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subClass.prototype.constructor = subClass;\n    subClass.__proto__ = superClass;\n  }\n\n  function _assertThisInitialized(self) {\n    if (self === void 0) {\n      throw new ReferenceError(\"this hasn't been initialised - super() hasn't been called\");\n    }\n\n    return self;\n  }\n\n  /**\r\n   * @internal\r\n   */\n\n  function geocodingParams(options, params) {\n    return L__namespace.Util.extend(params, options.geocodingQueryParams);\n  }\n  /**\r\n   * @internal\r\n   */\n\n  function reverseParams(options, params) {\n    return L__namespace.Util.extend(params, options.reverseQueryParams);\n  }\n\n  /**\r\n   * @internal\r\n   */\n\n  var lastCallbackId = 0; // Adapted from handlebars.js\n  // https://github.com/wycats/handlebars.js/\n\n  /**\r\n   * @internal\r\n   */\n\n  var badChars = /[&<>\"'`]/g;\n  /**\r\n   * @internal\r\n   */\n\n  var possible = /[&<>\"'`]/;\n  /**\r\n   * @internal\r\n   */\n\n  var escape = {\n    '&': '&amp;',\n    '<': '&lt;',\n    '>': '&gt;',\n    '\"': '&quot;',\n    \"'\": '&#x27;',\n    '`': '&#x60;'\n  };\n  /**\r\n   * @internal\r\n   */\n\n  function escapeChar(chr) {\n    return escape[chr];\n  }\n  /**\r\n   * @internal\r\n   */\n\n\n  function htmlEscape(string) {\n    if (string == null) {\n      return '';\n    } else if (!string) {\n      return string + '';\n    } // Force a string conversion as this will be done by the append regardless and\n    // the regex test will do this transparently behind the scenes, causing issues if\n    // an object's to string has escaped characters in it.\n\n\n    string = '' + string;\n\n    if (!possible.test(string)) {\n      return string;\n    }\n\n    return string.replace(badChars, escapeChar);\n  }\n  /**\r\n   * @internal\r\n   */\n\n  function jsonp(url, params, callback, context, jsonpParam) {\n    var callbackId = '_l_geocoder_' + lastCallbackId++;\n    params[jsonpParam || 'callback'] = callbackId;\n    window[callbackId] = L__namespace.Util.bind(callback, context);\n    var script = document.createElement('script');\n    script.type = 'text/javascript';\n    script.src = url + getParamString(params);\n    script.id = callbackId;\n    document.getElementsByTagName('head')[0].appendChild(script);\n  }\n  /**\r\n   * @internal\r\n   */\n\n  function getJSON(url, params, callback) {\n    var xmlHttp = new XMLHttpRequest();\n\n    xmlHttp.onreadystatechange = function () {\n      if (xmlHttp.readyState !== 4) {\n        return;\n      }\n\n      var message;\n\n      if (xmlHttp.status !== 200 && xmlHttp.status !== 304) {\n        message = '';\n      } else if (typeof xmlHttp.response === 'string') {\n        // IE doesn't parse JSON responses even with responseType: 'json'.\n        try {\n          message = JSON.parse(xmlHttp.response);\n        } catch (e) {\n          // Not a JSON response\n          message = xmlHttp.response;\n        }\n      } else {\n        message = xmlHttp.response;\n      }\n\n      callback(message);\n    };\n\n    xmlHttp.open('GET', url + getParamString(params), true);\n    xmlHttp.responseType = 'json';\n    xmlHttp.setRequestHeader('Accept', 'application/json');\n    xmlHttp.send(null);\n  }\n  /**\r\n   * @internal\r\n   */\n\n  function template(str, data) {\n    return str.replace(/\\{ *([\\w_]+) *\\}/g, function (str, key) {\n      var value = data[key];\n\n      if (value === undefined) {\n        value = '';\n      } else if (typeof value === 'function') {\n        value = value(data);\n      }\n\n      return htmlEscape(value);\n    });\n  }\n  /**\r\n   * @internal\r\n   */\n\n  function getParamString(obj, existingUrl, uppercase) {\n    var params = [];\n\n    for (var i in obj) {\n      var key = encodeURIComponent(uppercase ? i.toUpperCase() : i);\n      var value = obj[i];\n\n      if (!Array.isArray(value)) {\n        params.push(key + '=' + encodeURIComponent(String(value)));\n      } else {\n        for (var j = 0; j < value.length; j++) {\n          params.push(key + '=' + encodeURIComponent(value[j]));\n        }\n      }\n    }\n\n    return (!existingUrl || existingUrl.indexOf('?') === -1 ? '?' : '&') + params.join('&');\n  }\n\n  /**\r\n   * Implementation of the [ArcGIS geocoder](https://developers.arcgis.com/features/geocoding/)\r\n   */\n\n  var ArcGis = /*#__PURE__*/function () {\n    function ArcGis(options) {\n      this.options = {\n        serviceUrl: 'https://geocode.arcgis.com/arcgis/rest/services/World/GeocodeServer',\n        apiKey: ''\n      };\n      L__namespace.Util.setOptions(this, options);\n    }\n\n    var _proto = ArcGis.prototype;\n\n    _proto.geocode = function geocode(query, cb, context) {\n      var params = geocodingParams(this.options, {\n        token: this.options.apiKey,\n        SingleLine: query,\n        outFields: 'Addr_Type',\n        forStorage: false,\n        maxLocations: 10,\n        f: 'json'\n      });\n      getJSON(this.options.serviceUrl + '/findAddressCandidates', params, function (data) {\n        var results = [];\n\n        if (data.candidates && data.candidates.length) {\n          for (var i = 0; i <= data.candidates.length - 1; i++) {\n            var loc = data.candidates[i];\n            var latLng = L__namespace.latLng(loc.location.y, loc.location.x);\n            var latLngBounds = L__namespace.latLngBounds(L__namespace.latLng(loc.extent.ymax, loc.extent.xmax), L__namespace.latLng(loc.extent.ymin, loc.extent.xmin));\n            results[i] = {\n              name: loc.address,\n              bbox: latLngBounds,\n              center: latLng\n            };\n          }\n        }\n\n        cb.call(context, results);\n      });\n    };\n\n    _proto.suggest = function suggest(query, cb, context) {\n      return this.geocode(query, cb, context);\n    };\n\n    _proto.reverse = function reverse(location, scale, cb, context) {\n      var params = reverseParams(this.options, {\n        location: location.lng + ',' + location.lat,\n        distance: 100,\n        f: 'json'\n      });\n      getJSON(this.options.serviceUrl + '/reverseGeocode', params, function (data) {\n        var result = [];\n\n        if (data && !data.error) {\n          var center = L__namespace.latLng(data.location.y, data.location.x);\n          var bbox = L__namespace.latLngBounds(center, center);\n          result.push({\n            name: data.address.Match_addr,\n            center: center,\n            bbox: bbox\n          });\n        }\n\n        cb.call(context, result);\n      });\n    };\n\n    return ArcGis;\n  }();\n  /**\r\n   * [Class factory method](https://leafletjs.com/reference.html#class-class-factories) for {@link ArcGis}\r\n   * @param options the options\r\n   */\n\n  function arcgis(options) {\n    return new ArcGis(options);\n  }\n\n  /**\r\n   * Implementation of the [Bing Locations API](https://docs.microsoft.com/en-us/bingmaps/rest-services/locations/)\r\n   */\n\n  var Bing = /*#__PURE__*/function () {\n    function Bing(options) {\n      this.options = {\n        serviceUrl: 'https://dev.virtualearth.net/REST/v1/Locations'\n      };\n      L__namespace.Util.setOptions(this, options);\n    }\n\n    var _proto = Bing.prototype;\n\n    _proto.geocode = function geocode(query, cb, context) {\n      var params = geocodingParams(this.options, {\n        query: query,\n        key: this.options.apiKey\n      });\n      jsonp(this.options.apiKey, params, function (data) {\n        var results = [];\n\n        if (data.resourceSets.length > 0) {\n          for (var i = data.resourceSets[0].resources.length - 1; i >= 0; i--) {\n            var resource = data.resourceSets[0].resources[i],\n                bbox = resource.bbox;\n            results[i] = {\n              name: resource.name,\n              bbox: L__namespace.latLngBounds([bbox[0], bbox[1]], [bbox[2], bbox[3]]),\n              center: L__namespace.latLng(resource.point.coordinates)\n            };\n          }\n        }\n\n        cb.call(context, results);\n      }, this, 'jsonp');\n    };\n\n    _proto.reverse = function reverse(location, scale, cb, context) {\n      var params = reverseParams(this.options, {\n        key: this.options.apiKey\n      });\n      jsonp(this.options.serviceUrl + location.lat + ',' + location.lng, params, function (data) {\n        var results = [];\n\n        for (var i = data.resourceSets[0].resources.length - 1; i >= 0; i--) {\n          var resource = data.resourceSets[0].resources[i],\n              bbox = resource.bbox;\n          results[i] = {\n            name: resource.name,\n            bbox: L__namespace.latLngBounds([bbox[0], bbox[1]], [bbox[2], bbox[3]]),\n            center: L__namespace.latLng(resource.point.coordinates)\n          };\n        }\n\n        cb.call(context, results);\n      }, this, 'jsonp');\n    };\n\n    return Bing;\n  }();\n  /**\r\n   * [Class factory method](https://leafletjs.com/reference.html#class-class-factories) for {@link Bing}\r\n   * @param options the options\r\n   */\n\n  function bing(options) {\n    return new Bing(options);\n  }\n\n  var Google = /*#__PURE__*/function () {\n    function Google(options) {\n      this.options = {\n        serviceUrl: 'https://maps.googleapis.com/maps/api/geocode/json'\n      };\n      L__namespace.Util.setOptions(this, options);\n    }\n\n    var _proto = Google.prototype;\n\n    _proto.geocode = function geocode(query, cb, context) {\n      var params = geocodingParams(this.options, {\n        key: this.options.apiKey,\n        address: query\n      });\n      getJSON(this.options.serviceUrl, params, function (data) {\n        var results = [];\n\n        if (data.results && data.results.length) {\n          for (var i = 0; i <= data.results.length - 1; i++) {\n            var loc = data.results[i];\n            var latLng = L__namespace.latLng(loc.geometry.location);\n            var latLngBounds = L__namespace.latLngBounds(L__namespace.latLng(loc.geometry.viewport.northeast), L__namespace.latLng(loc.geometry.viewport.southwest));\n            results[i] = {\n              name: loc.formatted_address,\n              bbox: latLngBounds,\n              center: latLng,\n              properties: loc.address_components\n            };\n          }\n        }\n\n        cb.call(context, results);\n      });\n    };\n\n    _proto.reverse = function reverse(location, scale, cb, context) {\n      var params = reverseParams(this.options, {\n        key: this.options.apiKey,\n        latlng: location.lat + ',' + location.lng\n      });\n      getJSON(this.options.serviceUrl, params, function (data) {\n        var results = [];\n\n        if (data.results && data.results.length) {\n          for (var i = 0; i <= data.results.length - 1; i++) {\n            var loc = data.results[i];\n            var center = L__namespace.latLng(loc.geometry.location);\n            var bbox = L__namespace.latLngBounds(L__namespace.latLng(loc.geometry.viewport.northeast), L__namespace.latLng(loc.geometry.viewport.southwest));\n            results[i] = {\n              name: loc.formatted_address,\n              bbox: bbox,\n              center: center,\n              properties: loc.address_components\n            };\n          }\n        }\n\n        cb.call(context, results);\n      });\n    };\n\n    return Google;\n  }();\n  /**\r\n   * [Class factory method](https://leafletjs.com/reference.html#class-class-factories) for {@link Google}\r\n   * @param options the options\r\n   */\n\n  function google(options) {\n    return new Google(options);\n  }\n\n  /**\r\n   * Implementation of the [HERE Geocoder API](https://developer.here.com/documentation/geocoder/topics/introduction.html)\r\n   */\n\n  var HERE = /*#__PURE__*/function () {\n    function HERE(options) {\n      this.options = {\n        serviceUrl: 'https://geocoder.api.here.com/6.2/',\n        app_id: '',\n        app_code: '',\n        apiKey: '',\n        maxResults: 5\n      };\n      L__namespace.Util.setOptions(this, options);\n      if (options.apiKey) throw Error('apiKey is not supported, use app_id/app_code instead!');\n    }\n\n    var _proto = HERE.prototype;\n\n    _proto.geocode = function geocode(query, cb, context) {\n      var params = geocodingParams(this.options, {\n        searchtext: query,\n        gen: 9,\n        app_id: this.options.app_id,\n        app_code: this.options.app_code,\n        jsonattributes: 1,\n        maxresults: this.options.maxResults\n      });\n      this.getJSON(this.options.serviceUrl + 'geocode.json', params, cb, context);\n    };\n\n    _proto.reverse = function reverse(location, scale, cb, context) {\n      var prox = location.lat + ',' + location.lng;\n\n      if (this.options.reverseGeocodeProxRadius) {\n        prox += ',' + this.options.reverseGeocodeProxRadius;\n      }\n\n      var params = reverseParams(this.options, {\n        prox: prox,\n        mode: 'retrieveAddresses',\n        app_id: this.options.app_id,\n        app_code: this.options.app_code,\n        gen: 9,\n        jsonattributes: 1,\n        maxresults: this.options.maxResults\n      });\n      this.getJSON(this.options.serviceUrl + 'reversegeocode.json', params, cb, context);\n    };\n\n    _proto.getJSON = function getJSON$1(url, params, cb, context) {\n      getJSON(url, params, function (data) {\n        var results = [];\n\n        if (data.response.view && data.response.view.length) {\n          for (var i = 0; i <= data.response.view[0].result.length - 1; i++) {\n            var loc = data.response.view[0].result[i].location;\n            var center = L__namespace.latLng(loc.displayPosition.latitude, loc.displayPosition.longitude);\n            var bbox = L__namespace.latLngBounds(L__namespace.latLng(loc.mapView.topLeft.latitude, loc.mapView.topLeft.longitude), L__namespace.latLng(loc.mapView.bottomRight.latitude, loc.mapView.bottomRight.longitude));\n            results[i] = {\n              name: loc.address.label,\n              properties: loc.address,\n              bbox: bbox,\n              center: center\n            };\n          }\n        }\n\n        cb.call(context, results);\n      });\n    };\n\n    return HERE;\n  }();\n  /**\r\n   * Implementation of the new [HERE Geocoder API](https://developer.here.com/documentation/geocoding-search-api/api-reference-swagger.html)\r\n   */\n\n  var HEREv2 = /*#__PURE__*/function () {\n    function HEREv2(options) {\n      this.options = {\n        serviceUrl: 'https://geocode.search.hereapi.com/v1',\n        apiKey: '',\n        app_id: '',\n        app_code: '',\n        maxResults: 10\n      };\n      L__namespace.Util.setOptions(this, options);\n    }\n\n    var _proto2 = HEREv2.prototype;\n\n    _proto2.geocode = function geocode(query, cb, context) {\n      var params = geocodingParams(this.options, {\n        q: query,\n        apiKey: this.options.apiKey,\n        limit: this.options.maxResults\n      });\n\n      if (!params.at && !params[\"in\"]) {\n        throw Error('at / in parameters not found. Please define coordinates (at=latitude,longitude) or other (in) in your geocodingQueryParams.');\n      }\n\n      this.getJSON(this.options.serviceUrl + '/discover', params, cb, context);\n    };\n\n    _proto2.reverse = function reverse(location, scale, cb, context) {\n      var params = reverseParams(this.options, {\n        at: location.lat + ',' + location.lng,\n        limit: this.options.reverseGeocodeProxRadius,\n        apiKey: this.options.apiKey\n      });\n      this.getJSON(this.options.serviceUrl + '/revgeocode', params, cb, context);\n    };\n\n    _proto2.getJSON = function getJSON$1(url, params, cb, context) {\n      getJSON(url, params, function (data) {\n        var results = [];\n\n        if (data.items && data.items.length) {\n          for (var i = 0; i <= data.items.length - 1; i++) {\n            var item = data.items[i];\n            var latLng = L__namespace.latLng(item.position.lat, item.position.lng);\n            var bbox = void 0;\n\n            if (item.mapView) {\n              bbox = L__namespace.latLngBounds(L__namespace.latLng(item.mapView.south, item.mapView.west), L__namespace.latLng(item.mapView.north, item.mapView.east));\n            } else {\n              // Using only position when not provided\n              bbox = L__namespace.latLngBounds(L__namespace.latLng(item.position.lat, item.position.lng), L__namespace.latLng(item.position.lat, item.position.lng));\n            }\n\n            results[i] = {\n              name: item.address.label,\n              properties: item.address,\n              bbox: bbox,\n              center: latLng\n            };\n          }\n        }\n\n        cb.call(context, results);\n      });\n    };\n\n    return HEREv2;\n  }();\n  /**\r\n   * [Class factory method](https://leafletjs.com/reference.html#class-class-factories) for {@link HERE}\r\n   * @param options the options\r\n   */\n\n  function here(options) {\n    if (options.apiKey) {\n      return new HEREv2(options);\n    } else {\n      return new HERE(options);\n    }\n  }\n\n  /**\r\n   * Parses basic latitude/longitude strings such as `'50.06773 14.37742'`, `'N50.06773 W14.37742'`, `'S 50Ā° 04.064 E 014Ā° 22.645'`, or `'S 50Ā° 4ā€² 03.828ā€³, W 14Ā° 22ā€² 38.712ā€³'`\r\n   * @param query the latitude/longitude string to parse\r\n   * @returns the parsed latitude/longitude\r\n   */\n\n  function parseLatLng(query) {\n    var match; // regex from https://github.com/openstreetmap/openstreetmap-website/blob/master/app/controllers/geocoder_controller.rb\n\n    if (match = query.match(/^([NS])\\s*(\\d{1,3}(?:\\.\\d*)?)\\W*([EW])\\s*(\\d{1,3}(?:\\.\\d*)?)$/)) {\n      // [NSEW] decimal degrees\n      return L__namespace.latLng((/N/i.test(match[1]) ? 1 : -1) * +match[2], (/E/i.test(match[3]) ? 1 : -1) * +match[4]);\n    } else if (match = query.match(/^(\\d{1,3}(?:\\.\\d*)?)\\s*([NS])\\W*(\\d{1,3}(?:\\.\\d*)?)\\s*([EW])$/)) {\n      // decimal degrees [NSEW]\n      return L__namespace.latLng((/N/i.test(match[2]) ? 1 : -1) * +match[1], (/E/i.test(match[4]) ? 1 : -1) * +match[3]);\n    } else if (match = query.match(/^([NS])\\s*(\\d{1,3})Ā°?\\s*(\\d{1,3}(?:\\.\\d*)?)?['ā€²]?\\W*([EW])\\s*(\\d{1,3})Ā°?\\s*(\\d{1,3}(?:\\.\\d*)?)?['ā€²]?$/)) {\n      // [NSEW] degrees, decimal minutes\n      return L__namespace.latLng((/N/i.test(match[1]) ? 1 : -1) * (+match[2] + +match[3] / 60), (/E/i.test(match[4]) ? 1 : -1) * (+match[5] + +match[6] / 60));\n    } else if (match = query.match(/^(\\d{1,3})Ā°?\\s*(\\d{1,3}(?:\\.\\d*)?)?['ā€²]?\\s*([NS])\\W*(\\d{1,3})Ā°?\\s*(\\d{1,3}(?:\\.\\d*)?)?['ā€²]?\\s*([EW])$/)) {\n      // degrees, decimal minutes [NSEW]\n      return L__namespace.latLng((/N/i.test(match[3]) ? 1 : -1) * (+match[1] + +match[2] / 60), (/E/i.test(match[6]) ? 1 : -1) * (+match[4] + +match[5] / 60));\n    } else if (match = query.match(/^([NS])\\s*(\\d{1,3})Ā°?\\s*(\\d{1,2})['ā€²]?\\s*(\\d{1,3}(?:\\.\\d*)?)?[\"ā€³]?\\W*([EW])\\s*(\\d{1,3})Ā°?\\s*(\\d{1,2})['ā€²]?\\s*(\\d{1,3}(?:\\.\\d*)?)?[\"ā€³]?$/)) {\n      // [NSEW] degrees, minutes, decimal seconds\n      return L__namespace.latLng((/N/i.test(match[1]) ? 1 : -1) * (+match[2] + +match[3] / 60 + +match[4] / 3600), (/E/i.test(match[5]) ? 1 : -1) * (+match[6] + +match[7] / 60 + +match[8] / 3600));\n    } else if (match = query.match(/^(\\d{1,3})Ā°?\\s*(\\d{1,2})['ā€²]?\\s*(\\d{1,3}(?:\\.\\d*)?)?[\"ā€³]\\s*([NS])\\W*(\\d{1,3})Ā°?\\s*(\\d{1,2})['ā€²]?\\s*(\\d{1,3}(?:\\.\\d*)?)?[\"ā€³]?\\s*([EW])$/)) {\n      // degrees, minutes, decimal seconds [NSEW]\n      return L__namespace.latLng((/N/i.test(match[4]) ? 1 : -1) * (+match[1] + +match[2] / 60 + +match[3] / 3600), (/E/i.test(match[8]) ? 1 : -1) * (+match[5] + +match[6] / 60 + +match[7] / 3600));\n    } else if (match = query.match(/^\\s*([+-]?\\d+(?:\\.\\d*)?)\\s*[\\s,]\\s*([+-]?\\d+(?:\\.\\d*)?)\\s*$/)) {\n      return L__namespace.latLng(+match[1], +match[2]);\n    }\n  }\n  /**\r\n   * Parses basic latitude/longitude strings such as `'50.06773 14.37742'`, `'N50.06773 W14.37742'`, `'S 50Ā° 04.064 E 014Ā° 22.645'`, or `'S 50Ā° 4ā€² 03.828ā€³, W 14Ā° 22ā€² 38.712ā€³'`\r\n   */\n\n  var LatLng = /*#__PURE__*/function () {\n    function LatLng(options) {\n      this.options = {\n        next: undefined,\n        sizeInMeters: 10000\n      };\n      L__namespace.Util.setOptions(this, options);\n    }\n\n    var _proto = LatLng.prototype;\n\n    _proto.geocode = function geocode(query, cb, context) {\n      var center = parseLatLng(query);\n\n      if (center) {\n        var results = [{\n          name: query,\n          center: center,\n          bbox: center.toBounds(this.options.sizeInMeters)\n        }];\n        cb.call(context, results);\n      } else if (this.options.next) {\n        this.options.next.geocode(query, cb, context);\n      }\n    };\n\n    return LatLng;\n  }();\n  /**\r\n   * [Class factory method](https://leafletjs.com/reference.html#class-class-factories) for {@link LatLng}\r\n   * @param options the options\r\n   */\n\n  function latLng(options) {\n    return new LatLng(options);\n  }\n\n  /**\r\n   * Implementation of the [Mapbox Geocoding](https://www.mapbox.com/api-documentation/#geocoding)\r\n   */\n\n  var Mapbox = /*#__PURE__*/function () {\n    function Mapbox(options) {\n      this.options = {\n        serviceUrl: 'https://api.mapbox.com/geocoding/v5/mapbox.places/'\n      };\n      L__namespace.Util.setOptions(this, options);\n    }\n\n    var _proto = Mapbox.prototype;\n\n    _proto._getProperties = function _getProperties(loc) {\n      var properties = {\n        text: loc.text,\n        address: loc.address\n      };\n\n      for (var j = 0; j < (loc.context || []).length; j++) {\n        var id = loc.context[j].id.split('.')[0];\n        properties[id] = loc.context[j].text; // Get country code when available\n\n        if (loc.context[j].short_code) {\n          properties['countryShortCode'] = loc.context[j].short_code;\n        }\n      }\n\n      return properties;\n    };\n\n    _proto.geocode = function geocode(query, cb, context) {\n      var _this = this;\n\n      var params = geocodingParams(this.options, {\n        access_token: this.options.apiKey\n      });\n\n      if (params.proximity !== undefined && params.proximity.lat !== undefined && params.proximity.lng !== undefined) {\n        params.proximity = params.proximity.lng + ',' + params.proximity.lat;\n      }\n\n      getJSON(this.options.serviceUrl + encodeURIComponent(query) + '.json', params, function (data) {\n        var results = [];\n\n        if (data.features && data.features.length) {\n          for (var i = 0; i <= data.features.length - 1; i++) {\n            var loc = data.features[i];\n            var center = L__namespace.latLng(loc.center.reverse());\n            var bbox = void 0;\n\n            if (loc.bbox) {\n              bbox = L__namespace.latLngBounds(L__namespace.latLng(loc.bbox.slice(0, 2).reverse()), L__namespace.latLng(loc.bbox.slice(2, 4).reverse()));\n            } else {\n              bbox = L__namespace.latLngBounds(center, center);\n            }\n\n            results[i] = {\n              name: loc.place_name,\n              bbox: bbox,\n              center: center,\n              properties: _this._getProperties(loc)\n            };\n          }\n        }\n\n        cb.call(context, results);\n      });\n    };\n\n    _proto.suggest = function suggest(query, cb, context) {\n      return this.geocode(query, cb, context);\n    };\n\n    _proto.reverse = function reverse(location, scale, cb, context) {\n      var _this2 = this;\n\n      var url = this.options.serviceUrl + location.lng + ',' + location.lat + '.json';\n      var param = reverseParams(this.options, {\n        access_token: this.options.apiKey\n      });\n      getJSON(url, param, function (data) {\n        var results = [];\n\n        if (data.features && data.features.length) {\n          for (var i = 0; i <= data.features.length - 1; i++) {\n            var loc = data.features[i];\n            var center = L__namespace.latLng(loc.center.reverse());\n            var bbox = void 0;\n\n            if (loc.bbox) {\n              bbox = L__namespace.latLngBounds(L__namespace.latLng(loc.bbox.slice(0, 2).reverse()), L__namespace.latLng(loc.bbox.slice(2, 4).reverse()));\n            } else {\n              bbox = L__namespace.latLngBounds(center, center);\n            }\n\n            results[i] = {\n              name: loc.place_name,\n              bbox: bbox,\n              center: center,\n              properties: _this2._getProperties(loc)\n            };\n          }\n        }\n\n        cb.call(context, results);\n      });\n    };\n\n    return Mapbox;\n  }();\n  /**\r\n   * [Class factory method](https://leafletjs.com/reference.html#class-class-factories) for {@link Mapbox}\r\n   * @param options the options\r\n   */\n\n  function mapbox(options) {\n    return new Mapbox(options);\n  }\n\n  /**\r\n   * Implementation of the [MapQuest Geocoding API](http://developer.mapquest.com/web/products/dev-services/geocoding-ws)\r\n   */\n\n  var MapQuest = /*#__PURE__*/function () {\n    function MapQuest(options) {\n      this.options = {\n        serviceUrl: 'https://www.mapquestapi.com/geocoding/v1'\n      };\n      L__namespace.Util.setOptions(this, options); // MapQuest seems to provide URI encoded API keys,\n      // so to avoid encoding them twice, we decode them here\n\n      this.options.apiKey = decodeURIComponent(this.options.apiKey);\n    }\n\n    var _proto = MapQuest.prototype;\n\n    _proto._formatName = function _formatName() {\n      return [].slice.call(arguments).filter(function (s) {\n        return !!s;\n      }).join(', ');\n    };\n\n    _proto.geocode = function geocode(query, cb, context) {\n      var params = geocodingParams(this.options, {\n        key: this.options.apiKey,\n        location: query,\n        limit: 5,\n        outFormat: 'json'\n      });\n      getJSON(this.options.serviceUrl + '/address', params, L__namespace.Util.bind(function (data) {\n        var results = [];\n\n        if (data.results && data.results[0].locations) {\n          for (var i = data.results[0].locations.length - 1; i >= 0; i--) {\n            var loc = data.results[0].locations[i];\n            var center = L__namespace.latLng(loc.latLng);\n            results[i] = {\n              name: this._formatName(loc.street, loc.adminArea4, loc.adminArea3, loc.adminArea1),\n              bbox: L__namespace.latLngBounds(center, center),\n              center: center\n            };\n          }\n        }\n\n        cb.call(context, results);\n      }, this));\n    };\n\n    _proto.reverse = function reverse(location, scale, cb, context) {\n      var params = reverseParams(this.options, {\n        key: this.options.apiKey,\n        location: location.lat + ',' + location.lng,\n        outputFormat: 'json'\n      });\n      getJSON(this.options.serviceUrl + '/reverse', params, L__namespace.Util.bind(function (data) {\n        var results = [];\n\n        if (data.results && data.results[0].locations) {\n          for (var i = data.results[0].locations.length - 1; i >= 0; i--) {\n            var loc = data.results[0].locations[i];\n            var center = L__namespace.latLng(loc.latLng);\n            results[i] = {\n              name: this._formatName(loc.street, loc.adminArea4, loc.adminArea3, loc.adminArea1),\n              bbox: L__namespace.latLngBounds(center, center),\n              center: center\n            };\n          }\n        }\n\n        cb.call(context, results);\n      }, this));\n    };\n\n    return MapQuest;\n  }();\n  /**\r\n   * [Class factory method](https://leafletjs.com/reference.html#class-class-factories) for {@link MapQuest}\r\n   * @param options the options\r\n   */\n\n  function mapQuest(options) {\n    return new MapQuest(options);\n  }\n\n  /**\r\n   * Implementation of the [Neutrino API](https://www.neutrinoapi.com/api/geocode-address/)\r\n   */\n\n  var Neutrino = /*#__PURE__*/function () {\n    function Neutrino(options) {\n      this.options = {\n        userId: undefined,\n        apiKey: undefined,\n        serviceUrl: 'https://neutrinoapi.com/'\n      };\n      L__namespace.Util.setOptions(this, options);\n    } // https://www.neutrinoapi.com/api/geocode-address/\n\n\n    var _proto = Neutrino.prototype;\n\n    _proto.geocode = function geocode(query, cb, context) {\n      var params = geocodingParams(this.options, {\n        apiKey: this.options.apiKey,\n        userId: this.options.userId,\n        //get three words and make a dot based string\n        address: query.split(/\\s+/).join('.')\n      });\n      getJSON(this.options.serviceUrl + 'geocode-address', params, function (data) {\n        var results = [];\n\n        if (data.locations) {\n          data.geometry = data.locations[0];\n          var center = L__namespace.latLng(data.geometry['latitude'], data.geometry['longitude']);\n          var bbox = L__namespace.latLngBounds(center, center);\n          results[0] = {\n            name: data.geometry.address,\n            bbox: bbox,\n            center: center\n          };\n        }\n\n        cb.call(context, results);\n      });\n    };\n\n    _proto.suggest = function suggest(query, cb, context) {\n      return this.geocode(query, cb, context);\n    } // https://www.neutrinoapi.com/api/geocode-reverse/\n    ;\n\n    _proto.reverse = function reverse(location, scale, cb, context) {\n      var params = reverseParams(this.options, {\n        apiKey: this.options.apiKey,\n        userId: this.options.userId,\n        latitude: location.lat,\n        longitude: location.lng\n      });\n      getJSON(this.options.serviceUrl + 'geocode-reverse', params, function (data) {\n        var results = [];\n\n        if (data.status.status == 200 && data.found) {\n          var center = L__namespace.latLng(location.lat, location.lng);\n          var bbox = L__namespace.latLngBounds(center, center);\n          results[0] = {\n            name: data.address,\n            bbox: bbox,\n            center: center\n          };\n        }\n\n        cb.call(context, results);\n      });\n    };\n\n    return Neutrino;\n  }();\n  /**\r\n   * [Class factory method](https://leafletjs.com/reference.html#class-class-factories) for {@link Neutrino}\r\n   * @param options the options\r\n   */\n\n  function neutrino(options) {\n    return new Neutrino(options);\n  }\n\n  /**\r\n   * Implementation of the [Nominatim](https://wiki.openstreetmap.org/wiki/Nominatim) geocoder.\r\n   *\r\n   * This is the default geocoding service used by the control, unless otherwise specified in the options.\r\n   *\r\n   * Unless using your own Nominatim installation, please refer to the [Nominatim usage policy](https://operations.osmfoundation.org/policies/nominatim/).\r\n   */\n\n  var Nominatim = /*#__PURE__*/function () {\n    function Nominatim(options) {\n      this.options = {\n        serviceUrl: 'https://nominatim.openstreetmap.org/',\n        htmlTemplate: function htmlTemplate(r) {\n          var address = r.address;\n          var className;\n          var parts = [];\n\n          if (address.road || address.building) {\n            parts.push('{building} {road} {house_number}');\n          }\n\n          if (address.city || address.town || address.village || address.hamlet) {\n            className = parts.length > 0 ? 'leaflet-control-geocoder-address-detail' : '';\n            parts.push('<span class=\"' + className + '\">{postcode} {city} {town} {village} {hamlet}</span>');\n          }\n\n          if (address.state || address.country) {\n            className = parts.length > 0 ? 'leaflet-control-geocoder-address-context' : '';\n            parts.push('<span class=\"' + className + '\">{state} {country}</span>');\n          }\n\n          return template(parts.join('<br/>'), address);\n        }\n      };\n      L__namespace.Util.setOptions(this, options || {});\n    }\n\n    var _proto = Nominatim.prototype;\n\n    _proto.geocode = function geocode(query, cb, context) {\n      var _this = this;\n\n      var params = geocodingParams(this.options, {\n        q: query,\n        limit: 5,\n        format: 'json',\n        addressdetails: 1\n      });\n      getJSON(this.options.serviceUrl + 'search', params, function (data) {\n        var results = [];\n\n        for (var i = data.length - 1; i >= 0; i--) {\n          var bbox = data[i].boundingbox;\n\n          for (var j = 0; j < 4; j++) {\n            bbox[j] = +bbox[j];\n          }\n\n          results[i] = {\n            icon: data[i].icon,\n            name: data[i].display_name,\n            html: _this.options.htmlTemplate ? _this.options.htmlTemplate(data[i]) : undefined,\n            bbox: L__namespace.latLngBounds([bbox[0], bbox[2]], [bbox[1], bbox[3]]),\n            center: L__namespace.latLng(data[i].lat, data[i].lon),\n            properties: data[i]\n          };\n        }\n\n        cb.call(context, results);\n      });\n    };\n\n    _proto.reverse = function reverse(location, scale, cb, context) {\n      var _this2 = this;\n\n      var params = reverseParams(this.options, {\n        lat: location.lat,\n        lon: location.lng,\n        zoom: Math.round(Math.log(scale / 256) / Math.log(2)),\n        addressdetails: 1,\n        format: 'json'\n      });\n      getJSON(this.options.serviceUrl + 'reverse', params, function (data) {\n        var result = [];\n\n        if (data && data.lat && data.lon) {\n          var center = L__namespace.latLng(data.lat, data.lon);\n          var bbox = L__namespace.latLngBounds(center, center);\n          result.push({\n            name: data.display_name,\n            html: _this2.options.htmlTemplate ? _this2.options.htmlTemplate(data) : undefined,\n            center: center,\n            bbox: bbox,\n            properties: data\n          });\n        }\n\n        cb.call(context, result);\n      });\n    };\n\n    return Nominatim;\n  }();\n  /**\r\n   * [Class factory method](https://leafletjs.com/reference.html#class-class-factories) for {@link Nominatim}\r\n   * @param options the options\r\n   */\n\n  function nominatim(options) {\n    return new Nominatim(options);\n  }\n\n  /**\r\n   * Implementation of the [Plus codes](https://plus.codes/) (formerly OpenLocationCode) (requires [open-location-code](https://www.npmjs.com/package/open-location-code))\r\n   */\n\n  var OpenLocationCode = /*#__PURE__*/function () {\n    function OpenLocationCode(options) {\n      L__namespace.Util.setOptions(this, options);\n    }\n\n    var _proto = OpenLocationCode.prototype;\n\n    _proto.geocode = function geocode(query, cb, context) {\n      try {\n        var decoded = this.options.OpenLocationCode.decode(query);\n        var result = {\n          name: query,\n          center: L__namespace.latLng(decoded.latitudeCenter, decoded.longitudeCenter),\n          bbox: L__namespace.latLngBounds(L__namespace.latLng(decoded.latitudeLo, decoded.longitudeLo), L__namespace.latLng(decoded.latitudeHi, decoded.longitudeHi))\n        };\n        cb.call(context, [result]);\n      } catch (e) {\n        console.warn(e); // eslint-disable-line no-console\n\n        cb.call(context, []);\n      }\n    };\n\n    _proto.reverse = function reverse(location, scale, cb, context) {\n      try {\n        var code = this.options.OpenLocationCode.encode(location.lat, location.lng, this.options.codeLength);\n        var result = {\n          name: code,\n          center: L__namespace.latLng(location.lat, location.lng),\n          bbox: L__namespace.latLngBounds(L__namespace.latLng(location.lat, location.lng), L__namespace.latLng(location.lat, location.lng))\n        };\n        cb.call(context, [result]);\n      } catch (e) {\n        console.warn(e); // eslint-disable-line no-console\n\n        cb.call(context, []);\n      }\n    };\n\n    return OpenLocationCode;\n  }();\n  /**\r\n   * [Class factory method](https://leafletjs.com/reference.html#class-class-factories) for {@link OpenLocationCode}\r\n   * @param options the options\r\n   */\n\n  function openLocationCode(options) {\n    return new OpenLocationCode(options);\n  }\n\n  /**\r\n   * Implementation of the [OpenCage Data API](https://opencagedata.com/)\r\n   */\n\n  var OpenCage = /*#__PURE__*/function () {\n    function OpenCage(options) {\n      this.options = {\n        serviceUrl: 'https://api.opencagedata.com/geocode/v1/json'\n      };\n      L__namespace.Util.setOptions(this, options);\n    }\n\n    var _proto = OpenCage.prototype;\n\n    _proto.geocode = function geocode(query, cb, context) {\n      var params = geocodingParams(this.options, {\n        key: this.options.apiKey,\n        q: query\n      });\n      getJSON(this.options.serviceUrl, params, function (data) {\n        var results = [];\n\n        if (data.results && data.results.length) {\n          for (var i = 0; i < data.results.length; i++) {\n            var loc = data.results[i];\n            var center = L__namespace.latLng(loc.geometry);\n            var bbox = void 0;\n\n            if (loc.annotations && loc.annotations.bounds) {\n              bbox = L__namespace.latLngBounds(L__namespace.latLng(loc.annotations.bounds.northeast), L__namespace.latLng(loc.annotations.bounds.southwest));\n            } else {\n              bbox = L__namespace.latLngBounds(center, center);\n            }\n\n            results.push({\n              name: loc.formatted,\n              bbox: bbox,\n              center: center\n            });\n          }\n        }\n\n        cb.call(context, results);\n      });\n    };\n\n    _proto.suggest = function suggest(query, cb, context) {\n      return this.geocode(query, cb, context);\n    };\n\n    _proto.reverse = function reverse(location, scale, cb, context) {\n      var params = reverseParams(this.options, {\n        key: this.options.apiKey,\n        q: [location.lat, location.lng].join(',')\n      });\n      getJSON(this.options.serviceUrl, params, function (data) {\n        var results = [];\n\n        if (data.results && data.results.length) {\n          for (var i = 0; i < data.results.length; i++) {\n            var loc = data.results[i];\n            var center = L__namespace.latLng(loc.geometry);\n            var bbox = void 0;\n\n            if (loc.annotations && loc.annotations.bounds) {\n              bbox = L__namespace.latLngBounds(L__namespace.latLng(loc.annotations.bounds.northeast), L__namespace.latLng(loc.annotations.bounds.southwest));\n            } else {\n              bbox = L__namespace.latLngBounds(center, center);\n            }\n\n            results.push({\n              name: loc.formatted,\n              bbox: bbox,\n              center: center\n            });\n          }\n        }\n\n        cb.call(context, results);\n      });\n    };\n\n    return OpenCage;\n  }();\n  function opencage(options) {\n    return new OpenCage(options);\n  }\n\n  /**\r\n   * Implementation of the [Pelias](https://pelias.io/), [geocode.earth](https://geocode.earth/) geocoder (formerly Mapzen Search)\r\n   */\n\n  var Pelias = /*#__PURE__*/function () {\n    function Pelias(options) {\n      this.options = {\n        serviceUrl: 'https://api.geocode.earth/v1'\n      };\n      this._lastSuggest = 0;\n      L__namespace.Util.setOptions(this, options);\n    }\n\n    var _proto = Pelias.prototype;\n\n    _proto.geocode = function geocode(query, cb, context) {\n      var _this = this;\n\n      var params = geocodingParams(this.options, {\n        api_key: this.options.apiKey,\n        text: query\n      });\n      getJSON(this.options.serviceUrl + '/search', params, function (data) {\n        cb.call(context, _this._parseResults(data, 'bbox'));\n      });\n    };\n\n    _proto.suggest = function suggest(query, cb, context) {\n      var _this2 = this;\n\n      var params = geocodingParams(this.options, {\n        api_key: this.options.apiKey,\n        text: query\n      });\n      getJSON(this.options.serviceUrl + '/autocomplete', params, function (data) {\n        if (data.geocoding.timestamp > _this2._lastSuggest) {\n          _this2._lastSuggest = data.geocoding.timestamp;\n          cb.call(context, _this2._parseResults(data, 'bbox'));\n        }\n      });\n    };\n\n    _proto.reverse = function reverse(location, scale, cb, context) {\n      var _this3 = this;\n\n      var params = reverseParams(this.options, {\n        api_key: this.options.apiKey,\n        'point.lat': location.lat,\n        'point.lon': location.lng\n      });\n      getJSON(this.options.serviceUrl + '/reverse', params, function (data) {\n        cb.call(context, _this3._parseResults(data, 'bounds'));\n      });\n    };\n\n    _proto._parseResults = function _parseResults(data, bboxname) {\n      var results = [];\n      L__namespace.geoJSON(data, {\n        pointToLayer: function pointToLayer(feature, latlng) {\n          return L__namespace.circleMarker(latlng);\n        },\n        onEachFeature: function onEachFeature(feature, layer) {\n          var result = {};\n          var bbox;\n          var center;\n\n          if (layer.getBounds) {\n            bbox = layer.getBounds();\n            center = bbox.getCenter();\n          } else if (layer.feature.bbox) {\n            center = layer.getLatLng();\n            bbox = L__namespace.latLngBounds(L__namespace.GeoJSON.coordsToLatLng(layer.feature.bbox.slice(0, 2)), L__namespace.GeoJSON.coordsToLatLng(layer.feature.bbox.slice(2, 4)));\n          } else {\n            center = layer.getLatLng();\n            bbox = L__namespace.latLngBounds(center, center);\n          }\n\n          result.name = layer.feature.properties.label;\n          result.center = center;\n          result[bboxname] = bbox;\n          result.properties = layer.feature.properties;\n          results.push(result);\n        }\n      });\n      return results;\n    };\n\n    return Pelias;\n  }();\n  /**\r\n   * [Class factory method](https://leafletjs.com/reference.html#class-class-factories) for {@link Pelias}\r\n   * @param options the options\r\n   */\n\n  function pelias(options) {\n    return new Pelias(options);\n  }\n  var GeocodeEarth = Pelias;\n  var geocodeEarth = pelias;\n  /**\r\n   * r.i.p.\r\n   * @deprecated\r\n   */\n\n  var Mapzen = Pelias;\n  /**\r\n   * r.i.p.\r\n   * @deprecated\r\n   */\n\n  var mapzen = pelias;\n  /**\r\n   * Implementation of the [Openrouteservice](https://openrouteservice.org/dev/#/api-docs/geocode) geocoder\r\n   */\n\n  var Openrouteservice = /*#__PURE__*/function (_Pelias) {\n    _inheritsLoose(Openrouteservice, _Pelias);\n\n    function Openrouteservice(options) {\n      return _Pelias.call(this, L__namespace.Util.extend({\n        serviceUrl: 'https://api.openrouteservice.org/geocode'\n      }, options)) || this;\n    }\n\n    return Openrouteservice;\n  }(Pelias);\n  /**\r\n   * [Class factory method](https://leafletjs.com/reference.html#class-class-factories) for {@link Openrouteservice}\r\n   * @param options the options\r\n   */\n\n  function openrouteservice(options) {\n    return new Openrouteservice(options);\n  }\n\n  /**\r\n   * Implementation of the [Photon](http://photon.komoot.de/) geocoder\r\n   */\n\n  var Photon = /*#__PURE__*/function () {\n    function Photon(options) {\n      this.options = {\n        serviceUrl: 'https://photon.komoot.io/api/',\n        reverseUrl: 'https://photon.komoot.io/reverse/',\n        nameProperties: ['name', 'street', 'suburb', 'hamlet', 'town', 'city', 'state', 'country']\n      };\n      L__namespace.Util.setOptions(this, options);\n    }\n\n    var _proto = Photon.prototype;\n\n    _proto.geocode = function geocode(query, cb, context) {\n      var params = geocodingParams(this.options, {\n        q: query\n      });\n      getJSON(this.options.serviceUrl, params, L__namespace.Util.bind(function (data) {\n        cb.call(context, this._decodeFeatures(data));\n      }, this));\n    };\n\n    _proto.suggest = function suggest(query, cb, context) {\n      return this.geocode(query, cb, context);\n    };\n\n    _proto.reverse = function reverse(latLng, scale, cb, context) {\n      var params = reverseParams(this.options, {\n        lat: latLng.lat,\n        lon: latLng.lng\n      });\n      getJSON(this.options.reverseUrl, params, L__namespace.Util.bind(function (data) {\n        cb.call(context, this._decodeFeatures(data));\n      }, this));\n    };\n\n    _proto._decodeFeatures = function _decodeFeatures(data) {\n      var results = [];\n\n      if (data && data.features) {\n        for (var i = 0; i < data.features.length; i++) {\n          var f = data.features[i];\n          var c = f.geometry.coordinates;\n          var center = L__namespace.latLng(c[1], c[0]);\n          var extent = f.properties.extent;\n          var bbox = extent ? L__namespace.latLngBounds([extent[1], extent[0]], [extent[3], extent[2]]) : L__namespace.latLngBounds(center, center);\n          results.push({\n            name: this._decodeFeatureName(f),\n            html: this.options.htmlTemplate ? this.options.htmlTemplate(f) : undefined,\n            center: center,\n            bbox: bbox,\n            properties: f.properties\n          });\n        }\n      }\n\n      return results;\n    };\n\n    _proto._decodeFeatureName = function _decodeFeatureName(f) {\n      return (this.options.nameProperties || []).map(function (p) {\n        return f.properties[p];\n      }).filter(function (v) {\n        return !!v;\n      }).join(', ');\n    };\n\n    return Photon;\n  }();\n  /**\r\n   * [Class factory method](https://leafletjs.com/reference.html#class-class-factories) for {@link Photon}\r\n   * @param options the options\r\n   */\n\n  function photon(options) {\n    return new Photon(options);\n  }\n\n  /**\r\n   * Implementation of the What3Words service\r\n   */\n\n  var What3Words = /*#__PURE__*/function () {\n    function What3Words(options) {\n      this.options = {\n        serviceUrl: 'https://api.what3words.com/v2/'\n      };\n      L__namespace.Util.setOptions(this, options);\n    }\n\n    var _proto = What3Words.prototype;\n\n    _proto.geocode = function geocode(query, cb, context) {\n      //get three words and make a dot based string\n      getJSON(this.options.serviceUrl + 'forward', geocodingParams(this.options, {\n        key: this.options.apiKey,\n        addr: query.split(/\\s+/).join('.')\n      }), function (data) {\n        var results = [];\n\n        if (data.geometry) {\n          var latLng = L__namespace.latLng(data.geometry['lat'], data.geometry['lng']);\n          var latLngBounds = L__namespace.latLngBounds(latLng, latLng);\n          results[0] = {\n            name: data.words,\n            bbox: latLngBounds,\n            center: latLng\n          };\n        }\n\n        cb.call(context, results);\n      });\n    };\n\n    _proto.suggest = function suggest(query, cb, context) {\n      return this.geocode(query, cb, context);\n    };\n\n    _proto.reverse = function reverse(location, scale, cb, context) {\n      getJSON(this.options.serviceUrl + 'reverse', reverseParams(this.options, {\n        key: this.options.apiKey,\n        coords: [location.lat, location.lng].join(',')\n      }), function (data) {\n        var results = [];\n\n        if (data.status.status == 200) {\n          var center = L__namespace.latLng(data.geometry['lat'], data.geometry['lng']);\n          var bbox = L__namespace.latLngBounds(center, center);\n          results[0] = {\n            name: data.words,\n            bbox: bbox,\n            center: center\n          };\n        }\n\n        cb.call(context, results);\n      });\n    };\n\n    return What3Words;\n  }();\n  /**\r\n   * [Class factory method](https://leafletjs.com/reference.html#class-class-factories) for {@link What3Words}\r\n   * @param options the options\r\n   */\n\n  function what3words(options) {\n    return new What3Words(options);\n  }\n\n  var geocoders = {\n    __proto__: null,\n    geocodingParams: geocodingParams,\n    reverseParams: reverseParams,\n    ArcGis: ArcGis,\n    arcgis: arcgis,\n    Bing: Bing,\n    bing: bing,\n    Google: Google,\n    google: google,\n    HERE: HERE,\n    HEREv2: HEREv2,\n    here: here,\n    parseLatLng: parseLatLng,\n    LatLng: LatLng,\n    latLng: latLng,\n    Mapbox: Mapbox,\n    mapbox: mapbox,\n    MapQuest: MapQuest,\n    mapQuest: mapQuest,\n    Neutrino: Neutrino,\n    neutrino: neutrino,\n    Nominatim: Nominatim,\n    nominatim: nominatim,\n    OpenLocationCode: OpenLocationCode,\n    openLocationCode: openLocationCode,\n    OpenCage: OpenCage,\n    opencage: opencage,\n    Pelias: Pelias,\n    pelias: pelias,\n    GeocodeEarth: GeocodeEarth,\n    geocodeEarth: geocodeEarth,\n    Mapzen: Mapzen,\n    mapzen: mapzen,\n    Openrouteservice: Openrouteservice,\n    openrouteservice: openrouteservice,\n    Photon: Photon,\n    photon: photon,\n    What3Words: What3Words,\n    what3words: what3words\n  };\n\n  /**\r\n   * Leaflet mixins https://leafletjs.com/reference-1.7.1.html#class-includes\r\n   * for TypeScript https://www.typescriptlang.org/docs/handbook/mixins.html\r\n   * @internal\r\n   */\n\n  var EventedControl = // eslint-disable-next-line @typescript-eslint/no-unused-vars\n  function EventedControl() {// empty\n  };\n\n  L__namespace.Util.extend(EventedControl.prototype, L__namespace.Control.prototype);\n  L__namespace.Util.extend(EventedControl.prototype, L__namespace.Evented.prototype);\n  /**\r\n   * This is the geocoder control. It works like any other [Leaflet control](https://leafletjs.com/reference.html#control), and is added to the map.\r\n   */\n\n  var GeocoderControl = /*#__PURE__*/function (_EventedControl) {\n    _inheritsLoose(GeocoderControl, _EventedControl);\n\n    /**\r\n     * Instantiates a geocoder control (to be invoked using `new`)\r\n     * @param options the options\r\n     */\n    function GeocoderControl(options) {\n      var _this;\n\n      _this = _EventedControl.call(this, options) || this;\n      _this.options = {\n        showUniqueResult: true,\n        showResultIcons: false,\n        collapsed: true,\n        expand: 'touch',\n        position: 'topright',\n        placeholder: 'Search...',\n        errorMessage: 'Nothing found.',\n        iconLabel: 'Initiate a new search',\n        query: '',\n        queryMinLength: 1,\n        suggestMinLength: 3,\n        suggestTimeout: 250,\n        defaultMarkGeocode: true\n      };\n      _this._requestCount = 0;\n      L__namespace.Util.setOptions(_assertThisInitialized(_this), options);\n\n      if (!_this.options.geocoder) {\n        _this.options.geocoder = new Nominatim();\n      }\n\n      return _this;\n    }\n\n    var _proto = GeocoderControl.prototype;\n\n    _proto.addThrobberClass = function addThrobberClass() {\n      L__namespace.DomUtil.addClass(this._container, 'leaflet-control-geocoder-throbber');\n    };\n\n    _proto.removeThrobberClass = function removeThrobberClass() {\n      L__namespace.DomUtil.removeClass(this._container, 'leaflet-control-geocoder-throbber');\n    }\n    /**\r\n     * Returns the container DOM element for the control and add listeners on relevant map events.\r\n     * @param map the map instance\r\n     * @see https://leafletjs.com/reference.html#control-onadd\r\n     */\n    ;\n\n    _proto.onAdd = function onAdd(map) {\n      var _this2 = this;\n\n      var className = 'leaflet-control-geocoder';\n      var container = L__namespace.DomUtil.create('div', className + ' leaflet-bar');\n      var icon = L__namespace.DomUtil.create('button', className + '-icon', container);\n      var form = this._form = L__namespace.DomUtil.create('div', className + '-form', container);\n      this._map = map;\n      this._container = container;\n      icon.innerHTML = '&nbsp;';\n      icon.type = 'button';\n      icon.setAttribute('aria-label', this.options.iconLabel);\n      var input = this._input = L__namespace.DomUtil.create('input', '', form);\n      input.type = 'text';\n      input.value = this.options.query;\n      input.placeholder = this.options.placeholder;\n      L__namespace.DomEvent.disableClickPropagation(input);\n      this._errorElement = L__namespace.DomUtil.create('div', className + '-form-no-error', container);\n      this._errorElement.innerHTML = this.options.errorMessage;\n      this._alts = L__namespace.DomUtil.create('ul', className + '-alternatives leaflet-control-geocoder-alternatives-minimized', container);\n      L__namespace.DomEvent.disableClickPropagation(this._alts);\n      L__namespace.DomEvent.addListener(input, 'keydown', this._keydown, this);\n\n      if (this.options.geocoder.suggest) {\n        L__namespace.DomEvent.addListener(input, 'input', this._change, this);\n      }\n\n      L__namespace.DomEvent.addListener(input, 'blur', function () {\n        if (_this2.options.collapsed && !_this2._preventBlurCollapse) {\n          _this2._collapse();\n        }\n\n        _this2._preventBlurCollapse = false;\n      });\n\n      if (this.options.collapsed) {\n        if (this.options.expand === 'click') {\n          L__namespace.DomEvent.addListener(container, 'click', function (e) {\n            if (e.button === 0 && e.detail !== 2) {\n              _this2._toggle();\n            }\n          });\n        } else if (this.options.expand === 'touch') {\n          L__namespace.DomEvent.addListener(container, L__namespace.Browser.touch ? 'touchstart mousedown' : 'mousedown', function (e) {\n            _this2._toggle();\n\n            e.preventDefault(); // mobile: clicking focuses the icon, so UI expands and immediately collapses\n\n            e.stopPropagation();\n          }, this);\n        } else {\n          L__namespace.DomEvent.addListener(container, 'mouseover', this._expand, this);\n          L__namespace.DomEvent.addListener(container, 'mouseout', this._collapse, this);\n\n          this._map.on('movestart', this._collapse, this);\n        }\n      } else {\n        this._expand();\n\n        if (L__namespace.Browser.touch) {\n          L__namespace.DomEvent.addListener(container, 'touchstart', function () {\n            return _this2._geocode();\n          });\n        } else {\n          L__namespace.DomEvent.addListener(container, 'click', function () {\n            return _this2._geocode();\n          });\n        }\n      }\n\n      if (this.options.defaultMarkGeocode) {\n        this.on('markgeocode', this.markGeocode, this);\n      }\n\n      this.on('startgeocode', this.addThrobberClass, this);\n      this.on('finishgeocode', this.removeThrobberClass, this);\n      this.on('startsuggest', this.addThrobberClass, this);\n      this.on('finishsuggest', this.removeThrobberClass, this);\n      L__namespace.DomEvent.disableClickPropagation(container);\n      return container;\n    }\n    /**\r\n     * Sets the query string on the text input\r\n     * @param string the query string\r\n     */\n    ;\n\n    _proto.setQuery = function setQuery(string) {\n      this._input.value = string;\n      return this;\n    };\n\n    _proto._geocodeResult = function _geocodeResult(results, suggest) {\n      if (!suggest && this.options.showUniqueResult && results.length === 1) {\n        this._geocodeResultSelected(results[0]);\n      } else if (results.length > 0) {\n        this._alts.innerHTML = '';\n        this._results = results;\n        L__namespace.DomUtil.removeClass(this._alts, 'leaflet-control-geocoder-alternatives-minimized');\n        L__namespace.DomUtil.addClass(this._container, 'leaflet-control-geocoder-options-open');\n\n        for (var i = 0; i < results.length; i++) {\n          this._alts.appendChild(this._createAlt(results[i], i));\n        }\n      } else {\n        L__namespace.DomUtil.addClass(this._container, 'leaflet-control-geocoder-options-error');\n        L__namespace.DomUtil.addClass(this._errorElement, 'leaflet-control-geocoder-error');\n      }\n    }\n    /**\r\n     * Marks a geocoding result on the map\r\n     * @param result the geocoding result\r\n     */\n    ;\n\n    _proto.markGeocode = function markGeocode(event) {\n      var result = event.geocode;\n\n      this._map.fitBounds(result.bbox);\n\n      if (this._geocodeMarker) {\n        this._map.removeLayer(this._geocodeMarker);\n      }\n\n      this._geocodeMarker = new L__namespace.Marker(result.center).bindPopup(result.html || result.name).addTo(this._map).openPopup();\n      return this;\n    };\n\n    _proto._geocode = function _geocode(suggest) {\n      var _this3 = this;\n\n      var value = this._input.value;\n\n      if (!suggest && value.length < this.options.queryMinLength) {\n        return;\n      }\n\n      var requestCount = ++this._requestCount;\n\n      var cb = function cb(results) {\n        if (requestCount === _this3._requestCount) {\n          var _event = {\n            input: value,\n            results: results\n          };\n\n          _this3.fire(suggest ? 'finishsuggest' : 'finishgeocode', _event);\n\n          _this3._geocodeResult(results, suggest);\n        }\n      };\n\n      this._lastGeocode = value;\n\n      if (!suggest) {\n        this._clearResults();\n      }\n\n      var event = {\n        input: value\n      };\n      this.fire(suggest ? 'startsuggest' : 'startgeocode', event);\n\n      if (suggest) {\n        this.options.geocoder.suggest(value, cb);\n      } else {\n        this.options.geocoder.geocode(value, cb);\n      }\n    };\n\n    _proto._geocodeResultSelected = function _geocodeResultSelected(geocode) {\n      var event = {\n        geocode: geocode\n      };\n      this.fire('markgeocode', event);\n    };\n\n    _proto._toggle = function _toggle() {\n      if (L__namespace.DomUtil.hasClass(this._container, 'leaflet-control-geocoder-expanded')) {\n        this._collapse();\n      } else {\n        this._expand();\n      }\n    };\n\n    _proto._expand = function _expand() {\n      L__namespace.DomUtil.addClass(this._container, 'leaflet-control-geocoder-expanded');\n\n      this._input.select();\n\n      this.fire('expand');\n    };\n\n    _proto._collapse = function _collapse() {\n      L__namespace.DomUtil.removeClass(this._container, 'leaflet-control-geocoder-expanded');\n      L__namespace.DomUtil.addClass(this._alts, 'leaflet-control-geocoder-alternatives-minimized');\n      L__namespace.DomUtil.removeClass(this._errorElement, 'leaflet-control-geocoder-error');\n      L__namespace.DomUtil.removeClass(this._container, 'leaflet-control-geocoder-options-open');\n      L__namespace.DomUtil.removeClass(this._container, 'leaflet-control-geocoder-options-error');\n\n      this._input.blur(); // mobile: keyboard shouldn't stay expanded\n\n\n      this.fire('collapse');\n    };\n\n    _proto._clearResults = function _clearResults() {\n      L__namespace.DomUtil.addClass(this._alts, 'leaflet-control-geocoder-alternatives-minimized');\n      this._selection = null;\n      L__namespace.DomUtil.removeClass(this._errorElement, 'leaflet-control-geocoder-error');\n      L__namespace.DomUtil.removeClass(this._container, 'leaflet-control-geocoder-options-open');\n      L__namespace.DomUtil.removeClass(this._container, 'leaflet-control-geocoder-options-error');\n    };\n\n    _proto._createAlt = function _createAlt(result, index) {\n      var _this4 = this;\n\n      var li = L__namespace.DomUtil.create('li', ''),\n          a = L__namespace.DomUtil.create('a', '', li),\n          icon = this.options.showResultIcons && result.icon ? L__namespace.DomUtil.create('img', '', a) : null,\n          text = result.html ? undefined : document.createTextNode(result.name),\n          mouseDownHandler = function mouseDownHandler(e) {\n        // In some browsers, a click will fire on the map if the control is\n        // collapsed directly after mousedown. To work around this, we\n        // wait until the click is completed, and _then_ collapse the\n        // control. Messy, but this is the workaround I could come up with\n        // for #142.\n        _this4._preventBlurCollapse = true;\n        L__namespace.DomEvent.stop(e);\n\n        _this4._geocodeResultSelected(result);\n\n        L__namespace.DomEvent.on(li, 'click touchend', function () {\n          if (_this4.options.collapsed) {\n            _this4._collapse();\n          } else {\n            _this4._clearResults();\n          }\n        });\n      };\n\n      if (icon) {\n        icon.src = result.icon;\n      }\n\n      li.setAttribute('data-result-index', String(index));\n\n      if (result.html) {\n        a.innerHTML = a.innerHTML + result.html;\n      } else if (text) {\n        a.appendChild(text);\n      } // Use mousedown and not click, since click will fire _after_ blur,\n      // causing the control to have collapsed and removed the items\n      // before the click can fire.\n\n\n      L__namespace.DomEvent.addListener(li, 'mousedown touchstart', mouseDownHandler, this);\n      return li;\n    };\n\n    _proto._keydown = function _keydown(e) {\n      var _this5 = this;\n\n      var select = function select(dir) {\n        if (_this5._selection) {\n          L__namespace.DomUtil.removeClass(_this5._selection, 'leaflet-control-geocoder-selected');\n          _this5._selection = _this5._selection[dir > 0 ? 'nextSibling' : 'previousSibling'];\n        }\n\n        if (!_this5._selection) {\n          _this5._selection = _this5._alts[dir > 0 ? 'firstChild' : 'lastChild'];\n        }\n\n        if (_this5._selection) {\n          L__namespace.DomUtil.addClass(_this5._selection, 'leaflet-control-geocoder-selected');\n        }\n      };\n\n      switch (e.keyCode) {\n        // Escape\n        case 27:\n          if (this.options.collapsed) {\n            this._collapse();\n          } else {\n            this._clearResults();\n          }\n\n          break;\n        // Up\n\n        case 38:\n          select(-1);\n          break;\n        // Up\n\n        case 40:\n          select(1);\n          break;\n        // Enter\n\n        case 13:\n          if (this._selection) {\n            var index = parseInt(this._selection.getAttribute('data-result-index'), 10);\n\n            this._geocodeResultSelected(this._results[index]);\n\n            this._clearResults();\n          } else {\n            this._geocode();\n          }\n\n          break;\n\n        default:\n          return;\n      }\n\n      L__namespace.DomEvent.preventDefault(e);\n    };\n\n    _proto._change = function _change() {\n      var _this6 = this;\n\n      var v = this._input.value;\n\n      if (v !== this._lastGeocode) {\n        clearTimeout(this._suggestTimeout);\n\n        if (v.length >= this.options.suggestMinLength) {\n          this._suggestTimeout = setTimeout(function () {\n            return _this6._geocode(true);\n          }, this.options.suggestTimeout);\n        } else {\n          this._clearResults();\n        }\n      }\n    };\n\n    return GeocoderControl;\n  }(EventedControl);\n  /**\r\n   * [Class factory method](https://leafletjs.com/reference.html#class-class-factories) for {@link GeocoderControl}\r\n   * @param options the options\r\n   */\n\n  function geocoder(options) {\n    return new GeocoderControl(options);\n  }\n\n  /* @preserve\r\n   * Leaflet Control Geocoder\r\n   * https://github.com/perliedman/leaflet-control-geocoder\r\n   *\r\n   * Copyright (c) 2012 sa3m (https://github.com/sa3m)\r\n   * Copyright (c) 2018 Per Liedman\r\n   * All rights reserved.\r\n   */\n  L__namespace.Util.extend(GeocoderControl, geocoders);\n  L__namespace.Util.extend(L__namespace.Control, {\n    Geocoder: GeocoderControl,\n    geocoder: geocoder\n  });\n\n  exports.Geocoder = GeocoderControl;\n  exports.default = GeocoderControl;\n  exports.geocoder = geocoder;\n  exports.geocoders = geocoders;\n\n  return exports;\n\n}({}, L));\n//# sourceMappingURL=Control.Geocoder.js.map\n","L.Control.Fullscreen = L.Control.extend({\n    options: {\n        position: 'topleft',\n        title: {\n            'false': 'View Fullscreen',\n            'true': 'Exit Fullscreen'\n        }\n    },\n\n    onAdd: function (map) {\n        var container = L.DomUtil.create('div', 'leaflet-control-fullscreen leaflet-bar leaflet-control');\n\n        this.link = L.DomUtil.create('a', 'leaflet-control-fullscreen-button leaflet-bar-part', container);\n        this.link.href = '#';\n\n        this._map = map;\n        this._map.on('fullscreenchange', this._toggleTitle, this);\n        this._toggleTitle();\n\n        L.DomEvent.on(this.link, 'click', this._click, this);\n\n        return container;\n    },\n\n    _click: function (e) {\n        L.DomEvent.stopPropagation(e);\n        L.DomEvent.preventDefault(e);\n        this._map.toggleFullscreen(this.options);\n    },\n\n    _toggleTitle: function() {\n        this.link.title = this.options.title[this._map.isFullscreen()];\n    }\n});\n\nL.Map.include({\n    isFullscreen: function () {\n        return this._isFullscreen || false;\n    },\n\n    toggleFullscreen: function (options) {\n        var container = this.getContainer();\n        if (this.isFullscreen()) {\n            if (options && options.pseudoFullscreen) {\n                this._disablePseudoFullscreen(container);\n            } else if (document.exitFullscreen) {\n                document.exitFullscreen();\n            } else if (document.mozCancelFullScreen) {\n                document.mozCancelFullScreen();\n            } else if (document.webkitCancelFullScreen) {\n                document.webkitCancelFullScreen();\n            } else if (document.msExitFullscreen) {\n                document.msExitFullscreen();\n            } else {\n                this._disablePseudoFullscreen(container);\n            }\n        } else {\n            if (options && options.pseudoFullscreen) {\n                this._enablePseudoFullscreen(container);\n            } else if (container.requestFullscreen) {\n                container.requestFullscreen();\n            } else if (container.mozRequestFullScreen) {\n                container.mozRequestFullScreen();\n            } else if (container.webkitRequestFullscreen) {\n                container.webkitRequestFullscreen(Element.ALLOW_KEYBOARD_INPUT);\n            } else if (container.msRequestFullscreen) {\n                container.msRequestFullscreen();\n            } else {\n                this._enablePseudoFullscreen(container);\n            }\n        }\n\n    },\n\n    _enablePseudoFullscreen: function (container) {\n        L.DomUtil.addClass(container, 'leaflet-pseudo-fullscreen');\n        this._setFullscreen(true);\n        this.fire('fullscreenchange');\n    },\n\n    _disablePseudoFullscreen: function (container) {\n        L.DomUtil.removeClass(container, 'leaflet-pseudo-fullscreen');\n        this._setFullscreen(false);\n        this.fire('fullscreenchange');\n    },\n\n    _setFullscreen: function(fullscreen) {\n        this._isFullscreen = fullscreen;\n        var container = this.getContainer();\n        if (fullscreen) {\n            L.DomUtil.addClass(container, 'leaflet-fullscreen-on');\n        } else {\n            L.DomUtil.removeClass(container, 'leaflet-fullscreen-on');\n        }\n        this.invalidateSize();\n    },\n\n    _onFullscreenChange: function (e) {\n        var fullscreenElement =\n            document.fullscreenElement ||\n            document.mozFullScreenElement ||\n            document.webkitFullscreenElement ||\n            document.msFullscreenElement;\n\n        if (fullscreenElement === this.getContainer() && !this._isFullscreen) {\n            this._setFullscreen(true);\n            this.fire('fullscreenchange');\n        } else if (fullscreenElement !== this.getContainer() && this._isFullscreen) {\n            this._setFullscreen(false);\n            this.fire('fullscreenchange');\n        }\n    }\n});\n\nL.Map.mergeOptions({\n    fullscreenControl: false\n});\n\nL.Map.addInitHook(function () {\n    if (this.options.fullscreenControl) {\n        this.fullscreenControl = new L.Control.Fullscreen(this.options.fullscreenControl);\n        this.addControl(this.fullscreenControl);\n    }\n\n    var fullscreenchange;\n\n    if ('onfullscreenchange' in document) {\n        fullscreenchange = 'fullscreenchange';\n    } else if ('onmozfullscreenchange' in document) {\n        fullscreenchange = 'mozfullscreenchange';\n    } else if ('onwebkitfullscreenchange' in document) {\n        fullscreenchange = 'webkitfullscreenchange';\n    } else if ('onmsfullscreenchange' in document) {\n        fullscreenchange = 'MSFullscreenChange';\n    }\n\n    if (fullscreenchange) {\n        var onFullscreenChange = L.bind(this._onFullscreenChange, this);\n\n        this.whenReady(function () {\n            L.DomEvent.on(document, fullscreenchange, onFullscreenChange);\n        });\n\n        this.on('unload', function () {\n            L.DomEvent.off(document, fullscreenchange, onFullscreenChange);\n        });\n    }\n});\n\nL.control.fullscreen = function (options) {\n    return new L.Control.Fullscreen(options);\n};\n","(function (factory, window) {\n    // define an AMD module that relies on 'leaflet'\n    if (typeof define === 'function' && define.amd) {\n        define(['leaflet','spin.js'], function (L, Spinner) {\n            factory(L, Spinner);\n        });\n\n    // define a Common JS module that relies on 'leaflet'\n    } else if (typeof exports === 'object') {\n        module.exports = function (L, Spinner) {\n            if (L === undefined) {\n                L = require('leaflet');\n            }\n            if (Spinner === undefined) {\n                Spinner = require('spin.js');\n            }\n            factory(L, Spinner);\n            return L;\n        };\n    // attach your plugin to the global 'L' variable\n    } else if (typeof window !== 'undefined' && window.L && window.Spinner) {\n        factory(window.L, window.Spinner);\n    }\n}(function leafletSpinFactory(L, Spinner) {\n    var SpinMapMixin = {\n        spin: function (state, options) {\n            if (!!state) {\n                // start spinning !