mirror of
https://github.com/ClemensFischer/XAML-Map-Control.git
synced 2025-12-06 07:12:04 +01:00
82 lines
2.5 KiB
C#
82 lines
2.5 KiB
C#
// XAML Map Control - https://github.com/ClemensFischer/XAML-Map-Control
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// Copyright © Clemens Fischer
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// Licensed under the Microsoft Public License (Ms-PL)
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using System;
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#if WPF
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using System.Windows;
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#endif
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namespace MapControl
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{
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/// <summary>
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/// Spherical Orthographic Projection - AUTO2:42003.
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/// See "Map Projections - A Working Manual" (https://pubs.usgs.gov/pp/1395/report.pdf), p.148-150.
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/// </summary>
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public class OrthographicProjection : AzimuthalProjection
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{
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public const string DefaultCrsId = "AUTO2:42003";
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public OrthographicProjection()
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: this(DefaultCrsId)
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{
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// XAML needs parameterless constructor
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}
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public OrthographicProjection(string crsId)
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{
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CrsId = crsId;
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}
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public override Point? LocationToMap(Location location)
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{
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if (location.Equals(Center))
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{
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return new Point();
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}
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var lat0 = Center.Latitude * Math.PI / 180d;
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var lat = location.Latitude * Math.PI / 180d;
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var dLon = (location.Longitude - Center.Longitude) * Math.PI / 180d;
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if (Math.Abs(lat - lat0) > Math.PI / 2d || Math.Abs(dLon) > Math.PI / 2d)
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{
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return null;
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}
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return new Point(
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Wgs84EquatorialRadius * Math.Cos(lat) * Math.Sin(dLon),
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Wgs84EquatorialRadius * (Math.Cos(lat0) * Math.Sin(lat) - Math.Sin(lat0) * Math.Cos(lat) * Math.Cos(dLon)));
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}
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public override Location MapToLocation(Point point)
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{
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if (point.X == 0d && point.Y == 0d)
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{
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return new Location(Center.Latitude, Center.Longitude);
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}
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var x = point.X / Wgs84EquatorialRadius;
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var y = point.Y / Wgs84EquatorialRadius;
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var r2 = x * x + y * y;
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if (r2 > 1d)
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{
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return null;
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}
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var r = Math.Sqrt(r2);
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var sinC = r;
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var cosC = Math.Sqrt(1 - r2);
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var lat0 = Center.Latitude * Math.PI / 180d;
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var cosLat0 = Math.Cos(lat0);
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var sinLat0 = Math.Sin(lat0);
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return new Location(
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180d / Math.PI * Math.Asin(cosC * sinLat0 + y * sinC * cosLat0 / r),
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180d / Math.PI * Math.Atan2(x * sinC, r * cosC * cosLat0 - y * sinC * sinLat0) + Center.Longitude);
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}
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}
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}
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