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author | kali kaneko (leap communications) <kali@leap.se> | 2020-09-02 23:47:05 +0200 |
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committer | kali kaneko (leap communications) <kali@leap.se> | 2021-05-04 14:58:39 +0200 |
commit | 4bd6bbd788454367cc89d78543312f333051b840 (patch) | |
tree | 6a3d01bf804ea4bd841c013dbe96ffe3df29323a /gui/js/maps.js | |
parent | 335bb742b957370bbf40ae77a661559805ab307f (diff) |
[feat] expose gateway selector in gui
Diffstat (limited to 'gui/js/maps.js')
-rw-r--r-- | gui/js/maps.js | 83 |
1 files changed, 83 insertions, 0 deletions
diff --git a/gui/js/maps.js b/gui/js/maps.js new file mode 100644 index 0000000..c6f44d2 --- /dev/null +++ b/gui/js/maps.js @@ -0,0 +1,83 @@ +// Robinson projection calculation + +// Written by Niklas Bichinger (bichinger.de). This code is Public Domain - use as you like. + +// source of robinson numbers: https://simplemaps.com/static/img/flash/robinson_projection_table.jpg +var robinsonAA = [ + 0.84870000, + 0.84751182, + 0.84479598, + 0.84021300, + 0.83359314, + 0.82578510, + 0.81475200, + 0.80006949, + 0.78216192, + 0.76060494, + 0.73658673, + 0.70866450, + 0.67777182, + 0.64475739, + 0.60987582, + 0.57134484, + 0.52729731, + 0.48562614, + 0.45167814 +]; +var robinsonBB = [ + 0.00000000, + 0.08384260, + 0.16768520, + 0.25152780, + 0.33537040, + 0.41921300, + 0.50305560, + 0.58689820, + 0.67047034, + 0.75336633, + 0.83518048, + 0.91537187, + 0.99339958, + 1.06872269, + 1.14066505, + 1.20841528, + 1.27035062, + 1.31998003, + 1.35230000 +]; + +function project(latitude, longitude, mapWidth, heightFactor, mapOffsetX, mapOffsetY) { + if (typeof heightFactor === 'undefined') { heightFactor = 1; } + if (typeof mapOffsetX === 'undefined') { mapOffsetX = 0; } + if (typeof mapOffsetY === 'undefined') { mapOffsetY = 0; } + + // Robinson's latitude interpolation points are in 5-degree-steps + var latitudeAbs = Math.abs(latitude); + var latitudeStepFloor = Math.floor(latitudeAbs / 5); + var latitudeStepCeil = Math.ceil(latitudeAbs / 5); + // calc interpolation factor (>=0 to <1) between two steps + var latitudeInterpolation = (latitudeAbs - latitudeStepFloor * 5) / 5; + + // interpolate robinson table values + var AA = robinsonAA[latitudeStepFloor] + (robinsonAA[latitudeStepCeil] - robinsonAA[latitudeStepFloor]) * latitudeInterpolation; + var BB = robinsonBB[latitudeStepFloor] + (robinsonBB[latitudeStepCeil] - robinsonBB[latitudeStepFloor]) * latitudeInterpolation; + + var robinsonWidth = 2 * Math.PI * robinsonAA[0]; + var widthFactor = mapWidth / robinsonWidth; + var latitudeSign = Math.sign(latitude) || 1; + var x = (widthFactor * AA * longitude * Math.PI) / 180 + mapOffsetX; + var y = widthFactor * BB * latitudeSign * heightFactor + mapOffsetY; + + return {x: x, y: y}; +} + +function projectAbsolute(latitude, longitude, mapWidth, heightFactor, mapOffsetX, mapOffsetY) { + if (typeof heightFactor === 'undefined') { heightFactor = 1; } + + var relative = project(latitude, longitude, mapWidth, heightFactor, mapOffsetX, mapOffsetY); + var widthHeightRatio = Math.PI * robinsonAA[0] / robinsonBB[18]; + var x = mapWidth / 2 + relative.x; + var y = mapWidth / widthHeightRatio * heightFactor / 2 - relative.y; + + return {x: x, y: y}; +} |