\n                if (!this._spinner) {\n                    this._spinner = new Spinner(options)\n                        .spin(this._container);\n                    this._spinning = 0;\n                }\n                this._spinning++;\n            }\n            else {\n                this._spinning--;\n                if (this._spinning <= 0) {\n                    // end spinning !\n                    if (this._spinner) {\n                        this._spinner.stop();\n                        this._spinner = null;\n                    }\n                }\n            }\n        }\n    };\n\n    var SpinMapInitHook = function () {\n        this.on('layeradd', function (e) {\n            // If added layer is currently loading, spin !\n            if (e.layer.loading) this.spin(true);\n            if (typeof e.layer.on !== 'function') return;\n            e.layer.on('data:loading', function () {\n                this.spin(true);\n            }, this);\n            e.layer.on('data:loaded',  function () {\n                this.spin(false);\n            }, this);\n        }, this);\n        this.on('layerremove', function (e) {\n            // Clean-up\n            if (e.layer.loading) this.spin(false);\n            if (typeof e.layer.on !== 'function') return;\n            e.layer.off('data:loaded');\n            e.layer.off('data:loading');\n        }, this);\n    };\n\n    L.Map.include(SpinMapMixin);\n    L.Map.addInitHook(SpinMapInitHook);\n}, window));\n","/**\n * Copyright (c) 2011-2014 Felix Gnass\n * Licensed under the MIT license\n * http://spin.js.org/\n *\n * Example:\n    var opts = {\n      lines: 12             // The number of lines to draw\n    , length: 7             // The length of each line\n    , width: 5              // The line thickness\n    , radius: 10            // The radius of the inner circle\n    , scale: 1.0            // Scales overall size of the spinner\n    , corners: 1            // Roundness (0..1)\n    , color: '#000'         // #rgb or #rrggbb\n    , opacity: 1/4          // Opacity of the lines\n    , rotate: 0             // Rotation offset\n    , direction: 1          // 1: clockwise, -1: counterclockwise\n    , speed: 1              // Rounds per second\n    , trail: 100            // Afterglow percentage\n    , fps: 20               // Frames per second when using setTimeout()\n    , zIndex: 2e9           // Use a high z-index by default\n    , className: 'spinner'  // CSS class to assign to the element\n    , top: '50%'            // center vertically\n    , left: '50%'           // center horizontally\n    , shadow: false         // Whether to render a shadow\n    , hwaccel: false        // Whether to use hardware acceleration (might be buggy)\n    , position: 'absolute'  // Element positioning\n    }\n    var target = document.getElementById('foo')\n    var spinner = new Spinner(opts).spin(target)\n */\n;(function (root, factory) {\n\n  /* CommonJS */\n  if (typeof module == 'object' && module.exports) module.exports = factory()\n\n  /* AMD module */\n  else if (typeof define == 'function' && define.amd) define(factory)\n\n  /* Browser global */\n  else root.Spinner = factory()\n}(this, function () {\n  \"use strict\"\n\n  var prefixes = ['webkit', 'Moz', 'ms', 'O'] /* Vendor prefixes */\n    , animations = {} /* Animation rules keyed by their name */\n    , useCssAnimations /* Whether to use CSS animations or setTimeout */\n    , sheet /* A stylesheet to hold the @keyframe or VML rules. */\n\n  /**\n   * Utility function to create elements. If no tag name is given,\n   * a DIV is created. Optionally properties can be passed.\n   */\n  function createEl (tag, prop) {\n    var el = document.createElement(tag || 'div')\n      , n\n\n    for (n in prop) el[n] = prop[n]\n    return el\n  }\n\n  /**\n   * Appends children and returns the parent.\n   */\n  function ins (parent /* child1, child2, ...*/) {\n    for (var i = 1, n = arguments.length; i < n; i++) {\n      parent.appendChild(arguments[i])\n    }\n\n    return parent\n  }\n\n  /**\n   * Creates an opacity keyframe animation rule and returns its name.\n   * Since most mobile Webkits have timing issues with animation-delay,\n   * we create separate rules for each line/segment.\n   */\n  function addAnimation (alpha, trail, i, lines) {\n    var name = ['opacity', trail, ~~(alpha * 100), i, lines].join('-')\n      , start = 0.01 + i/lines * 100\n      , z = Math.max(1 - (1-alpha) / trail * (100-start), alpha)\n      , prefix = useCssAnimations.substring(0, useCssAnimations.indexOf('Animation')).toLowerCase()\n      , pre = prefix && '-' + prefix + '-' || ''\n\n    if (!animations[name]) {\n      sheet.insertRule(\n        '@' + pre + 'keyframes ' + name + '{' +\n        '0%{opacity:' + z + '}' +\n        start + '%{opacity:' + alpha + '}' +\n        (start+0.01) + '%{opacity:1}' +\n        (start+trail) % 100 + '%{opacity:' + alpha + '}' +\n        '100%{opacity:' + z + '}' +\n        '}', sheet.cssRules.length)\n\n      animations[name] = 1\n    }\n\n    return name\n  }\n\n  /**\n   * Tries various vendor prefixes and returns the first supported property.\n   */\n  function vendor (el, prop) {\n    var s = el.style\n      , pp\n      , i\n\n    prop = prop.charAt(0).toUpperCase() + prop.slice(1)\n    if (s[prop] !== undefined) return prop\n    for (i = 0; i < prefixes.length; i++) {\n      pp = prefixes[i]+prop\n      if (s[pp] !== undefined) return pp\n    }\n  }\n\n  /**\n   * Sets multiple style properties at once.\n   */\n  function css (el, prop) {\n    for (var n in prop) {\n      el.style[vendor(el, n) || n] = prop[n]\n    }\n\n    return el\n  }\n\n  /**\n   * Fills in default values.\n   */\n  function merge (obj) {\n    for (var i = 1; i < arguments.length; i++) {\n      var def = arguments[i]\n      for (var n in def) {\n        if (obj[n] === undefined) obj[n] = def[n]\n      }\n    }\n    return obj\n  }\n\n  /**\n   * Returns the line color from the given string or array.\n   */\n  function getColor (color, idx) {\n    return typeof color == 'string' ? color : color[idx % color.length]\n  }\n\n  // Built-in defaults\n\n  var defaults = {\n    lines: 12             // The number of lines to draw\n  , length: 7             // The length of each line\n  , width: 5              // The line thickness\n  , radius: 10            // The radius of the inner circle\n  , scale: 1.0            // Scales overall size of the spinner\n  , corners: 1            // Roundness (0..1)\n  , color: '#000'         // #rgb or #rrggbb\n  , opacity: 1/4          // Opacity of the lines\n  , rotate: 0             // Rotation offset\n  , direction: 1          // 1: clockwise, -1: counterclockwise\n  , speed: 1              // Rounds per second\n  , trail: 100            // Afterglow percentage\n  , fps: 20               // Frames per second when using setTimeout()\n  , zIndex: 2e9           // Use a high z-index by default\n  , className: 'spinner'  // CSS class to assign to the element\n  , top: '50%'            // center vertically\n  , left: '50%'           // center horizontally\n  , shadow: false         // Whether to render a shadow\n  , hwaccel: false        // Whether to use hardware acceleration (might be buggy)\n  , position: 'absolute'  // Element positioning\n  }\n\n  /** The constructor */\n  function Spinner (o) {\n    this.opts = merge(o || {}, Spinner.defaults, defaults)\n  }\n\n  // Global defaults that override the built-ins:\n  Spinner.defaults = {}\n\n  merge(Spinner.prototype, {\n    /**\n     * Adds the spinner to the given target element. If this instance is already\n     * spinning, it is automatically removed from its previous target b calling\n     * stop() internally.\n     */\n    spin: function (target) {\n      this.stop()\n\n      var self = this\n        , o = self.opts\n        , el = self.el = createEl(null, {className: o.className})\n\n      css(el, {\n        position: o.position\n      , width: 0\n      , zIndex: o.zIndex\n      , left: o.left\n      , top: o.top\n      })\n\n      if (target) {\n        target.insertBefore(el, target.firstChild || null)\n      }\n\n      el.setAttribute('role', 'progressbar')\n      self.lines(el, self.opts)\n\n      if (!useCssAnimations) {\n        // No CSS animation support, use setTimeout() instead\n        var i = 0\n          , start = (o.lines - 1) * (1 - o.direction) / 2\n          , alpha\n          , fps = o.fps\n          , f = fps / o.speed\n          , ostep = (1 - o.opacity) / (f * o.trail / 100)\n          , astep = f / o.lines\n\n        ;(function anim () {\n          i++\n          for (var j = 0; j < o.lines; j++) {\n            alpha = Math.max(1 - (i + (o.lines - j) * astep) % f * ostep, o.opacity)\n\n            self.opacity(el, j * o.direction + start, alpha, o)\n          }\n          self.timeout = self.el && setTimeout(anim, ~~(1000 / fps))\n        })()\n      }\n      return self\n    }\n\n    /**\n     * Stops and removes the Spinner.\n     */\n  , stop: function () {\n      var el = this.el\n      if (el) {\n        clearTimeout(this.timeout)\n        if (el.parentNode) el.parentNode.removeChild(el)\n        this.el = undefined\n      }\n      return this\n    }\n\n    /**\n     * Internal method that draws the individual lines. Will be overwritten\n     * in VML fallback mode below.\n     */\n  , lines: function (el, o) {\n      var i = 0\n        , start = (o.lines - 1) * (1 - o.direction) / 2\n        , seg\n\n      function fill (color, shadow) {\n        return css(createEl(), {\n          position: 'absolute'\n        , width: o.scale * (o.length + o.width) + 'px'\n        , height: o.scale * o.width + 'px'\n        , background: color\n        , boxShadow: shadow\n        , transformOrigin: 'left'\n        , transform: 'rotate(' + ~~(360/o.lines*i + o.rotate) + 'deg) translate(' + o.scale*o.radius + 'px' + ',0)'\n        , borderRadius: (o.corners * o.scale * o.width >> 1) + 'px'\n        })\n      }\n\n      for (; i < o.lines; i++) {\n        seg = css(createEl(), {\n          position: 'absolute'\n        , top: 1 + ~(o.scale * o.width / 2) + 'px'\n        , transform: o.hwaccel ? 'translate3d(0,0,0)' : ''\n        , opacity: o.opacity\n        , animation: useCssAnimations && addAnimation(o.opacity, o.trail, start + i * o.direction, o.lines) + ' ' + 1 / o.speed + 's linear infinite'\n        })\n\n        if (o.shadow) ins(seg, css(fill('#000', '0 0 4px #000'), {top: '2px'}))\n        ins(el, ins(seg, fill(getColor(o.color, i), '0 0 1px rgba(0,0,0,.1)')))\n      }\n      return el\n    }\n\n    /**\n     * Internal method that adjusts the opacity of a single line.\n     * Will be overwritten in VML fallback mode below.\n     */\n  , opacity: function (el, i, val) {\n      if (i < el.childNodes.length) el.childNodes[i].style.opacity = val\n    }\n\n  })\n\n\n  function initVML () {\n\n    /* Utility function to create a VML tag */\n    function vml (tag, attr) {\n      return createEl('<' + tag + ' xmlns=\"urn:schemas-microsoft.com:vml\" class=\"spin-vml\">', attr)\n    }\n\n    // No CSS transforms but VML support, add a CSS rule for VML elements:\n    sheet.addRule('.spin-vml', 'behavior:url(#default#VML)')\n\n    Spinner.prototype.lines = function (el, o) {\n      var r = o.scale * (o.length + o.width)\n        , s = o.scale * 2 * r\n\n      function grp () {\n        return css(\n          vml('group', {\n            coordsize: s + ' ' + s\n          , coordorigin: -r + ' ' + -r\n          })\n        , { width: s, height: s }\n        )\n      }\n\n      var margin = -(o.width + o.length) * o.scale * 2 + 'px'\n        , g = css(grp(), {position: 'absolute', top: margin, left: margin})\n        , i\n\n      function seg (i, dx, filter) {\n        ins(\n          g\n        , ins(\n            css(grp(), {rotation: 360 / o.lines * i + 'deg', left: ~~dx})\n          , ins(\n              css(\n                vml('roundrect', {arcsize: o.corners})\n              , { width: r\n                , height: o.scale * o.width\n                , left: o.scale * o.radius\n                , top: -o.scale * o.width >> 1\n                , filter: filter\n                }\n              )\n            , vml('fill', {color: getColor(o.color, i), opacity: o.opacity})\n            , vml('stroke', {opacity: 0}) // transparent stroke to fix color bleeding upon opacity change\n            )\n          )\n        )\n      }\n\n      if (o.shadow)\n        for (i = 1; i <= o.lines; i++) {\n          seg(i, -2, 'progid:DXImageTransform.Microsoft.Blur(pixelradius=2,makeshadow=1,shadowopacity=.3)')\n        }\n\n      for (i = 1; i <= o.lines; i++) seg(i)\n      return ins(el, g)\n    }\n\n    Spinner.prototype.opacity = function (el, i, val, o) {\n      var c = el.firstChild\n      o = o.shadow && o.lines || 0\n      if (c && i + o < c.childNodes.length) {\n        c = c.childNodes[i + o]; c = c && c.firstChild; c = c && c.firstChild\n        if (c) c.opacity = val\n      }\n    }\n  }\n\n  if (typeof document !== 'undefined') {\n    sheet = (function () {\n      var el = createEl('style', {type : 'text/css'})\n      ins(document.getElementsByTagName('head')[0], el)\n      return el.sheet || el.styleSheet\n    }())\n\n    var probe = css(createEl('group'), {behavior: 'url(#default#VML)'})\n\n    if (!vendor(probe, 'transform') && probe.adj) initVML()\n    else useCssAnimations = vendor(probe, 'animation')\n  }\n\n  return Spinner\n\n}));\n","/*\n  Leaflet.AwesomeMarkers, a plugin that adds colorful iconic markers for Leaflet, based on the Font Awesome icons\n  (c) 2012-2013, Lennard Voogdt\n\n  http://leafletjs.com\n  https://github.com/lvoogdt\n*/\n\n/*global L*/\n\n(function (window, document, undefined) {\n    \"use strict\";\n    /*\n     * Leaflet.AwesomeMarkers assumes that you have already included the Leaflet library.\n     */\n\n    L.AwesomeMarkers = {};\n\n    L.AwesomeMarkers.version = '2.0.1';\n\n    L.AwesomeMarkers.Icon = L.Icon.extend({\n        options: {\n            iconSize: [35, 45],\n            iconAnchor:   [17, 42],\n            popupAnchor: [1, -32],\n            shadowAnchor: [10, 12],\n            shadowSize: [36, 16],\n            className: 'awesome-marker',\n            prefix: 'glyphicon',\n            spinClass: 'fa-spin',\n            extraClasses: '',\n            icon: 'home',\n            markerColor: 'blue',\n            iconColor: 'white'\n        },\n\n        initialize: function (options) {\n            options = L.Util.setOptions(this, options);\n        },\n\n        createIcon: function () {\n            var div = document.createElement('div'),\n                options = this.options;\n\n            if (options.icon) {\n                div.innerHTML = this._createInner();\n            }\n\n            if (options.bgPos) {\n                div.style.backgroundPosition =\n                    (-options.bgPos.x) + 'px ' + (-options.bgPos.y) + 'px';\n            }\n\n            this._setIconStyles(div, 'icon-' + options.markerColor);\n            return div;\n        },\n\n        _createInner: function() {\n            var iconClass, iconSpinClass = \"\", iconColorClass = \"\", iconColorStyle = \"\", options = this.options;\n\n            if(options.icon.slice(0,options.prefix.length+1) === options.prefix + \"-\") {\n                iconClass = options.icon;\n            } else {\n                iconClass = options.prefix + \"-\" + options.icon;\n            }\n\n            if(options.spin && typeof options.spinClass === \"string\") {\n                iconSpinClass = options.spinClass;\n            }\n\n            if(options.iconColor) {\n                if(options.iconColor === 'white' || options.iconColor === 'black') {\n                    iconColorClass = \"icon-\" + options.iconColor;\n                } else {\n                    iconColorStyle = \"style='color: \" + options.iconColor + \"' \";\n                }\n            }\n\n            return \"<i \" + iconColorStyle + \"class='\" + options.extraClasses + \" \" + options.prefix + \" \" + iconClass + \" \" + iconSpinClass + \" \" + iconColorClass + \"'></i>\";\n        },\n\n        _setIconStyles: function (img, name) {\n            var options = this.options,\n                size = L.point(options[name === 'shadow' ? 'shadowSize' : 'iconSize']),\n                anchor;\n\n            if (name === 'shadow') {\n                anchor = L.point(options.shadowAnchor || options.iconAnchor);\n            } else {\n                anchor = L.point(options.iconAnchor);\n            }\n\n            if (!anchor && size) {\n                anchor = size.divideBy(2, true);\n            }\n\n            img.className = 'awesome-marker-' + name + ' ' + options.className;\n\n            if (anchor) {\n                img.style.marginLeft = (-anchor.x) + 'px';\n                img.style.marginTop  = (-anchor.y) + 'px';\n            }\n\n            if (size) {\n                img.style.width  = size.x + 'px';\n                img.style.height = size.y + 'px';\n            }\n        },\n\n        createShadow: function () {\n            var div = document.createElement('div');\n\n            this._setIconStyles(div, 'shadow');\n            return div;\n      }\n    });\n        \n    L.AwesomeMarkers.icon = function (options) {\n        return new L.AwesomeMarkers.Icon(options);\n    };\n\n}(this, document));\n\n\n\n","/*\n * Leaflet.markercluster 1.5.3+master.e5124b2,\n * Provides Beautiful Animated Marker Clustering functionality for Leaflet, a JS library for interactive maps.\n * https://github.com/Leaflet/Leaflet.markercluster\n * (c) 2012-2017, Dave Leaver, smartrak\n */\n(function (global, factory) {\n\ttypeof exports === 'object' && typeof module !== 'undefined' ? factory(exports) :\n\ttypeof define === 'function' && define.amd ? define(['exports'], factory) :\n\t(global = global || self, factory((global.Leaflet = global.Leaflet || {}, global.Leaflet.markercluster = {})));\n}(this, function (exports) { 'use strict';\n\n\t/*\n\t * L.MarkerClusterGroup extends L.FeatureGroup by clustering the markers contained within\n\t */\n\n\tvar MarkerClusterGroup = L.MarkerClusterGroup = L.FeatureGroup.extend({\n\n\t\toptions: {\n\t\t\tmaxClusterRadius: 80, //A cluster will cover at most this many pixels from its center\n\t\t\ticonCreateFunction: null,\n\t\t\tclusterPane: L.Marker.prototype.options.pane,\n\n\t\t\tspiderfyOnEveryZoom: false,\n\t\t\tspiderfyOnMaxZoom: true,\n\t\t\tshowCoverageOnHover: true,\n\t\t\tzoomToBoundsOnClick: true,\n\t\t\tsingleMarkerMode: false,\n\n\t\t\tdisableClusteringAtZoom: null,\n\n\t\t\t// Setting this to false prevents the removal of any clusters outside of the viewpoint, which\n\t\t\t// is the default behaviour for performance reasons.\n\t\t\tremoveOutsideVisibleBounds: true,\n\n\t\t\t// Set to false to disable all animations (zoom and spiderfy).\n\t\t\t// If false, option animateAddingMarkers below has no effect.\n\t\t\t// If L.DomUtil.TRANSITION is falsy, this option has no effect.\n\t\t\tanimate: true,\n\n\t\t\t//Whether to animate adding markers after adding the MarkerClusterGroup to the map\n\t\t\t// If you are adding individual markers set to true, if adding bulk markers leave false for massive performance gains.\n\t\t\tanimateAddingMarkers: false,\n\n\t\t\t// Make it possible to provide custom function to calculate spiderfy shape positions\n\t\t\tspiderfyShapePositions: null,\n\n\t\t\t//Increase to increase the distance away that spiderfied markers appear from the center\n\t\t\tspiderfyDistanceMultiplier: 1,\n\n\t\t\t// Make it possible to specify a polyline options on a spider leg\n\t\t\tspiderLegPolylineOptions: { weight: 1.5, color: '#222', opacity: 0.5 },\n\n\t\t\t// When bulk adding layers, adds markers in chunks. Means addLayers may not add all the layers in the call, others will be loaded during setTimeouts\n\t\t\tchunkedLoading: false,\n\t\t\tchunkInterval: 200, // process markers for a maximum of ~ n milliseconds (then trigger the chunkProgress callback)\n\t\t\tchunkDelay: 50, // at the end of each interval, give n milliseconds back to system/browser\n\t\t\tchunkProgress: null, // progress callback: function(processed, total, elapsed) (e.g. for a progress indicator)\n\n\t\t\t//Options to pass to the L.Polygon constructor\n\t\t\tpolygonOptions: {}\n\t\t},\n\n\t\tinitialize: function (options) {\n\t\t\tL.Util.setOptions(this, options);\n\t\t\tif (!this.options.iconCreateFunction) {\n\t\t\t\tthis.options.iconCreateFunction = this._defaultIconCreateFunction;\n\t\t\t}\n\n\t\t\tthis._featureGroup = L.featureGroup();\n\t\t\tthis._featureGroup.addEventParent(this);\n\n\t\t\tthis._nonPointGroup = L.featureGroup();\n\t\t\tthis._nonPointGroup.addEventParent(this);\n\n\t\t\tthis._inZoomAnimation = 0;\n\t\t\tthis._needsClustering = [];\n\t\t\tthis._needsRemoving = []; //Markers removed while we aren't on the map need to be kept track of\n\t\t\t//The bounds of the currently shown area (from _getExpandedVisibleBounds) Updated on zoom/move\n\t\t\tthis._currentShownBounds = null;\n\n\t\t\tthis._queue = [];\n\n\t\t\tthis._childMarkerEventHandlers = {\n\t\t\t\t'dragstart': this._childMarkerDragStart,\n\t\t\t\t'move': this._childMarkerMoved,\n\t\t\t\t'dragend': this._childMarkerDragEnd,\n\t\t\t};\n\n\t\t\t// Hook the appropriate animation methods.\n\t\t\tvar animate = L.DomUtil.TRANSITION && this.options.animate;\n\t\t\tL.extend(this, animate ? this._withAnimation : this._noAnimation);\n\t\t\t// Remember which MarkerCluster class to instantiate (animated or not).\n\t\t\tthis._markerCluster = animate ? L.MarkerCluster : L.MarkerClusterNonAnimated;\n\t\t},\n\n\t\taddLayer: function (layer) {\n\n\t\t\tif (layer instanceof L.LayerGroup) {\n\t\t\t\treturn this.addLayers([layer]);\n\t\t\t}\n\n\t\t\t//Don't cluster non point data\n\t\t\tif (!layer.getLatLng) {\n\t\t\t\tthis._nonPointGroup.addLayer(layer);\n\t\t\t\tthis.fire('layeradd', { layer: layer });\n\t\t\t\treturn this;\n\t\t\t}\n\n\t\t\tif (!this._map) {\n\t\t\t\tthis._needsClustering.push(layer);\n\t\t\t\tthis.fire('layeradd', { layer: layer });\n\t\t\t\treturn this;\n\t\t\t}\n\n\t\t\tif (this.hasLayer(layer)) {\n\t\t\t\treturn this;\n\t\t\t}\n\n\n\t\t\t//If we have already clustered we'll need to add this one to a cluster\n\n\t\t\tif (this._unspiderfy) {\n\t\t\t\tthis._unspiderfy();\n\t\t\t}\n\n\t\t\tthis._addLayer(layer, this._maxZoom);\n\t\t\tthis.fire('layeradd', { layer: layer });\n\n\t\t\t// Refresh bounds and weighted positions.\n\t\t\tthis._topClusterLevel._recalculateBounds();\n\n\t\t\tthis._refreshClustersIcons();\n\n\t\t\t//Work out what is visible\n\t\t\tvar visibleLayer = layer,\n\t\t\t    currentZoom = this._zoom;\n\t\t\tif (layer.__parent) {\n\t\t\t\twhile (visibleLayer.__parent._zoom >= currentZoom) {\n\t\t\t\t\tvisibleLayer = visibleLayer.__parent;\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tif (this._currentShownBounds.contains(visibleLayer.getLatLng())) {\n\t\t\t\tif (this.options.animateAddingMarkers) {\n\t\t\t\t\tthis._animationAddLayer(layer, visibleLayer);\n\t\t\t\t} else {\n\t\t\t\t\tthis._animationAddLayerNonAnimated(layer, visibleLayer);\n\t\t\t\t}\n\t\t\t}\n\t\t\treturn this;\n\t\t},\n\n\t\tremoveLayer: function (layer) {\n\n\t\t\tif (layer instanceof L.LayerGroup) {\n\t\t\t\treturn this.removeLayers([layer]);\n\t\t\t}\n\n\t\t\t//Non point layers\n\t\t\tif (!layer.getLatLng) {\n\t\t\t\tthis._nonPointGroup.removeLayer(layer);\n\t\t\t\tthis.fire('layerremove', { layer: layer });\n\t\t\t\treturn this;\n\t\t\t}\n\n\t\t\tif (!this._map) {\n\t\t\t\tif (!this._arraySplice(this._needsClustering, layer) && this.hasLayer(layer)) {\n\t\t\t\t\tthis._needsRemoving.push({ layer: layer, latlng: layer._latlng });\n\t\t\t\t}\n\t\t\t\tthis.fire('layerremove', { layer: layer });\n\t\t\t\treturn this;\n\t\t\t}\n\n\t\t\tif (!layer.__parent) {\n\t\t\t\treturn this;\n\t\t\t}\n\n\t\t\tif (this._unspiderfy) {\n\t\t\t\tthis._unspiderfy();\n\t\t\t\tthis._unspiderfyLayer(layer);\n\t\t\t}\n\n\t\t\t//Remove the marker from clusters\n\t\t\tthis._removeLayer(layer, true);\n\t\t\tthis.fire('layerremove', { layer: layer });\n\n\t\t\t// Refresh bounds and weighted positions.\n\t\t\tthis._topClusterLevel._recalculateBounds();\n\n\t\t\tthis._refreshClustersIcons();\n\n\t\t\tlayer.off(this._childMarkerEventHandlers, this);\n\n\t\t\tif (this._featureGroup.hasLayer(layer)) {\n\t\t\t\tthis._featureGroup.removeLayer(layer);\n\t\t\t\tif (layer.clusterShow) {\n\t\t\t\t\tlayer.clusterShow();\n\t\t\t\t}\n\t\t\t}\n\n\t\t\treturn this;\n\t\t},\n\n\t\t//Takes an array of markers and adds them in bulk\n\t\taddLayers: function (layersArray, skipLayerAddEvent) {\n\t\t\tif (!L.Util.isArray(layersArray)) {\n\t\t\t\treturn this.addLayer(layersArray);\n\t\t\t}\n\n\t\t\tvar fg = this._featureGroup,\n\t\t\t    npg = this._nonPointGroup,\n\t\t\t    chunked = this.options.chunkedLoading,\n\t\t\t    chunkInterval = this.options.chunkInterval,\n\t\t\t    chunkProgress = this.options.chunkProgress,\n\t\t\t    l = layersArray.length,\n\t\t\t    offset = 0,\n\t\t\t    originalArray = true,\n\t\t\t    m;\n\n\t\t\tif (this._map) {\n\t\t\t\tvar started = (new Date()).getTime();\n\t\t\t\tvar process = L.bind(function () {\n\t\t\t\t\tvar start = (new Date()).getTime();\n\n\t\t\t\t\t// Make sure to unspiderfy before starting to add some layers\n\t\t\t\t\tif (this._map && this._unspiderfy) {\n\t\t\t\t\t\tthis._unspiderfy();\n\t\t\t\t\t}\n\n\t\t\t\t\tfor (; offset < l; offset++) {\n\t\t\t\t\t\tif (chunked && offset % 200 === 0) {\n\t\t\t\t\t\t\t// every couple hundred markers, instrument the time elapsed since processing started:\n\t\t\t\t\t\t\tvar elapsed = (new Date()).getTime() - start;\n\t\t\t\t\t\t\tif (elapsed > chunkInterval) {\n\t\t\t\t\t\t\t\tbreak; // been working too hard, time to take a break :-)\n\t\t\t\t\t\t\t}\n\t\t\t\t\t\t}\n\n\t\t\t\t\t\tm = layersArray[offset];\n\n\t\t\t\t\t\t// Group of layers, append children to layersArray and skip.\n\t\t\t\t\t\t// Side effects:\n\t\t\t\t\t\t// - Total increases, so chunkProgress ratio jumps backward.\n\t\t\t\t\t\t// - Groups are not included in this group, only their non-group child layers (hasLayer).\n\t\t\t\t\t\t// Changing array length while looping does not affect performance in current browsers:\n\t\t\t\t\t\t// http://jsperf.com/for-loop-changing-length/6\n\t\t\t\t\t\tif (m instanceof L.LayerGroup) {\n\t\t\t\t\t\t\tif (originalArray) {\n\t\t\t\t\t\t\t\tlayersArray = layersArray.slice();\n\t\t\t\t\t\t\t\toriginalArray = false;\n\t\t\t\t\t\t\t}\n\t\t\t\t\t\t\tthis._extractNonGroupLayers(m, layersArray);\n\t\t\t\t\t\t\tl = layersArray.length;\n\t\t\t\t\t\t\tcontinue;\n\t\t\t\t\t\t}\n\n\t\t\t\t\t\t//Not point data, can't be clustered\n\t\t\t\t\t\tif (!m.getLatLng) {\n\t\t\t\t\t\t\tnpg.addLayer(m);\n\t\t\t\t\t\t\tif (!skipLayerAddEvent) {\n\t\t\t\t\t\t\t\tthis.fire('layeradd', { layer: m });\n\t\t\t\t\t\t\t}\n\t\t\t\t\t\t\tcontinue;\n\t\t\t\t\t\t}\n\n\t\t\t\t\t\tif (this.hasLayer(m)) {\n\t\t\t\t\t\t\tcontinue;\n\t\t\t\t\t\t}\n\n\t\t\t\t\t\tthis._addLayer(m, this._maxZoom);\n\t\t\t\t\t\tif (!skipLayerAddEvent) {\n\t\t\t\t\t\t\tthis.fire('layeradd', { layer: m });\n\t\t\t\t\t\t}\n\n\t\t\t\t\t\t//If we just made a cluster of size 2 then we need to remove the other marker from the map (if it is) or we never will\n\t\t\t\t\t\tif (m.__parent) {\n\t\t\t\t\t\t\tif (m.__parent.getChildCount() === 2) {\n\t\t\t\t\t\t\t\tvar markers = m.__parent.getAllChildMarkers(),\n\t\t\t\t\t\t\t\t    otherMarker = markers[0] === m ? markers[1] : markers[0];\n\t\t\t\t\t\t\t\tfg.removeLayer(otherMarker);\n\t\t\t\t\t\t\t}\n\t\t\t\t\t\t}\n\t\t\t\t\t}\n\n\t\t\t\t\tif (chunkProgress) {\n\t\t\t\t\t\t// report progress and time elapsed:\n\t\t\t\t\t\tchunkProgress(offset, l, (new Date()).getTime() - started);\n\t\t\t\t\t}\n\n\t\t\t\t\t// Completed processing all markers.\n\t\t\t\t\tif (offset === l) {\n\n\t\t\t\t\t\t// Refresh bounds and weighted positions.\n\t\t\t\t\t\tthis._topClusterLevel._recalculateBounds();\n\n\t\t\t\t\t\tthis._refreshClustersIcons();\n\n\t\t\t\t\t\tthis._topClusterLevel._recursivelyAddChildrenToMap(null, this._zoom, this._currentShownBounds);\n\t\t\t\t\t} else {\n\t\t\t\t\t\tsetTimeout(process, this.options.chunkDelay);\n\t\t\t\t\t}\n\t\t\t\t}, this);\n\n\t\t\t\tprocess();\n\t\t\t} else {\n\t\t\t\tvar needsClustering = this._needsClustering;\n\n\t\t\t\tfor (; offset < l; offset++) {\n\t\t\t\t\tm = layersArray[offset];\n\n\t\t\t\t\t// Group of layers, append children to layersArray and skip.\n\t\t\t\t\tif (m instanceof L.LayerGroup) {\n\t\t\t\t\t\tif (originalArray) {\n\t\t\t\t\t\t\tlayersArray = layersArray.slice();\n\t\t\t\t\t\t\toriginalArray = false;\n\t\t\t\t\t\t}\n\t\t\t\t\t\tthis._extractNonGroupLayers(m, layersArray);\n\t\t\t\t\t\tl = layersArray.length;\n\t\t\t\t\t\tcontinue;\n\t\t\t\t\t}\n\n\t\t\t\t\t//Not point data, can't be clustered\n\t\t\t\t\tif (!m.getLatLng) {\n\t\t\t\t\t\tnpg.addLayer(m);\n\t\t\t\t\t\tcontinue;\n\t\t\t\t\t}\n\n\t\t\t\t\tif (this.hasLayer(m)) {\n\t\t\t\t\t\tcontinue;\n\t\t\t\t\t}\n\n\t\t\t\t\tneedsClustering.push(m);\n\t\t\t\t}\n\t\t\t}\n\t\t\treturn this;\n\t\t},\n\n\t\t//Takes an array of markers and removes them in bulk\n\t\tremoveLayers: function (layersArray) {\n\t\t\tvar i, m,\n\t\t\t    l = layersArray.length,\n\t\t\t    fg = this._featureGroup,\n\t\t\t    npg = this._nonPointGroup,\n\t\t\t    originalArray = true;\n\n\t\t\tif (!this._map) {\n\t\t\t\tfor (i = 0; i < l; i++) {\n\t\t\t\t\tm = layersArray[i];\n\n\t\t\t\t\t// Group of layers, append children to layersArray and skip.\n\t\t\t\t\tif (m instanceof L.LayerGroup) {\n\t\t\t\t\t\tif (originalArray) {\n\t\t\t\t\t\t\tlayersArray = layersArray.slice();\n\t\t\t\t\t\t\toriginalArray = false;\n\t\t\t\t\t\t}\n\t\t\t\t\t\tthis._extractNonGroupLayers(m, layersArray);\n\t\t\t\t\t\tl = layersArray.length;\n\t\t\t\t\t\tcontinue;\n\t\t\t\t\t}\n\n\t\t\t\t\tthis._arraySplice(this._needsClustering, m);\n\t\t\t\t\tnpg.removeLayer(m);\n\t\t\t\t\tif (this.hasLayer(m)) {\n\t\t\t\t\t\tthis._needsRemoving.push({ layer: m, latlng: m._latlng });\n\t\t\t\t\t}\n\t\t\t\t\tthis.fire('layerremove', { layer: m });\n\t\t\t\t}\n\t\t\t\treturn this;\n\t\t\t}\n\n\t\t\tif (this._unspiderfy) {\n\t\t\t\tthis._unspiderfy();\n\n\t\t\t\t// Work on a copy of the array, so that next loop is not affected.\n\t\t\t\tvar layersArray2 = layersArray.slice(),\n\t\t\t\t    l2 = l;\n\t\t\t\tfor (i = 0; i < l2; i++) {\n\t\t\t\t\tm = layersArray2[i];\n\n\t\t\t\t\t// Group of layers, append children to layersArray and skip.\n\t\t\t\t\tif (m instanceof L.LayerGroup) {\n\t\t\t\t\t\tthis._extractNonGroupLayers(m, layersArray2);\n\t\t\t\t\t\tl2 = layersArray2.length;\n\t\t\t\t\t\tcontinue;\n\t\t\t\t\t}\n\n\t\t\t\t\tthis._unspiderfyLayer(m);\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tfor (i = 0; i < l; i++) {\n\t\t\t\tm = layersArray[i];\n\n\t\t\t\t// Group of layers, append children to layersArray and skip.\n\t\t\t\tif (m instanceof L.LayerGroup) {\n\t\t\t\t\tif (originalArray) {\n\t\t\t\t\t\tlayersArray = layersArray.slice();\n\t\t\t\t\t\toriginalArray = false;\n\t\t\t\t\t}\n\t\t\t\t\tthis._extractNonGroupLayers(m, layersArray);\n\t\t\t\t\tl = layersArray.length;\n\t\t\t\t\tcontinue;\n\t\t\t\t}\n\n\t\t\t\tif (!m.__parent) {\n\t\t\t\t\tnpg.removeLayer(m);\n\t\t\t\t\tthis.fire('layerremove', { layer: m });\n\t\t\t\t\tcontinue;\n\t\t\t\t}\n\n\t\t\t\tthis._removeLayer(m, true, true);\n\t\t\t\tthis.fire('layerremove', { layer: m });\n\n\t\t\t\tif (fg.hasLayer(m)) {\n\t\t\t\t\tfg.removeLayer(m);\n\t\t\t\t\tif (m.clusterShow) {\n\t\t\t\t\t\tm.clusterShow();\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t}\n\n\t\t\t// Refresh bounds and weighted positions.\n\t\t\tthis._topClusterLevel._recalculateBounds();\n\n\t\t\tthis._refreshClustersIcons();\n\n\t\t\t//Fix up the clusters and markers on the map\n\t\t\tthis._topClusterLevel._recursivelyAddChildrenToMap(null, this._zoom, this._currentShownBounds);\n\n\t\t\treturn this;\n\t\t},\n\n\t\t//Removes all layers from the MarkerClusterGroup\n\t\tclearLayers: function () {\n\t\t\t//Need our own special implementation as the LayerGroup one doesn't work for us\n\n\t\t\t//If we aren't on the map (yet), blow away the markers we know of\n\t\t\tif (!this._map) {\n\t\t\t\tthis._needsClustering = [];\n\t\t\t\tthis._needsRemoving = [];\n\t\t\t\tdelete this._gridClusters;\n\t\t\t\tdelete this._gridUnclustered;\n\t\t\t}\n\n\t\t\tif (this._noanimationUnspiderfy) {\n\t\t\t\tthis._noanimationUnspiderfy();\n\t\t\t}\n\n\t\t\t//Remove all the visible layers\n\t\t\tthis._featureGroup.clearLayers();\n\t\t\tthis._nonPointGroup.clearLayers();\n\n\t\t\tthis.eachLayer(function (marker) {\n\t\t\t\tmarker.off(this._childMarkerEventHandlers, this);\n\t\t\t\tdelete marker.__parent;\n\t\t\t}, this);\n\n\t\t\tif (this._map) {\n\t\t\t\t//Reset _topClusterLevel and the DistanceGrids\n\t\t\t\tthis._generateInitialClusters();\n\t\t\t}\n\n\t\t\treturn this;\n\t\t},\n\n\t\t//Override FeatureGroup.getBounds as it doesn't work\n\t\tgetBounds: function () {\n\t\t\tvar bounds = new L.LatLngBounds();\n\n\t\t\tif (this._topClusterLevel) {\n\t\t\t\tbounds.extend(this._topClusterLevel._bounds);\n\t\t\t}\n\n\t\t\tfor (var i = this._needsClustering.length - 1; i >= 0; i--) {\n\t\t\t\tbounds.extend(this._needsClustering[i].getLatLng());\n\t\t\t}\n\n\t\t\tbounds.extend(this._nonPointGroup.getBounds());\n\n\t\t\treturn bounds;\n\t\t},\n\n\t\t//Overrides LayerGroup.eachLayer\n\t\teachLayer: function (method, context) {\n\t\t\tvar markers = this._needsClustering.slice(),\n\t\t\t\tneedsRemoving = this._needsRemoving,\n\t\t\t\tthisNeedsRemoving, i, j;\n\n\t\t\tif (this._topClusterLevel) {\n\t\t\t\tthis._topClusterLevel.getAllChildMarkers(markers);\n\t\t\t}\n\n\t\t\tfor (i = markers.length - 1; i >= 0; i--) {\n\t\t\t\tthisNeedsRemoving = true;\n\n\t\t\t\tfor (j = needsRemoving.length - 1; j >= 0; j--) {\n\t\t\t\t\tif (needsRemoving[j].layer === markers[i]) {\n\t\t\t\t\t\tthisNeedsRemoving = false;\n\t\t\t\t\t\tbreak;\n\t\t\t\t\t}\n\t\t\t\t}\n\n\t\t\t\tif (thisNeedsRemoving) {\n\t\t\t\t\tmethod.call(context, markers[i]);\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tthis._nonPointGroup.eachLayer(method, context);\n\t\t},\n\n\t\t//Overrides LayerGroup.getLayers\n\t\tgetLayers: function () {\n\t\t\tvar layers = [];\n\t\t\tthis.eachLayer(function (l) {\n\t\t\t\tlayers.push(l);\n\t\t\t});\n\t\t\treturn layers;\n\t\t},\n\n\t\t//Overrides LayerGroup.getLayer, WARNING: Really bad performance\n\t\tgetLayer: function (id) {\n\t\t\tvar result = null;\n\n\t\t\tid = parseInt(id, 10);\n\n\t\t\tthis.eachLayer(function (l) {\n\t\t\t\tif (L.stamp(l) === id) {\n\t\t\t\t\tresult = l;\n\t\t\t\t}\n\t\t\t});\n\n\t\t\treturn result;\n\t\t},\n\n\t\t//Returns true if the given layer is in this MarkerClusterGroup\n\t\thasLayer: function (layer) {\n\t\t\tif (!layer) {\n\t\t\t\treturn false;\n\t\t\t}\n\n\t\t\tvar i, anArray = this._needsClustering;\n\n\t\t\tfor (i = anArray.length - 1; i >= 0; i--) {\n\t\t\t\tif (anArray[i] === layer) {\n\t\t\t\t\treturn true;\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tanArray = this._needsRemoving;\n\t\t\tfor (i = anArray.length - 1; i >= 0; i--) {\n\t\t\t\tif (anArray[i].layer === layer) {\n\t\t\t\t\treturn false;\n\t\t\t\t}\n\t\t\t}\n\n\t\t\treturn !!(layer.__parent && layer.__parent._group === this) || this._nonPointGroup.hasLayer(layer);\n\t\t},\n\n\t\t//Zoom down to show the given layer (spiderfying if necessary) then calls the callback\n\t\tzoomToShowLayer: function (layer, callback) {\n\n\t\t\tvar map = this._map;\n\n\t\t\tif (typeof callback !== 'function') {\n\t\t\t\tcallback = function () {};\n\t\t\t}\n\n\t\t\tvar showMarker = function () {\n\t\t\t\t// Assumes that map.hasLayer checks for direct appearance on map, not recursively calling\n\t\t\t\t// hasLayer on Layer Groups that are on map (typically not calling this MarkerClusterGroup.hasLayer, which would always return true)\n\t\t\t\tif ((map.hasLayer(layer) || map.hasLayer(layer.__parent)) && !this._inZoomAnimation) {\n\t\t\t\t\tthis._map.off('moveend', showMarker, this);\n\t\t\t\t\tthis.off('animationend', showMarker, this);\n\n\t\t\t\t\tif (map.hasLayer(layer)) {\n\t\t\t\t\t\tcallback();\n\t\t\t\t\t} else if (layer.__parent._icon) {\n\t\t\t\t\t\tthis.once('spiderfied', callback, this);\n\t\t\t\t\t\tlayer.__parent.spiderfy();\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t};\n\n\t\t\tif (layer._icon && this._map.getBounds().contains(layer.getLatLng())) {\n\t\t\t\t//Layer is visible ond on screen, immediate return\n\t\t\t\tcallback();\n\t\t\t} else if (layer.__parent._zoom < Math.round(this._map._zoom)) {\n\t\t\t\t//Layer should be visible at this zoom level. It must not be on screen so just pan over to it\n\t\t\t\tthis._map.on('moveend', showMarker, this);\n\t\t\t\tthis._map.panTo(layer.getLatLng());\n\t\t\t} else {\n\t\t\t\tthis._map.on('moveend', showMarker, this);\n\t\t\t\tthis.on('animationend', showMarker, this);\n\t\t\t\tlayer.__parent.zoomToBounds();\n\t\t\t}\n\t\t},\n\n\t\t//Overrides FeatureGroup.onAdd\n\t\tonAdd: function (map) {\n\t\t\tthis._map = map;\n\t\t\tvar i, l, layer;\n\n\t\t\tif (!isFinite(this._map.getMaxZoom())) {\n\t\t\t\tthrow \"Map has no maxZoom specified\";\n\t\t\t}\n\n\t\t\tthis._featureGroup.addTo(map);\n\t\t\tthis._nonPointGroup.addTo(map);\n\n\t\t\tif (!this._gridClusters) {\n\t\t\t\tthis._generateInitialClusters();\n\t\t\t}\n\n\t\t\tthis._maxLat = map.options.crs.projection.MAX_LATITUDE;\n\n\t\t\t//Restore all the positions as they are in the MCG before removing them\n\t\t\tfor (i = 0, l = this._needsRemoving.length; i < l; i++) {\n\t\t\t\tlayer = this._needsRemoving[i];\n\t\t\t\tlayer.newlatlng = layer.layer._latlng;\n\t\t\t\tlayer.layer._latlng = layer.latlng;\n\t\t\t}\n\t\t\t//Remove them, then restore their new positions\n\t\t\tfor (i = 0, l = this._needsRemoving.length; i < l; i++) {\n\t\t\t\tlayer = this._needsRemoving[i];\n\t\t\t\tthis._removeLayer(layer.layer, true);\n\t\t\t\tlayer.layer._latlng = layer.newlatlng;\n\t\t\t}\n\t\t\tthis._needsRemoving = [];\n\n\t\t\t//Remember the current zoom level and bounds\n\t\t\tthis._zoom = Math.round(this._map._zoom);\n\t\t\tthis._currentShownBounds = this._getExpandedVisibleBounds();\n\n\t\t\tthis._map.on('zoomend', this._zoomEnd, this);\n\t\t\tthis._map.on('moveend', this._moveEnd, this);\n\n\t\t\tif (this._spiderfierOnAdd) { //TODO FIXME: Not sure how to have spiderfier add something on here nicely\n\t\t\t\tthis._spiderfierOnAdd();\n\t\t\t}\n\n\t\t\tthis._bindEvents();\n\n\t\t\t//Actually add our markers to the map:\n\t\t\tl = this._needsClustering;\n\t\t\tthis._needsClustering = [];\n\t\t\tthis.addLayers(l, true);\n\t\t},\n\n\t\t//Overrides FeatureGroup.onRemove\n\t\tonRemove: function (map) {\n\t\t\tmap.off('zoomend', this._zoomEnd, this);\n\t\t\tmap.off('moveend', this._moveEnd, this);\n\n\t\t\tthis._unbindEvents();\n\n\t\t\t//In case we are in a cluster animation\n\t\t\tthis._map._mapPane.className = this._map._mapPane.className.replace(' leaflet-cluster-anim', '');\n\n\t\t\tif (this._spiderfierOnRemove) { //TODO FIXME: Not sure how to have spiderfier add something on here nicely\n\t\t\t\tthis._spiderfierOnRemove();\n\t\t\t}\n\n\t\t\tdelete this._maxLat;\n\n\t\t\t//Clean up all the layers we added to the map\n\t\t\tthis._hideCoverage();\n\t\t\tthis._featureGroup.remove();\n\t\t\tthis._nonPointGroup.remove();\n\n\t\t\tthis._featureGroup.clearLayers();\n\n\t\t\tthis._map = null;\n\t\t},\n\n\t\tgetVisibleParent: function (marker) {\n\t\t\tvar vMarker = marker;\n\t\t\twhile (vMarker && !vMarker._icon) {\n\t\t\t\tvMarker = vMarker.__parent;\n\t\t\t}\n\t\t\treturn vMarker || null;\n\t\t},\n\n\t\t//Remove the given object from the given array\n\t\t_arraySplice: function (anArray, obj) {\n\t\t\tfor (var i = anArray.length - 1; i >= 0; i--) {\n\t\t\t\tif (anArray[i] === obj) {\n\t\t\t\t\tanArray.splice(i, 1);\n\t\t\t\t\treturn true;\n\t\t\t\t}\n\t\t\t}\n\t\t},\n\n\t\t/**\n\t\t * Removes a marker from all _gridUnclustered zoom levels, starting at the supplied zoom.\n\t\t * @param marker to be removed from _gridUnclustered.\n\t\t * @param z integer bottom start zoom level (included)\n\t\t * @private\n\t\t */\n\t\t_removeFromGridUnclustered: function (marker, z) {\n\t\t\tvar map = this._map,\n\t\t\t    gridUnclustered = this._gridUnclustered,\n\t\t\t\tminZoom = Math.floor(this._map.getMinZoom());\n\n\t\t\tfor (; z >= minZoom; z--) {\n\t\t\t\tif (!gridUnclustered[z].removeObject(marker, map.project(marker.getLatLng(), z))) {\n\t\t\t\t\tbreak;\n\t\t\t\t}\n\t\t\t}\n\t\t},\n\n\t\t_childMarkerDragStart: function (e) {\n\t\t\te.target.__dragStart = e.target._latlng;\n\t\t},\n\n\t\t_childMarkerMoved: function (e) {\n\t\t\tif (!this._ignoreMove && !e.target.__dragStart) {\n\t\t\t\tvar isPopupOpen = e.target._popup && e.target._popup.isOpen();\n\n\t\t\t\tthis._moveChild(e.target, e.oldLatLng, e.latlng);\n\n\t\t\t\tif (isPopupOpen) {\n\t\t\t\t\te.target.openPopup();\n\t\t\t\t}\n\t\t\t}\n\t\t},\n\n\t\t_moveChild: function (layer, from, to) {\n\t\t\tlayer._latlng = from;\n\t\t\tthis.removeLayer(layer);\n\n\t\t\tlayer._latlng = to;\n\t\t\tthis.addLayer(layer);\n\t\t},\n\n\t\t_childMarkerDragEnd: function (e) {\n\t\t\tvar dragStart = e.target.__dragStart;\n\t\t\tdelete e.target.__dragStart;\n\t\t\tif (dragStart) {\n\t\t\t\tthis._moveChild(e.target, dragStart, e.target._latlng);\n\t\t\t}\t\t\n\t\t},\n\n\n\t\t//Internal function for removing a marker from everything.\n\t\t//dontUpdateMap: set to true if you will handle updating the map manually (for bulk functions)\n\t\t_removeLayer: function (marker, removeFromDistanceGrid, dontUpdateMap) {\n\t\t\tvar gridClusters = this._gridClusters,\n\t\t\t\tgridUnclustered = this._gridUnclustered,\n\t\t\t\tfg = this._featureGroup,\n\t\t\t\tmap = this._map,\n\t\t\t\tminZoom = Math.floor(this._map.getMinZoom());\n\n\t\t\t//Remove the marker from distance clusters it might be in\n\t\t\tif (removeFromDistanceGrid) {\n\t\t\t\tthis._removeFromGridUnclustered(marker, this._maxZoom);\n\t\t\t}\n\n\t\t\t//Work our way up the clusters removing them as we go if required\n\t\t\tvar cluster = marker.__parent,\n\t\t\t\tmarkers = cluster._markers,\n\t\t\t\totherMarker;\n\n\t\t\t//Remove the marker from the immediate parents marker list\n\t\t\tthis._arraySplice(markers, marker);\n\n\t\t\twhile (cluster) {\n\t\t\t\tcluster._childCount--;\n\t\t\t\tcluster._boundsNeedUpdate = true;\n\n\t\t\t\tif (cluster._zoom < minZoom) {\n\t\t\t\t\t//Top level, do nothing\n\t\t\t\t\tbreak;\n\t\t\t\t} else if (removeFromDistanceGrid && cluster._childCount <= 1) { //Cluster no longer required\n\t\t\t\t\t//We need to push the other marker up to the parent\n\t\t\t\t\totherMarker = cluster._markers[0] === marker ? cluster._markers[1] : cluster._markers[0];\n\n\t\t\t\t\t//Update distance grid\n\t\t\t\t\tgridClusters[cluster._zoom].removeObject(cluster, map.project(cluster._cLatLng, cluster._zoom));\n\t\t\t\t\tgridUnclustered[cluster._zoom].addObject(otherMarker, map.project(otherMarker.getLatLng(), cluster._zoom));\n\n\t\t\t\t\t//Move otherMarker up to parent\n\t\t\t\t\tthis._arraySplice(cluster.__parent._childClusters, cluster);\n\t\t\t\t\tcluster.__parent._markers.push(otherMarker);\n\t\t\t\t\totherMarker.__parent = cluster.__parent;\n\n\t\t\t\t\tif (cluster._icon) {\n\t\t\t\t\t\t//Cluster is currently on the map, need to put the marker on the map instead\n\t\t\t\t\t\tfg.removeLayer(cluster);\n\t\t\t\t\t\tif (!dontUpdateMap) {\n\t\t\t\t\t\t\tfg.addLayer(otherMarker);\n\t\t\t\t\t\t}\n\t\t\t\t\t}\n\t\t\t\t} else {\n\t\t\t\t\tcluster._iconNeedsUpdate = true;\n\t\t\t\t}\n\n\t\t\t\tcluster = cluster.__parent;\n\t\t\t}\n\n\t\t\tdelete marker.__parent;\n\t\t},\n\n\t\t_isOrIsParent: function (el, oel) {\n\t\t\twhile (oel) {\n\t\t\t\tif (el === oel) {\n\t\t\t\t\treturn true;\n\t\t\t\t}\n\t\t\t\toel = oel.parentNode;\n\t\t\t}\n\t\t\treturn false;\n\t\t},\n\n\t\t//Override L.Evented.fire\n\t\tfire: function (type, data, propagate) {\n\t\t\tif (data && data.layer instanceof L.MarkerCluster) {\n\t\t\t\t//Prevent multiple clustermouseover/off events if the icon is made up of stacked divs (Doesn't work in ie <= 8, no relatedTarget)\n\t\t\t\tif (data.originalEvent && this._isOrIsParent(data.layer._icon, data.originalEvent.relatedTarget)) {\n\t\t\t\t\treturn;\n\t\t\t\t}\n\t\t\t\ttype = 'cluster' + type;\n\t\t\t}\n\n\t\t\tL.FeatureGroup.prototype.fire.call(this, type, data, propagate);\n\t\t},\n\n\t\t//Override L.Evented.listens\n\t\tlistens: function (type, propagate) {\n\t\t\treturn L.FeatureGroup.prototype.listens.call(this, type, propagate) || L.FeatureGroup.prototype.listens.call(this, 'cluster' + type, propagate);\n\t\t},\n\n\t\t//Default functionality\n\t\t_defaultIconCreateFunction: function (cluster) {\n\t\t\tvar childCount = cluster.getChildCount();\n\n\t\t\tvar c = ' marker-cluster-';\n\t\t\tif (childCount < 10) {\n\t\t\t\tc += 'small';\n\t\t\t} else if (childCount < 100) {\n\t\t\t\tc += 'medium';\n\t\t\t} else {\n\t\t\t\tc += 'large';\n\t\t\t}\n\n\t\t\treturn new L.DivIcon({ html: '<div><span>' + childCount + '</span></div>', className: 'marker-cluster' + c, iconSize: new L.Point(40, 40) });\n\t\t},\n\n\t\t_bindEvents: function () {\n\t\t\tvar map = this._map,\n\t\t\t    spiderfyOnMaxZoom = this.options.spiderfyOnMaxZoom,\n\t\t\t    showCoverageOnHover = this.options.showCoverageOnHover,\n\t\t\t    zoomToBoundsOnClick = this.options.zoomToBoundsOnClick,\n\t\t\t    spiderfyOnEveryZoom = this.options.spiderfyOnEveryZoom;\n\n\t\t\t//Zoom on cluster click or spiderfy if we are at the lowest level\n\t\t\tif (spiderfyOnMaxZoom || zoomToBoundsOnClick || spiderfyOnEveryZoom) {\n\t\t\t\tthis.on('clusterclick clusterkeypress', this._zoomOrSpiderfy, this);\n\t\t\t}\n\n\t\t\t//Show convex hull (boundary) polygon on mouse over\n\t\t\tif (showCoverageOnHover) {\n\t\t\t\tthis.on('clustermouseover', this._showCoverage, this);\n\t\t\t\tthis.on('clustermouseout', this._hideCoverage, this);\n\t\t\t\tmap.on('zoomend', this._hideCoverage, this);\n\t\t\t}\n\t\t},\n\n\t\t_zoomOrSpiderfy: function (e) {\n\t\t\tvar cluster = e.layer,\n\t\t\t    bottomCluster = cluster;\n\n\t\t\tif (e.type === 'clusterkeypress' && e.originalEvent && e.originalEvent.keyCode !== 13) {\n\t\t\t\treturn;\n\t\t\t}\n\n\t\t\twhile (bottomCluster._childClusters.length === 1) {\n\t\t\t\tbottomCluster = bottomCluster._childClusters[0];\n\t\t\t}\n\n\t\t\tif (bottomCluster._zoom === this._maxZoom &&\n\t\t\t\tbottomCluster._childCount === cluster._childCount &&\n\t\t\t\tthis.options.spiderfyOnMaxZoom) {\n\n\t\t\t\t// All child markers are contained in a single cluster from this._maxZoom to this cluster.\n\t\t\t\tcluster.spiderfy();\n\t\t\t} else if (this.options.zoomToBoundsOnClick) {\n\t\t\t\tcluster.zoomToBounds();\n\t\t\t}\n\n\t\t\tif (this.options.spiderfyOnEveryZoom) {\n\t\t\t\tcluster.spiderfy();\n\t\t\t}\n\n\t\t\t// Focus the map again for keyboard users.\n\t\t\tif (e.originalEvent && e.originalEvent.keyCode === 13) {\n\t\t\t\tthis._map._container.focus();\n\t\t\t}\n\t\t},\n\n\t\t_showCoverage: function (e) {\n\t\t\tvar map = this._map;\n\t\t\tif (this._inZoomAnimation) {\n\t\t\t\treturn;\n\t\t\t}\n\t\t\tif (this._shownPolygon) {\n\t\t\t\tmap.removeLayer(this._shownPolygon);\n\t\t\t}\n\t\t\tif (e.layer.getChildCount() > 2 && e.layer !== this._spiderfied) {\n\t\t\t\tthis._shownPolygon = new L.Polygon(e.layer.getConvexHull(), this.options.polygonOptions);\n\t\t\t\tmap.addLayer(this._shownPolygon);\n\t\t\t}\n\t\t},\n\n\t\t_hideCoverage: function () {\n\t\t\tif (this._shownPolygon) {\n\t\t\t\tthis._map.removeLayer(this._shownPolygon);\n\t\t\t\tthis._shownPolygon = null;\n\t\t\t}\n\t\t},\n\n\t\t_unbindEvents: function () {\n\t\t\tvar spiderfyOnMaxZoom = this.options.spiderfyOnMaxZoom,\n\t\t\t\tshowCoverageOnHover = this.options.showCoverageOnHover,\n\t\t\t\tzoomToBoundsOnClick = this.options.zoomToBoundsOnClick,\n\t\t\t\tspiderfyOnEveryZoom = this.options.spiderfyOnEveryZoom,\n\t\t\t\tmap = this._map;\n\n\t\t\tif (spiderfyOnMaxZoom || zoomToBoundsOnClick || spiderfyOnEveryZoom) {\n\t\t\t\tthis.off('clusterclick clusterkeypress', this._zoomOrSpiderfy, this);\n\t\t\t}\n\t\t\tif (showCoverageOnHover) {\n\t\t\t\tthis.off('clustermouseover', this._showCoverage, this);\n\t\t\t\tthis.off('clustermouseout', this._hideCoverage, this);\n\t\t\t\tmap.off('zoomend', this._hideCoverage, this);\n\t\t\t}\n\t\t},\n\n\t\t_zoomEnd: function () {\n\t\t\tif (!this._map) { //May have been removed from the map by a zoomEnd handler\n\t\t\t\treturn;\n\t\t\t}\n\t\t\tthis._mergeSplitClusters();\n\n\t\t\tthis._zoom = Math.round(this._map._zoom);\n\t\t\tthis._currentShownBounds = this._getExpandedVisibleBounds();\n\t\t},\n\n\t\t_moveEnd: function () {\n\t\t\tif (this._inZoomAnimation) {\n\t\t\t\treturn;\n\t\t\t}\n\n\t\t\tvar newBounds = this._getExpandedVisibleBounds();\n\n\t\t\tthis._topClusterLevel._recursivelyRemoveChildrenFromMap(this._currentShownBounds, Math.floor(this._map.getMinZoom()), this._zoom, newBounds);\n\t\t\tthis._topClusterLevel._recursivelyAddChildrenToMap(null, Math.round(this._map._zoom), newBounds);\n\n\t\t\tthis._currentShownBounds = newBounds;\n\t\t\treturn;\n\t\t},\n\n\t\t_generateInitialClusters: function () {\n\t\t\tvar maxZoom = Math.ceil(this._map.getMaxZoom()),\n\t\t\t\tminZoom = Math.floor(this._map.getMinZoom()),\n\t\t\t\tradius = this.options.maxClusterRadius,\n\t\t\t\tradiusFn = radius;\n\n\t\t\t//If we just set maxClusterRadius to a single number, we need to create\n\t\t\t//a simple function to return that number. Otherwise, we just have to\n\t\t\t//use the function we've passed in.\n\t\t\tif (typeof radius !== \"function\") {\n\t\t\t\tradiusFn = function () { return radius; };\n\t\t\t}\n\n\t\t\tif (this.options.disableClusteringAtZoom !== null) {\n\t\t\t\tmaxZoom = this.options.disableClusteringAtZoom - 1;\n\t\t\t}\n\t\t\tthis._maxZoom = maxZoom;\n\t\t\tthis._gridClusters = {};\n\t\t\tthis._gridUnclustered = {};\n\n\t\t\t//Set up DistanceGrids for each zoom\n\t\t\tfor (var zoom = maxZoom; zoom >= minZoom; zoom--) {\n\t\t\t\tthis._gridClusters[zoom] = new L.DistanceGrid(radiusFn(zoom));\n\t\t\t\tthis._gridUnclustered[zoom] = new L.DistanceGrid(radiusFn(zoom));\n\t\t\t}\n\n\t\t\t// Instantiate the appropriate L.MarkerCluster class (animated or not).\n\t\t\tthis._topClusterLevel = new this._markerCluster(this, minZoom - 1);\n\t\t},\n\n\t\t//Zoom: Zoom to start adding at (Pass this._maxZoom to start at the bottom)\n\t\t_addLayer: function (layer, zoom) {\n\t\t\tvar gridClusters = this._gridClusters,\n\t\t\t    gridUnclustered = this._gridUnclustered,\n\t\t\t\tminZoom = Math.floor(this._map.getMinZoom()),\n\t\t\t    markerPoint, z;\n\n\t\t\tif (this.options.singleMarkerMode) {\n\t\t\t\tthis._overrideMarkerIcon(layer);\n\t\t\t}\n\n\t\t\tlayer.on(this._childMarkerEventHandlers, this);\n\n\t\t\t//Find the lowest zoom level to slot this one in\n\t\t\tfor (; zoom >= minZoom; zoom--) {\n\t\t\t\tmarkerPoint = this._map.project(layer.getLatLng(), zoom); // calculate pixel position\n\n\t\t\t\t//Try find a cluster close by\n\t\t\t\tvar closest = gridClusters[zoom].getNearObject(markerPoint);\n\t\t\t\tif (closest) {\n\t\t\t\t\tclosest._addChild(layer);\n\t\t\t\t\tlayer.__parent = closest;\n\t\t\t\t\treturn;\n\t\t\t\t}\n\n\t\t\t\t//Try find a marker close by to form a new cluster with\n\t\t\t\tclosest = gridUnclustered[zoom].getNearObject(markerPoint);\n\t\t\t\tif (closest) {\n\t\t\t\t\tvar parent = closest.__parent;\n\t\t\t\t\tif (parent) {\n\t\t\t\t\t\tthis._removeLayer(closest, false);\n\t\t\t\t\t}\n\n\t\t\t\t\t//Create new cluster with these 2 in it\n\n\t\t\t\t\tvar newCluster = new this._markerCluster(this, zoom, closest, layer);\n\t\t\t\t\tgridClusters[zoom].addObject(newCluster, this._map.project(newCluster._cLatLng, zoom));\n\t\t\t\t\tclosest.__parent = newCluster;\n\t\t\t\t\tlayer.__parent = newCluster;\n\n\t\t\t\t\t//First create any new intermediate parent clusters that don't exist\n\t\t\t\t\tvar lastParent = newCluster;\n\t\t\t\t\tfor (z = zoom - 1; z > parent._zoom; z--) {\n\t\t\t\t\t\tlastParent = new this._markerCluster(this, z, lastParent);\n\t\t\t\t\t\tgridClusters[z].addObject(lastParent, this._map.project(closest.getLatLng(), z));\n\t\t\t\t\t}\n\t\t\t\t\tparent._addChild(lastParent);\n\n\t\t\t\t\t//Remove closest from this zoom level and any above that it is in, replace with newCluster\n\t\t\t\t\tthis._removeFromGridUnclustered(closest, zoom);\n\n\t\t\t\t\treturn;\n\t\t\t\t}\n\n\t\t\t\t//Didn't manage to cluster in at this zoom, record us as a marker here and continue upwards\n\t\t\t\tgridUnclustered[zoom].addObject(layer, markerPoint);\n\t\t\t}\n\n\t\t\t//Didn't get in anything, add us to the top\n\t\t\tthis._topClusterLevel._addChild(layer);\n\t\t\tlayer.__parent = this._topClusterLevel;\n\t\t\treturn;\n\t\t},\n\n\t\t/**\n\t\t * Refreshes the icon of all \"dirty\" visible clusters.\n\t\t * Non-visible \"dirty\" clusters will be updated when they are added to the map.\n\t\t * @private\n\t\t */\n\t\t_refreshClustersIcons: function () {\n\t\t\tthis._featureGroup.eachLayer(function (c) {\n\t\t\t\tif (c instanceof L.MarkerCluster && c._iconNeedsUpdate) {\n\t\t\t\t\tc._updateIcon();\n\t\t\t\t}\n\t\t\t});\n\t\t},\n\n\t\t//Enqueue code to fire after the marker expand/contract has happened\n\t\t_enqueue: function (fn) {\n\t\t\tthis._queue.push(fn);\n\t\t\tif (!this._queueTimeout) {\n\t\t\t\tthis._queueTimeout = setTimeout(L.bind(this._processQueue, this), 300);\n\t\t\t}\n\t\t},\n\t\t_processQueue: function () {\n\t\t\tfor (var i = 0; i < this._queue.length; i++) {\n\t\t\t\tthis._queue[i].call(this);\n\t\t\t}\n\t\t\tthis._queue.length = 0;\n\t\t\tclearTimeout(this._queueTimeout);\n\t\t\tthis._queueTimeout = null;\n\t\t},\n\n\t\t//Merge and split any existing clusters that are too big or small\n\t\t_mergeSplitClusters: function () {\n\t\t\tvar mapZoom = Math.round(this._map._zoom);\n\n\t\t\t//In case we are starting to split before the animation finished\n\t\t\tthis._processQueue();\n\n\t\t\tif (this._zoom < mapZoom && this._currentShownBounds.intersects(this._getExpandedVisibleBounds())) { //Zoom in, split\n\t\t\t\tthis._animationStart();\n\t\t\t\t//Remove clusters now off screen\n\t\t\t\tthis._topClusterLevel._recursivelyRemoveChildrenFromMap(this._currentShownBounds, Math.floor(this._map.getMinZoom()), this._zoom, this._getExpandedVisibleBounds());\n\n\t\t\t\tthis._animationZoomIn(this._zoom, mapZoom);\n\n\t\t\t} else if (this._zoom > mapZoom) { //Zoom out, merge\n\t\t\t\tthis._animationStart();\n\n\t\t\t\tthis._animationZoomOut(this._zoom, mapZoom);\n\t\t\t} else {\n\t\t\t\tthis._moveEnd();\n\t\t\t}\n\t\t},\n\n\t\t//Gets the maps visible bounds expanded in each direction by the size of the screen (so the user cannot see an area we do not cover in one pan)\n\t\t_getExpandedVisibleBounds: function () {\n\t\t\tif (!this.options.removeOutsideVisibleBounds) {\n\t\t\t\treturn this._mapBoundsInfinite;\n\t\t\t} else if (L.Browser.mobile) {\n\t\t\t\treturn this._checkBoundsMaxLat(this._map.getBounds());\n\t\t\t}\n\n\t\t\treturn this._checkBoundsMaxLat(this._map.getBounds().pad(1)); // Padding expands the bounds by its own dimensions but scaled with the given factor.\n\t\t},\n\n\t\t/**\n\t\t * Expands the latitude to Infinity (or -Infinity) if the input bounds reach the map projection maximum defined latitude\n\t\t * (in the case of Web/Spherical Mercator, it is 85.0511287798 / see https://en.wikipedia.org/wiki/Web_Mercator#Formulas).\n\t\t * Otherwise, the removeOutsideVisibleBounds option will remove markers beyond that limit, whereas the same markers without\n\t\t * this option (or outside MCG) will have their position floored (ceiled) by the projection and rendered at that limit,\n\t\t * making the user think that MCG \"eats\" them and never displays them again.\n\t\t * @param bounds L.LatLngBounds\n\t\t * @returns {L.LatLngBounds}\n\t\t * @private\n\t\t */\n\t\t_checkBoundsMaxLat: function (bounds) {\n\t\t\tvar maxLat = this._maxLat;\n\n\t\t\tif (maxLat !== undefined) {\n\t\t\t\tif (bounds.getNorth() >= maxLat) {\n\t\t\t\t\tbounds._northEast.lat = Infinity;\n\t\t\t\t}\n\t\t\t\tif (bounds.getSouth() <= -maxLat) {\n\t\t\t\t\tbounds._southWest.lat = -Infinity;\n\t\t\t\t}\n\t\t\t}\n\n\t\t\treturn bounds;\n\t\t},\n\n\t\t//Shared animation code\n\t\t_animationAddLayerNonAnimated: function (layer, newCluster) {\n\t\t\tif (newCluster === layer) {\n\t\t\t\tthis._featureGroup.addLayer(layer);\n\t\t\t} else if (newCluster._childCount === 2) {\n\t\t\t\tnewCluster._addToMap();\n\n\t\t\t\tvar markers = newCluster.getAllChildMarkers();\n\t\t\t\tthis._featureGroup.removeLayer(markers[0]);\n\t\t\t\tthis._featureGroup.removeLayer(markers[1]);\n\t\t\t} else {\n\t\t\t\tnewCluster._updateIcon();\n\t\t\t}\n\t\t},\n\n\t\t/**\n\t\t * Extracts individual (i.e. non-group) layers from a Layer Group.\n\t\t * @param group to extract layers from.\n\t\t * @param output {Array} in which to store the extracted layers.\n\t\t * @returns {*|Array}\n\t\t * @private\n\t\t */\n\t\t_extractNonGroupLayers: function (group, output) {\n\t\t\tvar layers = group.getLayers(),\n\t\t\t    i = 0,\n\t\t\t    layer;\n\n\t\t\toutput = output || [];\n\n\t\t\tfor (; i < layers.length; i++) {\n\t\t\t\tlayer = layers[i];\n\n\t\t\t\tif (layer instanceof L.LayerGroup) {\n\t\t\t\t\tthis._extractNonGroupLayers(layer, output);\n\t\t\t\t\tcontinue;\n\t\t\t\t}\n\n\t\t\t\toutput.push(layer);\n\t\t\t}\n\n\t\t\treturn output;\n\t\t},\n\n\t\t/**\n\t\t * Implements the singleMarkerMode option.\n\t\t * @param layer Marker to re-style using the Clusters iconCreateFunction.\n\t\t * @returns {L.Icon} The newly created icon.\n\t\t * @private\n\t\t */\n\t\t_overrideMarkerIcon: function (layer) {\n\t\t\tvar icon = layer.options.icon = this.options.iconCreateFunction({\n\t\t\t\tgetChildCount: function () {\n\t\t\t\t\treturn 1;\n\t\t\t\t},\n\t\t\t\tgetAllChildMarkers: function () {\n\t\t\t\t\treturn [layer];\n\t\t\t\t}\n\t\t\t});\n\n\t\t\treturn icon;\n\t\t}\n\t});\n\n\t// Constant bounds used in case option \"removeOutsideVisibleBounds\" is set to false.\n\tL.MarkerClusterGroup.include({\n\t\t_mapBoundsInfinite: new L.LatLngBounds(new L.LatLng(-Infinity, -Infinity), new L.LatLng(Infinity, Infinity))\n\t});\n\n\tL.MarkerClusterGroup.include({\n\t\t_noAnimation: {\n\t\t\t//Non Animated versions of everything\n\t\t\t_animationStart: function () {\n\t\t\t\t//Do nothing...\n\t\t\t},\n\t\t\t_animationZoomIn: function (previousZoomLevel, newZoomLevel) {\n\t\t\t\tthis._topClusterLevel._recursivelyRemoveChildrenFromMap(this._currentShownBounds, Math.floor(this._map.getMinZoom()), previousZoomLevel);\n\t\t\t\tthis._topClusterLevel._recursivelyAddChildrenToMap(null, newZoomLevel, this._getExpandedVisibleBounds());\n\n\t\t\t\t//We didn't actually animate, but we use this event to mean \"clustering animations have finished\"\n\t\t\t\tthis.fire('animationend');\n\t\t\t},\n\t\t\t_animationZoomOut: function (previousZoomLevel, newZoomLevel) {\n\t\t\t\tthis._topClusterLevel._recursivelyRemoveChildrenFromMap(this._currentShownBounds, Math.floor(this._map.getMinZoom()), previousZoomLevel);\n\t\t\t\tthis._topClusterLevel._recursivelyAddChildrenToMap(null, newZoomLevel, this._getExpandedVisibleBounds());\n\n\t\t\t\t//We didn't actually animate, but we use this event to mean \"clustering animations have finished\"\n\t\t\t\tthis.fire('animationend');\n\t\t\t},\n\t\t\t_animationAddLayer: function (layer, newCluster) {\n\t\t\t\tthis._animationAddLayerNonAnimated(layer, newCluster);\n\t\t\t}\n\t\t},\n\n\t\t_withAnimation: {\n\t\t\t//Animated versions here\n\t\t\t_animationStart: function () {\n\t\t\t\tthis._map._mapPane.className += ' leaflet-cluster-anim';\n\t\t\t\tthis._inZoomAnimation++;\n\t\t\t},\n\n\t\t\t_animationZoomIn: function (previousZoomLevel, newZoomLevel) {\n\t\t\t\tvar bounds = this._getExpandedVisibleBounds(),\n\t\t\t\t    fg = this._featureGroup,\n\t\t\t\t\tminZoom = Math.floor(this._map.getMinZoom()),\n\t\t\t\t    i;\n\n\t\t\t\tthis._ignoreMove = true;\n\n\t\t\t\t//Add all children of current clusters to map and remove those clusters from map\n\t\t\t\tthis._topClusterLevel._recursively(bounds, previousZoomLevel, minZoom, function (c) {\n\t\t\t\t\tvar startPos = c._latlng,\n\t\t\t\t\t    markers  = c._markers,\n\t\t\t\t\t    m;\n\n\t\t\t\t\tif (!bounds.contains(startPos)) {\n\t\t\t\t\t\tstartPos = null;\n\t\t\t\t\t}\n\n\t\t\t\t\tif (c._isSingleParent() && previousZoomLevel + 1 === newZoomLevel) { //Immediately add the new child and remove us\n\t\t\t\t\t\tfg.removeLayer(c);\n\t\t\t\t\t\tc._recursivelyAddChildrenToMap(null, newZoomLevel, bounds);\n\t\t\t\t\t} else {\n\t\t\t\t\t\t//Fade out old cluster\n\t\t\t\t\t\tc.clusterHide();\n\t\t\t\t\t\tc._recursivelyAddChildrenToMap(startPos, newZoomLevel, bounds);\n\t\t\t\t\t}\n\n\t\t\t\t\t//Remove all markers that aren't visible any more\n\t\t\t\t\t//TODO: Do we actually need to do this on the higher levels too?\n\t\t\t\t\tfor (i = markers.length - 1; i >= 0; i--) {\n\t\t\t\t\t\tm = markers[i];\n\t\t\t\t\t\tif (!bounds.contains(m._latlng)) {\n\t\t\t\t\t\t\tfg.removeLayer(m);\n\t\t\t\t\t\t}\n\t\t\t\t\t}\n\n\t\t\t\t});\n\n\t\t\t\tthis._forceLayout();\n\n\t\t\t\t//Update opacities\n\t\t\t\tthis._topClusterLevel._recursivelyBecomeVisible(bounds, newZoomLevel);\n\t\t\t\t//TODO Maybe? Update markers in _recursivelyBecomeVisible\n\t\t\t\tfg.eachLayer(function (n) {\n\t\t\t\t\tif (!(n instanceof L.MarkerCluster) && n._icon) {\n\t\t\t\t\t\tn.clusterShow();\n\t\t\t\t\t}\n\t\t\t\t});\n\n\t\t\t\t//update the positions of the just added clusters/markers\n\t\t\t\tthis._topClusterLevel._recursively(bounds, previousZoomLevel, newZoomLevel, function (c) {\n\t\t\t\t\tc._recursivelyRestoreChildPositions(newZoomLevel);\n\t\t\t\t});\n\n\t\t\t\tthis._ignoreMove = false;\n\n\t\t\t\t//Remove the old clusters and close the zoom animation\n\t\t\t\tthis._enqueue(function () {\n\t\t\t\t\t//update the positions of the just added clusters/markers\n\t\t\t\t\tthis._topClusterLevel._recursively(bounds, previousZoomLevel, minZoom, function (c) {\n\t\t\t\t\t\tfg.removeLayer(c);\n\t\t\t\t\t\tc.clusterShow();\n\t\t\t\t\t});\n\n\t\t\t\t\tthis._animationEnd();\n\t\t\t\t});\n\t\t\t},\n\n\t\t\t_animationZoomOut: function (previousZoomLevel, newZoomLevel) {\n\t\t\t\tthis._animationZoomOutSingle(this._topClusterLevel, previousZoomLevel - 1, newZoomLevel);\n\n\t\t\t\t//Need to add markers for those that weren't on the map before but are now\n\t\t\t\tthis._topClusterLevel._recursivelyAddChildrenToMap(null, newZoomLevel, this._getExpandedVisibleBounds());\n\t\t\t\t//Remove markers that were on the map before but won't be now\n\t\t\t\tthis._topClusterLevel._recursivelyRemoveChildrenFromMap(this._currentShownBounds, Math.floor(this._map.getMinZoom()), previousZoomLevel, this._getExpandedVisibleBounds());\n\t\t\t},\n\n\t\t\t_animationAddLayer: function (layer, newCluster) {\n\t\t\t\tvar me = this,\n\t\t\t\t    fg = this._featureGroup;\n\n\t\t\t\tfg.addLayer(layer);\n\t\t\t\tif (newCluster !== layer) {\n\t\t\t\t\tif (newCluster._childCount > 2) { //Was already a cluster\n\n\t\t\t\t\t\tnewCluster._updateIcon();\n\t\t\t\t\t\tthis._forceLayout();\n\t\t\t\t\t\tthis._animationStart();\n\n\t\t\t\t\t\tlayer._setPos(this._map.latLngToLayerPoint(newCluster.getLatLng()));\n\t\t\t\t\t\tlayer.clusterHide();\n\n\t\t\t\t\t\tthis._enqueue(function () {\n\t\t\t\t\t\t\tfg.removeLayer(layer);\n\t\t\t\t\t\t\tlayer.clusterShow();\n\n\t\t\t\t\t\t\tme._animationEnd();\n\t\t\t\t\t\t});\n\n\t\t\t\t\t} else { //Just became a cluster\n\t\t\t\t\t\tthis._forceLayout();\n\n\t\t\t\t\t\tme._animationStart();\n\t\t\t\t\t\tme._animationZoomOutSingle(newCluster, this._map.getMaxZoom(), this._zoom);\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t}\n\t\t},\n\n\t\t// Private methods for animated versions.\n\t\t_animationZoomOutSingle: function (cluster, previousZoomLevel, newZoomLevel) {\n\t\t\tvar bounds = this._getExpandedVisibleBounds(),\n\t\t\t\tminZoom = Math.floor(this._map.getMinZoom());\n\n\t\t\t//Animate all of the markers in the clusters to move to their cluster center point\n\t\t\tcluster._recursivelyAnimateChildrenInAndAddSelfToMap(bounds, minZoom, previousZoomLevel + 1, newZoomLevel);\n\n\t\t\tvar me = this;\n\n\t\t\t//Update the opacity (If we immediately set it they won't animate)\n\t\t\tthis._forceLayout();\n\t\t\tcluster._recursivelyBecomeVisible(bounds, newZoomLevel);\n\n\t\t\t//TODO: Maybe use the transition timing stuff to make this more reliable\n\t\t\t//When the animations are done, tidy up\n\t\t\tthis._enqueue(function () {\n\n\t\t\t\t//This cluster stopped being a cluster before the timeout fired\n\t\t\t\tif (cluster._childCount === 1) {\n\t\t\t\t\tvar m = cluster._markers[0];\n\t\t\t\t\t//If we were in a cluster animation at the time then the opacity and position of our child could be wrong now, so fix it\n\t\t\t\t\tthis._ignoreMove = true;\n\t\t\t\t\tm.setLatLng(m.getLatLng());\n\t\t\t\t\tthis._ignoreMove = false;\n\t\t\t\t\tif (m.clusterShow) {\n\t\t\t\t\t\tm.clusterShow();\n\t\t\t\t\t}\n\t\t\t\t} else {\n\t\t\t\t\tcluster._recursively(bounds, newZoomLevel, minZoom, function (c) {\n\t\t\t\t\t\tc._recursivelyRemoveChildrenFromMap(bounds, minZoom, previousZoomLevel + 1);\n\t\t\t\t\t});\n\t\t\t\t}\n\t\t\t\tme._animationEnd();\n\t\t\t});\n\t\t},\n\n\t\t_animationEnd: function () {\n\t\t\tif (this._map) {\n\t\t\t\tthis._map._mapPane.className = this._map._mapPane.className.replace(' leaflet-cluster-anim', '');\n\t\t\t}\n\t\t\tthis._inZoomAnimation--;\n\t\t\tthis.fire('animationend');\n\t\t},\n\n\t\t//Force a browser layout of stuff in the map\n\t\t// Should apply the current opacity and location to all elements so we can update them again for an animation\n\t\t_forceLayout: function () {\n\t\t\t//In my testing this works, infact offsetWidth of any element seems to work.\n\t\t\t//Could loop all this._layers and do this for each _icon if it stops working\n\n\t\t\tL.Util.falseFn(document.body.offsetWidth);\n\t\t}\n\t});\n\n\tL.markerClusterGroup = function (options) {\n\t\treturn new L.MarkerClusterGroup(options);\n\t};\n\n\tvar MarkerCluster = L.MarkerCluster = L.Marker.extend({\n\t\toptions: L.Icon.prototype.options,\n\n\t\tinitialize: function (group, zoom, a, b) {\n\n\t\t\tL.Marker.prototype.initialize.call(this, a ? (a._cLatLng || a.getLatLng()) : new L.LatLng(0, 0),\n\t            { icon: this, pane: group.options.clusterPane });\n\n\t\t\tthis._group = group;\n\t\t\tthis._zoom = zoom;\n\n\t\t\tthis._markers = [];\n\t\t\tthis._childClusters = [];\n\t\t\tthis._childCount = 0;\n\t\t\tthis._iconNeedsUpdate = true;\n\t\t\tthis._boundsNeedUpdate = true;\n\n\t\t\tthis._bounds = new L.LatLngBounds();\n\n\t\t\tif (a) {\n\t\t\t\tthis._addChild(a);\n\t\t\t}\n\t\t\tif (b) {\n\t\t\t\tthis._addChild(b);\n\t\t\t}\n\t\t},\n\n\t\t//Recursively retrieve all child markers of this cluster\n\t\tgetAllChildMarkers: function (storageArray, ignoreDraggedMarker) {\n\t\t\tstorageArray = storageArray || [];\n\n\t\t\tfor (var i = this._childClusters.length - 1; i >= 0; i--) {\n\t\t\t\tthis._childClusters[i].getAllChildMarkers(storageArray, ignoreDraggedMarker);\n\t\t\t}\n\n\t\t\tfor (var j = this._markers.length - 1; j >= 0; j--) {\n\t\t\t\tif (ignoreDraggedMarker && this._markers[j].__dragStart) {\n\t\t\t\t\tcontinue;\n\t\t\t\t}\n\t\t\t\tstorageArray.push(this._markers[j]);\n\t\t\t}\n\n\t\t\treturn storageArray;\n\t\t},\n\n\t\t//Returns the count of how many child markers we have\n\t\tgetChildCount: function () {\n\t\t\treturn this._childCount;\n\t\t},\n\n\t\t//Zoom to the minimum of showing all of the child markers, or the extents of this cluster\n\t\tzoomToBounds: function (fitBoundsOptions) {\n\t\t\tvar childClusters = this._childClusters.slice(),\n\t\t\t\tmap = this._group._map,\n\t\t\t\tboundsZoom = map.getBoundsZoom(this._bounds),\n\t\t\t\tzoom = this._zoom + 1,\n\t\t\t\tmapZoom = map.getZoom(),\n\t\t\t\ti;\n\n\t\t\t//calculate how far we need to zoom down to see all of the markers\n\t\t\twhile (childClusters.length > 0 && boundsZoom > zoom) {\n\t\t\t\tzoom++;\n\t\t\t\tvar newClusters = [];\n\t\t\t\tfor (i = 0; i < childClusters.length; i++) {\n\t\t\t\t\tnewClusters = newClusters.concat(childClusters[i]._childClusters);\n\t\t\t\t}\n\t\t\t\tchildClusters = newClusters;\n\t\t\t}\n\n\t\t\tif (boundsZoom > zoom) {\n\t\t\t\tthis._group._map.setView(this._latlng, zoom);\n\t\t\t} else if (boundsZoom <= mapZoom) { //If fitBounds wouldn't zoom us down, zoom us down instead\n\t\t\t\tthis._group._map.setView(this._latlng, mapZoom + 1);\n\t\t\t} else {\n\t\t\t\tthis._group._map.fitBounds(this._bounds, fitBoundsOptions);\n\t\t\t}\n\t\t},\n\n\t\tgetBounds: function () {\n\t\t\tvar bounds = new L.LatLngBounds();\n\t\t\tbounds.extend(this._bounds);\n\t\t\treturn bounds;\n\t\t},\n\n\t\t_updateIcon: function () {\n\t\t\tthis._iconNeedsUpdate = true;\n\t\t\tif (this._icon) {\n\t\t\t\tthis.setIcon(this);\n\t\t\t}\n\t\t},\n\n\t\t//Cludge for Icon, we pretend to be an icon for performance\n\t\tcreateIcon: function () {\n\t\t\tif (this._iconNeedsUpdate) {\n\t\t\t\tthis._iconObj = this._group.options.iconCreateFunction(this);\n\t\t\t\tthis._iconNeedsUpdate = false;\n\t\t\t}\n\t\t\treturn this._iconObj.createIcon();\n\t\t},\n\t\tcreateShadow: function () {\n\t\t\treturn this._iconObj.createShadow();\n\t\t},\n\n\n\t\t_addChild: function (new1, isNotificationFromChild) {\n\n\t\t\tthis._iconNeedsUpdate = true;\n\n\t\t\tthis._boundsNeedUpdate = true;\n\t\t\tthis._setClusterCenter(new1);\n\n\t\t\tif (new1 instanceof L.MarkerCluster) {\n\t\t\t\tif (!isNotificationFromChild) {\n\t\t\t\t\tthis._childClusters.push(new1);\n\t\t\t\t\tnew1.__parent = this;\n\t\t\t\t}\n\t\t\t\tthis._childCount += new1._childCount;\n\t\t\t} else {\n\t\t\t\tif (!isNotificationFromChild) {\n\t\t\t\t\tthis._markers.push(new1);\n\t\t\t\t}\n\t\t\t\tthis._childCount++;\n\t\t\t}\n\n\t\t\tif (this.__parent) {\n\t\t\t\tthis.__parent._addChild(new1, true);\n\t\t\t}\n\t\t},\n\n\t\t/**\n\t\t * Makes sure the cluster center is set. If not, uses the child center if it is a cluster, or the marker position.\n\t\t * @param child L.MarkerCluster|L.Marker that will be used as cluster center if not defined yet.\n\t\t * @private\n\t\t */\n\t\t_setClusterCenter: function (child) {\n\t\t\tif (!this._cLatLng) {\n\t\t\t\t// when clustering, take position of the first point as the cluster center\n\t\t\t\tthis._cLatLng = child._cLatLng || child._latlng;\n\t\t\t}\n\t\t},\n\n\t\t/**\n\t\t * Assigns impossible bounding values so that the next extend entirely determines the new bounds.