longitude")).toBe("13° 30′ 0.000″ W"));
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});
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describe("bounded geometry editing and local measurement", () => {
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const mixed = parseGeoJson(
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JSON.stringify({
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type: "FeatureCollection",
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features: [
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{
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type: "Feature",
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properties: { name: "Track" },
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geometry: {
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type: "GeometryCollection",
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geometries: [
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{ type: "Point", coordinates: [13, 52] },
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{
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type: "MultiLineString",
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coordinates: [
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[
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[13, 52, 10],
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[13.01, 52, 20],
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],
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],
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},
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],
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},
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},
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],
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}),
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).collection;
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it("addresses and updates coordinates inside GeometryCollections", () => {
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const references = listPositionReferences(mixed);
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expect(references).toHaveLength(3);
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const updated = updatePosition(mixed, references[2]!, [14, 53, 25]);
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expect(listPositionReferences(updated)[2]?.position).toEqual([14, 53, 25]);
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expect(listPositionReferences(mixed)[2]?.position).toEqual([13.01, 52, 20]);
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});
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it("replaces/appends full geometry features and reverses only tracks", () => {
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const reversed = reverseFeatureTracks(mixed, 0);
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expect(
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listPositionReferences(reversed).map((item) => item.position),
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).toEqual([
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[13, 52],
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[13.01, 52, 20],
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[13, 52, 10],
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]);
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expect(summarizeTracks(reversed)[0]).toMatchObject({
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pathCount: 1,
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positions: 2,
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hasElevation: true,
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});
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const replacement = {
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type: "Feature",
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properties: { name: "Area" },
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geometry: {
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type: "MultiPolygon",
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coordinates: [
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[
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[
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[0, 0],
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[1, 0],
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[0, 0],
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],
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],
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],
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},
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};
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expect(
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replaceFeature(mixed, 0, replacement).features[0]?.geometry.type,
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).toBe("MultiPolygon");
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expect(appendFeature(mixed, replacement).features).toHaveLength(2);
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});
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it("measures a bounded great-circle segment and bearing", () => {
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const result = measureSegment([0, 0], [1, 0]);
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expect(result.distanceMetres).toBeCloseTo(111_195, -1);
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expect(result.initialBearingDegrees).toBeCloseTo(90);
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expect(result.midpoint).toEqual([0.5, 0]);
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expect(measureSegment([179, 0], [-179, 0]).midpoint[0]).toBeCloseTo(-180);
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expect(() => measureSegment([0, 0], [180, 0])).toThrow(/antipodal/u);
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});
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});
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