mirror of
https://github.com/dz0ny/meshcore-sar.git
synced 2026-08-11 08:20:36 +00:00
192 lines
5.6 KiB
Dart
192 lines
5.6 KiB
Dart
import 'dart:math' as math;
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enum CoordinateDisplayFormat { decimal, dms, utm }
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String formatCoordinates(
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double latitude,
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double longitude,
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CoordinateDisplayFormat format,
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) {
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switch (format) {
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case CoordinateDisplayFormat.decimal:
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return '${latitude.toStringAsFixed(5)}, ${longitude.toStringAsFixed(5)}';
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case CoordinateDisplayFormat.dms:
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return '${formatDmsCoordinate(latitude, true)} ${formatDmsCoordinate(longitude, false)}';
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case CoordinateDisplayFormat.utm:
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return formatUtm(latitude, longitude);
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}
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}
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String formatDmsCoordinate(double degrees, bool isLatitude) {
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final direction = isLatitude
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? (degrees >= 0 ? 'N' : 'S')
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: (degrees >= 0 ? 'E' : 'W');
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final absolute = degrees.abs();
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final deg = absolute.floor();
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final minDecimal = (absolute - deg) * 60;
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final min = minDecimal.floor();
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final sec = (minDecimal - min) * 60;
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return '$deg°${min.toString().padLeft(2, '0')}\'${sec.toStringAsFixed(2).padLeft(5, '0')}"$direction';
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}
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String formatUtm(double latitude, double longitude) {
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if (latitude < -80 || latitude > 84) {
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return formatCoordinates(
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latitude,
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longitude,
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CoordinateDisplayFormat.decimal,
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);
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}
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final zone = _utmZone(latitude, longitude);
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final band = _utmLatitudeBand(latitude);
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final latRad = _degreesToRadians(latitude);
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final lonRad = _degreesToRadians(longitude);
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final centralMeridianRad = _degreesToRadians((zone - 1) * 6 - 180 + 3);
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const semiMajorAxis = 6378137.0;
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const flattening = 1 / 298.257223563;
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const scaleFactor = 0.9996;
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final eccentricitySquared = flattening * (2 - flattening);
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final secondEccentricitySquared =
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eccentricitySquared / (1 - eccentricitySquared);
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final sinLat = math.sin(latRad);
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final cosLat = math.cos(latRad);
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final tanLat = math.tan(latRad);
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final n = semiMajorAxis /
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math.sqrt(1 - eccentricitySquared * sinLat * sinLat);
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final t = tanLat * tanLat;
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final c = secondEccentricitySquared * cosLat * cosLat;
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final a = cosLat * (lonRad - centralMeridianRad);
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final meridianArc = semiMajorAxis *
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((1 -
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eccentricitySquared / 4 -
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3 * eccentricitySquared * eccentricitySquared / 64 -
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5 *
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eccentricitySquared *
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eccentricitySquared *
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eccentricitySquared /
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256) *
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latRad -
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(3 * eccentricitySquared / 8 +
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3 * eccentricitySquared * eccentricitySquared / 32 +
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45 *
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eccentricitySquared *
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eccentricitySquared *
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eccentricitySquared /
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1024) *
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math.sin(2 * latRad) +
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(15 * eccentricitySquared * eccentricitySquared / 256 +
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45 *
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eccentricitySquared *
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eccentricitySquared *
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eccentricitySquared /
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1024) *
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math.sin(4 * latRad) -
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(35 *
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eccentricitySquared *
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eccentricitySquared *
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eccentricitySquared /
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3072) *
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math.sin(6 * latRad));
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final easting = scaleFactor *
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n *
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(a +
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(1 - t + c) * a * a * a / 6 +
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(5 - 18 * t + t * t + 72 * c - 58 * secondEccentricitySquared) *
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a *
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a *
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a *
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a *
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a /
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120) +
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500000;
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var northing = scaleFactor *
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(meridianArc +
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n *
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tanLat *
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(a * a / 2 +
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(5 - t + 9 * c + 4 * c * c) * a * a * a * a / 24 +
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(61 -
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58 * t +
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t * t +
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600 * c -
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330 * secondEccentricitySquared) *
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a *
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a *
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a *
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a *
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a *
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a /
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720));
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if (latitude < 0) {
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northing += 10000000;
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}
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return '$zone$band ${easting.round()}E ${northing.round()}N';
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}
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int _utmZone(double latitude, double longitude) {
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var zone = ((longitude + 180) / 6).floor() + 1;
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if (longitude == 180) {
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zone = 60;
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}
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if (latitude >= 56 &&
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latitude < 64 &&
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longitude >= 3 &&
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longitude < 12) {
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zone = 32;
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}
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if (latitude >= 72 && latitude < 84) {
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if (longitude >= 0 && longitude < 9) {
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zone = 31;
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} else if (longitude >= 9 && longitude < 21) {
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zone = 33;
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} else if (longitude >= 21 && longitude < 33) {
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zone = 35;
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} else if (longitude >= 33 && longitude < 42) {
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zone = 37;
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}
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}
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return zone.clamp(1, 60);
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}
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String _utmLatitudeBand(double latitude) {
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const bands = 'CDEFGHJKLMNPQRSTUVWX';
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final index = ((latitude + 80) / 8).floor().clamp(0, bands.length - 1);
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return bands[index];
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}
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double _degreesToRadians(double degrees) => degrees * math.pi / 180;
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String formatPlusCode(double lat, double lon) {
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const base = '23456789CFGHJMPQRVWX';
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var normalizedLat = (lat + 90) / 180;
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var normalizedLon = (lon + 180) / 360;
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final buffer = StringBuffer();
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for (var i = 0; i < 8; i++) {
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if (i == 4) {
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buffer.write('+');
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}
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final latDigit = (normalizedLat * 20).floor() % 20;
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final lonDigit = (normalizedLon * 20).floor() % 20;
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buffer
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..write(base[latDigit])
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..write(base[lonDigit]);
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normalizedLat = (normalizedLat * 20) % 1;
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normalizedLon = (normalizedLon * 20) % 1;
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}
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return buffer.toString();
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}
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