\n\t\t * This method avoids having to trash the previous L.LatLngBounds object and to create a new one, which is much slower for this class.\n\t\t * As long as the bounds are not extended, most other methods would probably fail, as they would with bounds initialized but not extended.\n\t\t * @private\n\t\t */\n\t\t_resetBounds: function () {\n\t\t\tvar bounds = this._bounds;\n\n\t\t\tif (bounds._southWest) {\n\t\t\t\tbounds._southWest.lat = Infinity;\n\t\t\t\tbounds._southWest.lng = Infinity;\n\t\t\t}\n\t\t\tif (bounds._northEast) {\n\t\t\t\tbounds._northEast.lat = -Infinity;\n\t\t\t\tbounds._northEast.lng = -Infinity;\n\t\t\t}\n\t\t},\n\n\t\t_recalculateBounds: function () {\n\t\t\tvar markers = this._markers,\n\t\t\t    childClusters = this._childClusters,\n\t\t\t    latSum = 0,\n\t\t\t    lngSum = 0,\n\t\t\t    totalCount = this._childCount,\n\t\t\t    i, child, childLatLng, childCount;\n\n\t\t\t// Case where all markers are removed from the map and we are left with just an empty _topClusterLevel.\n\t\t\tif (totalCount === 0) {\n\t\t\t\treturn;\n\t\t\t}\n\n\t\t\t// Reset rather than creating a new object, for performance.\n\t\t\tthis._resetBounds();\n\n\t\t\t// Child markers.\n\t\t\tfor (i = 0; i < markers.length; i++) {\n\t\t\t\tchildLatLng = markers[i]._latlng;\n\n\t\t\t\tthis._bounds.extend(childLatLng);\n\n\t\t\t\tlatSum += childLatLng.lat;\n\t\t\t\tlngSum += childLatLng.lng;\n\t\t\t}\n\n\t\t\t// Child clusters.\n\t\t\tfor (i = 0; i < childClusters.length; i++) {\n\t\t\t\tchild = childClusters[i];\n\n\t\t\t\t// Re-compute child bounds and weighted position first if necessary.\n\t\t\t\tif (child._boundsNeedUpdate) {\n\t\t\t\t\tchild._recalculateBounds();\n\t\t\t\t}\n\n\t\t\t\tthis._bounds.extend(child._bounds);\n\n\t\t\t\tchildLatLng = child._wLatLng;\n\t\t\t\tchildCount = child._childCount;\n\n\t\t\t\tlatSum += childLatLng.lat * childCount;\n\t\t\t\tlngSum += childLatLng.lng * childCount;\n\t\t\t}\n\n\t\t\tthis._latlng = this._wLatLng = new L.LatLng(latSum / totalCount, lngSum / totalCount);\n\n\t\t\t// Reset dirty flag.\n\t\t\tthis._boundsNeedUpdate = false;\n\t\t},\n\n\t\t//Set our markers position as given and add it to the map\n\t\t_addToMap: function (startPos) {\n\t\t\tif (startPos) {\n\t\t\t\tthis._backupLatlng = this._latlng;\n\t\t\t\tthis.setLatLng(startPos);\n\t\t\t}\n\t\t\tthis._group._featureGroup.addLayer(this);\n\t\t},\n\n\t\t_recursivelyAnimateChildrenIn: function (bounds, center, maxZoom) {\n\t\t\tthis._recursively(bounds, this._group._map.getMinZoom(), maxZoom - 1,\n\t\t\t\tfunction (c) {\n\t\t\t\t\tvar markers = c._markers,\n\t\t\t\t\t\ti, m;\n\t\t\t\t\tfor (i = markers.length - 1; i >= 0; i--) {\n\t\t\t\t\t\tm = markers[i];\n\n\t\t\t\t\t\t//Only do it if the icon is still on the map\n\t\t\t\t\t\tif (m._icon) {\n\t\t\t\t\t\t\tm._setPos(center);\n\t\t\t\t\t\t\tm.clusterHide();\n\t\t\t\t\t\t}\n\t\t\t\t\t}\n\t\t\t\t},\n\t\t\t\tfunction (c) {\n\t\t\t\t\tvar childClusters = c._childClusters,\n\t\t\t\t\t\tj, cm;\n\t\t\t\t\tfor (j = childClusters.length - 1; j >= 0; j--) {\n\t\t\t\t\t\tcm = childClusters[j];\n\t\t\t\t\t\tif (cm._icon) {\n\t\t\t\t\t\t\tcm._setPos(center);\n\t\t\t\t\t\t\tcm.clusterHide();\n\t\t\t\t\t\t}\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t);\n\t\t},\n\n\t\t_recursivelyAnimateChildrenInAndAddSelfToMap: function (bounds, mapMinZoom, previousZoomLevel, newZoomLevel) {\n\t\t\tthis._recursively(bounds, newZoomLevel, mapMinZoom,\n\t\t\t\tfunction (c) {\n\t\t\t\t\tc._recursivelyAnimateChildrenIn(bounds, c._group._map.latLngToLayerPoint(c.getLatLng()).round(), previousZoomLevel);\n\n\t\t\t\t\t//TODO: depthToAnimateIn affects _isSingleParent, if there is a multizoom we may/may not be.\n\t\t\t\t\t//As a hack we only do a animation free zoom on a single level zoom, if someone does multiple levels then we always animate\n\t\t\t\t\tif (c._isSingleParent() && previousZoomLevel - 1 === newZoomLevel) {\n\t\t\t\t\t\tc.clusterShow();\n\t\t\t\t\t\tc._recursivelyRemoveChildrenFromMap(bounds, mapMinZoom, previousZoomLevel); //Immediately remove our children as we are replacing them. TODO previousBounds not bounds\n\t\t\t\t\t} else {\n\t\t\t\t\t\tc.clusterHide();\n\t\t\t\t\t}\n\n\t\t\t\t\tc._addToMap();\n\t\t\t\t}\n\t\t\t);\n\t\t},\n\n\t\t_recursivelyBecomeVisible: function (bounds, zoomLevel) {\n\t\t\tthis._recursively(bounds, this._group._map.getMinZoom(), zoomLevel, null, function (c) {\n\t\t\t\tc.clusterShow();\n\t\t\t});\n\t\t},\n\n\t\t_recursivelyAddChildrenToMap: function (startPos, zoomLevel, bounds) {\n\t\t\tthis._recursively(bounds, this._group._map.getMinZoom() - 1, zoomLevel,\n\t\t\t\tfunction (c) {\n\t\t\t\t\tif (zoomLevel === c._zoom) {\n\t\t\t\t\t\treturn;\n\t\t\t\t\t}\n\n\t\t\t\t\t//Add our child markers at startPos (so they can be animated out)\n\t\t\t\t\tfor (var i = c._markers.length - 1; i >= 0; i--) {\n\t\t\t\t\t\tvar nm = c._markers[i];\n\n\t\t\t\t\t\tif (!bounds.contains(nm._latlng)) {\n\t\t\t\t\t\t\tcontinue;\n\t\t\t\t\t\t}\n\n\t\t\t\t\t\tif (startPos) {\n\t\t\t\t\t\t\tnm._backupLatlng = nm.getLatLng();\n\n\t\t\t\t\t\t\tnm.setLatLng(startPos);\n\t\t\t\t\t\t\tif (nm.clusterHide) {\n\t\t\t\t\t\t\t\tnm.clusterHide();\n\t\t\t\t\t\t\t}\n\t\t\t\t\t\t}\n\n\t\t\t\t\t\tc._group._featureGroup.addLayer(nm);\n\t\t\t\t\t}\n\t\t\t\t},\n\t\t\t\tfunction (c) {\n\t\t\t\t\tc._addToMap(startPos);\n\t\t\t\t}\n\t\t\t);\n\t\t},\n\n\t\t_recursivelyRestoreChildPositions: function (zoomLevel) {\n\t\t\t//Fix positions of child markers\n\t\t\tfor (var i = this._markers.length - 1; i >= 0; i--) {\n\t\t\t\tvar nm = this._markers[i];\n\t\t\t\tif (nm._backupLatlng) {\n\t\t\t\t\tnm.setLatLng(nm._backupLatlng);\n\t\t\t\t\tdelete nm._backupLatlng;\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tif (zoomLevel - 1 === this._zoom) {\n\t\t\t\t//Reposition child clusters\n\t\t\t\tfor (var j = this._childClusters.length - 1; j >= 0; j--) {\n\t\t\t\t\tthis._childClusters[j]._restorePosition();\n\t\t\t\t}\n\t\t\t} else {\n\t\t\t\tfor (var k = this._childClusters.length - 1; k >= 0; k--) {\n\t\t\t\t\tthis._childClusters[k]._recursivelyRestoreChildPositions(zoomLevel);\n\t\t\t\t}\n\t\t\t}\n\t\t},\n\n\t\t_restorePosition: function () {\n\t\t\tif (this._backupLatlng) {\n\t\t\t\tthis.setLatLng(this._backupLatlng);\n\t\t\t\tdelete this._backupLatlng;\n\t\t\t}\n\t\t},\n\n\t\t//exceptBounds: If set, don't remove any markers/clusters in it\n\t\t_recursivelyRemoveChildrenFromMap: function (previousBounds, mapMinZoom, zoomLevel, exceptBounds) {\n\t\t\tvar m, i;\n\t\t\tthis._recursively(previousBounds, mapMinZoom - 1, zoomLevel - 1,\n\t\t\t\tfunction (c) {\n\t\t\t\t\t//Remove markers at every level\n\t\t\t\t\tfor (i = c._markers.length - 1; i >= 0; i--) {\n\t\t\t\t\t\tm = c._markers[i];\n\t\t\t\t\t\tif (!exceptBounds || !exceptBounds.contains(m._latlng)) {\n\t\t\t\t\t\t\tc._group._featureGroup.removeLayer(m);\n\t\t\t\t\t\t\tif (m.clusterShow) {\n\t\t\t\t\t\t\t\tm.clusterShow();\n\t\t\t\t\t\t\t}\n\t\t\t\t\t\t}\n\t\t\t\t\t}\n\t\t\t\t},\n\t\t\t\tfunction (c) {\n\t\t\t\t\t//Remove child clusters at just the bottom level\n\t\t\t\t\tfor (i = c._childClusters.length - 1; i >= 0; i--) {\n\t\t\t\t\t\tm = c._childClusters[i];\n\t\t\t\t\t\tif (!exceptBounds || !exceptBounds.contains(m._latlng)) {\n\t\t\t\t\t\t\tc._group._featureGroup.removeLayer(m);\n\t\t\t\t\t\t\tif (m.clusterShow) {\n\t\t\t\t\t\t\t\tm.clusterShow();\n\t\t\t\t\t\t\t}\n\t\t\t\t\t\t}\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t);\n\t\t},\n\n\t\t//Run the given functions recursively to this and child clusters\n\t\t// boundsToApplyTo: a L.LatLngBounds representing the bounds of what clusters to recurse in to\n\t\t// zoomLevelToStart: zoom level to start running functions (inclusive)\n\t\t// zoomLevelToStop: zoom level to stop running functions (inclusive)\n\t\t// runAtEveryLevel: function that takes an L.MarkerCluster as an argument that should be applied on every level\n\t\t// runAtBottomLevel: function that takes an L.MarkerCluster as an argument that should be applied at only the bottom level\n\t\t_recursively: function (boundsToApplyTo, zoomLevelToStart, zoomLevelToStop, runAtEveryLevel, runAtBottomLevel) {\n\t\t\tvar childClusters = this._childClusters,\n\t\t\t    zoom = this._zoom,\n\t\t\t    i, c;\n\n\t\t\tif (zoomLevelToStart <= zoom) {\n\t\t\t\tif (runAtEveryLevel) {\n\t\t\t\t\trunAtEveryLevel(this);\n\t\t\t\t}\n\t\t\t\tif (runAtBottomLevel && zoom === zoomLevelToStop) {\n\t\t\t\t\trunAtBottomLevel(this);\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tif (zoom < zoomLevelToStart || zoom < zoomLevelToStop) {\n\t\t\t\tfor (i = childClusters.length - 1; i >= 0; i--) {\n\t\t\t\t\tc = childClusters[i];\n\t\t\t\t\tif (c._boundsNeedUpdate) {\n\t\t\t\t\t\tc._recalculateBounds();\n\t\t\t\t\t}\n\t\t\t\t\tif (boundsToApplyTo.intersects(c._bounds)) {\n\t\t\t\t\t\tc._recursively(boundsToApplyTo, zoomLevelToStart, zoomLevelToStop, runAtEveryLevel, runAtBottomLevel);\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t}\n\t\t},\n\n\t\t//Returns true if we are the parent of only one cluster and that cluster is the same as us\n\t\t_isSingleParent: function () {\n\t\t\t//Don't need to check this._markers as the rest won't work if there are any\n\t\t\treturn this._childClusters.length > 0 && this._childClusters[0]._childCount === this._childCount;\n\t\t}\n\t});\n\n\t/*\n\t* Extends L.Marker to include two extra methods: clusterHide and clusterShow.\n\t* \n\t* They work as setOpacity(0) and setOpacity(1) respectively, but\n\t* don't overwrite the options.opacity\n\t* \n\t*/\n\n\tL.Marker.include({\n\t\tclusterHide: function () {\n\t\t\tvar backup = this.options.opacity;\n\t\t\tthis.setOpacity(0);\n\t\t\tthis.options.opacity = backup;\n\t\t\treturn this;\n\t\t},\n\t\t\n\t\tclusterShow: function () {\n\t\t\treturn this.setOpacity(this.options.opacity);\n\t\t}\n\t});\n\n\tL.DistanceGrid = function (cellSize) {\n\t\tthis._cellSize = cellSize;\n\t\tthis._sqCellSize = cellSize * cellSize;\n\t\tthis._grid = {};\n\t\tthis._objectPoint = { };\n\t};\n\n\tL.DistanceGrid.prototype = {\n\n\t\taddObject: function (obj, point) {\n\t\t\tvar x = this._getCoord(point.x),\n\t\t\t    y = this._getCoord(point.y),\n\t\t\t    grid = this._grid,\n\t\t\t    row = grid[y] = grid[y] || {},\n\t\t\t    cell = row[x] = row[x] || [],\n\t\t\t    stamp = L.Util.stamp(obj);\n\n\t\t\tthis._objectPoint[stamp] = point;\n\n\t\t\tcell.push(obj);\n\t\t},\n\n\t\tupdateObject: function (obj, point) {\n\t\t\tthis.removeObject(obj);\n\t\t\tthis.addObject(obj, point);\n\t\t},\n\n\t\t//Returns true if the object was found\n\t\tremoveObject: function (obj, point) {\n\t\t\tvar x = this._getCoord(point.x),\n\t\t\t    y = this._getCoord(point.y),\n\t\t\t    grid = this._grid,\n\t\t\t    row = grid[y] = grid[y] || {},\n\t\t\t    cell = row[x] = row[x] || [],\n\t\t\t    i, len;\n\n\t\t\tdelete this._objectPoint[L.Util.stamp(obj)];\n\n\t\t\tfor (i = 0, len = cell.length; i < len; i++) {\n\t\t\t\tif (cell[i] === obj) {\n\n\t\t\t\t\tcell.splice(i, 1);\n\n\t\t\t\t\tif (len === 1) {\n\t\t\t\t\t\tdelete row[x];\n\t\t\t\t\t}\n\n\t\t\t\t\treturn true;\n\t\t\t\t}\n\t\t\t}\n\n\t\t},\n\n\t\teachObject: function (fn, context) {\n\t\t\tvar i, j, k, len, row, cell, removed,\n\t\t\t    grid = this._grid;\n\n\t\t\tfor (i in grid) {\n\t\t\t\trow = grid[i];\n\n\t\t\t\tfor (j in row) {\n\t\t\t\t\tcell = row[j];\n\n\t\t\t\t\tfor (k = 0, len = cell.length; k < len; k++) {\n\t\t\t\t\t\tremoved = fn.call(context, cell[k]);\n\t\t\t\t\t\tif (removed) {\n\t\t\t\t\t\t\tk--;\n\t\t\t\t\t\t\tlen--;\n\t\t\t\t\t\t}\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t}\n\t\t},\n\n\t\tgetNearObject: function (point) {\n\t\t\tvar x = this._getCoord(point.x),\n\t\t\t    y = this._getCoord(point.y),\n\t\t\t    i, j, k, row, cell, len, obj, dist,\n\t\t\t    objectPoint = this._objectPoint,\n\t\t\t    closestDistSq = this._sqCellSize,\n\t\t\t    closest = null;\n\n\t\t\tfor (i = y - 1; i <= y + 1; i++) {\n\t\t\t\trow = this._grid[i];\n\t\t\t\tif (row) {\n\n\t\t\t\t\tfor (j = x - 1; j <= x + 1; j++) {\n\t\t\t\t\t\tcell = row[j];\n\t\t\t\t\t\tif (cell) {\n\n\t\t\t\t\t\t\tfor (k = 0, len = cell.length; k < len; k++) {\n\t\t\t\t\t\t\t\tobj = cell[k];\n\t\t\t\t\t\t\t\tdist = this._sqDist(objectPoint[L.Util.stamp(obj)], point);\n\t\t\t\t\t\t\t\tif (dist < closestDistSq ||\n\t\t\t\t\t\t\t\t\tdist <= closestDistSq && closest === null) {\n\t\t\t\t\t\t\t\t\tclosestDistSq = dist;\n\t\t\t\t\t\t\t\t\tclosest = obj;\n\t\t\t\t\t\t\t\t}\n\t\t\t\t\t\t\t}\n\t\t\t\t\t\t}\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t}\n\t\t\treturn closest;\n\t\t},\n\n\t\t_getCoord: function (x) {\n\t\t\tvar coord = Math.floor(x / this._cellSize);\n\t\t\treturn isFinite(coord) ? coord : x;\n\t\t},\n\n\t\t_sqDist: function (p, p2) {\n\t\t\tvar dx = p2.x - p.x,\n\t\t\t    dy = p2.y - p.y;\n\t\t\treturn dx * dx + dy * dy;\n\t\t}\n\t};\n\n\t/* Copyright (c) 2012 the authors listed at the following URL, and/or\n\tthe authors of referenced articles or incorporated external code:\n\thttp://en.literateprograms.org/Quickhull_(Javascript)?action=history&offset=20120410175256\n\n\tPermission is hereby granted, free of charge, to any person obtaining\n\ta copy of this software and associated documentation files (the\n\t\"Software\"), to deal in the Software without restriction, including\n\twithout limitation the rights to use, copy, modify, merge, publish,\n\tdistribute, sublicense, and/or sell copies of the Software, and to\n\tpermit persons to whom the Software is furnished to do so, subject to\n\tthe following conditions:\n\n\tThe above copyright notice and this permission notice shall be\n\tincluded in all copies or substantial portions of the Software.\n\n\tTHE SOFTWARE IS PROVIDED \"AS IS\", WITHOUT WARRANTY OF ANY KIND,\n\tEXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF\n\tMERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.\n\tIN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY\n\tCLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,\n\tTORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE\n\tSOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.\n\n\tRetrieved from: http://en.literateprograms.org/Quickhull_(Javascript)?oldid=18434\n\t*/\n\n\t(function () {\n\t\tL.QuickHull = {\n\n\t\t\t/*\n\t\t\t * @param {Object} cpt a point to be measured from the baseline\n\t\t\t * @param {Array} bl the baseline, as represented by a two-element\n\t\t\t *   array of latlng objects.\n\t\t\t * @returns {Number} an approximate distance measure\n\t\t\t */\n\t\t\tgetDistant: function (cpt, bl) {\n\t\t\t\tvar vY = bl[1].lat - bl[0].lat,\n\t\t\t\t\tvX = bl[0].lng - bl[1].lng;\n\t\t\t\treturn (vX * (cpt.lat - bl[0].lat) + vY * (cpt.lng - bl[0].lng));\n\t\t\t},\n\n\t\t\t/*\n\t\t\t * @param {Array} baseLine a two-element array of latlng objects\n\t\t\t *   representing the baseline to project from\n\t\t\t * @param {Array} latLngs an array of latlng objects\n\t\t\t * @returns {Object} the maximum point and all new points to stay\n\t\t\t *   in consideration for the hull.\n\t\t\t */\n\t\t\tfindMostDistantPointFromBaseLine: function (baseLine, latLngs) {\n\t\t\t\tvar maxD = 0,\n\t\t\t\t\tmaxPt = null,\n\t\t\t\t\tnewPoints = [],\n\t\t\t\t\ti, pt, d;\n\n\t\t\t\tfor (i = latLngs.length - 1; i >= 0; i--) {\n\t\t\t\t\tpt = latLngs[i];\n\t\t\t\t\td = this.getDistant(pt, baseLine);\n\n\t\t\t\t\tif (d > 0) {\n\t\t\t\t\t\tnewPoints.push(pt);\n\t\t\t\t\t} else {\n\t\t\t\t\t\tcontinue;\n\t\t\t\t\t}\n\n\t\t\t\t\tif (d > maxD) {\n\t\t\t\t\t\tmaxD = d;\n\t\t\t\t\t\tmaxPt = pt;\n\t\t\t\t\t}\n\t\t\t\t}\n\n\t\t\t\treturn { maxPoint: maxPt, newPoints: newPoints };\n\t\t\t},\n\n\n\t\t\t/*\n\t\t\t * Given a baseline, compute the convex hull of latLngs as an array\n\t\t\t * of latLngs.\n\t\t\t *\n\t\t\t * @param {Array} latLngs\n\t\t\t * @returns {Array}\n\t\t\t */\n\t\t\tbuildConvexHull: function (baseLine, latLngs) {\n\t\t\t\tvar convexHullBaseLines = [],\n\t\t\t\t\tt = this.findMostDistantPointFromBaseLine(baseLine, latLngs);\n\n\t\t\t\tif (t.maxPoint) { // if there is still a point \"outside\" the base line\n\t\t\t\t\tconvexHullBaseLines =\n\t\t\t\t\t\tconvexHullBaseLines.concat(\n\t\t\t\t\t\t\tthis.buildConvexHull([baseLine[0], t.maxPoint], t.newPoints)\n\t\t\t\t\t\t);\n\t\t\t\t\tconvexHullBaseLines =\n\t\t\t\t\t\tconvexHullBaseLines.concat(\n\t\t\t\t\t\t\tthis.buildConvexHull([t.maxPoint, baseLine[1]], t.newPoints)\n\t\t\t\t\t\t);\n\t\t\t\t\treturn convexHullBaseLines;\n\t\t\t\t} else {  // if there is no more point \"outside\" the base line, the current base line is part of the convex hull\n\t\t\t\t\treturn [baseLine[0]];\n\t\t\t\t}\n\t\t\t},\n\n\t\t\t/*\n\t\t\t * Given an array of latlngs, compute a convex hull as an array\n\t\t\t * of latlngs\n\t\t\t *\n\t\t\t * @param {Array} latLngs\n\t\t\t * @returns {Array}\n\t\t\t */\n\t\t\tgetConvexHull: function (latLngs) {\n\t\t\t\t// find first baseline\n\t\t\t\tvar maxLat = false, minLat = false,\n\t\t\t\t\tmaxLng = false, minLng = false,\n\t\t\t\t\tmaxLatPt = null, minLatPt = null,\n\t\t\t\t\tmaxLngPt = null, minLngPt = null,\n\t\t\t\t\tmaxPt = null, minPt = null,\n\t\t\t\t\ti;\n\n\t\t\t\tfor (i = latLngs.length - 1; i >= 0; i--) {\n\t\t\t\t\tvar pt = latLngs[i];\n\t\t\t\t\tif (maxLat === false || pt.lat > maxLat) {\n\t\t\t\t\t\tmaxLatPt = pt;\n\t\t\t\t\t\tmaxLat = pt.lat;\n\t\t\t\t\t}\n\t\t\t\t\tif (minLat === false || pt.lat < minLat) {\n\t\t\t\t\t\tminLatPt = pt;\n\t\t\t\t\t\tminLat = pt.lat;\n\t\t\t\t\t}\n\t\t\t\t\tif (maxLng === false || pt.lng > maxLng) {\n\t\t\t\t\t\tmaxLngPt = pt;\n\t\t\t\t\t\tmaxLng = pt.lng;\n\t\t\t\t\t}\n\t\t\t\t\tif (minLng === false || pt.lng < minLng) {\n\t\t\t\t\t\tminLngPt = pt;\n\t\t\t\t\t\tminLng = pt.lng;\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t\t\n\t\t\t\tif (minLat !== maxLat) {\n\t\t\t\t\tminPt = minLatPt;\n\t\t\t\t\tmaxPt = maxLatPt;\n\t\t\t\t} else {\n\t\t\t\t\tminPt = minLngPt;\n\t\t\t\t\tmaxPt = maxLngPt;\n\t\t\t\t}\n\n\t\t\t\tvar ch = [].concat(this.buildConvexHull([minPt, maxPt], latLngs),\n\t\t\t\t\t\t\t\t\tthis.buildConvexHull([maxPt, minPt], latLngs));\n\t\t\t\treturn ch;\n\t\t\t}\n\t\t};\n\t}());\n\n\tL.MarkerCluster.include({\n\t\tgetConvexHull: function () {\n\t\t\tvar childMarkers = this.getAllChildMarkers(),\n\t\t\t\tpoints = [],\n\t\t\t\tp, i;\n\n\t\t\tfor (i = childMarkers.length - 1; i >= 0; i--) {\n\t\t\t\tp = childMarkers[i].getLatLng();\n\t\t\t\tpoints.push(p);\n\t\t\t}\n\n\t\t\treturn L.QuickHull.getConvexHull(points);\n\t\t}\n\t});\n\n\t//This code is 100% based on https://github.com/jawj/OverlappingMarkerSpiderfier-Leaflet\n\t//Huge thanks to jawj for implementing it first to make my job easy :-)\n\n\tL.MarkerCluster.include({\n\n\t\t_2PI: Math.PI * 2,\n\t\t_circleFootSeparation: 25, //related to circumference of circle\n\t\t_circleStartAngle: 0,\n\n\t\t_spiralFootSeparation:  28, //related to size of spiral (experiment!)\n\t\t_spiralLengthStart: 11,\n\t\t_spiralLengthFactor: 5,\n\n\t\t_circleSpiralSwitchover: 9, //show spiral instead of circle from this marker count upwards.\n\t\t\t\t\t\t\t\t\t// 0 -> always spiral; Infinity -> always circle\n\n\t\tspiderfy: function () {\n\t\t\tif (this._group._spiderfied === this || this._group._inZoomAnimation) {\n\t\t\t\treturn;\n\t\t\t}\n\n\t\t\tvar childMarkers = this.getAllChildMarkers(null, true),\n\t\t\t\tgroup = this._group,\n\t\t\t\tmap = group._map,\n\t\t\t\tcenter = map.latLngToLayerPoint(this._latlng),\n\t\t\t\tpositions;\n\n\t\t\tthis._group._unspiderfy();\n\t\t\tthis._group._spiderfied = this;\n\n\t\t\t//TODO Maybe: childMarkers order by distance to center\n\n\t\t\tif (this._group.options.spiderfyShapePositions) {\n\t\t\t\tpositions = this._group.options.spiderfyShapePositions(childMarkers.length, center);\n\t\t\t} else if (childMarkers.length >= this._circleSpiralSwitchover) {\n\t\t\t\tpositions = this._generatePointsSpiral(childMarkers.length, center);\n\t\t\t} else {\n\t\t\t\tcenter.y += 10; // Otherwise circles look wrong => hack for standard blue icon, renders differently for other icons.\n\t\t\t\tpositions = this._generatePointsCircle(childMarkers.length, center);\n\t\t\t}\n\n\t\t\tthis._animationSpiderfy(childMarkers, positions);\n\t\t},\n\n\t\tunspiderfy: function (zoomDetails) {\n\t\t\t/// <param Name=\"zoomDetails\">Argument from zoomanim if being called in a zoom animation or null otherwise</param>\n\t\t\tif (this._group._inZoomAnimation) {\n\t\t\t\treturn;\n\t\t\t}\n\t\t\tthis._animationUnspiderfy(zoomDetails);\n\n\t\t\tthis._group._spiderfied = null;\n\t\t},\n\n\t\t_generatePointsCircle: function (count, centerPt) {\n\t\t\tvar circumference = this._group.options.spiderfyDistanceMultiplier * this._circleFootSeparation * (2 + count),\n\t\t\t\tlegLength = circumference / this._2PI,  //radius from circumference\n\t\t\t\tangleStep = this._2PI / count,\n\t\t\t\tres = [],\n\t\t\t\ti, angle;\n\n\t\t\tlegLength = Math.max(legLength, 35); // Minimum distance to get outside the cluster icon.\n\n\t\t\tres.length = count;\n\n\t\t\tfor (i = 0; i < count; i++) { // Clockwise, like spiral.\n\t\t\t\tangle = this._circleStartAngle + i * angleStep;\n\t\t\t\tres[i] = new L.Point(centerPt.x + legLength * Math.cos(angle), centerPt.y + legLength * Math.sin(angle))._round();\n\t\t\t}\n\n\t\t\treturn res;\n\t\t},\n\n\t\t_generatePointsSpiral: function (count, centerPt) {\n\t\t\tvar spiderfyDistanceMultiplier = this._group.options.spiderfyDistanceMultiplier,\n\t\t\t\tlegLength = spiderfyDistanceMultiplier * this._spiralLengthStart,\n\t\t\t\tseparation = spiderfyDistanceMultiplier * this._spiralFootSeparation,\n\t\t\t\tlengthFactor = spiderfyDistanceMultiplier * this._spiralLengthFactor * this._2PI,\n\t\t\t\tangle = 0,\n\t\t\t\tres = [],\n\t\t\t\ti;\n\n\t\t\tres.length = count;\n\n\t\t\t// Higher index, closer position to cluster center.\n\t\t\tfor (i = count; i >= 0; i--) {\n\t\t\t\t// Skip the first position, so that we are already farther from center and we avoid\n\t\t\t\t// being under the default cluster icon (especially important for Circle Markers).\n\t\t\t\tif (i < count) {\n\t\t\t\t\tres[i] = new L.Point(centerPt.x + legLength * Math.cos(angle), centerPt.y + legLength * Math.sin(angle))._round();\n\t\t\t\t}\n\t\t\t\tangle += separation / legLength + i * 0.0005;\n\t\t\t\tlegLength += lengthFactor / angle;\n\t\t\t}\n\t\t\treturn res;\n\t\t},\n\n\t\t_noanimationUnspiderfy: function () {\n\t\t\tvar group = this._group,\n\t\t\t\tmap = group._map,\n\t\t\t\tfg = group._featureGroup,\n\t\t\t\tchildMarkers = this.getAllChildMarkers(null, true),\n\t\t\t\tm, i;\n\n\t\t\tgroup._ignoreMove = true;\n\n\t\t\tthis.setOpacity(1);\n\t\t\tfor (i = childMarkers.length - 1; i >= 0; i--) {\n\t\t\t\tm = childMarkers[i];\n\n\t\t\t\tfg.removeLayer(m);\n\n\t\t\t\tif (m._preSpiderfyLatlng) {\n\t\t\t\t\tm.setLatLng(m._preSpiderfyLatlng);\n\t\t\t\t\tdelete m._preSpiderfyLatlng;\n\t\t\t\t}\n\t\t\t\tif (m.setZIndexOffset) {\n\t\t\t\t\tm.setZIndexOffset(0);\n\t\t\t\t}\n\n\t\t\t\tif (m._spiderLeg) {\n\t\t\t\t\tmap.removeLayer(m._spiderLeg);\n\t\t\t\t\tdelete m._spiderLeg;\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tgroup.fire('unspiderfied', {\n\t\t\t\tcluster: this,\n\t\t\t\tmarkers: childMarkers\n\t\t\t});\n\t\t\tgroup._ignoreMove = false;\n\t\t\tgroup._spiderfied = null;\n\t\t}\n\t});\n\n\t//Non Animated versions of everything\n\tL.MarkerClusterNonAnimated = L.MarkerCluster.extend({\n\t\t_animationSpiderfy: function (childMarkers, positions) {\n\t\t\tvar group = this._group,\n\t\t\t\tmap = group._map,\n\t\t\t\tfg = group._featureGroup,\n\t\t\t\tlegOptions = this._group.options.spiderLegPolylineOptions,\n\t\t\t\ti, m, leg, newPos;\n\n\t\t\tgroup._ignoreMove = true;\n\n\t\t\t// Traverse in ascending order to make sure that inner circleMarkers are on top of further legs. Normal markers are re-ordered by newPosition.\n\t\t\t// The reverse order trick no longer improves performance on modern browsers.\n\t\t\tfor (i = 0; i < childMarkers.length; i++) {\n\t\t\t\tnewPos = map.layerPointToLatLng(positions[i]);\n\t\t\t\tm = childMarkers[i];\n\n\t\t\t\t// Add the leg before the marker, so that in case the latter is a circleMarker, the leg is behind it.\n\t\t\t\tleg = new L.Polyline([this._latlng, newPos], legOptions);\n\t\t\t\tmap.addLayer(leg);\n\t\t\t\tm._spiderLeg = leg;\n\n\t\t\t\t// Now add the marker.\n\t\t\t\tm._preSpiderfyLatlng = m._latlng;\n\t\t\t\tm.setLatLng(newPos);\n\t\t\t\tif (m.setZIndexOffset) {\n\t\t\t\t\tm.setZIndexOffset(1000000); //Make these appear on top of EVERYTHING\n\t\t\t\t}\n\n\t\t\t\tfg.addLayer(m);\n\t\t\t}\n\t\t\tthis.setOpacity(0.3);\n\n\t\t\tgroup._ignoreMove = false;\n\t\t\tgroup.fire('spiderfied', {\n\t\t\t\tcluster: this,\n\t\t\t\tmarkers: childMarkers\n\t\t\t});\n\t\t},\n\n\t\t_animationUnspiderfy: function () {\n\t\t\tthis._noanimationUnspiderfy();\n\t\t}\n\t});\n\n\t//Animated versions here\n\tL.MarkerCluster.include({\n\n\t\t_animationSpiderfy: function (childMarkers, positions) {\n\t\t\tvar me = this,\n\t\t\t\tgroup = this._group,\n\t\t\t\tmap = group._map,\n\t\t\t\tfg = group._featureGroup,\n\t\t\t\tthisLayerLatLng = this._latlng,\n\t\t\t\tthisLayerPos = map.latLngToLayerPoint(thisLayerLatLng),\n\t\t\t\tsvg = L.Path.SVG,\n\t\t\t\tlegOptions = L.extend({}, this._group.options.spiderLegPolylineOptions), // Copy the options so that we can modify them for animation.\n\t\t\t\tfinalLegOpacity = legOptions.opacity,\n\t\t\t\ti, m, leg, legPath, legLength, newPos;\n\n\t\t\tif (finalLegOpacity === undefined) {\n\t\t\t\tfinalLegOpacity = L.MarkerClusterGroup.prototype.options.spiderLegPolylineOptions.opacity;\n\t\t\t}\n\n\t\t\tif (svg) {\n\t\t\t\t// If the initial opacity of the spider leg is not 0 then it appears before the animation starts.\n\t\t\t\tlegOptions.opacity = 0;\n\n\t\t\t\t// Add the class for CSS transitions.\n\t\t\t\tlegOptions.className = (legOptions.className || '') + ' leaflet-cluster-spider-leg';\n\t\t\t} else {\n\t\t\t\t// Make sure we have a defined opacity.\n\t\t\t\tlegOptions.opacity = finalLegOpacity;\n\t\t\t}\n\n\t\t\tgroup._ignoreMove = true;\n\n\t\t\t// Add markers and spider legs to map, hidden at our center point.\n\t\t\t// Traverse in ascending order to make sure that inner circleMarkers are on top of further legs. Normal markers are re-ordered by newPosition.\n\t\t\t// The reverse order trick no longer improves performance on modern browsers.\n\t\t\tfor (i = 0; i < childMarkers.length; i++) {\n\t\t\t\tm = childMarkers[i];\n\n\t\t\t\tnewPos = map.layerPointToLatLng(positions[i]);\n\n\t\t\t\t// Add the leg before the marker, so that in case the latter is a circleMarker, the leg is behind it.\n\t\t\t\tleg = new L.Polyline([thisLayerLatLng, newPos], legOptions);\n\t\t\t\tmap.addLayer(leg);\n\t\t\t\tm._spiderLeg = leg;\n\n\t\t\t\t// Explanations: https://jakearchibald.com/2013/animated-line-drawing-svg/\n\t\t\t\t// In our case the transition property is declared in the CSS file.\n\t\t\t\tif (svg) {\n\t\t\t\t\tlegPath = leg._path;\n\t\t\t\t\tlegLength = legPath.getTotalLength() + 0.1; // Need a small extra length to avoid remaining dot in Firefox.\n\t\t\t\t\tlegPath.style.strokeDasharray = legLength; // Just 1 length is enough, it will be duplicated.\n\t\t\t\t\tlegPath.style.strokeDashoffset = legLength;\n\t\t\t\t}\n\n\t\t\t\t// If it is a marker, add it now and we'll animate it out\n\t\t\t\tif (m.setZIndexOffset) {\n\t\t\t\t\tm.setZIndexOffset(1000000); // Make normal markers appear on top of EVERYTHING\n\t\t\t\t}\n\t\t\t\tif (m.clusterHide) {\n\t\t\t\t\tm.clusterHide();\n\t\t\t\t}\n\t\t\t\t\n\t\t\t\t// Vectors just get immediately added\n\t\t\t\tfg.addLayer(m);\n\n\t\t\t\tif (m._setPos) {\n\t\t\t\t\tm._setPos(thisLayerPos);\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tgroup._forceLayout();\n\t\t\tgroup._animationStart();\n\n\t\t\t// Reveal markers and spider legs.\n\t\t\tfor (i = childMarkers.length - 1; i >= 0; i--) {\n\t\t\t\tnewPos = map.layerPointToLatLng(positions[i]);\n\t\t\t\tm = childMarkers[i];\n\n\t\t\t\t//Move marker to new position\n\t\t\t\tm._preSpiderfyLatlng = m._latlng;\n\t\t\t\tm.setLatLng(newPos);\n\t\t\t\t\n\t\t\t\tif (m.clusterShow) {\n\t\t\t\t\tm.clusterShow();\n\t\t\t\t}\n\n\t\t\t\t// Animate leg (animation is actually delegated to CSS transition).\n\t\t\t\tif (svg) {\n\t\t\t\t\tleg = m._spiderLeg;\n\t\t\t\t\tlegPath = leg._path;\n\t\t\t\t\tlegPath.style.strokeDashoffset = 0;\n\t\t\t\t\t//legPath.style.strokeOpacity = finalLegOpacity;\n\t\t\t\t\tleg.setStyle({opacity: finalLegOpacity});\n\t\t\t\t}\n\t\t\t}\n\t\t\tthis.setOpacity(0.3);\n\n\t\t\tgroup._ignoreMove = false;\n\n\t\t\tsetTimeout(function () {\n\t\t\t\tgroup._animationEnd();\n\t\t\t\tgroup.fire('spiderfied', {\n\t\t\t\t\tcluster: me,\n\t\t\t\t\tmarkers: childMarkers\n\t\t\t\t});\n\t\t\t}, 200);\n\t\t},\n\n\t\t_animationUnspiderfy: function (zoomDetails) {\n\t\t\tvar me = this,\n\t\t\t\tgroup = this._group,\n\t\t\t\tmap = group._map,\n\t\t\t\tfg = group._featureGroup,\n\t\t\t\tthisLayerPos = zoomDetails ? map._latLngToNewLayerPoint(this._latlng, zoomDetails.zoom, zoomDetails.center) : map.latLngToLayerPoint(this._latlng),\n\t\t\t\tchildMarkers = this.getAllChildMarkers(null, true),\n\t\t\t\tsvg = L.Path.SVG,\n\t\t\t\tm, i, leg, legPath, legLength, nonAnimatable;\n\n\t\t\tgroup._ignoreMove = true;\n\t\t\tgroup._animationStart();\n\n\t\t\t//Make us visible and bring the child markers back in\n\t\t\tthis.setOpacity(1);\n\t\t\tfor (i = childMarkers.length - 1; i >= 0; i--) {\n\t\t\t\tm = childMarkers[i];\n\n\t\t\t\t//Marker was added to us after we were spiderfied\n\t\t\t\tif (!m._preSpiderfyLatlng) {\n\t\t\t\t\tcontinue;\n\t\t\t\t}\n\n\t\t\t\t//Close any popup on the marker first, otherwise setting the location of the marker will make the map scroll\n\t\t\t\tm.closePopup();\n\n\t\t\t\t//Fix up the location to the real one\n\t\t\t\tm.setLatLng(m._preSpiderfyLatlng);\n\t\t\t\tdelete m._preSpiderfyLatlng;\n\n\t\t\t\t//Hack override the location to be our center\n\t\t\t\tnonAnimatable = true;\n\t\t\t\tif (m._setPos) {\n\t\t\t\t\tm._setPos(thisLayerPos);\n\t\t\t\t\tnonAnimatable = false;\n\t\t\t\t}\n\t\t\t\tif (m.clusterHide) {\n\t\t\t\t\tm.clusterHide();\n\t\t\t\t\tnonAnimatable = false;\n\t\t\t\t}\n\t\t\t\tif (nonAnimatable) {\n\t\t\t\t\tfg.removeLayer(m);\n\t\t\t\t}\n\n\t\t\t\t// Animate the spider leg back in (animation is actually delegated to CSS transition).\n\t\t\t\tif (svg) {\n\t\t\t\t\tleg = m._spiderLeg;\n\t\t\t\t\tlegPath = leg._path;\n\t\t\t\t\tlegLength = legPath.getTotalLength() + 0.1;\n\t\t\t\t\tlegPath.style.strokeDashoffset = legLength;\n\t\t\t\t\tleg.setStyle({opacity: 0});\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tgroup._ignoreMove = false;\n\n\t\t\tsetTimeout(function () {\n\t\t\t\t//If we have only <= one child left then that marker will be shown on the map so don't remove it!\n\t\t\t\tvar stillThereChildCount = 0;\n\t\t\t\tfor (i = childMarkers.length - 1; i >= 0; i--) {\n\t\t\t\t\tm = childMarkers[i];\n\t\t\t\t\tif (m._spiderLeg) {\n\t\t\t\t\t\tstillThereChildCount++;\n\t\t\t\t\t}\n\t\t\t\t}\n\n\n\t\t\t\tfor (i = childMarkers.length - 1; i >= 0; i--) {\n\t\t\t\t\tm = childMarkers[i];\n\n\t\t\t\t\tif (!m._spiderLeg) { //Has already been unspiderfied\n\t\t\t\t\t\tcontinue;\n\t\t\t\t\t}\n\n\t\t\t\t\tif (m.clusterShow) {\n\t\t\t\t\t\tm.clusterShow();\n\t\t\t\t\t}\n\t\t\t\t\tif (m.setZIndexOffset) {\n\t\t\t\t\t\tm.setZIndexOffset(0);\n\t\t\t\t\t}\n\n\t\t\t\t\tif (stillThereChildCount > 1) {\n\t\t\t\t\t\tfg.removeLayer(m);\n\t\t\t\t\t}\n\n\t\t\t\t\tmap.removeLayer(m._spiderLeg);\n\t\t\t\t\tdelete m._spiderLeg;\n\t\t\t\t}\n\t\t\t\tgroup._animationEnd();\n\t\t\t\tgroup.fire('unspiderfied', {\n\t\t\t\t\tcluster: me,\n\t\t\t\t\tmarkers: childMarkers\n\t\t\t\t});\n\t\t\t}, 200);\n\t\t}\n\t});\n\n\n\tL.MarkerClusterGroup.include({\n\t\t//The MarkerCluster currently spiderfied (if any)\n\t\t_spiderfied: null,\n\n\t\tunspiderfy: function () {\n\t\t\tthis._unspiderfy.apply(this, arguments);\n\t\t},\n\n\t\t_spiderfierOnAdd: function () {\n\t\t\tthis._map.on('click', this._unspiderfyWrapper, this);\n\n\t\t\tif (this._map.options.zoomAnimation) {\n\t\t\t\tthis._map.on('zoomstart', this._unspiderfyZoomStart, this);\n\t\t\t}\n\t\t\t//Browsers without zoomAnimation or a big zoom don't fire zoomstart\n\t\t\tthis._map.on('zoomend', this._noanimationUnspiderfy, this);\n\n\t\t\tif (!L.Browser.touch) {\n\t\t\t\tthis._map.getRenderer(this);\n\t\t\t\t//Needs to happen in the pageload, not after, or animations don't work in webkit\n\t\t\t\t//  http://stackoverflow.com/questions/8455200/svg-animate-with-dynamically-added-elements\n\t\t\t\t//Disable on touch browsers as the animation messes up on a touch zoom and isn't very noticable\n\t\t\t}\n\t\t},\n\n\t\t_spiderfierOnRemove: function () {\n\t\t\tthis._map.off('click', this._unspiderfyWrapper, this);\n\t\t\tthis._map.off('zoomstart', this._unspiderfyZoomStart, this);\n\t\t\tthis._map.off('zoomanim', this._unspiderfyZoomAnim, this);\n\t\t\tthis._map.off('zoomend', this._noanimationUnspiderfy, this);\n\n\t\t\t//Ensure that markers are back where they should be\n\t\t\t// Use no animation to avoid a sticky leaflet-cluster-anim class on mapPane\n\t\t\tthis._noanimationUnspiderfy();\n\t\t},\n\n\t\t//On zoom start we add a zoomanim handler so that we are guaranteed to be last (after markers are animated)\n\t\t//This means we can define the animation they do rather than Markers doing an animation to their actual location\n\t\t_unspiderfyZoomStart: function () {\n\t\t\tif (!this._map) { //May have been removed from the map by a zoomEnd handler\n\t\t\t\treturn;\n\t\t\t}\n\n\t\t\tthis._map.on('zoomanim', this._unspiderfyZoomAnim, this);\n\t\t},\n\n\t\t_unspiderfyZoomAnim: function (zoomDetails) {\n\t\t\t//Wait until the first zoomanim after the user has finished touch-zooming before running the animation\n\t\t\tif (L.DomUtil.hasClass(this._map._mapPane, 'leaflet-touching')) {\n\t\t\t\treturn;\n\t\t\t}\n\n\t\t\tthis._map.off('zoomanim', this._unspiderfyZoomAnim, this);\n\t\t\tthis._unspiderfy(zoomDetails);\n\t\t},\n\n\t\t_unspiderfyWrapper: function () {\n\t\t\t/// <summary>_unspiderfy but passes no arguments</summary>\n\t\t\tthis._unspiderfy();\n\t\t},\n\n\t\t_unspiderfy: function (zoomDetails) {\n\t\t\tif (this._spiderfied) {\n\t\t\t\tthis._spiderfied.unspiderfy(zoomDetails);\n\t\t\t}\n\t\t},\n\n\t\t_noanimationUnspiderfy: function () {\n\t\t\tif (this._spiderfied) {\n\t\t\t\tthis._spiderfied._noanimationUnspiderfy();\n\t\t\t}\n\t\t},\n\n\t\t//If the given layer is currently being spiderfied then we unspiderfy it so it isn't on the map anymore etc\n\t\t_unspiderfyLayer: function (layer) {\n\t\t\tif (layer._spiderLeg) {\n\t\t\t\tthis._featureGroup.removeLayer(layer);\n\n\t\t\t\tif (layer.clusterShow) {\n\t\t\t\t\tlayer.clusterShow();\n\t\t\t\t}\n\t\t\t\t\t//Position will be fixed up immediately in _animationUnspiderfy\n\t\t\t\tif (layer.setZIndexOffset) {\n\t\t\t\t\tlayer.setZIndexOffset(0);\n\t\t\t\t}\n\n\t\t\t\tthis._map.removeLayer(layer._spiderLeg);\n\t\t\t\tdelete layer._spiderLeg;\n\t\t\t}\n\t\t}\n\t});\n\n\t/**\n\t * Adds 1 public method to MCG and 1 to L.Marker to facilitate changing\n\t * markers' icon options and refreshing their icon and their parent clusters\n\t * accordingly (case where their iconCreateFunction uses data of childMarkers\n\t * to make up the cluster icon).\n\t */\n\n\n\tL.MarkerClusterGroup.include({\n\t\t/**\n\t\t * Updates the icon of all clusters which are parents of the given marker(s).\n\t\t * In singleMarkerMode, also updates the given marker(s) icon.\n\t\t * @param layers L.MarkerClusterGroup|L.LayerGroup|Array(L.Marker)|Map(L.Marker)|\n\t\t * L.MarkerCluster|L.Marker (optional) list of markers (or single marker) whose parent\n\t\t * clusters need to be updated. If not provided, retrieves all child markers of this.\n\t\t * @returns {L.MarkerClusterGroup}\n\t\t */\n\t\trefreshClusters: function (layers) {\n\t\t\tif (!layers) {\n\t\t\t\tlayers = this._topClusterLevel.getAllChildMarkers();\n\t\t\t} else if (layers instanceof L.MarkerClusterGroup) {\n\t\t\t\tlayers = layers._topClusterLevel.getAllChildMarkers();\n\t\t\t} else if (layers instanceof L.LayerGroup) {\n\t\t\t\tlayers = layers._layers;\n\t\t\t} else if (layers instanceof L.MarkerCluster) {\n\t\t\t\tlayers = layers.getAllChildMarkers();\n\t\t\t} else if (layers instanceof L.Marker) {\n\t\t\t\tlayers = [layers];\n\t\t\t} // else: must be an Array(L.Marker)|Map(L.Marker)\n\t\t\tthis._flagParentsIconsNeedUpdate(layers);\n\t\t\tthis._refreshClustersIcons();\n\n\t\t\t// In case of singleMarkerMode, also re-draw the markers.\n\t\t\tif (this.options.singleMarkerMode) {\n\t\t\t\tthis._refreshSingleMarkerModeMarkers(layers);\n\t\t\t}\n\n\t\t\treturn this;\n\t\t},\n\n\t\t/**\n\t\t * Simply flags all parent clusters of the given markers as having a \"dirty\" icon.\n\t\t * @param layers Array(L.Marker)|Map(L.Marker) list of markers.\n\t\t * @private\n\t\t */\n\t\t_flagParentsIconsNeedUpdate: function (layers) {\n\t\t\tvar id, parent;\n\n\t\t\t// Assumes layers is an Array or an Object whose prototype is non-enumerable.\n\t\t\tfor (id in layers) {\n\t\t\t\t// Flag parent clusters' icon as \"dirty\", all the way up.\n\t\t\t\t// Dumb process that flags multiple times upper parents, but still\n\t\t\t\t// much more efficient than trying to be smart and make short lists,\n\t\t\t\t// at least in the case of a hierarchy following a power law:\n\t\t\t\t// http://jsperf.com/flag-nodes-in-power-hierarchy/2\n\t\t\t\tparent = layers[id].__parent;\n\t\t\t\twhile (parent) {\n\t\t\t\t\tparent._iconNeedsUpdate = true;\n\t\t\t\t\tparent = parent.__parent;\n\t\t\t\t}\n\t\t\t}\n\t\t},\n\n\t\t/**\n\t\t * Re-draws the icon of the supplied markers.\n\t\t * To be used in singleMarkerMode only.\n\t\t * @param layers Array(L.Marker)|Map(L.Marker) list of markers.\n\t\t * @private\n\t\t */\n\t\t_refreshSingleMarkerModeMarkers: function (layers) {\n\t\t\tvar id, layer;\n\n\t\t\tfor (id in layers) {\n\t\t\t\tlayer = layers[id];\n\n\t\t\t\t// Make sure we do not override markers that do not belong to THIS group.\n\t\t\t\tif (this.hasLayer(layer)) {\n\t\t\t\t\t// Need to re-create the icon first, then re-draw the marker.\n\t\t\t\t\tlayer.setIcon(this._overrideMarkerIcon(layer));\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\t});\n\n\tL.Marker.include({\n\t\t/**\n\t\t * Updates the given options in the marker's icon and refreshes the marker.\n\t\t * @param options map object of icon options.\n\t\t * @param directlyRefreshClusters boolean (optional) true to trigger\n\t\t * MCG.refreshClustersOf() right away with this single marker.\n\t\t * @returns {L.Marker}\n\t\t */\n\t\trefreshIconOptions: function (options, directlyRefreshClusters) {\n\t\t\tvar icon = this.options.icon;\n\n\t\t\tL.setOptions(icon, options);\n\n\t\t\tthis.setIcon(icon);\n\n\t\t\t// Shortcut to refresh the associated MCG clusters right away.\n\t\t\t// To be used when refreshing a single marker.\n\t\t\t// Otherwise, better use MCG.refreshClusters() once at the end with\n\t\t\t// the list of modified markers.\n\t\t\tif (directlyRefreshClusters && this.__parent) {\n\t\t\t\tthis.__parent._group.refreshClusters(this);\n\t\t\t}\n\n\t\t\treturn this;\n\t\t}\n\t});\n\n\texports.MarkerClusterGroup = MarkerClusterGroup;\n\texports.MarkerCluster = MarkerCluster;\n\n\tObject.defineProperty(exports, '__esModule', { value: true });\n\n}));\n//# sourceMappingURL=leaflet.markercluster-src.js.map\n","/* @preserve\n * Leaflet 1.7.1, a JS library for interactive maps. http://leafletjs.com\n * (c) 2010-2019 Vladimir Agafonkin, (c) 2010-2011 CloudMade\n */\n\n(function (global, factory) {\n  typeof exports === 'object' && typeof module !== 'undefined' ? factory(exports) :\n  typeof define === 'function' && define.amd ? define(['exports'], factory) :\n  (factory((global.L = {})));\n}(this, (function (exports) { 'use strict';\n\n  var version = \"1.7.1\";\n\n  /*\r\n   * @namespace Util\r\n   *\r\n   * Various utility functions, used by Leaflet internally.\r\n   */\r\n\r\n  // @function extend(dest: Object, src?: Object): Object\r\n  // Merges the properties of the `src` object (or multiple objects) into `dest` object and returns the latter. Has an `L.extend` shortcut.\r\n  function extend(dest) {\r\n  \tvar i, j, len, src;\r\n\r\n  \tfor (j = 1, len = arguments.length; j < len; j++) {\r\n  \t\tsrc = arguments[j];\r\n  \t\tfor (i in src) {\r\n  \t\t\tdest[i] = src[i];\r\n  \t\t}\r\n  \t}\r\n  \treturn dest;\r\n  }\r\n\r\n  // @function create(proto: Object, properties?: Object): Object\r\n  // Compatibility polyfill for [Object.create](https://developer.mozilla.org/docs/Web/JavaScript/Reference/Global_Objects/Object/create)\r\n  var create = Object.create || (function () {\r\n  \tfunction F() {}\r\n  \treturn function (proto) {\r\n  \t\tF.prototype = proto;\r\n  \t\treturn new F();\r\n  \t};\r\n  })();\r\n\r\n  // @function bind(fn: Function, ā€¦): Function\r\n  // Returns a new function bound to the arguments passed, like [Function.prototype.bind](https://developer.mozilla.org/docs/Web/JavaScript/Reference/Global_Objects/Function/bind).\r\n  // Has a `L.bind()` shortcut.\r\n  function bind(fn, obj) {\r\n  \tvar slice = Array.prototype.slice;\r\n\r\n  \tif (fn.bind) {\r\n  \t\treturn fn.bind.apply(fn, slice.call(arguments, 1));\r\n  \t}\r\n\r\n  \tvar args = slice.call(arguments, 2);\r\n\r\n  \treturn function () {\r\n  \t\treturn fn.apply(obj, args.length ? args.concat(slice.call(arguments)) : arguments);\r\n  \t};\r\n  }\r\n\r\n  // @property lastId: Number\r\n  // Last unique ID used by [`stamp()`](#util-stamp)\r\n  var lastId = 0;\r\n\r\n  // @function stamp(obj: Object): Number\r\n  // Returns the unique ID of an object, assigning it one if it doesn't have it.\r\n  function stamp(obj) {\r\n  \t/*eslint-disable */\r\n  \tobj._leaflet_id = obj._leaflet_id || ++lastId;\r\n  \treturn obj._leaflet_id;\r\n  \t/* eslint-enable */\r\n  }\r\n\r\n  // @function throttle(fn: Function, time: Number, context: Object): Function\r\n  // Returns a function which executes function `fn` with the given scope `context`\r\n  // (so that the `this` keyword refers to `context` inside `fn`'s code). The function\r\n  // `fn` will be called no more than one time per given amount of `time`. The arguments\r\n  // received by the bound function will be any arguments passed when binding the\r\n  // function, followed by any arguments passed when invoking the bound function.\r\n  // Has an `L.throttle` shortcut.\r\n  function throttle(fn, time, context) {\r\n  \tvar lock, args, wrapperFn, later;\r\n\r\n  \tlater = function () {\r\n  \t\t// reset lock and call if queued\r\n  \t\tlock = false;\r\n  \t\tif (args) {\r\n  \t\t\twrapperFn.apply(context, args);\r\n  \t\t\targs = false;\r\n  \t\t}\r\n  \t};\r\n\r\n  \twrapperFn = function () {\r\n  \t\tif (lock) {\r\n  \t\t\t// called too soon, queue to call later\r\n  \t\t\targs = arguments;\r\n\r\n  \t\t} else {\r\n  \t\t\t// call and lock until later\r\n  \t\t\tfn.apply(context, arguments);\r\n  \t\t\tsetTimeout(later, time);\r\n  \t\t\tlock = true;\r\n  \t\t}\r\n  \t};\r\n\r\n  \treturn wrapperFn;\r\n  }\r\n\r\n  // @function wrapNum(num: Number, range: Number[], includeMax?: Boolean): Number\r\n  // Returns the number `num` modulo `range` in such a way so it lies within\r\n  // `range[0]` and `range[1]`. The returned value will be always smaller than\r\n  // `range[1]` unless `includeMax` is set to `true`.\r\n  function wrapNum(x, range, includeMax) {\r\n  \tvar max = range[1],\r\n  \t    min = range[0],\r\n  \t    d = max - min;\r\n  \treturn x === max && includeMax ? x : ((x - min) % d + d) % d + min;\r\n  }\r\n\r\n  // @function falseFn(): Function\r\n  // Returns a function which always returns `false`.\r\n  function falseFn() { return false; }\r\n\r\n  // @function formatNum(num: Number, digits?: Number): Number\r\n  // Returns the number `num` rounded to `digits` decimals, or to 6 decimals by default.\r\n  function formatNum(num, digits) {\r\n  \tvar pow = Math.pow(10, (digits === undefined ? 6 : digits));\r\n  \treturn Math.round(num * pow) / pow;\r\n  }\r\n\r\n  // @function trim(str: String): String\r\n  // Compatibility polyfill for [String.prototype.trim](https://developer.mozilla.org/docs/Web/JavaScript/Reference/Global_Objects/String/Trim)\r\n  function trim(str) {\r\n  \treturn str.trim ? str.trim() : str.replace(/^\\s+|\\s+$/g, '');\r\n  }\r\n\r\n  // @function splitWords(str: String): String[]\r\n  // Trims and splits the string on whitespace and returns the array of parts.\r\n  function splitWords(str) {\r\n  \treturn trim(str).split(/\\s+/);\r\n  }\r\n\r\n  // @function setOptions(obj: Object, options: Object): Object\r\n  // Merges the given properties to the `options` of the `obj` object, returning the resulting options. See `Class options`. Has an `L.setOptions` shortcut.\r\n  function setOptions(obj, options) {\r\n  \tif (!Object.prototype.hasOwnProperty.call(obj, 'options')) {\r\n  \t\tobj.options = obj.options ? create(obj.options) : {};\r\n  \t}\r\n  \tfor (var i in options) {\r\n  \t\tobj.options[i] = options[i];\r\n  \t}\r\n  \treturn obj.options;\r\n  }\r\n\r\n  // @function getParamString(obj: Object, existingUrl?: String, uppercase?: Boolean): String\r\n  // Converts an object into a parameter URL string, e.g. `{a: \"foo\", b: \"bar\"}`\r\n  // translates to `'?a=foo&b=bar'`. If `existingUrl` is set, the parameters will\r\n  // be appended at the end. If `uppercase` is `true`, the parameter names will\r\n  // be uppercased (e.g. `'?A=foo&B=bar'`)\r\n  function getParamString(obj, existingUrl, uppercase) {\r\n  \tvar params = [];\r\n  \tfor (var i in obj) {\r\n  \t\tparams.push(encodeURIComponent(uppercase ? i.toUpperCase() : i) + '=' + encodeURIComponent(obj[i]));\r\n  \t}\r\n  \treturn ((!existingUrl || existingUrl.indexOf('?') === -1) ? '?' : '&') + params.join('&');\r\n  }\r\n\r\n  var templateRe = /\\{ *([\\w_-]+) *\\}/g;\r\n\r\n  // @function template(str: String, data: Object): String\r\n  // Simple templating facility, accepts a template string of the form `'Hello {a}, {b}'`\r\n  // and a data object like `{a: 'foo', b: 'bar'}`, returns evaluated string\r\n  // `('Hello foo, bar')`. You can also specify functions instead of strings for\r\n  // data values ā€” they will be evaluated passing `data` as an argument.\r\n  function template(str, data) {\r\n  \treturn str.replace(templateRe, function (str, key) {\r\n  \t\tvar value = data[key];\r\n\r\n  \t\tif (value === undefined) {\r\n  \t\t\tthrow new Error('No value provided for variable ' + str);\r\n\r\n  \t\t} else if (typeof value === 'function') {\r\n  \t\t\tvalue = value(data);\r\n  \t\t}\r\n  \t\treturn value;\r\n  \t});\r\n  }\r\n\r\n  // @function isArray(obj): Boolean\r\n  // Compatibility polyfill for [Array.isArray](https://developer.mozilla.org/docs/Web/JavaScript/Reference/Global_Objects/Array/isArray)\r\n  var isArray = Array.isArray || function (obj) {\r\n  \treturn (Object.prototype.toString.call(obj) === '[object Array]');\r\n  };\r\n\r\n  // @function indexOf(array: Array, el: Object): Number\r\n  // Compatibility polyfill for [Array.prototype.indexOf](https://developer.mozilla.org/docs/Web/JavaScript/Reference/Global_Objects/Array/indexOf)\r\n  function indexOf(array, el) {\r\n  \tfor (var i = 0; i < array.length; i++) {\r\n  \t\tif (array[i] === el) { return i; }\r\n  \t}\r\n  \treturn -1;\r\n  }\r\n\r\n  // @property emptyImageUrl: String\r\n  // Data URI string containing a base64-encoded empty GIF image.\r\n  // Used as a hack to free memory from unused images on WebKit-powered\r\n  // mobile devices (by setting image `src` to this string).\r\n  var emptyImageUrl = 'data:image/gif;base64,R0lGODlhAQABAAD/ACwAAAAAAQABAAACADs=';\r\n\r\n  // inspired by http://paulirish.com/2011/requestanimationframe-for-smart-animating/\r\n\r\n  function getPrefixed(name) {\r\n  \treturn window['webkit' + name] || window['moz' + name] || window['ms' + name];\r\n  }\r\n\r\n  var lastTime = 0;\r\n\r\n  // fallback for IE 7-8\r\n  function timeoutDefer(fn) {\r\n  \tvar time = +new Date(),\r\n  \t    timeToCall = Math.max(0, 16 - (time - lastTime));\r\n\r\n  \tlastTime = time + timeToCall;\r\n  \treturn window.setTimeout(fn, timeToCall);\r\n  }\r\n\r\n  var requestFn = window.requestAnimationFrame || getPrefixed('RequestAnimationFrame') || timeoutDefer;\r\n  var cancelFn = window.cancelAnimationFrame || getPrefixed('CancelAnimationFrame') ||\r\n  \t\tgetPrefixed('CancelRequestAnimationFrame') || function (id) { window.clearTimeout(id); };\r\n\r\n  // @function requestAnimFrame(fn: Function, context?: Object, immediate?: Boolean): Number\r\n  // Schedules `fn` to be executed when the browser repaints. `fn` is bound to\r\n  // `context` if given. When `immediate` is set, `fn` is called immediately if\r\n  // the browser doesn't have native support for\r\n  // [`window.requestAnimationFrame`](https://developer.mozilla.org/docs/Web/API/window/requestAnimationFrame),\r\n  // otherwise it's delayed. Returns a request ID that can be used to cancel the request.\r\n  function requestAnimFrame(fn, context, immediate) {\r\n  \tif (immediate && requestFn === timeoutDefer) {\r\n  \t\tfn.call(context);\r\n  \t} else {\r\n  \t\treturn requestFn.call(window, bind(fn, context));\r\n  \t}\r\n  }\r\n\r\n  // @function cancelAnimFrame(id: Number): undefined\r\n  // Cancels a previous `requestAnimFrame`. See also [window.cancelAnimationFrame](https://developer.mozilla.org/docs/Web/API/window/cancelAnimationFrame).\r\n  function cancelAnimFrame(id) {\r\n  \tif (id) {\r\n  \t\tcancelFn.call(window, id);\r\n  \t}\r\n  }\n\n  var Util = ({\n    extend: extend,\n    create: create,\n    bind: bind,\n    lastId: lastId,\n    stamp: stamp,\n    throttle: throttle,\n    wrapNum: wrapNum,\n    falseFn: falseFn,\n    formatNum: formatNum,\n    trim: trim,\n    splitWords: splitWords,\n    setOptions: setOptions,\n    getParamString: getParamString,\n    template: template,\n    isArray: isArray,\n    indexOf: indexOf,\n    emptyImageUrl: emptyImageUrl,\n    requestFn: requestFn,\n    cancelFn: cancelFn,\n    requestAnimFrame: requestAnimFrame,\n    cancelAnimFrame: cancelAnimFrame\n  });\n\n  // @class Class\r\n  // @aka L.Class\r\n\r\n  // @section\r\n  // @uninheritable\r\n\r\n  // Thanks to John Resig and Dean Edwards for inspiration!\r\n\r\n  function Class() {}\r\n\r\n  Class.extend = function (props) {\r\n\r\n  \t// @function extend(props: Object): Function\r\n  \t// [Extends the current class](#class-inheritance) given the properties to be included.\r\n  \t// Returns a Javascript function that is a class constructor (to be called with `new`).\r\n  \tvar NewClass = function () {\r\n\r\n  \t\t// call the constructor\r\n  \t\tif (this.initialize) {\r\n  \t\t\tthis.initialize.apply(this, arguments);\r\n  \t\t}\r\n\r\n  \t\t// call all constructor hooks\r\n  \t\tthis.callInitHooks();\r\n  \t};\r\n\r\n  \tvar parentProto = NewClass.__super__ = this.prototype;\r\n\r\n  \tvar proto = create(parentProto);\r\n  \tproto.constructor = NewClass;\r\n\r\n  \tNewClass.prototype = proto;\r\n\r\n  \t// inherit parent's statics\r\n  \tfor (var i in this) {\r\n  \t\tif (Object.prototype.hasOwnProperty.call(this, i) && i !== 'prototype' && i !== '__super__') {\r\n  \t\t\tNewClass[i] = this[i];\r\n  \t\t}\r\n  \t}\r\n\r\n  \t// mix static properties into the class\r\n  \tif (props.statics) {\r\n  \t\textend(NewClass, props.statics);\r\n  \t\tdelete props.statics;\r\n  \t}\r\n\r\n  \t// mix includes into the prototype\r\n  \tif (props.includes) {\r\n  \t\tcheckDeprecatedMixinEvents(props.includes);\r\n  \t\textend.apply(null, [proto].concat(props.includes));\r\n  \t\tdelete props.includes;\r\n  \t}\r\n\r\n  \t// merge options\r\n  \tif (proto.options) {\r\n  \t\tprops.options = extend(create(proto.options), props.options);\r\n  \t}\r\n\r\n  \t// mix given properties into the prototype\r\n  \textend(proto, props);\r\n\r\n  \tproto._initHooks = [];\r\n\r\n  \t// add method for calling all hooks\r\n  \tproto.callInitHooks = function () {\r\n\r\n  \t\tif (this._initHooksCalled) { return; }\r\n\r\n  \t\tif (parentProto.callInitHooks) {\r\n  \t\t\tparentProto.callInitHooks.call(this);\r\n  \t\t}\r\n\r\n  \t\tthis._initHooksCalled = true;\r\n\r\n  \t\tfor (var i = 0, len = proto._initHooks.length; i < len; i++) {\r\n  \t\t\tproto._initHooks[i].call(this);\r\n  \t\t}\r\n  \t};\r\n\r\n  \treturn NewClass;\r\n  };\r\n\r\n\r\n  // @function include(properties: Object): this\r\n  // [Includes a mixin](#class-includes) into the current class.\r\n  Class.include = function (props) {\r\n  \textend(this.prototype, props);\r\n  \treturn this;\r\n  };\r\n\r\n  // @function mergeOptions(options: Object): this\r\n  // [Merges `options`](#class-options) into the defaults of the class.\r\n  Class.mergeOptions = function (options) {\r\n  \textend(this.prototype.options, options);\r\n  \treturn this;\r\n  };\r\n\r\n  // @function addInitHook(fn: Function): this\r\n  // Adds a [constructor hook](#class-constructor-hooks) to the class.\r\n  Class.addInitHook = function (fn) { // (Function) || (String, args...)\r\n  \tvar args = Array.prototype.slice.call(arguments, 1);\r\n\r\n  \tvar init = typeof fn === 'function' ? fn : function () {\r\n  \t\tthis[fn].apply(this, args);\r\n  \t};\r\n\r\n  \tthis.prototype._initHooks = this.prototype._initHooks || [];\r\n  \tthis.prototype._initHooks.push(init);\r\n  \treturn this;\r\n  };\r\n\r\n  function checkDeprecatedMixinEvents(includes) {\r\n  \tif (typeof L === 'undefined' || !L || !L.Mixin) { return; }\r\n\r\n  \tincludes = isArray(includes) ? includes : [includes];\r\n\r\n  \tfor (var i = 0; i < includes.length; i++) {\r\n  \t\tif (includes[i] === L.Mixin.Events) {\r\n  \t\t\tconsole.warn('Deprecated include of L.Mixin.Events: ' +\r\n  \t\t\t\t'this property will be removed in future releases, ' +\r\n  \t\t\t\t'please inherit from L.Evented instead.', new Error().stack);\r\n  \t\t}\r\n  \t}\r\n  }\n\n  /*\r\n   * @class Evented\r\n   * @aka L.Evented\r\n   * @inherits Class\r\n   *\r\n   * A set of methods shared between event-powered classes (like `Map` and `Marker`). Generally, events allow you to execute some function when something happens with an object (e.g. the user clicks on the map, causing the map to fire `'click'` event).\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * map.on('click', function(e) {\r\n   * \talert(e.latlng);\r\n   * } );\r\n   * ```\r\n   *\r\n   * Leaflet deals with event listeners by reference, so if you want to add a listener and then remove it, define it as a function:\r\n   *\r\n   * ```js\r\n   * function onClick(e) { ... }\r\n   *\r\n   * map.on('click', onClick);\r\n   * map.off('click', onClick);\r\n   * ```\r\n   */\r\n\r\n  var Events = {\r\n  \t/* @method on(type: String, fn: Function, context?: Object): this\r\n  \t * Adds a listener function (`fn`) to a particular event type of the object. You can optionally specify the context of the listener (object the this keyword will point to). You can also pass several space-separated types (e.g. `'click dblclick'`).\r\n  \t *\r\n  \t * @alternative\r\n  \t * @method on(eventMap: Object): this\r\n  \t * Adds a set of type/listener pairs, e.g. `{click: onClick, mousemove: onMouseMove}`\r\n  \t */\r\n  \ton: function (types, fn, context) {\r\n\r\n  \t\t// types can be a map of types/handlers\r\n  \t\tif (typeof types === 'object') {\r\n  \t\t\tfor (var type in types) {\r\n  \t\t\t\t// we don't process space-separated events here for performance;\r\n  \t\t\t\t// it's a hot path since Layer uses the on(obj) syntax\r\n  \t\t\t\tthis._on(type, types[type], fn);\r\n  \t\t\t}\r\n\r\n  \t\t} else {\r\n  \t\t\t// types can be a string of space-separated words\r\n  \t\t\ttypes = splitWords(types);\r\n\r\n  \t\t\tfor (var i = 0, len = types.length; i < len; i++) {\r\n  \t\t\t\tthis._on(types[i], fn, context);\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t/* @method off(type: String, fn?: Function, context?: Object): this\r\n  \t * Removes a previously added listener function. If no function is specified, it will remove all the listeners of that particular event from the object. Note that if you passed a custom context to `on`, you must pass the same context to `off` in order to remove the listener.\r\n  \t *\r\n  \t * @alternative\r\n  \t * @method off(eventMap: Object): this\r\n  \t * Removes a set of type/listener pairs.\r\n  \t *\r\n  \t * @alternative\r\n  \t * @method off: this\r\n  \t * Removes all listeners to all events on the object. This includes implicitly attached events.\r\n  \t */\r\n  \toff: function (types, fn, context) {\r\n\r\n  \t\tif (!types) {\r\n  \t\t\t// clear all listeners if called without arguments\r\n  \t\t\tdelete this._events;\r\n\r\n  \t\t} else if (typeof types === 'object') {\r\n  \t\t\tfor (var type in types) {\r\n  \t\t\t\tthis._off(type, types[type], fn);\r\n  \t\t\t}\r\n\r\n  \t\t} else {\r\n  \t\t\ttypes = splitWords(types);\r\n\r\n  \t\t\tfor (var i = 0, len = types.length; i < len; i++) {\r\n  \t\t\t\tthis._off(types[i], fn, context);\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// attach listener (without syntactic sugar now)\r\n  \t_on: function (type, fn, context) {\r\n  \t\tthis._events = this._events || {};\r\n\r\n  \t\t/* get/init listeners for type */\r\n  \t\tvar typeListeners = this._events[type];\r\n  \t\tif (!typeListeners) {\r\n  \t\t\ttypeListeners = [];\r\n  \t\t\tthis._events[type] = typeListeners;\r\n  \t\t}\r\n\r\n  \t\tif (context === this) {\r\n  \t\t\t// Less memory footprint.\r\n  \t\t\tcontext = undefined;\r\n  \t\t}\r\n  \t\tvar newListener = {fn: fn, ctx: context},\r\n  \t\t    listeners = typeListeners;\r\n\r\n  \t\t// check if fn already there\r\n  \t\tfor (var i = 0, len = listeners.length; i < len; i++) {\r\n  \t\t\tif (listeners[i].fn === fn && listeners[i].ctx === context) {\r\n  \t\t\t\treturn;\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\tlisteners.push(newListener);\r\n  \t},\r\n\r\n  \t_off: function (type, fn, context) {\r\n  \t\tvar listeners,\r\n  \t\t    i,\r\n  \t\t    len;\r\n\r\n  \t\tif (!this._events) { return; }\r\n\r\n  \t\tlisteners = this._events[type];\r\n\r\n  \t\tif (!listeners) {\r\n  \t\t\treturn;\r\n  \t\t}\r\n\r\n  \t\tif (!fn) {\r\n  \t\t\t// Set all removed listeners to noop so they are not called if remove happens in fire\r\n  \t\t\tfor (i = 0, len = listeners.length; i < len; i++) {\r\n  \t\t\t\tlisteners[i].fn = falseFn;\r\n  \t\t\t}\r\n  \t\t\t// clear all listeners for a type if function isn't specified\r\n  \t\t\tdelete this._events[type];\r\n  \t\t\treturn;\r\n  \t\t}\r\n\r\n  \t\tif (context === this) {\r\n  \t\t\tcontext = undefined;\r\n  \t\t}\r\n\r\n  \t\tif (listeners) {\r\n\r\n  \t\t\t// find fn and remove it\r\n  \t\t\tfor (i = 0, len = listeners.length; i < len; i++) {\r\n  \t\t\t\tvar l = listeners[i];\r\n  \t\t\t\tif (l.ctx !== context) { continue; }\r\n  \t\t\t\tif (l.fn === fn) {\r\n\r\n  \t\t\t\t\t// set the removed listener to noop so that's not called if remove happens in fire\r\n  \t\t\t\t\tl.fn = falseFn;\r\n\r\n  \t\t\t\t\tif (this._firingCount) {\r\n  \t\t\t\t\t\t/* copy array in case events are being fired */\r\n  \t\t\t\t\t\tthis._events[type] = listeners = listeners.slice();\r\n  \t\t\t\t\t}\r\n  \t\t\t\t\tlisteners.splice(i, 1);\r\n\r\n  \t\t\t\t\treturn;\r\n  \t\t\t\t}\r\n  \t\t\t}\r\n  \t\t}\r\n  \t},\r\n\r\n  \t// @method fire(type: String, data?: Object, propagate?: Boolean): this\r\n  \t// Fires an event of the specified type. You can optionally provide an data\r\n  \t// object ā€” the first argument of the listener function will contain its\r\n  \t// properties. The event can optionally be propagated to event parents.\r\n  \tfire: function (type, data, propagate) {\r\n  \t\tif (!this.listens(type, propagate)) { return this; }\r\n\r\n  \t\tvar event = extend({}, data, {\r\n  \t\t\ttype: type,\r\n  \t\t\ttarget: this,\r\n  \t\t\tsourceTarget: data && data.sourceTarget || this\r\n  \t\t});\r\n\r\n  \t\tif (this._events) {\r\n  \t\t\tvar listeners = this._events[type];\r\n\r\n  \t\t\tif (listeners) {\r\n  \t\t\t\tthis._firingCount = (this._firingCount + 1) || 1;\r\n  \t\t\t\tfor (var i = 0, len = listeners.length; i < len; i++) {\r\n  \t\t\t\t\tvar l = listeners[i];\r\n  \t\t\t\t\tl.fn.call(l.ctx || this, event);\r\n  \t\t\t\t}\r\n\r\n  \t\t\t\tthis._firingCount--;\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\tif (propagate) {\r\n  \t\t\t// propagate the event to parents (set with addEventParent)\r\n  \t\t\tthis._propagateEvent(event);\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method listens(type: String): Boolean\r\n  \t// Returns `true` if a particular event type has any listeners attached to it.\r\n  \tlistens: function (type, propagate) {\r\n  \t\tvar listeners = this._events && this._events[type];\r\n  \t\tif (listeners && listeners.length) { return true; }\r\n\r\n  \t\tif (propagate) {\r\n  \t\t\t// also check parents for listeners if event propagates\r\n  \t\t\tfor (var id in this._eventParents) {\r\n  \t\t\t\tif (this._eventParents[id].listens(type, propagate)) { return true; }\r\n  \t\t\t}\r\n  \t\t}\r\n  \t\treturn false;\r\n  \t},\r\n\r\n  \t// @method once(ā€¦): this\r\n  \t// Behaves as [`on(ā€¦)`](#evented-on), except the listener will only get fired once and then removed.\r\n  \tonce: function (types, fn, context) {\r\n\r\n  \t\tif (typeof types === 'object') {\r\n  \t\t\tfor (var type in types) {\r\n  \t\t\t\tthis.once(type, types[type], fn);\r\n  \t\t\t}\r\n  \t\t\treturn this;\r\n  \t\t}\r\n\r\n  \t\tvar handler = bind(function () {\r\n  \t\t\tthis\r\n  \t\t\t    .off(types, fn, context)\r\n  \t\t\t    .off(types, handler, context);\r\n  \t\t}, this);\r\n\r\n  \t\t// add a listener that's executed once and removed after that\r\n  \t\treturn this\r\n  \t\t    .on(types, fn, context)\r\n  \t\t    .on(types, handler, context);\r\n  \t},\r\n\r\n  \t// @method addEventParent(obj: Evented): this\r\n  \t// Adds an event parent - an `Evented` that will receive propagated events\r\n  \taddEventParent: function (obj) {\r\n  \t\tthis._eventParents = this._eventParents || {};\r\n  \t\tthis._eventParents[stamp(obj)] = obj;\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method removeEventParent(obj: Evented): this\r\n  \t// Removes an event parent, so it will stop receiving propagated events\r\n  \tremoveEventParent: function (obj) {\r\n  \t\tif (this._eventParents) {\r\n  \t\t\tdelete this._eventParents[stamp(obj)];\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t_propagateEvent: function (e) {\r\n  \t\tfor (var id in this._eventParents) {\r\n  \t\t\tthis._eventParents[id].fire(e.type, extend({\r\n  \t\t\t\tlayer: e.target,\r\n  \t\t\t\tpropagatedFrom: e.target\r\n  \t\t\t}, e), true);\r\n  \t\t}\r\n  \t}\r\n  };\r\n\r\n  // aliases; we should ditch those eventually\r\n\r\n  // @method addEventListener(ā€¦): this\r\n  // Alias to [`on(ā€¦)`](#evented-on)\r\n  Events.addEventListener = Events.on;\r\n\r\n  // @method removeEventListener(ā€¦): this\r\n  // Alias to [`off(ā€¦)`](#evented-off)\r\n\r\n  // @method clearAllEventListeners(ā€¦): this\r\n  // Alias to [`off()`](#evented-off)\r\n  Events.removeEventListener = Events.clearAllEventListeners = Events.off;\r\n\r\n  // @method addOneTimeEventListener(ā€¦): this\r\n  // Alias to [`once(ā€¦)`](#evented-once)\r\n  Events.addOneTimeEventListener = Events.once;\r\n\r\n  // @method fireEvent(ā€¦): this\r\n  // Alias to [`fire(ā€¦)`](#evented-fire)\r\n  Events.fireEvent = Events.fire;\r\n\r\n  // @method hasEventListeners(ā€¦): Boolean\r\n  // Alias to [`listens(ā€¦)`](#evented-listens)\r\n  Events.hasEventListeners = Events.listens;\r\n\r\n  var Evented = Class.extend(Events);\n\n  /*\r\n   * @class Point\r\n   * @aka L.Point\r\n   *\r\n   * Represents a point with `x` and `y` coordinates in pixels.\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * var point = L.point(200, 300);\r\n   * ```\r\n   *\r\n   * All Leaflet methods and options that accept `Point` objects also accept them in a simple Array form (unless noted otherwise), so these lines are equivalent:\r\n   *\r\n   * ```js\r\n   * map.panBy([200, 300]);\r\n   * map.panBy(L.point(200, 300));\r\n   * ```\r\n   *\r\n   * Note that `Point` does not inherit from Leaflet's `Class` object,\r\n   * which means new classes can't inherit from it, and new methods\r\n   * can't be added to it with the `include` function.\r\n   */\r\n\r\n  function Point(x, y, round) {\r\n  \t// @property x: Number; The `x` coordinate of the point\r\n  \tthis.x = (round ? Math.round(x) : x);\r\n  \t// @property y: Number; The `y` coordinate of the point\r\n  \tthis.y = (round ? Math.round(y) : y);\r\n  }\r\n\r\n  var trunc = Math.trunc || function (v) {\r\n  \treturn v > 0 ? Math.floor(v) : Math.ceil(v);\r\n  };\r\n\r\n  Point.prototype = {\r\n\r\n  \t// @method clone(): Point\r\n  \t// Returns a copy of the current point.\r\n  \tclone: function () {\r\n  \t\treturn new Point(this.x, this.y);\r\n  \t},\r\n\r\n  \t// @method add(otherPoint: Point): Point\r\n  \t// Returns the result of addition of the current and the given points.\r\n  \tadd: function (point) {\r\n  \t\t// non-destructive, returns a new point\r\n  \t\treturn this.clone()._add(toPoint(point));\r\n  \t},\r\n\r\n  \t_add: function (point) {\r\n  \t\t// destructive, used directly for performance in situations where it's safe to modify existing point\r\n  \t\tthis.x += point.x;\r\n  \t\tthis.y += point.y;\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method subtract(otherPoint: Point): Point\r\n  \t// Returns the result of subtraction of the given point from the current.\r\n  \tsubtract: function (point) {\r\n  \t\treturn this.clone()._subtract(toPoint(point));\r\n  \t},\r\n\r\n  \t_subtract: function (point) {\r\n  \t\tthis.x -= point.x;\r\n  \t\tthis.y -= point.y;\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method divideBy(num: Number): Point\r\n  \t// Returns the result of division of the current point by the given number.\r\n  \tdivideBy: function (num) {\r\n  \t\treturn this.clone()._divideBy(num);\r\n  \t},\r\n\r\n  \t_divideBy: function (num) {\r\n  \t\tthis.x /= num;\r\n  \t\tthis.y /= num;\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method multiplyBy(num: Number): Point\r\n  \t// Returns the result of multiplication of the current point by the given number.\r\n  \tmultiplyBy: function (num) {\r\n  \t\treturn this.clone()._multiplyBy(num);\r\n  \t},\r\n\r\n  \t_multiplyBy: function (num) {\r\n  \t\tthis.x *= num;\r\n  \t\tthis.y *= num;\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method scaleBy(scale: Point): Point\r\n  \t// Multiply each coordinate of the current point by each coordinate of\r\n  \t// `scale`. In linear algebra terms, multiply the point by the\r\n  \t// [scaling matrix](https://en.wikipedia.org/wiki/Scaling_%28geometry%29#Matrix_representation)\r\n  \t// defined by `scale`.\r\n  \tscaleBy: function (point) {\r\n  \t\treturn new Point(this.x * point.x, this.y * point.y);\r\n  \t},\r\n\r\n  \t// @method unscaleBy(scale: Point): Point\r\n  \t// Inverse of `scaleBy`. Divide each coordinate of the current point by\r\n  \t// each coordinate of `scale`.\r\n  \tunscaleBy: function (point) {\r\n  \t\treturn new Point(this.x / point.x, this.y / point.y);\r\n  \t},\r\n\r\n  \t// @method round(): Point\r\n  \t// Returns a copy of the current point with rounded coordinates.\r\n  \tround: function () {\r\n  \t\treturn this.clone()._round();\r\n  \t},\r\n\r\n  \t_round: function () {\r\n  \t\tthis.x = Math.round(this.x);\r\n  \t\tthis.y = Math.round(this.y);\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method floor(): Point\r\n  \t// Returns a copy of the current point with floored coordinates (rounded down).\r\n  \tfloor: function () {\r\n  \t\treturn this.clone()._floor();\r\n  \t},\r\n\r\n  \t_floor: function () {\r\n  \t\tthis.x = Math.floor(this.x);\r\n  \t\tthis.y = Math.floor(this.y);\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method ceil(): Point\r\n  \t// Returns a copy of the current point with ceiled coordinates (rounded up).\r\n  \tceil: function () {\r\n  \t\treturn this.clone()._ceil();\r\n  \t},\r\n\r\n  \t_ceil: function () {\r\n  \t\tthis.x = Math.ceil(this.x);\r\n  \t\tthis.y = Math.ceil(this.y);\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method trunc(): Point\r\n  \t// Returns a copy of the current point with truncated coordinates (rounded towards zero).\r\n  \ttrunc: function () {\r\n  \t\treturn this.clone()._trunc();\r\n  \t},\r\n\r\n  \t_trunc: function () {\r\n  \t\tthis.x = trunc(this.x);\r\n  \t\tthis.y = trunc(this.y);\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method distanceTo(otherPoint: Point): Number\r\n  \t// Returns the cartesian distance between the current and the given points.\r\n  \tdistanceTo: function (point) {\r\n  \t\tpoint = toPoint(point);\r\n\r\n  \t\tvar x = point.x - this.x,\r\n  \t\t    y = point.y - this.y;\r\n\r\n  \t\treturn Math.sqrt(x * x + y * y);\r\n  \t},\r\n\r\n  \t// @method equals(otherPoint: Point): Boolean\r\n  \t// Returns `true` if the given point has the same coordinates.\r\n  \tequals: function (point) {\r\n  \t\tpoint = toPoint(point);\r\n\r\n  \t\treturn point.x === this.x &&\r\n  \t\t       point.y === this.y;\r\n  \t},\r\n\r\n  \t// @method contains(otherPoint: Point): Boolean\r\n  \t// Returns `true` if both coordinates of the given point are less than the corresponding current point coordinates (in absolute values).\r\n  \tcontains: function (point) {\r\n  \t\tpoint = toPoint(point);\r\n\r\n  \t\treturn Math.abs(point.x) <= Math.abs(this.x) &&\r\n  \t\t       Math.abs(point.y) <= Math.abs(this.y);\r\n  \t},\r\n\r\n  \t// @method toString(): String\r\n  \t// Returns a string representation of the point for debugging purposes.\r\n  \ttoString: function () {\r\n  \t\treturn 'Point(' +\r\n  \t\t        formatNum(this.x) + ', ' +\r\n  \t\t        formatNum(this.y) + ')';\r\n  \t}\r\n  };\r\n\r\n  // @factory L.point(x: Number, y: Number, round?: Boolean)\r\n  // Creates a Point object with the given `x` and `y` coordinates. If optional `round` is set to true, rounds the `x` and `y` values.\r\n\r\n  // @alternative\r\n  // @factory L.point(coords: Number[])\r\n  // Expects an array of the form `[x, y]` instead.