AdminLTE/plugins/jquery-mapael/maps/world_countries_miller.js

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/*!
*
* Jquery Mapael - Dynamic maps jQuery plugin (based on raphael.js)
* Requires Mapael
*
* Map of World by country
* Miller projection
*
* @source http://code.highcharts.com/mapdata/
*
* @deprecated : this map will be definitely moved to 'mapael-maps' repository starting from the next major release (3.0.0).
* You can use instead https://github.com/neveldo/mapael-maps/blob/master/world/world_countries_miller.js
*/
(function (factory) {
if (typeof exports === 'object') {
// CommonJS
module.exports = factory(require('jquery'), require('jquery-mapael'));
} else if (typeof define === 'function' && define.amd) {
// AMD. Register as an anonymous module.
define(['jquery', 'mapael'], factory);
} else {
// Browser globals
factory(jQuery, jQuery.mapael);
}
}(function ($, Mapael) {
"use strict";
$.extend(true, Mapael, {
maps: {
world_countries_miller: {
/*
* map-specific constants
* (set by user)
*/
// Width of the map, in pixel
width : 700.9375,
// Height of the map, in pixel
height : 337.375,
// Longitude of the left side of the map, in degree
leftLongitude: -175.0,
// Longitude of the right side of the map, in degree
rightLongitude: 190.0,
// Latitude of the top of the map, in degree
topLatitude: 84.0,
// Latitude of the bottom of the map, in degree
bottomLatitude: -56.0,
/*
* Transform a longitude coordinate into projection-specific x' coordinate
* Note: this is not in pixel
*
* @param lon longitude value in degree
* @return x' projection-specific value
*/
_projectLongitude: function (lon) {
// Compute longitude in radian
return lon * Math.PI / 180;
},
/*
* Transform a latitude coordinate into projection-specific y' coordinate
* Note: this is not in pixel
*
* @param lat latitude value in degree
* @return y' projection-specific value
*/
_projectLatitude: function (lat) {
// Compute latitude in radian
var latRad = lat * Math.PI / 180;
return 1.25 * Math.log( Math.tan( Math.PI / 4 + 0.4 * latRad ) );
},
/*
* Get x,y point from lat,lon coordinate
*
* Principle:
* (lat, lon) are inputs
* Projection(lat, lon) = (x', y')
* Transformation(x', y') = (x, y)
*
* Source: http://jkwiens.com/2009/01/23/miller-projection/
*
* @param lat latitude value in degree
* @param lon longitude value in degree
* @return {x, y} coordinate in pixel
*/
getCoords: function (lat, lon) {
var self = this;
// Project map boundaries with projection (only once for performance)
if (self._xLeftPrime === undefined) self._xLeftPrime = self._projectLongitude(self.leftLongitude);
if (self._xRightPrime === undefined) self._xRightPrime = self._projectLongitude(self.rightLongitude);
if (self._yTopPrime === undefined) self._yTopPrime = self._projectLatitude(self.topLatitude);
if (self._yBottomPrime === undefined) self._yBottomPrime = self._projectLatitude(self.bottomLatitude);
// Compute x' and y' (projection-specific value)
var xPrime = self._projectLongitude(lon);
var yPrime = self._projectLatitude(lat);
// Compute x and y
var x = (xPrime - self._xLeftPrime) * (self.width / (self._xRightPrime - self._xLeftPrime));
var y = (self._yTopPrime - yPrime) * (self.height / (self._yTopPrime - self._yBottomPrime));
return {x: x, y: y};
},
elems: {
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"UM" : "m 26.03,206.59 0,0 -0.1,0 0.1,0 z",
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"VE" : "m 199.73,195.09 -1.1,0.5 0.6,1.7 -1,1.7 1.2,1.5 0.9,-1.3 -1.1,-2.1 2.8,-1.2 2.4,0 1.8,1.9 3.2,-0.4 2.9,1.1 1.6,-1 2.3,-0.3 0.9,1.4 2.8,1.3 -0.2,0.9 1.7,0.7 -1,1.4 0.4,1.3 -1.7,1.1 -0.3,1.2 1.2,1.4 -1.6,1.8 -5.9,0.5 1.2,2.9 1.3,0.1 -1.5,1.6 -2.7,1.7 -2.6,-1.1 -0.6,-2.2 -1.2,-0.9 1,-1 -1.1,-2.2 0.8,-3.1 -3.8,0.1 -1.3,-1.6 -3.8,-0.2 -0.5,-2.5 -1.2,-1.8 0.2,-2.1 1.8,-2.4 z",
"SB" : "m 644.23,236.59 -1.9,-0.1 0,-2.4 -2.9,-1.9 -1.4,0.8 1.2,1.3 -2.6,-1.1 0.1,-1.7 3.3,0.7 2.3,1.4 0.5,1.4 1.7,-0.8 z",
"MG" : "m 431.73,249.49 -4.3,14.5 -1,2.3 -3.7,1.2 -2.1,-1.2 -0.5,-3.1 -1.1,-2.4 0.6,-1.9 1.8,-2.6 -1,-5 1,-2.5 2.2,-0.4 3.6,-1.7 1.4,-3.3 0.9,0.1 1.1,-2.9 1.3,2.1 1,4.7 -1.6,0.2 z",
"IS" : "m 290.23,72.39 4.3,-0.5 -0.3,-1.1 -2.3,-0.6 -2.6,0.2 1.5,-0.8 0.6,-1.4 1.9,0.4 -0.2,-1.2 2.4,1.5 -0.4,1.4 1.1,0.6 1.6,-2.4 3.4,-0.2 1.4,0.7 2.1,-0.7 -0.1,-1 3.6,1.4 -0.3,1 2,0.7 0.5,1.4 -2,2.1 -6.1,2.1 -1.9,1 -2.8,-0.5 -1.9,-1 -2.9,0.1 1.9,-1.7 -1.4,-1.3 z",
"EG" : "m 403.13,159.99 -1.2,3.6 -2,-1.7 -1.4,-2.9 0.2,2.1 1.9,2.4 0.8,2.4 2.9,5.4 0.3,2.1 2.3,1.8 -10.8,0 -12,0 0,-14.6 -0.6,-2.1 0.9,-3.1 4.2,0.7 3.3,1.1 2.5,-1.4 2.3,0.1 1,0.8 4.1,-0.5 1.2,3.3 z",
"KG" : "m 477.33,138.49 -2.7,0.6 -1.5,-0.9 -4.1,0.2 1.2,-1.6 1.9,0 1.4,0.2 2.8,-1.5 -2.7,-1.5 -0.6,0.7 -2.4,-1 1.5,-1.5 1.7,-1.4 3.2,1 1.3,-2 1.9,1 6.2,-0.1 3.4,1.6 -3.5,1.9 -0.5,0.7 -2.5,0.3 -2.1,1.4 -0.3,-0.7 -3,1.3 z m -5.8,-0.9 -0.3,0 0.2,0.2 0.2,-0.1 z m 2.2,-0.1 0,-0.2 -0.2,0.1 0,0.1 z m -1.2,-0.3 -0.4,-0.1 0.2,0.5 0.3,-0.1 z",
"NP" : "m 505.03,163.39 0.1,2.3 -1.6,0.7 -2.9,-0.4 -2.4,-1.6 -3.5,-0.3 -5.2,-2.8 0.6,-1.9 1.3,-0.9 2,-0.3 2.8,2.4 1.1,-0.1 1.9,1.9 1.7,0.9 1.1,-0.4 z"
}
}
}
});
return Mapael;
}));