import * as Cesium from 'cesium'
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export const getBoundsFromCartesians = positions => {
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const cartographics = positions
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.map(pos => (pos?.longitude ? pos : Cesium.Cartographic.fromCartesian(pos)))
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.filter(Boolean)
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if (!cartographics.length) return null
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let west = cartographics[0].longitude
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let east = cartographics[0].longitude
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let south = cartographics[0].latitude
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let north = cartographics[0].latitude
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cartographics.forEach(carto => {
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west = Math.min(west, carto.longitude)
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east = Math.max(east, carto.longitude)
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south = Math.min(south, carto.latitude)
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north = Math.max(north, carto.latitude)
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})
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return { west, east, south, north }
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}
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export const getBoundsFromLngLats = points => {
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if (!points?.length) return null
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let west = points[0].lng
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let east = points[0].lng
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let south = points[0].lat
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let north = points[0].lat
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points.forEach(point => {
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west = Math.min(west, point.lng)
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east = Math.max(east, point.lng)
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south = Math.min(south, point.lat)
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north = Math.max(north, point.lat)
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})
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return {
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west: Cesium.Math.toRadians(west),
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east: Cesium.Math.toRadians(east),
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south: Cesium.Math.toRadians(south),
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north: Cesium.Math.toRadians(north),
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}
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}
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export const rectanglePositionsFromBounds = bounds => {
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if (!bounds) return []
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const { west, east, south, north } = bounds
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return [
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Cesium.Cartesian3.fromRadians(west, south),
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Cesium.Cartesian3.fromRadians(east, south),
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Cesium.Cartesian3.fromRadians(east, north),
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Cesium.Cartesian3.fromRadians(west, north),
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]
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}
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export const getCenterFromBounds = bounds => {
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if (!bounds) return null
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return new Cesium.Cartographic(
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(bounds.west + bounds.east) / 2,
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(bounds.south + bounds.north) / 2,
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0
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)
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}
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export const getMetersBetween = (start, end) => {
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const geodesic = new Cesium.EllipsoidGeodesic(start, end)
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return geodesic.surfaceDistance
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}
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export const buildEllipsePositions = (centerCartesian, semiMajor, semiMinor, steps = 60) => {
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if (!centerCartesian || !semiMajor || !semiMinor) return []
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const positions = []
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const frame = Cesium.Transforms.eastNorthUpToFixedFrame(centerCartesian)
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for (let i = 0; i < steps; i += 1) {
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const angle = (i / steps) * Math.PI * 2
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const x = Math.cos(angle) * semiMajor
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const y = Math.sin(angle) * semiMinor
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const local = new Cesium.Cartesian3(x, y, 0)
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const world = Cesium.Matrix4.multiplyByPoint(frame, local, new Cesium.Cartesian3())
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positions.push(world)
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}
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return positions
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}
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export const cartesianToLocal = (centerCartesian, positionCartesian) => {
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const frame = Cesium.Transforms.eastNorthUpToFixedFrame(centerCartesian)
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const inverse = Cesium.Matrix4.inverse(frame, new Cesium.Matrix4())
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return Cesium.Matrix4.multiplyByPoint(inverse, positionCartesian, new Cesium.Cartesian3())
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}
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