\r\n\r\n  // @alternative\r\n  // @factory L.point(coords: Object)\r\n  // Expects a plain object of the form `{x: Number, y: Number}` instead.\r\n  function toPoint(x, y, round) {\r\n  \tif (x instanceof Point) {\r\n  \t\treturn x;\r\n  \t}\r\n  \tif (isArray(x)) {\r\n  \t\treturn new Point(x[0], x[1]);\r\n  \t}\r\n  \tif (x === undefined || x === null) {\r\n  \t\treturn x;\r\n  \t}\r\n  \tif (typeof x === 'object' && 'x' in x && 'y' in x) {\r\n  \t\treturn new Point(x.x, x.y);\r\n  \t}\r\n  \treturn new Point(x, y, round);\r\n  }\n\n  /*\r\n   * @class Bounds\r\n   * @aka L.Bounds\r\n   *\r\n   * Represents a rectangular area in pixel coordinates.\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * var p1 = L.point(10, 10),\r\n   * p2 = L.point(40, 60),\r\n   * bounds = L.bounds(p1, p2);\r\n   * ```\r\n   *\r\n   * All Leaflet methods that accept `Bounds` objects also accept them in a simple Array form (unless noted otherwise), so the bounds example above can be passed like this:\r\n   *\r\n   * ```js\r\n   * otherBounds.intersects([[10, 10], [40, 60]]);\r\n   * ```\r\n   *\r\n   * Note that `Bounds` does not inherit from Leaflet's `Class` object,\r\n   * which means new classes can't inherit from it, and new methods\r\n   * can't be added to it with the `include` function.\r\n   */\r\n\r\n  function Bounds(a, b) {\r\n  \tif (!a) { return; }\r\n\r\n  \tvar points = b ? [a, b] : a;\r\n\r\n  \tfor (var i = 0, len = points.length; i < len; i++) {\r\n  \t\tthis.extend(points[i]);\r\n  \t}\r\n  }\r\n\r\n  Bounds.prototype = {\r\n  \t// @method extend(point: Point): this\r\n  \t// Extends the bounds to contain the given point.\r\n  \textend: function (point) { // (Point)\r\n  \t\tpoint = toPoint(point);\r\n\r\n  \t\t// @property min: Point\r\n  \t\t// The top left corner of the rectangle.\r\n  \t\t// @property max: Point\r\n  \t\t// The bottom right corner of the rectangle.\r\n  \t\tif (!this.min && !this.max) {\r\n  \t\t\tthis.min = point.clone();\r\n  \t\t\tthis.max = point.clone();\r\n  \t\t} else {\r\n  \t\t\tthis.min.x = Math.min(point.x, this.min.x);\r\n  \t\t\tthis.max.x = Math.max(point.x, this.max.x);\r\n  \t\t\tthis.min.y = Math.min(point.y, this.min.y);\r\n  \t\t\tthis.max.y = Math.max(point.y, this.max.y);\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method getCenter(round?: Boolean): Point\r\n  \t// Returns the center point of the bounds.\r\n  \tgetCenter: function (round) {\r\n  \t\treturn new Point(\r\n  \t\t        (this.min.x + this.max.x) / 2,\r\n  \t\t        (this.min.y + this.max.y) / 2, round);\r\n  \t},\r\n\r\n  \t// @method getBottomLeft(): Point\r\n  \t// Returns the bottom-left point of the bounds.\r\n  \tgetBottomLeft: function () {\r\n  \t\treturn new Point(this.min.x, this.max.y);\r\n  \t},\r\n\r\n  \t// @method getTopRight(): Point\r\n  \t// Returns the top-right point of the bounds.\r\n  \tgetTopRight: function () { // -> Point\r\n  \t\treturn new Point(this.max.x, this.min.y);\r\n  \t},\r\n\r\n  \t// @method getTopLeft(): Point\r\n  \t// Returns the top-left point of the bounds (i.e. [`this.min`](#bounds-min)).\r\n  \tgetTopLeft: function () {\r\n  \t\treturn this.min; // left, top\r\n  \t},\r\n\r\n  \t// @method getBottomRight(): Point\r\n  \t// Returns the bottom-right point of the bounds (i.e. [`this.max`](#bounds-max)).\r\n  \tgetBottomRight: function () {\r\n  \t\treturn this.max; // right, bottom\r\n  \t},\r\n\r\n  \t// @method getSize(): Point\r\n  \t// Returns the size of the given bounds\r\n  \tgetSize: function () {\r\n  \t\treturn this.max.subtract(this.min);\r\n  \t},\r\n\r\n  \t// @method contains(otherBounds: Bounds): Boolean\r\n  \t// Returns `true` if the rectangle contains the given one.\r\n  \t// @alternative\r\n  \t// @method contains(point: Point): Boolean\r\n  \t// Returns `true` if the rectangle contains the given point.\r\n  \tcontains: function (obj) {\r\n  \t\tvar min, max;\r\n\r\n  \t\tif (typeof obj[0] === 'number' || obj instanceof Point) {\r\n  \t\t\tobj = toPoint(obj);\r\n  \t\t} else {\r\n  \t\t\tobj = toBounds(obj);\r\n  \t\t}\r\n\r\n  \t\tif (obj instanceof Bounds) {\r\n  \t\t\tmin = obj.min;\r\n  \t\t\tmax = obj.max;\r\n  \t\t} else {\r\n  \t\t\tmin = max = obj;\r\n  \t\t}\r\n\r\n  \t\treturn (min.x >= this.min.x) &&\r\n  \t\t       (max.x <= this.max.x) &&\r\n  \t\t       (min.y >= this.min.y) &&\r\n  \t\t       (max.y <= this.max.y);\r\n  \t},\r\n\r\n  \t// @method intersects(otherBounds: Bounds): Boolean\r\n  \t// Returns `true` if the rectangle intersects the given bounds. Two bounds\r\n  \t// intersect if they have at least one point in common.\r\n  \tintersects: function (bounds) { // (Bounds) -> Boolean\r\n  \t\tbounds = toBounds(bounds);\r\n\r\n  \t\tvar min = this.min,\r\n  \t\t    max = this.max,\r\n  \t\t    min2 = bounds.min,\r\n  \t\t    max2 = bounds.max,\r\n  \t\t    xIntersects = (max2.x >= min.x) && (min2.x <= max.x),\r\n  \t\t    yIntersects = (max2.y >= min.y) && (min2.y <= max.y);\r\n\r\n  \t\treturn xIntersects && yIntersects;\r\n  \t},\r\n\r\n  \t// @method overlaps(otherBounds: Bounds): Boolean\r\n  \t// Returns `true` if the rectangle overlaps the given bounds. Two bounds\r\n  \t// overlap if their intersection is an area.\r\n  \toverlaps: function (bounds) { // (Bounds) -> Boolean\r\n  \t\tbounds = toBounds(bounds);\r\n\r\n  \t\tvar min = this.min,\r\n  \t\t    max = this.max,\r\n  \t\t    min2 = bounds.min,\r\n  \t\t    max2 = bounds.max,\r\n  \t\t    xOverlaps = (max2.x > min.x) && (min2.x < max.x),\r\n  \t\t    yOverlaps = (max2.y > min.y) && (min2.y < max.y);\r\n\r\n  \t\treturn xOverlaps && yOverlaps;\r\n  \t},\r\n\r\n  \tisValid: function () {\r\n  \t\treturn !!(this.min && this.max);\r\n  \t}\r\n  };\r\n\r\n\r\n  // @factory L.bounds(corner1: Point, corner2: Point)\r\n  // Creates a Bounds object from two corners coordinate pairs.\r\n  // @alternative\r\n  // @factory L.bounds(points: Point[])\r\n  // Creates a Bounds object from the given array of points.\r\n  function toBounds(a, b) {\r\n  \tif (!a || a instanceof Bounds) {\r\n  \t\treturn a;\r\n  \t}\r\n  \treturn new Bounds(a, b);\r\n  }\n\n  /*\r\n   * @class LatLngBounds\r\n   * @aka L.LatLngBounds\r\n   *\r\n   * Represents a rectangular geographical area on a map.\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * var corner1 = L.latLng(40.712, -74.227),\r\n   * corner2 = L.latLng(40.774, -74.125),\r\n   * bounds = L.latLngBounds(corner1, corner2);\r\n   * ```\r\n   *\r\n   * All Leaflet methods that accept LatLngBounds objects also accept them in a simple Array form (unless noted otherwise), so the bounds example above can be passed like this:\r\n   *\r\n   * ```js\r\n   * map.fitBounds([\r\n   * \t[40.712, -74.227],\r\n   * \t[40.774, -74.125]\r\n   * ]);\r\n   * ```\r\n   *\r\n   * Caution: if the area crosses the antimeridian (often confused with the International Date Line), you must specify corners _outside_ the [-180, 180] degrees longitude range.\r\n   *\r\n   * Note that `LatLngBounds` does not inherit from Leaflet's `Class` object,\r\n   * which means new classes can't inherit from it, and new methods\r\n   * can't be added to it with the `include` function.\r\n   */\r\n\r\n  function LatLngBounds(corner1, corner2) { // (LatLng, LatLng) or (LatLng[])\r\n  \tif (!corner1) { return; }\r\n\r\n  \tvar latlngs = corner2 ? [corner1, corner2] : corner1;\r\n\r\n  \tfor (var i = 0, len = latlngs.length; i < len; i++) {\r\n  \t\tthis.extend(latlngs[i]);\r\n  \t}\r\n  }\r\n\r\n  LatLngBounds.prototype = {\r\n\r\n  \t// @method extend(latlng: LatLng): this\r\n  \t// Extend the bounds to contain the given point\r\n\r\n  \t// @alternative\r\n  \t// @method extend(otherBounds: LatLngBounds): this\r\n  \t// Extend the bounds to contain the given bounds\r\n  \textend: function (obj) {\r\n  \t\tvar sw = this._southWest,\r\n  \t\t    ne = this._northEast,\r\n  \t\t    sw2, ne2;\r\n\r\n  \t\tif (obj instanceof LatLng) {\r\n  \t\t\tsw2 = obj;\r\n  \t\t\tne2 = obj;\r\n\r\n  \t\t} else if (obj instanceof LatLngBounds) {\r\n  \t\t\tsw2 = obj._southWest;\r\n  \t\t\tne2 = obj._northEast;\r\n\r\n  \t\t\tif (!sw2 || !ne2) { return this; }\r\n\r\n  \t\t} else {\r\n  \t\t\treturn obj ? this.extend(toLatLng(obj) || toLatLngBounds(obj)) : this;\r\n  \t\t}\r\n\r\n  \t\tif (!sw && !ne) {\r\n  \t\t\tthis._southWest = new LatLng(sw2.lat, sw2.lng);\r\n  \t\t\tthis._northEast = new LatLng(ne2.lat, ne2.lng);\r\n  \t\t} else {\r\n  \t\t\tsw.lat = Math.min(sw2.lat, sw.lat);\r\n  \t\t\tsw.lng = Math.min(sw2.lng, sw.lng);\r\n  \t\t\tne.lat = Math.max(ne2.lat, ne.lat);\r\n  \t\t\tne.lng = Math.max(ne2.lng, ne.lng);\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method pad(bufferRatio: Number): LatLngBounds\r\n  \t// Returns bounds created by extending or retracting the current bounds by a given ratio in each direction.\r\n  \t// For example, a ratio of 0.5 extends the bounds by 50% in each direction.\r\n  \t// Negative values will retract the bounds.\r\n  \tpad: function (bufferRatio) {\r\n  \t\tvar sw = this._southWest,\r\n  \t\t    ne = this._northEast,\r\n  \t\t    heightBuffer = Math.abs(sw.lat - ne.lat) * bufferRatio,\r\n  \t\t    widthBuffer = Math.abs(sw.lng - ne.lng) * bufferRatio;\r\n\r\n  \t\treturn new LatLngBounds(\r\n  \t\t        new LatLng(sw.lat - heightBuffer, sw.lng - widthBuffer),\r\n  \t\t        new LatLng(ne.lat + heightBuffer, ne.lng + widthBuffer));\r\n  \t},\r\n\r\n  \t// @method getCenter(): LatLng\r\n  \t// Returns the center point of the bounds.\r\n  \tgetCenter: function () {\r\n  \t\treturn new LatLng(\r\n  \t\t        (this._southWest.lat + this._northEast.lat) / 2,\r\n  \t\t        (this._southWest.lng + this._northEast.lng) / 2);\r\n  \t},\r\n\r\n  \t// @method getSouthWest(): LatLng\r\n  \t// Returns the south-west point of the bounds.\r\n  \tgetSouthWest: function () {\r\n  \t\treturn this._southWest;\r\n  \t},\r\n\r\n  \t// @method getNorthEast(): LatLng\r\n  \t// Returns the north-east point of the bounds.\r\n  \tgetNorthEast: function () {\r\n  \t\treturn this._northEast;\r\n  \t},\r\n\r\n  \t// @method getNorthWest(): LatLng\r\n  \t// Returns the north-west point of the bounds.\r\n  \tgetNorthWest: function () {\r\n  \t\treturn new LatLng(this.getNorth(), this.getWest());\r\n  \t},\r\n\r\n  \t// @method getSouthEast(): LatLng\r\n  \t// Returns the south-east point of the bounds.\r\n  \tgetSouthEast: function () {\r\n  \t\treturn new LatLng(this.getSouth(), this.getEast());\r\n  \t},\r\n\r\n  \t// @method getWest(): Number\r\n  \t// Returns the west longitude of the bounds\r\n  \tgetWest: function () {\r\n  \t\treturn this._southWest.lng;\r\n  \t},\r\n\r\n  \t// @method getSouth(): Number\r\n  \t// Returns the south latitude of the bounds\r\n  \tgetSouth: function () {\r\n  \t\treturn this._southWest.lat;\r\n  \t},\r\n\r\n  \t// @method getEast(): Number\r\n  \t// Returns the east longitude of the bounds\r\n  \tgetEast: function () {\r\n  \t\treturn this._northEast.lng;\r\n  \t},\r\n\r\n  \t// @method getNorth(): Number\r\n  \t// Returns the north latitude of the bounds\r\n  \tgetNorth: function () {\r\n  \t\treturn this._northEast.lat;\r\n  \t},\r\n\r\n  \t// @method contains(otherBounds: LatLngBounds): Boolean\r\n  \t// Returns `true` if the rectangle contains the given one.\r\n\r\n  \t// @alternative\r\n  \t// @method contains (latlng: LatLng): Boolean\r\n  \t// Returns `true` if the rectangle contains the given point.\r\n  \tcontains: function (obj) { // (LatLngBounds) or (LatLng) -> Boolean\r\n  \t\tif (typeof obj[0] === 'number' || obj instanceof LatLng || 'lat' in obj) {\r\n  \t\t\tobj = toLatLng(obj);\r\n  \t\t} else {\r\n  \t\t\tobj = toLatLngBounds(obj);\r\n  \t\t}\r\n\r\n  \t\tvar sw = this._southWest,\r\n  \t\t    ne = this._northEast,\r\n  \t\t    sw2, ne2;\r\n\r\n  \t\tif (obj instanceof LatLngBounds) {\r\n  \t\t\tsw2 = obj.getSouthWest();\r\n  \t\t\tne2 = obj.getNorthEast();\r\n  \t\t} else {\r\n  \t\t\tsw2 = ne2 = obj;\r\n  \t\t}\r\n\r\n  \t\treturn (sw2.lat >= sw.lat) && (ne2.lat <= ne.lat) &&\r\n  \t\t       (sw2.lng >= sw.lng) && (ne2.lng <= ne.lng);\r\n  \t},\r\n\r\n  \t// @method intersects(otherBounds: LatLngBounds): Boolean\r\n  \t// Returns `true` if the rectangle intersects the given bounds. Two bounds intersect if they have at least one point in common.\r\n  \tintersects: function (bounds) {\r\n  \t\tbounds = toLatLngBounds(bounds);\r\n\r\n  \t\tvar sw = this._southWest,\r\n  \t\t    ne = this._northEast,\r\n  \t\t    sw2 = bounds.getSouthWest(),\r\n  \t\t    ne2 = bounds.getNorthEast(),\r\n\r\n  \t\t    latIntersects = (ne2.lat >= sw.lat) && (sw2.lat <= ne.lat),\r\n  \t\t    lngIntersects = (ne2.lng >= sw.lng) && (sw2.lng <= ne.lng);\r\n\r\n  \t\treturn latIntersects && lngIntersects;\r\n  \t},\r\n\r\n  \t// @method overlaps(otherBounds: LatLngBounds): Boolean\r\n  \t// Returns `true` if the rectangle overlaps the given bounds. Two bounds overlap if their intersection is an area.\r\n  \toverlaps: function (bounds) {\r\n  \t\tbounds = toLatLngBounds(bounds);\r\n\r\n  \t\tvar sw = this._southWest,\r\n  \t\t    ne = this._northEast,\r\n  \t\t    sw2 = bounds.getSouthWest(),\r\n  \t\t    ne2 = bounds.getNorthEast(),\r\n\r\n  \t\t    latOverlaps = (ne2.lat > sw.lat) && (sw2.lat < ne.lat),\r\n  \t\t    lngOverlaps = (ne2.lng > sw.lng) && (sw2.lng < ne.lng);\r\n\r\n  \t\treturn latOverlaps && lngOverlaps;\r\n  \t},\r\n\r\n  \t// @method toBBoxString(): String\r\n  \t// Returns a string with bounding box coordinates in a 'southwest_lng,southwest_lat,northeast_lng,northeast_lat' format. Useful for sending requests to web services that return geo data.\r\n  \ttoBBoxString: function () {\r\n  \t\treturn [this.getWest(), this.getSouth(), this.getEast(), this.getNorth()].join(',');\r\n  \t},\r\n\r\n  \t// @method equals(otherBounds: LatLngBounds, maxMargin?: Number): Boolean\r\n  \t// Returns `true` if the rectangle is equivalent (within a small margin of error) to the given bounds. The margin of error can be overridden by setting `maxMargin` to a small number.\r\n  \tequals: function (bounds, maxMargin) {\r\n  \t\tif (!bounds) { return false; }\r\n\r\n  \t\tbounds = toLatLngBounds(bounds);\r\n\r\n  \t\treturn this._southWest.equals(bounds.getSouthWest(), maxMargin) &&\r\n  \t\t       this._northEast.equals(bounds.getNorthEast(), maxMargin);\r\n  \t},\r\n\r\n  \t// @method isValid(): Boolean\r\n  \t// Returns `true` if the bounds are properly initialized.\r\n  \tisValid: function () {\r\n  \t\treturn !!(this._southWest && this._northEast);\r\n  \t}\r\n  };\r\n\r\n  // TODO International date line?\r\n\r\n  // @factory L.latLngBounds(corner1: LatLng, corner2: LatLng)\r\n  // Creates a `LatLngBounds` object by defining two diagonally opposite corners of the rectangle.\r\n\r\n  // @alternative\r\n  // @factory L.latLngBounds(latlngs: LatLng[])\r\n  // Creates a `LatLngBounds` object defined by the geographical points it contains. Very useful for zooming the map to fit a particular set of locations with [`fitBounds`](#map-fitbounds).\r\n  function toLatLngBounds(a, b) {\r\n  \tif (a instanceof LatLngBounds) {\r\n  \t\treturn a;\r\n  \t}\r\n  \treturn new LatLngBounds(a, b);\r\n  }\n\n  /* @class LatLng\r\n   * @aka L.LatLng\r\n   *\r\n   * Represents a geographical point with a certain latitude and longitude.\r\n   *\r\n   * @example\r\n   *\r\n   * ```\r\n   * var latlng = L.latLng(50.5, 30.5);\r\n   * ```\r\n   *\r\n   * All Leaflet methods that accept LatLng objects also accept them in a simple Array form and simple object form (unless noted otherwise), so these lines are equivalent:\r\n   *\r\n   * ```\r\n   * map.panTo([50, 30]);\r\n   * map.panTo({lon: 30, lat: 50});\r\n   * map.panTo({lat: 50, lng: 30});\r\n   * map.panTo(L.latLng(50, 30));\r\n   * ```\r\n   *\r\n   * Note that `LatLng` does not inherit from Leaflet's `Class` object,\r\n   * which means new classes can't inherit from it, and new methods\r\n   * can't be added to it with the `include` function.\r\n   */\r\n\r\n  function LatLng(lat, lng, alt) {\r\n  \tif (isNaN(lat) || isNaN(lng)) {\r\n  \t\tthrow new Error('Invalid LatLng object: (' + lat + ', ' + lng + ')');\r\n  \t}\r\n\r\n  \t// @property lat: Number\r\n  \t// Latitude in degrees\r\n  \tthis.lat = +lat;\r\n\r\n  \t// @property lng: Number\r\n  \t// Longitude in degrees\r\n  \tthis.lng = +lng;\r\n\r\n  \t// @property alt: Number\r\n  \t// Altitude in meters (optional)\r\n  \tif (alt !== undefined) {\r\n  \t\tthis.alt = +alt;\r\n  \t}\r\n  }\r\n\r\n  LatLng.prototype = {\r\n  \t// @method equals(otherLatLng: LatLng, maxMargin?: Number): Boolean\r\n  \t// Returns `true` if the given `LatLng` point is at the same position (within a small margin of error). The margin of error can be overridden by setting `maxMargin` to a small number.\r\n  \tequals: function (obj, maxMargin) {\r\n  \t\tif (!obj) { return false; }\r\n\r\n  \t\tobj = toLatLng(obj);\r\n\r\n  \t\tvar margin = Math.max(\r\n  \t\t        Math.abs(this.lat - obj.lat),\r\n  \t\t        Math.abs(this.lng - obj.lng));\r\n\r\n  \t\treturn margin <= (maxMargin === undefined ? 1.0E-9 : maxMargin);\r\n  \t},\r\n\r\n  \t// @method toString(): String\r\n  \t// Returns a string representation of the point (for debugging purposes).\r\n  \ttoString: function (precision) {\r\n  \t\treturn 'LatLng(' +\r\n  \t\t        formatNum(this.lat, precision) + ', ' +\r\n  \t\t        formatNum(this.lng, precision) + ')';\r\n  \t},\r\n\r\n  \t// @method distanceTo(otherLatLng: LatLng): Number\r\n  \t// Returns the distance (in meters) to the given `LatLng` calculated using the [Spherical Law of Cosines](https://en.wikipedia.org/wiki/Spherical_law_of_cosines).\r\n  \tdistanceTo: function (other) {\r\n  \t\treturn Earth.distance(this, toLatLng(other));\r\n  \t},\r\n\r\n  \t// @method wrap(): LatLng\r\n  \t// Returns a new `LatLng` object with the longitude wrapped so it's always between -180 and +180 degrees.\r\n  \twrap: function () {\r\n  \t\treturn Earth.wrapLatLng(this);\r\n  \t},\r\n\r\n  \t// @method toBounds(sizeInMeters: Number): LatLngBounds\r\n  \t// Returns a new `LatLngBounds` object in which each boundary is `sizeInMeters/2` meters apart from the `LatLng`.\r\n  \ttoBounds: function (sizeInMeters) {\r\n  \t\tvar latAccuracy = 180 * sizeInMeters / 40075017,\r\n  \t\t    lngAccuracy = latAccuracy / Math.cos((Math.PI / 180) * this.lat);\r\n\r\n  \t\treturn toLatLngBounds(\r\n  \t\t        [this.lat - latAccuracy, this.lng - lngAccuracy],\r\n  \t\t        [this.lat + latAccuracy, this.lng + lngAccuracy]);\r\n  \t},\r\n\r\n  \tclone: function () {\r\n  \t\treturn new LatLng(this.lat, this.lng, this.alt);\r\n  \t}\r\n  };\r\n\r\n\r\n\r\n  // @factory L.latLng(latitude: Number, longitude: Number, altitude?: Number): LatLng\r\n  // Creates an object representing a geographical point with the given latitude and longitude (and optionally altitude).\r\n\r\n  // @alternative\r\n  // @factory L.latLng(coords: Array): LatLng\r\n  // Expects an array of the form `[Number, Number]` or `[Number, Number, Number]` instead.\r\n\r\n  // @alternative\r\n  // @factory L.latLng(coords: Object): LatLng\r\n  // Expects an plain object of the form `{lat: Number, lng: Number}` or `{lat: Number, lng: Number, alt: Number}` instead.\r\n\r\n  function toLatLng(a, b, c) {\r\n  \tif (a instanceof LatLng) {\r\n  \t\treturn a;\r\n  \t}\r\n  \tif (isArray(a) && typeof a[0] !== 'object') {\r\n  \t\tif (a.length === 3) {\r\n  \t\t\treturn new LatLng(a[0], a[1], a[2]);\r\n  \t\t}\r\n  \t\tif (a.length === 2) {\r\n  \t\t\treturn new LatLng(a[0], a[1]);\r\n  \t\t}\r\n  \t\treturn null;\r\n  \t}\r\n  \tif (a === undefined || a === null) {\r\n  \t\treturn a;\r\n  \t}\r\n  \tif (typeof a === 'object' && 'lat' in a) {\r\n  \t\treturn new LatLng(a.lat, 'lng' in a ? a.lng : a.lon, a.alt);\r\n  \t}\r\n  \tif (b === undefined) {\r\n  \t\treturn null;\r\n  \t}\r\n  \treturn new LatLng(a, b, c);\r\n  }\n\n  /*\r\n   * @namespace CRS\r\n   * @crs L.CRS.Base\r\n   * Object that defines coordinate reference systems for projecting\r\n   * geographical points into pixel (screen) coordinates and back (and to\r\n   * coordinates in other units for [WMS](https://en.wikipedia.org/wiki/Web_Map_Service) services). See\r\n   * [spatial reference system](http://en.wikipedia.org/wiki/Coordinate_reference_system).\r\n   *\r\n   * Leaflet defines the most usual CRSs by default. If you want to use a\r\n   * CRS not defined by default, take a look at the\r\n   * [Proj4Leaflet](https://github.com/kartena/Proj4Leaflet) plugin.\r\n   *\r\n   * Note that the CRS instances do not inherit from Leaflet's `Class` object,\r\n   * and can't be instantiated. Also, new classes can't inherit from them,\r\n   * and methods can't be added to them with the `include` function.\r\n   */\r\n\r\n  var CRS = {\r\n  \t// @method latLngToPoint(latlng: LatLng, zoom: Number): Point\r\n  \t// Projects geographical coordinates into pixel coordinates for a given zoom.\r\n  \tlatLngToPoint: function (latlng, zoom) {\r\n  \t\tvar projectedPoint = this.projection.project(latlng),\r\n  \t\t    scale = this.scale(zoom);\r\n\r\n  \t\treturn this.transformation._transform(projectedPoint, scale);\r\n  \t},\r\n\r\n  \t// @method pointToLatLng(point: Point, zoom: Number): LatLng\r\n  \t// The inverse of `latLngToPoint`. Projects pixel coordinates on a given\r\n  \t// zoom into geographical coordinates.\r\n  \tpointToLatLng: function (point, zoom) {\r\n  \t\tvar scale = this.scale(zoom),\r\n  \t\t    untransformedPoint = this.transformation.untransform(point, scale);\r\n\r\n  \t\treturn this.projection.unproject(untransformedPoint);\r\n  \t},\r\n\r\n  \t// @method project(latlng: LatLng): Point\r\n  \t// Projects geographical coordinates into coordinates in units accepted for\r\n  \t// this CRS (e.g. meters for EPSG:3857, for passing it to WMS services).\r\n  \tproject: function (latlng) {\r\n  \t\treturn this.projection.project(latlng);\r\n  \t},\r\n\r\n  \t// @method unproject(point: Point): LatLng\r\n  \t// Given a projected coordinate returns the corresponding LatLng.\r\n  \t// The inverse of `project`.\r\n  \tunproject: function (point) {\r\n  \t\treturn this.projection.unproject(point);\r\n  \t},\r\n\r\n  \t// @method scale(zoom: Number): Number\r\n  \t// Returns the scale used when transforming projected coordinates into\r\n  \t// pixel coordinates for a particular zoom. For example, it returns\r\n  \t// `256 * 2^zoom` for Mercator-based CRS.\r\n  \tscale: function (zoom) {\r\n  \t\treturn 256 * Math.pow(2, zoom);\r\n  \t},\r\n\r\n  \t// @method zoom(scale: Number): Number\r\n  \t// Inverse of `scale()`, returns the zoom level corresponding to a scale\r\n  \t// factor of `scale`.\r\n  \tzoom: function (scale) {\r\n  \t\treturn Math.log(scale / 256) / Math.LN2;\r\n  \t},\r\n\r\n  \t// @method getProjectedBounds(zoom: Number): Bounds\r\n  \t// Returns the projection's bounds scaled and transformed for the provided `zoom`.\r\n  \tgetProjectedBounds: function (zoom) {\r\n  \t\tif (this.infinite) { return null; }\r\n\r\n  \t\tvar b = this.projection.bounds,\r\n  \t\t    s = this.scale(zoom),\r\n  \t\t    min = this.transformation.transform(b.min, s),\r\n  \t\t    max = this.transformation.transform(b.max, s);\r\n\r\n  \t\treturn new Bounds(min, max);\r\n  \t},\r\n\r\n  \t// @method distance(latlng1: LatLng, latlng2: LatLng): Number\r\n  \t// Returns the distance between two geographical coordinates.\r\n\r\n  \t// @property code: String\r\n  \t// Standard code name of the CRS passed into WMS services (e.g. `'EPSG:3857'`)\r\n  \t//\r\n  \t// @property wrapLng: Number[]\r\n  \t// An array of two numbers defining whether the longitude (horizontal) coordinate\r\n  \t// axis wraps around a given range and how. Defaults to `[-180, 180]` in most\r\n  \t// geographical CRSs. If `undefined`, the longitude axis does not wrap around.\r\n  \t//\r\n  \t// @property wrapLat: Number[]\r\n  \t// Like `wrapLng`, but for the latitude (vertical) axis.\r\n\r\n  \t// wrapLng: [min, max],\r\n  \t// wrapLat: [min, max],\r\n\r\n  \t// @property infinite: Boolean\r\n  \t// If true, the coordinate space will be unbounded (infinite in both axes)\r\n  \tinfinite: false,\r\n\r\n  \t// @method wrapLatLng(latlng: LatLng): LatLng\r\n  \t// Returns a `LatLng` where lat and lng has been wrapped according to the\r\n  \t// CRS's `wrapLat` and `wrapLng` properties, if they are outside the CRS's bounds.\r\n  \twrapLatLng: function (latlng) {\r\n  \t\tvar lng = this.wrapLng ? wrapNum(latlng.lng, this.wrapLng, true) : latlng.lng,\r\n  \t\t    lat = this.wrapLat ? wrapNum(latlng.lat, this.wrapLat, true) : latlng.lat,\r\n  \t\t    alt = latlng.alt;\r\n\r\n  \t\treturn new LatLng(lat, lng, alt);\r\n  \t},\r\n\r\n  \t// @method wrapLatLngBounds(bounds: LatLngBounds): LatLngBounds\r\n  \t// Returns a `LatLngBounds` with the same size as the given one, ensuring\r\n  \t// that its center is within the CRS's bounds.\r\n  \t// Only accepts actual `L.LatLngBounds` instances, not arrays.\r\n  \twrapLatLngBounds: function (bounds) {\r\n  \t\tvar center = bounds.getCenter(),\r\n  \t\t    newCenter = this.wrapLatLng(center),\r\n  \t\t    latShift = center.lat - newCenter.lat,\r\n  \t\t    lngShift = center.lng - newCenter.lng;\r\n\r\n  \t\tif (latShift === 0 && lngShift === 0) {\r\n  \t\t\treturn bounds;\r\n  \t\t}\r\n\r\n  \t\tvar sw = bounds.getSouthWest(),\r\n  \t\t    ne = bounds.getNorthEast(),\r\n  \t\t    newSw = new LatLng(sw.lat - latShift, sw.lng - lngShift),\r\n  \t\t    newNe = new LatLng(ne.lat - latShift, ne.lng - lngShift);\r\n\r\n  \t\treturn new LatLngBounds(newSw, newNe);\r\n  \t}\r\n  };\n\n  /*\n   * @namespace CRS\n   * @crs L.CRS.Earth\n   *\n   * Serves as the base for CRS that are global such that they cover the earth.\n   * Can only be used as the base for other CRS and cannot be used directly,\n   * since it does not have a `code`, `projection` or `transformation`. `distance()` returns\n   * meters.\n   */\n\n  var Earth = extend({}, CRS, {\n  \twrapLng: [-180, 180],\n\n  \t// Mean Earth Radius, as recommended for use by\n  \t// the International Union of Geodesy and Geophysics,\n  \t// see http://rosettacode.org/wiki/Haversine_formula\n  \tR: 6371000,\n\n  \t// distance between two geographical points using spherical law of cosines approximation\n  \tdistance: function (latlng1, latlng2) {\n  \t\tvar rad = Math.PI / 180,\n  \t\t    lat1 = latlng1.lat * rad,\n  \t\t    lat2 = latlng2.lat * rad,\n  \t\t    sinDLat = Math.sin((latlng2.lat - latlng1.lat) * rad / 2),\n  \t\t    sinDLon = Math.sin((latlng2.lng - latlng1.lng) * rad / 2),\n  \t\t    a = sinDLat * sinDLat + Math.cos(lat1) * Math.cos(lat2) * sinDLon * sinDLon,\n  \t\t    c = 2 * Math.atan2(Math.sqrt(a), Math.sqrt(1 - a));\n  \t\treturn this.R * c;\n  \t}\n  });\n\n  /*\r\n   * @namespace Projection\r\n   * @projection L.Projection.SphericalMercator\r\n   *\r\n   * Spherical Mercator projection ā€” the most common projection for online maps,\r\n   * used by almost all free and commercial tile providers. Assumes that Earth is\r\n   * a sphere. Used by the `EPSG:3857` CRS.\r\n   */\r\n\r\n  var earthRadius = 6378137;\r\n\r\n  var SphericalMercator = {\r\n\r\n  \tR: earthRadius,\r\n  \tMAX_LATITUDE: 85.0511287798,\r\n\r\n  \tproject: function (latlng) {\r\n  \t\tvar d = Math.PI / 180,\r\n  \t\t    max = this.MAX_LATITUDE,\r\n  \t\t    lat = Math.max(Math.min(max, latlng.lat), -max),\r\n  \t\t    sin = Math.sin(lat * d);\r\n\r\n  \t\treturn new Point(\r\n  \t\t\tthis.R * latlng.lng * d,\r\n  \t\t\tthis.R * Math.log((1 + sin) / (1 - sin)) / 2);\r\n  \t},\r\n\r\n  \tunproject: function (point) {\r\n  \t\tvar d = 180 / Math.PI;\r\n\r\n  \t\treturn new LatLng(\r\n  \t\t\t(2 * Math.atan(Math.exp(point.y / this.R)) - (Math.PI / 2)) * d,\r\n  \t\t\tpoint.x * d / this.R);\r\n  \t},\r\n\r\n  \tbounds: (function () {\r\n  \t\tvar d = earthRadius * Math.PI;\r\n  \t\treturn new Bounds([-d, -d], [d, d]);\r\n  \t})()\r\n  };\n\n  /*\r\n   * @class Transformation\r\n   * @aka L.Transformation\r\n   *\r\n   * Represents an affine transformation: a set of coefficients `a`, `b`, `c`, `d`\r\n   * for transforming a point of a form `(x, y)` into `(a*x + b, c*y + d)` and doing\r\n   * the reverse. Used by Leaflet in its projections code.\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * var transformation = L.transformation(2, 5, -1, 10),\r\n   * \tp = L.point(1, 2),\r\n   * \tp2 = transformation.transform(p), //  L.point(7, 8)\r\n   * \tp3 = transformation.untransform(p2); //  L.point(1, 2)\r\n   * ```\r\n   */\r\n\r\n\r\n  // factory new L.Transformation(a: Number, b: Number, c: Number, d: Number)\r\n  // Creates a `Transformation` object with the given coefficients.\r\n  function Transformation(a, b, c, d) {\r\n  \tif (isArray(a)) {\r\n  \t\t// use array properties\r\n  \t\tthis._a = a[0];\r\n  \t\tthis._b = a[1];\r\n  \t\tthis._c = a[2];\r\n  \t\tthis._d = a[3];\r\n  \t\treturn;\r\n  \t}\r\n  \tthis._a = a;\r\n  \tthis._b = b;\r\n  \tthis._c = c;\r\n  \tthis._d = d;\r\n  }\r\n\r\n  Transformation.prototype = {\r\n  \t// @method transform(point: Point, scale?: Number): Point\r\n  \t// Returns a transformed point, optionally multiplied by the given scale.\r\n  \t// Only accepts actual `L.Point` instances, not arrays.\r\n  \ttransform: function (point, scale) { // (Point, Number) -> Point\r\n  \t\treturn this._transform(point.clone(), scale);\r\n  \t},\r\n\r\n  \t// destructive transform (faster)\r\n  \t_transform: function (point, scale) {\r\n  \t\tscale = scale || 1;\r\n  \t\tpoint.x = scale * (this._a * point.x + this._b);\r\n  \t\tpoint.y = scale * (this._c * point.y + this._d);\r\n  \t\treturn point;\r\n  \t},\r\n\r\n  \t// @method untransform(point: Point, scale?: Number): Point\r\n  \t// Returns the reverse transformation of the given point, optionally divided\r\n  \t// by the given scale. Only accepts actual `L.Point` instances, not arrays.\r\n  \tuntransform: function (point, scale) {\r\n  \t\tscale = scale || 1;\r\n  \t\treturn new Point(\r\n  \t\t        (point.x / scale - this._b) / this._a,\r\n  \t\t        (point.y / scale - this._d) / this._c);\r\n  \t}\r\n  };\r\n\r\n  // factory L.transformation(a: Number, b: Number, c: Number, d: Number)\r\n\r\n  // @factory L.transformation(a: Number, b: Number, c: Number, d: Number)\r\n  // Instantiates a Transformation object with the given coefficients.\r\n\r\n  // @alternative\r\n  // @factory L.transformation(coefficients: Array): Transformation\r\n  // Expects an coefficients array of the form\r\n  // `[a: Number, b: Number, c: Number, d: Number]`.\r\n\r\n  function toTransformation(a, b, c, d) {\r\n  \treturn new Transformation(a, b, c, d);\r\n  }\n\n  /*\r\n   * @namespace CRS\r\n   * @crs L.CRS.EPSG3857\r\n   *\r\n   * The most common CRS for online maps, used by almost all free and commercial\r\n   * tile providers. Uses Spherical Mercator projection. Set in by default in\r\n   * Map's `crs` option.\r\n   */\r\n\r\n  var EPSG3857 = extend({}, Earth, {\r\n  \tcode: 'EPSG:3857',\r\n  \tprojection: SphericalMercator,\r\n\r\n  \ttransformation: (function () {\r\n  \t\tvar scale = 0.5 / (Math.PI * SphericalMercator.R);\r\n  \t\treturn toTransformation(scale, 0.5, -scale, 0.5);\r\n  \t}())\r\n  });\r\n\r\n  var EPSG900913 = extend({}, EPSG3857, {\r\n  \tcode: 'EPSG:900913'\r\n  });\n\n  // @namespace SVG; @section\n  // There are several static functions which can be called without instantiating L.SVG:\n\n  // @function create(name: String): SVGElement\n  // Returns a instance of [SVGElement](https://developer.mozilla.org/docs/Web/API/SVGElement),\n  // corresponding to the class name passed. For example, using 'line' will return\n  // an instance of [SVGLineElement](https://developer.mozilla.org/docs/Web/API/SVGLineElement).\n  function svgCreate(name) {\n  \treturn document.createElementNS('http://www.w3.org/2000/svg', name);\n  }\n\n  // @function pointsToPath(rings: Point[], closed: Boolean): String\n  // Generates a SVG path string for multiple rings, with each ring turning\n  // into \"M..L..L..\" instructions\n  function pointsToPath(rings, closed) {\n  \tvar str = '',\n  \ti, j, len, len2, points, p;\n\n  \tfor (i = 0, len = rings.length; i < len; i++) {\n  \t\tpoints = rings[i];\n\n  \t\tfor (j = 0, len2 = points.length; j < len2; j++) {\n  \t\t\tp = points[j];\n  \t\t\tstr += (j ? 'L' : 'M') + p.x + ' ' + p.y;\n  \t\t}\n\n  \t\t// closes the ring for polygons; \"x\" is VML syntax\n  \t\tstr += closed ? (svg ? 'z' : 'x') : '';\n  \t}\n\n  \t// SVG complains about empty path strings\n  \treturn str || 'M0 0';\n  }\n\n  /*\r\n   * @namespace Browser\r\n   * @aka L.Browser\r\n   *\r\n   * A namespace with static properties for browser/feature detection used by Leaflet internally.\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * if (L.Browser.ielt9) {\r\n   *   alert('Upgrade your browser, dude!');\r\n   * }\r\n   * ```\r\n   */\r\n\r\n  var style$1 = document.documentElement.style;\r\n\r\n  // @property ie: Boolean; `true` for all Internet Explorer versions (not Edge).\r\n  var ie = 'ActiveXObject' in window;\r\n\r\n  // @property ielt9: Boolean; `true` for Internet Explorer versions less than 9.\r\n  var ielt9 = ie && !document.addEventListener;\r\n\r\n  // @property edge: Boolean; `true` for the Edge web browser.\r\n  var edge = 'msLaunchUri' in navigator && !('documentMode' in document);\r\n\r\n  // @property webkit: Boolean;\r\n  // `true` for webkit-based browsers like Chrome and Safari (including mobile versions).\r\n  var webkit = userAgentContains('webkit');\r\n\r\n  // @property android: Boolean\r\n  // `true` for any browser running on an Android platform.\r\n  var android = userAgentContains('android');\r\n\r\n  // @property android23: Boolean; `true` for browsers running on Android 2 or Android 3.\r\n  var android23 = userAgentContains('android 2') || userAgentContains('android 3');\r\n\r\n  /* See https://stackoverflow.com/a/17961266 for details on detecting stock Android */\r\n  var webkitVer = parseInt(/WebKit\\/([0-9]+)|$/.exec(navigator.userAgent)[1], 10); // also matches AppleWebKit\r\n  // @property androidStock: Boolean; `true` for the Android stock browser (i.e. not Chrome)\r\n  var androidStock = android && userAgentContains('Google') && webkitVer < 537 && !('AudioNode' in window);\r\n\r\n  // @property opera: Boolean; `true` for the Opera browser\r\n  var opera = !!window.opera;\r\n\r\n  // @property chrome: Boolean; `true` for the Chrome browser.\r\n  var chrome = !edge && userAgentContains('chrome');\r\n\r\n  // @property gecko: Boolean; `true` for gecko-based browsers like Firefox.\r\n  var gecko = userAgentContains('gecko') && !webkit && !opera && !ie;\r\n\r\n  // @property safari: Boolean; `true` for the Safari browser.\r\n  var safari = !chrome && userAgentContains('safari');\r\n\r\n  var phantom = userAgentContains('phantom');\r\n\r\n  // @property opera12: Boolean\r\n  // `true` for the Opera browser supporting CSS transforms (version 12 or later).\r\n  var opera12 = 'OTransition' in style$1;\r\n\r\n  // @property win: Boolean; `true` when the browser is running in a Windows platform\r\n  var win = navigator.platform.indexOf('Win') === 0;\r\n\r\n  // @property ie3d: Boolean; `true` for all Internet Explorer versions supporting CSS transforms.\r\n  var ie3d = ie && ('transition' in style$1);\r\n\r\n  // @property webkit3d: Boolean; `true` for webkit-based browsers supporting CSS transforms.\r\n  var webkit3d = ('WebKitCSSMatrix' in window) && ('m11' in new window.WebKitCSSMatrix()) && !android23;\r\n\r\n  // @property gecko3d: Boolean; `true` for gecko-based browsers supporting CSS transforms.\r\n  var gecko3d = 'MozPerspective' in style$1;\r\n\r\n  // @property any3d: Boolean\r\n  // `true` for all browsers supporting CSS transforms.\r\n  var any3d = !window.L_DISABLE_3D && (ie3d || webkit3d || gecko3d) && !opera12 && !phantom;\r\n\r\n  // @property mobile: Boolean; `true` for all browsers running in a mobile device.\r\n  var mobile = typeof orientation !== 'undefined' || userAgentContains('mobile');\r\n\r\n  // @property mobileWebkit: Boolean; `true` for all webkit-based browsers in a mobile device.\r\n  var mobileWebkit = mobile && webkit;\r\n\r\n  // @property mobileWebkit3d: Boolean\r\n  // `true` for all webkit-based browsers in a mobile device supporting CSS transforms.\r\n  var mobileWebkit3d = mobile && webkit3d;\r\n\r\n  // @property msPointer: Boolean\r\n  // `true` for browsers implementing the Microsoft touch events model (notably IE10).\r\n  var msPointer = !window.PointerEvent && window.MSPointerEvent;\r\n\r\n  // @property pointer: Boolean\r\n  // `true` for all browsers supporting [pointer events](https://msdn.microsoft.com/en-us/library/dn433244%28v=vs.85%29.aspx).\r\n  var pointer = !!(window.PointerEvent || msPointer);\r\n\r\n  // @property touch: Boolean\r\n  // `true` for all browsers supporting [touch events](https://developer.mozilla.org/docs/Web/API/Touch_events).\r\n  // This does not necessarily mean that the browser is running in a computer with\r\n  // a touchscreen, it only means that the browser is capable of understanding\r\n  // touch events.\r\n  var touch = !window.L_NO_TOUCH && (pointer || 'ontouchstart' in window ||\r\n  \t\t(window.DocumentTouch && document instanceof window.DocumentTouch));\r\n\r\n  // @property mobileOpera: Boolean; `true` for the Opera browser in a mobile device.\r\n  var mobileOpera = mobile && opera;\r\n\r\n  // @property mobileGecko: Boolean\r\n  // `true` for gecko-based browsers running in a mobile device.\r\n  var mobileGecko = mobile && gecko;\r\n\r\n  // @property retina: Boolean\r\n  // `true` for browsers on a high-resolution \"retina\" screen or on any screen when browser's display zoom is more than 100%.\r\n  var retina = (window.devicePixelRatio || (window.screen.deviceXDPI / window.screen.logicalXDPI)) > 1;\r\n\r\n  // @property passiveEvents: Boolean\r\n  // `true` for browsers that support passive events.\r\n  var passiveEvents = (function () {\r\n  \tvar supportsPassiveOption = false;\r\n  \ttry {\r\n  \t\tvar opts = Object.defineProperty({}, 'passive', {\r\n  \t\t\tget: function () { // eslint-disable-line getter-return\r\n  \t\t\t\tsupportsPassiveOption = true;\r\n  \t\t\t}\r\n  \t\t});\r\n  \t\twindow.addEventListener('testPassiveEventSupport', falseFn, opts);\r\n  \t\twindow.removeEventListener('testPassiveEventSupport', falseFn, opts);\r\n  \t} catch (e) {\r\n  \t\t// Errors can safely be ignored since this is only a browser support test.\r\n  \t}\r\n  \treturn supportsPassiveOption;\r\n  }());\r\n\r\n  // @property canvas: Boolean\r\n  // `true` when the browser supports [`<canvas>`](https://developer.mozilla.org/docs/Web/API/Canvas_API).\r\n  var canvas = (function () {\r\n  \treturn !!document.createElement('canvas').getContext;\r\n  }());\r\n\r\n  // @property svg: Boolean\r\n  // `true` when the browser supports [SVG](https://developer.mozilla.org/docs/Web/SVG).\r\n  var svg = !!(document.createElementNS && svgCreate('svg').createSVGRect);\r\n\r\n  // @property vml: Boolean\r\n  // `true` if the browser supports [VML](https://en.wikipedia.org/wiki/Vector_Markup_Language).\r\n  var vml = !svg && (function () {\r\n  \ttry {\r\n  \t\tvar div = document.createElement('div');\r\n  \t\tdiv.innerHTML = '<v:shape adj=\"1\"/>';\r\n\r\n  \t\tvar shape = div.firstChild;\r\n  \t\tshape.style.behavior = 'url(#default#VML)';\r\n\r\n  \t\treturn shape && (typeof shape.adj === 'object');\r\n\r\n  \t} catch (e) {\r\n  \t\treturn false;\r\n  \t}\r\n  }());\r\n\r\n\r\n  function userAgentContains(str) {\r\n  \treturn navigator.userAgent.toLowerCase().indexOf(str) >= 0;\r\n  }\n\n  var Browser = ({\n    ie: ie,\n    ielt9: ielt9,\n    edge: edge,\n    webkit: webkit,\n    android: android,\n    android23: android23,\n    androidStock: androidStock,\n    opera: opera,\n    chrome: chrome,\n    gecko: gecko,\n    safari: safari,\n    phantom: phantom,\n    opera12: opera12,\n    win: win,\n    ie3d: ie3d,\n    webkit3d: webkit3d,\n    gecko3d: gecko3d,\n    any3d: any3d,\n    mobile: mobile,\n    mobileWebkit: mobileWebkit,\n    mobileWebkit3d: mobileWebkit3d,\n    msPointer: msPointer,\n    pointer: pointer,\n    touch: touch,\n    mobileOpera: mobileOpera,\n    mobileGecko: mobileGecko,\n    retina: retina,\n    passiveEvents: passiveEvents,\n    canvas: canvas,\n    svg: svg,\n    vml: vml\n  });\n\n  /*\n   * Extends L.DomEvent to provide touch support for Internet Explorer and Windows-based devices.\n   */\n\n\n  var POINTER_DOWN =   msPointer ? 'MSPointerDown'   : 'pointerdown';\n  var POINTER_MOVE =   msPointer ? 'MSPointerMove'   : 'pointermove';\n  var POINTER_UP =     msPointer ? 'MSPointerUp'     : 'pointerup';\n  var POINTER_CANCEL = msPointer ? 'MSPointerCancel' : 'pointercancel';\n\n  var _pointers = {};\n  var _pointerDocListener = false;\n\n  // Provides a touch events wrapper for (ms)pointer events.\n  // ref http://www.w3.org/TR/pointerevents/ https://www.w3.org/Bugs/Public/show_bug.cgi?id=22890\n\n  function addPointerListener(obj, type, handler, id) {\n  \tif (type === 'touchstart') {\n  \t\t_addPointerStart(obj, handler, id);\n\n  \t} else if (type === 'touchmove') {\n  \t\t_addPointerMove(obj, handler, id);\n\n  \t} else if (type === 'touchend') {\n  \t\t_addPointerEnd(obj, handler, id);\n  \t}\n\n  \treturn this;\n  }\n\n  function removePointerListener(obj, type, id) {\n  \tvar handler = obj['_leaflet_' + type + id];\n\n  \tif (type === 'touchstart') {\n  \t\tobj.removeEventListener(POINTER_DOWN, handler, false);\n\n  \t} else if (type === 'touchmove') {\n  \t\tobj.removeEventListener(POINTER_MOVE, handler, false);\n\n  \t} else if (type === 'touchend') {\n  \t\tobj.removeEventListener(POINTER_UP, handler, false);\n  \t\tobj.removeEventListener(POINTER_CANCEL, handler, false);\n  \t}\n\n  \treturn this;\n  }\n\n  function _addPointerStart(obj, handler, id) {\n  \tvar onDown = bind(function (e) {\n  \t\t// IE10 specific: MsTouch needs preventDefault. See #2000\n  \t\tif (e.MSPOINTER_TYPE_TOUCH && e.pointerType === e.MSPOINTER_TYPE_TOUCH) {\n  \t\t\tpreventDefault(e);\n  \t\t}\n\n  \t\t_handlePointer(e, handler);\n  \t});\n\n  \tobj['_leaflet_touchstart' + id] = onDown;\n  \tobj.addEventListener(POINTER_DOWN, onDown, false);\n\n  \t// need to keep track of what pointers and how many are active to provide e.touches emulation\n  \tif (!_pointerDocListener) {\n  \t\t// we listen document as any drags that end by moving the touch off the screen get fired there\n  \t\tdocument.addEventListener(POINTER_DOWN, _globalPointerDown, true);\n  \t\tdocument.addEventListener(POINTER_MOVE, _globalPointerMove, true);\n  \t\tdocument.addEventListener(POINTER_UP, _globalPointerUp, true);\n  \t\tdocument.addEventListener(POINTER_CANCEL, _globalPointerUp, true);\n\n  \t\t_pointerDocListener = true;\n  \t}\n  }\n\n  function _globalPointerDown(e) {\n  \t_pointers[e.pointerId] = e;\n  }\n\n  function _globalPointerMove(e) {\n  \tif (_pointers[e.pointerId]) {\n  \t\t_pointers[e.pointerId] = e;\n  \t}\n  }\n\n  function _globalPointerUp(e) {\n  \tdelete _pointers[e.pointerId];\n  }\n\n  function _handlePointer(e, handler) {\n  \te.touches = [];\n  \tfor (var i in _pointers) {\n  \t\te.touches.push(_pointers[i]);\n  \t}\n  \te.changedTouches = [e];\n\n  \thandler(e);\n  }\n\n  function _addPointerMove(obj, handler, id) {\n  \tvar onMove = function (e) {\n  \t\t// don't fire touch moves when mouse isn't down\n  \t\tif ((e.pointerType === (e.MSPOINTER_TYPE_MOUSE || 'mouse')) && e.buttons === 0) {\n  \t\t\treturn;\n  \t\t}\n\n  \t\t_handlePointer(e, handler);\n  \t};\n\n  \tobj['_leaflet_touchmove' + id] = onMove;\n  \tobj.addEventListener(POINTER_MOVE, onMove, false);\n  }\n\n  function _addPointerEnd(obj, handler, id) {\n  \tvar onUp = function (e) {\n  \t\t_handlePointer(e, handler);\n  \t};\n\n  \tobj['_leaflet_touchend' + id] = onUp;\n  \tobj.addEventListener(POINTER_UP, onUp, false);\n  \tobj.addEventListener(POINTER_CANCEL, onUp, false);\n  }\n\n  /*\r\n   * Extends the event handling code with double tap support for mobile browsers.\r\n   */\r\n\r\n  var _touchstart = msPointer ? 'MSPointerDown' : pointer ? 'pointerdown' : 'touchstart';\r\n  var _touchend = msPointer ? 'MSPointerUp' : pointer ? 'pointerup' : 'touchend';\r\n  var _pre = '_leaflet_';\r\n\r\n  // inspired by Zepto touch code by Thomas Fuchs\r\n  function addDoubleTapListener(obj, handler, id) {\r\n  \tvar last, touch$$1,\r\n  \t    doubleTap = false,\r\n  \t    delay = 250;\r\n\r\n  \tfunction onTouchStart(e) {\r\n\r\n  \t\tif (pointer) {\r\n  \t\t\tif (!e.isPrimary) { return; }\r\n  \t\t\tif (e.pointerType === 'mouse') { return; } // mouse fires native dblclick\r\n  \t\t} else if (e.touches.length > 1) {\r\n  \t\t\treturn;\r\n  \t\t}\r\n\r\n  \t\tvar now = Date.now(),\r\n  \t\t    delta = now - (last || now);\r\n\r\n  \t\ttouch$$1 = e.touches ? e.touches[0] : e;\r\n  \t\tdoubleTap = (delta > 0 && delta <= delay);\r\n  \t\tlast = now;\r\n  \t}\r\n\r\n  \tfunction onTouchEnd(e) {\r\n  \t\tif (doubleTap && !touch$$1.cancelBubble) {\r\n  \t\t\tif (pointer) {\r\n  \t\t\t\tif (e.pointerType === 'mouse') { return; }\r\n  \t\t\t\t// work around .type being readonly with MSPointer* events\r\n  \t\t\t\tvar newTouch = {},\r\n  \t\t\t\t    prop, i;\r\n\r\n  \t\t\t\tfor (i in touch$$1) {\r\n  \t\t\t\t\tprop = touch$$1[i];\r\n  \t\t\t\t\tnewTouch[i] = prop && prop.bind ? prop.bind(touch$$1) : prop;\r\n  \t\t\t\t}\r\n  \t\t\t\ttouch$$1 = newTouch;\r\n  \t\t\t}\r\n  \t\t\ttouch$$1.type = 'dblclick';\r\n  \t\t\ttouch$$1.button = 0;\r\n  \t\t\thandler(touch$$1);\r\n  \t\t\tlast = null;\r\n  \t\t}\r\n  \t}\r\n\r\n  \tobj[_pre + _touchstart + id] = onTouchStart;\r\n  \tobj[_pre + _touchend + id] = onTouchEnd;\r\n  \tobj[_pre + 'dblclick' + id] = handler;\r\n\r\n  \tobj.addEventListener(_touchstart, onTouchStart, passiveEvents ? {passive: false} : false);\r\n  \tobj.addEventListener(_touchend, onTouchEnd, passiveEvents ? {passive: false} : false);\r\n\r\n  \t// On some platforms (notably, chrome<55 on win10 + touchscreen + mouse),\r\n  \t// the browser doesn't fire touchend/pointerup events but does fire\r\n  \t// native dblclicks. See #4127.\r\n  \t// Edge 14 also fires native dblclicks, but only for pointerType mouse, see #5180.\r\n  \tobj.addEventListener('dblclick', handler, false);\r\n\r\n  \treturn this;\r\n  }\r\n\r\n  function removeDoubleTapListener(obj, id) {\r\n  \tvar touchstart = obj[_pre + _touchstart + id],\r\n  \t    touchend = obj[_pre + _touchend + id],\r\n  \t    dblclick = obj[_pre + 'dblclick' + id];\r\n\r\n  \tobj.removeEventListener(_touchstart, touchstart, passiveEvents ? {passive: false} : false);\r\n  \tobj.removeEventListener(_touchend, touchend, passiveEvents ? {passive: false} : false);\r\n  \tobj.removeEventListener('dblclick', dblclick, false);\r\n\r\n  \treturn this;\r\n  }\n\n  /*\r\n   * @namespace DomUtil\r\n   *\r\n   * Utility functions to work with the [DOM](https://developer.mozilla.org/docs/Web/API/Document_Object_Model)\r\n   * tree, used by Leaflet internally.\r\n   *\r\n   * Most functions expecting or returning a `HTMLElement` also work for\r\n   * SVG elements. The only difference is that classes refer to CSS classes\r\n   * in HTML and SVG classes in SVG.\r\n   */\r\n\r\n\r\n  // @property TRANSFORM: String\r\n  // Vendor-prefixed transform style name (e.g. `'webkitTransform'` for WebKit).\r\n  var TRANSFORM = testProp(\r\n  \t['transform', 'webkitTransform', 'OTransform', 'MozTransform', 'msTransform']);\r\n\r\n  // webkitTransition comes first because some browser versions that drop vendor prefix don't do\r\n  // the same for the transitionend event, in particular the Android 4.1 stock browser\r\n\r\n  // @property TRANSITION: String\r\n  // Vendor-prefixed transition style name.\r\n  var TRANSITION = testProp(\r\n  \t['webkitTransition', 'transition', 'OTransition', 'MozTransition', 'msTransition']);\r\n\r\n  // @property TRANSITION_END: String\r\n  // Vendor-prefixed transitionend event name.\r\n  var TRANSITION_END =\r\n  \tTRANSITION === 'webkitTransition' || TRANSITION === 'OTransition' ? TRANSITION + 'End' : 'transitionend';\r\n\r\n\r\n  // @function get(id: String|HTMLElement): HTMLElement\r\n  // Returns an element given its DOM id, or returns the element itself\r\n  // if it was passed directly.\r\n  function get(id) {\r\n  \treturn typeof id === 'string' ? document.getElementById(id) : id;\r\n  }\r\n\r\n  // @function getStyle(el: HTMLElement, styleAttrib: String): String\r\n  // Returns the value for a certain style attribute on an element,\r\n  // including computed values or values set through CSS.\r\n  function getStyle(el, style) {\r\n  \tvar value = el.style[style] || (el.currentStyle && el.currentStyle[style]);\r\n\r\n  \tif ((!value || value === 'auto') && document.defaultView) {\r\n  \t\tvar css = document.defaultView.getComputedStyle(el, null);\r\n  \t\tvalue = css ? css[style] : null;\r\n  \t}\r\n  \treturn value === 'auto' ? null : value;\r\n  }\r\n\r\n  // @function create(tagName: String, className?: String, container?: HTMLElement): HTMLElement\r\n  // Creates an HTML element with `tagName`, sets its class to `className`, and optionally appends it to `container` element.\r\n  function create$1(tagName, className, container) {\r\n  \tvar el = document.createElement(tagName);\r\n  \tel.className = className || '';\r\n\r\n  \tif (container) {\r\n  \t\tcontainer.appendChild(el);\r\n  \t}\r\n  \treturn el;\r\n  }\r\n\r\n  // @function remove(el: HTMLElement)\r\n  // Removes `el` from its parent element\r\n  function remove(el) {\r\n  \tvar parent = el.parentNode;\r\n  \tif (parent) {\r\n  \t\tparent.removeChild(el);\r\n  \t}\r\n  }\r\n\r\n  // @function empty(el: HTMLElement)\r\n  // Removes all of `el`'s children elements from `el`\r\n  function empty(el) {\r\n  \twhile (el.firstChild) {\r\n  \t\tel.removeChild(el.firstChild);\r\n  \t}\r\n  }\r\n\r\n  // @function toFront(el: HTMLElement)\r\n  // Makes `el` the last child of its parent, so it renders in front of the other children.\r\n  function toFront(el) {\r\n  \tvar parent = el.parentNode;\r\n  \tif (parent && parent.lastChild !== el) {\r\n  \t\tparent.appendChild(el);\r\n  \t}\r\n  }\r\n\r\n  // @function toBack(el: HTMLElement)\r\n  // Makes `el` the first child of its parent, so it renders behind the other children.\r\n  function toBack(el) {\r\n  \tvar parent = el.parentNode;\r\n  \tif (parent && parent.firstChild !== el) {\r\n  \t\tparent.insertBefore(el, parent.firstChild);\r\n  \t}\r\n  }\r\n\r\n  // @function hasClass(el: HTMLElement, name: String): Boolean\r\n  // Returns `true` if the element's class attribute contains `name`.\r\n  function hasClass(el, name) {\r\n  \tif (el.classList !== undefined) {\r\n  \t\treturn el.classList.contains(name);\r\n  \t}\r\n  \tvar className = getClass(el);\r\n  \treturn className.length > 0 && new RegExp('(^|\\\\s)' + name + '(\\\\s|$)').test(className);\r\n  }\r\n\r\n  // @function addClass(el: HTMLElement, name: String)\r\n  // Adds `name` to the element's class attribute.\r\n  function addClass(el, name) {\r\n  \tif (el.classList !== undefined) {\r\n  \t\tvar classes = splitWords(name);\r\n  \t\tfor (var i = 0, len = classes.length; i < len; i++) {\r\n  \t\t\tel.classList.add(classes[i]);\r\n  \t\t}\r\n  \t} else if (!hasClass(el, name)) {\r\n  \t\tvar className = getClass(el);\r\n  \t\tsetClass(el, (className ? className + ' ' : '') + name);\r\n  \t}\r\n  }\r\n\r\n  // @function removeClass(el: HTMLElement, name: String)\r\n  // Removes `name` from the element's class attribute.\r\n  function removeClass(el, name) {\r\n  \tif (el.classList !== undefined) {\r\n  \t\tel.classList.remove(name);\r\n  \t} else {\r\n  \t\tsetClass(el, trim((' ' + getClass(el) + ' ').replace(' ' + name + ' ', ' ')));\r\n  \t}\r\n  }\r\n\r\n  // @function setClass(el: HTMLElement, name: String)\r\n  // Sets the element's class.\r\n  function setClass(el, name) {\r\n  \tif (el.className.baseVal === undefined) {\r\n  \t\tel.className = name;\r\n  \t} else {\r\n  \t\t// in case of SVG element\r\n  \t\tel.className.baseVal = name;\r\n  \t}\r\n  }\r\n\r\n  // @function getClass(el: HTMLElement): String\r\n  // Returns the element's class.\r\n  function getClass(el) {\r\n  \t// Check if the element is an SVGElementInstance and use the correspondingElement instead\r\n  \t// (Required for linked SVG elements in IE11.)\r\n  \tif (el.correspondingElement) {\r\n  \t\tel = el.correspondingElement;\r\n  \t}\r\n  \treturn el.className.baseVal === undefined ? el.className : el.className.baseVal;\r\n  }\r\n\r\n  // @function setOpacity(el: HTMLElement, opacity: Number)\r\n  // Set the opacity of an element (including old IE support).\r\n  // `opacity` must be a number from `0` to `1`.\r\n  function setOpacity(el, value) {\r\n  \tif ('opacity' in el.style) {\r\n  \t\tel.style.opacity = value;\r\n  \t} else if ('filter' in el.style) {\r\n  \t\t_setOpacityIE(el, value);\r\n  \t}\r\n  }\r\n\r\n  function _setOpacityIE(el, value) {\r\n  \tvar filter = false,\r\n  \t    filterName = 'DXImageTransform.Microsoft.Alpha';\r\n\r\n  \t// filters collection throws an error if we try to retrieve a filter that doesn't exist\r\n  \ttry {\r\n  \t\tfilter = el.filters.item(filterName);\r\n  \t} catch (e) {\r\n  \t\t// don't set opacity to 1 if we haven't already set an opacity,\r\n  \t\t// it isn't needed and breaks transparent pngs.\r\n  \t\tif (value === 1) { return; }\r\n  \t}\r\n\r\n  \tvalue = Math.round(value * 100);\r\n\r\n  \tif (filter) {\r\n  \t\tfilter.Enabled = (value !== 100);\r\n  \t\tfilter.Opacity = value;\r\n  \t} else {\r\n  \t\tel.style.filter += ' progid:' + filterName + '(opacity=' + value + ')';\r\n  \t}\r\n  }\r\n\r\n  // @function testProp(props: String[]): String|false\r\n  // Goes through the array of style names and returns the first name\r\n  // that is a valid style name for an element. If no such name is found,\r\n  // it returns false. Useful for vendor-prefixed styles like `transform`.\r\n  function testProp(props) {\r\n  \tvar style = document.documentElement.style;\r\n\r\n  \tfor (var i = 0; i < props.length; i++) {\r\n  \t\tif (props[i] in style) {\r\n  \t\t\treturn props[i];\r\n  \t\t}\r\n  \t}\r\n  \treturn false;\r\n  }\r\n\r\n  // @function setTransform(el: HTMLElement, offset: Point, scale?: Number)\r\n  // Resets the 3D CSS transform of `el` so it is translated by `offset` pixels\r\n  // and optionally scaled by `scale`. Does not have an effect if the\r\n  // browser doesn't support 3D CSS transforms.\r\n  function setTransform(el, offset, scale) {\r\n  \tvar pos = offset || new Point(0, 0);\r\n\r\n  \tel.style[TRANSFORM] =\r\n  \t\t(ie3d ?\r\n  \t\t\t'translate(' + pos.x + 'px,' + pos.y + 'px)' :\r\n  \t\t\t'translate3d(' + pos.x + 'px,' + pos.y + 'px,0)') +\r\n  \t\t(scale ? ' scale(' + scale + ')' : '');\r\n  }\r\n\r\n  // @function setPosition(el: HTMLElement, position: Point)\r\n  // Sets the position of `el` to coordinates specified by `position`,\r\n  // using CSS translate or top/left positioning depending on the browser\r\n  // (used by Leaflet internally to position its layers).\r\n  function setPosition(el, point) {\r\n\r\n  \t/*eslint-disable */\r\n  \tel._leaflet_pos = point;\r\n  \t/* eslint-enable */\r\n\r\n  \tif (any3d) {\r\n  \t\tsetTransform(el, point);\r\n  \t} else {\r\n  \t\tel.style.left = point.x + 'px';\r\n  \t\tel.style.top = point.y + 'px';\r\n  \t}\r\n  }\r\n\r\n  // @function getPosition(el: HTMLElement): Point\r\n  // Returns the coordinates of an element previously positioned with setPosition.\r\n  function getPosition(el) {\r\n  \t// this method is only used for elements previously positioned using setPosition,\r\n  \t// so it's safe to cache the position for performance\r\n\r\n  \treturn el._leaflet_pos || new Point(0, 0);\r\n  }\r\n\r\n  // @function disableTextSelection()\r\n  // Prevents the user from generating `selectstart` DOM events, usually generated\r\n  // when the user drags the mouse through a page with text. Used internally\r\n  // by Leaflet to override the behaviour of any click-and-drag interaction on\r\n  // the map. Affects drag interactions on the whole document.\r\n\r\n  // @function enableTextSelection()\r\n  // Cancels the effects of a previous [`L.DomUtil.disableTextSelection`](#domutil-disabletextselection).\r\n  var disableTextSelection;\r\n  var enableTextSelection;\r\n  var _userSelect;\r\n  if ('onselectstart' in document) {\r\n  \tdisableTextSelection = function () {\r\n  \t\ton(window, 'selectstart', preventDefault);\r\n  \t};\r\n  \tenableTextSelection = function () {\r\n  \t\toff(window, 'selectstart', preventDefault);\r\n  \t};\r\n  } else {\r\n  \tvar userSelectProperty = testProp(\r\n  \t\t['userSelect', 'WebkitUserSelect', 'OUserSelect', 'MozUserSelect', 'msUserSelect']);\r\n\r\n  \tdisableTextSelection = function () {\r\n  \t\tif (userSelectProperty) {\r\n  \t\t\tvar style = document.documentElement.style;\r\n  \t\t\t_userSelect = style[userSelectProperty];\r\n  \t\t\tstyle[userSelectProperty] = 'none';\r\n  \t\t}\r\n  \t};\r\n  \tenableTextSelection = function () {\r\n  \t\tif (userSelectProperty) {\r\n  \t\t\tdocument.documentElement.style[userSelectProperty] = _userSelect;\r\n  \t\t\t_userSelect = undefined;\r\n  \t\t}\r\n  \t};\r\n  }\r\n\r\n  // @function disableImageDrag()\r\n  // As [`L.DomUtil.disableTextSelection`](#domutil-disabletextselection), but\r\n  // for `dragstart` DOM events, usually generated when the user drags an image.\r\n  function disableImageDrag() {\r\n  \ton(window, 'dragstart', preventDefault);\r\n  }\r\n\r\n  // @function enableImageDrag()\r\n  // Cancels the effects of a previous [`L.DomUtil.disableImageDrag`](#domutil-disabletextselection).\r\n  function enableImageDrag() {\r\n  \toff(window, 'dragstart', preventDefault);\r\n  }\r\n\r\n  var _outlineElement, _outlineStyle;\r\n  // @function preventOutline(el: HTMLElement)\r\n  // Makes the [outline](https://developer.mozilla.org/docs/Web/CSS/outline)\r\n  // of the element `el` invisible. Used internally by Leaflet to prevent\r\n  // focusable elements from displaying an outline when the user performs a\r\n  // drag interaction on them.\r\n  function preventOutline(element) {\r\n  \twhile (element.tabIndex === -1) {\r\n  \t\telement = element.parentNode;\r\n  \t}\r\n  \tif (!element.style) { return; }\r\n  \trestoreOutline();\r\n  \t_outlineElement = element;\r\n  \t_outlineStyle = element.style.outline;\r\n  \telement.style.outline = 'none';\r\n  \ton(window, 'keydown', restoreOutline);\r\n  }\r\n\r\n  // @function restoreOutline()\r\n  // Cancels the effects of a previous [`L.DomUtil.preventOutline`]().\r\n  function restoreOutline() {\r\n  \tif (!_outlineElement) { return; }\r\n  \t_outlineElement.style.outline = _outlineStyle;\r\n  \t_outlineElement = undefined;\r\n  \t_outlineStyle = undefined;\r\n  \toff(window, 'keydown', restoreOutline);\r\n  }\r\n\r\n  // @function getSizedParentNode(el: HTMLElement): HTMLElement\r\n  // Finds the closest parent node which size (width and height) is not null.\r\n  function getSizedParentNode(element) {\r\n  \tdo {\r\n  \t\telement = element.parentNode;\r\n  \t} while ((!element.offsetWidth || !element.offsetHeight) && element !== document.body);\r\n  \treturn element;\r\n  }\r\n\r\n  // @function getScale(el: HTMLElement): Object\r\n  // Computes the CSS scale currently applied on the element.\r\n  // Returns an object with `x` and `y` members as horizontal and vertical scales respectively,\r\n  // and `boundingClientRect` as the result of [`getBoundingClientRect()`](https://developer.mozilla.org/en-US/docs/Web/API/Element/getBoundingClientRect).\r\n  function getScale(element) {\r\n  \tvar rect = element.getBoundingClientRect(); // Read-only in old browsers.\r\n\r\n  \treturn {\r\n  \t\tx: rect.width / element.offsetWidth || 1,\r\n  \t\ty: rect.height / element.offsetHeight || 1,\r\n  \t\tboundingClientRect: rect\r\n  \t};\r\n  }\n\n  var DomUtil = ({\n    TRANSFORM: TRANSFORM,\n    TRANSITION: TRANSITION,\n    TRANSITION_END: TRANSITION_END,\n    get: get,\n    getStyle: getStyle,\n    create: create$1,\n    remove: remove,\n    empty: empty,\n    toFront: toFront,\n    toBack: toBack,\n    hasClass: hasClass,\n    addClass: addClass,\n    removeClass: removeClass,\n    setClass: setClass,\n    getClass: getClass,\n    setOpacity: setOpacity,\n    testProp: testProp,\n    setTransform: setTransform,\n    setPosition: setPosition,\n    getPosition: getPosition,\n    disableTextSelection: disableTextSelection,\n    enableTextSelection: enableTextSelection,\n    disableImageDrag: disableImageDrag,\n    enableImageDrag: enableImageDrag,\n    preventOutline: preventOutline,\n    restoreOutline: restoreOutline,\n    getSizedParentNode: getSizedParentNode,\n    getScale: getScale\n  });\n\n  /*\r\n   * @namespace DomEvent\r\n   * Utility functions to work with the [DOM events](https://developer.mozilla.org/docs/Web/API/Event), used by Leaflet internally.\r\n   */\r\n\r\n  // Inspired by John Resig, Dean Edwards and YUI addEvent implementations.\r\n\r\n  // @function on(el: HTMLElement, types: String, fn: Function, context?: Object): this\r\n  // Adds a listener function (`fn`) to a particular DOM event type of the\r\n  // element `el`. You can optionally specify the context of the listener\r\n  // (object the `this` keyword will point to). You can also pass several\r\n  // space-separated types (e.g. `'click dblclick'`).\r\n\r\n  // @alternative\r\n  // @function on(el: HTMLElement, eventMap: Object, context?: Object): this\r\n  // Adds a set of type/listener pairs, e.g. `{click: onClick, mousemove: onMouseMove}`\r\n  function on(obj, types, fn, context) {\r\n\r\n  \tif (typeof types === 'object') {\r\n  \t\tfor (var type in types) {\r\n  \t\t\taddOne(obj, type, types[type], fn);\r\n  \t\t}\r\n  \t} else {\r\n  \t\ttypes = splitWords(types);\r\n\r\n  \t\tfor (var i = 0, len = types.length; i < len; i++) {\r\n  \t\t\taddOne(obj, types[i], fn, context);\r\n  \t\t}\r\n  \t}\r\n\r\n  \treturn this;\r\n  }\r\n\r\n  var eventsKey = '_leaflet_events';\r\n\r\n  // @function off(el: HTMLElement, types: String, fn: Function, context?: Object): this\r\n  // Removes a previously added listener function.\r\n  // Note that if you passed a custom context to on, you must pass the same\r\n  // context to `off` in order to remove the listener.\r\n\r\n  // @alternative\r\n  // @function off(el: HTMLElement, eventMap: Object, context?: Object): this\r\n  // Removes a set of type/listener pairs, e.g. `{click: onClick, mousemove: onMouseMove}`\r\n  function off(obj, types, fn, context) {\r\n\r\n  \tif (typeof types === 'object') {\r\n  \t\tfor (var type in types) {\r\n  \t\t\tremoveOne(obj, type, types[type], fn);\r\n  \t\t}\r\n  \t} else if (types) {\r\n  \t\ttypes = splitWords(types);\r\n\r\n  \t\tfor (var i = 0, len = types.length; i < len; i++) {\r\n  \t\t\tremoveOne(obj, types[i], fn, context);\r\n  \t\t}\r\n  \t} else {\r\n  \t\tfor (var j in obj[eventsKey]) {\r\n  \t\t\tremoveOne(obj, j, obj[eventsKey][j]);\r\n  \t\t}\r\n  \t\tdelete obj[eventsKey];\r\n  \t}\r\n\r\n  \treturn this;\r\n  }\r\n\r\n  function browserFiresNativeDblClick() {\r\n  \t// See https://github.com/w3c/pointerevents/issues/171\r\n  \tif (pointer) {\r\n  \t\treturn !(edge || safari);\r\n  \t}\r\n  }\r\n\r\n  var mouseSubst = {\r\n  \tmouseenter: 'mouseover',\r\n  \tmouseleave: 'mouseout',\r\n  \twheel: !('onwheel' in window) && 'mousewheel'\r\n  };\r\n\r\n  function addOne(obj, type, fn, context) {\r\n  \tvar id = type + stamp(fn) + (context ? '_' + stamp(context) : '');\r\n\r\n  \tif (obj[eventsKey] && obj[eventsKey][id]) { return this; }\r\n\r\n  \tvar handler = function (e) {\r\n  \t\treturn fn.call(context || obj, e || window.event);\r\n  \t};\r\n\r\n  \tvar originalHandler = handler;\r\n\r\n  \tif (pointer && type.indexOf('touch') === 0) {\r\n  \t\t// Needs DomEvent.Pointer.js\r\n  \t\taddPointerListener(obj, type, handler, id);\r\n\r\n  \t} else if (touch && (type === 'dblclick') && !browserFiresNativeDblClick()) {\r\n  \t\taddDoubleTapListener(obj, handler, id);\r\n\r\n  \t} else if ('addEventListener' in obj) {\r\n\r\n  \t\tif (type === 'touchstart' || type === 'touchmove' || type === 'wheel' ||  type === 'mousewheel') {\r\n  \t\t\tobj.addEventListener(mouseSubst[type] || type, handler, passiveEvents ? {passive: false} : false);\r\n\r\n  \t\t} else if (type === 'mouseenter' || type === 'mouseleave') {\r\n  \t\t\thandler = function (e) {\r\n  \t\t\t\te = e || window.event;\r\n  \t\t\t\tif (isExternalTarget(obj, e)) {\r\n  \t\t\t\t\toriginalHandler(e);\r\n  \t\t\t\t}\r\n  \t\t\t};\r\n  \t\t\tobj.addEventListener(mouseSubst[type], handler, false);\r\n\r\n  \t\t} else {\r\n  \t\t\tobj.addEventListener(type, originalHandler, false);\r\n  \t\t}\r\n\r\n  \t} else if ('attachEvent' in obj) {\r\n  \t\tobj.attachEvent('on' + type, handler);\r\n  \t}\r\n\r\n  \tobj[eventsKey] = obj[eventsKey] || {};\r\n  \tobj[eventsKey][id] = handler;\r\n  }\r\n\r\n  function removeOne(obj, type, fn, context) {\r\n\r\n  \tvar id = type + stamp(fn) + (context ? '_' + stamp(context) : ''),\r\n  \t    handler = obj[eventsKey] && obj[eventsKey][id];\r\n\r\n  \tif (!handler) { return this; }\r\n\r\n  \tif (pointer && type.indexOf('touch') === 0) {\r\n  \t\tremovePointerListener(obj, type, id);\r\n\r\n  \t} else if (touch && (type === 'dblclick') && !browserFiresNativeDblClick()) {\r\n  \t\tremoveDoubleTapListener(obj, id);\r\n\r\n  \t} else if ('removeEventListener' in obj) {\r\n\r\n  \t\tobj.removeEventListener(mouseSubst[type] || type, handler, false);\r\n\r\n  \t} else if ('detachEvent' in obj) {\r\n  \t\tobj.detachEvent('on' + type, handler);\r\n  \t}\r\n\r\n  \tobj[eventsKey][id] = null;\r\n  }\r\n\r\n  // @function stopPropagation(ev: DOMEvent): this\r\n  // Stop the given event from propagation to parent elements. Used inside the listener functions:\r\n  // ```js\r\n  // L.DomEvent.on(div, 'click', function (ev) {\r\n  // \tL.DomEvent.stopPropagation(ev);\r\n  // });\r\n  // ```\r\n  function stopPropagation(e) {\r\n\r\n  \tif (e.stopPropagation) {\r\n  \t\te.stopPropagation();\r\n  \t} else if (e.originalEvent) {  // In case of Leaflet event.\r\n  \t\te.originalEvent._stopped = true;\r\n  \t} else {\r\n  \t\te.cancelBubble = true;\r\n  \t}\r\n  \tskipped(e);\r\n\r\n  \treturn this;\r\n  }\r\n\r\n  // @function disableScrollPropagation(el: HTMLElement): this\r\n  // Adds `stopPropagation` to the element's `'wheel'` events (plus browser variants).\r\n  function disableScrollPropagation(el) {\r\n  \taddOne(el, 'wheel', stopPropagation);\r\n  \treturn this;\r\n  }\r\n\r\n  // @function disableClickPropagation(el: HTMLElement): this\r\n  // Adds `stopPropagation` to the element's `'click'`, `'doubleclick'`,\r\n  // `'mousedown'` and `'touchstart'` events (plus browser variants).\r\n  function disableClickPropagation(el) {\r\n  \ton(el, 'mousedown touchstart dblclick', stopPropagation);\r\n  \taddOne(el, 'click', fakeStop);\r\n  \treturn this;\r\n  }\r\n\r\n  // @function preventDefault(ev: DOMEvent): this\r\n  // Prevents the default action of the DOM Event `ev` from happening (such as\r\n  // following a link in the href of the a element, or doing a POST request\r\n  // with page reload when a `<form>` is submitted).\r\n  // Use it inside listener functions.\r\n  function preventDefault(e) {\r\n  \tif (e.preventDefault) {\r\n  \t\te.preventDefault();\r\n  \t} else {\r\n  \t\te.returnValue = false;\r\n  \t}\r\n  \treturn this;\r\n  }\r\n\r\n  // @function stop(ev: DOMEvent): this\r\n  // Does `stopPropagation` and `preventDefault` at the same time.\r\n  function stop(e) {\r\n  \tpreventDefault(e);\r\n  \tstopPropagation(e);\r\n  \treturn this;\r\n  }\r\n\r\n  // @function getMousePosition(ev: DOMEvent, container?: HTMLElement): Point\r\n  // Gets normalized mouse position from a DOM event relative to the\r\n  // `container` (border excluded) or to the whole page if not specified.\r\n  function getMousePosition(e, container) {\r\n  \tif (!container) {\r\n  \t\treturn new Point(e.clientX, e.clientY);\r\n  \t}\r\n\r\n  \tvar scale = getScale(container),\r\n  \t    offset = scale.boundingClientRect; // left and top  values are in page scale (like the event clientX/Y)\r\n\r\n  \treturn new Point(\r\n  \t\t// offset.left/top values are in page scale (like clientX/Y),\r\n  \t\t// whereas clientLeft/Top (border width) values are the original values (before CSS scale applies).\r\n  \t\t(e.clientX - offset.left) / scale.x - container.clientLeft,\r\n  \t\t(e.clientY - offset.top) / scale.y - container.clientTop\r\n  \t);\r\n  }\r\n\r\n  // Chrome on Win scrolls double the pixels as in other platforms (see #4538),\r\n  // and Firefox scrolls device pixels, not CSS pixels\r\n  var wheelPxFactor =\r\n  \t(win && chrome) ? 2 * window.devicePixelRatio :\r\n  \tgecko ? window.devicePixelRatio : 1;\r\n\r\n  // @function getWheelDelta(ev: DOMEvent): Number\r\n  // Gets normalized wheel delta from a wheel DOM event, in vertical\r\n  // pixels scrolled (negative if scrolling down).\r\n  // Events from pointing devices without precise scrolling are mapped to\r\n  // a best guess of 60 pixels.\r\n  function getWheelDelta(e) {\r\n  \treturn (edge) ? e.wheelDeltaY / 2 : // Don't trust window-geometry-based delta\r\n  \t       (e.deltaY && e.deltaMode === 0) ? -e.deltaY / wheelPxFactor : // Pixels\r\n  \t       (e.deltaY && e.deltaMode === 1) ? -e.deltaY * 20 : // Lines\r\n  \t       (e.deltaY && e.deltaMode === 2) ? -e.deltaY * 60 : // Pages\r\n  \t       (e.deltaX || e.deltaZ) ? 0 :\t// Skip horizontal/depth wheel events\r\n  \t       e.wheelDelta ? (e.wheelDeltaY || e.wheelDelta) / 2 : // Legacy IE pixels\r\n  \t       (e.detail && Math.abs(e.detail) < 32765) ? -e.detail * 20 : // Legacy Moz lines\r\n  \t       e.detail ? e.detail / -32765 * 60 : // Legacy Moz pages\r\n  \t       0;\r\n  }\r\n\r\n  var skipEvents = {};\r\n\r\n  function fakeStop(e) {\r\n  \t// fakes stopPropagation by setting a special event flag, checked/reset with skipped(e)\r\n  \tskipEvents[e.type] = true;\r\n  }\r\n\r\n  function skipped(e) {\r\n  \tvar events = skipEvents[e.type];\r\n  \t// reset when checking, as it's only used in map container and propagates outside of the map\r\n  \tskipEvents[e.type] = false;\r\n  \treturn events;\r\n  }\r\n\r\n  // check if element really left/entered the event target (for mouseenter/mouseleave)\r\n  function isExternalTarget(el, e) {\r\n\r\n  \tvar related = e.relatedTarget;\r\n\r\n  \tif (!related) { return true; }\r\n\r\n  \ttry {\r\n  \t\twhile (related && (related !== el)) {\r\n  \t\t\trelated = related.parentNode;\r\n  \t\t}\r\n  \t} catch (err) {\r\n  \t\treturn false;\r\n  \t}\r\n  \treturn (related !== el);\r\n  }\n\n  var DomEvent = ({\n    on: on,\n    off: off,\n    stopPropagation: stopPropagation,\n    disableScrollPropagation: disableScrollPropagation,\n    disableClickPropagation: disableClickPropagation,\n    preventDefault: preventDefault,\n    stop: stop,\n    getMousePosition: getMousePosition,\n    getWheelDelta: getWheelDelta,\n    fakeStop: fakeStop,\n    skipped: skipped,\n    isExternalTarget: isExternalTarget,\n    addListener: on,\n    removeListener: off\n  });\n\n  /*\n   * @class PosAnimation\n   * @aka L.PosAnimation\n   * @inherits Evented\n   * Used internally for panning animations, utilizing CSS3 Transitions for modern browsers and a timer fallback for IE6-9.\n   *\n   * @example\n   * ```js\n   * var fx = new L.PosAnimation();\n   * fx.run(el, [300, 500], 0.5);\n   * ```\n   *\n   * @constructor L.PosAnimation()\n   * Creates a `PosAnimation` object.\n   *\n   */\n\n  var PosAnimation = Evented.extend({\n\n  \t// @method run(el: HTMLElement, newPos: Point, duration?: Number, easeLinearity?: Number)\n  \t// Run an animation of a given element to a new position, optionally setting\n  \t// duration in seconds (`0.25` by default) and easing linearity factor (3rd\n  \t// argument of the [cubic bezier curve](http://cubic-bezier.com/#0,0,.5,1),\n  \t// `0.5` by default).\n  \trun: function (el, newPos, duration, easeLinearity) {\n  \t\tthis.stop();\n\n  \t\tthis._el = el;\n  \t\tthis._inProgress = true;\n  \t\tthis._duration = duration || 0.25;\n  \t\tthis._easeOutPower = 1 / Math.max(easeLinearity || 0.5, 0.2);\n\n  \t\tthis._startPos = getPosition(el);\n  \t\tthis._offset = newPos.subtract(this._startPos);\n  \t\tthis._startTime = +new Date();\n\n  \t\t// @event start: Event\n  \t\t// Fired when the animation starts\n  \t\tthis.fire('start');\n\n  \t\tthis._animate();\n  \t},\n\n  \t// @method stop()\n  \t// Stops the animation (if currently running).\n  \tstop: function () {\n  \t\tif (!this._inProgress) { return; }\n\n  \t\tthis._step(true);\n  \t\tthis._complete();\n  \t},\n\n  \t_animate: function () {\n  \t\t// animation loop\n  \t\tthis._animId = requestAnimFrame(this._animate, this);\n  \t\tthis._step();\n  \t},\n\n  \t_step: function (round) {\n  \t\tvar elapsed = (+new Date()) - this._startTime,\n  \t\t    duration = this._duration * 1000;\n\n  \t\tif (elapsed < duration) {\n  \t\t\tthis._runFrame(this._easeOut(elapsed / duration), round);\n  \t\t} else {\n  \t\t\tthis._runFrame(1);\n  \t\t\tthis._complete();\n  \t\t}\n  \t},\n\n  \t_runFrame: function (progress, round) {\n  \t\tvar pos = this._startPos.add(this._offset.multiplyBy(progress));\n  \t\tif (round) {\n  \t\t\tpos._round();\n  \t\t}\n  \t\tsetPosition(this._el, pos);\n\n  \t\t// @event step: Event\n  \t\t// Fired continuously during the animation.\n  \t\tthis.fire('step');\n  \t},\n\n  \t_complete: function () {\n  \t\tcancelAnimFrame(this._animId);\n\n  \t\tthis._inProgress = false;\n  \t\t// @event end: Event\n  \t\t// Fired when the animation ends.\n  \t\tthis.fire('end');\n  \t},\n\n  \t_easeOut: function (t) {\n  \t\treturn 1 - Math.pow(1 - t, this._easeOutPower);\n  \t}\n  });\n\n  /*\r\n   * @class Map\r\n   * @aka L.Map\r\n   * @inherits Evented\r\n   *\r\n   * The central class of the API ā€” it is used to create a map on a page and manipulate it.\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * // initialize the map on the \"map\" div with a given center and zoom\r\n   * var map = L.map('map', {\r\n   * \tcenter: [51.505, -0.09],\r\n   * \tzoom: 13\r\n   * });\r\n   * ```\r\n   *\r\n   */\r\n\r\n  var Map = Evented.extend({\r\n\r\n  \toptions: {\r\n  \t\t// @section Map State Options\r\n  \t\t// @option crs: CRS = L.CRS.EPSG3857\r\n  \t\t// The [Coordinate Reference System](#crs) to use. Don't change this if you're not\r\n  \t\t// sure what it means.\r\n  \t\tcrs: EPSG3857,\r\n\r\n  \t\t// @option center: LatLng = undefined\r\n  \t\t// Initial geographic center of the map\r\n  \t\tcenter: undefined,\r\n\r\n  \t\t// @option zoom: Number = undefined\r\n  \t\t// Initial map zoom level\r\n  \t\tzoom: undefined,\r\n\r\n  \t\t// @option minZoom: Number = *\r\n  \t\t// Minimum zoom level of the map.\r\n  \t\t// If not specified and at least one `GridLayer` or `TileLayer` is in the map,\r\n  \t\t// the lowest of their `minZoom` options will be used instead.\r\n  \t\tminZoom: undefined,\r\n\r\n  \t\t// @option maxZoom: Number = *\r\n  \t\t// Maximum zoom level of the map.\r\n  \t\t// If not specified and at least one `GridLayer` or `TileLayer` is in the map,\r\n  \t\t// the highest of their `maxZoom` options will be used instead.\r\n  \t\tmaxZoom: undefined,\r\n\r\n  \t\t// @option layers: Layer[] = []\r\n  \t\t// Array of layers that will be added to the map initially\r\n  \t\tlayers: [],\r\n\r\n  \t\t// @option maxBounds: LatLngBounds = null\r\n  \t\t// When this option is set, the map restricts the view to the given\r\n  \t\t// geographical bounds, bouncing the user back if the user tries to pan\r\n  \t\t// outside the view. To set the restriction dynamically, use\r\n  \t\t// [`setMaxBounds`](#map-setmaxbounds) method.\r\n  \t\tmaxBounds: undefined,\r\n\r\n  \t\t// @option renderer: Renderer = *\r\n  \t\t// The default method for drawing vector layers on the map. `L.SVG`\r\n  \t\t// or `L.Canvas` by default depending on browser support.\r\n  \t\trenderer: undefined,\r\n\r\n\r\n  \t\t// @section Animation Options\r\n  \t\t// @option zoomAnimation: Boolean = true\r\n  \t\t// Whether the map zoom animation is enabled. By default it's enabled\r\n  \t\t// in all browsers that support CSS3 Transitions except Android.\r\n  \t\tzoomAnimation: true,\r\n\r\n  \t\t// @option zoomAnimationThreshold: Number = 4\r\n  \t\t// Won't animate zoom if the zoom difference exceeds this value.\r\n  \t\tzoomAnimationThreshold: 4,\r\n\r\n  \t\t// @option fadeAnimation: Boolean = true\r\n  \t\t// Whether the tile fade animation is enabled. By default it's enabled\r\n  \t\t// in all browsers that support CSS3 Transitions except Android.\r\n  \t\tfadeAnimation: true,\r\n\r\n  \t\t// @option markerZoomAnimation: Boolean = true\r\n  \t\t// Whether markers animate their zoom with the zoom animation, if disabled\r\n  \t\t// they will disappear for the length of the animation. By default it's\r\n  \t\t// enabled in all browsers that support CSS3 Transitions except Android.\r\n  \t\tmarkerZoomAnimation: true,\r\n\r\n  \t\t// @option transform3DLimit: Number = 2^23\r\n  \t\t// Defines the maximum size of a CSS translation transform. The default\r\n  \t\t// value should not be changed unless a web browser positions layers in\r\n  \t\t// the wrong place after doing a large `panBy`.\r\n  \t\ttransform3DLimit: 8388608, // Precision limit of a 32-bit float\r\n\r\n  \t\t// @section Interaction Options\r\n  \t\t// @option zoomSnap: Number = 1\r\n  \t\t// Forces the map's zoom level to always be a multiple of this, particularly\r\n  \t\t// right after a [`fitBounds()`](#map-fitbounds) or a pinch-zoom.\r\n  \t\t// By default, the zoom level snaps to the nearest integer; lower values\r\n  \t\t// (e.g. `0.5` or `0.1`) allow for greater granularity. A value of `0`\r\n  \t\t// means the zoom level will not be snapped after `fitBounds` or a pinch-zoom.\r\n  \t\tzoomSnap: 1,\r\n\r\n  \t\t// @option zoomDelta: Number = 1\r\n  \t\t// Controls how much the map's zoom level will change after a\r\n  \t\t// [`zoomIn()`](#map-zoomin), [`zoomOut()`](#map-zoomout), pressing `+`\r\n  \t\t// or `-` on the keyboard, or using the [zoom controls](#control-zoom).\r\n  \t\t// Values smaller than `1` (e.g. `0.5`) allow for greater granularity.\r\n  \t\tzoomDelta: 1,\r\n\r\n  \t\t// @option trackResize: Boolean = true\r\n  \t\t// Whether the map automatically handles browser window resize to update itself.\r\n  \t\ttrackResize: true\r\n  \t},\r\n\r\n  \tinitialize: function (id, options) { // (HTMLElement or String, Object)\r\n  \t\toptions = setOptions(this, options);\r\n\r\n  \t\t// Make sure to assign internal flags at the beginning,\r\n  \t\t// to avoid inconsistent state in some edge cases.\r\n  \t\tthis._handlers = [];\r\n  \t\tthis._layers = {};\r\n  \t\tthis._zoomBoundLayers = {};\r\n  \t\tthis._sizeChanged = true;\r\n\r\n  \t\tthis._initContainer(id);\r\n  \t\tthis._initLayout();\r\n\r\n  \t\t// hack for https://github.com/Leaflet/Leaflet/issues/1980\r\n  \t\tthis._onResize = bind(this._onResize, this);\r\n\r\n  \t\tthis._initEvents();\r\n\r\n  \t\tif (options.maxBounds) {\r\n  \t\t\tthis.setMaxBounds(options.maxBounds);\r\n  \t\t}\r\n\r\n  \t\tif (options.zoom !== undefined) {\r\n  \t\t\tthis._zoom = this._limitZoom(options.zoom);\r\n  \t\t}\r\n\r\n  \t\tif (options.center && options.zoom !== undefined) {\r\n  \t\t\tthis.setView(toLatLng(options.center), options.zoom, {reset: true});\r\n  \t\t}\r\n\r\n  \t\tthis.callInitHooks();\r\n\r\n  \t\t// don't animate on browsers without hardware-accelerated transitions or old Android/Opera\r\n  \t\tthis._zoomAnimated = TRANSITION && any3d && !mobileOpera &&\r\n  \t\t\t\tthis.options.zoomAnimation;\r\n\r\n  \t\t// zoom transitions run with the same duration for all layers, so if one of transitionend events\r\n  \t\t// happens after starting zoom animation (propagating to the map pane), we know that it ended globally\r\n  \t\tif (this._zoomAnimated) {\r\n  \t\t\tthis._createAnimProxy();\r\n  \t\t\ton(this._proxy, TRANSITION_END, this._catchTransitionEnd, this);\r\n  \t\t}\r\n\r\n  \t\tthis._addLayers(this.options.layers);\r\n  \t},\r\n\r\n\r\n  \t// @section Methods for modifying map state\r\n\r\n  \t// @method setView(center: LatLng, zoom: Number, options?: Zoom/pan options): this\r\n  \t// Sets the view of the map (geographical center and zoom) with the given\r\n  \t// animation options.\r\n  \tsetView: function (center, zoom, options) {\r\n\r\n  \t\tzoom = zoom === undefined ? this._zoom : this._limitZoom(zoom);\r\n  \t\tcenter = this._limitCenter(toLatLng(center), zoom, this.options.maxBounds);\r\n  \t\toptions = options || {};\r\n\r\n  \t\tthis._stop();\r\n\r\n  \t\tif (this._loaded && !options.reset && options !== true) {\r\n\r\n  \t\t\tif (options.animate !== undefined) {\r\n  \t\t\t\toptions.zoom = extend({animate: options.animate}, options.zoom);\r\n  \t\t\t\toptions.pan = extend({animate: options.animate, duration: options.duration}, options.pan);\r\n  \t\t\t}\r\n\r\n  \t\t\t// try animating pan or zoom\r\n  \t\t\tvar moved = (this._zoom !== zoom) ?\r\n  \t\t\t\tthis._tryAnimatedZoom && this._tryAnimatedZoom(center, zoom, options.zoom) :\r\n  \t\t\t\tthis._tryAnimatedPan(center, options.pan);\r\n\r\n  \t\t\tif (moved) {\r\n  \t\t\t\t// prevent resize handler call, the view will refresh after animation anyway\r\n  \t\t\t\tclearTimeout(this._sizeTimer);\r\n  \t\t\t\treturn this;\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\t// animation didn't start, just reset the map view\r\n  \t\tthis._resetView(center, zoom);\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method setZoom(zoom: Number, options?: Zoom/pan options): this\r\n  \t// Sets the zoom of the map.\r\n  \tsetZoom: function (zoom, options) {\r\n  \t\tif (!this._loaded) {\r\n  \t\t\tthis._zoom = zoom;\r\n  \t\t\treturn this;\r\n  \t\t}\r\n  \t\treturn this.setView(this.getCenter(), zoom, {zoom: options});\r\n  \t},\r\n\r\n  \t// @method zoomIn(delta?: Number, options?: Zoom options): this\r\n  \t// Increases the zoom of the map by `delta` ([`zoomDelta`](#map-zoomdelta) by default).\r\n  \tzoomIn: function (delta, options) {\r\n  \t\tdelta = delta || (any3d ? this.options.zoomDelta : 1);\r\n  \t\treturn this.setZoom(this._zoom + delta, options);\r\n  \t},\r\n\r\n  \t// @method zoomOut(delta?: Number, options?: Zoom options): this\r\n  \t// Decreases the zoom of the map by `delta` ([`zoomDelta`](#map-zoomdelta) by default).\r\n  \tzoomOut: function (delta, options) {\r\n  \t\tdelta = delta || (any3d ? this.options.zoomDelta : 1);\r\n  \t\treturn this.setZoom(this._zoom - delta, options);\r\n  \t},\r\n\r\n  \t// @method setZoomAround(latlng: LatLng, zoom: Number, options: Zoom options): this\r\n  \t// Zooms the map while keeping a specified geographical point on the map\r\n  \t// stationary (e.g. used internally for scroll zoom and double-click zoom).\r\n  \t// @alternative\r\n  \t// @method setZoomAround(offset: Point, zoom: Number, options: Zoom options): this\r\n  \t// Zooms the map while keeping a specified pixel on the map (relative to the top-left corner) stationary.\r\n  \tsetZoomAround: function (latlng, zoom, options) {\r\n  \t\tvar scale = this.getZoomScale(zoom),\r\n  \t\t    viewHalf = this.getSize().divideBy(2),\r\n  \t\t    containerPoint = latlng instanceof Point ? latlng : this.latLngToContainerPoint(latlng),\r\n\r\n  \t\t    centerOffset = containerPoint.subtract(viewHalf).multiplyBy(1 - 1 / scale),\r\n  \t\t    newCenter = this.containerPointToLatLng(viewHalf.add(centerOffset));\r\n\r\n  \t\treturn this.setView(newCenter, zoom, {zoom: options});\r\n  \t},\r\n\r\n  \t_getBoundsCenterZoom: function (bounds, options) {\r\n\r\n  \t\toptions = options || {};\r\n  \t\tbounds = bounds.getBounds ? bounds.getBounds() : toLatLngBounds(bounds);\r\n\r\n  \t\tvar paddingTL = toPoint(options.paddingTopLeft || options.padding || [0, 0]),\r\n  \t\t    paddingBR = toPoint(options.paddingBottomRight || options.padding || [0, 0]),\r\n\r\n  \t\t    zoom = this.getBoundsZoom(bounds, false, paddingTL.add(paddingBR));\r\n\r\n  \t\tzoom = (typeof options.maxZoom === 'number') ? Math.min(options.maxZoom, zoom) : zoom;\r\n\r\n  \t\tif (zoom === Infinity) {\r\n  \t\t\treturn {\r\n  \t\t\t\tcenter: bounds.getCenter(),\r\n  \t\t\t\tzoom: zoom\r\n  \t\t\t};\r\n  \t\t}\r\n\r\n  \t\tvar paddingOffset = paddingBR.subtract(paddingTL).divideBy(2),\r\n\r\n  \t\t    swPoint = this.project(bounds.getSouthWest(), zoom),\r\n  \t\t    nePoint = this.project(bounds.getNorthEast(), zoom),\r\n  \t\t    center = this.unproject(swPoint.add(nePoint).divideBy(2).add(paddingOffset), zoom);\r\n\r\n  \t\treturn {\r\n  \t\t\tcenter: center,\r\n  \t\t\tzoom: zoom\r\n  \t\t};\r\n  \t},\r\n\r\n  \t// @method fitBounds(bounds: LatLngBounds, options?: fitBounds options): this\r\n  \t// Sets a map view that contains the given geographical bounds with the\r\n  \t// maximum zoom level possible.\r\n  \tfitBounds: function (bounds, options) {\r\n\r\n  \t\tbounds = toLatLngBounds(bounds);\r\n\r\n  \t\tif (!bounds.isValid()) {\r\n  \t\t\tthrow new Error('Bounds are not valid.');\r\n  \t\t}\r\n\r\n  \t\tvar target = this._getBoundsCenterZoom(bounds, options);\r\n  \t\treturn this.setView(target.center, target.zoom, options);\r\n  \t},\r\n\r\n  \t// @method fitWorld(options?: fitBounds options): this\r\n  \t// Sets a map view that mostly contains the whole world with the maximum\r\n  \t// zoom level possible.\r\n  \tfitWorld: function (options) {\r\n  \t\treturn this.fitBounds([[-90, -180], [90, 180]], options);\r\n  \t},\r\n\r\n  \t// @method panTo(latlng: LatLng, options?: Pan options): this\r\n  \t// Pans the map to a given center.\r\n  \tpanTo: function (center, options) { // (LatLng)\r\n  \t\treturn this.setView(center, this._zoom, {pan: options});\r\n  \t},\r\n\r\n  \t// @method panBy(offset: Point, options?: Pan options): this\r\n  \t// Pans the map by a given number of pixels (animated).\r\n  \tpanBy: function (offset, options) {\r\n  \t\toffset = toPoint(offset).round();\r\n  \t\toptions = options || {};\r\n\r\n  \t\tif (!offset.x && !offset.y) {\r\n  \t\t\treturn this.fire('moveend');\r\n  \t\t}\r\n  \t\t// If we pan too far, Chrome gets issues with tiles\r\n  \t\t// and makes them disappear or appear in the wrong place (slightly offset) #2602\r\n  \t\tif (options.animate !== true && !this.getSize().contains(offset)) {\r\n  \t\t\tthis._resetView(this.unproject(this.project(this.getCenter()).add(offset)), this.getZoom());\r\n  \t\t\treturn this;\r\n  \t\t}\r\n\r\n  \t\tif (!this._panAnim) {\r\n  \t\t\tthis._panAnim = new PosAnimation();\r\n\r\n  \t\t\tthis._panAnim.on({\r\n  \t\t\t\t'step': this._onPanTransitionStep,\r\n  \t\t\t\t'end': this._onPanTransitionEnd\r\n  \t\t\t}, this);\r\n  \t\t}\r\n\r\n  \t\t// don't fire movestart if animating inertia\r\n  \t\tif (!options.noMoveStart) {\r\n  \t\t\tthis.fire('movestart');\r\n  \t\t}\r\n\r\n  \t\t// animate pan unless animate: false specified\r\n  \t\tif (options.animate !== false) {\r\n  \t\t\taddClass(this._mapPane, 'leaflet-pan-anim');\r\n\r\n  \t\t\tvar newPos = this._getMapPanePos().subtract(offset).round();\r\n  \t\t\tthis._panAnim.run(this._mapPane, newPos, options.duration || 0.25, options.easeLinearity);\r\n  \t\t} else {\r\n  \t\t\tthis._rawPanBy(offset);\r\n  \t\t\tthis.fire('move').fire('moveend');\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method flyTo(latlng: LatLng, zoom?: Number, options?: Zoom/pan options): this\r\n  \t// Sets the view of the map (geographical center and zoom) performing a smooth\r\n  \t// pan-zoom animation.\r\n  \tflyTo: function (targetCenter, targetZoom, options) {\r\n\r\n  \t\toptions = options || {};\r\n  \t\tif (options.animate === false || !any3d) {\r\n  \t\t\treturn this.setView(targetCenter, targetZoom, options);\r\n  \t\t}\r\n\r\n  \t\tthis._stop();\r\n\r\n  \t\tvar from = this.project(this.getCenter()),\r\n  \t\t    to = this.project(targetCenter),\r\n  \t\t    size = this.getSize(),\r\n  \t\t    startZoom = this._zoom;\r\n\r\n  \t\ttargetCenter = toLatLng(targetCenter);\r\n  \t\ttargetZoom = targetZoom === undefined ? startZoom : targetZoom;\r\n\r\n  \t\tvar w0 = Math.max(size.x, size.y),\r\n  \t\t    w1 = w0 * this.getZoomScale(startZoom, targetZoom),\r\n  \t\t    u1 = (to.distanceTo(from)) || 1,\r\n  \t\t    rho = 1.42,\r\n  \t\t    rho2 = rho * rho;\r\n\r\n  \t\tfunction r(i) {\r\n  \t\t\tvar s1 = i ? -1 : 1,\r\n  \t\t\t    s2 = i ? w1 : w0,\r\n  \t\t\t    t1 = w1 * w1 - w0 * w0 + s1 * rho2 * rho2 * u1 * u1,\r\n  \t\t\t    b1 = 2 * s2 * rho2 * u1,\r\n  \t\t\t    b = t1 / b1,\r\n  \t\t\t    sq = Math.sqrt(b * b + 1) - b;\r\n\r\n  \t\t\t    // workaround for floating point precision bug when sq = 0, log = -Infinite,\r\n  \t\t\t    // thus triggering an infinite loop in flyTo\r\n  \t\t\t    var log = sq < 0.000000001 ? -18 : Math.log(sq);\r\n\r\n  \t\t\treturn log;\r\n  \t\t}\r\n\r\n  \t\tfunction sinh(n) { return (Math.exp(n) - Math.exp(-n)) / 2; }\r\n  \t\tfunction cosh(n) { return (Math.exp(n) + Math.exp(-n)) / 2; }\r\n  \t\tfunction tanh(n) { return sinh(n) / cosh(n); }\r\n\r\n  \t\tvar r0 = r(0);\r\n\r\n  \t\tfunction w(s) { return w0 * (cosh(r0) / cosh(r0 + rho * s)); }\r\n  \t\tfunction u(s) { return w0 * (cosh(r0) * tanh(r0 + rho * s) - sinh(r0)) / rho2; }\r\n\r\n  \t\tfunction easeOut(t) { return 1 - Math.pow(1 - t, 1.5); }\r\n\r\n  \t\tvar start = Date.now(),\r\n  \t\t    S = (r(1) - r0) / rho,\r\n  \t\t    duration = options.duration ? 1000 * options.duration : 1000 * S * 0.8;\r\n\r\n  \t\tfunction frame() {\r\n  \t\t\tvar t = (Date.now() - start) / duration,\r\n  \t\t\t    s = easeOut(t) * S;\r\n\r\n  \t\t\tif (t <= 1) {\r\n  \t\t\t\tthis._flyToFrame = requestAnimFrame(frame, this);\r\n\r\n  \t\t\t\tthis._move(\r\n  \t\t\t\t\tthis.unproject(from.add(to.subtract(from).multiplyBy(u(s) / u1)), startZoom),\r\n  \t\t\t\t\tthis.getScaleZoom(w0 / w(s), startZoom),\r\n  \t\t\t\t\t{flyTo: true});\r\n\r\n  \t\t\t} else {\r\n  \t\t\t\tthis\r\n  \t\t\t\t\t._move(targetCenter, targetZoom)\r\n  \t\t\t\t\t._moveEnd(true);\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\tthis._moveStart(true, options.noMoveStart);\r\n\r\n  \t\tframe.call(this);\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method flyToBounds(bounds: LatLngBounds, options?: fitBounds options): this\r\n  \t// Sets the view of the map with a smooth animation like [`flyTo`](#map-flyto),\r\n  \t// but takes a bounds parameter like [`fitBounds`](#map-fitbounds).\r\n  \tflyToBounds: function (bounds, options) {\r\n  \t\tvar target = this._getBoundsCenterZoom(bounds, options);\r\n  \t\treturn this.flyTo(target.center, target.zoom, options);\r\n  \t},\r\n\r\n  \t// @method setMaxBounds(bounds: LatLngBounds): this\r\n  \t// Restricts the map view to the given bounds (see the [maxBounds](#map-maxbounds) option).\r\n  \tsetMaxBounds: function (bounds) {\r\n  \t\tbounds = toLatLngBounds(bounds);\r\n\r\n  \t\tif (!bounds.isValid()) {\r\n  \t\t\tthis.options.maxBounds = null;\r\n  \t\t\treturn this.off('moveend', this._panInsideMaxBounds);\r\n  \t\t} else if (this.options.maxBounds) {\r\n  \t\t\tthis.off('moveend', this._panInsideMaxBounds);\r\n  \t\t}\r\n\r\n  \t\tthis.options.maxBounds = bounds;\r\n\r\n  \t\tif (this._loaded) {\r\n  \t\t\tthis._panInsideMaxBounds();\r\n  \t\t}\r\n\r\n  \t\treturn this.on('moveend', this._panInsideMaxBounds);\r\n  \t},\r\n\r\n  \t// @method setMinZoom(zoom: Number): this\r\n  \t// Sets the lower limit for the available zoom levels (see the [minZoom](#map-minzoom) option).\r\n  \tsetMinZoom: function (zoom) {\r\n  \t\tvar oldZoom = this.options.minZoom;\r\n  \t\tthis.options.minZoom = zoom;\r\n\r\n  \t\tif (this._loaded && oldZoom !== zoom) {\r\n  \t\t\tthis.fire('zoomlevelschange');\r\n\r\n  \t\t\tif (this.getZoom() < this.options.minZoom) {\r\n  \t\t\t\treturn this.setZoom(zoom);\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method setMaxZoom(zoom: Number): this\r\n  \t// Sets the upper limit for the available zoom levels (see the [maxZoom](#map-maxzoom) option).\r\n  \tsetMaxZoom: function (zoom) {\r\n  \t\tvar oldZoom = this.options.maxZoom;\r\n  \t\tthis.options.maxZoom = zoom;\r\n\r\n  \t\tif (this._loaded && oldZoom !== zoom) {\r\n  \t\t\tthis.fire('zoomlevelschange');\r\n\r\n  \t\t\tif (this.getZoom() > this.options.maxZoom) {\r\n  \t\t\t\treturn this.setZoom(zoom);\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method panInsideBounds(bounds: LatLngBounds, options?: Pan options): this\r\n  \t// Pans the map to the closest view that would lie inside the given bounds (if it's not already), controlling the animation using the options specific, if any.\r\n  \tpanInsideBounds: function (bounds, options) {\r\n  \t\tthis._enforcingBounds = true;\r\n  \t\tvar center = this.getCenter(),\r\n  \t\t    newCenter = this._limitCenter(center, this._zoom, toLatLngBounds(bounds));\r\n\r\n  \t\tif (!center.equals(newCenter)) {\r\n  \t\t\tthis.panTo(newCenter, options);\r\n  \t\t}\r\n\r\n  \t\tthis._enforcingBounds = false;\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method panInside(latlng: LatLng, options?: options): this\r\n  \t// Pans the map the minimum amount to make the `latlng` visible. Use\r\n  \t// `padding`, `paddingTopLeft` and `paddingTopRight` options to fit\r\n  \t// the display to more restricted bounds, like [`fitBounds`](#map-fitbounds).\r\n  \t// If `latlng` is already within the (optionally padded) display bounds,\r\n  \t// the map will not be panned.\r\n  \tpanInside: function (latlng, options) {\r\n  \t\toptions = options || {};\r\n\r\n  \t\tvar paddingTL = toPoint(options.paddingTopLeft || options.padding || [0, 0]),\r\n  \t\t    paddingBR = toPoint(options.paddingBottomRight || options.padding || [0, 0]),\r\n  \t\t    center = this.getCenter(),\r\n  \t\t    pixelCenter = this.project(center),\r\n  \t\t    pixelPoint = this.project(latlng),\r\n  \t\t    pixelBounds = this.getPixelBounds(),\r\n  \t\t    halfPixelBounds = pixelBounds.getSize().divideBy(2),\r\n  \t\t    paddedBounds = toBounds([pixelBounds.min.add(paddingTL), pixelBounds.max.subtract(paddingBR)]);\r\n\r\n  \t\tif (!paddedBounds.contains(pixelPoint)) {\r\n  \t\t\tthis._enforcingBounds = true;\r\n  \t\t\tvar diff = pixelCenter.subtract(pixelPoint),\r\n  \t\t\t    newCenter = toPoint(pixelPoint.x + diff.x, pixelPoint.y + diff.y);\r\n\r\n  \t\t\tif (pixelPoint.x < paddedBounds.min.x || pixelPoint.x > paddedBounds.max.x) {\r\n  \t\t\t\tnewCenter.x = pixelCenter.x - diff.x;\r\n  \t\t\t\tif (diff.x > 0) {\r\n  \t\t\t\t\tnewCenter.x += halfPixelBounds.x - paddingTL.x;\r\n  \t\t\t\t} else {\r\n  \t\t\t\t\tnewCenter.x -= halfPixelBounds.x - paddingBR.x;\r\n  \t\t\t\t}\r\n  \t\t\t}\r\n  \t\t\tif (pixelPoint.y < paddedBounds.min.y || pixelPoint.y > paddedBounds.max.y) {\r\n  \t\t\t\tnewCenter.y = pixelCenter.y - diff.y;\r\n  \t\t\t\tif (diff.y > 0) {\r\n  \t\t\t\t\tnewCenter.y += halfPixelBounds.y - paddingTL.y;\r\n  \t\t\t\t} else {\r\n  \t\t\t\t\tnewCenter.y -= halfPixelBounds.y - paddingBR.y;\r\n  \t\t\t\t}\r\n  \t\t\t}\r\n  \t\t\tthis.panTo(this.unproject(newCenter), options);\r\n  \t\t\tthis._enforcingBounds = false;\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method invalidateSize(options: Zoom/pan options): this\r\n  \t// Checks if the map container size changed and updates the map if so ā€”\r\n  \t// call it after you've changed the map size dynamically, also animating\r\n  \t// pan by default. If `options.pan` is `false`, panning will not occur.\r\n  \t// If `options.debounceMoveend` is `true`, it will delay `moveend` event so\r\n  \t// that it doesn't happen often even if the method is called many\r\n  \t// times in a row.\r\n\r\n  \t// @alternative\r\n  \t// @method invalidateSize(animate: Boolean): this\r\n  \t// Checks if the map container size changed and updates the map if so ā€”\r\n  \t// call it after you've changed the map size dynamically, also animating\r\n  \t// pan by default.\r\n  \tinvalidateSize: function (options) {\r\n  \t\tif (!this._loaded) { return this; }\r\n\r\n  \t\toptions = extend({\r\n  \t\t\tanimate: false,\r\n  \t\t\tpan: true\r\n  \t\t}, options === true ? {animate: true} : options);\r\n\r\n  \t\tvar oldSize = this.getSize();\r\n  \t\tthis._sizeChanged = true;\r\n  \t\tthis._lastCenter = null;\r\n\r\n  \t\tvar newSize = this.getSize(),\r\n  \t\t    oldCenter = oldSize.divideBy(2).round(),\r\n  \t\t    newCenter = newSize.divideBy(2).round(),\r\n  \t\t    offset = oldCenter.subtract(newCenter);\r\n\r\n  \t\tif (!offset.x && !offset.y) { return this; }\r\n\r\n  \t\tif (options.animate && options.pan) {\r\n  \t\t\tthis.panBy(offset);\r\n\r\n  \t\t} else {\r\n  \t\t\tif (options.pan) {\r\n  \t\t\t\tthis._rawPanBy(offset);\r\n  \t\t\t}\r\n\r\n  \t\t\tthis.fire('move');\r\n\r\n  \t\t\tif (options.debounceMoveend) {\r\n  \t\t\t\tclearTimeout(this._sizeTimer);\r\n  \t\t\t\tthis._sizeTimer = setTimeout(bind(this.fire, this, 'moveend'), 200);\r\n  \t\t\t} else {\r\n  \t\t\t\tthis.fire('moveend');\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\t// @section Map state change events\r\n  \t\t// @event resize: ResizeEvent\r\n  \t\t// Fired when the map is resized.\r\n  \t\treturn this.fire('resize', {\r\n  \t\t\toldSize: oldSize,\r\n  \t\t\tnewSize: newSize\r\n  \t\t});\r\n  \t},\r\n\r\n  \t// @section Methods for modifying map state\r\n  \t// @method stop(): this\r\n  \t// Stops the currently running `panTo` or `flyTo` animation, if any.\r\n  \tstop: function () {\r\n  \t\tthis.setZoom(this._limitZoom(this._zoom));\r\n  \t\tif (!this.options.zoomSnap) {\r\n  \t\t\tthis.fire('viewreset');\r\n  \t\t}\r\n  \t\treturn this._stop();\r\n  \t},\r\n\r\n  \t// @section Geolocation methods\r\n  \t// @method locate(options?: Locate options): this\r\n  \t// Tries to locate the user using the Geolocation API, firing a [`locationfound`](#map-locationfound)\r\n  \t// event with location data on success or a [`locationerror`](#map-locationerror) event on failure,\r\n  \t// and optionally sets the map view to the user's location with respect to\r\n  \t// detection accuracy (or to the world view if geolocation failed).\r\n  \t// Note that, if your page doesn't use HTTPS, this method will fail in\r\n  \t// modern browsers ([Chrome 50 and newer](https://sites.google.com/a/chromium.org/dev/Home/chromium-security/deprecating-powerful-features-on-insecure-origins))\r\n  \t// See `Locate options` for more details.\r\n  \tlocate: function (options) {\r\n\r\n  \t\toptions = this._locateOptions = extend({\r\n  \t\t\ttimeout: 10000,\r\n  \t\t\twatch: false\r\n  \t\t\t// setView: false\r\n  \t\t\t// maxZoom: <Number>\r\n  \t\t\t// maximumAge: 0\r\n  \t\t\t// enableHighAccuracy: false\r\n  \t\t}, options);\r\n\r\n  \t\tif (!('geolocation' in navigator)) {\r\n  \t\t\tthis._handleGeolocationError({\r\n  \t\t\t\tcode: 0,\r\n  \t\t\t\tmessage: 'Geolocation not supported.'\r\n  \t\t\t});\r\n  \t\t\treturn this;\r\n  \t\t}\r\n\r\n  \t\tvar onResponse = bind(this._handleGeolocationResponse, this),\r\n  \t\t    onError = bind(this._handleGeolocationError, this);\r\n\r\n  \t\tif (options.watch) {\r\n  \t\t\tthis._locationWatchId =\r\n  \t\t\t        navigator.geolocation.watchPosition(onResponse, onError, options);\r\n  \t\t} else {\r\n  \t\t\tnavigator.geolocation.getCurrentPosition(onResponse, onError, options);\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method stopLocate(): this\r\n  \t// Stops watching location previously initiated by `map.locate({watch: true})`\r\n  \t// and aborts resetting the map view if map.locate was called with\r\n  \t// `{setView: true}`.\r\n  \tstopLocate: function () {\r\n  \t\tif (navigator.geolocation && navigator.geolocation.clearWatch) {\r\n  \t\t\tnavigator.geolocation.clearWatch(this._locationWatchId);\r\n  \t\t}\r\n  \t\tif (this._locateOptions) {\r\n  \t\t\tthis._locateOptions.setView = false;\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t_handleGeolocationError: function (error) {\r\n  \t\tvar c = error.code,\r\n  \t\t    message = error.message ||\r\n  \t\t            (c === 1 ? 'permission denied' :\r\n  \t\t            (c === 2 ? 'position unavailable' : 'timeout'));\r\n\r\n  \t\tif (this._locateOptions.setView && !this._loaded) {\r\n  \t\t\tthis.fitWorld();\r\n  \t\t}\r\n\r\n  \t\t// @section Location events\r\n  \t\t// @event locationerror: ErrorEvent\r\n  \t\t// Fired when geolocation (using the [`locate`](#map-locate) method) failed.\r\n  \t\tthis.fire('locationerror', {\r\n  \t\t\tcode: c,\r\n  \t\t\tmessage: 'Geolocation error: ' + message + '.'\r\n  \t\t});\r\n  \t},\r\n\r\n  \t_handleGeolocationResponse: function (pos) {\r\n  \t\tvar lat = pos.coords.latitude,\r\n  \t\t    lng = pos.coords.longitude,\r\n  \t\t    latlng = new LatLng(lat, lng),\r\n  \t\t    bounds = latlng.toBounds(pos.coords.accuracy * 2),\r\n  \t\t    options = this._locateOptions;\r\n\r\n  \t\tif (options.setView) {\r\n  \t\t\tvar zoom = this.getBoundsZoom(bounds);\r\n  \t\t\tthis.setView(latlng, options.maxZoom ? Math.min(zoom, options.maxZoom) : zoom);\r\n  \t\t}\r\n\r\n  \t\tvar data = {\r\n  \t\t\tlatlng: latlng,\r\n  \t\t\tbounds: bounds,\r\n  \t\t\ttimestamp: pos.timestamp\r\n  \t\t};\r\n\r\n  \t\tfor (var i in pos.coords) {\r\n  \t\t\tif (typeof pos.coords[i] === 'number') {\r\n  \t\t\t\tdata[i] = pos.coords[i];\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\t// @event locationfound: LocationEvent\r\n  \t\t// Fired when geolocation (using the [`locate`](#map-locate) method)\r\n  \t\t// went successfully.\r\n  \t\tthis.fire('locationfound', data);\r\n  \t},\r\n\r\n  \t// TODO Appropriate docs section?\r\n  \t// @section Other Methods\r\n  \t// @method addHandler(name: String, HandlerClass: Function): this\r\n  \t// Adds a new `Handler` to the map, given its name and constructor function.\r\n  \taddHandler: function (name, HandlerClass) {\r\n  \t\tif (!HandlerClass) { return this; }\r\n\r\n  \t\tvar handler = this[name] = new HandlerClass(this);\r\n\r\n  \t\tthis._handlers.push(handler);\r\n\r\n  \t\tif (this.options[name]) {\r\n  \t\t\thandler.enable();\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method remove(): this\r\n  \t// Destroys the map and clears all related event listeners.\r\n  \tremove: function () {\r\n\r\n  \t\tthis._initEvents(true);\r\n  \t\tthis.off('moveend', this._panInsideMaxBounds);\r\n\r\n  \t\tif (this._containerId !== this._container._leaflet_id) {\r\n  \t\t\tthrow new Error('Map container is being reused by another instance');\r\n  \t\t}\r\n\r\n  \t\ttry {\r\n  \t\t\t// throws error in IE6-8\r\n  \t\t\tdelete this._container._leaflet_id;\r\n  \t\t\tdelete this._containerId;\r\n  \t\t} catch (e) {\r\n  \t\t\t/*eslint-disable */\r\n  \t\t\tthis._container._leaflet_id = undefined;\r\n  \t\t\t/* eslint-enable */\r\n  \t\t\tthis._containerId = undefined;\r\n  \t\t}\r\n\r\n  \t\tif (this._locationWatchId !== undefined) {\r\n  \t\t\tthis.stopLocate();\r\n  \t\t}\r\n\r\n  \t\tthis._stop();\r\n\r\n  \t\tremove(this._mapPane);\r\n\r\n  \t\tif (this._clearControlPos) {\r\n  \t\t\tthis._clearControlPos();\r\n  \t\t}\r\n  \t\tif (this._resizeRequest) {\r\n  \t\t\tcancelAnimFrame(this._resizeRequest);\r\n  \t\t\tthis._resizeRequest = null;\r\n  \t\t}\r\n\r\n  \t\tthis._clearHandlers();\r\n\r\n  \t\tif (this._loaded) {\r\n  \t\t\t// @section Map state change events\r\n  \t\t\t// @event unload: Event\r\n  \t\t\t// Fired when the map is destroyed with [remove](#map-remove) method.\r\n  \t\t\tthis.fire('unload');\r\n  \t\t}\r\n\r\n  \t\tvar i;\r\n  \t\tfor (i in this._layers) {\r\n  \t\t\tthis._layers[i].remove();\r\n  \t\t}\r\n  \t\tfor (i in this._panes) {\r\n  \t\t\tremove(this._panes[i]);\r\n  \t\t}\r\n\r\n  \t\tthis._layers = [];\r\n  \t\tthis._panes = [];\r\n  \t\tdelete this._mapPane;\r\n  \t\tdelete this._renderer;\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @section Other Methods\r\n  \t// @method createPane(name: String, container?: HTMLElement): HTMLElement\r\n  \t// Creates a new [map pane](#map-pane) with the given name if it doesn't exist already,\r\n  \t// then returns it. The pane is created as a child of `container`, or\r\n  \t// as a child of the main map pane if not set.\r\n  \tcreatePane: function (name, container) {\r\n  \t\tvar className = 'leaflet-pane' + (name ? ' leaflet-' + name.replace('Pane', '') + '-pane' : ''),\r\n  \t\t    pane = create$1('div', className, container || this._mapPane);\r\n\r\n  \t\tif (name) {\r\n  \t\t\tthis._panes[name] = pane;\r\n  \t\t}\r\n  \t\treturn pane;\r\n  \t},\r\n\r\n  \t// @section Methods for Getting Map State\r\n\r\n  \t// @method getCenter(): LatLng\r\n  \t// Returns the geographical center of the map view\r\n  \tgetCenter: function () {\r\n  \t\tthis._checkIfLoaded();\r\n\r\n  \t\tif (this._lastCenter && !this._moved()) {\r\n  \t\t\treturn this._lastCenter;\r\n  \t\t}\r\n  \t\treturn this.layerPointToLatLng(this._getCenterLayerPoint());\r\n  \t},\r\n\r\n  \t// @method getZoom(): Number\r\n  \t// Returns the current zoom level of the map view\r\n  \tgetZoom: function () {\r\n  \t\treturn this._zoom;\r\n  \t},\r\n\r\n  \t// @method getBounds(): LatLngBounds\r\n  \t// Returns the geographical bounds visible in the current map view\r\n  \tgetBounds: function () {\r\n  \t\tvar bounds = this.getPixelBounds(),\r\n  \t\t    sw = this.unproject(bounds.getBottomLeft()),\r\n  \t\t    ne = this.unproject(bounds.getTopRight());\r\n\r\n  \t\treturn new LatLngBounds(sw, ne);\r\n  \t},\r\n\r\n  \t// @method getMinZoom(): Number\r\n  \t// Returns the minimum zoom level of the map (if set in the `minZoom` option of the map or of any layers), or `0` by default.\r\n  \tgetMinZoom: function () {\r\n  \t\treturn this.options.minZoom === undefined ? this._layersMinZoom || 0 : this.options.minZoom;\r\n  \t},\r\n\r\n  \t// @method getMaxZoom(): Number\r\n  \t// Returns the maximum zoom level of the map (if set in the `maxZoom` option of the map or of any layers).\r\n  \tgetMaxZoom: function () {\r\n  \t\treturn this.options.maxZoom === undefined ?\r\n  \t\t\t(this._layersMaxZoom === undefined ? Infinity : this._layersMaxZoom) :\r\n  \t\t\tthis.options.maxZoom;\r\n  \t},\r\n\r\n  \t// @method getBoundsZoom(bounds: LatLngBounds, inside?: Boolean, padding?: Point): Number\r\n  \t// Returns the maximum zoom level on which the given bounds fit to the map\r\n  \t// view in its entirety. If `inside` (optional) is set to `true`, the method\r\n  \t// instead returns the minimum zoom level on which the map view fits into\r\n  \t// the given bounds in its entirety.\r\n  \tgetBoundsZoom: function (bounds, inside, padding) { // (LatLngBounds[, Boolean, Point]) -> Number\r\n  \t\tbounds = toLatLngBounds(bounds);\r\n  \t\tpadding = toPoint(padding || [0, 0]);\r\n\r\n  \t\tvar zoom = this.getZoom() || 0,\r\n  \t\t    min = this.getMinZoom(),\r\n  \t\t    max = this.getMaxZoom(),\r\n  \t\t    nw = bounds.getNorthWest(),\r\n  \t\t    se = bounds.getSouthEast(),\r\n  \t\t    size = this.getSize().subtract(padding),\r\n  \t\t    boundsSize = toBounds(this.project(se, zoom), this.project(nw, zoom)).getSize(),\r\n  \t\t    snap = any3d ? this.options.zoomSnap : 1,\r\n  \t\t    scalex = size.x / boundsSize.x,\r\n  \t\t    scaley = size.y / boundsSize.y,\r\n  \t\t    scale = inside ? Math.max(scalex, scaley) : Math.min(scalex, scaley);\r\n\r\n  \t\tzoom = this.getScaleZoom(scale, zoom);\r\n\r\n  \t\tif (snap) {\r\n  \t\t\tzoom = Math.round(zoom / (snap / 100)) * (snap / 100); // don't jump if within 1% of a snap level\r\n  \t\t\tzoom = inside ? Math.ceil(zoom / snap) * snap : Math.floor(zoom / snap) * snap;\r\n  \t\t}\r\n\r\n  \t\treturn Math.max(min, Math.min(max, zoom));\r\n  \t},\r\n\r\n  \t// @method getSize(): Point\r\n  \t// Returns the current size of the map container (in pixels).\r\n  \tgetSize: function () {\r\n  \t\tif (!this._size || this._sizeChanged) {\r\n  \t\t\tthis._size = new Point(\r\n  \t\t\t\tthis._container.clientWidth || 0,\r\n  \t\t\t\tthis._container.clientHeight || 0);\r\n\r\n  \t\t\tthis._sizeChanged = false;\r\n  \t\t}\r\n  \t\treturn this._size.clone();\r\n  \t},\r\n\r\n  \t// @method getPixelBounds(): Bounds\r\n  \t// Returns the bounds of the current map view in projected pixel\r\n  \t// coordinates (sometimes useful in layer and overlay implementations).\r\n  \tgetPixelBounds: function (center, zoom) {\r\n  \t\tvar topLeftPoint = this._getTopLeftPoint(center, zoom);\r\n  \t\treturn new Bounds(topLeftPoint, topLeftPoint.add(this.getSize()));\r\n  \t},\r\n\r\n  \t// TODO: Check semantics - isn't the pixel origin the 0,0 coord relative to\r\n  \t// the map pane? \"left point of the map layer\" can be confusing, specially\r\n  \t// since there can be negative offsets.\r\n  \t// @method getPixelOrigin(): Point\r\n  \t// Returns the projected pixel coordinates of the top left point of\r\n  \t// the map layer (useful in custom layer and overlay implementations).\r\n  \tgetPixelOrigin: function () {\r\n  \t\tthis._checkIfLoaded();\r\n  \t\treturn this._pixelOrigin;\r\n  \t},\r\n\r\n  \t// @method getPixelWorldBounds(zoom?: Number): Bounds\r\n  \t// Returns the world's bounds in pixel coordinates for zoom level `zoom`.\r\n  \t// If `zoom` is omitted, the map's current zoom level is used.\r\n  \tgetPixelWorldBounds: function (zoom) {\r\n  \t\treturn this.options.crs.getProjectedBounds(zoom === undefined ? this.getZoom() : zoom);\r\n  \t},\r\n\r\n  \t// @section Other Methods\r\n\r\n  \t// @method getPane(pane: String|HTMLElement): HTMLElement\r\n  \t// Returns a [map pane](#map-pane), given its name or its HTML element (its identity).\r\n  \tgetPane: function (pane) {\r\n  \t\treturn typeof pane === 'string' ? this._panes[pane] : pane;\r\n  \t},\r\n\r\n  \t// @method getPanes(): Object\r\n  \t// Returns a plain object containing the names of all [panes](#map-pane) as keys and\r\n  \t// the panes as values.\r\n  \tgetPanes: function () {\r\n  \t\treturn this._panes;\r\n  \t},\r\n\r\n  \t// @method getContainer: HTMLElement\r\n  \t// Returns the HTML element that contains the map.\r\n  \tgetContainer: function () {\r\n  \t\treturn this._container;\r\n  \t},\r\n\r\n\r\n  \t// @section Conversion Methods\r\n\r\n  \t// @method getZoomScale(toZoom: Number, fromZoom: Number): Number\r\n  \t// Returns the scale factor to be applied to a map transition from zoom level\r\n  \t// `fromZoom` to `toZoom`. Used internally to help with zoom animations.\r\n  \tgetZoomScale: function (toZoom, fromZoom) {\r\n  \t\t// TODO replace with universal implementation after refactoring projections\r\n  \t\tvar crs = this.options.crs;\r\n  \t\tfromZoom = fromZoom === undefined ? this._zoom : fromZoom;\r\n  \t\treturn crs.scale(toZoom) / crs.scale(fromZoom);\r\n  \t},\r\n\r\n  \t// @method getScaleZoom(scale: Number, fromZoom: Number): Number\r\n  \t// Returns the zoom level that the map would end up at, if it is at `fromZoom`\r\n  \t// level and everything is scaled by a factor of `scale`. Inverse of\r\n  \t// [`getZoomScale`](#map-getZoomScale).\r\n  \tgetScaleZoom: function (scale, fromZoom) {\r\n  \t\tvar crs = this.options.crs;\r\n  \t\tfromZoom = fromZoom === undefined ? this._zoom : fromZoom;\r\n  \t\tvar zoom = crs.zoom(scale * crs.scale(fromZoom));\r\n  \t\treturn isNaN(zoom) ? Infinity : zoom;\r\n  \t},\r\n\r\n  \t// @method project(latlng: LatLng, zoom: Number): Point\r\n  \t// Projects a geographical coordinate `LatLng` according to the projection\r\n  \t// of the map's CRS, then scales it according to `zoom` and the CRS's\r\n  \t// `Transformation`. The result is pixel coordinate relative to\r\n  \t// the CRS origin.\r\n  \tproject: function (latlng, zoom) {\r\n  \t\tzoom = zoom === undefined ? this._zoom : zoom;\r\n  \t\treturn this.options.crs.latLngToPoint(toLatLng(latlng), zoom);\r\n  \t},\r\n\r\n  \t// @method unproject(point: Point, zoom: Number): LatLng\r\n  \t// Inverse of [`project`](#map-project).\r\n  \tunproject: function (point, zoom) {\r\n  \t\tzoom = zoom === undefined ? this._zoom : zoom;\r\n  \t\treturn this.options.crs.pointToLatLng(toPoint(point), zoom);\r\n  \t},\r\n\r\n  \t// @method layerPointToLatLng(point: Point): LatLng\r\n  \t// Given a pixel coordinate relative to the [origin pixel](#map-getpixelorigin),\r\n  \t// returns the corresponding geographical coordinate (for the current zoom level).\r\n  \tlayerPointToLatLng: function (point) {\r\n  \t\tvar projectedPoint = toPoint(point).add(this.getPixelOrigin());\r\n  \t\treturn this.unproject(projectedPoint);\r\n  \t},\r\n\r\n  \t// @method latLngToLayerPoint(latlng: LatLng): Point\r\n  \t// Given a geographical coordinate, returns the corresponding pixel coordinate\r\n  \t// relative to the [origin pixel](#map-getpixelorigin).\r\n  \tlatLngToLayerPoint: function (latlng) {\r\n  \t\tvar projectedPoint = this.project(toLatLng(latlng))._round();\r\n  \t\treturn projectedPoint._subtract(this.getPixelOrigin());\r\n  \t},\r\n\r\n  \t// @method wrapLatLng(latlng: LatLng): LatLng\r\n  \t// Returns a `LatLng` where `lat` and `lng` has been wrapped according to the\r\n  \t// map's CRS's `wrapLat` and `wrapLng` properties, if they are outside the\r\n  \t// CRS's bounds.\r\n  \t// By default this means longitude is wrapped around the dateline so its\r\n  \t// value is between -180 and +180 degrees.\r\n  \twrapLatLng: function (latlng) {\r\n  \t\treturn this.options.crs.wrapLatLng(toLatLng(latlng));\r\n  \t},\r\n\r\n  \t// @method wrapLatLngBounds(bounds: LatLngBounds): LatLngBounds\r\n  \t// Returns a `LatLngBounds` with the same size as the given one, ensuring that\r\n  \t// its center is within the CRS's bounds.\r\n  \t// By default this means the center longitude is wrapped around the dateline so its\r\n  \t// value is between -180 and +180 degrees, and the majority of the bounds\r\n  \t// overlaps the CRS's bounds.\r\n  \twrapLatLngBounds: function (latlng) {\r\n  \t\treturn this.options.crs.wrapLatLngBounds(toLatLngBounds(latlng));\r\n  \t},\r\n\r\n  \t// @method distance(latlng1: LatLng, latlng2: LatLng): Number\r\n  \t// Returns the distance between two geographical coordinates according to\r\n  \t// the map's CRS. By default this measures distance in meters.\r\n  \tdistance: function (latlng1, latlng2) {\r\n  \t\treturn this.options.crs.distance(toLatLng(latlng1), toLatLng(latlng2));\r\n  \t},\r\n\r\n  \t// @method containerPointToLayerPoint(point: Point): Point\r\n  \t// Given a pixel coordinate relative to the map container, returns the corresponding\r\n  \t// pixel coordinate relative to the [origin pixel](#map-getpixelorigin).\r\n  \tcontainerPointToLayerPoint: function (point) { // (Point)\r\n  \t\treturn toPoint(point).subtract(this._getMapPanePos());\r\n  \t},\r\n\r\n  \t// @method layerPointToContainerPoint(point: Point): Point\r\n  \t// Given a pixel coordinate relative to the [origin pixel](#map-getpixelorigin),\r\n  \t// returns the corresponding pixel coordinate relative to the map container.\r\n  \tlayerPointToContainerPoint: function (point) { // (Point)\r\n  \t\treturn toPoint(point).add(this._getMapPanePos());\r\n  \t},\r\n\r\n  \t// @method containerPointToLatLng(point: Point): LatLng\r\n  \t// Given a pixel coordinate relative to the map container, returns\r\n  \t// the corresponding geographical coordinate (for the current zoom level).\r\n  \tcontainerPointToLatLng: function (point) {\r\n  \t\tvar layerPoint = this.containerPointToLayerPoint(toPoint(point));\r\n  \t\treturn this.layerPointToLatLng(layerPoint);\r\n  \t},\r\n\r\n  \t// @method latLngToContainerPoint(latlng: LatLng): Point\r\n  \t// Given a geographical coordinate, returns the corresponding pixel coordinate\r\n  \t// relative to the map container.\r\n  \tlatLngToContainerPoint: function (latlng) {\r\n  \t\treturn this.layerPointToContainerPoint(this.latLngToLayerPoint(toLatLng(latlng)));\r\n  \t},\r\n\r\n  \t// @method mouseEventToContainerPoint(ev: MouseEvent): Point\r\n  \t// Given a MouseEvent object, returns the pixel coordinate relative to the\r\n  \t// map container where the event took place.\r\n  \tmouseEventToContainerPoint: function (e) {\r\n  \t\treturn getMousePosition(e, this._container);\r\n  \t},\r\n\r\n  \t// @method mouseEventToLayerPoint(ev: MouseEvent): Point\r\n  \t// Given a MouseEvent object, returns the pixel coordinate relative to\r\n  \t// the [origin pixel](#map-getpixelorigin) where the event took place.\r\n  \tmouseEventToLayerPoint: function (e) {\r\n  \t\treturn this.containerPointToLayerPoint(this.mouseEventToContainerPoint(e));\r\n  \t},\r\n\r\n  \t// @method mouseEventToLatLng(ev: MouseEvent): LatLng\r\n  \t// Given a MouseEvent object, returns geographical coordinate where the\r\n  \t// event took place.\r\n  \tmouseEventToLatLng: function (e) { // (MouseEvent)\r\n  \t\treturn this.layerPointToLatLng(this.mouseEventToLayerPoint(e));\r\n  \t},\r\n\r\n\r\n  \t// map initialization methods\r\n\r\n  \t_initContainer: function (id) {\r\n  \t\tvar container = this._container = get(id);\r\n\r\n  \t\tif (!container) {\r\n  \t\t\tthrow new Error('Map container not found.');\r\n  \t\t} else if (container._leaflet_id) {\r\n  \t\t\tthrow new Error('Map container is already initialized.');\r\n  \t\t}\r\n\r\n  \t\ton(container, 'scroll', this._onScroll, this);\r\n  \t\tthis._containerId = stamp(container);\r\n  \t},\r\n\r\n  \t_initLayout: function () {\r\n  \t\tvar container = this._container;\r\n\r\n  \t\tthis._fadeAnimated = this.options.fadeAnimation && any3d;\r\n\r\n  \t\taddClass(container, 'leaflet-container' +\r\n  \t\t\t(touch ? ' leaflet-touch' : '') +\r\n  \t\t\t(retina ? ' leaflet-retina' : '') +\r\n  \t\t\t(ielt9 ? ' leaflet-oldie' : '') +\r\n  \t\t\t(safari ? ' leaflet-safari' : '') +\r\n  \t\t\t(this._fadeAnimated ? ' leaflet-fade-anim' : ''));\r\n\r\n  \t\tvar position = getStyle(container, 'position');\r\n\r\n  \t\tif (position !== 'absolute' && position !== 'relative' && position !== 'fixed') {\r\n  \t\t\tcontainer.style.position = 'relative';\r\n  \t\t}\r\n\r\n  \t\tthis._initPanes();\r\n\r\n  \t\tif (this._initControlPos) {\r\n  \t\t\tthis._initControlPos();\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_initPanes: function () {\r\n  \t\tvar panes = this._panes = {};\r\n  \t\tthis._paneRenderers = {};\r\n\r\n  \t\t// @section\r\n  \t\t//\r\n  \t\t// Panes are DOM elements used to control the ordering of layers on the map. You\r\n  \t\t// can access panes with [`map.getPane`](#map-getpane) or\r\n  \t\t// [`map.getPanes`](#map-getpanes) methods. New panes can be created with the\r\n  \t\t// [`map.createPane`](#map-createpane) method.\r\n  \t\t//\r\n  \t\t// Every map has the following default panes that differ only in zIndex.\r\n  \t\t//\r\n  \t\t// @pane mapPane: HTMLElement = 'auto'\r\n  \t\t// Pane that contains all other map panes\r\n\r\n  \t\tthis._mapPane = this.createPane('mapPane', this._container);\r\n  \t\tsetPosition(this._mapPane, new Point(0, 0));\r\n\r\n  \t\t// @pane tilePane: HTMLElement = 200\r\n  \t\t// Pane for `GridLayer`s and `TileLayer`s\r\n  \t\tthis.createPane('tilePane');\r\n  \t\t// @pane overlayPane: HTMLElement = 400\r\n  \t\t// Pane for overlay shadows (e.g. `Marker` shadows)\r\n  \t\tthis.createPane('shadowPane');\r\n  \t\t// @pane shadowPane: HTMLElement = 500\r\n  \t\t// Pane for vectors (`Path`s, like `Polyline`s and `Polygon`s), `ImageOverlay`s and `VideoOverlay`s\r\n  \t\tthis.createPane('overlayPane');\r\n  \t\t// @pane markerPane: HTMLElement = 600\r\n  \t\t// Pane for `Icon`s of `Marker`s\r\n  \t\tthis.createPane('markerPane');\r\n  \t\t// @pane tooltipPane: HTMLElement = 650\r\n  \t\t// Pane for `Tooltip`s.\r\n  \t\tthis.createPane('tooltipPane');\r\n  \t\t// @pane popupPane: HTMLElement = 700\r\n  \t\t// Pane for `Popup`s.\r\n  \t\tthis.createPane('popupPane');\r\n\r\n  \t\tif (!this.options.markerZoomAnimation) {\r\n  \t\t\taddClass(panes.markerPane, 'leaflet-zoom-hide');\r\n  \t\t\taddClass(panes.shadowPane, 'leaflet-zoom-hide');\r\n  \t\t}\r\n  \t},\r\n\r\n\r\n  \t// private methods that modify map state\r\n\r\n  \t// @section Map state change events\r\n  \t_resetView: function (center, zoom) {\r\n  \t\tsetPosition(this._mapPane, new Point(0, 0));\r\n\r\n  \t\tvar loading = !this._loaded;\r\n  \t\tthis._loaded = true;\r\n  \t\tzoom = this._limitZoom(zoom);\r\n\r\n  \t\tthis.fire('viewprereset');\r\n\r\n  \t\tvar zoomChanged = this._zoom !== zoom;\r\n  \t\tthis\r\n  \t\t\t._moveStart(zoomChanged, false)\r\n  \t\t\t._move(center, zoom)\r\n  \t\t\t._moveEnd(zoomChanged);\r\n\r\n  \t\t// @event viewreset: Event\r\n  \t\t// Fired when the map needs to redraw its content (this usually happens\r\n  \t\t// on map zoom or load). Very useful for creating custom overlays.\r\n  \t\tthis.fire('viewreset');\r\n\r\n  \t\t// @event load: Event\r\n  \t\t// Fired when the map is initialized (when its center and zoom are set\r\n  \t\t// for the first time).\r\n  \t\tif (loading) {\r\n  \t\t\tthis.fire('load');\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_moveStart: function (zoomChanged, noMoveStart) {\r\n  \t\t// @event zoomstart: Event\r\n  \t\t// Fired when the map zoom is about to change (e.g. before zoom animation).\r\n  \t\t// @event movestart: Event\r\n  \t\t// Fired when the view of the map starts changing (e.g. user starts dragging the map).\r\n  \t\tif (zoomChanged) {\r\n  \t\t\tthis.fire('zoomstart');\r\n  \t\t}\r\n  \t\tif (!noMoveStart) {\r\n  \t\t\tthis.fire('movestart');\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t_move: function (center, zoom, data) {\r\n  \t\tif (zoom === undefined) {\r\n  \t\t\tzoom = this._zoom;\r\n  \t\t}\r\n  \t\tvar zoomChanged = this._zoom !== zoom;\r\n\r\n  \t\tthis._zoom = zoom;\r\n  \t\tthis._lastCenter = center;\r\n  \t\tthis._pixelOrigin = this._getNewPixelOrigin(center);\r\n\r\n  \t\t// @event zoom: Event\r\n  \t\t// Fired repeatedly during any change in zoom level, including zoom\r\n  \t\t// and fly animations.\r\n  \t\tif (zoomChanged || (data && data.pinch)) {\t// Always fire 'zoom' if pinching because #3530\r\n  \t\t\tthis.fire('zoom', data);\r\n  \t\t}\r\n\r\n  \t\t// @event move: Event\r\n  \t\t// Fired repeatedly during any movement of the map, including pan and\r\n  \t\t// fly animations.\r\n  \t\treturn this.fire('move', data);\r\n  \t},\r\n\r\n  \t_moveEnd: function (zoomChanged) {\r\n  \t\t// @event zoomend: Event\r\n  \t\t// Fired when the map has changed, after any animations.\r\n  \t\tif (zoomChanged) {\r\n  \t\t\tthis.fire('zoomend');\r\n  \t\t}\r\n\r\n  \t\t// @event moveend: Event\r\n  \t\t// Fired when the center of the map stops changing (e.g. user stopped\r\n  \t\t// dragging the map).\r\n  \t\treturn this.fire('moveend');\r\n  \t},\r\n\r\n  \t_stop: function () {\r\n  \t\tcancelAnimFrame(this._flyToFrame);\r\n  \t\tif (this._panAnim) {\r\n  \t\t\tthis._panAnim.stop();\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t_rawPanBy: function (offset) {\r\n  \t\tsetPosition(this._mapPane, this._getMapPanePos().subtract(offset));\r\n  \t},\r\n\r\n  \t_getZoomSpan: function () {\r\n  \t\treturn this.getMaxZoom() - this.getMinZoom();\r\n  \t},\r\n\r\n  \t_panInsideMaxBounds: function () {\r\n  \t\tif (!this._enforcingBounds) {\r\n  \t\t\tthis.panInsideBounds(this.options.maxBounds);\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_checkIfLoaded: function () {\r\n  \t\tif (!this._loaded) {\r\n  \t\t\tthrow new Error('Set map center and zoom first.');\r\n  \t\t}\r\n  \t},\r\n\r\n  \t// DOM event handling\r\n\r\n  \t// @section Interaction events\r\n  \t_initEvents: function (remove$$1) {\r\n  \t\tthis._targets = {};\r\n  \t\tthis._targets[stamp(this._container)] = this;\r\n\r\n  \t\tvar onOff = remove$$1 ? off : on;\r\n\r\n  \t\t// @event click: MouseEvent\r\n  \t\t// Fired when the user clicks (or taps) the map.\r\n  \t\t// @event dblclick: MouseEvent\r\n  \t\t// Fired when the user double-clicks (or double-taps) the map.\r\n  \t\t// @event mousedown: MouseEvent\r\n  \t\t// Fired when the user pushes the mouse button on the map.\r\n  \t\t// @event mouseup: MouseEvent\r\n  \t\t// Fired when the user releases the mouse button on the map.\r\n  \t\t// @event mouseover: MouseEvent\r\n  \t\t// Fired when the mouse enters the map.\r\n  \t\t// @event mouseout: MouseEvent\r\n  \t\t// Fired when the mouse leaves the map.\r\n  \t\t// @event mousemove: MouseEvent\r\n  \t\t// Fired while the mouse moves over the map.\r\n  \t\t// @event contextmenu: MouseEvent\r\n  \t\t// Fired when the user pushes the right mouse button on the map, prevents\r\n  \t\t// default browser context menu from showing if there are listeners on\r\n  \t\t// this event. Also fired on mobile when the user holds a single touch\r\n  \t\t// for a second (also called long press).\r\n  \t\t// @event keypress: KeyboardEvent\r\n  \t\t// Fired when the user presses a key from the keyboard that produces a character value while the map is focused.\r\n  \t\t// @event keydown: KeyboardEvent\r\n  \t\t// Fired when the user presses a key from the keyboard while the map is focused. Unlike the `keypress` event,\r\n  \t\t// the `keydown` event is fired for keys that produce a character value and for keys\r\n  \t\t// that do not produce a character value.\r\n  \t\t// @event keyup: KeyboardEvent\r\n  \t\t// Fired when the user releases a key from the keyboard while the map is focused.\r\n  \t\tonOff(this._container, 'click dblclick mousedown mouseup ' +\r\n  \t\t\t'mouseover mouseout mousemove contextmenu keypress keydown keyup', this._handleDOMEvent, this);\r\n\r\n  \t\tif (this.options.trackResize) {\r\n  \t\t\tonOff(window, 'resize', this._onResize, this);\r\n  \t\t}\r\n\r\n  \t\tif (any3d && this.options.transform3DLimit) {\r\n  \t\t\t(remove$$1 ? this.off : this.on).call(this, 'moveend', this._onMoveEnd);\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_onResize: function () {\r\n  \t\tcancelAnimFrame(this._resizeRequest);\r\n  \t\tthis._resizeRequest = requestAnimFrame(\r\n  \t\t        function () { this.invalidateSize({debounceMoveend: true}); }, this);\r\n  \t},\r\n\r\n  \t_onScroll: function () {\r\n  \t\tthis._container.scrollTop  = 0;\r\n  \t\tthis._container.scrollLeft = 0;\r\n  \t},\r\n\r\n  \t_onMoveEnd: function () {\r\n  \t\tvar pos = this._getMapPanePos();\r\n  \t\tif (Math.max(Math.abs(pos.x), Math.abs(pos.y)) >= this.options.transform3DLimit) {\r\n  \t\t\t// https://bugzilla.mozilla.org/show_bug.cgi?id=1203873 but Webkit also have\r\n  \t\t\t// a pixel offset on very high values, see: http://jsfiddle.net/dg6r5hhb/\r\n  \t\t\tthis._resetView(this.getCenter(), this.getZoom());\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_findEventTargets: function (e, type) {\r\n  \t\tvar targets = [],\r\n  \t\t    target,\r\n  \t\t    isHover = type === 'mouseout' || type === 'mouseover',\r\n  \t\t    src = e.target || e.srcElement,\r\n  \t\t    dragging = false;\r\n\r\n  \t\twhile (src) {\r\n  \t\t\ttarget = this._targets[stamp(src)];\r\n  \t\t\tif (target && (type === 'click' || type === 'preclick') && !e._simulated && this._draggableMoved(target)) {\r\n  \t\t\t\t// Prevent firing click after you just dragged an object.\r\n  \t\t\t\tdragging = true;\r\n  \t\t\t\tbreak;\r\n  \t\t\t}\r\n  \t\t\tif (target && target.listens(type, true)) {\r\n  \t\t\t\tif (isHover && !isExternalTarget(src, e)) { break; }\r\n  \t\t\t\ttargets.push(target);\r\n  \t\t\t\tif (isHover) { break; }\r\n  \t\t\t}\r\n  \t\t\tif (src === this._container) { break; }\r\n  \t\t\tsrc = src.parentNode;\r\n  \t\t}\r\n  \t\tif (!targets.length && !dragging && !isHover && isExternalTarget(src, e)) {\r\n  \t\t\ttargets = [this];\r\n  \t\t}\r\n  \t\treturn targets;\r\n  \t},\r\n\r\n  \t_handleDOMEvent: function (e) {\r\n  \t\tif (!this._loaded || skipped(e)) { return; }\r\n\r\n  \t\tvar type = e.type;\r\n\r\n  \t\tif (type === 'mousedown' || type === 'keypress' || type === 'keyup' || type === 'keydown') {\r\n  \t\t\t// prevents outline when clicking on keyboard-focusable element\r\n  \t\t\tpreventOutline(e.target || e.srcElement);\r\n  \t\t}\r\n\r\n  \t\tthis._fireDOMEvent(e, type);\r\n  \t},\r\n\r\n  \t_mouseEvents: ['click', 'dblclick', 'mouseover', 'mouseout', 'contextmenu'],\r\n\r\n  \t_fireDOMEvent: function (e, type, targets) {\r\n\r\n  \t\tif (e.type === 'click') {\r\n  \t\t\t// Fire a synthetic 'preclick' event which propagates up (mainly for closing popups).\r\n  \t\t\t// @event preclick: MouseEvent\r\n  \t\t\t// Fired before mouse click on the map (sometimes useful when you\r\n  \t\t\t// want something to happen on click before any existing click\r\n  \t\t\t// handlers start running).\r\n  \t\t\tvar synth = extend({}, e);\r\n  \t\t\tsynth.type = 'preclick';\r\n  \t\t\tthis._fireDOMEvent(synth, synth.type, targets);\r\n  \t\t}\r\n\r\n  \t\tif (e._stopped) { return; }\r\n\r\n  \t\t// Find the layer the event is propagating from and its parents.\r\n  \t\ttargets = (targets || []).concat(this._findEventTargets(e, type));\r\n\r\n  \t\tif (!targets.length) { return; }\r\n\r\n  \t\tvar target = targets[0];\r\n  \t\tif (type === 'contextmenu' && target.listens(type, true)) {\r\n  \t\t\tpreventDefault(e);\r\n  \t\t}\r\n\r\n  \t\tvar data = {\r\n  \t\t\toriginalEvent: e\r\n  \t\t};\r\n\r\n  \t\tif (e.type !== 'keypress' && e.type !== 'keydown' && e.type !== 'keyup') {\r\n  \t\t\tvar isMarker = target.getLatLng && (!target._radius || target._radius <= 10);\r\n  \t\t\tdata.containerPoint = isMarker ?\r\n  \t\t\t\tthis.latLngToContainerPoint(target.getLatLng()) : this.mouseEventToContainerPoint(e);\r\n  \t\t\tdata.layerPoint = this.containerPointToLayerPoint(data.containerPoint);\r\n  \t\t\tdata.latlng = isMarker ? target.getLatLng() : this.layerPointToLatLng(data.layerPoint);\r\n  \t\t}\r\n\r\n  \t\tfor (var i = 0; i < targets.length; i++) {\r\n  \t\t\ttargets[i].fire(type, data, true);\r\n  \t\t\tif (data.originalEvent._stopped ||\r\n  \t\t\t\t(targets[i].options.bubblingMouseEvents === false && indexOf(this._mouseEvents, type) !== -1)) { return; }\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_draggableMoved: function (obj) {\r\n  \t\tobj = obj.dragging && obj.dragging.enabled() ? obj : this;\r\n  \t\treturn (obj.dragging && obj.dragging.moved()) || (this.boxZoom && this.boxZoom.moved());\r\n  \t},\r\n\r\n  \t_clearHandlers: function () {\r\n  \t\tfor (var i = 0, len = this._handlers.length; i < len; i++) {\r\n  \t\t\tthis._handlers[i].disable();\r\n  \t\t}\r\n  \t},\r\n\r\n  \t// @section Other Methods\r\n\r\n  \t// @method whenReady(fn: Function, context?: Object): this\r\n  \t// Runs the given function `fn` when the map gets initialized with\r\n  \t// a view (center and zoom) and at least one layer, or immediately\r\n  \t// if it's already initialized, optionally passing a function context.\r\n  \twhenReady: function (callback, context) {\r\n  \t\tif (this._loaded) {\r\n  \t\t\tcallback.call(context || this, {target: this});\r\n  \t\t} else {\r\n  \t\t\tthis.on('load', callback, context);\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n\r\n  \t// private methods for getting map state\r\n\r\n  \t_getMapPanePos: function () {\r\n  \t\treturn getPosition(this._mapPane) || new Point(0, 0);\r\n  \t},\r\n\r\n  \t_moved: function () {\r\n  \t\tvar pos = this._getMapPanePos();\r\n  \t\treturn pos && !pos.equals([0, 0]);\r\n  \t},\r\n\r\n  \t_getTopLeftPoint: function (center, zoom) {\r\n  \t\tvar pixelOrigin = center && zoom !== undefined ?\r\n  \t\t\tthis._getNewPixelOrigin(center, zoom) :\r\n  \t\t\tthis.getPixelOrigin();\r\n  \t\treturn pixelOrigin.subtract(this._getMapPanePos());\r\n  \t},\r\n\r\n  \t_getNewPixelOrigin: function (center, zoom) {\r\n  \t\tvar viewHalf = this.getSize()._divideBy(2);\r\n  \t\treturn this.project(center, zoom)._subtract(viewHalf)._add(this._getMapPanePos())._round();\r\n  \t},\r\n\r\n  \t_latLngToNewLayerPoint: function (latlng, zoom, center) {\r\n  \t\tvar topLeft = this._getNewPixelOrigin(center, zoom);\r\n  \t\treturn this.project(latlng, zoom)._subtract(topLeft);\r\n  \t},\r\n\r\n  \t_latLngBoundsToNewLayerBounds: function (latLngBounds, zoom, center) {\r\n  \t\tvar topLeft = this._getNewPixelOrigin(center, zoom);\r\n  \t\treturn toBounds([\r\n  \t\t\tthis.project(latLngBounds.getSouthWest(), zoom)._subtract(topLeft),\r\n  \t\t\tthis.project(latLngBounds.getNorthWest(), zoom)._subtract(topLeft),\r\n  \t\t\tthis.project(latLngBounds.getSouthEast(), zoom)._subtract(topLeft),\r\n  \t\t\tthis.project(latLngBounds.getNorthEast(), zoom)._subtract(topLeft)\r\n  \t\t]);\r\n  \t},\r\n\r\n  \t// layer point of the current center\r\n  \t_getCenterLayerPoint: function () {\r\n  \t\treturn this.containerPointToLayerPoint(this.getSize()._divideBy(2));\r\n  \t},\r\n\r\n  \t// offset of the specified place to the current center in pixels\r\n  \t_getCenterOffset: function (latlng) {\r\n  \t\treturn this.latLngToLayerPoint(latlng).subtract(this._getCenterLayerPoint());\r\n  \t},\r\n\r\n  \t// adjust center for view to get inside bounds\r\n  \t_limitCenter: function (center, zoom, bounds) {\r\n\r\n  \t\tif (!bounds) { return center; }\r\n\r\n  \t\tvar centerPoint = this.project(center, zoom),\r\n  \t\t    viewHalf = this.getSize().divideBy(2),\r\n  \t\t    viewBounds = new Bounds(centerPoint.subtract(viewHalf), centerPoint.add(viewHalf)),\r\n  \t\t    offset = this._getBoundsOffset(viewBounds, bounds, zoom);\r\n\r\n  \t\t// If offset is less than a pixel, ignore.\r\n  \t\t// This prevents unstable projections from getting into\r\n  \t\t// an infinite loop of tiny offsets.\r\n  \t\tif (offset.round().equals([0, 0])) {\r\n  \t\t\treturn center;\r\n  \t\t}\r\n\r\n  \t\treturn this.unproject(centerPoint.add(offset), zoom);\r\n  \t},\r\n\r\n  \t// adjust offset for view to get inside bounds\r\n  \t_limitOffset: function (offset, bounds) {\r\n  \t\tif (!bounds) { return offset; }\r\n\r\n  \t\tvar viewBounds = this.getPixelBounds(),\r\n  \t\t    newBounds = new Bounds(viewBounds.min.add(offset), viewBounds.max.add(offset));\r\n\r\n  \t\treturn offset.add(this._getBoundsOffset(newBounds, bounds));\r\n  \t},\r\n\r\n  \t// returns offset needed for pxBounds to get inside maxBounds at a specified zoom\r\n  \t_getBoundsOffset: function (pxBounds, maxBounds, zoom) {\r\n  \t\tvar projectedMaxBounds = toBounds(\r\n  \t\t        this.project(maxBounds.getNorthEast(), zoom),\r\n  \t\t        this.project(maxBounds.getSouthWest(), zoom)\r\n  \t\t    ),\r\n  \t\t    minOffset = projectedMaxBounds.min.subtract(pxBounds.min),\r\n  \t\t    maxOffset = projectedMaxBounds.max.subtract(pxBounds.max),\r\n\r\n  \t\t    dx = this._rebound(minOffset.x, -maxOffset.x),\r\n  \t\t    dy = this._rebound(minOffset.y, -maxOffset.y);\r\n\r\n  \t\treturn new Point(dx, dy);\r\n  \t},\r\n\r\n  \t_rebound: function (left, right) {\r\n  \t\treturn left + right > 0 ?\r\n  \t\t\tMath.round(left - right) / 2 :\r\n  \t\t\tMath.max(0, Math.ceil(left)) - Math.max(0, Math.floor(right));\r\n  \t},\r\n\r\n  \t_limitZoom: function (zoom) {\r\n  \t\tvar min = this.getMinZoom(),\r\n  \t\t    max = this.getMaxZoom(),\r\n  \t\t    snap = any3d ? this.options.zoomSnap : 1;\r\n  \t\tif (snap) {\r\n  \t\t\tzoom = Math.round(zoom / snap) * snap;\r\n  \t\t}\r\n  \t\treturn Math.max(min, Math.min(max, zoom));\r\n  \t},\r\n\r\n  \t_onPanTransitionStep: function () {\r\n  \t\tthis.fire('move');\r\n  \t},\r\n\r\n  \t_onPanTransitionEnd: function () {\r\n  \t\tremoveClass(this._mapPane, 'leaflet-pan-anim');\r\n  \t\tthis.fire('moveend');\r\n  \t},\r\n\r\n  \t_tryAnimatedPan: function (center, options) {\r\n  \t\t// difference between the new and current centers in pixels\r\n  \t\tvar offset = this._getCenterOffset(center)._trunc();\r\n\r\n  \t\t// don't animate too far unless animate: true specified in options\r\n  \t\tif ((options && options.animate) !== true && !this.getSize().contains(offset)) { return false; }\r\n\r\n  \t\tthis.panBy(offset, options);\r\n\r\n  \t\treturn true;\r\n  \t},\r\n\r\n  \t_createAnimProxy: function () {\r\n\r\n  \t\tvar proxy = this._proxy = create$1('div', 'leaflet-proxy leaflet-zoom-animated');\r\n  \t\tthis._panes.mapPane.appendChild(proxy);\r\n\r\n  \t\tthis.on('zoomanim', function (e) {\r\n  \t\t\tvar prop = TRANSFORM,\r\n  \t\t\t    transform = this._proxy.style[prop];\r\n\r\n  \t\t\tsetTransform(this._proxy, this.project(e.center, e.zoom), this.getZoomScale(e.zoom, 1));\r\n\r\n  \t\t\t// workaround for case when transform is the same and so transitionend event is not fired\r\n  \t\t\tif (transform === this._proxy.style[prop] && this._animatingZoom) {\r\n  \t\t\t\tthis._onZoomTransitionEnd();\r\n  \t\t\t}\r\n  \t\t}, this);\r\n\r\n  \t\tthis.on('load moveend', this._animMoveEnd, this);\r\n\r\n  \t\tthis._on('unload', this._destroyAnimProxy, this);\r\n  \t},\r\n\r\n  \t_destroyAnimProxy: function () {\r\n  \t\tremove(this._proxy);\r\n  \t\tthis.off('load moveend', this._animMoveEnd, this);\r\n  \t\tdelete this._proxy;\r\n  \t},\r\n\r\n  \t_animMoveEnd: function () {\r\n  \t\tvar c = this.getCenter(),\r\n  \t\t    z = this.getZoom();\r\n  \t\tsetTransform(this._proxy, this.project(c, z), this.getZoomScale(z, 1));\r\n  \t},\r\n\r\n  \t_catchTransitionEnd: function (e) {\r\n  \t\tif (this._animatingZoom && e.propertyName.indexOf('transform') >= 0) {\r\n  \t\t\tthis._onZoomTransitionEnd();\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_nothingToAnimate: function () {\r\n  \t\treturn !this._container.getElementsByClassName('leaflet-zoom-animated').length;\r\n  \t},\r\n\r\n  \t_tryAnimatedZoom: function (center, zoom, options) {\r\n\r\n  \t\tif (this._animatingZoom) { return true; }\r\n\r\n  \t\toptions = options || {};\r\n\r\n  \t\t// don't animate if disabled, not supported or zoom difference is too large\r\n  \t\tif (!this._zoomAnimated || options.animate === false || this._nothingToAnimate() ||\r\n  \t\t        Math.abs(zoom - this._zoom) > this.options.zoomAnimationThreshold) { return false; }\r\n\r\n  \t\t// offset is the pixel coords of the zoom origin relative to the current center\r\n  \t\tvar scale = this.getZoomScale(zoom),\r\n  \t\t    offset = this._getCenterOffset(center)._divideBy(1 - 1 / scale);\r\n\r\n  \t\t// don't animate if the zoom origin isn't within one screen from the current center, unless forced\r\n  \t\tif (options.animate !== true && !this.getSize().contains(offset)) { return false; }\r\n\r\n  \t\trequestAnimFrame(function () {\r\n  \t\t\tthis\r\n  \t\t\t    ._moveStart(true, false)\r\n  \t\t\t    ._animateZoom(center, zoom, true);\r\n  \t\t}, this);\r\n\r\n  \t\treturn true;\r\n  \t},\r\n\r\n  \t_animateZoom: function (center, zoom, startAnim, noUpdate) {\r\n  \t\tif (!this._mapPane) { return; }\r\n\r\n  \t\tif (startAnim) {\r\n  \t\t\tthis._animatingZoom = true;\r\n\r\n  \t\t\t// remember what center/zoom to set after animation\r\n  \t\t\tthis._animateToCenter = center;\r\n  \t\t\tthis._animateToZoom = zoom;\r\n\r\n  \t\t\taddClass(this._mapPane, 'leaflet-zoom-anim');\r\n  \t\t}\r\n\r\n  \t\t// @section Other Events\r\n  \t\t// @event zoomanim: ZoomAnimEvent\r\n  \t\t// Fired at least once per zoom animation. For continuous zoom, like pinch zooming, fired once per frame during zoom.\r\n  \t\tthis.fire('zoomanim', {\r\n  \t\t\tcenter: center,\r\n  \t\t\tzoom: zoom,\r\n  \t\t\tnoUpdate: noUpdate\r\n  \t\t});\r\n\r\n  \t\t// Work around webkit not firing 'transitionend', see https://github.com/Leaflet/Leaflet/issues/3689, 2693\r\n  \t\tsetTimeout(bind(this._onZoomTransitionEnd, this), 250);\r\n  \t},\r\n\r\n  \t_onZoomTransitionEnd: function () {\r\n  \t\tif (!this._animatingZoom) { return; }\r\n\r\n  \t\tif (this._mapPane) {\r\n  \t\t\tremoveClass(this._mapPane, 'leaflet-zoom-anim');\r\n  \t\t}\r\n\r\n  \t\tthis._animatingZoom = false;\r\n\r\n  \t\tthis._move(this._animateToCenter, this._animateToZoom);\r\n\r\n  \t\t// This anim frame should prevent an obscure iOS webkit tile loading race condition.\r\n  \t\trequestAnimFrame(function () {\r\n  \t\t\tthis._moveEnd(true);\r\n  \t\t}, this);\r\n  \t}\r\n  });\r\n\r\n  // @section\r\n\r\n  // @factory L.map(id: String, options?: Map options)\r\n  // Instantiates a map object given the DOM ID of a `<div>` element\r\n  // and optionally an object literal with `Map options`.\r\n  //\r\n  // @alternative\r\n  // @factory L.map(el: HTMLElement, options?: Map options)\r\n  // Instantiates a map object given an instance of a `<div>` HTML element\r\n  // and optionally an object literal with `Map options`.\r\n  function createMap(id, options) {\r\n  \treturn new Map(id, options);\r\n  }\n\n  /*\r\n   * @class Control\r\n   * @aka L.Control\r\n   * @inherits Class\r\n   *\r\n   * L.Control is a base class for implementing map controls. Handles positioning.\r\n   * All other controls extend from this class.\r\n   */\r\n\r\n  var Control = Class.extend({\r\n  \t// @section\r\n  \t// @aka Control options\r\n  \toptions: {\r\n  \t\t// @option position: String = 'topright'\r\n  \t\t// The position of the control (one of the map corners). Possible values are `'topleft'`,\r\n  \t\t// `'topright'`, `'bottomleft'` or `'bottomright'`\r\n  \t\tposition: 'topright'\r\n  \t},\r\n\r\n  \tinitialize: function (options) {\r\n  \t\tsetOptions(this, options);\r\n  \t},\r\n\r\n  \t/* @section\r\n  \t * Classes extending L.Control will inherit the following methods:\r\n  \t *\r\n  \t * @method getPosition: string\r\n  \t * Returns the position of the control.\r\n  \t */\r\n  \tgetPosition: function () {\r\n  \t\treturn this.options.position;\r\n  \t},\r\n\r\n  \t// @method setPosition(position: string): this\r\n  \t// Sets the position of the control.\r\n  \tsetPosition: function (position) {\r\n  \t\tvar map = this._map;\r\n\r\n  \t\tif (map) {\r\n  \t\t\tmap.removeControl(this);\r\n  \t\t}\r\n\r\n  \t\tthis.options.position = position;\r\n\r\n  \t\tif (map) {\r\n  \t\t\tmap.addControl(this);\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method getContainer: HTMLElement\r\n  \t// Returns the HTMLElement that contains the control.\r\n  \tgetContainer: function () {\r\n  \t\treturn this._container;\r\n  \t},\r\n\r\n  \t// @method addTo(map: Map): this\r\n  \t// Adds the control to the given map.\r\n  \taddTo: function (map) {\r\n  \t\tthis.remove();\r\n  \t\tthis._map = map;\r\n\r\n  \t\tvar container = this._container = this.onAdd(map),\r\n  \t\t    pos = this.getPosition(),\r\n  \t\t    corner = map._controlCorners[pos];\r\n\r\n  \t\taddClass(container, 'leaflet-control');\r\n\r\n  \t\tif (pos.indexOf('bottom') !== -1) {\r\n  \t\t\tcorner.insertBefore(container, corner.firstChild);\r\n  \t\t} else {\r\n  \t\t\tcorner.appendChild(container);\r\n  \t\t}\r\n\r\n  \t\tthis._map.on('unload', this.remove, this);\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method remove: this\r\n  \t// Removes the control from the map it is currently active on.\r\n  \tremove: function () {\r\n  \t\tif (!this._map) {\r\n  \t\t\treturn this;\r\n  \t\t}\r\n\r\n  \t\tremove(this._container);\r\n\r\n  \t\tif (this.onRemove) {\r\n  \t\t\tthis.onRemove(this._map);\r\n  \t\t}\r\n\r\n  \t\tthis._map.off('unload', this.remove, this);\r\n  \t\tthis._map = null;\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t_refocusOnMap: function (e) {\r\n  \t\t// if map exists and event is not a keyboard event\r\n  \t\tif (this._map && e && e.screenX > 0 && e.screenY > 0) {\r\n  \t\t\tthis._map.getContainer().focus();\r\n  \t\t}\r\n  \t}\r\n  });\r\n\r\n  var control = function (options) {\r\n  \treturn new Control(options);\r\n  };\r\n\r\n  /* @section Extension methods\r\n   * @uninheritable\r\n   *\r\n   * Every control should extend from `L.Control` and (re-)implement the following methods.\r\n   *\r\n   * @method onAdd(map: Map): HTMLElement\r\n   * Should return the container DOM element for the control and add listeners on relevant map events. Called on [`control.addTo(map)`](#control-addTo).\r\n   *\r\n   * @method onRemove(map: Map)\r\n   * Optional method. Should contain all clean up code that removes the listeners previously added in [`onAdd`](#control-onadd). Called on [`control.remove()`](#control-remove).\r\n   */\r\n\r\n  /* @namespace Map\r\n   * @section Methods for Layers and Controls\r\n   */\r\n  Map.include({\r\n  \t// @method addControl(control: Control): this\r\n  \t// Adds the given control to the map\r\n  \taddControl: function (control) {\r\n  \t\tcontrol.addTo(this);\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method removeControl(control: Control): this\r\n  \t// Removes the given control from the map\r\n  \tremoveControl: function (control) {\r\n  \t\tcontrol.remove();\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t_initControlPos: function () {\r\n  \t\tvar corners = this._controlCorners = {},\r\n  \t\t    l = 'leaflet-',\r\n  \t\t    container = this._controlContainer =\r\n  \t\t            create$1('div', l + 'control-container', this._container);\r\n\r\n  \t\tfunction createCorner(vSide, hSide) {\r\n  \t\t\tvar className = l + vSide + ' ' + l + hSide;\r\n\r\n  \t\t\tcorners[vSide + hSide] = create$1('div', className, container);\r\n  \t\t}\r\n\r\n  \t\tcreateCorner('top', 'left');\r\n  \t\tcreateCorner('top', 'right');\r\n  \t\tcreateCorner('bottom', 'left');\r\n  \t\tcreateCorner('bottom', 'right');\r\n  \t},\r\n\r\n  \t_clearControlPos: function () {\r\n  \t\tfor (var i in this._controlCorners) {\r\n  \t\t\tremove(this._controlCorners[i]);\r\n  \t\t}\r\n  \t\tremove(this._controlContainer);\r\n  \t\tdelete this._controlCorners;\r\n  \t\tdelete this._controlContainer;\r\n  \t}\r\n  });\n\n  /*\r\n   * @class Control.Layers\r\n   * @aka L.Control.Layers\r\n   * @inherits Control\r\n   *\r\n   * The layers control gives users the ability to switch between different base layers and switch overlays on/off (check out the [detailed example](http://leafletjs.com/examples/layers-control/)). Extends `Control`.\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * var baseLayers = {\r\n   * \t\"Mapbox\": mapbox,\r\n   * \t\"OpenStreetMap\": osm\r\n   * };\r\n   *\r\n   * var overlays = {\r\n   * \t\"Marker\": marker,\r\n   * \t\"Roads\": roadsLayer\r\n   * };\r\n   *\r\n   * L.control.layers(baseLayers, overlays).addTo(map);\r\n   * ```\r\n   *\r\n   * The `baseLayers` and `overlays` parameters are object literals with layer names as keys and `Layer` objects as values:\r\n   *\r\n   * ```js\r\n   * {\r\n   *     \"<someName1>\": layer1,\r\n   *     \"<someName2>\": layer2\r\n   * }\r\n   * ```\r\n   *\r\n   * The layer names can contain HTML, which allows you to add additional styling to the items:\r\n   *\r\n   * ```js\r\n   * {\"<img src='my-layer-icon' /> <span class='my-layer-item'>My Layer</span>\": myLayer}\r\n   * ```\r\n   */\r\n\r\n  var Layers = Control.extend({\r\n  \t// @section\r\n  \t// @aka Control.Layers options\r\n  \toptions: {\r\n  \t\t// @option collapsed: Boolean = true\r\n  \t\t// If `true`, the control will be collapsed into an icon and expanded on mouse hover or touch.\r\n  \t\tcollapsed: true,\r\n  \t\tposition: 'topright',\r\n\r\n  \t\t// @option autoZIndex: Boolean = true\r\n  \t\t// If `true`, the control will assign zIndexes in increasing order to all of its layers so that the order is preserved when switching them on/off.\r\n  \t\tautoZIndex: true,\r\n\r\n  \t\t// @option hideSingleBase: Boolean = false\r\n  \t\t// If `true`, the base layers in the control will be hidden when there is only one.\r\n  \t\thideSingleBase: false,\r\n\r\n  \t\t// @option sortLayers: Boolean = false\r\n  \t\t// Whether to sort the layers. When `false`, layers will keep the order\r\n  \t\t// in which they were added to the control.\r\n  \t\tsortLayers: false,\r\n\r\n  \t\t// @option sortFunction: Function = *\r\n  \t\t// A [compare function](https://developer.mozilla.org/docs/Web/JavaScript/Reference/Global_Objects/Array/sort)\r\n  \t\t// that will be used for sorting the layers, when `sortLayers` is `true`.\r\n  \t\t// The function receives both the `L.Layer` instances and their names, as in\r\n  \t\t// `sortFunction(layerA, layerB, nameA, nameB)`.\r\n  \t\t// By default, it sorts layers alphabetically by their name.\r\n  \t\tsortFunction: function (layerA, layerB, nameA, nameB) {\r\n  \t\t\treturn nameA < nameB ? -1 : (nameB < nameA ? 1 : 0);\r\n  \t\t}\r\n  \t},\r\n\r\n  \tinitialize: function (baseLayers, overlays, options) {\r\n  \t\tsetOptions(this, options);\r\n\r\n  \t\tthis._layerControlInputs = [];\r\n  \t\tthis._layers = [];\r\n  \t\tthis._lastZIndex = 0;\r\n  \t\tthis._handlingClick = false;\r\n\r\n  \t\tfor (var i in baseLayers) {\r\n  \t\t\tthis._addLayer(baseLayers[i], i);\r\n  \t\t}\r\n\r\n  \t\tfor (i in overlays) {\r\n  \t\t\tthis._addLayer(overlays[i], i, true);\r\n  \t\t}\r\n  \t},\r\n\r\n  \tonAdd: function (map) {\r\n  \t\tthis._initLayout();\r\n  \t\tthis._update();\r\n\r\n  \t\tthis._map = map;\r\n  \t\tmap.on('zoomend', this._checkDisabledLayers, this);\r\n\r\n  \t\tfor (var i = 0; i < this._layers.length; i++) {\r\n  \t\t\tthis._layers[i].layer.on('add remove', this._onLayerChange, this);\r\n  \t\t}\r\n\r\n  \t\treturn this._container;\r\n  \t},\r\n\r\n  \taddTo: function (map) {\r\n  \t\tControl.prototype.addTo.call(this, map);\r\n  \t\t// Trigger expand after Layers Control has been inserted into DOM so that is now has an actual height.\r\n  \t\treturn this._expandIfNotCollapsed();\r\n  \t},\r\n\r\n  \tonRemove: function () {\r\n  \t\tthis._map.off('zoomend', this._checkDisabledLayers, this);\r\n\r\n  \t\tfor (var i = 0; i < this._layers.length; i++) {\r\n  \t\t\tthis._layers[i].layer.off('add remove', this._onLayerChange, this);\r\n  \t\t}\r\n  \t},\r\n\r\n  \t// @method addBaseLayer(layer: Layer, name: String): this\r\n  \t// Adds a base layer (radio button entry) with the given name to the control.\r\n  \taddBaseLayer: function (layer, name) {\r\n  \t\tthis._addLayer(layer, name);\r\n  \t\treturn (this._map) ? this._update() : this;\r\n  \t},\r\n\r\n  \t// @method addOverlay(layer: Layer, name: String): this\r\n  \t// Adds an overlay (checkbox entry) with the given name to the control.\r\n  \taddOverlay: function (layer, name) {\r\n  \t\tthis._addLayer(layer, name, true);\r\n  \t\treturn (this._map) ? this._update() : this;\r\n  \t},\r\n\r\n  \t// @method removeLayer(layer: Layer): this\r\n  \t// Remove the given layer from the control.\r\n  \tremoveLayer: function (layer) {\r\n  \t\tlayer.off('add remove', this._onLayerChange, this);\r\n\r\n  \t\tvar obj = this._getLayer(stamp(layer));\r\n  \t\tif (obj) {\r\n  \t\t\tthis._layers.splice(this._layers.indexOf(obj), 1);\r\n  \t\t}\r\n  \t\treturn (this._map) ? this._update() : this;\r\n  \t},\r\n\r\n  \t// @method expand(): this\r\n  \t// Expand the control container if collapsed.\r\n  \texpand: function () {\r\n  \t\taddClass(this._container, 'leaflet-control-layers-expanded');\r\n  \t\tthis._section.style.height = null;\r\n  \t\tvar acceptableHeight = this._map.getSize().y - (this._container.offsetTop + 50);\r\n  \t\tif (acceptableHeight < this._section.clientHeight) {\r\n  \t\t\taddClass(this._section, 'leaflet-control-layers-scrollbar');\r\n  \t\t\tthis._section.style.height = acceptableHeight + 'px';\r\n  \t\t} else {\r\n  \t\t\tremoveClass(this._section, 'leaflet-control-layers-scrollbar');\r\n  \t\t}\r\n  \t\tthis._checkDisabledLayers();\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method collapse(): this\r\n  \t// Collapse the control container if expanded.\r\n  \tcollapse: function () {\r\n  \t\tremoveClass(this._container, 'leaflet-control-layers-expanded');\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t_initLayout: function () {\r\n  \t\tvar className = 'leaflet-control-layers',\r\n  \t\t    container = this._container = create$1('div', className),\r\n  \t\t    collapsed = this.options.collapsed;\r\n\r\n  \t\t// makes this work on IE touch devices by stopping it from firing a mouseout event when the touch is released\r\n  \t\tcontainer.setAttribute('aria-haspopup', true);\r\n\r\n  \t\tdisableClickPropagation(container);\r\n  \t\tdisableScrollPropagation(container);\r\n\r\n  \t\tvar section = this._section = create$1('section', className + '-list');\r\n\r\n  \t\tif (collapsed) {\r\n  \t\t\tthis._map.on('click', this.collapse, this);\r\n\r\n  \t\t\tif (!android) {\r\n  \t\t\t\ton(container, {\r\n  \t\t\t\t\tmouseenter: this.expand,\r\n  \t\t\t\t\tmouseleave: this.collapse\r\n  \t\t\t\t}, this);\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\tvar link = this._layersLink = create$1('a', className + '-toggle', container);\r\n  \t\tlink.href = '#';\r\n  \t\tlink.title = 'Layers';\r\n\r\n  \t\tif (touch) {\r\n  \t\t\ton(link, 'click', stop);\r\n  \t\t\ton(link, 'click', this.expand, this);\r\n  \t\t} else {\r\n  \t\t\ton(link, 'focus', this.expand, this);\r\n  \t\t}\r\n\r\n  \t\tif (!collapsed) {\r\n  \t\t\tthis.expand();\r\n  \t\t}\r\n\r\n  \t\tthis._baseLayersList = create$1('div', className + '-base', section);\r\n  \t\tthis._separator = create$1('div', className + '-separator', section);\r\n  \t\tthis._overlaysList = create$1('div', className + '-overlays', section);\r\n\r\n  \t\tcontainer.appendChild(section);\r\n  \t},\r\n\r\n  \t_getLayer: function (id) {\r\n  \t\tfor (var i = 0; i < this._layers.length; i++) {\r\n\r\n  \t\t\tif (this._layers[i] && stamp(this._layers[i].layer) === id) {\r\n  \t\t\t\treturn this._layers[i];\r\n  \t\t\t}\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_addLayer: function (layer, name, overlay) {\r\n  \t\tif (this._map) {\r\n  \t\t\tlayer.on('add remove', this._onLayerChange, this);\r\n  \t\t}\r\n\r\n  \t\tthis._layers.push({\r\n  \t\t\tlayer: layer,\r\n  \t\t\tname: name,\r\n  \t\t\toverlay: overlay\r\n  \t\t});\r\n\r\n  \t\tif (this.options.sortLayers) {\r\n  \t\t\tthis._layers.sort(bind(function (a, b) {\r\n  \t\t\t\treturn this.options.sortFunction(a.layer, b.layer, a.name, b.name);\r\n  \t\t\t}, this));\r\n  \t\t}\r\n\r\n  \t\tif (this.options.autoZIndex && layer.setZIndex) {\r\n  \t\t\tthis._lastZIndex++;\r\n  \t\t\tlayer.setZIndex(this._lastZIndex);\r\n  \t\t}\r\n\r\n  \t\tthis._expandIfNotCollapsed();\r\n  \t},\r\n\r\n  \t_update: function () {\r\n  \t\tif (!this._container) { return this; }\r\n\r\n  \t\tempty(this._baseLayersList);\r\n  \t\tempty(this._overlaysList);\r\n\r\n  \t\tthis._layerControlInputs = [];\r\n  \t\tvar baseLayersPresent, overlaysPresent, i, obj, baseLayersCount = 0;\r\n\r\n  \t\tfor (i = 0; i < this._layers.length; i++) {\r\n  \t\t\tobj = this._layers[i];\r\n  \t\t\tthis._addItem(obj);\r\n  \t\t\toverlaysPresent = overlaysPresent || obj.overlay;\r\n  \t\t\tbaseLayersPresent = baseLayersPresent || !obj.overlay;\r\n  \t\t\tbaseLayersCount += !obj.overlay ? 1 : 0;\r\n  \t\t}\r\n\r\n  \t\t// Hide base layers section if there's only one layer.\r\n  \t\tif (this.options.hideSingleBase) {\r\n  \t\t\tbaseLayersPresent = baseLayersPresent && baseLayersCount > 1;\r\n  \t\t\tthis._baseLayersList.style.display = baseLayersPresent ? '' : 'none';\r\n  \t\t}\r\n\r\n  \t\tthis._separator.style.display = overlaysPresent && baseLayersPresent ? '' : 'none';\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t_onLayerChange: function (e) {\r\n  \t\tif (!this._handlingClick) {\r\n  \t\t\tthis._update();\r\n  \t\t}\r\n\r\n  \t\tvar obj = this._getLayer(stamp(e.target));\r\n\r\n  \t\t// @namespace Map\r\n  \t\t// @section Layer events\r\n  \t\t// @event baselayerchange: LayersControlEvent\r\n  \t\t// Fired when the base layer is changed through the [layers control](#control-layers).\r\n  \t\t// @event overlayadd: LayersControlEvent\r\n  \t\t// Fired when an overlay is selected through the [layers control](#control-layers).\r\n  \t\t// @event overlayremove: LayersControlEvent\r\n  \t\t// Fired when an overlay is deselected through the [layers control](#control-layers).\r\n  \t\t// @namespace Control.Layers\r\n  \t\tvar type = obj.overlay ?\r\n  \t\t\t(e.type === 'add' ? 'overlayadd' : 'overlayremove') :\r\n  \t\t\t(e.type === 'add' ? 'baselayerchange' : null);\r\n\r\n  \t\tif (type) {\r\n  \t\t\tthis._map.fire(type, obj);\r\n  \t\t}\r\n  \t},\r\n\r\n  \t// IE7 bugs out if you create a radio dynamically, so you have to do it this hacky way (see http://bit.ly/PqYLBe)\r\n  \t_createRadioElement: function (name, checked) {\r\n\r\n  \t\tvar radioHtml = '<input type=\"radio\" class=\"leaflet-control-layers-selector\" name=\"' +\r\n  \t\t\t\tname + '\"' + (checked ? ' checked=\"checked\"' : '') + '/>';\r\n\r\n  \t\tvar radioFragment = document.createElement('div');\r\n  \t\tradioFragment.innerHTML = radioHtml;\r\n\r\n  \t\treturn radioFragment.firstChild;\r\n  \t},\r\n\r\n  \t_addItem: function (obj) {\r\n  \t\tvar label = document.createElement('label'),\r\n  \t\t    checked = this._map.hasLayer(obj.layer),\r\n  \t\t    input;\r\n\r\n  \t\tif (obj.overlay) {\r\n  \t\t\tinput = document.createElement('input');\r\n  \t\t\tinput.type = 'checkbox';\r\n  \t\t\tinput.className = 'leaflet-control-layers-selector';\r\n  \t\t\tinput.defaultChecked = checked;\r\n  \t\t} else {\r\n  \t\t\tinput = this._createRadioElement('leaflet-base-layers_' + stamp(this), checked);\r\n  \t\t}\r\n\r\n  \t\tthis._layerControlInputs.push(input);\r\n  \t\tinput.layerId = stamp(obj.layer);\r\n\r\n  \t\ton(input, 'click', this._onInputClick, this);\r\n\r\n  \t\tvar name = document.createElement('span');\r\n  \t\tname.innerHTML = ' ' + obj.name;\r\n\r\n  \t\t// Helps from preventing layer control flicker when checkboxes are disabled\r\n  \t\t// https://github.com/Leaflet/Leaflet/issues/2771\r\n  \t\tvar holder = document.createElement('div');\r\n\r\n  \t\tlabel.appendChild(holder);\r\n  \t\tholder.appendChild(input);\r\n  \t\tholder.appendChild(name);\r\n\r\n  \t\tvar container = obj.overlay ? this._overlaysList : this._baseLayersList;\r\n  \t\tcontainer.appendChild(label);\r\n\r\n  \t\tthis._checkDisabledLayers();\r\n  \t\treturn label;\r\n  \t},\r\n\r\n  \t_onInputClick: function () {\r\n  \t\tvar inputs = this._layerControlInputs,\r\n  \t\t    input, layer;\r\n  \t\tvar addedLayers = [],\r\n  \t\t    removedLayers = [];\r\n\r\n  \t\tthis._handlingClick = true;\r\n\r\n  \t\tfor (var i = inputs.length - 1; i >= 0; i--) {\r\n  \t\t\tinput = inputs[i];\r\n  \t\t\tlayer = this._getLayer(input.layerId).layer;\r\n\r\n  \t\t\tif (input.checked) {\r\n  \t\t\t\taddedLayers.push(layer);\r\n  \t\t\t} else if (!input.checked) {\r\n  \t\t\t\tremovedLayers.push(layer);\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\t// Bugfix issue 2318: Should remove all old layers before readding new ones\r\n  \t\tfor (i = 0; i < removedLayers.length; i++) {\r\n  \t\t\tif (this._map.hasLayer(removedLayers[i])) {\r\n  \t\t\t\tthis._map.removeLayer(removedLayers[i]);\r\n  \t\t\t}\r\n  \t\t}\r\n  \t\tfor (i = 0; i < addedLayers.length; i++) {\r\n  \t\t\tif (!this._map.hasLayer(addedLayers[i])) {\r\n  \t\t\t\tthis._map.addLayer(addedLayers[i]);\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\tthis._handlingClick = false;\r\n\r\n  \t\tthis._refocusOnMap();\r\n  \t},\r\n\r\n  \t_checkDisabledLayers: function () {\r\n  \t\tvar inputs = this._layerControlInputs,\r\n  \t\t    input,\r\n  \t\t    layer,\r\n  \t\t    zoom = this._map.getZoom();\r\n\r\n  \t\tfor (var i = inputs.length - 1; i >= 0; i--) {\r\n  \t\t\tinput = inputs[i];\r\n  \t\t\tlayer = this._getLayer(input.layerId).layer;\r\n  \t\t\tinput.disabled = (layer.options.minZoom !== undefined && zoom < layer.options.minZoom) ||\r\n  \t\t\t                 (layer.options.maxZoom !== undefined && zoom > layer.options.maxZoom);\r\n\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_expandIfNotCollapsed: function () {\r\n  \t\tif (this._map && !this.options.collapsed) {\r\n  \t\t\tthis.expand();\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t_expand: function () {\r\n  \t\t// Backward compatibility, remove me in 1.1.\r\n  \t\treturn this.expand();\r\n  \t},\r\n\r\n  \t_collapse: function () {\r\n  \t\t// Backward compatibility, remove me in 1.1.\r\n  \t\treturn this.collapse();\r\n  \t}\r\n\r\n  });\r\n\r\n\r\n  // @factory L.control.layers(baselayers?: Object, overlays?: Object, options?: Control.Layers options)\r\n  // Creates a layers control with the given layers. Base layers will be switched with radio buttons, while overlays will be switched with checkboxes. Note that all base layers should be passed in the base layers object, but only one should be added to the map during map instantiation.\r\n  var layers = function (baseLayers, overlays, options) {\r\n  \treturn new Layers(baseLayers, overlays, options);\r\n  };\n\n  /*\r\n   * @class Control.Zoom\r\n   * @aka L.Control.Zoom\r\n   * @inherits Control\r\n   *\r\n   * A basic zoom control with two buttons (zoom in and zoom out). It is put on the map by default unless you set its [`zoomControl` option](#map-zoomcontrol) to `false`. Extends `Control`.\r\n   */\r\n\r\n  var Zoom = Control.extend({\r\n  \t// @section\r\n  \t// @aka Control.Zoom options\r\n  \toptions: {\r\n  \t\tposition: 'topleft',\r\n\r\n  \t\t// @option zoomInText: String = '+'\r\n  \t\t// The text set on the 'zoom in' button.\r\n  \t\tzoomInText: '+',\r\n\r\n  \t\t// @option zoomInTitle: String = 'Zoom in'\r\n  \t\t// The title set on the 'zoom in' button.\r\n  \t\tzoomInTitle: 'Zoom in',\r\n\r\n  \t\t// @option zoomOutText: String = '&#x2212;'\r\n  \t\t// The text set on the 'zoom out' button.\r\n  \t\tzoomOutText: '&#x2212;',\r\n\r\n  \t\t// @option zoomOutTitle: String = 'Zoom out'\r\n  \t\t// The title set on the 'zoom out' button.\r\n  \t\tzoomOutTitle: 'Zoom out'\r\n  \t},\r\n\r\n  \tonAdd: function (map) {\r\n  \t\tvar zoomName = 'leaflet-control-zoom',\r\n  \t\t    container = create$1('div', zoomName + ' leaflet-bar'),\r\n  \t\t    options = this.options;\r\n\r\n  \t\tthis._zoomInButton  = this._createButton(options.zoomInText, options.zoomInTitle,\r\n  \t\t        zoomName + '-in',  container, this._zoomIn);\r\n  \t\tthis._zoomOutButton = this._createButton(options.zoomOutText, options.zoomOutTitle,\r\n  \t\t        zoomName + '-out', container, this._zoomOut);\r\n\r\n  \t\tthis._updateDisabled();\r\n  \t\tmap.on('zoomend zoomlevelschange', this._updateDisabled, this);\r\n\r\n  \t\treturn container;\r\n  \t},\r\n\r\n  \tonRemove: function (map) {\r\n  \t\tmap.off('zoomend zoomlevelschange', this._updateDisabled, this);\r\n  \t},\r\n\r\n  \tdisable: function () {\r\n  \t\tthis._disabled = true;\r\n  \t\tthis._updateDisabled();\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \tenable: function () {\r\n  \t\tthis._disabled = false;\r\n  \t\tthis._updateDisabled();\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t_zoomIn: function (e) {\r\n  \t\tif (!this._disabled && this._map._zoom < this._map.getMaxZoom()) {\r\n  \t\t\tthis._map.zoomIn(this._map.options.zoomDelta * (e.shiftKey ? 3 : 1));\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_zoomOut: function (e) {\r\n  \t\tif (!this._disabled && this._map._zoom > this._map.getMinZoom()) {\r\n  \t\t\tthis._map.zoomOut(this._map.options.zoomDelta * (e.shiftKey ? 3 : 1));\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_createButton: function (html, title, className, container, fn) {\r\n  \t\tvar link = create$1('a', className, container);\r\n  \t\tlink.innerHTML = html;\r\n  \t\tlink.href = '#';\r\n  \t\tlink.title = title;\r\n\r\n  \t\t/*\r\n  \t\t * Will force screen readers like VoiceOver to read this as \"Zoom in - button\"\r\n  \t\t */\r\n  \t\tlink.setAttribute('role', 'button');\r\n  \t\tlink.setAttribute('aria-label', title);\r\n\r\n  \t\tdisableClickPropagation(link);\r\n  \t\ton(link, 'click', stop);\r\n  \t\ton(link, 'click', fn, this);\r\n  \t\ton(link, 'click', this._refocusOnMap, this);\r\n\r\n  \t\treturn link;\r\n  \t},\r\n\r\n  \t_updateDisabled: function () {\r\n  \t\tvar map = this._map,\r\n  \t\t    className = 'leaflet-disabled';\r\n\r\n  \t\tremoveClass(this._zoomInButton, className);\r\n  \t\tremoveClass(this._zoomOutButton, className);\r\n\r\n  \t\tif (this._disabled || map._zoom === map.getMinZoom()) {\r\n  \t\t\taddClass(this._zoomOutButton, className);\r\n  \t\t}\r\n  \t\tif (this._disabled || map._zoom === map.getMaxZoom()) {\r\n  \t\t\taddClass(this._zoomInButton, className);\r\n  \t\t}\r\n  \t}\r\n  });\r\n\r\n  // @namespace Map\r\n  // @section Control options\r\n  // @option zoomControl: Boolean = true\r\n  // Whether a [zoom control](#control-zoom) is added to the map by default.\r\n  Map.mergeOptions({\r\n  \tzoomControl: true\r\n  });\r\n\r\n  Map.addInitHook(function () {\r\n  \tif (this.options.zoomControl) {\r\n  \t\t// @section Controls\r\n  \t\t// @property zoomControl: Control.Zoom\r\n  \t\t// The default zoom control (only available if the\r\n  \t\t// [`zoomControl` option](#map-zoomcontrol) was `true` when creating the map).\r\n  \t\tthis.zoomControl = new Zoom();\r\n  \t\tthis.addControl(this.zoomControl);\r\n  \t}\r\n  });\r\n\r\n  // @namespace Control.Zoom\r\n  // @factory L.control.zoom(options: Control.Zoom options)\r\n  // Creates a zoom control\r\n  var zoom = function (options) {\r\n  \treturn new Zoom(options);\r\n  };\n\n  /*\n   * @class Control.Scale\n   * @aka L.Control.Scale\n   * @inherits Control\n   *\n   * A simple scale control that shows the scale of the current center of screen in metric (m/km) and imperial (mi/ft) systems. Extends `Control`.\n   *\n   * @example\n   *\n   * ```js\n   * L.control.scale().addTo(map);\n   * ```\n   */\n\n  var Scale = Control.extend({\n  \t// @section\n  \t// @aka Control.Scale options\n  \toptions: {\n  \t\tposition: 'bottomleft',\n\n  \t\t// @option maxWidth: Number = 100\n  \t\t// Maximum width of the control in pixels. The width is set dynamically to show round values (e.g. 100, 200, 500).\n  \t\tmaxWidth: 100,\n\n  \t\t// @option metric: Boolean = True\n  \t\t// Whether to show the metric scale line (m/km).\n  \t\tmetric: true,\n\n  \t\t// @option imperial: Boolean = True\n  \t\t// Whether to show the imperial scale line (mi/ft).\n  \t\timperial: true\n\n  \t\t// @option updateWhenIdle: Boolean = false\n  \t\t// If `true`, the control is updated on [`moveend`](#map-moveend), otherwise it's always up-to-date (updated on [`move`](#map-move)).\n  \t},\n\n  \tonAdd: function (map) {\n  \t\tvar className = 'leaflet-control-scale',\n  \t\t    container = create$1('div', className),\n  \t\t    options = this.options;\n\n  \t\tthis._addScales(options, className + '-line', container);\n\n  \t\tmap.on(options.updateWhenIdle ? 'moveend' : 'move', this._update, this);\n  \t\tmap.whenReady(this._update, this);\n\n  \t\treturn container;\n  \t},\n\n  \tonRemove: function (map) {\n  \t\tmap.off(this.options.updateWhenIdle ? 'moveend' : 'move', this._update, this);\n  \t},\n\n  \t_addScales: function (options, className, container) {\n  \t\tif (options.metric) {\n  \t\t\tthis._mScale = create$1('div', className, container);\n  \t\t}\n  \t\tif (options.imperial) {\n  \t\t\tthis._iScale = create$1('div', className, container);\n  \t\t}\n  \t},\n\n  \t_update: function () {\n  \t\tvar map = this._map,\n  \t\t    y = map.getSize().y / 2;\n\n  \t\tvar maxMeters = map.distance(\n  \t\t\tmap.containerPointToLatLng([0, y]),\n  \t\t\tmap.containerPointToLatLng([this.options.maxWidth, y]));\n\n  \t\tthis._updateScales(maxMeters);\n  \t},\n\n  \t_updateScales: function (maxMeters) {\n  \t\tif (this.options.metric && maxMeters) {\n  \t\t\tthis._updateMetric(maxMeters);\n  \t\t}\n  \t\tif (this.options.imperial && maxMeters) {\n  \t\t\tthis._updateImperial(maxMeters);\n  \t\t}\n  \t},\n\n  \t_updateMetric: function (maxMeters) {\n  \t\tvar meters = this._getRoundNum(maxMeters),\n  \t\t    label = meters < 1000 ? meters + ' m' : (meters / 1000) + ' km';\n\n  \t\tthis._updateScale(this._mScale, label, meters / maxMeters);\n  \t},\n\n  \t_updateImperial: function (maxMeters) {\n  \t\tvar maxFeet = maxMeters * 3.2808399,\n  \t\t    maxMiles, miles, feet;\n\n  \t\tif (maxFeet > 5280) {\n  \t\t\tmaxMiles = maxFeet / 5280;\n  \t\t\tmiles = this._getRoundNum(maxMiles);\n  \t\t\tthis._updateScale(this._iScale, miles + ' mi', miles / maxMiles);\n\n  \t\t} else {\n  \t\t\tfeet = this._getRoundNum(maxFeet);\n  \t\t\tthis._updateScale(this._iScale, feet + ' ft', feet / maxFeet);\n  \t\t}\n  \t},\n\n  \t_updateScale: function (scale, text, ratio) {\n  \t\tscale.style.width = Math.round(this.options.maxWidth * ratio) + 'px';\n  \t\tscale.innerHTML = text;\n  \t},\n\n  \t_getRoundNum: function (num) {\n  \t\tvar pow10 = Math.pow(10, (Math.floor(num) + '').length - 1),\n  \t\t    d = num / pow10;\n\n  \t\td = d >= 10 ? 10 :\n  \t\t    d >= 5 ? 5 :\n  \t\t    d >= 3 ? 3 :\n  \t\t    d >= 2 ? 2 : 1;\n\n  \t\treturn pow10 * d;\n  \t}\n  });\n\n\n  // @factory L.control.scale(options?: Control.Scale options)\n  // Creates an scale control with the given options.\n  var scale = function (options) {\n  \treturn new Scale(options);\n  };\n\n  /*\r\n   * @class Control.Attribution\r\n   * @aka L.Control.Attribution\r\n   * @inherits Control\r\n   *\r\n   * The attribution control allows you to display attribution data in a small text box on a map. It is put on the map by default unless you set its [`attributionControl` option](#map-attributioncontrol) to `false`, and it fetches attribution texts from layers with the [`getAttribution` method](#layer-getattribution) automatically. Extends Control.\r\n   */\r\n\r\n  var Attribution = Control.extend({\r\n  \t// @section\r\n  \t// @aka Control.Attribution options\r\n  \toptions: {\r\n  \t\tposition: 'bottomright',\r\n\r\n  \t\t// @option prefix: String = 'Leaflet'\r\n  \t\t// The HTML text shown before the attributions. Pass `false` to disable.\r\n  \t\tprefix: '<a href=\"https://leafletjs.com\" title=\"A JS library for interactive maps\">Leaflet</a>'\r\n  \t},\r\n\r\n  \tinitialize: function (options) {\r\n  \t\tsetOptions(this, options);\r\n\r\n  \t\tthis._attributions = {};\r\n  \t},\r\n\r\n  \tonAdd: function (map) {\r\n  \t\tmap.attributionControl = this;\r\n  \t\tthis._container = create$1('div', 'leaflet-control-attribution');\r\n  \t\tdisableClickPropagation(this._container);\r\n\r\n  \t\t// TODO ugly, refactor\r\n  \t\tfor (var i in map._layers) {\r\n  \t\t\tif (map._layers[i].getAttribution) {\r\n  \t\t\t\tthis.addAttribution(map._layers[i].getAttribution());\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\tthis._update();\r\n\r\n  \t\treturn this._container;\r\n  \t},\r\n\r\n  \t// @method setPrefix(prefix: String): this\r\n  \t// Sets the text before the attributions.\r\n  \tsetPrefix: function (prefix) {\r\n  \t\tthis.options.prefix = prefix;\r\n  \t\tthis._update();\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method addAttribution(text: String): this\r\n  \t// Adds an attribution text (e.g. `'Vector data &copy; Mapbox'`).\r\n  \taddAttribution: function (text) {\r\n  \t\tif (!text) { return this; }\r\n\r\n  \t\tif (!this._attributions[text]) {\r\n  \t\t\tthis._attributions[text] = 0;\r\n  \t\t}\r\n  \t\tthis._attributions[text]++;\r\n\r\n  \t\tthis._update();\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method removeAttribution(text: String): this\r\n  \t// Removes an attribution text.\r\n  \tremoveAttribution: function (text) {\r\n  \t\tif (!text) { return this; }\r\n\r\n  \t\tif (this._attributions[text]) {\r\n  \t\t\tthis._attributions[text]--;\r\n  \t\t\tthis._update();\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t_update: function () {\r\n  \t\tif (!this._map) { return; }\r\n\r\n  \t\tvar attribs = [];\r\n\r\n  \t\tfor (var i in this._attributions) {\r\n  \t\t\tif (this._attributions[i]) {\r\n  \t\t\t\tattribs.push(i);\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\tvar prefixAndAttribs = [];\r\n\r\n  \t\tif (this.options.prefix) {\r\n  \t\t\tprefixAndAttribs.push(this.options.prefix);\r\n  \t\t}\r\n  \t\tif (attribs.length) {\r\n  \t\t\tprefixAndAttribs.push(attribs.join(', '));\r\n  \t\t}\r\n\r\n  \t\tthis._container.innerHTML = prefixAndAttribs.join(' | ');\r\n  \t}\r\n  });\r\n\r\n  // @namespace Map\r\n  // @section Control options\r\n  // @option attributionControl: Boolean = true\r\n  // Whether a [attribution control](#control-attribution) is added to the map by default.\r\n  Map.mergeOptions({\r\n  \tattributionControl: true\r\n  });\r\n\r\n  Map.addInitHook(function () {\r\n  \tif (this.options.attributionControl) {\r\n  \t\tnew Attribution().addTo(this);\r\n  \t}\r\n  });\r\n\r\n  // @namespace Control.Attribution\r\n  // @factory L.control.attribution(options: Control.Attribution options)\r\n  // Creates an attribution control.\r\n  var attribution = function (options) {\r\n  \treturn new Attribution(options);\r\n  };\n\n  Control.Layers = Layers;\n  Control.Zoom = Zoom;\n  Control.Scale = Scale;\n  Control.Attribution = Attribution;\n\n  control.layers = layers;\n  control.zoom = zoom;\n  control.scale = scale;\n  control.attribution = attribution;\n\n  /*\n  \tL.Handler is a base class for handler classes that are used internally to inject\n  \tinteraction features like dragging to classes like Map and Marker.\n  */\n\n  // @class Handler\n  // @aka L.Handler\n  // Abstract class for map interaction handlers\n\n  var Handler = Class.extend({\n  \tinitialize: function (map) {\n  \t\tthis._map = map;\n  \t},\n\n  \t// @method enable(): this\n  \t// Enables the handler\n  \tenable: function () {\n  \t\tif (this._enabled) { return this; }\n\n  \t\tthis._enabled = true;\n  \t\tthis.addHooks();\n  \t\treturn this;\n  \t},\n\n  \t// @method disable(): this\n  \t// Disables the handler\n  \tdisable: function () {\n  \t\tif (!this._enabled) { return this; }\n\n  \t\tthis._enabled = false;\n  \t\tthis.removeHooks();\n  \t\treturn this;\n  \t},\n\n  \t// @method enabled(): Boolean\n  \t// Returns `true` if the handler is enabled\n  \tenabled: function () {\n  \t\treturn !!this._enabled;\n  \t}\n\n  \t// @section Extension methods\n  \t// Classes inheriting from `Handler` must implement the two following methods:\n  \t// @method addHooks()\n  \t// Called when the handler is enabled, should add event hooks.\n  \t// @method removeHooks()\n  \t// Called when the handler is disabled, should remove the event hooks added previously.\n  });\n\n  // @section There is static function which can be called without instantiating L.Handler:\n  // @function addTo(map: Map, name: String): this\n  // Adds a new Handler to the given map with the given name.\n  Handler.addTo = function (map, name) {\n  \tmap.addHandler(name, this);\n  \treturn this;\n  };\n\n  var Mixin = {Events: Events};\n\n  /*\r\n   * @class Draggable\r\n   * @aka L.Draggable\r\n   * @inherits Evented\r\n   *\r\n   * A class for making DOM elements draggable (including touch support).\r\n   * Used internally for map and marker dragging. Only works for elements\r\n   * that were positioned with [`L.DomUtil.setPosition`](#domutil-setposition).\r\n   *\r\n   * @example\r\n   * ```js\r\n   * var draggable = new L.Draggable(elementToDrag);\r\n   * draggable.enable();\r\n   * ```\r\n   */\r\n\r\n  var START = touch ? 'touchstart mousedown' : 'mousedown';\r\n  var END = {\r\n  \tmousedown: 'mouseup',\r\n  \ttouchstart: 'touchend',\r\n  \tpointerdown: 'touchend',\r\n  \tMSPointerDown: 'touchend'\r\n  };\r\n  var MOVE = {\r\n  \tmousedown: 'mousemove',\r\n  \ttouchstart: 'touchmove',\r\n  \tpointerdown: 'touchmove',\r\n  \tMSPointerDown: 'touchmove'\r\n  };\r\n\r\n\r\n  var Draggable = Evented.extend({\r\n\r\n  \toptions: {\r\n  \t\t// @section\r\n  \t\t// @aka Draggable options\r\n  \t\t// @option clickTolerance: Number = 3\r\n  \t\t// The max number of pixels a user can shift the mouse pointer during a click\r\n  \t\t// for it to be considered a valid click (as opposed to a mouse drag).\r\n  \t\tclickTolerance: 3\r\n  \t},\r\n\r\n  \t// @constructor L.Draggable(el: HTMLElement, dragHandle?: HTMLElement, preventOutline?: Boolean, options?: Draggable options)\r\n  \t// Creates a `Draggable` object for moving `el` when you start dragging the `dragHandle` element (equals `el` itself by default).\r\n  \tinitialize: function (element, dragStartTarget, preventOutline$$1, options) {\r\n  \t\tsetOptions(this, options);\r\n\r\n  \t\tthis._element = element;\r\n  \t\tthis._dragStartTarget = dragStartTarget || element;\r\n  \t\tthis._preventOutline = preventOutline$$1;\r\n  \t},\r\n\r\n  \t// @method enable()\r\n  \t// Enables the dragging ability\r\n  \tenable: function () {\r\n  \t\tif (this._enabled) { return; }\r\n\r\n  \t\ton(this._dragStartTarget, START, this._onDown, this);\r\n\r\n  \t\tthis._enabled = true;\r\n  \t},\r\n\r\n  \t// @method disable()\r\n  \t// Disables the dragging ability\r\n  \tdisable: function () {\r\n  \t\tif (!this._enabled) { return; }\r\n\r\n  \t\t// If we're currently dragging this draggable,\r\n  \t\t// disabling it counts as first ending the drag.\r\n  \t\tif (Draggable._dragging === this) {\r\n  \t\t\tthis.finishDrag();\r\n  \t\t}\r\n\r\n  \t\toff(this._dragStartTarget, START, this._onDown, this);\r\n\r\n  \t\tthis._enabled = false;\r\n  \t\tthis._moved = false;\r\n  \t},\r\n\r\n  \t_onDown: function (e) {\r\n  \t\t// Ignore simulated events, since we handle both touch and\r\n  \t\t// mouse explicitly; otherwise we risk getting duplicates of\r\n  \t\t// touch events, see #4315.\r\n  \t\t// Also ignore the event if disabled; this happens in IE11\r\n  \t\t// under some circumstances, see #3666.\r\n  \t\tif (e._simulated || !this._enabled) { return; }\r\n\r\n  \t\tthis._moved = false;\r\n\r\n  \t\tif (hasClass(this._element, 'leaflet-zoom-anim')) { return; }\r\n\r\n  \t\tif (Draggable._dragging || e.shiftKey || ((e.which !== 1) && (e.button !== 1) && !e.touches)) { return; }\r\n  \t\tDraggable._dragging = this;  // Prevent dragging multiple objects at once.\r\n\r\n  \t\tif (this._preventOutline) {\r\n  \t\t\tpreventOutline(this._element);\r\n  \t\t}\r\n\r\n  \t\tdisableImageDrag();\r\n  \t\tdisableTextSelection();\r\n\r\n  \t\tif (this._moving) { return; }\r\n\r\n  \t\t// @event down: Event\r\n  \t\t// Fired when a drag is about to start.\r\n  \t\tthis.fire('down');\r\n\r\n  \t\tvar first = e.touches ? e.touches[0] : e,\r\n  \t\t    sizedParent = getSizedParentNode(this._element);\r\n\r\n  \t\tthis._startPoint = new Point(first.clientX, first.clientY);\r\n\r\n  \t\t// Cache the scale, so that we can continuously compensate for it during drag (_onMove).\r\n  \t\tthis._parentScale = getScale(sizedParent);\r\n\r\n  \t\ton(document, MOVE[e.type], this._onMove, this);\r\n  \t\ton(document, END[e.type], this._onUp, this);\r\n  \t},\r\n\r\n  \t_onMove: function (e) {\r\n  \t\t// Ignore simulated events, since we handle both touch and\r\n  \t\t// mouse explicitly; otherwise we risk getting duplicates of\r\n  \t\t// touch events, see #4315.\r\n  \t\t// Also ignore the event if disabled; this happens in IE11\r\n  \t\t// under some circumstances, see #3666.\r\n  \t\tif (e._simulated || !this._enabled) { return; }\r\n\r\n  \t\tif (e.touches && e.touches.length > 1) {\r\n  \t\t\tthis._moved = true;\r\n  \t\t\treturn;\r\n  \t\t}\r\n\r\n  \t\tvar first = (e.touches && e.touches.length === 1 ? e.touches[0] : e),\r\n  \t\t    offset = new Point(first.clientX, first.clientY)._subtract(this._startPoint);\r\n\r\n  \t\tif (!offset.x && !offset.y) { return; }\r\n  \t\tif (Math.abs(offset.x) + Math.abs(offset.y) < this.options.clickTolerance) { return; }\r\n\r\n  \t\t// We assume that the parent container's position, border and scale do not change for the duration of the drag.\r\n  \t\t// Therefore there is no need to account for the position and border (they are eliminated by the subtraction)\r\n  \t\t// and we can use the cached value for the scale.\r\n  \t\toffset.x /= this._parentScale.x;\r\n  \t\toffset.y /= this._parentScale.y;\r\n\r\n  \t\tpreventDefault(e);\r\n\r\n  \t\tif (!this._moved) {\r\n  \t\t\t// @event dragstart: Event\r\n  \t\t\t// Fired when a drag starts\r\n  \t\t\tthis.fire('dragstart');\r\n\r\n  \t\t\tthis._moved = true;\r\n  \t\t\tthis._startPos = getPosition(this._element).subtract(offset);\r\n\r\n  \t\t\taddClass(document.body, 'leaflet-dragging');\r\n\r\n  \t\t\tthis._lastTarget = e.target || e.srcElement;\r\n  \t\t\t// IE and Edge do not give the <use> element, so fetch it\r\n  \t\t\t// if necessary\r\n  \t\t\tif (window.SVGElementInstance && this._lastTarget instanceof window.SVGElementInstance) {\r\n  \t\t\t\tthis._lastTarget = this._lastTarget.correspondingUseElement;\r\n  \t\t\t}\r\n  \t\t\taddClass(this._lastTarget, 'leaflet-drag-target');\r\n  \t\t}\r\n\r\n  \t\tthis._newPos = this._startPos.add(offset);\r\n  \t\tthis._moving = true;\r\n\r\n  \t\tcancelAnimFrame(this._animRequest);\r\n  \t\tthis._lastEvent = e;\r\n  \t\tthis._animRequest = requestAnimFrame(this._updatePosition, this, true);\r\n  \t},\r\n\r\n  \t_updatePosition: function () {\r\n  \t\tvar e = {originalEvent: this._lastEvent};\r\n\r\n  \t\t// @event predrag: Event\r\n  \t\t// Fired continuously during dragging *before* each corresponding\r\n  \t\t// update of the element's position.\r\n  \t\tthis.fire('predrag', e);\r\n  \t\tsetPosition(this._element, this._newPos);\r\n\r\n  \t\t// @event drag: Event\r\n  \t\t// Fired continuously during dragging.\r\n  \t\tthis.fire('drag', e);\r\n  \t},\r\n\r\n  \t_onUp: function (e) {\r\n  \t\t// Ignore simulated events, since we handle both touch and\r\n  \t\t// mouse explicitly; otherwise we risk getting duplicates of\r\n  \t\t// touch events, see #4315.\r\n  \t\t// Also ignore the event if disabled; this happens in IE11\r\n  \t\t// under some circumstances, see #3666.\r\n  \t\tif (e._simulated || !this._enabled) { return; }\r\n  \t\tthis.finishDrag();\r\n  \t},\r\n\r\n  \tfinishDrag: function () {\r\n  \t\tremoveClass(document.body, 'leaflet-dragging');\r\n\r\n  \t\tif (this._lastTarget) {\r\n  \t\t\tremoveClass(this._lastTarget, 'leaflet-drag-target');\r\n  \t\t\tthis._lastTarget = null;\r\n  \t\t}\r\n\r\n  \t\tfor (var i in MOVE) {\r\n  \t\t\toff(document, MOVE[i], this._onMove, this);\r\n  \t\t\toff(document, END[i], this._onUp, this);\r\n  \t\t}\r\n\r\n  \t\tenableImageDrag();\r\n  \t\tenableTextSelection();\r\n\r\n  \t\tif (this._moved && this._moving) {\r\n  \t\t\t// ensure drag is not fired after dragend\r\n  \t\t\tcancelAnimFrame(this._animRequest);\r\n\r\n  \t\t\t// @event dragend: DragEndEvent\r\n  \t\t\t// Fired when the drag ends.\r\n  \t\t\tthis.fire('dragend', {\r\n  \t\t\t\tdistance: this._newPos.distanceTo(this._startPos)\r\n  \t\t\t});\r\n  \t\t}\r\n\r\n  \t\tthis._moving = false;\r\n  \t\tDraggable._dragging = false;\r\n  \t}\r\n\r\n  });\n\n  /*\r\n   * @namespace LineUtil\r\n   *\r\n   * Various utility functions for polyline points processing, used by Leaflet internally to make polylines lightning-fast.\r\n   */\r\n\r\n  // Simplify polyline with vertex reduction and Douglas-Peucker simplification.\r\n  // Improves rendering performance dramatically by lessening the number of points to draw.\r\n\r\n  // @function simplify(points: Point[], tolerance: Number): Point[]\r\n  // Dramatically reduces the number of points in a polyline while retaining\r\n  // its shape and returns a new array of simplified points, using the\r\n  // [Douglas-Peucker algorithm](http://en.wikipedia.org/wiki/Douglas-Peucker_algorithm).\r\n  // Used for a huge performance boost when processing/displaying Leaflet polylines for\r\n  // each zoom level and also reducing visual noise. tolerance affects the amount of\r\n  // simplification (lesser value means higher quality but slower and with more points).\r\n  // Also released as a separated micro-library [Simplify.js](http://mourner.github.com/simplify-js/).\r\n  function simplify(points, tolerance) {\r\n  \tif (!tolerance || !points.length) {\r\n  \t\treturn points.slice();\r\n  \t}\r\n\r\n  \tvar sqTolerance = tolerance * tolerance;\r\n\r\n  \t    // stage 1: vertex reduction\r\n  \t    points = _reducePoints(points, sqTolerance);\r\n\r\n  \t    // stage 2: Douglas-Peucker simplification\r\n  \t    points = _simplifyDP(points, sqTolerance);\r\n\r\n  \treturn points;\r\n  }\r\n\r\n  // @function pointToSegmentDistance(p: Point, p1: Point, p2: Point): Number\r\n  // Returns the distance between point `p` and segment `p1` to `p2`.\r\n  function pointToSegmentDistance(p, p1, p2) {\r\n  \treturn Math.sqrt(_sqClosestPointOnSegment(p, p1, p2, true));\r\n  }\r\n\r\n  // @function closestPointOnSegment(p: Point, p1: Point, p2: Point): Number\r\n  // Returns the closest point from a point `p` on a segment `p1` to `p2`.\r\n  function closestPointOnSegment(p, p1, p2) {\r\n  \treturn _sqClosestPointOnSegment(p, p1, p2);\r\n  }\r\n\r\n  // Douglas-Peucker simplification, see http://en.wikipedia.org/wiki/Douglas-Peucker_algorithm\r\n  function _simplifyDP(points, sqTolerance) {\r\n\r\n  \tvar len = points.length,\r\n  \t    ArrayConstructor = typeof Uint8Array !== undefined + '' ? Uint8Array : Array,\r\n  \t    markers = new ArrayConstructor(len);\r\n\r\n  \t    markers[0] = markers[len - 1] = 1;\r\n\r\n  \t_simplifyDPStep(points, markers, sqTolerance, 0, len - 1);\r\n\r\n  \tvar i,\r\n  \t    newPoints = [];\r\n\r\n  \tfor (i = 0; i < len; i++) {\r\n  \t\tif (markers[i]) {\r\n  \t\t\tnewPoints.push(points[i]);\r\n  \t\t}\r\n  \t}\r\n\r\n  \treturn newPoints;\r\n  }\r\n\r\n  function _simplifyDPStep(points, markers, sqTolerance, first, last) {\r\n\r\n  \tvar maxSqDist = 0,\r\n  \tindex, i, sqDist;\r\n\r\n  \tfor (i = first + 1; i <= last - 1; i++) {\r\n  \t\tsqDist = _sqClosestPointOnSegment(points[i], points[first], points[last], true);\r\n\r\n  \t\tif (sqDist > maxSqDist) {\r\n  \t\t\tindex = i;\r\n  \t\t\tmaxSqDist = sqDist;\r\n  \t\t}\r\n  \t}\r\n\r\n  \tif (maxSqDist > sqTolerance) {\r\n  \t\tmarkers[index] = 1;\r\n\r\n  \t\t_simplifyDPStep(points, markers, sqTolerance, first, index);\r\n  \t\t_simplifyDPStep(points, markers, sqTolerance, index, last);\r\n  \t}\r\n  }\r\n\r\n  // reduce points that are too close to each other to a single point\r\n  function _reducePoints(points, sqTolerance) {\r\n  \tvar reducedPoints = [points[0]];\r\n\r\n  \tfor (var i = 1, prev = 0, len = points.length; i < len; i++) {\r\n  \t\tif (_sqDist(points[i], points[prev]) > sqTolerance) {\r\n  \t\t\treducedPoints.push(points[i]);\r\n  \t\t\tprev = i;\r\n  \t\t}\r\n  \t}\r\n  \tif (prev < len - 1) {\r\n  \t\treducedPoints.push(points[len - 1]);\r\n  \t}\r\n  \treturn reducedPoints;\r\n  }\r\n\r\n  var _lastCode;\r\n\r\n  // @function clipSegment(a: Point, b: Point, bounds: Bounds, useLastCode?: Boolean, round?: Boolean): Point[]|Boolean\r\n  // Clips the segment a to b by rectangular bounds with the\r\n  // [Cohen-Sutherland algorithm](https://en.wikipedia.org/wiki/Cohen%E2%80%93Sutherland_algorithm)\r\n  // (modifying the segment points directly!). Used by Leaflet to only show polyline\r\n  // points that are on the screen or near, increasing performance.\r\n  function clipSegment(a, b, bounds, useLastCode, round) {\r\n  \tvar codeA = useLastCode ? _lastCode : _getBitCode(a, bounds),\r\n  \t    codeB = _getBitCode(b, bounds),\r\n\r\n  \t    codeOut, p, newCode;\r\n\r\n  \t    // save 2nd code to avoid calculating it on the next segment\r\n  \t    _lastCode = codeB;\r\n\r\n  \twhile (true) {\r\n  \t\t// if a,b is inside the clip window (trivial accept)\r\n  \t\tif (!(codeA | codeB)) {\r\n  \t\t\treturn [a, b];\r\n  \t\t}\r\n\r\n  \t\t// if a,b is outside the clip window (trivial reject)\r\n  \t\tif (codeA & codeB) {\r\n  \t\t\treturn false;\r\n  \t\t}\r\n\r\n  \t\t// other cases\r\n  \t\tcodeOut = codeA || codeB;\r\n  \t\tp = _getEdgeIntersection(a, b, codeOut, bounds, round);\r\n  \t\tnewCode = _getBitCode(p, bounds);\r\n\r\n  \t\tif (codeOut === codeA) {\r\n  \t\t\ta = p;\r\n  \t\t\tcodeA = newCode;\r\n  \t\t} else {\r\n  \t\t\tb = p;\r\n  \t\t\tcodeB = newCode;\r\n  \t\t}\r\n  \t}\r\n  }\r\n\r\n  function _getEdgeIntersection(a, b, code, bounds, round) {\r\n  \tvar dx = b.x - a.x,\r\n  \t    dy = b.y - a.y,\r\n  \t    min = bounds.min,\r\n  \t    max = bounds.max,\r\n  \t    x, y;\r\n\r\n  \tif (code & 8) { // top\r\n  \t\tx = a.x + dx * (max.y - a.y) / dy;\r\n  \t\ty = max.y;\r\n\r\n  \t} else if (code & 4) { // bottom\r\n  \t\tx = a.x + dx * (min.y - a.y) / dy;\r\n  \t\ty = min.y;\r\n\r\n  \t} else if (code & 2) { // right\r\n  \t\tx = max.x;\r\n  \t\ty = a.y + dy * (max.x - a.x) / dx;\r\n\r\n  \t} else if (code & 1) { // left\r\n  \t\tx = min.x;\r\n  \t\ty = a.y + dy * (min.x - a.x) / dx;\r\n  \t}\r\n\r\n  \treturn new Point(x, y, round);\r\n  }\r\n\r\n  function _getBitCode(p, bounds) {\r\n  \tvar code = 0;\r\n\r\n  \tif (p.x < bounds.min.x) { // left\r\n  \t\tcode |= 1;\r\n  \t} else if (p.x > bounds.max.x) { // right\r\n  \t\tcode |= 2;\r\n  \t}\r\n\r\n  \tif (p.y < bounds.min.y) { // bottom\r\n  \t\tcode |= 4;\r\n  \t} else if (p.y > bounds.max.y) { // top\r\n  \t\tcode |= 8;\r\n  \t}\r\n\r\n  \treturn code;\r\n  }\r\n\r\n  // square distance (to avoid unnecessary Math.sqrt calls)\r\n  function _sqDist(p1, p2) {\r\n  \tvar dx = p2.x - p1.x,\r\n  \t    dy = p2.y - p1.y;\r\n  \treturn dx * dx + dy * dy;\r\n  }\r\n\r\n  // return closest point on segment or distance to that point\r\n  function _sqClosestPointOnSegment(p, p1, p2, sqDist) {\r\n  \tvar x = p1.x,\r\n  \t    y = p1.y,\r\n  \t    dx = p2.x - x,\r\n  \t    dy = p2.y - y,\r\n  \t    dot = dx * dx + dy * dy,\r\n  \t    t;\r\n\r\n  \tif (dot > 0) {\r\n  \t\tt = ((p.x - x) * dx + (p.y - y) * dy) / dot;\r\n\r\n  \t\tif (t > 1) {\r\n  \t\t\tx = p2.x;\r\n  \t\t\ty = p2.y;\r\n  \t\t} else if (t > 0) {\r\n  \t\t\tx += dx * t;\r\n  \t\t\ty += dy * t;\r\n  \t\t}\r\n  \t}\r\n\r\n  \tdx = p.x - x;\r\n  \tdy = p.y - y;\r\n\r\n  \treturn sqDist ? dx * dx + dy * dy : new Point(x, y);\r\n  }\r\n\r\n\r\n  // @function isFlat(latlngs: LatLng[]): Boolean\r\n  // Returns true if `latlngs` is a flat array, false is nested.\r\n  function isFlat(latlngs) {\r\n  \treturn !isArray(latlngs[0]) || (typeof latlngs[0][0] !== 'object' && typeof latlngs[0][0] !== 'undefined');\r\n  }\r\n\r\n  function _flat(latlngs) {\r\n  \tconsole.warn('Deprecated use of _flat, please use L.LineUtil.isFlat instead.');\r\n  \treturn isFlat(latlngs);\r\n  }\n\n  var LineUtil = ({\n    simplify: simplify,\n    pointToSegmentDistance: pointToSegmentDistance,\n    closestPointOnSegment: closestPointOnSegment,\n    clipSegment: clipSegment,\n    _getEdgeIntersection: _getEdgeIntersection,\n    _getBitCode: _getBitCode,\n    _sqClosestPointOnSegment: _sqClosestPointOnSegment,\n    isFlat: isFlat,\n    _flat: _flat\n  });\n\n  /*\r\n   * @namespace PolyUtil\r\n   * Various utility functions for polygon geometries.\r\n   */\r\n\r\n  /* @function clipPolygon(points: Point[], bounds: Bounds, round?: Boolean): Point[]\r\n   * Clips the polygon geometry defined by the given `points` by the given bounds (using the [Sutherland-Hodgman algorithm](https://en.wikipedia.org/wiki/Sutherland%E2%80%93Hodgman_algorithm)).\r\n   * Used by Leaflet to only show polygon points that are on the screen or near, increasing\r\n   * performance. Note that polygon points needs different algorithm for clipping\r\n   * than polyline, so there's a separate method for it.\r\n   */\r\n  function clipPolygon(points, bounds, round) {\r\n  \tvar clippedPoints,\r\n  \t    edges = [1, 4, 2, 8],\r\n  \t    i, j, k,\r\n  \t    a, b,\r\n  \t    len, edge, p;\r\n\r\n  \tfor (i = 0, len = points.length; i < len; i++) {\r\n  \t\tpoints[i]._code = _getBitCode(points[i], bounds);\r\n  \t}\r\n\r\n  \t// for each edge (left, bottom, right, top)\r\n  \tfor (k = 0; k < 4; k++) {\r\n  \t\tedge = edges[k];\r\n  \t\tclippedPoints = [];\r\n\r\n  \t\tfor (i = 0, len = points.length, j = len - 1; i < len; j = i++) {\r\n  \t\t\ta = points[i];\r\n  \t\t\tb = points[j];\r\n\r\n  \t\t\t// if a is inside the clip window\r\n  \t\t\tif (!(a._code & edge)) {\r\n  \t\t\t\t// if b is outside the clip window (a->b goes out of screen)\r\n  \t\t\t\tif (b._code & edge) {\r\n  \t\t\t\t\tp = _getEdgeIntersection(b, a, edge, bounds, round);\r\n  \t\t\t\t\tp._code = _getBitCode(p, bounds);\r\n  \t\t\t\t\tclippedPoints.push(p);\r\n  \t\t\t\t}\r\n  \t\t\t\tclippedPoints.push(a);\r\n\r\n  \t\t\t// else if b is inside the clip window (a->b enters the screen)\r\n  \t\t\t} else if (!(b._code & edge)) {\r\n  \t\t\t\tp = _getEdgeIntersection(b, a, edge, bounds, round);\r\n  \t\t\t\tp._code = _getBitCode(p, bounds);\r\n  \t\t\t\tclippedPoints.push(p);\r\n  \t\t\t}\r\n  \t\t}\r\n  \t\tpoints = clippedPoints;\r\n  \t}\r\n\r\n  \treturn points;\r\n  }\n\n  var PolyUtil = ({\n    clipPolygon: clipPolygon\n  });\n\n  /*\r\n   * @namespace Projection\r\n   * @section\r\n   * Leaflet comes with a set of already defined Projections out of the box:\r\n   *\r\n   * @projection L.Projection.LonLat\r\n   *\r\n   * Equirectangular, or Plate Carree projection ā€” the most simple projection,\r\n   * mostly used by GIS enthusiasts. Directly maps `x` as longitude, and `y` as\r\n   * latitude. Also suitable for flat worlds, e.g. game maps. Used by the\r\n   * `EPSG:4326` and `Simple` CRS.\r\n   */\r\n\r\n  var LonLat = {\r\n  \tproject: function (latlng) {\r\n  \t\treturn new Point(latlng.lng, latlng.lat);\r\n  \t},\r\n\r\n  \tunproject: function (point) {\r\n  \t\treturn new LatLng(point.y, point.x);\r\n  \t},\r\n\r\n  \tbounds: new Bounds([-180, -90], [180, 90])\r\n  };\n\n  /*\r\n   * @namespace Projection\r\n   * @projection L.Projection.Mercator\r\n   *\r\n   * Elliptical Mercator projection ā€” more complex than Spherical Mercator. Assumes that Earth is an ellipsoid. Used by the EPSG:3395 CRS.\r\n   */\r\n\r\n  var Mercator = {\r\n  \tR: 6378137,\r\n  \tR_MINOR: 6356752.314245179,\r\n\r\n  \tbounds: new Bounds([-20037508.34279, -15496570.73972], [20037508.34279, 18764656.23138]),\r\n\r\n  \tproject: function (latlng) {\r\n  \t\tvar d = Math.PI / 180,\r\n  \t\t    r = this.R,\r\n  \t\t    y = latlng.lat * d,\r\n  \t\t    tmp = this.R_MINOR / r,\r\n  \t\t    e = Math.sqrt(1 - tmp * tmp),\r\n  \t\t    con = e * Math.sin(y);\r\n\r\n  \t\tvar ts = Math.tan(Math.PI / 4 - y / 2) / Math.pow((1 - con) / (1 + con), e / 2);\r\n  \t\ty = -r * Math.log(Math.max(ts, 1E-10));\r\n\r\n  \t\treturn new Point(latlng.lng * d * r, y);\r\n  \t},\r\n\r\n  \tunproject: function (point) {\r\n  \t\tvar d = 180 / Math.PI,\r\n  \t\t    r = this.R,\r\n  \t\t    tmp = this.R_MINOR / r,\r\n  \t\t    e = Math.sqrt(1 - tmp * tmp),\r\n  \t\t    ts = Math.exp(-point.y / r),\r\n  \t\t    phi = Math.PI / 2 - 2 * Math.atan(ts);\r\n\r\n  \t\tfor (var i = 0, dphi = 0.1, con; i < 15 && Math.abs(dphi) > 1e-7; i++) {\r\n  \t\t\tcon = e * Math.sin(phi);\r\n  \t\t\tcon = Math.pow((1 - con) / (1 + con), e / 2);\r\n  \t\t\tdphi = Math.PI / 2 - 2 * Math.atan(ts * con) - phi;\r\n  \t\t\tphi += dphi;\r\n  \t\t}\r\n\r\n  \t\treturn new LatLng(phi * d, point.x * d / r);\r\n  \t}\r\n  };\n\n  /*\n   * @class Projection\n\n   * An object with methods for projecting geographical coordinates of the world onto\n   * a flat surface (and back). See [Map projection](http://en.wikipedia.org/wiki/Map_projection).\n\n   * @property bounds: Bounds\n   * The bounds (specified in CRS units) where the projection is valid\n\n   * @method project(latlng: LatLng): Point\n   * Projects geographical coordinates into a 2D point.\n   * Only accepts actual `L.LatLng` instances, not arrays.\n\n   * @method unproject(point: Point): LatLng\n   * The inverse of `project`. Projects a 2D point into a geographical location.\n   * Only accepts actual `L.Point` instances, not arrays.\n\n   * Note that the projection instances do not inherit from Leaflet's `Class` object,\n   * and can't be instantiated. Also, new classes can't inherit from them,\n   * and methods can't be added to them with the `include` function.\n\n   */\n\n  var index = ({\n    LonLat: LonLat,\n    Mercator: Mercator,\n    SphericalMercator: SphericalMercator\n  });\n\n  /*\r\n   * @namespace CRS\r\n   * @crs L.CRS.EPSG3395\r\n   *\r\n   * Rarely used by some commercial tile providers. Uses Elliptical Mercator projection.\r\n   */\r\n  var EPSG3395 = extend({}, Earth, {\r\n  \tcode: 'EPSG:3395',\r\n  \tprojection: Mercator,\r\n\r\n  \ttransformation: (function () {\r\n  \t\tvar scale = 0.5 / (Math.PI * Mercator.R);\r\n  \t\treturn toTransformation(scale, 0.5, -scale, 0.5);\r\n  \t}())\r\n  });\n\n  /*\r\n   * @namespace CRS\r\n   * @crs L.CRS.EPSG4326\r\n   *\r\n   * A common CRS among GIS enthusiasts. Uses simple Equirectangular projection.\r\n   *\r\n   * Leaflet 1.0.x complies with the [TMS coordinate scheme for EPSG:4326](https://wiki.osgeo.org/wiki/Tile_Map_Service_Specification#global-geodetic),\r\n   * which is a breaking change from 0.7.x behaviour.  If you are using a `TileLayer`\r\n   * with this CRS, ensure that there are two 256x256 pixel tiles covering the\r\n   * whole earth at zoom level zero, and that the tile coordinate origin is (-180,+90),\r\n   * or (-180,-90) for `TileLayer`s with [the `tms` option](#tilelayer-tms) set.\r\n   */\r\n\r\n  var EPSG4326 = extend({}, Earth, {\r\n  \tcode: 'EPSG:4326',\r\n  \tprojection: LonLat,\r\n  \ttransformation: toTransformation(1 / 180, 1, -1 / 180, 0.5)\r\n  });\n\n  /*\n   * @namespace CRS\n   * @crs L.CRS.Simple\n   *\n   * A simple CRS that maps longitude and latitude into `x` and `y` directly.\n   * May be used for maps of flat surfaces (e.g. game maps). Note that the `y`\n   * axis should still be inverted (going from bottom to top). `distance()` returns\n   * simple euclidean distance.\n   */\n\n  var Simple = extend({}, CRS, {\n  \tprojection: LonLat,\n  \ttransformation: toTransformation(1, 0, -1, 0),\n\n  \tscale: function (zoom) {\n  \t\treturn Math.pow(2, zoom);\n  \t},\n\n  \tzoom: function (scale) {\n  \t\treturn Math.log(scale) / Math.LN2;\n  \t},\n\n  \tdistance: function (latlng1, latlng2) {\n  \t\tvar dx = latlng2.lng - latlng1.lng,\n  \t\t    dy = latlng2.lat - latlng1.lat;\n\n  \t\treturn Math.sqrt(dx * dx + dy * dy);\n  \t},\n\n  \tinfinite: true\n  });\n\n  CRS.Earth = Earth;\n  CRS.EPSG3395 = EPSG3395;\n  CRS.EPSG3857 = EPSG3857;\n  CRS.EPSG900913 = EPSG900913;\n  CRS.EPSG4326 = EPSG4326;\n  CRS.Simple = Simple;\n\n  /*\n   * @class Layer\n   * @inherits Evented\n   * @aka L.Layer\n   * @aka ILayer\n   *\n   * A set of methods from the Layer base class that all Leaflet layers use.\n   * Inherits all methods, options and events from `L.Evented`.\n   *\n   * @example\n   *\n   * ```js\n   * var layer = L.marker(latlng).addTo(map);\n   * layer.addTo(map);\n   * layer.remove();\n   * ```\n   *\n   * @event add: Event\n   * Fired after the layer is added to a map\n   *\n   * @event remove: Event\n   * Fired after the layer is removed from a map\n   */\n\n\n  var Layer = Evented.extend({\n\n  \t// Classes extending `L.Layer` will inherit the following options:\n  \toptions: {\n  \t\t// @option pane: String = 'overlayPane'\n  \t\t// By default the layer will be added to the map's [overlay pane](#map-overlaypane). Overriding this option will cause the layer to be placed on another pane by default.\n  \t\tpane: 'overlayPane',\n\n  \t\t// @option attribution: String = null\n  \t\t// String to be shown in the attribution control, e.g. \"Ā© OpenStreetMap contributors\". It describes the layer data and is often a legal obligation towards copyright holders and tile providers.\n  \t\tattribution: null,\n\n  \t\tbubblingMouseEvents: true\n  \t},\n\n  \t/* @section\n  \t * Classes extending `L.Layer` will inherit the following methods:\n  \t *\n  \t * @method addTo(map: Map|LayerGroup): this\n  \t * Adds the layer to the given map or layer group.\n  \t */\n  \taddTo: function (map) {\n  \t\tmap.addLayer(this);\n  \t\treturn this;\n  \t},\n\n  \t// @method remove: this\n  \t// Removes the layer from the map it is currently active on.\n  \tremove: function () {\n  \t\treturn this.removeFrom(this._map || this._mapToAdd);\n  \t},\n\n  \t// @method removeFrom(map: Map): this\n  \t// Removes the layer from the given map\n  \t//\n  \t// @alternative\n  \t// @method removeFrom(group: LayerGroup): this\n  \t// Removes the layer from the given `LayerGroup`\n  \tremoveFrom: function (obj) {\n  \t\tif (obj) {\n  \t\t\tobj.removeLayer(this);\n  \t\t}\n  \t\treturn this;\n  \t},\n\n  \t// @method getPane(name? : String): HTMLElement\n  \t// Returns the `HTMLElement` representing the named pane on the map. If `name` is omitted, returns the pane for this layer.\n  \tgetPane: function (name) {\n  \t\treturn this._map.getPane(name ? (this.options[name] || name) : this.options.pane);\n  \t},\n\n  \taddInteractiveTarget: function (targetEl) {\n  \t\tthis._map._targets[stamp(targetEl)] = this;\n  \t\treturn this;\n  \t},\n\n  \tremoveInteractiveTarget: function (targetEl) {\n  \t\tdelete this._map._targets[stamp(targetEl)];\n  \t\treturn this;\n  \t},\n\n  \t// @method getAttribution: String\n  \t// Used by the `attribution control`, returns the [attribution option](#gridlayer-attribution).\n  \tgetAttribution: function () {\n  \t\treturn this.options.attribution;\n  \t},\n\n  \t_layerAdd: function (e) {\n  \t\tvar map = e.target;\n\n  \t\t// check in case layer gets added and then removed before the map is ready\n  \t\tif (!map.hasLayer(this)) { return; }\n\n  \t\tthis._map = map;\n  \t\tthis._zoomAnimated = map._zoomAnimated;\n\n  \t\tif (this.getEvents) {\n  \t\t\tvar events = this.getEvents();\n  \t\t\tmap.on(events, this);\n  \t\t\tthis.once('remove', function () {\n  \t\t\t\tmap.off(events, this);\n  \t\t\t}, this);\n  \t\t}\n\n  \t\tthis.onAdd(map);\n\n  \t\tif (this.getAttribution && map.attributionControl) {\n  \t\t\tmap.attributionControl.addAttribution(this.getAttribution());\n  \t\t}\n\n  \t\tthis.fire('add');\n  \t\tmap.fire('layeradd', {layer: this});\n  \t}\n  });\n\n  /* @section Extension methods\n   * @uninheritable\n   *\n   * Every layer should extend from `L.Layer` and (re-)implement the following methods.\n   *\n   * @method onAdd(map: Map): this\n   * Should contain code that creates DOM elements for the layer, adds them to `map panes` where they should belong and puts listeners on relevant map events. Called on [`map.addLayer(layer)`](#map-addlayer).\n   *\n   * @method onRemove(map: Map): this\n   * Should contain all clean up code that removes the layer's elements from the DOM and removes listeners previously added in [`onAdd`](#layer-onadd). Called on [`map.removeLayer(layer)`](#map-removelayer).\n   *\n   * @method getEvents(): Object\n   * This optional method should return an object like `{ viewreset: this._reset }` for [`addEventListener`](#evented-addeventlistener). The event handlers in this object will be automatically added and removed from the map with your layer.\n   *\n   * @method getAttribution(): String\n   * This optional method should return a string containing HTML to be shown on the `Attribution control` whenever the layer is visible.\n   *\n   * @method beforeAdd(map: Map): this\n   * Optional method. Called on [`map.addLayer(layer)`](#map-addlayer), before the layer is added to the map, before events are initialized, without waiting until the map is in a usable state. Use for early initialization only.\n   */\n\n\n  /* @namespace Map\n   * @section Layer events\n   *\n   * @event layeradd: LayerEvent\n   * Fired when a new layer is added to the map.\n   *\n   * @event layerremove: LayerEvent\n   * Fired when some layer is removed from the map\n   *\n   * @section Methods for Layers and Controls\n   */\n  Map.include({\n  \t// @method addLayer(layer: Layer): this\n  \t// Adds the given layer to the map\n  \taddLayer: function (layer) {\n  \t\tif (!layer._layerAdd) {\n  \t\t\tthrow new Error('The provided object is not a Layer.');\n  \t\t}\n\n  \t\tvar id = stamp(layer);\n  \t\tif (this._layers[id]) { return this; }\n  \t\tthis._layers[id] = layer;\n\n  \t\tlayer._mapToAdd = this;\n\n  \t\tif (layer.beforeAdd) {\n  \t\t\tlayer.beforeAdd(this);\n  \t\t}\n\n  \t\tthis.whenReady(layer._layerAdd, layer);\n\n  \t\treturn this;\n  \t},\n\n  \t// @method removeLayer(layer: Layer): this\n  \t// Removes the given layer from the map.\n  \tremoveLayer: function (layer) {\n  \t\tvar id = stamp(layer);\n\n  \t\tif (!this._layers[id]) { return this; }\n\n  \t\tif (this._loaded) {\n  \t\t\tlayer.onRemove(this);\n  \t\t}\n\n  \t\tif (layer.getAttribution && this.attributionControl) {\n  \t\t\tthis.attributionControl.removeAttribution(layer.getAttribution());\n  \t\t}\n\n  \t\tdelete this._layers[id];\n\n  \t\tif (this._loaded) {\n  \t\t\tthis.fire('layerremove', {layer: layer});\n  \t\t\tlayer.fire('remove');\n  \t\t}\n\n  \t\tlayer._map = layer._mapToAdd = null;\n\n  \t\treturn this;\n  \t},\n\n  \t// @method hasLayer(layer: Layer): Boolean\n  \t// Returns `true` if the given layer is currently added to the map\n  \thasLayer: function (layer) {\n  \t\treturn !!layer && (stamp(layer) in this._layers);\n  \t},\n\n  \t/* @method eachLayer(fn: Function, context?: Object): this\n  \t * Iterates over the layers of the map, optionally specifying context of the iterator function.\n  \t * ```\n  \t * map.eachLayer(function(layer){\n  \t *     layer.bindPopup('Hello');\n  \t * });\n  \t * ```\n  \t */\n  \teachLayer: function (method, context) {\n  \t\tfor (var i in this._layers) {\n  \t\t\tmethod.call(context, this._layers[i]);\n  \t\t}\n  \t\treturn this;\n  \t},\n\n  \t_addLayers: function (layers) {\n  \t\tlayers = layers ? (isArray(layers) ? layers : [layers]) : [];\n\n  \t\tfor (var i = 0, len = layers.length; i < len; i++) {\n  \t\t\tthis.addLayer(layers[i]);\n  \t\t}\n  \t},\n\n  \t_addZoomLimit: function (layer) {\n  \t\tif (isNaN(layer.options.maxZoom) || !isNaN(layer.options.minZoom)) {\n  \t\t\tthis._zoomBoundLayers[stamp(layer)] = layer;\n  \t\t\tthis._updateZoomLevels();\n  \t\t}\n  \t},\n\n  \t_removeZoomLimit: function (layer) {\n  \t\tvar id = stamp(layer);\n\n  \t\tif (this._zoomBoundLayers[id]) {\n  \t\t\tdelete this._zoomBoundLayers[id];\n  \t\t\tthis._updateZoomLevels();\n  \t\t}\n  \t},\n\n  \t_updateZoomLevels: function () {\n  \t\tvar minZoom = Infinity,\n  \t\t    maxZoom = -Infinity,\n  \t\t    oldZoomSpan = this._getZoomSpan();\n\n  \t\tfor (var i in this._zoomBoundLayers) {\n  \t\t\tvar options = this._zoomBoundLayers[i].options;\n\n  \t\t\tminZoom = options.minZoom === undefined ? minZoom : Math.min(minZoom, options.minZoom);\n  \t\t\tmaxZoom = options.maxZoom === undefined ? maxZoom : Math.max(maxZoom, options.maxZoom);\n  \t\t}\n\n  \t\tthis._layersMaxZoom = maxZoom === -Infinity ? undefined : maxZoom;\n  \t\tthis._layersMinZoom = minZoom === Infinity ? undefined : minZoom;\n\n  \t\t// @section Map state change events\n  \t\t// @event zoomlevelschange: Event\n  \t\t// Fired when the number of zoomlevels on the map is changed due\n  \t\t// to adding or removing a layer.\n  \t\tif (oldZoomSpan !== this._getZoomSpan()) {\n  \t\t\tthis.fire('zoomlevelschange');\n  \t\t}\n\n  \t\tif (this.options.maxZoom === undefined && this._layersMaxZoom && this.getZoom() > this._layersMaxZoom) {\n  \t\t\tthis.setZoom(this._layersMaxZoom);\n  \t\t}\n  \t\tif (this.options.minZoom === undefined && this._layersMinZoom && this.getZoom() < this._layersMinZoom) {\n  \t\t\tthis.setZoom(this._layersMinZoom);\n  \t\t}\n  \t}\n  });\n\n  /*\r\n   * @class LayerGroup\r\n   * @aka L.LayerGroup\r\n   * @inherits Layer\r\n   *\r\n   * Used to group several layers and handle them as one. If you add it to the map,\r\n   * any layers added or removed from the group will be added/removed on the map as\r\n   * well. Extends `Layer`.\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * L.layerGroup([marker1, marker2])\r\n   * \t.addLayer(polyline)\r\n   * \t.addTo(map);\r\n   * ```\r\n   */\r\n\r\n  var LayerGroup = Layer.extend({\r\n\r\n  \tinitialize: function (layers, options) {\r\n  \t\tsetOptions(this, options);\r\n\r\n  \t\tthis._layers = {};\r\n\r\n  \t\tvar i, len;\r\n\r\n  \t\tif (layers) {\r\n  \t\t\tfor (i = 0, len = layers.length; i < len; i++) {\r\n  \t\t\t\tthis.addLayer(layers[i]);\r\n  \t\t\t}\r\n  \t\t}\r\n  \t},\r\n\r\n  \t// @method addLayer(layer: Layer): this\r\n  \t// Adds the given layer to the group.\r\n  \taddLayer: function (layer) {\r\n  \t\tvar id = this.getLayerId(layer);\r\n\r\n  \t\tthis._layers[id] = layer;\r\n\r\n  \t\tif (this._map) {\r\n  \t\t\tthis._map.addLayer(layer);\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method removeLayer(layer: Layer): this\r\n  \t// Removes the given layer from the group.\r\n  \t// @alternative\r\n  \t// @method removeLayer(id: Number): this\r\n  \t// Removes the layer with the given internal ID from the group.\r\n  \tremoveLayer: function (layer) {\r\n  \t\tvar id = layer in this._layers ? layer : this.getLayerId(layer);\r\n\r\n  \t\tif (this._map && this._layers[id]) {\r\n  \t\t\tthis._map.removeLayer(this._layers[id]);\r\n  \t\t}\r\n\r\n  \t\tdelete this._layers[id];\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method hasLayer(layer: Layer): Boolean\r\n  \t// Returns `true` if the given layer is currently added to the group.\r\n  \t// @alternative\r\n  \t// @method hasLayer(id: Number): Boolean\r\n  \t// Returns `true` if the given internal ID is currently added to the group.\r\n  \thasLayer: function (layer) {\r\n  \t\tif (!layer) { return false; }\r\n  \t\tvar layerId = typeof layer === 'number' ? layer : this.getLayerId(layer);\r\n  \t\treturn layerId in this._layers;\r\n  \t},\r\n\r\n  \t// @method clearLayers(): this\r\n  \t// Removes all the layers from the group.\r\n  \tclearLayers: function () {\r\n  \t\treturn this.eachLayer(this.removeLayer, this);\r\n  \t},\r\n\r\n  \t// @method invoke(methodName: String, ā€¦): this\r\n  \t// Calls `methodName` on every layer contained in this group, passing any\r\n  \t// additional parameters. Has no effect if the layers contained do not\r\n  \t// implement `methodName`.\r\n  \tinvoke: function (methodName) {\r\n  \t\tvar args = Array.prototype.slice.call(arguments, 1),\r\n  \t\t    i, layer;\r\n\r\n  \t\tfor (i in this._layers) {\r\n  \t\t\tlayer = this._layers[i];\r\n\r\n  \t\t\tif (layer[methodName]) {\r\n  \t\t\t\tlayer[methodName].apply(layer, args);\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \tonAdd: function (map) {\r\n  \t\tthis.eachLayer(map.addLayer, map);\r\n  \t},\r\n\r\n  \tonRemove: function (map) {\r\n  \t\tthis.eachLayer(map.removeLayer, map);\r\n  \t},\r\n\r\n  \t// @method eachLayer(fn: Function, context?: Object): this\r\n  \t// Iterates over the layers of the group, optionally specifying context of the iterator function.\r\n  \t// ```js\r\n  \t// group.eachLayer(function (layer) {\r\n  \t// \tlayer.bindPopup('Hello');\r\n  \t// });\r\n  \t// ```\r\n  \teachLayer: function (method, context) {\r\n  \t\tfor (var i in this._layers) {\r\n  \t\t\tmethod.call(context, this._layers[i]);\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method getLayer(id: Number): Layer\r\n  \t// Returns the layer with the given internal ID.\r\n  \tgetLayer: function (id) {\r\n  \t\treturn this._layers[id];\r\n  \t},\r\n\r\n  \t// @method getLayers(): Layer[]\r\n  \t// Returns an array of all the layers added to the group.\r\n  \tgetLayers: function () {\r\n  \t\tvar layers = [];\r\n  \t\tthis.eachLayer(layers.push, layers);\r\n  \t\treturn layers;\r\n  \t},\r\n\r\n  \t// @method setZIndex(zIndex: Number): this\r\n  \t// Calls `setZIndex` on every layer contained in this group, passing the z-index.\r\n  \tsetZIndex: function (zIndex) {\r\n  \t\treturn this.invoke('setZIndex', zIndex);\r\n  \t},\r\n\r\n  \t// @method getLayerId(layer: Layer): Number\r\n  \t// Returns the internal ID for a layer\r\n  \tgetLayerId: function (layer) {\r\n  \t\treturn stamp(layer);\r\n  \t}\r\n  });\r\n\r\n\r\n  // @factory L.layerGroup(layers?: Layer[], options?: Object)\r\n  // Create a layer group, optionally given an initial set of layers and an `options` object.\r\n  var layerGroup = function (layers, options) {\r\n  \treturn new LayerGroup(layers, options);\r\n  };\n\n  /*\r\n   * @class FeatureGroup\r\n   * @aka L.FeatureGroup\r\n   * @inherits LayerGroup\r\n   *\r\n   * Extended `LayerGroup` that makes it easier to do the same thing to all its member layers:\r\n   *  * [`bindPopup`](#layer-bindpopup) binds a popup to all of the layers at once (likewise with [`bindTooltip`](#layer-bindtooltip))\r\n   *  * Events are propagated to the `FeatureGroup`, so if the group has an event\r\n   * handler, it will handle events from any of the layers. This includes mouse events\r\n   * and custom events.\r\n   *  * Has `layeradd` and `layerremove` events\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * L.featureGroup([marker1, marker2, polyline])\r\n   * \t.bindPopup('Hello world!')\r\n   * \t.on('click', function() { alert('Clicked on a member of the group!'); })\r\n   * \t.addTo(map);\r\n   * ```\r\n   */\r\n\r\n  var FeatureGroup = LayerGroup.extend({\r\n\r\n  \taddLayer: function (layer) {\r\n  \t\tif (this.hasLayer(layer)) {\r\n  \t\t\treturn this;\r\n  \t\t}\r\n\r\n  \t\tlayer.addEventParent(this);\r\n\r\n  \t\tLayerGroup.prototype.addLayer.call(this, layer);\r\n\r\n  \t\t// @event layeradd: LayerEvent\r\n  \t\t// Fired when a layer is added to this `FeatureGroup`\r\n  \t\treturn this.fire('layeradd', {layer: layer});\r\n  \t},\r\n\r\n  \tremoveLayer: function (layer) {\r\n  \t\tif (!this.hasLayer(layer)) {\r\n  \t\t\treturn this;\r\n  \t\t}\r\n  \t\tif (layer in this._layers) {\r\n  \t\t\tlayer = this._layers[layer];\r\n  \t\t}\r\n\r\n  \t\tlayer.removeEventParent(this);\r\n\r\n  \t\tLayerGroup.prototype.removeLayer.call(this, layer);\r\n\r\n  \t\t// @event layerremove: LayerEvent\r\n  \t\t// Fired when a layer is removed from this `FeatureGroup`\r\n  \t\treturn this.fire('layerremove', {layer: layer});\r\n  \t},\r\n\r\n  \t// @method setStyle(style: Path options): this\r\n  \t// Sets the given path options to each layer of the group that has a `setStyle` method.\r\n  \tsetStyle: function (style) {\r\n  \t\treturn this.invoke('setStyle', style);\r\n  \t},\r\n\r\n  \t// @method bringToFront(): this\r\n  \t// Brings the layer group to the top of all other layers\r\n  \tbringToFront: function () {\r\n  \t\treturn this.invoke('bringToFront');\r\n  \t},\r\n\r\n  \t// @method bringToBack(): this\r\n  \t// Brings the layer group to the back of all other layers\r\n  \tbringToBack: function () {\r\n  \t\treturn this.invoke('bringToBack');\r\n  \t},\r\n\r\n  \t// @method getBounds(): LatLngBounds\r\n  \t// Returns the LatLngBounds of the Feature Group (created from bounds and coordinates of its children).\r\n  \tgetBounds: function () {\r\n  \t\tvar bounds = new LatLngBounds();\r\n\r\n  \t\tfor (var id in this._layers) {\r\n  \t\t\tvar layer = this._layers[id];\r\n  \t\t\tbounds.extend(layer.getBounds ? layer.getBounds() : layer.getLatLng());\r\n  \t\t}\r\n  \t\treturn bounds;\r\n  \t}\r\n  });\r\n\r\n  // @factory L.featureGroup(layers?: Layer[], options?: Object)\r\n  // Create a feature group, optionally given an initial set of layers and an `options` object.\r\n  var featureGroup = function (layers, options) {\r\n  \treturn new FeatureGroup(layers, options);\r\n  };\n\n  /*\r\n   * @class Icon\r\n   * @aka L.Icon\r\n   *\r\n   * Represents an icon to provide when creating a marker.\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * var myIcon = L.icon({\r\n   *     iconUrl: 'my-icon.png',\r\n   *     iconRetinaUrl: 'my-icon@2x.png',\r\n   *     iconSize: [38, 95],\r\n   *     iconAnchor: [22, 94],\r\n   *     popupAnchor: [-3, -76],\r\n   *     shadowUrl: 'my-icon-shadow.png',\r\n   *     shadowRetinaUrl: 'my-icon-shadow@2x.png',\r\n   *     shadowSize: [68, 95],\r\n   *     shadowAnchor: [22, 94]\r\n   * });\r\n   *\r\n   * L.marker([50.505, 30.57], {icon: myIcon}).addTo(map);\r\n   * ```\r\n   *\r\n   * `L.Icon.Default` extends `L.Icon` and is the blue icon Leaflet uses for markers by default.\r\n   *\r\n   */\r\n\r\n  var Icon = Class.extend({\r\n\r\n  \t/* @section\r\n  \t * @aka Icon options\r\n  \t *\r\n  \t * @option iconUrl: String = null\r\n  \t * **(required)** The URL to the icon image (absolute or relative to your script path).\r\n  \t *\r\n  \t * @option iconRetinaUrl: String = null\r\n  \t * The URL to a retina sized version of the icon image (absolute or relative to your\r\n  \t * script path). Used for Retina screen devices.\r\n  \t *\r\n  \t * @option iconSize: Point = null\r\n  \t * Size of the icon image in pixels.\r\n  \t *\r\n  \t * @option iconAnchor: Point = null\r\n  \t * The coordinates of the \"tip\" of the icon (relative to its top left corner). The icon\r\n  \t * will be aligned so that this point is at the marker's geographical location. Centered\r\n  \t * by default if size is specified, also can be set in CSS with negative margins.\r\n  \t *\r\n  \t * @option popupAnchor: Point = [0, 0]\r\n  \t * The coordinates of the point from which popups will \"open\", relative to the icon anchor.\r\n  \t *\r\n  \t * @option tooltipAnchor: Point = [0, 0]\r\n  \t * The coordinates of the point from which tooltips will \"open\", relative to the icon anchor.\r\n  \t *\r\n  \t * @option shadowUrl: String = null\r\n  \t * The URL to the icon shadow image. If not specified, no shadow image will be created.\r\n  \t *\r\n  \t * @option shadowRetinaUrl: String = null\r\n  \t *\r\n  \t * @option shadowSize: Point = null\r\n  \t * Size of the shadow image in pixels.\r\n  \t *\r\n  \t * @option shadowAnchor: Point = null\r\n  \t * The coordinates of the \"tip\" of the shadow (relative to its top left corner) (the same\r\n  \t * as iconAnchor if not specified).\r\n  \t *\r\n  \t * @option className: String = ''\r\n  \t * A custom class name to assign to both icon and shadow images. Empty by default.\r\n  \t */\r\n\r\n  \toptions: {\r\n  \t\tpopupAnchor: [0, 0],\r\n  \t\ttooltipAnchor: [0, 0]\r\n  \t},\r\n\r\n  \tinitialize: function (options) {\r\n  \t\tsetOptions(this, options);\r\n  \t},\r\n\r\n  \t// @method createIcon(oldIcon?: HTMLElement): HTMLElement\r\n  \t// Called internally when the icon has to be shown, returns a `<img>` HTML element\r\n  \t// styled according to the options.\r\n  \tcreateIcon: function (oldIcon) {\r\n  \t\treturn this._createIcon('icon', oldIcon);\r\n  \t},\r\n\r\n  \t// @method createShadow(oldIcon?: HTMLElement): HTMLElement\r\n  \t// As `createIcon`, but for the shadow beneath it.\r\n  \tcreateShadow: function (oldIcon) {\r\n  \t\treturn this._createIcon('shadow', oldIcon);\r\n  \t},\r\n\r\n  \t_createIcon: function (name, oldIcon) {\r\n  \t\tvar src = this._getIconUrl(name);\r\n\r\n  \t\tif (!src) {\r\n  \t\t\tif (name === 'icon') {\r\n  \t\t\t\tthrow new Error('iconUrl not set in Icon options (see the docs).');\r\n  \t\t\t}\r\n  \t\t\treturn null;\r\n  \t\t}\r\n\r\n  \t\tvar img = this._createImg(src, oldIcon && oldIcon.tagName === 'IMG' ? oldIcon : null);\r\n  \t\tthis._setIconStyles(img, name);\r\n\r\n  \t\treturn img;\r\n  \t},\r\n\r\n  \t_setIconStyles: function (img, name) {\r\n  \t\tvar options = this.options;\r\n  \t\tvar sizeOption = options[name + 'Size'];\r\n\r\n  \t\tif (typeof sizeOption === 'number') {\r\n  \t\t\tsizeOption = [sizeOption, sizeOption];\r\n  \t\t}\r\n\r\n  \t\tvar size = toPoint(sizeOption),\r\n  \t\t    anchor = toPoint(name === 'shadow' && options.shadowAnchor || options.iconAnchor ||\r\n  \t\t            size && size.divideBy(2, true));\r\n\r\n  \t\timg.className = 'leaflet-marker-' + name + ' ' + (options.className || '');\r\n\r\n  \t\tif (anchor) {\r\n  \t\t\timg.style.marginLeft = (-anchor.x) + 'px';\r\n  \t\t\timg.style.marginTop  = (-anchor.y) + 'px';\r\n  \t\t}\r\n\r\n  \t\tif (size) {\r\n  \t\t\timg.style.width  = size.x + 'px';\r\n  \t\t\timg.style.height = size.y + 'px';\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_createImg: function (src, el) {\r\n  \t\tel = el || document.createElement('img');\r\n  \t\tel.src = src;\r\n  \t\treturn el;\r\n  \t},\r\n\r\n  \t_getIconUrl: function (name) {\r\n  \t\treturn retina && this.options[name + 'RetinaUrl'] || this.options[name + 'Url'];\r\n  \t}\r\n  });\r\n\r\n\r\n  // @factory L.icon(options: Icon options)\r\n  // Creates an icon instance with the given options.\r\n  function icon(options) {\r\n  \treturn new Icon(options);\r\n  }\n\n  /*\n   * @miniclass Icon.Default (Icon)\n   * @aka L.Icon.Default\n   * @section\n   *\n   * A trivial subclass of `Icon`, represents the icon to use in `Marker`s when\n   * no icon is specified. Points to the blue marker image distributed with Leaflet\n   * releases.\n   *\n   * In order to customize the default icon, just change the properties of `L.Icon.Default.prototype.options`\n   * (which is a set of `Icon options`).\n   *\n   * If you want to _completely_ replace the default icon, override the\n   * `L.Marker.prototype.options.icon` with your own icon instead.\n   */\n\n  var IconDefault = Icon.extend({\n\n  \toptions: {\n  \t\ticonUrl:       'marker-icon.png',\n  \t\ticonRetinaUrl: 'marker-icon-2x.png',\n  \t\tshadowUrl:     'marker-shadow.png',\n  \t\ticonSize:    [25, 41],\n  \t\ticonAnchor:  [12, 41],\n  \t\tpopupAnchor: [1, -34],\n  \t\ttooltipAnchor: [16, -28],\n  \t\tshadowSize:  [41, 41]\n  \t},\n\n  \t_getIconUrl: function (name) {\n  \t\tif (!IconDefault.imagePath) {\t// Deprecated, backwards-compatibility only\n  \t\t\tIconDefault.imagePath = this._detectIconPath();\n  \t\t}\n\n  \t\t// @option imagePath: String\n  \t\t// `Icon.Default` will try to auto-detect the location of the\n  \t\t// blue icon images. If you are placing these images in a non-standard\n  \t\t// way, set this option to point to the right path.\n  \t\treturn (this.options.imagePath || IconDefault.imagePath) + Icon.prototype._getIconUrl.call(this, name);\n  \t},\n\n  \t_detectIconPath: function () {\n  \t\tvar el = create$1('div',  'leaflet-default-icon-path', document.body);\n  \t\tvar path = getStyle(el, 'background-image') ||\n  \t\t           getStyle(el, 'backgroundImage');\t// IE8\n\n  \t\tdocument.body.removeChild(el);\n\n  \t\tif (path === null || path.indexOf('url') !== 0) {\n  \t\t\tpath = '';\n  \t\t} else {\n  \t\t\tpath = path.replace(/^url\\([\"']?/, '').replace(/marker-icon\\.png[\"']?\\)$/, '');\n  \t\t}\n\n  \t\treturn path;\n  \t}\n  });\n\n  /*\n   * L.Handler.MarkerDrag is used internally by L.Marker to make the markers draggable.\n   */\n\n\n  /* @namespace Marker\n   * @section Interaction handlers\n   *\n   * Interaction handlers are properties of a marker instance that allow you to control interaction behavior in runtime, enabling or disabling certain features such as dragging (see `Handler` methods). Example:\n   *\n   * ```js\n   * marker.dragging.disable();\n   * ```\n   *\n   * @property dragging: Handler\n   * Marker dragging handler (by both mouse and touch). Only valid when the marker is on the map (Otherwise set [`marker.options.draggable`](#marker-draggable)).\n   */\n\n  var MarkerDrag = Handler.extend({\n  \tinitialize: function (marker) {\n  \t\tthis._marker = marker;\n  \t},\n\n  \taddHooks: function () {\n  \t\tvar icon = this._marker._icon;\n\n  \t\tif (!this._draggable) {\n  \t\t\tthis._draggable = new Draggable(icon, icon, true);\n  \t\t}\n\n  \t\tthis._draggable.on({\n  \t\t\tdragstart: this._onDragStart,\n  \t\t\tpredrag: this._onPreDrag,\n  \t\t\tdrag: this._onDrag,\n  \t\t\tdragend: this._onDragEnd\n  \t\t}, this).enable();\n\n  \t\taddClass(icon, 'leaflet-marker-draggable');\n  \t},\n\n  \tremoveHooks: function () {\n  \t\tthis._draggable.off({\n  \t\t\tdragstart: this._onDragStart,\n  \t\t\tpredrag: this._onPreDrag,\n  \t\t\tdrag: this._onDrag,\n  \t\t\tdragend: this._onDragEnd\n  \t\t}, this).disable();\n\n  \t\tif (this._marker._icon) {\n  \t\t\tremoveClass(this._marker._icon, 'leaflet-marker-draggable');\n  \t\t}\n  \t},\n\n  \tmoved: function () {\n  \t\treturn this._draggable && this._draggable._moved;\n  \t},\n\n  \t_adjustPan: function (e) {\n  \t\tvar marker = this._marker,\n  \t\t    map = marker._map,\n  \t\t    speed = this._marker.options.autoPanSpeed,\n  \t\t    padding = this._marker.options.autoPanPadding,\n  \t\t    iconPos = getPosition(marker._icon),\n  \t\t    bounds = map.getPixelBounds(),\n  \t\t    origin = map.getPixelOrigin();\n\n  \t\tvar panBounds = toBounds(\n  \t\t\tbounds.min._subtract(origin).add(padding),\n  \t\t\tbounds.max._subtract(origin).subtract(padding)\n  \t\t);\n\n  \t\tif (!panBounds.contains(iconPos)) {\n  \t\t\t// Compute incremental movement\n  \t\t\tvar movement = toPoint(\n  \t\t\t\t(Math.max(panBounds.max.x, iconPos.x) - panBounds.max.x) / (bounds.max.x - panBounds.max.x) -\n  \t\t\t\t(Math.min(panBounds.min.x, iconPos.x) - panBounds.min.x) / (bounds.min.x - panBounds.min.x),\n\n  \t\t\t\t(Math.max(panBounds.max.y, iconPos.y) - panBounds.max.y) / (bounds.max.y - panBounds.max.y) -\n  \t\t\t\t(Math.min(panBounds.min.y, iconPos.y) - panBounds.min.y) / (bounds.min.y - panBounds.min.y)\n  \t\t\t).multiplyBy(speed);\n\n  \t\t\tmap.panBy(movement, {animate: false});\n\n  \t\t\tthis._draggable._newPos._add(movement);\n  \t\t\tthis._draggable._startPos._add(movement);\n\n  \t\t\tsetPosition(marker._icon, this._draggable._newPos);\n  \t\t\tthis._onDrag(e);\n\n  \t\t\tthis._panRequest = requestAnimFrame(this._adjustPan.bind(this, e));\n  \t\t}\n  \t},\n\n  \t_onDragStart: function () {\n  \t\t// @section Dragging events\n  \t\t// @event dragstart: Event\n  \t\t// Fired when the user starts dragging the marker.\n\n  \t\t// @event movestart: Event\n  \t\t// Fired when the marker starts moving (because of dragging).\n\n  \t\tthis._oldLatLng = this._marker.getLatLng();\n\n  \t\t// When using ES6 imports it could not be set when `Popup` was not imported as well\n  \t\tthis._marker.closePopup && this._marker.closePopup();\n\n  \t\tthis._marker\n  \t\t\t.fire('movestart')\n  \t\t\t.fire('dragstart');\n  \t},\n\n  \t_onPreDrag: function (e) {\n  \t\tif (this._marker.options.autoPan) {\n  \t\t\tcancelAnimFrame(this._panRequest);\n  \t\t\tthis._panRequest = requestAnimFrame(this._adjustPan.bind(this, e));\n  \t\t}\n  \t},\n\n  \t_onDrag: function (e) {\n  \t\tvar marker = this._marker,\n  \t\t    shadow = marker._shadow,\n  \t\t    iconPos = getPosition(marker._icon),\n  \t\t    latlng = marker._map.layerPointToLatLng(iconPos);\n\n  \t\t// update shadow position\n  \t\tif (shadow) {\n  \t\t\tsetPosition(shadow, iconPos);\n  \t\t}\n\n  \t\tmarker._latlng = latlng;\n  \t\te.latlng = latlng;\n  \t\te.oldLatLng = this._oldLatLng;\n\n  \t\t// @event drag: Event\n  \t\t// Fired repeatedly while the user drags the marker.\n  \t\tmarker\n  \t\t    .fire('move', e)\n  \t\t    .fire('drag', e);\n  \t},\n\n  \t_onDragEnd: function (e) {\n  \t\t// @event dragend: DragEndEvent\n  \t\t// Fired when the user stops dragging the marker.\n\n  \t\t cancelAnimFrame(this._panRequest);\n\n  \t\t// @event moveend: Event\n  \t\t// Fired when the marker stops moving (because of dragging).\n  \t\tdelete this._oldLatLng;\n  \t\tthis._marker\n  \t\t    .fire('moveend')\n  \t\t    .fire('dragend', e);\n  \t}\n  });\n\n  /*\r\n   * @class Marker\r\n   * @inherits Interactive layer\r\n   * @aka L.Marker\r\n   * L.Marker is used to display clickable/draggable icons on the map. Extends `Layer`.\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * L.marker([50.5, 30.5]).addTo(map);\r\n   * ```\r\n   */\r\n\r\n  var Marker = Layer.extend({\r\n\r\n  \t// @section\r\n  \t// @aka Marker options\r\n  \toptions: {\r\n  \t\t// @option icon: Icon = *\r\n  \t\t// Icon instance to use for rendering the marker.\r\n  \t\t// See [Icon documentation](#L.Icon) for details on how to customize the marker icon.\r\n  \t\t// If not specified, a common instance of `L.Icon.Default` is used.\r\n  \t\ticon: new IconDefault(),\r\n\r\n  \t\t// Option inherited from \"Interactive layer\" abstract class\r\n  \t\tinteractive: true,\r\n\r\n  \t\t// @option keyboard: Boolean = true\r\n  \t\t// Whether the marker can be tabbed to with a keyboard and clicked by pressing enter.\r\n  \t\tkeyboard: true,\r\n\r\n  \t\t// @option title: String = ''\r\n  \t\t// Text for the browser tooltip that appear on marker hover (no tooltip by default).\r\n  \t\ttitle: '',\r\n\r\n  \t\t// @option alt: String = ''\r\n  \t\t// Text for the `alt` attribute of the icon image (useful for accessibility).\r\n  \t\talt: '',\r\n\r\n  \t\t// @option zIndexOffset: Number = 0\r\n  \t\t// By default, marker images zIndex is set automatically based on its latitude. Use this option if you want to put the marker on top of all others (or below), specifying a high value like `1000` (or high negative value, respectively).\r\n  \t\tzIndexOffset: 0,\r\n\r\n  \t\t// @option opacity: Number = 1.0\r\n  \t\t// The opacity of the marker.\r\n  \t\topacity: 1,\r\n\r\n  \t\t// @option riseOnHover: Boolean = false\r\n  \t\t// If `true`, the marker will get on top of others when you hover the mouse over it.\r\n  \t\triseOnHover: false,\r\n\r\n  \t\t// @option riseOffset: Number = 250\r\n  \t\t// The z-index offset used for the `riseOnHover` feature.\r\n  \t\triseOffset: 250,\r\n\r\n  \t\t// @option pane: String = 'markerPane'\r\n  \t\t// `Map pane` where the markers icon will be added.\r\n  \t\tpane: 'markerPane',\r\n\r\n  \t\t// @option shadowPane: String = 'shadowPane'\r\n  \t\t// `Map pane` where the markers shadow will be added.\r\n  \t\tshadowPane: 'shadowPane',\r\n\r\n  \t\t// @option bubblingMouseEvents: Boolean = false\r\n  \t\t// When `true`, a mouse event on this marker will trigger the same event on the map\r\n  \t\t// (unless [`L.DomEvent.stopPropagation`](#domevent-stoppropagation) is used).\r\n  \t\tbubblingMouseEvents: false,\r\n\r\n  \t\t// @section Draggable marker options\r\n  \t\t// @option draggable: Boolean = false\r\n  \t\t// Whether the marker is draggable with mouse/touch or not.\r\n  \t\tdraggable: false,\r\n\r\n  \t\t// @option autoPan: Boolean = false\r\n  \t\t// Whether to pan the map when dragging this marker near its edge or not.\r\n  \t\tautoPan: false,\r\n\r\n  \t\t// @option autoPanPadding: Point = Point(50, 50)\r\n  \t\t// Distance (in pixels to the left/right and to the top/bottom) of the\r\n  \t\t// map edge to start panning the map.\r\n  \t\tautoPanPadding: [50, 50],\r\n\r\n  \t\t// @option autoPanSpeed: Number = 10\r\n  \t\t// Number of pixels the map should pan by.\r\n  \t\tautoPanSpeed: 10\r\n  \t},\r\n\r\n  \t/* @section\r\n  \t *\r\n  \t * In addition to [shared layer methods](#Layer) like `addTo()` and `remove()` and [popup methods](#Popup) like bindPopup() you can also use the following methods:\r\n  \t */\r\n\r\n  \tinitialize: function (latlng, options) {\r\n  \t\tsetOptions(this, options);\r\n  \t\tthis._latlng = toLatLng(latlng);\r\n  \t},\r\n\r\n  \tonAdd: function (map) {\r\n  \t\tthis._zoomAnimated = this._zoomAnimated && map.options.markerZoomAnimation;\r\n\r\n  \t\tif (this._zoomAnimated) {\r\n  \t\t\tmap.on('zoomanim', this._animateZoom, this);\r\n  \t\t}\r\n\r\n  \t\tthis._initIcon();\r\n  \t\tthis.update();\r\n  \t},\r\n\r\n  \tonRemove: function (map) {\r\n  \t\tif (this.dragging && this.dragging.enabled()) {\r\n  \t\t\tthis.options.draggable = true;\r\n  \t\t\tthis.dragging.removeHooks();\r\n  \t\t}\r\n  \t\tdelete this.dragging;\r\n\r\n  \t\tif (this._zoomAnimated) {\r\n  \t\t\tmap.off('zoomanim', this._animateZoom, this);\r\n  \t\t}\r\n\r\n  \t\tthis._removeIcon();\r\n  \t\tthis._removeShadow();\r\n  \t},\r\n\r\n  \tgetEvents: function () {\r\n  \t\treturn {\r\n  \t\t\tzoom: this.update,\r\n  \t\t\tviewreset: this.update\r\n  \t\t};\r\n  \t},\r\n\r\n  \t// @method getLatLng: LatLng\r\n  \t// Returns the current geographical position of the marker.\r\n  \tgetLatLng: function () {\r\n  \t\treturn this._latlng;\r\n  \t},\r\n\r\n  \t// @method setLatLng(latlng: LatLng): this\r\n  \t// Changes the marker position to the given point.\r\n  \tsetLatLng: function (latlng) {\r\n  \t\tvar oldLatLng = this._latlng;\r\n  \t\tthis._latlng = toLatLng(latlng);\r\n  \t\tthis.update();\r\n\r\n  \t\t// @event move: Event\r\n  \t\t// Fired when the marker is moved via [`setLatLng`](#marker-setlatlng) or by [dragging](#marker-dragging). Old and new coordinates are included in event arguments as `oldLatLng`, `latlng`.\r\n  \t\treturn this.fire('move', {oldLatLng: oldLatLng, latlng: this._latlng});\r\n  \t},\r\n\r\n  \t// @method setZIndexOffset(offset: Number): this\r\n  \t// Changes the [zIndex offset](#marker-zindexoffset) of the marker.\r\n  \tsetZIndexOffset: function (offset) {\r\n  \t\tthis.options.zIndexOffset = offset;\r\n  \t\treturn this.update();\r\n  \t},\r\n\r\n  \t// @method getIcon: Icon\r\n  \t// Returns the current icon used by the marker\r\n  \tgetIcon: function () {\r\n  \t\treturn this.options.icon;\r\n  \t},\r\n\r\n  \t// @method setIcon(icon: Icon): this\r\n  \t// Changes the marker icon.\r\n  \tsetIcon: function (icon) {\r\n\r\n  \t\tthis.options.icon = icon;\r\n\r\n  \t\tif (this._map) {\r\n  \t\t\tthis._initIcon();\r\n  \t\t\tthis.update();\r\n  \t\t}\r\n\r\n  \t\tif (this._popup) {\r\n  \t\t\tthis.bindPopup(this._popup, this._popup.options);\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \tgetElement: function () {\r\n  \t\treturn this._icon;\r\n  \t},\r\n\r\n  \tupdate: function () {\r\n\r\n  \t\tif (this._icon && this._map) {\r\n  \t\t\tvar pos = this._map.latLngToLayerPoint(this._latlng).round();\r\n  \t\t\tthis._setPos(pos);\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t_initIcon: function () {\r\n  \t\tvar options = this.options,\r\n  \t\t    classToAdd = 'leaflet-zoom-' + (this._zoomAnimated ? 'animated' : 'hide');\r\n\r\n  \t\tvar icon = options.icon.createIcon(this._icon),\r\n  \t\t    addIcon = false;\r\n\r\n  \t\t// if we're not reusing the icon, remove the old one and init new one\r\n  \t\tif (icon !== this._icon) {\r\n  \t\t\tif (this._icon) {\r\n  \t\t\t\tthis._removeIcon();\r\n  \t\t\t}\r\n  \t\t\taddIcon = true;\r\n\r\n  \t\t\tif (options.title) {\r\n  \t\t\t\ticon.title = options.title;\r\n  \t\t\t}\r\n\r\n  \t\t\tif (icon.tagName === 'IMG') {\r\n  \t\t\t\ticon.alt = options.alt || '';\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\taddClass(icon, classToAdd);\r\n\r\n  \t\tif (options.keyboard) {\r\n  \t\t\ticon.tabIndex = '0';\r\n  \t\t}\r\n\r\n  \t\tthis._icon = icon;\r\n\r\n  \t\tif (options.riseOnHover) {\r\n  \t\t\tthis.on({\r\n  \t\t\t\tmouseover: this._bringToFront,\r\n  \t\t\t\tmouseout: this._resetZIndex\r\n  \t\t\t});\r\n  \t\t}\r\n\r\n  \t\tvar newShadow = options.icon.createShadow(this._shadow),\r\n  \t\t    addShadow = false;\r\n\r\n  \t\tif (newShadow !== this._shadow) {\r\n  \t\t\tthis._removeShadow();\r\n  \t\t\taddShadow = true;\r\n  \t\t}\r\n\r\n  \t\tif (newShadow) {\r\n  \t\t\taddClass(newShadow, classToAdd);\r\n  \t\t\tnewShadow.alt = '';\r\n  \t\t}\r\n  \t\tthis._shadow = newShadow;\r\n\r\n\r\n  \t\tif (options.opacity < 1) {\r\n  \t\t\tthis._updateOpacity();\r\n  \t\t}\r\n\r\n\r\n  \t\tif (addIcon) {\r\n  \t\t\tthis.getPane().appendChild(this._icon);\r\n  \t\t}\r\n  \t\tthis._initInteraction();\r\n  \t\tif (newShadow && addShadow) {\r\n  \t\t\tthis.getPane(options.shadowPane).appendChild(this._shadow);\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_removeIcon: function () {\r\n  \t\tif (this.options.riseOnHover) {\r\n  \t\t\tthis.off({\r\n  \t\t\t\tmouseover: this._bringToFront,\r\n  \t\t\t\tmouseout: this._resetZIndex\r\n  \t\t\t});\r\n  \t\t}\r\n\r\n  \t\tremove(this._icon);\r\n  \t\tthis.removeInteractiveTarget(this._icon);\r\n\r\n  \t\tthis._icon = null;\r\n  \t},\r\n\r\n  \t_removeShadow: function () {\r\n  \t\tif (this._shadow) {\r\n  \t\t\tremove(this._shadow);\r\n  \t\t}\r\n  \t\tthis._shadow = null;\r\n  \t},\r\n\r\n  \t_setPos: function (pos) {\r\n\r\n  \t\tif (this._icon) {\r\n  \t\t\tsetPosition(this._icon, pos);\r\n  \t\t}\r\n\r\n  \t\tif (this._shadow) {\r\n  \t\t\tsetPosition(this._shadow, pos);\r\n  \t\t}\r\n\r\n  \t\tthis._zIndex = pos.y + this.options.zIndexOffset;\r\n\r\n  \t\tthis._resetZIndex();\r\n  \t},\r\n\r\n  \t_updateZIndex: function (offset) {\r\n  \t\tif (this._icon) {\r\n  \t\t\tthis._icon.style.zIndex = this._zIndex + offset;\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_animateZoom: function (opt) {\r\n  \t\tvar pos = this._map._latLngToNewLayerPoint(this._latlng, opt.zoom, opt.center).round();\r\n\r\n  \t\tthis._setPos(pos);\r\n  \t},\r\n\r\n  \t_initInteraction: function () {\r\n\r\n  \t\tif (!this.options.interactive) { return; }\r\n\r\n  \t\taddClass(this._icon, 'leaflet-interactive');\r\n\r\n  \t\tthis.addInteractiveTarget(this._icon);\r\n\r\n  \t\tif (MarkerDrag) {\r\n  \t\t\tvar draggable = this.options.draggable;\r\n  \t\t\tif (this.dragging) {\r\n  \t\t\t\tdraggable = this.dragging.enabled();\r\n  \t\t\t\tthis.dragging.disable();\r\n  \t\t\t}\r\n\r\n  \t\t\tthis.dragging = new MarkerDrag(this);\r\n\r\n  \t\t\tif (draggable) {\r\n  \t\t\t\tthis.dragging.enable();\r\n  \t\t\t}\r\n  \t\t}\r\n  \t},\r\n\r\n  \t// @method setOpacity(opacity: Number): this\r\n  \t// Changes the opacity of the marker.\r\n  \tsetOpacity: function (opacity) {\r\n  \t\tthis.options.opacity = opacity;\r\n  \t\tif (this._map) {\r\n  \t\t\tthis._updateOpacity();\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t_updateOpacity: function () {\r\n  \t\tvar opacity = this.options.opacity;\r\n\r\n  \t\tif (this._icon) {\r\n  \t\t\tsetOpacity(this._icon, opacity);\r\n  \t\t}\r\n\r\n  \t\tif (this._shadow) {\r\n  \t\t\tsetOpacity(this._shadow, opacity);\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_bringToFront: function () {\r\n  \t\tthis._updateZIndex(this.options.riseOffset);\r\n  \t},\r\n\r\n  \t_resetZIndex: function () {\r\n  \t\tthis._updateZIndex(0);\r\n  \t},\r\n\r\n  \t_getPopupAnchor: function () {\r\n  \t\treturn this.options.icon.options.popupAnchor;\r\n  \t},\r\n\r\n  \t_getTooltipAnchor: function () {\r\n  \t\treturn this.options.icon.options.tooltipAnchor;\r\n  \t}\r\n  });\r\n\r\n\r\n  // factory L.marker(latlng: LatLng, options? : Marker options)\r\n\r\n  // @factory L.marker(latlng: LatLng, options? : Marker options)\r\n  // Instantiates a Marker object given a geographical point and optionally an options object.\r\n  function marker(latlng, options) {\r\n  \treturn new Marker(latlng, options);\r\n  }\n\n  /*\n   * @class Path\n   * @aka L.Path\n   * @inherits Interactive layer\n   *\n   * An abstract class that contains options and constants shared between vector\n   * overlays (Polygon, Polyline, Circle). Do not use it directly. Extends `Layer`.\n   */\n\n  var Path = Layer.extend({\n\n  \t// @section\n  \t// @aka Path options\n  \toptions: {\n  \t\t// @option stroke: Boolean = true\n  \t\t// Whether to draw stroke along the path. Set it to `false` to disable borders on polygons or circles.\n  \t\tstroke: true,\n\n  \t\t// @option color: String = '#3388ff'\n  \t\t// Stroke color\n  \t\tcolor: '#3388ff',\n\n  \t\t// @option weight: Number = 3\n  \t\t// Stroke width in pixels\n  \t\tweight: 3,\n\n  \t\t// @option opacity: Number = 1.0\n  \t\t// Stroke opacity\n  \t\topacity: 1,\n\n  \t\t// @option lineCap: String= 'round'\n  \t\t// A string that defines [shape to be used at the end](https://developer.mozilla.org/docs/Web/SVG/Attribute/stroke-linecap) of the stroke.\n  \t\tlineCap: 'round',\n\n  \t\t// @option lineJoin: String = 'round'\n  \t\t// A string that defines [shape to be used at the corners](https://developer.mozilla.org/docs/Web/SVG/Attribute/stroke-linejoin) of the stroke.\n  \t\tlineJoin: 'round',\n\n  \t\t// @option dashArray: String = null\n  \t\t// A string that defines the stroke [dash pattern](https://developer.mozilla.org/docs/Web/SVG/Attribute/stroke-dasharray). Doesn't work on `Canvas`-powered layers in [some old browsers](https://developer.mozilla.org/docs/Web/API/CanvasRenderingContext2D/setLineDash#Browser_compatibility).\n  \t\tdashArray: null,\n\n  \t\t// @option dashOffset: String = null\n  \t\t// A string that defines the [distance into the dash pattern to start the dash](https://developer.mozilla.org/docs/Web/SVG/Attribute/stroke-dashoffset). Doesn't work on `Canvas`-powered layers in [some old browsers](https://developer.mozilla.org/docs/Web/API/CanvasRenderingContext2D/setLineDash#Browser_compatibility).\n  \t\tdashOffset: null,\n\n  \t\t// @option fill: Boolean = depends\n  \t\t// Whether to fill the path with color. Set it to `false` to disable filling on polygons or circles.\n  \t\tfill: false,\n\n  \t\t// @option fillColor: String = *\n  \t\t// Fill color. Defaults to the value of the [`color`](#path-color) option\n  \t\tfillColor: null,\n\n  \t\t// @option fillOpacity: Number = 0.2\n  \t\t// Fill opacity.\n  \t\tfillOpacity: 0.2,\n\n  \t\t// @option fillRule: String = 'evenodd'\n  \t\t// A string that defines [how the inside of a shape](https://developer.mozilla.org/docs/Web/SVG/Attribute/fill-rule) is determined.\n  \t\tfillRule: 'evenodd',\n\n  \t\t// className: '',\n\n  \t\t// Option inherited from \"Interactive layer\" abstract class\n  \t\tinteractive: true,\n\n  \t\t// @option bubblingMouseEvents: Boolean = true\n  \t\t// When `true`, a mouse event on this path will trigger the same event on the map\n  \t\t// (unless [`L.DomEvent.stopPropagation`](#domevent-stoppropagation) is used).\n  \t\tbubblingMouseEvents: true\n  \t},\n\n  \tbeforeAdd: function (map) {\n  \t\t// Renderer is set here because we need to call renderer.getEvents\n  \t\t// before this.getEvents.\n  \t\tthis._renderer = map.getRenderer(this);\n  \t},\n\n  \tonAdd: function () {\n  \t\tthis._renderer._initPath(this);\n  \t\tthis._reset();\n  \t\tthis._renderer._addPath(this);\n  \t},\n\n  \tonRemove: function () {\n  \t\tthis._renderer._removePath(this);\n  \t},\n\n  \t// @method redraw(): this\n  \t// Redraws the layer. Sometimes useful after you changed the coordinates that the path uses.\n  \tredraw: function () {\n  \t\tif (this._map) {\n  \t\t\tthis._renderer._updatePath(this);\n  \t\t}\n  \t\treturn this;\n  \t},\n\n  \t// @method setStyle(style: Path options): this\n  \t// Changes the appearance of a Path based on the options in the `Path options` object.\n  \tsetStyle: function (style) {\n  \t\tsetOptions(this, style);\n  \t\tif (this._renderer) {\n  \t\t\tthis._renderer._updateStyle(this);\n  \t\t\tif (this.options.stroke && style && Object.prototype.hasOwnProperty.call(style, 'weight')) {\n  \t\t\t\tthis._updateBounds();\n  \t\t\t}\n  \t\t}\n  \t\treturn this;\n  \t},\n\n  \t// @method bringToFront(): this\n  \t// Brings the layer to the top of all path layers.\n  \tbringToFront: function () {\n  \t\tif (this._renderer) {\n  \t\t\tthis._renderer._bringToFront(this);\n  \t\t}\n  \t\treturn this;\n  \t},\n\n  \t// @method bringToBack(): this\n  \t// Brings the layer to the bottom of all path layers.\n  \tbringToBack: function () {\n  \t\tif (this._renderer) {\n  \t\t\tthis._renderer._bringToBack(this);\n  \t\t}\n  \t\treturn this;\n  \t},\n\n  \tgetElement: function () {\n  \t\treturn this._path;\n  \t},\n\n  \t_reset: function () {\n  \t\t// defined in child classes\n  \t\tthis._project();\n  \t\tthis._update();\n  \t},\n\n  \t_clickTolerance: function () {\n  \t\t// used when doing hit detection for Canvas layers\n  \t\treturn (this.options.stroke ? this.options.weight / 2 : 0) + this._renderer.options.tolerance;\n  \t}\n  });\n\n  /*\n   * @class CircleMarker\n   * @aka L.CircleMarker\n   * @inherits Path\n   *\n   * A circle of a fixed size with radius specified in pixels. Extends `Path`.\n   */\n\n  var CircleMarker = Path.extend({\n\n  \t// @section\n  \t// @aka CircleMarker options\n  \toptions: {\n  \t\tfill: true,\n\n  \t\t// @option radius: Number = 10\n  \t\t// Radius of the circle marker, in pixels\n  \t\tradius: 10\n  \t},\n\n  \tinitialize: function (latlng, options) {\n  \t\tsetOptions(this, options);\n  \t\tthis._latlng = toLatLng(latlng);\n  \t\tthis._radius = this.options.radius;\n  \t},\n\n  \t// @method setLatLng(latLng: LatLng): this\n  \t// Sets the position of a circle marker to a new location.\n  \tsetLatLng: function (latlng) {\n  \t\tvar oldLatLng = this._latlng;\n  \t\tthis._latlng = toLatLng(latlng);\n  \t\tthis.redraw();\n\n  \t\t// @event move: Event\n  \t\t// Fired when the marker is moved via [`setLatLng`](#circlemarker-setlatlng). Old and new coordinates are included in event arguments as `oldLatLng`, `latlng`.\n  \t\treturn this.fire('move', {oldLatLng: oldLatLng, latlng: this._latlng});\n  \t},\n\n  \t// @method getLatLng(): LatLng\n  \t// Returns the current geographical position of the circle marker\n  \tgetLatLng: function () {\n  \t\treturn this._latlng;\n  \t},\n\n  \t// @method setRadius(radius: Number): this\n  \t// Sets the radius of a circle marker. Units are in pixels.\n  \tsetRadius: function (radius) {\n  \t\tthis.options.radius = this._radius = radius;\n  \t\treturn this.redraw();\n  \t},\n\n  \t// @method getRadius(): Number\n  \t// Returns the current radius of the circle\n  \tgetRadius: function () {\n  \t\treturn this._radius;\n  \t},\n\n  \tsetStyle : function (options) {\n  \t\tvar radius = options && options.radius || this._radius;\n  \t\tPath.prototype.setStyle.call(this, options);\n  \t\tthis.setRadius(radius);\n  \t\treturn this;\n  \t},\n\n  \t_project: function () {\n  \t\tthis._point = this._map.latLngToLayerPoint(this._latlng);\n  \t\tthis._updateBounds();\n  \t},\n\n  \t_updateBounds: function () {\n  \t\tvar r = this._radius,\n  \t\t    r2 = this._radiusY || r,\n  \t\t    w = this._clickTolerance(),\n  \t\t    p = [r + w, r2 + w];\n  \t\tthis._pxBounds = new Bounds(this._point.subtract(p), this._point.add(p));\n  \t},\n\n  \t_update: function () {\n  \t\tif (this._map) {\n  \t\t\tthis._updatePath();\n  \t\t}\n  \t},\n\n  \t_updatePath: function () {\n  \t\tthis._renderer._updateCircle(this);\n  \t},\n\n  \t_empty: function () {\n  \t\treturn this._radius && !this._renderer._bounds.intersects(this._pxBounds);\n  \t},\n\n  \t// Needed by the `Canvas` renderer for interactivity\n  \t_containsPoint: function (p) {\n  \t\treturn p.distanceTo(this._point) <= this._radius + this._clickTolerance();\n  \t}\n  });\n\n\n  // @factory L.circleMarker(latlng: LatLng, options?: CircleMarker options)\n  // Instantiates a circle marker object given a geographical point, and an optional options object.\n  function circleMarker(latlng, options) {\n  \treturn new CircleMarker(latlng, options);\n  }\n\n  /*\n   * @class Circle\n   * @aka L.Circle\n   * @inherits CircleMarker\n   *\n   * A class for drawing circle overlays on a map. Extends `CircleMarker`.\n   *\n   * It's an approximation and starts to diverge from a real circle closer to poles (due to projection distortion).\n   *\n   * @example\n   *\n   * ```js\n   * L.circle([50.5, 30.5], {radius: 200}).addTo(map);\n   * ```\n   */\n\n  var Circle = CircleMarker.extend({\n\n  \tinitialize: function (latlng, options, legacyOptions) {\n  \t\tif (typeof options === 'number') {\n  \t\t\t// Backwards compatibility with 0.7.x factory (latlng, radius, options?)\n  \t\t\toptions = extend({}, legacyOptions, {radius: options});\n  \t\t}\n  \t\tsetOptions(this, options);\n  \t\tthis._latlng = toLatLng(latlng);\n\n  \t\tif (isNaN(this.options.radius)) { throw new Error('Circle radius cannot be NaN'); }\n\n  \t\t// @section\n  \t\t// @aka Circle options\n  \t\t// @option radius: Number; Radius of the circle, in meters.\n  \t\tthis._mRadius = this.options.radius;\n  \t},\n\n  \t// @method setRadius(radius: Number): this\n  \t// Sets the radius of a circle. Units are in meters.\n  \tsetRadius: function (radius) {\n  \t\tthis._mRadius = radius;\n  \t\treturn this.redraw();\n  \t},\n\n  \t// @method getRadius(): Number\n  \t// Returns the current radius of a circle. Units are in meters.\n  \tgetRadius: function () {\n  \t\treturn this._mRadius;\n  \t},\n\n  \t// @method getBounds(): LatLngBounds\n  \t// Returns the `LatLngBounds` of the path.\n  \tgetBounds: function () {\n  \t\tvar half = [this._radius, this._radiusY || this._radius];\n\n  \t\treturn new LatLngBounds(\n  \t\t\tthis._map.layerPointToLatLng(this._point.subtract(half)),\n  \t\t\tthis._map.layerPointToLatLng(this._point.add(half)));\n  \t},\n\n  \tsetStyle: Path.prototype.setStyle,\n\n  \t_project: function () {\n\n  \t\tvar lng = this._latlng.lng,\n  \t\t    lat = this._latlng.lat,\n  \t\t    map = this._map,\n  \t\t    crs = map.options.crs;\n\n  \t\tif (crs.distance === Earth.distance) {\n  \t\t\tvar d = Math.PI / 180,\n  \t\t\t    latR = (this._mRadius / Earth.R) / d,\n  \t\t\t    top = map.project([lat + latR, lng]),\n  \t\t\t    bottom = map.project([lat - latR, lng]),\n  \t\t\t    p = top.add(bottom).divideBy(2),\n  \t\t\t    lat2 = map.unproject(p).lat,\n  \t\t\t    lngR = Math.acos((Math.cos(latR * d) - Math.sin(lat * d) * Math.sin(lat2 * d)) /\n  \t\t\t            (Math.cos(lat * d) * Math.cos(lat2 * d))) / d;\n\n  \t\t\tif (isNaN(lngR) || lngR === 0) {\n  \t\t\t\tlngR = latR / Math.cos(Math.PI / 180 * lat); // Fallback for edge case, #2425\n  \t\t\t}\n\n  \t\t\tthis._point = p.subtract(map.getPixelOrigin());\n  \t\t\tthis._radius = isNaN(lngR) ? 0 : p.x - map.project([lat2, lng - lngR]).x;\n  \t\t\tthis._radiusY = p.y - top.y;\n\n  \t\t} else {\n  \t\t\tvar latlng2 = crs.unproject(crs.project(this._latlng).subtract([this._mRadius, 0]));\n\n  \t\t\tthis._point = map.latLngToLayerPoint(this._latlng);\n  \t\t\tthis._radius = this._point.x - map.latLngToLayerPoint(latlng2).x;\n  \t\t}\n\n  \t\tthis._updateBounds();\n  \t}\n  });\n\n  // @factory L.circle(latlng: LatLng, options?: Circle options)\n  // Instantiates a circle object given a geographical point, and an options object\n  // which contains the circle radius.\n  // @alternative\n  // @factory L.circle(latlng: LatLng, radius: Number, options?: Circle options)\n  // Obsolete way of instantiating a circle, for compatibility with 0.7.x code.\n  // Do not use in new applications or plugins.\n  function circle(latlng, options, legacyOptions) {\n  \treturn new Circle(latlng, options, legacyOptions);\n  }\n\n  /*\n   * @class Polyline\n   * @aka L.Polyline\n   * @inherits Path\n   *\n   * A class for drawing polyline overlays on a map. Extends `Path`.\n   *\n   * @example\n   *\n   * ```js\n   * // create a red polyline from an array of LatLng points\n   * var latlngs = [\n   * \t[45.51, -122.68],\n   * \t[37.77, -122.43],\n   * \t[34.04, -118.2]\n   * ];\n   *\n   * var polyline = L.polyline(latlngs, {color: 'red'}).addTo(map);\n   *\n   * // zoom the map to the polyline\n   * map.fitBounds(polyline.getBounds());\n   * ```\n   *\n   * You can also pass a multi-dimensional array to represent a `MultiPolyline` shape:\n   *\n   * ```js\n   * // create a red polyline from an array of arrays of LatLng points\n   * var latlngs = [\n   * \t[[45.51, -122.68],\n   * \t [37.77, -122.43],\n   * \t [34.04, -118.2]],\n   * \t[[40.78, -73.91],\n   * \t [41.83, -87.62],\n   * \t [32.76, -96.72]]\n   * ];\n   * ```\n   */\n\n\n  var Polyline = Path.extend({\n\n  \t// @section\n  \t// @aka Polyline options\n  \toptions: {\n  \t\t// @option smoothFactor: Number = 1.0\n  \t\t// How much to simplify the polyline on each zoom level. More means\n  \t\t// better performance and smoother look, and less means more accurate representation.\n  \t\tsmoothFactor: 1.0,\n\n  \t\t// @option noClip: Boolean = false\n  \t\t// Disable polyline clipping.\n  \t\tnoClip: false\n  \t},\n\n  \tinitialize: function (latlngs, options) {\n  \t\tsetOptions(this, options);\n  \t\tthis._setLatLngs(latlngs);\n  \t},\n\n  \t// @method getLatLngs(): LatLng[]\n  \t// Returns an array of the points in the path, or nested arrays of points in case of multi-polyline.\n  \tgetLatLngs: function () {\n  \t\treturn this._latlngs;\n  \t},\n\n  \t// @method setLatLngs(latlngs: LatLng[]): this\n  \t// Replaces all the points in the polyline with the given array of geographical points.\n  \tsetLatLngs: function (latlngs) {\n  \t\tthis._setLatLngs(latlngs);\n  \t\treturn this.redraw();\n  \t},\n\n  \t// @method isEmpty(): Boolean\n  \t// Returns `true` if the Polyline has no LatLngs.\n  \tisEmpty: function () {\n  \t\treturn !this._latlngs.length;\n  \t},\n\n  \t// @method closestLayerPoint(p: Point): Point\n  \t// Returns the point closest to `p` on the Polyline.\n  \tclosestLayerPoint: function (p) {\n  \t\tvar minDistance = Infinity,\n  \t\t    minPoint = null,\n  \t\t    closest = _sqClosestPointOnSegment,\n  \t\t    p1, p2;\n\n  \t\tfor (var j = 0, jLen = this._parts.length; j < jLen; j++) {\n  \t\t\tvar points = this._parts[j];\n\n  \t\t\tfor (var i = 1, len = points.length; i < len; i++) {\n  \t\t\t\tp1 = points[i - 1];\n  \t\t\t\tp2 = points[i];\n\n  \t\t\t\tvar sqDist = closest(p, p1, p2, true);\n\n  \t\t\t\tif (sqDist < minDistance) {\n  \t\t\t\t\tminDistance = sqDist;\n  \t\t\t\t\tminPoint = closest(p, p1, p2);\n  \t\t\t\t}\n  \t\t\t}\n  \t\t}\n  \t\tif (minPoint) {\n  \t\t\tminPoint.distance = Math.sqrt(minDistance);\n  \t\t}\n  \t\treturn minPoint;\n  \t},\n\n  \t// @method getCenter(): LatLng\n  \t// Returns the center ([centroid](http://en.wikipedia.org/wiki/Centroid)) of the polyline.\n  \tgetCenter: function () {\n  \t\t// throws error when not yet added to map as this center calculation requires projected coordinates\n  \t\tif (!this._map) {\n  \t\t\tthrow new Error('Must add layer to map before using getCenter()');\n  \t\t}\n\n  \t\tvar i, halfDist, segDist, dist, p1, p2, ratio,\n  \t\t    points = this._rings[0],\n  \t\t    len = points.length;\n\n  \t\tif (!len) { return null; }\n\n  \t\t// polyline centroid algorithm; only uses the first ring if there are multiple\n\n  \t\tfor (i = 0, halfDist = 0; i < len - 1; i++) {\n  \t\t\thalfDist += points[i].distanceTo(points[i + 1]) / 2;\n  \t\t}\n\n  \t\t// The line is so small in the current view that all points are on the same pixel.\n  \t\tif (halfDist === 0) {\n  \t\t\treturn this._map.layerPointToLatLng(points[0]);\n  \t\t}\n\n  \t\tfor (i = 0, dist = 0; i < len - 1; i++) {\n  \t\t\tp1 = points[i];\n  \t\t\tp2 = points[i + 1];\n  \t\t\tsegDist = p1.distanceTo(p2);\n  \t\t\tdist += segDist;\n\n  \t\t\tif (dist > halfDist) {\n  \t\t\t\tratio = (dist - halfDist) / segDist;\n  \t\t\t\treturn this._map.layerPointToLatLng([\n  \t\t\t\t\tp2.x - ratio * (p2.x - p1.x),\n  \t\t\t\t\tp2.y - ratio * (p2.y - p1.y)\n  \t\t\t\t]);\n  \t\t\t}\n  \t\t}\n  \t},\n\n  \t// @method getBounds(): LatLngBounds\n  \t// Returns the `LatLngBounds` of the path.\n  \tgetBounds: function () {\n  \t\treturn this._bounds;\n  \t},\n\n  \t// @method addLatLng(latlng: LatLng, latlngs?: LatLng[]): this\n  \t// Adds a given point to the polyline. By default, adds to the first ring of\n  \t// the polyline in case of a multi-polyline, but can be overridden by passing\n  \t// a specific ring as a LatLng array (that you can earlier access with [`getLatLngs`](#polyline-getlatlngs)).\n  \taddLatLng: function (latlng, latlngs) {\n  \t\tlatlngs = latlngs || this._defaultShape();\n  \t\tlatlng = toLatLng(latlng);\n  \t\tlatlngs.push(latlng);\n  \t\tthis._bounds.extend(latlng);\n  \t\treturn this.redraw();\n  \t},\n\n  \t_setLatLngs: function (latlngs) {\n  \t\tthis._bounds = new LatLngBounds();\n  \t\tthis._latlngs = this._convertLatLngs(latlngs);\n  \t},\n\n  \t_defaultShape: function () {\n  \t\treturn isFlat(this._latlngs) ? this._latlngs : this._latlngs[0];\n  \t},\n\n  \t// recursively convert latlngs input into actual LatLng instances; calculate bounds along the way\n  \t_convertLatLngs: function (latlngs) {\n  \t\tvar result = [],\n  \t\t    flat = isFlat(latlngs);\n\n  \t\tfor (var i = 0, len = latlngs.length; i < len; i++) {\n  \t\t\tif (flat) {\n  \t\t\t\tresult[i] = toLatLng(latlngs[i]);\n  \t\t\t\tthis._bounds.extend(result[i]);\n  \t\t\t} else {\n  \t\t\t\tresult[i] = this._convertLatLngs(latlngs[i]);\n  \t\t\t}\n  \t\t}\n\n  \t\treturn result;\n  \t},\n\n  \t_project: function () {\n  \t\tvar pxBounds = new Bounds();\n  \t\tthis._rings = [];\n  \t\tthis._projectLatlngs(this._latlngs, this._rings, pxBounds);\n\n  \t\tif (this._bounds.isValid() && pxBounds.isValid()) {\n  \t\t\tthis._rawPxBounds = pxBounds;\n  \t\t\tthis._updateBounds();\n  \t\t}\n  \t},\n\n  \t_updateBounds: function () {\n  \t\tvar w = this._clickTolerance(),\n  \t\t    p = new Point(w, w);\n  \t\tthis._pxBounds = new Bounds([\n  \t\t\tthis._rawPxBounds.min.subtract(p),\n  \t\t\tthis._rawPxBounds.max.add(p)\n  \t\t]);\n  \t},\n\n  \t// recursively turns latlngs into a set of rings with projected coordinates\n  \t_projectLatlngs: function (latlngs, result, projectedBounds) {\n  \t\tvar flat = latlngs[0] instanceof LatLng,\n  \t\t    len = latlngs.length,\n  \t\t    i, ring;\n\n  \t\tif (flat) {\n  \t\t\tring = [];\n  \t\t\tfor (i = 0; i < len; i++) {\n  \t\t\t\tring[i] = this._map.latLngToLayerPoint(latlngs[i]);\n  \t\t\t\tprojectedBounds.extend(ring[i]);\n  \t\t\t}\n  \t\t\tresult.push(ring);\n  \t\t} else {\n  \t\t\tfor (i = 0; i < len; i++) {\n  \t\t\t\tthis._projectLatlngs(latlngs[i], result, projectedBounds);\n  \t\t\t}\n  \t\t}\n  \t},\n\n  \t// clip polyline by renderer bounds so that we have less to render for performance\n  \t_clipPoints: function () {\n  \t\tvar bounds = this._renderer._bounds;\n\n  \t\tthis._parts = [];\n  \t\tif (!this._pxBounds || !this._pxBounds.intersects(bounds)) {\n  \t\t\treturn;\n  \t\t}\n\n  \t\tif (this.options.noClip) {\n  \t\t\tthis._parts = this._rings;\n  \t\t\treturn;\n  \t\t}\n\n  \t\tvar parts = this._parts,\n  \t\t    i, j, k, len, len2, segment, points;\n\n  \t\tfor (i = 0, k = 0, len = this._rings.length; i < len; i++) {\n  \t\t\tpoints = this._rings[i];\n\n  \t\t\tfor (j = 0, len2 = points.length; j < len2 - 1; j++) {\n  \t\t\t\tsegment = clipSegment(points[j], points[j + 1], bounds, j, true);\n\n  \t\t\t\tif (!segment) { continue; }\n\n  \t\t\t\tparts[k] = parts[k] || [];\n  \t\t\t\tparts[k].push(segment[0]);\n\n  \t\t\t\t// if segment goes out of screen, or it's the last one, it's the end of the line part\n  \t\t\t\tif ((segment[1] !== points[j + 1]) || (j === len2 - 2)) {\n  \t\t\t\t\tparts[k].push(segment[1]);\n  \t\t\t\t\tk++;\n  \t\t\t\t}\n  \t\t\t}\n  \t\t}\n  \t},\n\n  \t// simplify each clipped part of the polyline for performance\n  \t_simplifyPoints: function () {\n  \t\tvar parts = this._parts,\n  \t\t    tolerance = this.options.smoothFactor;\n\n  \t\tfor (var i = 0, len = parts.length; i < len; i++) {\n  \t\t\tparts[i] = simplify(parts[i], tolerance);\n  \t\t}\n  \t},\n\n  \t_update: function () {\n  \t\tif (!this._map) { return; }\n\n  \t\tthis._clipPoints();\n  \t\tthis._simplifyPoints();\n  \t\tthis._updatePath();\n  \t},\n\n  \t_updatePath: function () {\n  \t\tthis._renderer._updatePoly(this);\n  \t},\n\n  \t// Needed by the `Canvas` renderer for interactivity\n  \t_containsPoint: function (p, closed) {\n  \t\tvar i, j, k, len, len2, part,\n  \t\t    w = this._clickTolerance();\n\n  \t\tif (!this._pxBounds || !this._pxBounds.contains(p)) { return false; }\n\n  \t\t// hit detection for polylines\n  \t\tfor (i = 0, len = this._parts.length; i < len; i++) {\n  \t\t\tpart = this._parts[i];\n\n  \t\t\tfor (j = 0, len2 = part.length, k = len2 - 1; j < len2; k = j++) {\n  \t\t\t\tif (!closed && (j === 0)) { continue; }\n\n  \t\t\t\tif (pointToSegmentDistance(p, part[k], part[j]) <= w) {\n  \t\t\t\t\treturn true;\n  \t\t\t\t}\n  \t\t\t}\n  \t\t}\n  \t\treturn false;\n  \t}\n  });\n\n  // @factory L.polyline(latlngs: LatLng[], options?: Polyline options)\n  // Instantiates a polyline object given an array of geographical points and\n  // optionally an options object. You can create a `Polyline` object with\n  // multiple separate lines (`MultiPolyline`) by passing an array of arrays\n  // of geographic points.\n  function polyline(latlngs, options) {\n  \treturn new Polyline(latlngs, options);\n  }\n\n  // Retrocompat. Allow plugins to support Leaflet versions before and after 1.1.\n  Polyline._flat = _flat;\n\n  /*\n   * @class Polygon\n   * @aka L.Polygon\n   * @inherits Polyline\n   *\n   * A class for drawing polygon overlays on a map. Extends `Polyline`.\n   *\n   * Note that points you pass when creating a polygon shouldn't have an additional last point equal to the first one ā€” it's better to filter out such points.\n   *\n   *\n   * @example\n   *\n   * ```js\n   * // create a red polygon from an array of LatLng points\n   * var latlngs = [[37, -109.05],[41, -109.03],[41, -102.05],[37, -102.04]];\n   *\n   * var polygon = L.polygon(latlngs, {color: 'red'}).addTo(map);\n   *\n   * // zoom the map to the polygon\n   * map.fitBounds(polygon.getBounds());\n   * ```\n   *\n   * You can also pass an array of arrays of latlngs, with the first array representing the outer shape and the other arrays representing holes in the outer shape:\n   *\n   * ```js\n   * var latlngs = [\n   *   [[37, -109.05],[41, -109.03],[41, -102.05],[37, -102.04]], // outer ring\n   *   [[37.29, -108.58],[40.71, -108.58],[40.71, -102.50],[37.29, -102.50]] // hole\n   * ];\n   * ```\n   *\n   * Additionally, you can pass a multi-dimensional array to represent a MultiPolygon shape.\n   *\n   * ```js\n   * var latlngs = [\n   *   [ // first polygon\n   *     [[37, -109.05],[41, -109.03],[41, -102.05],[37, -102.04]], // outer ring\n   *     [[37.29, -108.58],[40.71, -108.58],[40.71, -102.50],[37.29, -102.50]] // hole\n   *   ],\n   *   [ // second polygon\n   *     [[41, -111.03],[45, -111.04],[45, -104.05],[41, -104.05]]\n   *   ]\n   * ];\n   * ```\n   */\n\n  var Polygon = Polyline.extend({\n\n  \toptions: {\n  \t\tfill: true\n  \t},\n\n  \tisEmpty: function () {\n  \t\treturn !this._latlngs.length || !this._latlngs[0].length;\n  \t},\n\n  \tgetCenter: function () {\n  \t\t// throws error when not yet added to map as this center calculation requires projected coordinates\n  \t\tif (!this._map) {\n  \t\t\tthrow new Error('Must add layer to map before using getCenter()');\n  \t\t}\n\n  \t\tvar i, j, p1, p2, f, area, x, y, center,\n  \t\t    points = this._rings[0],\n  \t\t    len = points.length;\n\n  \t\tif (!len) { return null; }\n\n  \t\t// polygon centroid algorithm; only uses the first ring if there are multiple\n\n  \t\tarea = x = y = 0;\n\n  \t\tfor (i = 0, j = len - 1; i < len; j = i++) {\n  \t\t\tp1 = points[i];\n  \t\t\tp2 = points[j];\n\n  \t\t\tf = p1.y * p2.x - p2.y * p1.x;\n  \t\t\tx += (p1.x + p2.x) * f;\n  \t\t\ty += (p1.y + p2.y) * f;\n  \t\t\tarea += f * 3;\n  \t\t}\n\n  \t\tif (area === 0) {\n  \t\t\t// Polygon is so small that all points are on same pixel.\n  \t\t\tcenter = points[0];\n  \t\t} else {\n  \t\t\tcenter = [x / area, y / area];\n  \t\t}\n  \t\treturn this._map.layerPointToLatLng(center);\n  \t},\n\n  \t_convertLatLngs: function (latlngs) {\n  \t\tvar result = Polyline.prototype._convertLatLngs.call(this, latlngs),\n  \t\t    len = result.length;\n\n  \t\t// remove last point if it equals first one\n  \t\tif (len >= 2 && result[0] instanceof LatLng && result[0].equals(result[len - 1])) {\n  \t\t\tresult.pop();\n  \t\t}\n  \t\treturn result;\n  \t},\n\n  \t_setLatLngs: function (latlngs) {\n  \t\tPolyline.prototype._setLatLngs.call(this, latlngs);\n  \t\tif (isFlat(this._latlngs)) {\n  \t\t\tthis._latlngs = [this._latlngs];\n  \t\t}\n  \t},\n\n  \t_defaultShape: function () {\n  \t\treturn isFlat(this._latlngs[0]) ? this._latlngs[0] : this._latlngs[0][0];\n  \t},\n\n  \t_clipPoints: function () {\n  \t\t// polygons need a different clipping algorithm so we redefine that\n\n  \t\tvar bounds = this._renderer._bounds,\n  \t\t    w = this.options.weight,\n  \t\t    p = new Point(w, w);\n\n  \t\t// increase clip padding by stroke width to avoid stroke on clip edges\n  \t\tbounds = new Bounds(bounds.min.subtract(p), bounds.max.add(p));\n\n  \t\tthis._parts = [];\n  \t\tif (!this._pxBounds || !this._pxBounds.intersects(bounds)) {\n  \t\t\treturn;\n  \t\t}\n\n  \t\tif (this.options.noClip) {\n  \t\t\tthis._parts = this._rings;\n  \t\t\treturn;\n  \t\t}\n\n  \t\tfor (var i = 0, len = this._rings.length, clipped; i < len; i++) {\n  \t\t\tclipped = clipPolygon(this._rings[i], bounds, true);\n  \t\t\tif (clipped.length) {\n  \t\t\t\tthis._parts.push(clipped);\n  \t\t\t}\n  \t\t}\n  \t},\n\n  \t_updatePath: function () {\n  \t\tthis._renderer._updatePoly(this, true);\n  \t},\n\n  \t// Needed by the `Canvas` renderer for interactivity\n  \t_containsPoint: function (p) {\n  \t\tvar inside = false,\n  \t\t    part, p1, p2, i, j, k, len, len2;\n\n  \t\tif (!this._pxBounds || !this._pxBounds.contains(p)) { return false; }\n\n  \t\t// ray casting algorithm for detecting if point is in polygon\n  \t\tfor (i = 0, len = this._parts.length; i < len; i++) {\n  \t\t\tpart = this._parts[i];\n\n  \t\t\tfor (j = 0, len2 = part.length, k = len2 - 1; j < len2; k = j++) {\n  \t\t\t\tp1 = part[j];\n  \t\t\t\tp2 = part[k];\n\n  \t\t\t\tif (((p1.y > p.y) !== (p2.y > p.y)) && (p.x < (p2.x - p1.x) * (p.y - p1.y) / (p2.y - p1.y) + p1.x)) {\n  \t\t\t\t\tinside = !inside;\n  \t\t\t\t}\n  \t\t\t}\n  \t\t}\n\n  \t\t// also check if it's on polygon stroke\n  \t\treturn inside || Polyline.prototype._containsPoint.call(this, p, true);\n  \t}\n\n  });\n\n\n  // @factory L.polygon(latlngs: LatLng[], options?: Polyline options)\n  function polygon(latlngs, options) {\n  \treturn new Polygon(latlngs, options);\n  }\n\n  /*\r\n   * @class GeoJSON\r\n   * @aka L.GeoJSON\r\n   * @inherits FeatureGroup\r\n   *\r\n   * Represents a GeoJSON object or an array of GeoJSON objects. Allows you to parse\r\n   * GeoJSON data and display it on the map. Extends `FeatureGroup`.\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * L.geoJSON(data, {\r\n   * \tstyle: function (feature) {\r\n   * \t\treturn {color: feature.properties.color};\r\n   * \t}\r\n   * }).bindPopup(function (layer) {\r\n   * \treturn layer.feature.properties.description;\r\n   * }).addTo(map);\r\n   * ```\r\n   */\r\n\r\n  var GeoJSON = FeatureGroup.extend({\r\n\r\n  \t/* @section\r\n  \t * @aka GeoJSON options\r\n  \t *\r\n  \t * @option pointToLayer: Function = *\r\n  \t * A `Function` defining how GeoJSON points spawn Leaflet layers. It is internally\r\n  \t * called when data is added, passing the GeoJSON point feature and its `LatLng`.\r\n  \t * The default is to spawn a default `Marker`:\r\n  \t * ```js\r\n  \t * function(geoJsonPoint, latlng) {\r\n  \t * \treturn L.marker(latlng);\r\n  \t * }\r\n  \t * ```\r\n  \t *\r\n  \t * @option style: Function = *\r\n  \t * A `Function` defining the `Path options` for styling GeoJSON lines and polygons,\r\n  \t * called internally when data is added.\r\n  \t * The default value is to not override any defaults:\r\n  \t * ```js\r\n  \t * function (geoJsonFeature) {\r\n  \t * \treturn {}\r\n  \t * }\r\n  \t * ```\r\n  \t *\r\n  \t * @option onEachFeature: Function = *\r\n  \t * A `Function` that will be called once for each created `Feature`, after it has\r\n  \t * been created and styled. Useful for attaching events and popups to features.\r\n  \t * The default is to do nothing with the newly created layers:\r\n  \t * ```js\r\n  \t * function (feature, layer) {}\r\n  \t * ```\r\n  \t *\r\n  \t * @option filter: Function = *\r\n  \t * A `Function` that will be used to decide whether to include a feature or not.\r\n  \t * The default is to include all features:\r\n  \t * ```js\r\n  \t * function (geoJsonFeature) {\r\n  \t * \treturn true;\r\n  \t * }\r\n  \t * ```\r\n  \t * Note: dynamically changing the `filter` option will have effect only on newly\r\n  \t * added data. It will _not_ re-evaluate already included features.\r\n  \t *\r\n  \t * @option coordsToLatLng: Function = *\r\n  \t * A `Function` that will be used for converting GeoJSON coordinates to `LatLng`s.\r\n  \t * The default is the `coordsToLatLng` static method.\r\n  \t *\r\n  \t * @option markersInheritOptions: Boolean = false\r\n  \t * Whether default Markers for \"Point\" type Features inherit from group options.\r\n  \t */\r\n\r\n  \tinitialize: function (geojson, options) {\r\n  \t\tsetOptions(this, options);\r\n\r\n  \t\tthis._layers = {};\r\n\r\n  \t\tif (geojson) {\r\n  \t\t\tthis.addData(geojson);\r\n  \t\t}\r\n  \t},\r\n\r\n  \t// @method addData( <GeoJSON> data ): this\r\n  \t// Adds a GeoJSON object to the layer.\r\n  \taddData: function (geojson) {\r\n  \t\tvar features = isArray(geojson) ? geojson : geojson.features,\r\n  \t\t    i, len, feature;\r\n\r\n  \t\tif (features) {\r\n  \t\t\tfor (i = 0, len = features.length; i < len; i++) {\r\n  \t\t\t\t// only add this if geometry or geometries are set and not null\r\n  \t\t\t\tfeature = features[i];\r\n  \t\t\t\tif (feature.geometries || feature.geometry || feature.features || feature.coordinates) {\r\n  \t\t\t\t\tthis.addData(feature);\r\n  \t\t\t\t}\r\n  \t\t\t}\r\n  \t\t\treturn this;\r\n  \t\t}\r\n\r\n  \t\tvar options = this.options;\r\n\r\n  \t\tif (options.filter && !options.filter(geojson)) { return this; }\r\n\r\n  \t\tvar layer = geometryToLayer(geojson, options);\r\n  \t\tif (!layer) {\r\n  \t\t\treturn this;\r\n  \t\t}\r\n  \t\tlayer.feature = asFeature(geojson);\r\n\r\n  \t\tlayer.defaultOptions = layer.options;\r\n  \t\tthis.resetStyle(layer);\r\n\r\n  \t\tif (options.onEachFeature) {\r\n  \t\t\toptions.onEachFeature(geojson, layer);\r\n  \t\t}\r\n\r\n  \t\treturn this.addLayer(layer);\r\n  \t},\r\n\r\n  \t// @method resetStyle( <Path> layer? ): this\r\n  \t// Resets the given vector layer's style to the original GeoJSON style, useful for resetting style after hover events.\r\n  \t// If `layer` is omitted, the style of all features in the current layer is reset.\r\n  \tresetStyle: function (layer) {\r\n  \t\tif (layer === undefined) {\r\n  \t\t\treturn this.eachLayer(this.resetStyle, this);\r\n  \t\t}\r\n  \t\t// reset any custom styles\r\n  \t\tlayer.options = extend({}, layer.defaultOptions);\r\n  \t\tthis._setLayerStyle(layer, this.options.style);\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method setStyle( <Function> style ): this\r\n  \t// Changes styles of GeoJSON vector layers with the given style function.\r\n  \tsetStyle: function (style) {\r\n  \t\treturn this.eachLayer(function (layer) {\r\n  \t\t\tthis._setLayerStyle(layer, style);\r\n  \t\t}, this);\r\n  \t},\r\n\r\n  \t_setLayerStyle: function (layer, style) {\r\n  \t\tif (layer.setStyle) {\r\n  \t\t\tif (typeof style === 'function') {\r\n  \t\t\t\tstyle = style(layer.feature);\r\n  \t\t\t}\r\n  \t\t\tlayer.setStyle(style);\r\n  \t\t}\r\n  \t}\r\n  });\r\n\r\n  // @section\r\n  // There are several static functions which can be called without instantiating L.GeoJSON:\r\n\r\n  // @function geometryToLayer(featureData: Object, options?: GeoJSON options): Layer\r\n  // Creates a `Layer` from a given GeoJSON feature. Can use a custom\r\n  // [`pointToLayer`](#geojson-pointtolayer) and/or [`coordsToLatLng`](#geojson-coordstolatlng)\r\n  // functions if provided as options.\r\n  function geometryToLayer(geojson, options) {\r\n\r\n  \tvar geometry = geojson.type === 'Feature' ? geojson.geometry : geojson,\r\n  \t    coords = geometry ? geometry.coordinates : null,\r\n  \t    layers = [],\r\n  \t    pointToLayer = options && options.pointToLayer,\r\n  \t    _coordsToLatLng = options && options.coordsToLatLng || coordsToLatLng,\r\n  \t    latlng, latlngs, i, len;\r\n\r\n  \tif (!coords && !geometry) {\r\n  \t\treturn null;\r\n  \t}\r\n\r\n  \tswitch (geometry.type) {\r\n  \tcase 'Point':\r\n  \t\tlatlng = _coordsToLatLng(coords);\r\n  \t\treturn _pointToLayer(pointToLayer, geojson, latlng, options);\r\n\r\n  \tcase 'MultiPoint':\r\n  \t\tfor (i = 0, len = coords.length; i < len; i++) {\r\n  \t\t\tlatlng = _coordsToLatLng(coords[i]);\r\n  \t\t\tlayers.push(_pointToLayer(pointToLayer, geojson, latlng, options));\r\n  \t\t}\r\n  \t\treturn new FeatureGroup(layers);\r\n\r\n  \tcase 'LineString':\r\n  \tcase 'MultiLineString':\r\n  \t\tlatlngs = coordsToLatLngs(coords, geometry.type === 'LineString' ? 0 : 1, _coordsToLatLng);\r\n  \t\treturn new Polyline(latlngs, options);\r\n\r\n  \tcase 'Polygon':\r\n  \tcase 'MultiPolygon':\r\n  \t\tlatlngs = coordsToLatLngs(coords, geometry.type === 'Polygon' ? 1 : 2, _coordsToLatLng);\r\n  \t\treturn new Polygon(latlngs, options);\r\n\r\n  \tcase 'GeometryCollection':\r\n  \t\tfor (i = 0, len = geometry.geometries.length; i < len; i++) {\r\n  \t\t\tvar layer = geometryToLayer({\r\n  \t\t\t\tgeometry: geometry.geometries[i],\r\n  \t\t\t\ttype: 'Feature',\r\n  \t\t\t\tproperties: geojson.properties\r\n  \t\t\t}, options);\r\n\r\n  \t\t\tif (layer) {\r\n  \t\t\t\tlayers.push(layer);\r\n  \t\t\t}\r\n  \t\t}\r\n  \t\treturn new FeatureGroup(layers);\r\n\r\n  \tdefault:\r\n  \t\tthrow new Error('Invalid GeoJSON object.');\r\n  \t}\r\n  }\r\n\r\n  function _pointToLayer(pointToLayerFn, geojson, latlng, options) {\r\n  \treturn pointToLayerFn ?\r\n  \t\tpointToLayerFn(geojson, latlng) :\r\n  \t\tnew Marker(latlng, options && options.markersInheritOptions && options);\r\n  }\r\n\r\n  // @function coordsToLatLng(coords: Array): LatLng\r\n  // Creates a `LatLng` object from an array of 2 numbers (longitude, latitude)\r\n  // or 3 numbers (longitude, latitude, altitude) used in GeoJSON for points.\r\n  function coordsToLatLng(coords) {\r\n  \treturn new LatLng(coords[1], coords[0], coords[2]);\r\n  }\r\n\r\n  // @function coordsToLatLngs(coords: Array, levelsDeep?: Number, coordsToLatLng?: Function): Array\r\n  // Creates a multidimensional array of `LatLng`s from a GeoJSON coordinates array.\r\n  // `levelsDeep` specifies the nesting level (0 is for an array of points, 1 for an array of arrays of points, etc., 0 by default).\r\n  // Can use a custom [`coordsToLatLng`](#geojson-coordstolatlng) function.\r\n  function coordsToLatLngs(coords, levelsDeep, _coordsToLatLng) {\r\n  \tvar latlngs = [];\r\n\r\n  \tfor (var i = 0, len = coords.length, latlng; i < len; i++) {\r\n  \t\tlatlng = levelsDeep ?\r\n  \t\t\tcoordsToLatLngs(coords[i], levelsDeep - 1, _coordsToLatLng) :\r\n  \t\t\t(_coordsToLatLng || coordsToLatLng)(coords[i]);\r\n\r\n  \t\tlatlngs.push(latlng);\r\n  \t}\r\n\r\n  \treturn latlngs;\r\n  }\r\n\r\n  // @function latLngToCoords(latlng: LatLng, precision?: Number): Array\r\n  // Reverse of [`coordsToLatLng`](#geojson-coordstolatlng)\r\n  function latLngToCoords(latlng, precision) {\r\n  \tprecision = typeof precision === 'number' ? precision : 6;\r\n  \treturn latlng.alt !== undefined ?\r\n  \t\t[formatNum(latlng.lng, precision), formatNum(latlng.lat, precision), formatNum(latlng.alt, precision)] :\r\n  \t\t[formatNum(latlng.lng, precision), formatNum(latlng.lat, precision)];\r\n  }\r\n\r\n  // @function latLngsToCoords(latlngs: Array, levelsDeep?: Number, closed?: Boolean): Array\r\n  // Reverse of [`coordsToLatLngs`](#geojson-coordstolatlngs)\r\n  // `closed` determines whether the first point should be appended to the end of the array to close the feature, only used when `levelsDeep` is 0. False by default.\r\n  function latLngsToCoords(latlngs, levelsDeep, closed, precision) {\r\n  \tvar coords = [];\r\n\r\n  \tfor (var i = 0, len = latlngs.length; i < len; i++) {\r\n  \t\tcoords.push(levelsDeep ?\r\n  \t\t\tlatLngsToCoords(latlngs[i], levelsDeep - 1, closed, precision) :\r\n  \t\t\tlatLngToCoords(latlngs[i], precision));\r\n  \t}\r\n\r\n  \tif (!levelsDeep && closed) {\r\n  \t\tcoords.push(coords[0]);\r\n  \t}\r\n\r\n  \treturn coords;\r\n  }\r\n\r\n  function getFeature(layer, newGeometry) {\r\n  \treturn layer.feature ?\r\n  \t\textend({}, layer.feature, {geometry: newGeometry}) :\r\n  \t\tasFeature(newGeometry);\r\n  }\r\n\r\n  // @function asFeature(geojson: Object): Object\r\n  // Normalize GeoJSON geometries/features into GeoJSON features.\r\n  function asFeature(geojson) {\r\n  \tif (geojson.type === 'Feature' || geojson.type === 'FeatureCollection') {\r\n  \t\treturn geojson;\r\n  \t}\r\n\r\n  \treturn {\r\n  \t\ttype: 'Feature',\r\n  \t\tproperties: {},\r\n  \t\tgeometry: geojson\r\n  \t};\r\n  }\r\n\r\n  var PointToGeoJSON = {\r\n  \ttoGeoJSON: function (precision) {\r\n  \t\treturn getFeature(this, {\r\n  \t\t\ttype: 'Point',\r\n  \t\t\tcoordinates: latLngToCoords(this.getLatLng(), precision)\r\n  \t\t});\r\n  \t}\r\n  };\r\n\r\n  // @namespace Marker\r\n  // @section Other methods\r\n  // @method toGeoJSON(precision?: Number): Object\r\n  // `precision` is the number of decimal places for coordinates.\r\n  // The default value is 6 places.\r\n  // Returns a [`GeoJSON`](http://en.wikipedia.org/wiki/GeoJSON) representation of the marker (as a GeoJSON `Point` Feature).\r\n  Marker.include(PointToGeoJSON);\r\n\r\n  // @namespace CircleMarker\r\n  // @method toGeoJSON(precision?: Number): Object\r\n  // `precision` is the number of decimal places for coordinates.\r\n  // The default value is 6 places.\r\n  // Returns a [`GeoJSON`](http://en.wikipedia.org/wiki/GeoJSON) representation of the circle marker (as a GeoJSON `Point` Feature).\r\n  Circle.include(PointToGeoJSON);\r\n  CircleMarker.include(PointToGeoJSON);\r\n\r\n\r\n  // @namespace Polyline\r\n  // @method toGeoJSON(precision?: Number): Object\r\n  // `precision` is the number of decimal places for coordinates.\r\n  // The default value is 6 places.\r\n  // Returns a [`GeoJSON`](http://en.wikipedia.org/wiki/GeoJSON) representation of the polyline (as a GeoJSON `LineString` or `MultiLineString` Feature).\r\n  Polyline.include({\r\n  \ttoGeoJSON: function (precision) {\r\n  \t\tvar multi = !isFlat(this._latlngs);\r\n\r\n  \t\tvar coords = latLngsToCoords(this._latlngs, multi ? 1 : 0, false, precision);\r\n\r\n  \t\treturn getFeature(this, {\r\n  \t\t\ttype: (multi ? 'Multi' : '') + 'LineString',\r\n  \t\t\tcoordinates: coords\r\n  \t\t});\r\n  \t}\r\n  });\r\n\r\n  // @namespace Polygon\r\n  // @method toGeoJSON(precision?: Number): Object\r\n  // `precision` is the number of decimal places for coordinates.\r\n  // The default value is 6 places.\r\n  // Returns a [`GeoJSON`](http://en.wikipedia.org/wiki/GeoJSON) representation of the polygon (as a GeoJSON `Polygon` or `MultiPolygon` Feature).\r\n  Polygon.include({\r\n  \ttoGeoJSON: function (precision) {\r\n  \t\tvar holes = !isFlat(this._latlngs),\r\n  \t\t    multi = holes && !isFlat(this._latlngs[0]);\r\n\r\n  \t\tvar coords = latLngsToCoords(this._latlngs, multi ? 2 : holes ? 1 : 0, true, precision);\r\n\r\n  \t\tif (!holes) {\r\n  \t\t\tcoords = [coords];\r\n  \t\t}\r\n\r\n  \t\treturn getFeature(this, {\r\n  \t\t\ttype: (multi ? 'Multi' : '') + 'Polygon',\r\n  \t\t\tcoordinates: coords\r\n  \t\t});\r\n  \t}\r\n  });\r\n\r\n\r\n  // @namespace LayerGroup\r\n  LayerGroup.include({\r\n  \ttoMultiPoint: function (precision) {\r\n  \t\tvar coords = [];\r\n\r\n  \t\tthis.eachLayer(function (layer) {\r\n  \t\t\tcoords.push(layer.toGeoJSON(precision).geometry.coordinates);\r\n  \t\t});\r\n\r\n  \t\treturn getFeature(this, {\r\n  \t\t\ttype: 'MultiPoint',\r\n  \t\t\tcoordinates: coords\r\n  \t\t});\r\n  \t},\r\n\r\n  \t// @method toGeoJSON(precision?: Number): Object\r\n  \t// `precision` is the number of decimal places for coordinates.\r\n  \t// The default value is 6 places.\r\n  \t// Returns a [`GeoJSON`](http://en.wikipedia.org/wiki/GeoJSON) representation of the layer group (as a GeoJSON `FeatureCollection`, `GeometryCollection`, or `MultiPoint`).\r\n  \ttoGeoJSON: function (precision) {\r\n\r\n  \t\tvar type = this.feature && this.feature.geometry && this.feature.geometry.type;\r\n\r\n  \t\tif (type === 'MultiPoint') {\r\n  \t\t\treturn this.toMultiPoint(precision);\r\n  \t\t}\r\n\r\n  \t\tvar isGeometryCollection = type === 'GeometryCollection',\r\n  \t\t    jsons = [];\r\n\r\n  \t\tthis.eachLayer(function (layer) {\r\n  \t\t\tif (layer.toGeoJSON) {\r\n  \t\t\t\tvar json = layer.toGeoJSON(precision);\r\n  \t\t\t\tif (isGeometryCollection) {\r\n  \t\t\t\t\tjsons.push(json.geometry);\r\n  \t\t\t\t} else {\r\n  \t\t\t\t\tvar feature = asFeature(json);\r\n  \t\t\t\t\t// Squash nested feature collections\r\n  \t\t\t\t\tif (feature.type === 'FeatureCollection') {\r\n  \t\t\t\t\t\tjsons.push.apply(jsons, feature.features);\r\n  \t\t\t\t\t} else {\r\n  \t\t\t\t\t\tjsons.push(feature);\r\n  \t\t\t\t\t}\r\n  \t\t\t\t}\r\n  \t\t\t}\r\n  \t\t});\r\n\r\n  \t\tif (isGeometryCollection) {\r\n  \t\t\treturn getFeature(this, {\r\n  \t\t\t\tgeometries: jsons,\r\n  \t\t\t\ttype: 'GeometryCollection'\r\n  \t\t\t});\r\n  \t\t}\r\n\r\n  \t\treturn {\r\n  \t\t\ttype: 'FeatureCollection',\r\n  \t\t\tfeatures: jsons\r\n  \t\t};\r\n  \t}\r\n  });\r\n\r\n  // @namespace GeoJSON\r\n  // @factory L.geoJSON(geojson?: Object, options?: GeoJSON options)\r\n  // Creates a GeoJSON layer. Optionally accepts an object in\r\n  // [GeoJSON format](https://tools.ietf.org/html/rfc7946) to display on the map\r\n  // (you can alternatively add it later with `addData` method) and an `options` object.\r\n  function geoJSON(geojson, options) {\r\n  \treturn new GeoJSON(geojson, options);\r\n  }\r\n\r\n  // Backward compatibility.\r\n  var geoJson = geoJSON;\n\n  /*\r\n   * @class ImageOverlay\r\n   * @aka L.ImageOverlay\r\n   * @inherits Interactive layer\r\n   *\r\n   * Used to load and display a single image over specific bounds of the map. Extends `Layer`.\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * var imageUrl = 'http://www.lib.utexas.edu/maps/historical/newark_nj_1922.jpg',\r\n   * \timageBounds = [[40.712216, -74.22655], [40.773941, -74.12544]];\r\n   * L.imageOverlay(imageUrl, imageBounds).addTo(map);\r\n   * ```\r\n   */\r\n\r\n  var ImageOverlay = Layer.extend({\r\n\r\n  \t// @section\r\n  \t// @aka ImageOverlay options\r\n  \toptions: {\r\n  \t\t// @option opacity: Number = 1.0\r\n  \t\t// The opacity of the image overlay.\r\n  \t\topacity: 1,\r\n\r\n  \t\t// @option alt: String = ''\r\n  \t\t// Text for the `alt` attribute of the image (useful for accessibility).\r\n  \t\talt: '',\r\n\r\n  \t\t// @option interactive: Boolean = false\r\n  \t\t// If `true`, the image overlay will emit [mouse events](#interactive-layer) when clicked or hovered.\r\n  \t\tinteractive: false,\r\n\r\n  \t\t// @option crossOrigin: Boolean|String = false\r\n  \t\t// Whether the crossOrigin attribute will be added to the image.\r\n  \t\t// If a String is provided, the image will have its crossOrigin attribute set to the String provided. This is needed if you want to access image pixel data.\r\n  \t\t// Refer to [CORS Settings](https://developer.mozilla.org/en-US/docs/Web/HTML/CORS_settings_attributes) for valid String values.\r\n  \t\tcrossOrigin: false,\r\n\r\n  \t\t// @option errorOverlayUrl: String = ''\r\n  \t\t// URL to the overlay image to show in place of the overlay that failed to load.\r\n  \t\terrorOverlayUrl: '',\r\n\r\n  \t\t// @option zIndex: Number = 1\r\n  \t\t// The explicit [zIndex](https://developer.mozilla.org/docs/Web/CSS/CSS_Positioning/Understanding_z_index) of the overlay layer.\r\n  \t\tzIndex: 1,\r\n\r\n  \t\t// @option className: String = ''\r\n  \t\t// A custom class name to assign to the image. Empty by default.\r\n  \t\tclassName: ''\r\n  \t},\r\n\r\n  \tinitialize: function (url, bounds, options) { // (String, LatLngBounds, Object)\r\n  \t\tthis._url = url;\r\n  \t\tthis._bounds = toLatLngBounds(bounds);\r\n\r\n  \t\tsetOptions(this, options);\r\n  \t},\r\n\r\n  \tonAdd: function () {\r\n  \t\tif (!this._image) {\r\n  \t\t\tthis._initImage();\r\n\r\n  \t\t\tif (this.options.opacity < 1) {\r\n  \t\t\t\tthis._updateOpacity();\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\tif (this.options.interactive) {\r\n  \t\t\taddClass(this._image, 'leaflet-interactive');\r\n  \t\t\tthis.addInteractiveTarget(this._image);\r\n  \t\t}\r\n\r\n  \t\tthis.getPane().appendChild(this._image);\r\n  \t\tthis._reset();\r\n  \t},\r\n\r\n  \tonRemove: function () {\r\n  \t\tremove(this._image);\r\n  \t\tif (this.options.interactive) {\r\n  \t\t\tthis.removeInteractiveTarget(this._image);\r\n  \t\t}\r\n  \t},\r\n\r\n  \t// @method setOpacity(opacity: Number): this\r\n  \t// Sets the opacity of the overlay.\r\n  \tsetOpacity: function (opacity) {\r\n  \t\tthis.options.opacity = opacity;\r\n\r\n  \t\tif (this._image) {\r\n  \t\t\tthis._updateOpacity();\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \tsetStyle: function (styleOpts) {\r\n  \t\tif (styleOpts.opacity) {\r\n  \t\t\tthis.setOpacity(styleOpts.opacity);\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method bringToFront(): this\r\n  \t// Brings the layer to the top of all overlays.\r\n  \tbringToFront: function () {\r\n  \t\tif (this._map) {\r\n  \t\t\ttoFront(this._image);\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method bringToBack(): this\r\n  \t// Brings the layer to the bottom of all overlays.\r\n  \tbringToBack: function () {\r\n  \t\tif (this._map) {\r\n  \t\t\ttoBack(this._image);\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method setUrl(url: String): this\r\n  \t// Changes the URL of the image.\r\n  \tsetUrl: function (url) {\r\n  \t\tthis._url = url;\r\n\r\n  \t\tif (this._image) {\r\n  \t\t\tthis._image.src = url;\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method setBounds(bounds: LatLngBounds): this\r\n  \t// Update the bounds that this ImageOverlay covers\r\n  \tsetBounds: function (bounds) {\r\n  \t\tthis._bounds = toLatLngBounds(bounds);\r\n\r\n  \t\tif (this._map) {\r\n  \t\t\tthis._reset();\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \tgetEvents: function () {\r\n  \t\tvar events = {\r\n  \t\t\tzoom: this._reset,\r\n  \t\t\tviewreset: this._reset\r\n  \t\t};\r\n\r\n  \t\tif (this._zoomAnimated) {\r\n  \t\t\tevents.zoomanim = this._animateZoom;\r\n  \t\t}\r\n\r\n  \t\treturn events;\r\n  \t},\r\n\r\n  \t// @method setZIndex(value: Number): this\r\n  \t// Changes the [zIndex](#imageoverlay-zindex) of the image overlay.\r\n  \tsetZIndex: function (value) {\r\n  \t\tthis.options.zIndex = value;\r\n  \t\tthis._updateZIndex();\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method getBounds(): LatLngBounds\r\n  \t// Get the bounds that this ImageOverlay covers\r\n  \tgetBounds: function () {\r\n  \t\treturn this._bounds;\r\n  \t},\r\n\r\n  \t// @method getElement(): HTMLElement\r\n  \t// Returns the instance of [`HTMLImageElement`](https://developer.mozilla.org/docs/Web/API/HTMLImageElement)\r\n  \t// used by this overlay.\r\n  \tgetElement: function () {\r\n  \t\treturn this._image;\r\n  \t},\r\n\r\n  \t_initImage: function () {\r\n  \t\tvar wasElementSupplied = this._url.tagName === 'IMG';\r\n  \t\tvar img = this._image = wasElementSupplied ? this._url : create$1('img');\r\n\r\n  \t\taddClass(img, 'leaflet-image-layer');\r\n  \t\tif (this._zoomAnimated) { addClass(img, 'leaflet-zoom-animated'); }\r\n  \t\tif (this.options.className) { addClass(img, this.options.className); }\r\n\r\n  \t\timg.onselectstart = falseFn;\r\n  \t\timg.onmousemove = falseFn;\r\n\r\n  \t\t// @event load: Event\r\n  \t\t// Fired when the ImageOverlay layer has loaded its image\r\n  \t\timg.onload = bind(this.fire, this, 'load');\r\n  \t\timg.onerror = bind(this._overlayOnError, this, 'error');\r\n\r\n  \t\tif (this.options.crossOrigin || this.options.crossOrigin === '') {\r\n  \t\t\timg.crossOrigin = this.options.crossOrigin === true ? '' : this.options.crossOrigin;\r\n  \t\t}\r\n\r\n  \t\tif (this.options.zIndex) {\r\n  \t\t\tthis._updateZIndex();\r\n  \t\t}\r\n\r\n  \t\tif (wasElementSupplied) {\r\n  \t\t\tthis._url = img.src;\r\n  \t\t\treturn;\r\n  \t\t}\r\n\r\n  \t\timg.src = this._url;\r\n  \t\timg.alt = this.options.alt;\r\n  \t},\r\n\r\n  \t_animateZoom: function (e) {\r\n  \t\tvar scale = this._map.getZoomScale(e.zoom),\r\n  \t\t    offset = this._map._latLngBoundsToNewLayerBounds(this._bounds, e.zoom, e.center).min;\r\n\r\n  \t\tsetTransform(this._image, offset, scale);\r\n  \t},\r\n\r\n  \t_reset: function () {\r\n  \t\tvar image = this._image,\r\n  \t\t    bounds = new Bounds(\r\n  \t\t        this._map.latLngToLayerPoint(this._bounds.getNorthWest()),\r\n  \t\t        this._map.latLngToLayerPoint(this._bounds.getSouthEast())),\r\n  \t\t    size = bounds.getSize();\r\n\r\n  \t\tsetPosition(image, bounds.min);\r\n\r\n  \t\timage.style.width  = size.x + 'px';\r\n  \t\timage.style.height = size.y + 'px';\r\n  \t},\r\n\r\n  \t_updateOpacity: function () {\r\n  \t\tsetOpacity(this._image, this.options.opacity);\r\n  \t},\r\n\r\n  \t_updateZIndex: function () {\r\n  \t\tif (this._image && this.options.zIndex !== undefined && this.options.zIndex !== null) {\r\n  \t\t\tthis._image.style.zIndex = this.options.zIndex;\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_overlayOnError: function () {\r\n  \t\t// @event error: Event\r\n  \t\t// Fired when the ImageOverlay layer fails to load its image\r\n  \t\tthis.fire('error');\r\n\r\n  \t\tvar errorUrl = this.options.errorOverlayUrl;\r\n  \t\tif (errorUrl && this._url !== errorUrl) {\r\n  \t\t\tthis._url = errorUrl;\r\n  \t\t\tthis._image.src = errorUrl;\r\n  \t\t}\r\n  \t}\r\n  });\r\n\r\n  // @factory L.imageOverlay(imageUrl: String, bounds: LatLngBounds, options?: ImageOverlay options)\r\n  // Instantiates an image overlay object given the URL of the image and the\r\n  // geographical bounds it is tied to.\r\n  var imageOverlay = function (url, bounds, options) {\r\n  \treturn new ImageOverlay(url, bounds, options);\r\n  };\n\n  /*\r\n   * @class VideoOverlay\r\n   * @aka L.VideoOverlay\r\n   * @inherits ImageOverlay\r\n   *\r\n   * Used to load and display a video player over specific bounds of the map. Extends `ImageOverlay`.\r\n   *\r\n   * A video overlay uses the [`<video>`](https://developer.mozilla.org/docs/Web/HTML/Element/video)\r\n   * HTML5 element.\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * var videoUrl = 'https://www.mapbox.com/bites/00188/patricia_nasa.webm',\r\n   * \tvideoBounds = [[ 32, -130], [ 13, -100]];\r\n   * L.videoOverlay(videoUrl, videoBounds ).addTo(map);\r\n   * ```\r\n   */\r\n\r\n  var VideoOverlay = ImageOverlay.extend({\r\n\r\n  \t// @section\r\n  \t// @aka VideoOverlay options\r\n  \toptions: {\r\n  \t\t// @option autoplay: Boolean = true\r\n  \t\t// Whether the video starts playing automatically when loaded.\r\n  \t\tautoplay: true,\r\n\r\n  \t\t// @option loop: Boolean = true\r\n  \t\t// Whether the video will loop back to the beginning when played.\r\n  \t\tloop: true,\r\n\r\n  \t\t// @option keepAspectRatio: Boolean = true\r\n  \t\t// Whether the video will save aspect ratio after the projection.\r\n  \t\t// Relevant for supported browsers. Browser compatibility- https://developer.mozilla.org/en-US/docs/Web/CSS/object-fit\r\n  \t\tkeepAspectRatio: true,\r\n\r\n  \t\t// @option muted: Boolean = false\r\n  \t\t// Whether the video starts on mute when loaded.\r\n  \t\tmuted: false\r\n  \t},\r\n\r\n  \t_initImage: function () {\r\n  \t\tvar wasElementSupplied = this._url.tagName === 'VIDEO';\r\n  \t\tvar vid = this._image = wasElementSupplied ? this._url : create$1('video');\r\n\r\n  \t\taddClass(vid, 'leaflet-image-layer');\r\n  \t\tif (this._zoomAnimated) { addClass(vid, 'leaflet-zoom-animated'); }\r\n  \t\tif (this.options.className) { addClass(vid, this.options.className); }\r\n\r\n  \t\tvid.onselectstart = falseFn;\r\n  \t\tvid.onmousemove = falseFn;\r\n\r\n  \t\t// @event load: Event\r\n  \t\t// Fired when the video has finished loading the first frame\r\n  \t\tvid.onloadeddata = bind(this.fire, this, 'load');\r\n\r\n  \t\tif (wasElementSupplied) {\r\n  \t\t\tvar sourceElements = vid.getElementsByTagName('source');\r\n  \t\t\tvar sources = [];\r\n  \t\t\tfor (var j = 0; j < sourceElements.length; j++) {\r\n  \t\t\t\tsources.push(sourceElements[j].src);\r\n  \t\t\t}\r\n\r\n  \t\t\tthis._url = (sourceElements.length > 0) ? sources : [vid.src];\r\n  \t\t\treturn;\r\n  \t\t}\r\n\r\n  \t\tif (!isArray(this._url)) { this._url = [this._url]; }\r\n\r\n  \t\tif (!this.options.keepAspectRatio && Object.prototype.hasOwnProperty.call(vid.style, 'objectFit')) {\r\n  \t\t\tvid.style['objectFit'] = 'fill';\r\n  \t\t}\r\n  \t\tvid.autoplay = !!this.options.autoplay;\r\n  \t\tvid.loop = !!this.options.loop;\r\n  \t\tvid.muted = !!this.options.muted;\r\n  \t\tfor (var i = 0; i < this._url.length; i++) {\r\n  \t\t\tvar source = create$1('source');\r\n  \t\t\tsource.src = this._url[i];\r\n  \t\t\tvid.appendChild(source);\r\n  \t\t}\r\n  \t}\r\n\r\n  \t// @method getElement(): HTMLVideoElement\r\n  \t// Returns the instance of [`HTMLVideoElement`](https://developer.mozilla.org/docs/Web/API/HTMLVideoElement)\r\n  \t// used by this overlay.\r\n  });\r\n\r\n\r\n  // @factory L.videoOverlay(video: String|Array|HTMLVideoElement, bounds: LatLngBounds, options?: VideoOverlay options)\r\n  // Instantiates an image overlay object given the URL of the video (or array of URLs, or even a video element) and the\r\n  // geographical bounds it is tied to.\r\n\r\n  function videoOverlay(video, bounds, options) {\r\n  \treturn new VideoOverlay(video, bounds, options);\r\n  }\n\n  /*\n   * @class SVGOverlay\n   * @aka L.SVGOverlay\n   * @inherits ImageOverlay\n   *\n   * Used to load, display and provide DOM access to an SVG file over specific bounds of the map. Extends `ImageOverlay`.\n   *\n   * An SVG overlay uses the [`<svg>`](https://developer.mozilla.org/docs/Web/SVG/Element/svg) element.\n   *\n   * @example\n   *\n   * ```js\n   * var svgElement = document.createElementNS(\"http://www.w3.org/2000/svg\", \"svg\");\n   * svgElement.setAttribute('xmlns', \"http://www.w3.org/2000/svg\");\n   * svgElement.setAttribute('viewBox', \"0 0 200 200\");\n   * svgElement.innerHTML = '<rect width=\"200\" height=\"200\"/><rect x=\"75\" y=\"23\" width=\"50\" height=\"50\" style=\"fill:red\"/><rect x=\"75\" y=\"123\" width=\"50\" height=\"50\" style=\"fill:#0013ff\"/>';\n   * var svgElementBounds = [ [ 32, -130 ], [ 13, -100 ] ];\n   * L.svgOverlay(svgElement, svgElementBounds).addTo(map);\n   * ```\n   */\n\n  var SVGOverlay = ImageOverlay.extend({\n  \t_initImage: function () {\n  \t\tvar el = this._image = this._url;\n\n  \t\taddClass(el, 'leaflet-image-layer');\n  \t\tif (this._zoomAnimated) { addClass(el, 'leaflet-zoom-animated'); }\n  \t\tif (this.options.className) { addClass(el, this.options.className); }\n\n  \t\tel.onselectstart = falseFn;\n  \t\tel.onmousemove = falseFn;\n  \t}\n\n  \t// @method getElement(): SVGElement\n  \t// Returns the instance of [`SVGElement`](https://developer.mozilla.org/docs/Web/API/SVGElement)\n  \t// used by this overlay.\n  });\n\n\n  // @factory L.svgOverlay(svg: String|SVGElement, bounds: LatLngBounds, options?: SVGOverlay options)\n  // Instantiates an image overlay object given an SVG element and the geographical bounds it is tied to.\n  // A viewBox attribute is required on the SVG element to zoom in and out properly.\n\n  function svgOverlay(el, bounds, options) {\n  \treturn new SVGOverlay(el, bounds, options);\n  }\n\n  /*\r\n   * @class DivOverlay\r\n   * @inherits Layer\r\n   * @aka L.DivOverlay\r\n   * Base model for L.Popup and L.Tooltip. Inherit from it for custom popup like plugins.\r\n   */\r\n\r\n  // @namespace DivOverlay\r\n  var DivOverlay = Layer.extend({\r\n\r\n  \t// @section\r\n  \t// @aka DivOverlay options\r\n  \toptions: {\r\n  \t\t// @option offset: Point = Point(0, 7)\r\n  \t\t// The offset of the popup position. Useful to control the anchor\r\n  \t\t// of the popup when opening it on some overlays.\r\n  \t\toffset: [0, 7],\r\n\r\n  \t\t// @option className: String = ''\r\n  \t\t// A custom CSS class name to assign to the popup.\r\n  \t\tclassName: '',\r\n\r\n  \t\t// @option pane: String = 'popupPane'\r\n  \t\t// `Map pane` where the popup will be added.\r\n  \t\tpane: 'popupPane'\r\n  \t},\r\n\r\n  \tinitialize: function (options, source) {\r\n  \t\tsetOptions(this, options);\r\n\r\n  \t\tthis._source = source;\r\n  \t},\r\n\r\n  \tonAdd: function (map) {\r\n  \t\tthis._zoomAnimated = map._zoomAnimated;\r\n\r\n  \t\tif (!this._container) {\r\n  \t\t\tthis._initLayout();\r\n  \t\t}\r\n\r\n  \t\tif (map._fadeAnimated) {\r\n  \t\t\tsetOpacity(this._container, 0);\r\n  \t\t}\r\n\r\n  \t\tclearTimeout(this._removeTimeout);\r\n  \t\tthis.getPane().appendChild(this._container);\r\n  \t\tthis.update();\r\n\r\n  \t\tif (map._fadeAnimated) {\r\n  \t\t\tsetOpacity(this._container, 1);\r\n  \t\t}\r\n\r\n  \t\tthis.bringToFront();\r\n  \t},\r\n\r\n  \tonRemove: function (map) {\r\n  \t\tif (map._fadeAnimated) {\r\n  \t\t\tsetOpacity(this._container, 0);\r\n  \t\t\tthis._removeTimeout = setTimeout(bind(remove, undefined, this._container), 200);\r\n  \t\t} else {\r\n  \t\t\tremove(this._container);\r\n  \t\t}\r\n  \t},\r\n\r\n  \t// @namespace Popup\r\n  \t// @method getLatLng: LatLng\r\n  \t// Returns the geographical point of popup.\r\n  \tgetLatLng: function () {\r\n  \t\treturn this._latlng;\r\n  \t},\r\n\r\n  \t// @method setLatLng(latlng: LatLng): this\r\n  \t// Sets the geographical point where the popup will open.\r\n  \tsetLatLng: function (latlng) {\r\n  \t\tthis._latlng = toLatLng(latlng);\r\n  \t\tif (this._map) {\r\n  \t\t\tthis._updatePosition();\r\n  \t\t\tthis._adjustPan();\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method getContent: String|HTMLElement\r\n  \t// Returns the content of the popup.\r\n  \tgetContent: function () {\r\n  \t\treturn this._content;\r\n  \t},\r\n\r\n  \t// @method setContent(htmlContent: String|HTMLElement|Function): this\r\n  \t// Sets the HTML content of the popup. If a function is passed the source layer will be passed to the function. The function should return a `String` or `HTMLElement` to be used in the popup.\r\n  \tsetContent: function (content) {\r\n  \t\tthis._content = content;\r\n  \t\tthis.update();\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method getElement: String|HTMLElement\r\n  \t// Returns the HTML container of the popup.\r\n  \tgetElement: function () {\r\n  \t\treturn this._container;\r\n  \t},\r\n\r\n  \t// @method update: null\r\n  \t// Updates the popup content, layout and position. Useful for updating the popup after something inside changed, e.g. image loaded.\r\n  \tupdate: function () {\r\n  \t\tif (!this._map) { return; }\r\n\r\n  \t\tthis._container.style.visibility = 'hidden';\r\n\r\n  \t\tthis._updateContent();\r\n  \t\tthis._updateLayout();\r\n  \t\tthis._updatePosition();\r\n\r\n  \t\tthis._container.style.visibility = '';\r\n\r\n  \t\tthis._adjustPan();\r\n  \t},\r\n\r\n  \tgetEvents: function () {\r\n  \t\tvar events = {\r\n  \t\t\tzoom: this._updatePosition,\r\n  \t\t\tviewreset: this._updatePosition\r\n  \t\t};\r\n\r\n  \t\tif (this._zoomAnimated) {\r\n  \t\t\tevents.zoomanim = this._animateZoom;\r\n  \t\t}\r\n  \t\treturn events;\r\n  \t},\r\n\r\n  \t// @method isOpen: Boolean\r\n  \t// Returns `true` when the popup is visible on the map.\r\n  \tisOpen: function () {\r\n  \t\treturn !!this._map && this._map.hasLayer(this);\r\n  \t},\r\n\r\n  \t// @method bringToFront: this\r\n  \t// Brings this popup in front of other popups (in the same map pane).\r\n  \tbringToFront: function () {\r\n  \t\tif (this._map) {\r\n  \t\t\ttoFront(this._container);\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method bringToBack: this\r\n  \t// Brings this popup to the back of other popups (in the same map pane).\r\n  \tbringToBack: function () {\r\n  \t\tif (this._map) {\r\n  \t\t\ttoBack(this._container);\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t_prepareOpen: function (parent, layer, latlng) {\r\n  \t\tif (!(layer instanceof Layer)) {\r\n  \t\t\tlatlng = layer;\r\n  \t\t\tlayer = parent;\r\n  \t\t}\r\n\r\n  \t\tif (layer instanceof FeatureGroup) {\r\n  \t\t\tfor (var id in parent._layers) {\r\n  \t\t\t\tlayer = parent._layers[id];\r\n  \t\t\t\tbreak;\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\tif (!latlng) {\r\n  \t\t\tif (layer.getCenter) {\r\n  \t\t\t\tlatlng = layer.getCenter();\r\n  \t\t\t} else if (layer.getLatLng) {\r\n  \t\t\t\tlatlng = layer.getLatLng();\r\n  \t\t\t} else {\r\n  \t\t\t\tthrow new Error('Unable to get source layer LatLng.');\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\t// set overlay source to this layer\r\n  \t\tthis._source = layer;\r\n\r\n  \t\t// update the overlay (content, layout, ect...)\r\n  \t\tthis.update();\r\n\r\n  \t\treturn latlng;\r\n  \t},\r\n\r\n  \t_updateContent: function () {\r\n  \t\tif (!this._content) { return; }\r\n\r\n  \t\tvar node = this._contentNode;\r\n  \t\tvar content = (typeof this._content === 'function') ? this._content(this._source || this) : this._content;\r\n\r\n  \t\tif (typeof content === 'string') {\r\n  \t\t\tnode.innerHTML = content;\r\n  \t\t} else {\r\n  \t\t\twhile (node.hasChildNodes()) {\r\n  \t\t\t\tnode.removeChild(node.firstChild);\r\n  \t\t\t}\r\n  \t\t\tnode.appendChild(content);\r\n  \t\t}\r\n  \t\tthis.fire('contentupdate');\r\n  \t},\r\n\r\n  \t_updatePosition: function () {\r\n  \t\tif (!this._map) { return; }\r\n\r\n  \t\tvar pos = this._map.latLngToLayerPoint(this._latlng),\r\n  \t\t    offset = toPoint(this.options.offset),\r\n  \t\t    anchor = this._getAnchor();\r\n\r\n  \t\tif (this._zoomAnimated) {\r\n  \t\t\tsetPosition(this._container, pos.add(anchor));\r\n  \t\t} else {\r\n  \t\t\toffset = offset.add(pos).add(anchor);\r\n  \t\t}\r\n\r\n  \t\tvar bottom = this._containerBottom = -offset.y,\r\n  \t\t    left = this._containerLeft = -Math.round(this._containerWidth / 2) + offset.x;\r\n\r\n  \t\t// bottom position the popup in case the height of the popup changes (images loading etc)\r\n  \t\tthis._container.style.bottom = bottom + 'px';\r\n  \t\tthis._container.style.left = left + 'px';\r\n  \t},\r\n\r\n  \t_getAnchor: function () {\r\n  \t\treturn [0, 0];\r\n  \t}\r\n\r\n  });\n\n  /*\r\n   * @class Popup\r\n   * @inherits DivOverlay\r\n   * @aka L.Popup\r\n   * Used to open popups in certain places of the map. Use [Map.openPopup](#map-openpopup) to\r\n   * open popups while making sure that only one popup is open at one time\r\n   * (recommended for usability), or use [Map.addLayer](#map-addlayer) to open as many as you want.\r\n   *\r\n   * @example\r\n   *\r\n   * If you want to just bind a popup to marker click and then open it, it's really easy:\r\n   *\r\n   * ```js\r\n   * marker.bindPopup(popupContent).openPopup();\r\n   * ```\r\n   * Path overlays like polylines also have a `bindPopup` method.\r\n   * Here's a more complicated way to open a popup on a map:\r\n   *\r\n   * ```js\r\n   * var popup = L.popup()\r\n   * \t.setLatLng(latlng)\r\n   * \t.setContent('<p>Hello world!<br />This is a nice popup.</p>')\r\n   * \t.openOn(map);\r\n   * ```\r\n   */\r\n\r\n\r\n  // @namespace Popup\r\n  var Popup = DivOverlay.extend({\r\n\r\n  \t// @section\r\n  \t// @aka Popup options\r\n  \toptions: {\r\n  \t\t// @option maxWidth: Number = 300\r\n  \t\t// Max width of the popup, in pixels.\r\n  \t\tmaxWidth: 300,\r\n\r\n  \t\t// @option minWidth: Number = 50\r\n  \t\t// Min width of the popup, in pixels.\r\n  \t\tminWidth: 50,\r\n\r\n  \t\t// @option maxHeight: Number = null\r\n  \t\t// If set, creates a scrollable container of the given height\r\n  \t\t// inside a popup if its content exceeds it.\r\n  \t\tmaxHeight: null,\r\n\r\n  \t\t// @option autoPan: Boolean = true\r\n  \t\t// Set it to `false` if you don't want the map to do panning animation\r\n  \t\t// to fit the opened popup.\r\n  \t\tautoPan: true,\r\n\r\n  \t\t// @option autoPanPaddingTopLeft: Point = null\r\n  \t\t// The margin between the popup and the top left corner of the map\r\n  \t\t// view after autopanning was performed.\r\n  \t\tautoPanPaddingTopLeft: null,\r\n\r\n  \t\t// @option autoPanPaddingBottomRight: Point = null\r\n  \t\t// The margin between the popup and the bottom right corner of the map\r\n  \t\t// view after autopanning was performed.\r\n  \t\tautoPanPaddingBottomRight: null,\r\n\r\n  \t\t// @option autoPanPadding: Point = Point(5, 5)\r\n  \t\t// Equivalent of setting both top left and bottom right autopan padding to the same value.\r\n  \t\tautoPanPadding: [5, 5],\r\n\r\n  \t\t// @option keepInView: Boolean = false\r\n  \t\t// Set it to `true` if you want to prevent users from panning the popup\r\n  \t\t// off of the screen while it is open.\r\n  \t\tkeepInView: false,\r\n\r\n  \t\t// @option closeButton: Boolean = true\r\n  \t\t// Controls the presence of a close button in the popup.\r\n  \t\tcloseButton: true,\r\n\r\n  \t\t// @option autoClose: Boolean = true\r\n  \t\t// Set it to `false` if you want to override the default behavior of\r\n  \t\t// the popup closing when another popup is opened.\r\n  \t\tautoClose: true,\r\n\r\n  \t\t// @option closeOnEscapeKey: Boolean = true\r\n  \t\t// Set it to `false` if you want to override the default behavior of\r\n  \t\t// the ESC key for closing of the popup.\r\n  \t\tcloseOnEscapeKey: true,\r\n\r\n  \t\t// @option closeOnClick: Boolean = *\r\n  \t\t// Set it if you want to override the default behavior of the popup closing when user clicks\r\n  \t\t// on the map. Defaults to the map's [`closePopupOnClick`](#map-closepopuponclick) option.\r\n\r\n  \t\t// @option className: String = ''\r\n  \t\t// A custom CSS class name to assign to the popup.\r\n  \t\tclassName: ''\r\n  \t},\r\n\r\n  \t// @namespace Popup\r\n  \t// @method openOn(map: Map): this\r\n  \t// Adds the popup to the map and closes the previous one. The same as `map.openPopup(popup)`.\r\n  \topenOn: function (map) {\r\n  \t\tmap.openPopup(this);\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \tonAdd: function (map) {\r\n  \t\tDivOverlay.prototype.onAdd.call(this, map);\r\n\r\n  \t\t// @namespace Map\r\n  \t\t// @section Popup events\r\n  \t\t// @event popupopen: PopupEvent\r\n  \t\t// Fired when a popup is opened in the map\r\n  \t\tmap.fire('popupopen', {popup: this});\r\n\r\n  \t\tif (this._source) {\r\n  \t\t\t// @namespace Layer\r\n  \t\t\t// @section Popup events\r\n  \t\t\t// @event popupopen: PopupEvent\r\n  \t\t\t// Fired when a popup bound to this layer is opened\r\n  \t\t\tthis._source.fire('popupopen', {popup: this}, true);\r\n  \t\t\t// For non-path layers, we toggle the popup when clicking\r\n  \t\t\t// again the layer, so prevent the map to reopen it.\r\n  \t\t\tif (!(this._source instanceof Path)) {\r\n  \t\t\t\tthis._source.on('preclick', stopPropagation);\r\n  \t\t\t}\r\n  \t\t}\r\n  \t},\r\n\r\n  \tonRemove: function (map) {\r\n  \t\tDivOverlay.prototype.onRemove.call(this, map);\r\n\r\n  \t\t// @namespace Map\r\n  \t\t// @section Popup events\r\n  \t\t// @event popupclose: PopupEvent\r\n  \t\t// Fired when a popup in the map is closed\r\n  \t\tmap.fire('popupclose', {popup: this});\r\n\r\n  \t\tif (this._source) {\r\n  \t\t\t// @namespace Layer\r\n  \t\t\t// @section Popup events\r\n  \t\t\t// @event popupclose: PopupEvent\r\n  \t\t\t// Fired when a popup bound to this layer is closed\r\n  \t\t\tthis._source.fire('popupclose', {popup: this}, true);\r\n  \t\t\tif (!(this._source instanceof Path)) {\r\n  \t\t\t\tthis._source.off('preclick', stopPropagation);\r\n  \t\t\t}\r\n  \t\t}\r\n  \t},\r\n\r\n  \tgetEvents: function () {\r\n  \t\tvar events = DivOverlay.prototype.getEvents.call(this);\r\n\r\n  \t\tif (this.options.closeOnClick !== undefined ? this.options.closeOnClick : this._map.options.closePopupOnClick) {\r\n  \t\t\tevents.preclick = this._close;\r\n  \t\t}\r\n\r\n  \t\tif (this.options.keepInView) {\r\n  \t\t\tevents.moveend = this._adjustPan;\r\n  \t\t}\r\n\r\n  \t\treturn events;\r\n  \t},\r\n\r\n  \t_close: function () {\r\n  \t\tif (this._map) {\r\n  \t\t\tthis._map.closePopup(this);\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_initLayout: function () {\r\n  \t\tvar prefix = 'leaflet-popup',\r\n  \t\t    container = this._container = create$1('div',\r\n  \t\t\tprefix + ' ' + (this.options.className || '') +\r\n  \t\t\t' leaflet-zoom-animated');\r\n\r\n  \t\tvar wrapper = this._wrapper = create$1('div', prefix + '-content-wrapper', container);\r\n  \t\tthis._contentNode = create$1('div', prefix + '-content', wrapper);\r\n\r\n  \t\tdisableClickPropagation(container);\r\n  \t\tdisableScrollPropagation(this._contentNode);\r\n  \t\ton(container, 'contextmenu', stopPropagation);\r\n\r\n  \t\tthis._tipContainer = create$1('div', prefix + '-tip-container', container);\r\n  \t\tthis._tip = create$1('div', prefix + '-tip', this._tipContainer);\r\n\r\n  \t\tif (this.options.closeButton) {\r\n  \t\t\tvar closeButton = this._closeButton = create$1('a', prefix + '-close-button', container);\r\n  \t\t\tcloseButton.href = '#close';\r\n  \t\t\tcloseButton.innerHTML = '&#215;';\r\n\r\n  \t\t\ton(closeButton, 'click', this._onCloseButtonClick, this);\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_updateLayout: function () {\r\n  \t\tvar container = this._contentNode,\r\n  \t\t    style = container.style;\r\n\r\n  \t\tstyle.width = '';\r\n  \t\tstyle.whiteSpace = 'nowrap';\r\n\r\n  \t\tvar width = container.offsetWidth;\r\n  \t\twidth = Math.min(width, this.options.maxWidth);\r\n  \t\twidth = Math.max(width, this.options.minWidth);\r\n\r\n  \t\tstyle.width = (width + 1) + 'px';\r\n  \t\tstyle.whiteSpace = '';\r\n\r\n  \t\tstyle.height = '';\r\n\r\n  \t\tvar height = container.offsetHeight,\r\n  \t\t    maxHeight = this.options.maxHeight,\r\n  \t\t    scrolledClass = 'leaflet-popup-scrolled';\r\n\r\n  \t\tif (maxHeight && height > maxHeight) {\r\n  \t\t\tstyle.height = maxHeight + 'px';\r\n  \t\t\taddClass(container, scrolledClass);\r\n  \t\t} else {\r\n  \t\t\tremoveClass(container, scrolledClass);\r\n  \t\t}\r\n\r\n  \t\tthis._containerWidth = this._container.offsetWidth;\r\n  \t},\r\n\r\n  \t_animateZoom: function (e) {\r\n  \t\tvar pos = this._map._latLngToNewLayerPoint(this._latlng, e.zoom, e.center),\r\n  \t\t    anchor = this._getAnchor();\r\n  \t\tsetPosition(this._container, pos.add(anchor));\r\n  \t},\r\n\r\n  \t_adjustPan: function () {\r\n  \t\tif (!this.options.autoPan) { return; }\r\n  \t\tif (this._map._panAnim) { this._map._panAnim.stop(); }\r\n\r\n  \t\tvar map = this._map,\r\n  \t\t    marginBottom = parseInt(getStyle(this._container, 'marginBottom'), 10) || 0,\r\n  \t\t    containerHeight = this._container.offsetHeight + marginBottom,\r\n  \t\t    containerWidth = this._containerWidth,\r\n  \t\t    layerPos = new Point(this._containerLeft, -containerHeight - this._containerBottom);\r\n\r\n  \t\tlayerPos._add(getPosition(this._container));\r\n\r\n  \t\tvar containerPos = map.layerPointToContainerPoint(layerPos),\r\n  \t\t    padding = toPoint(this.options.autoPanPadding),\r\n  \t\t    paddingTL = toPoint(this.options.autoPanPaddingTopLeft || padding),\r\n  \t\t    paddingBR = toPoint(this.options.autoPanPaddingBottomRight || padding),\r\n  \t\t    size = map.getSize(),\r\n  \t\t    dx = 0,\r\n  \t\t    dy = 0;\r\n\r\n  \t\tif (containerPos.x + containerWidth + paddingBR.x > size.x) { // right\r\n  \t\t\tdx = containerPos.x + containerWidth - size.x + paddingBR.x;\r\n  \t\t}\r\n  \t\tif (containerPos.x - dx - paddingTL.x < 0) { // left\r\n  \t\t\tdx = containerPos.x - paddingTL.x;\r\n  \t\t}\r\n  \t\tif (containerPos.y + containerHeight + paddingBR.y > size.y) { // bottom\r\n  \t\t\tdy = containerPos.y + containerHeight - size.y + paddingBR.y;\r\n  \t\t}\r\n  \t\tif (containerPos.y - dy - paddingTL.y < 0) { // top\r\n  \t\t\tdy = containerPos.y - paddingTL.y;\r\n  \t\t}\r\n\r\n  \t\t// @namespace Map\r\n  \t\t// @section Popup events\r\n  \t\t// @event autopanstart: Event\r\n  \t\t// Fired when the map starts autopanning when opening a popup.\r\n  \t\tif (dx || dy) {\r\n  \t\t\tmap\r\n  \t\t\t    .fire('autopanstart')\r\n  \t\t\t    .panBy([dx, dy]);\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_onCloseButtonClick: function (e) {\r\n  \t\tthis._close();\r\n  \t\tstop(e);\r\n  \t},\r\n\r\n  \t_getAnchor: function () {\r\n  \t\t// Where should we anchor the popup on the source layer?\r\n  \t\treturn toPoint(this._source && this._source._getPopupAnchor ? this._source._getPopupAnchor() : [0, 0]);\r\n  \t}\r\n\r\n  });\r\n\r\n  // @namespace Popup\r\n  // @factory L.popup(options?: Popup options, source?: Layer)\r\n  // Instantiates a `Popup` object given an optional `options` object that describes its appearance and location and an optional `source` object that is used to tag the popup with a reference to the Layer to which it refers.\r\n  var popup = function (options, source) {\r\n  \treturn new Popup(options, source);\r\n  };\r\n\r\n\r\n  /* @namespace Map\r\n   * @section Interaction Options\r\n   * @option closePopupOnClick: Boolean = true\r\n   * Set it to `false` if you don't want popups to close when user clicks the map.\r\n   */\r\n  Map.mergeOptions({\r\n  \tclosePopupOnClick: true\r\n  });\r\n\r\n\r\n  // @namespace Map\r\n  // @section Methods for Layers and Controls\r\n  Map.include({\r\n  \t// @method openPopup(popup: Popup): this\r\n  \t// Opens the specified popup while closing the previously opened (to make sure only one is opened at one time for usability).\r\n  \t// @alternative\r\n  \t// @method openPopup(content: String|HTMLElement, latlng: LatLng, options?: Popup options): this\r\n  \t// Creates a popup with the specified content and options and opens it in the given point on a map.\r\n  \topenPopup: function (popup, latlng, options) {\r\n  \t\tif (!(popup instanceof Popup)) {\r\n  \t\t\tpopup = new Popup(options).setContent(popup);\r\n  \t\t}\r\n\r\n  \t\tif (latlng) {\r\n  \t\t\tpopup.setLatLng(latlng);\r\n  \t\t}\r\n\r\n  \t\tif (this.hasLayer(popup)) {\r\n  \t\t\treturn this;\r\n  \t\t}\r\n\r\n  \t\tif (this._popup && this._popup.options.autoClose) {\r\n  \t\t\tthis.closePopup();\r\n  \t\t}\r\n\r\n  \t\tthis._popup = popup;\r\n  \t\treturn this.addLayer(popup);\r\n  \t},\r\n\r\n  \t// @method closePopup(popup?: Popup): this\r\n  \t// Closes the popup previously opened with [openPopup](#map-openpopup) (or the given one).\r\n  \tclosePopup: function (popup) {\r\n  \t\tif (!popup || popup === this._popup) {\r\n  \t\t\tpopup = this._popup;\r\n  \t\t\tthis._popup = null;\r\n  \t\t}\r\n  \t\tif (popup) {\r\n  \t\t\tthis.removeLayer(popup);\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t}\r\n  });\r\n\r\n  /*\r\n   * @namespace Layer\r\n   * @section Popup methods example\r\n   *\r\n   * All layers share a set of methods convenient for binding popups to it.\r\n   *\r\n   * ```js\r\n   * var layer = L.Polygon(latlngs).bindPopup('Hi There!').addTo(map);\r\n   * layer.openPopup();\r\n   * layer.closePopup();\r\n   * ```\r\n   *\r\n   * Popups will also be automatically opened when the layer is clicked on and closed when the layer is removed from the map or another popup is opened.\r\n   */\r\n\r\n  // @section Popup methods\r\n  Layer.include({\r\n\r\n  \t// @method bindPopup(content: String|HTMLElement|Function|Popup, options?: Popup options): this\r\n  \t// Binds a popup to the layer with the passed `content` and sets up the\r\n  \t// necessary event listeners. If a `Function` is passed it will receive\r\n  \t// the layer as the first argument and should return a `String` or `HTMLElement`.\r\n  \tbindPopup: function (content, options) {\r\n\r\n  \t\tif (content instanceof Popup) {\r\n  \t\t\tsetOptions(content, options);\r\n  \t\t\tthis._popup = content;\r\n  \t\t\tcontent._source = this;\r\n  \t\t} else {\r\n  \t\t\tif (!this._popup || options) {\r\n  \t\t\t\tthis._popup = new Popup(options, this);\r\n  \t\t\t}\r\n  \t\t\tthis._popup.setContent(content);\r\n  \t\t}\r\n\r\n  \t\tif (!this._popupHandlersAdded) {\r\n  \t\t\tthis.on({\r\n  \t\t\t\tclick: this._openPopup,\r\n  \t\t\t\tkeypress: this._onKeyPress,\r\n  \t\t\t\tremove: this.closePopup,\r\n  \t\t\t\tmove: this._movePopup\r\n  \t\t\t});\r\n  \t\t\tthis._popupHandlersAdded = true;\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method unbindPopup(): this\r\n  \t// Removes the popup previously bound with `bindPopup`.\r\n  \tunbindPopup: function () {\r\n  \t\tif (this._popup) {\r\n  \t\t\tthis.off({\r\n  \t\t\t\tclick: this._openPopup,\r\n  \t\t\t\tkeypress: this._onKeyPress,\r\n  \t\t\t\tremove: this.closePopup,\r\n  \t\t\t\tmove: this._movePopup\r\n  \t\t\t});\r\n  \t\t\tthis._popupHandlersAdded = false;\r\n  \t\t\tthis._popup = null;\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method openPopup(latlng?: LatLng): this\r\n  \t// Opens the bound popup at the specified `latlng` or at the default popup anchor if no `latlng` is passed.\r\n  \topenPopup: function (layer, latlng) {\r\n  \t\tif (this._popup && this._map) {\r\n  \t\t\tlatlng = this._popup._prepareOpen(this, layer, latlng);\r\n\r\n  \t\t\t// open the popup on the map\r\n  \t\t\tthis._map.openPopup(this._popup, latlng);\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method closePopup(): this\r\n  \t// Closes the popup bound to this layer if it is open.\r\n  \tclosePopup: function () {\r\n  \t\tif (this._popup) {\r\n  \t\t\tthis._popup._close();\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method togglePopup(): this\r\n  \t// Opens or closes the popup bound to this layer depending on its current state.\r\n  \ttogglePopup: function (target) {\r\n  \t\tif (this._popup) {\r\n  \t\t\tif (this._popup._map) {\r\n  \t\t\t\tthis.closePopup();\r\n  \t\t\t} else {\r\n  \t\t\t\tthis.openPopup(target);\r\n  \t\t\t}\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method isPopupOpen(): boolean\r\n  \t// Returns `true` if the popup bound to this layer is currently open.\r\n  \tisPopupOpen: function () {\r\n  \t\treturn (this._popup ? this._popup.isOpen() : false);\r\n  \t},\r\n\r\n  \t// @method setPopupContent(content: String|HTMLElement|Popup): this\r\n  \t// Sets the content of the popup bound to this layer.\r\n  \tsetPopupContent: function (content) {\r\n  \t\tif (this._popup) {\r\n  \t\t\tthis._popup.setContent(content);\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method getPopup(): Popup\r\n  \t// Returns the popup bound to this layer.\r\n  \tgetPopup: function () {\r\n  \t\treturn this._popup;\r\n  \t},\r\n\r\n  \t_openPopup: function (e) {\r\n  \t\tvar layer = e.layer || e.target;\r\n\r\n  \t\tif (!this._popup) {\r\n  \t\t\treturn;\r\n  \t\t}\r\n\r\n  \t\tif (!this._map) {\r\n  \t\t\treturn;\r\n  \t\t}\r\n\r\n  \t\t// prevent map click\r\n  \t\tstop(e);\r\n\r\n  \t\t// if this inherits from Path its a vector and we can just\r\n  \t\t// open the popup at the new location\r\n  \t\tif (layer instanceof Path) {\r\n  \t\t\tthis.openPopup(e.layer || e.target, e.latlng);\r\n  \t\t\treturn;\r\n  \t\t}\r\n\r\n  \t\t// otherwise treat it like a marker and figure out\r\n  \t\t// if we should toggle it open/closed\r\n  \t\tif (this._map.hasLayer(this._popup) && this._popup._source === layer) {\r\n  \t\t\tthis.closePopup();\r\n  \t\t} else {\r\n  \t\t\tthis.openPopup(layer, e.latlng);\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_movePopup: function (e) {\r\n  \t\tthis._popup.setLatLng(e.latlng);\r\n  \t},\r\n\r\n  \t_onKeyPress: function (e) {\r\n  \t\tif (e.originalEvent.keyCode === 13) {\r\n  \t\t\tthis._openPopup(e);\r\n  \t\t}\r\n  \t}\r\n  });\n\n  /*\n   * @class Tooltip\n   * @inherits DivOverlay\n   * @aka L.Tooltip\n   * Used to display small texts on top of map layers.\n   *\n   * @example\n   *\n   * ```js\n   * marker.bindTooltip(\"my tooltip text\").openTooltip();\n   * ```\n   * Note about tooltip offset. Leaflet takes two options in consideration\n   * for computing tooltip offsetting:\n   * - the `offset` Tooltip option: it defaults to [0, 0], and it's specific to one tooltip.\n   *   Add a positive x offset to move the tooltip to the right, and a positive y offset to\n   *   move it to the bottom. Negatives will move to the left and top.\n   * - the `tooltipAnchor` Icon option: this will only be considered for Marker. You\n   *   should adapt this value if you use a custom icon.\n   */\n\n\n  // @namespace Tooltip\n  var Tooltip = DivOverlay.extend({\n\n  \t// @section\n  \t// @aka Tooltip options\n  \toptions: {\n  \t\t// @option pane: String = 'tooltipPane'\n  \t\t// `Map pane` where the tooltip will be added.\n  \t\tpane: 'tooltipPane',\n\n  \t\t// @option offset: Point = Point(0, 0)\n  \t\t// Optional offset of the tooltip position.\n  \t\toffset: [0, 0],\n\n  \t\t// @option direction: String = 'auto'\n  \t\t// Direction where to open the tooltip. Possible values are: `right`, `left`,\n  \t\t// `top`, `bottom`, `center`, `auto`.\n  \t\t// `auto` will dynamically switch between `right` and `left` according to the tooltip\n  \t\t// position on the map.\n  \t\tdirection: 'auto',\n\n  \t\t// @option permanent: Boolean = false\n  \t\t// Whether to open the tooltip permanently or only on mouseover.\n  \t\tpermanent: false,\n\n  \t\t// @option sticky: Boolean = false\n  \t\t// If true, the tooltip will follow the mouse instead of being fixed at the feature center.\n  \t\tsticky: false,\n\n  \t\t// @option interactive: Boolean = false\n  \t\t// If true, the tooltip will listen to the feature events.\n  \t\tinteractive: false,\n\n  \t\t// @option opacity: Number = 0.9\n  \t\t// Tooltip container opacity.\n  \t\topacity: 0.9\n  \t},\n\n  \tonAdd: function (map) {\n  \t\tDivOverlay.prototype.onAdd.call(this, map);\n  \t\tthis.setOpacity(this.options.opacity);\n\n  \t\t// @namespace Map\n  \t\t// @section Tooltip events\n  \t\t// @event tooltipopen: TooltipEvent\n  \t\t// Fired when a tooltip is opened in the map.\n  \t\tmap.fire('tooltipopen', {tooltip: this});\n\n  \t\tif (this._source) {\n  \t\t\t// @namespace Layer\n  \t\t\t// @section Tooltip events\n  \t\t\t// @event tooltipopen: TooltipEvent\n  \t\t\t// Fired when a tooltip bound to this layer is opened.\n  \t\t\tthis._source.fire('tooltipopen', {tooltip: this}, true);\n  \t\t}\n  \t},\n\n  \tonRemove: function (map) {\n  \t\tDivOverlay.prototype.onRemove.call(this, map);\n\n  \t\t// @namespace Map\n  \t\t// @section Tooltip events\n  \t\t// @event tooltipclose: TooltipEvent\n  \t\t// Fired when a tooltip in the map is closed.\n  \t\tmap.fire('tooltipclose', {tooltip: this});\n\n  \t\tif (this._source) {\n  \t\t\t// @namespace Layer\n  \t\t\t// @section Tooltip events\n  \t\t\t// @event tooltipclose: TooltipEvent\n  \t\t\t// Fired when a tooltip bound to this layer is closed.\n  \t\t\tthis._source.fire('tooltipclose', {tooltip: this}, true);\n  \t\t}\n  \t},\n\n  \tgetEvents: function () {\n  \t\tvar events = DivOverlay.prototype.getEvents.call(this);\n\n  \t\tif (touch && !this.options.permanent) {\n  \t\t\tevents.preclick = this._close;\n  \t\t}\n\n  \t\treturn events;\n  \t},\n\n  \t_close: function () {\n  \t\tif (this._map) {\n  \t\t\tthis._map.closeTooltip(this);\n  \t\t}\n  \t},\n\n  \t_initLayout: function () {\n  \t\tvar prefix = 'leaflet-tooltip',\n  \t\t    className = prefix + ' ' + (this.options.className || '') + ' leaflet-zoom-' + (this._zoomAnimated ? 'animated' : 'hide');\n\n  \t\tthis._contentNode = this._container = create$1('div', className);\n  \t},\n\n  \t_updateLayout: function () {},\n\n  \t_adjustPan: function () {},\n\n  \t_setPosition: function (pos) {\n  \t\tvar subX, subY,\n  \t\t    map = this._map,\n  \t\t    container = this._container,\n  \t\t    centerPoint = map.latLngToContainerPoint(map.getCenter()),\n  \t\t    tooltipPoint = map.layerPointToContainerPoint(pos),\n  \t\t    direction = this.options.direction,\n  \t\t    tooltipWidth = container.offsetWidth,\n  \t\t    tooltipHeight = container.offsetHeight,\n  \t\t    offset = toPoint(this.options.offset),\n  \t\t    anchor = this._getAnchor();\n\n  \t\tif (direction === 'top') {\n  \t\t\tsubX = tooltipWidth / 2;\n  \t\t\tsubY = tooltipHeight;\n  \t\t} else if (direction === 'bottom') {\n  \t\t\tsubX = tooltipWidth / 2;\n  \t\t\tsubY = 0;\n  \t\t} else if (direction === 'center') {\n  \t\t\tsubX = tooltipWidth / 2;\n  \t\t\tsubY = tooltipHeight / 2;\n  \t\t} else if (direction === 'right') {\n  \t\t\tsubX = 0;\n  \t\t\tsubY = tooltipHeight / 2;\n  \t\t} else if (direction === 'left') {\n  \t\t\tsubX = tooltipWidth;\n  \t\t\tsubY = tooltipHeight / 2;\n  \t\t} else if (tooltipPoint.x < centerPoint.x) {\n  \t\t\tdirection = 'right';\n  \t\t\tsubX = 0;\n  \t\t\tsubY = tooltipHeight / 2;\n  \t\t} else {\n  \t\t\tdirection = 'left';\n  \t\t\tsubX = tooltipWidth + (offset.x + anchor.x) * 2;\n  \t\t\tsubY = tooltipHeight / 2;\n  \t\t}\n\n  \t\tpos = pos.subtract(toPoint(subX, subY, true)).add(offset).add(anchor);\n\n  \t\tremoveClass(container, 'leaflet-tooltip-right');\n  \t\tremoveClass(container, 'leaflet-tooltip-left');\n  \t\tremoveClass(container, 'leaflet-tooltip-top');\n  \t\tremoveClass(container, 'leaflet-tooltip-bottom');\n  \t\taddClass(container, 'leaflet-tooltip-' + direction);\n  \t\tsetPosition(container, pos);\n  \t},\n\n  \t_updatePosition: function () {\n  \t\tvar pos = this._map.latLngToLayerPoint(this._latlng);\n  \t\tthis._setPosition(pos);\n  \t},\n\n  \tsetOpacity: function (opacity) {\n  \t\tthis.options.opacity = opacity;\n\n  \t\tif (this._container) {\n  \t\t\tsetOpacity(this._container, opacity);\n  \t\t}\n  \t},\n\n  \t_animateZoom: function (e) {\n  \t\tvar pos = this._map._latLngToNewLayerPoint(this._latlng, e.zoom, e.center);\n  \t\tthis._setPosition(pos);\n  \t},\n\n  \t_getAnchor: function () {\n  \t\t// Where should we anchor the tooltip on the source layer?\n  \t\treturn toPoint(this._source && this._source._getTooltipAnchor && !this.options.sticky ? this._source._getTooltipAnchor() : [0, 0]);\n  \t}\n\n  });\n\n  // @namespace Tooltip\n  // @factory L.tooltip(options?: Tooltip options, source?: Layer)\n  // Instantiates a Tooltip object given an optional `options` object that describes its appearance and location and an optional `source` object that is used to tag the tooltip with a reference to the Layer to which it refers.\n  var tooltip = function (options, source) {\n  \treturn new Tooltip(options, source);\n  };\n\n  // @namespace Map\n  // @section Methods for Layers and Controls\n  Map.include({\n\n  \t// @method openTooltip(tooltip: Tooltip): this\n  \t// Opens the specified tooltip.\n  \t// @alternative\n  \t// @method openTooltip(content: String|HTMLElement, latlng: LatLng, options?: Tooltip options): this\n  \t// Creates a tooltip with the specified content and options and open it.\n  \topenTooltip: function (tooltip, latlng, options) {\n  \t\tif (!(tooltip instanceof Tooltip)) {\n  \t\t\ttooltip = new Tooltip(options).setContent(tooltip);\n  \t\t}\n\n  \t\tif (latlng) {\n  \t\t\ttooltip.setLatLng(latlng);\n  \t\t}\n\n  \t\tif (this.hasLayer(tooltip)) {\n  \t\t\treturn this;\n  \t\t}\n\n  \t\treturn this.addLayer(tooltip);\n  \t},\n\n  \t// @method closeTooltip(tooltip?: Tooltip): this\n  \t// Closes the tooltip given as parameter.\n  \tcloseTooltip: function (tooltip) {\n  \t\tif (tooltip) {\n  \t\t\tthis.removeLayer(tooltip);\n  \t\t}\n  \t\treturn this;\n  \t}\n\n  });\n\n  /*\n   * @namespace Layer\n   * @section Tooltip methods example\n   *\n   * All layers share a set of methods convenient for binding tooltips to it.\n   *\n   * ```js\n   * var layer = L.Polygon(latlngs).bindTooltip('Hi There!').addTo(map);\n   * layer.openTooltip();\n   * layer.closeTooltip();\n   * ```\n   */\n\n  // @section Tooltip methods\n  Layer.include({\n\n  \t// @method bindTooltip(content: String|HTMLElement|Function|Tooltip, options?: Tooltip options): this\n  \t// Binds a tooltip to the layer with the passed `content` and sets up the\n  \t// necessary event listeners. If a `Function` is passed it will receive\n  \t// the layer as the first argument and should return a `String` or `HTMLElement`.\n  \tbindTooltip: function (content, options) {\n\n  \t\tif (content instanceof Tooltip) {\n  \t\t\tsetOptions(content, options);\n  \t\t\tthis._tooltip = content;\n  \t\t\tcontent._source = this;\n  \t\t} else {\n  \t\t\tif (!this._tooltip || options) {\n  \t\t\t\tthis._tooltip = new Tooltip(options, this);\n  \t\t\t}\n  \t\t\tthis._tooltip.setContent(content);\n\n  \t\t}\n\n  \t\tthis._initTooltipInteractions();\n\n  \t\tif (this._tooltip.options.permanent && this._map && this._map.hasLayer(this)) {\n  \t\t\tthis.openTooltip();\n  \t\t}\n\n  \t\treturn this;\n  \t},\n\n  \t// @method unbindTooltip(): this\n  \t// Removes the tooltip previously bound with `bindTooltip`.\n  \tunbindTooltip: function () {\n  \t\tif (this._tooltip) {\n  \t\t\tthis._initTooltipInteractions(true);\n  \t\t\tthis.closeTooltip();\n  \t\t\tthis._tooltip = null;\n  \t\t}\n  \t\treturn this;\n  \t},\n\n  \t_initTooltipInteractions: function (remove$$1) {\n  \t\tif (!remove$$1 && this._tooltipHandlersAdded) { return; }\n  \t\tvar onOff = remove$$1 ? 'off' : 'on',\n  \t\t    events = {\n  \t\t\tremove: this.closeTooltip,\n  \t\t\tmove: this._moveTooltip\n  \t\t    };\n  \t\tif (!this._tooltip.options.permanent) {\n  \t\t\tevents.mouseover = this._openTooltip;\n  \t\t\tevents.mouseout = this.closeTooltip;\n  \t\t\tif (this._tooltip.options.sticky) {\n  \t\t\t\tevents.mousemove = this._moveTooltip;\n  \t\t\t}\n  \t\t\tif (touch) {\n  \t\t\t\tevents.click = this._openTooltip;\n  \t\t\t}\n  \t\t} else {\n  \t\t\tevents.add = this._openTooltip;\n  \t\t}\n  \t\tthis[onOff](events);\n  \t\tthis._tooltipHandlersAdded = !remove$$1;\n  \t},\n\n  \t// @method openTooltip(latlng?: LatLng): this\n  \t// Opens the bound tooltip at the specified `latlng` or at the default tooltip anchor if no `latlng` is passed.\n  \topenTooltip: function (layer, latlng) {\n  \t\tif (this._tooltip && this._map) {\n  \t\t\tlatlng = this._tooltip._prepareOpen(this, layer, latlng);\n\n  \t\t\t// open the tooltip on the map\n  \t\t\tthis._map.openTooltip(this._tooltip, latlng);\n\n  \t\t\t// Tooltip container may not be defined if not permanent and never\n  \t\t\t// opened.\n  \t\t\tif (this._tooltip.options.interactive && this._tooltip._container) {\n  \t\t\t\taddClass(this._tooltip._container, 'leaflet-clickable');\n  \t\t\t\tthis.addInteractiveTarget(this._tooltip._container);\n  \t\t\t}\n  \t\t}\n\n  \t\treturn this;\n  \t},\n\n  \t// @method closeTooltip(): this\n  \t// Closes the tooltip bound to this layer if it is open.\n  \tcloseTooltip: function () {\n  \t\tif (this._tooltip) {\n  \t\t\tthis._tooltip._close();\n  \t\t\tif (this._tooltip.options.interactive && this._tooltip._container) {\n  \t\t\t\tremoveClass(this._tooltip._container, 'leaflet-clickable');\n  \t\t\t\tthis.removeInteractiveTarget(this._tooltip._container);\n  \t\t\t}\n  \t\t}\n  \t\treturn this;\n  \t},\n\n  \t// @method toggleTooltip(): this\n  \t// Opens or closes the tooltip bound to this layer depending on its current state.\n  \ttoggleTooltip: function (target) {\n  \t\tif (this._tooltip) {\n  \t\t\tif (this._tooltip._map) {\n  \t\t\t\tthis.closeTooltip();\n  \t\t\t} else {\n  \t\t\t\tthis.openTooltip(target);\n  \t\t\t}\n  \t\t}\n  \t\treturn this;\n  \t},\n\n  \t// @method isTooltipOpen(): boolean\n  \t// Returns `true` if the tooltip bound to this layer is currently open.\n  \tisTooltipOpen: function () {\n  \t\treturn this._tooltip.isOpen();\n  \t},\n\n  \t// @method setTooltipContent(content: String|HTMLElement|Tooltip): this\n  \t// Sets the content of the tooltip bound to this layer.\n  \tsetTooltipContent: function (content) {\n  \t\tif (this._tooltip) {\n  \t\t\tthis._tooltip.setContent(content);\n  \t\t}\n  \t\treturn this;\n  \t},\n\n  \t// @method getTooltip(): Tooltip\n  \t// Returns the tooltip bound to this layer.\n  \tgetTooltip: function () {\n  \t\treturn this._tooltip;\n  \t},\n\n  \t_openTooltip: function (e) {\n  \t\tvar layer = e.layer || e.target;\n\n  \t\tif (!this._tooltip || !this._map) {\n  \t\t\treturn;\n  \t\t}\n  \t\tthis.openTooltip(layer, this._tooltip.options.sticky ? e.latlng : undefined);\n  \t},\n\n  \t_moveTooltip: function (e) {\n  \t\tvar latlng = e.latlng, containerPoint, layerPoint;\n  \t\tif (this._tooltip.options.sticky && e.originalEvent) {\n  \t\t\tcontainerPoint = this._map.mouseEventToContainerPoint(e.originalEvent);\n  \t\t\tlayerPoint = this._map.containerPointToLayerPoint(containerPoint);\n  \t\t\tlatlng = this._map.layerPointToLatLng(layerPoint);\n  \t\t}\n  \t\tthis._tooltip.setLatLng(latlng);\n  \t}\n  });\n\n  /*\n   * @class DivIcon\n   * @aka L.DivIcon\n   * @inherits Icon\n   *\n   * Represents a lightweight icon for markers that uses a simple `<div>`\n   * element instead of an image. Inherits from `Icon` but ignores the `iconUrl` and shadow options.\n   *\n   * @example\n   * ```js\n   * var myIcon = L.divIcon({className: 'my-div-icon'});\n   * // you can set .my-div-icon styles in CSS\n   *\n   * L.marker([50.505, 30.57], {icon: myIcon}).addTo(map);\n   * ```\n   *\n   * By default, it has a 'leaflet-div-icon' CSS class and is styled as a little white square with a shadow.\n   */\n\n  var DivIcon = Icon.extend({\n  \toptions: {\n  \t\t// @section\n  \t\t// @aka DivIcon options\n  \t\ticonSize: [12, 12], // also can be set through CSS\n\n  \t\t// iconAnchor: (Point),\n  \t\t// popupAnchor: (Point),\n\n  \t\t// @option html: String|HTMLElement = ''\n  \t\t// Custom HTML code to put inside the div element, empty by default. Alternatively,\n  \t\t// an instance of `HTMLElement`.\n  \t\thtml: false,\n\n  \t\t// @option bgPos: Point = [0, 0]\n  \t\t// Optional relative position of the background, in pixels\n  \t\tbgPos: null,\n\n  \t\tclassName: 'leaflet-div-icon'\n  \t},\n\n  \tcreateIcon: function (oldIcon) {\n  \t\tvar div = (oldIcon && oldIcon.tagName === 'DIV') ? oldIcon : document.createElement('div'),\n  \t\t    options = this.options;\n\n  \t\tif (options.html instanceof Element) {\n  \t\t\tempty(div);\n  \t\t\tdiv.appendChild(options.html);\n  \t\t} else {\n  \t\t\tdiv.innerHTML = options.html !== false ? options.html : '';\n  \t\t}\n\n  \t\tif (options.bgPos) {\n  \t\t\tvar bgPos = toPoint(options.bgPos);\n  \t\t\tdiv.style.backgroundPosition = (-bgPos.x) + 'px ' + (-bgPos.y) + 'px';\n  \t\t}\n  \t\tthis._setIconStyles(div, 'icon');\n\n  \t\treturn div;\n  \t},\n\n  \tcreateShadow: function () {\n  \t\treturn null;\n  \t}\n  });\n\n  // @factory L.divIcon(options: DivIcon options)\n  // Creates a `DivIcon` instance with the given options.\n  function divIcon(options) {\n  \treturn new DivIcon(options);\n  }\n\n  Icon.Default = IconDefault;\n\n  /*\n   * @class GridLayer\n   * @inherits Layer\n   * @aka L.GridLayer\n   *\n   * Generic class for handling a tiled grid of HTML elements. This is the base class for all tile layers and replaces `TileLayer.Canvas`.\n   * GridLayer can be extended to create a tiled grid of HTML elements like `<canvas>`, `<img>` or `<div>`. GridLayer will handle creating and animating these DOM elements for you.\n   *\n   *\n   * @section Synchronous usage\n   * @example\n   *\n   * To create a custom layer, extend GridLayer and implement the `createTile()` method, which will be passed a `Point` object with the `x`, `y`, and `z` (zoom level) coordinates to draw your tile.\n   *\n   * ```js\n   * var CanvasLayer = L.GridLayer.extend({\n   *     createTile: function(coords){\n   *         // create a <canvas> element for drawing\n   *         var tile = L.DomUtil.create('canvas', 'leaflet-tile');\n   *\n   *         // setup tile width and height according to the options\n   *         var size = this.getTileSize();\n   *         tile.width = size.x;\n   *         tile.height = size.y;\n   *\n   *         // get a canvas context and draw something on it using coords.x, coords.y and coords.z\n   *         var ctx = tile.getContext('2d');\n   *\n   *         // return the tile so it can be rendered on screen\n   *         return tile;\n   *     }\n   * });\n   * ```\n   *\n   * @section Asynchronous usage\n   * @example\n   *\n   * Tile creation can also be asynchronous, this is useful when using a third-party drawing library. Once the tile is finished drawing it can be passed to the `done()` callback.\n   *\n   * ```js\n   * var CanvasLayer = L.GridLayer.extend({\n   *     createTile: function(coords, done){\n   *         var error;\n   *\n   *         // create a <canvas> element for drawing\n   *         var tile = L.DomUtil.create('canvas', 'leaflet-tile');\n   *\n   *         // setup tile width and height according to the options\n   *         var size = this.getTileSize();\n   *         tile.width = size.x;\n   *         tile.height = size.y;\n   *\n   *         // draw something asynchronously and pass the tile to the done() callback\n   *         setTimeout(function() {\n   *             done(error, tile);\n   *         }, 1000);\n   *\n   *         return tile;\n   *     }\n   * });\n   * ```\n   *\n   * @section\n   */\n\n\n  var GridLayer = Layer.extend({\n\n  \t// @section\n  \t// @aka GridLayer options\n  \toptions: {\n  \t\t// @option tileSize: Number|Point = 256\n  \t\t// Width and height of tiles in the grid. Use a number if width and height are equal, or `L.point(width, height)` otherwise.\n  \t\ttileSize: 256,\n\n  \t\t// @option opacity: Number = 1.0\n  \t\t// Opacity of the tiles. Can be used in the `createTile()` function.\n  \t\topacity: 1,\n\n  \t\t// @option updateWhenIdle: Boolean = (depends)\n  \t\t// Load new tiles only when panning ends.\n  \t\t// `true` by default on mobile browsers, in order to avoid too many requests and keep smooth navigation.\n  \t\t// `false` otherwise in order to display new tiles _during_ panning, since it is easy to pan outside the\n  \t\t// [`keepBuffer`](#gridlayer-keepbuffer) option in desktop browsers.\n  \t\tupdateWhenIdle: mobile,\n\n  \t\t// @option updateWhenZooming: Boolean = true\n  \t\t// By default, a smooth zoom animation (during a [touch zoom](#map-touchzoom) or a [`flyTo()`](#map-flyto)) will update grid layers every integer zoom level. Setting this option to `false` will update the grid layer only when the smooth animation ends.\n  \t\tupdateWhenZooming: true,\n\n  \t\t// @option updateInterval: Number = 200\n  \t\t// Tiles will not update more than once every `updateInterval` milliseconds when panning.\n  \t\tupdateInterval: 200,\n\n  \t\t// @option zIndex: Number = 1\n  \t\t// The explicit zIndex of the tile layer.\n  \t\tzIndex: 1,\n\n  \t\t// @option bounds: LatLngBounds = undefined\n  \t\t// If set, tiles will only be loaded inside the set `LatLngBounds`.\n  \t\tbounds: null,\n\n  \t\t// @option minZoom: Number = 0\n  \t\t// The minimum zoom level down to which this layer will be displayed (inclusive).\n  \t\tminZoom: 0,\n\n  \t\t// @option maxZoom: Number = undefined\n  \t\t// The maximum zoom level up to which this layer will be displayed (inclusive).\n  \t\tmaxZoom: undefined,\n\n  \t\t// @option maxNativeZoom: Number = undefined\n  \t\t// Maximum zoom number the tile source has available. If it is specified,\n  \t\t// the tiles on all zoom levels higher than `maxNativeZoom` will be loaded\n  \t\t// from `maxNativeZoom` level and auto-scaled.\n  \t\tmaxNativeZoom: undefined,\n\n  \t\t// @option minNativeZoom: Number = undefined\n  \t\t// Minimum zoom number the tile source has available. If it is specified,\n  \t\t// the tiles on all zoom levels lower than `minNativeZoom` will be loaded\n  \t\t// from `minNativeZoom` level and auto-scaled.\n  \t\tminNativeZoom: undefined,\n\n  \t\t// @option noWrap: Boolean = false\n  \t\t// Whether the layer is wrapped around the antimeridian. If `true`, the\n  \t\t// GridLayer will only be displayed once at low zoom levels. Has no\n  \t\t// effect when the [map CRS](#map-crs) doesn't wrap around. Can be used\n  \t\t// in combination with [`bounds`](#gridlayer-bounds) to prevent requesting\n  \t\t// tiles outside the CRS limits.\n  \t\tnoWrap: false,\n\n  \t\t// @option pane: String = 'tilePane'\n  \t\t// `Map pane` where the grid layer will be added.\n  \t\tpane: 'tilePane',\n\n  \t\t// @option className: String = ''\n  \t\t// A custom class name to assign to the tile layer. Empty by default.\n  \t\tclassName: '',\n\n  \t\t// @option keepBuffer: Number = 2\n  \t\t// When panning the map, keep this many rows and columns of tiles before unloading them.\n  \t\tkeepBuffer: 2\n  \t},\n\n  \tinitialize: function (options) {\n  \t\tsetOptions(this, options);\n  \t},\n\n  \tonAdd: function () {\n  \t\tthis._initContainer();\n\n  \t\tthis._levels = {};\n  \t\tthis._tiles = {};\n\n  \t\tthis._resetView();\n  \t\tthis._update();\n  \t},\n\n  \tbeforeAdd: function (map) {\n  \t\tmap._addZoomLimit(this);\n  \t},\n\n  \tonRemove: function (map) {\n  \t\tthis._removeAllTiles();\n  \t\tremove(this._container);\n  \t\tmap._removeZoomLimit(this);\n  \t\tthis._container = null;\n  \t\tthis._tileZoom = undefined;\n  \t},\n\n  \t// @method bringToFront: this\n  \t// Brings the tile layer to the top of all tile layers.\n  \tbringToFront: function () {\n  \t\tif (this._map) {\n  \t\t\ttoFront(this._container);\n  \t\t\tthis._setAutoZIndex(Math.max);\n  \t\t}\n  \t\treturn this;\n  \t},\n\n  \t// @method bringToBack: this\n  \t// Brings the tile layer to the bottom of all tile layers.\n  \tbringToBack: function () {\n  \t\tif (this._map) {\n  \t\t\ttoBack(this._container);\n  \t\t\tthis._setAutoZIndex(Math.min);\n  \t\t}\n  \t\treturn this;\n  \t},\n\n  \t// @method getContainer: HTMLElement\n  \t// Returns the HTML element that contains the tiles for this layer.\n  \tgetContainer: function () {\n  \t\treturn this._container;\n  \t},\n\n  \t// @method setOpacity(opacity: Number): this\n  \t// Changes the [opacity](#gridlayer-opacity) of the grid layer.\n  \tsetOpacity: function (opacity) {\n  \t\tthis.options.opacity = opacity;\n  \t\tthis._updateOpacity();\n  \t\treturn this;\n  \t},\n\n  \t// @method setZIndex(zIndex: Number): this\n  \t// Changes the [zIndex](#gridlayer-zindex) of the grid layer.\n  \tsetZIndex: function (zIndex) {\n  \t\tthis.options.zIndex = zIndex;\n  \t\tthis._updateZIndex();\n\n  \t\treturn this;\n  \t},\n\n  \t// @method isLoading: Boolean\n  \t// Returns `true` if any tile in the grid layer has not finished loading.\n  \tisLoading: function () {\n  \t\treturn this._loading;\n  \t},\n\n  \t// @method redraw: this\n  \t// Causes the layer to clear all the tiles and request them again.\n  \tredraw: function () {\n  \t\tif (this._map) {\n  \t\t\tthis._removeAllTiles();\n  \t\t\tthis._update();\n  \t\t}\n  \t\treturn this;\n  \t},\n\n  \tgetEvents: function () {\n  \t\tvar events = {\n  \t\t\tviewprereset: this._invalidateAll,\n  \t\t\tviewreset: this._resetView,\n  \t\t\tzoom: this._resetView,\n  \t\t\tmoveend: this._onMoveEnd\n  \t\t};\n\n  \t\tif (!this.options.updateWhenIdle) {\n  \t\t\t// update tiles on move, but not more often than once per given interval\n  \t\t\tif (!this._onMove) {\n  \t\t\t\tthis._onMove = throttle(this._onMoveEnd, this.options.updateInterval, this);\n  \t\t\t}\n\n  \t\t\tevents.move = this._onMove;\n  \t\t}\n\n  \t\tif (this._zoomAnimated) {\n  \t\t\tevents.zoomanim = this._animateZoom;\n  \t\t}\n\n  \t\treturn events;\n  \t},\n\n  \t// @section Extension methods\n  \t// Layers extending `GridLayer` shall reimplement the following method.\n  \t// @method createTile(coords: Object, done?: Function): HTMLElement\n  \t// Called only internally, must be overridden by classes extending `GridLayer`.\n  \t// Returns the `HTMLElement` corresponding to the given `coords`. If the `done` callback\n  \t// is specified, it must be called when the tile has finished loading and drawing.\n  \tcreateTile: function () {\n  \t\treturn document.createElement('div');\n  \t},\n\n  \t// @section\n  \t// @method getTileSize: Point\n  \t// Normalizes the [tileSize option](#gridlayer-tilesize) into a point. Used by the `createTile()` method.\n  \tgetTileSize: function () {\n  \t\tvar s = this.options.tileSize;\n  \t\treturn s instanceof Point ? s : new Point(s, s);\n  \t},\n\n  \t_updateZIndex: function () {\n  \t\tif (this._container && this.options.zIndex !== undefined && this.options.zIndex !== null) {\n  \t\t\tthis._container.style.zIndex = this.options.zIndex;\n  \t\t}\n  \t},\n\n  \t_setAutoZIndex: function (compare) {\n  \t\t// go through all other layers of the same pane, set zIndex to max + 1 (front) or min - 1 (back)\n\n  \t\tvar layers = this.getPane().children,\n  \t\t    edgeZIndex = -compare(-Infinity, Infinity); // -Infinity for max, Infinity for min\n\n  \t\tfor (var i = 0, len = layers.length, zIndex; i < len; i++) {\n\n  \t\t\tzIndex = layers[i].style.zIndex;\n\n  \t\t\tif (layers[i] !== this._container && zIndex) {\n  \t\t\t\tedgeZIndex = compare(edgeZIndex, +zIndex);\n  \t\t\t}\n  \t\t}\n\n  \t\tif (isFinite(edgeZIndex)) {\n  \t\t\tthis.options.zIndex = edgeZIndex + compare(-1, 1);\n  \t\t\tthis._updateZIndex();\n  \t\t}\n  \t},\n\n  \t_updateOpacity: function () {\n  \t\tif (!this._map) { return; }\n\n  \t\t// IE doesn't inherit filter opacity properly, so we're forced to set it on tiles\n  \t\tif (ielt9) { return; }\n\n  \t\tsetOpacity(this._container, this.options.opacity);\n\n  \t\tvar now = +new Date(),\n  \t\t    nextFrame = false,\n  \t\t    willPrune = false;\n\n  \t\tfor (var key in this._tiles) {\n  \t\t\tvar tile = this._tiles[key];\n  \t\t\tif (!tile.current || !tile.loaded) { continue; }\n\n  \t\t\tvar fade = Math.min(1, (now - tile.loaded) / 200);\n\n  \t\t\tsetOpacity(tile.el, fade);\n  \t\t\tif (fade < 1) {\n  \t\t\t\tnextFrame = true;\n  \t\t\t} else {\n  \t\t\t\tif (tile.active) {\n  \t\t\t\t\twillPrune = true;\n  \t\t\t\t} else {\n  \t\t\t\t\tthis._onOpaqueTile(tile);\n  \t\t\t\t}\n  \t\t\t\ttile.active = true;\n  \t\t\t}\n  \t\t}\n\n  \t\tif (willPrune && !this._noPrune) { this._pruneTiles(); }\n\n  \t\tif (nextFrame) {\n  \t\t\tcancelAnimFrame(this._fadeFrame);\n  \t\t\tthis._fadeFrame = requestAnimFrame(this._updateOpacity, this);\n  \t\t}\n  \t},\n\n  \t_onOpaqueTile: falseFn,\n\n  \t_initContainer: function () {\n  \t\tif (this._container) { return; }\n\n  \t\tthis._container = create$1('div', 'leaflet-layer ' + (this.options.className || ''));\n  \t\tthis._updateZIndex();\n\n  \t\tif (this.options.opacity < 1) {\n  \t\t\tthis._updateOpacity();\n  \t\t}\n\n  \t\tthis.getPane().appendChild(this._container);\n  \t},\n\n  \t_updateLevels: function () {\n\n  \t\tvar zoom = this._tileZoom,\n  \t\t    maxZoom = this.options.maxZoom;\n\n  \t\tif (zoom === undefined) { return undefined; }\n\n  \t\tfor (var z in this._levels) {\n  \t\t\tz = Number(z);\n  \t\t\tif (this._levels[z].el.children.length || z === zoom) {\n  \t\t\t\tthis._levels[z].el.style.zIndex = maxZoom - Math.abs(zoom - z);\n  \t\t\t\tthis._onUpdateLevel(z);\n  \t\t\t} else {\n  \t\t\t\tremove(this._levels[z].el);\n  \t\t\t\tthis._removeTilesAtZoom(z);\n  \t\t\t\tthis._onRemoveLevel(z);\n  \t\t\t\tdelete this._levels[z];\n  \t\t\t}\n  \t\t}\n\n  \t\tvar level = this._levels[zoom],\n  \t\t    map = this._map;\n\n  \t\tif (!level) {\n  \t\t\tlevel = this._levels[zoom] = {};\n\n  \t\t\tlevel.el = create$1('div', 'leaflet-tile-container leaflet-zoom-animated', this._container);\n  \t\t\tlevel.el.style.zIndex = maxZoom;\n\n  \t\t\tlevel.origin = map.project(map.unproject(map.getPixelOrigin()), zoom).round();\n  \t\t\tlevel.zoom = zoom;\n\n  \t\t\tthis._setZoomTransform(level, map.getCenter(), map.getZoom());\n\n  \t\t\t// force the browser to consider the newly added element for transition\n  \t\t\tfalseFn(level.el.offsetWidth);\n\n  \t\t\tthis._onCreateLevel(level);\n  \t\t}\n\n  \t\tthis._level = level;\n\n  \t\treturn level;\n  \t},\n\n  \t_onUpdateLevel: falseFn,\n\n  \t_onRemoveLevel: falseFn,\n\n  \t_onCreateLevel: falseFn,\n\n  \t_pruneTiles: function () {\n  \t\tif (!this._map) {\n  \t\t\treturn;\n  \t\t}\n\n  \t\tvar key, tile;\n\n  \t\tvar zoom = this._map.getZoom();\n  \t\tif (zoom > this.options.maxZoom ||\n  \t\t\tzoom < this.options.minZoom) {\n  \t\t\tthis._removeAllTiles();\n  \t\t\treturn;\n  \t\t}\n\n  \t\tfor (key in this._tiles) {\n  \t\t\ttile = this._tiles[key];\n  \t\t\ttile.retain = tile.current;\n  \t\t}\n\n  \t\tfor (key in this._tiles) {\n  \t\t\ttile = this._tiles[key];\n  \t\t\tif (tile.current && !tile.active) {\n  \t\t\t\tvar coords = tile.coords;\n  \t\t\t\tif (!this._retainParent(coords.x, coords.y, coords.z, coords.z - 5)) {\n  \t\t\t\t\tthis._retainChildren(coords.x, coords.y, coords.z, coords.z + 2);\n  \t\t\t\t}\n  \t\t\t}\n  \t\t}\n\n  \t\tfor (key in this._tiles) {\n  \t\t\tif (!this._tiles[key].retain) {\n  \t\t\t\tthis._removeTile(key);\n  \t\t\t}\n  \t\t}\n  \t},\n\n  \t_removeTilesAtZoom: function (zoom) {\n  \t\tfor (var key in this._tiles) {\n  \t\t\tif (this._tiles[key].coords.z !== zoom) {\n  \t\t\t\tcontinue;\n  \t\t\t}\n  \t\t\tthis._removeTile(key);\n  \t\t}\n  \t},\n\n  \t_removeAllTiles: function () {\n  \t\tfor (var key in this._tiles) {\n  \t\t\tthis._removeTile(key);\n  \t\t}\n  \t},\n\n  \t_invalidateAll: function () {\n  \t\tfor (var z in this._levels) {\n  \t\t\tremove(this._levels[z].el);\n  \t\t\tthis._onRemoveLevel(Number(z));\n  \t\t\tdelete this._levels[z];\n  \t\t}\n  \t\tthis._removeAllTiles();\n\n  \t\tthis._tileZoom = undefined;\n  \t},\n\n  \t_retainParent: function (x, y, z, minZoom) {\n  \t\tvar x2 = Math.floor(x / 2),\n  \t\t    y2 = Math.floor(y / 2),\n  \t\t    z2 = z - 1,\n  \t\t    coords2 = new Point(+x2, +y2);\n  \t\tcoords2.z = +z2;\n\n  \t\tvar key = this._tileCoordsToKey(coords2),\n  \t\t    tile = this._tiles[key];\n\n  \t\tif (tile && tile.active) {\n  \t\t\ttile.retain = true;\n  \t\t\treturn true;\n\n  \t\t} else if (tile && tile.loaded) {\n  \t\t\ttile.retain = true;\n  \t\t}\n\n  \t\tif (z2 > minZoom) {\n  \t\t\treturn this._retainParent(x2, y2, z2, minZoom);\n  \t\t}\n\n  \t\treturn false;\n  \t},\n\n  \t_retainChildren: function (x, y, z, maxZoom) {\n\n  \t\tfor (var i = 2 * x; i < 2 * x + 2; i++) {\n  \t\t\tfor (var j = 2 * y; j < 2 * y + 2; j++) {\n\n  \t\t\t\tvar coords = new Point(i, j);\n  \t\t\t\tcoords.z = z + 1;\n\n  \t\t\t\tvar key = this._tileCoordsToKey(coords),\n  \t\t\t\t    tile = this._tiles[key];\n\n  \t\t\t\tif (tile && tile.active) {\n  \t\t\t\t\ttile.retain = true;\n  \t\t\t\t\tcontinue;\n\n  \t\t\t\t} else if (tile && tile.loaded) {\n  \t\t\t\t\ttile.retain = true;\n  \t\t\t\t}\n\n  \t\t\t\tif (z + 1 < maxZoom) {\n  \t\t\t\t\tthis._retainChildren(i, j, z + 1, maxZoom);\n  \t\t\t\t}\n  \t\t\t}\n  \t\t}\n  \t},\n\n  \t_resetView: function (e) {\n  \t\tvar animating = e && (e.pinch || e.flyTo);\n  \t\tthis._setView(this._map.getCenter(), this._map.getZoom(), animating, animating);\n  \t},\n\n  \t_animateZoom: function (e) {\n  \t\tthis._setView(e.center, e.zoom, true, e.noUpdate);\n  \t},\n\n  \t_clampZoom: function (zoom) {\n  \t\tvar options = this.options;\n\n  \t\tif (undefined !== options.minNativeZoom && zoom < options.minNativeZoom) {\n  \t\t\treturn options.minNativeZoom;\n  \t\t}\n\n  \t\tif (undefined !== options.maxNativeZoom && options.maxNativeZoom < zoom) {\n  \t\t\treturn options.maxNativeZoom;\n  \t\t}\n\n  \t\treturn zoom;\n  \t},\n\n  \t_setView: function (center, zoom, noPrune, noUpdate) {\n  \t\tvar tileZoom = Math.round(zoom);\n  \t\tif ((this.options.maxZoom !== undefined && tileZoom > this.options.maxZoom) ||\n  \t\t    (this.options.minZoom !== undefined && tileZoom < this.options.minZoom)) {\n  \t\t\ttileZoom = undefined;\n  \t\t} else {\n  \t\t\ttileZoom = this._clampZoom(tileZoom);\n  \t\t}\n\n  \t\tvar tileZoomChanged = this.options.updateWhenZooming && (tileZoom !== this._tileZoom);\n\n  \t\tif (!noUpdate || tileZoomChanged) {\n\n  \t\t\tthis._tileZoom = tileZoom;\n\n  \t\t\tif (this._abortLoading) {\n  \t\t\t\tthis._abortLoading();\n  \t\t\t}\n\n  \t\t\tthis._updateLevels();\n  \t\t\tthis._resetGrid();\n\n  \t\t\tif (tileZoom !== undefined) {\n  \t\t\t\tthis._update(center);\n  \t\t\t}\n\n  \t\t\tif (!noPrune) {\n  \t\t\t\tthis._pruneTiles();\n  \t\t\t}\n\n  \t\t\t// Flag to prevent _updateOpacity from pruning tiles during\n  \t\t\t// a zoom anim or a pinch gesture\n  \t\t\tthis._noPrune = !!noPrune;\n  \t\t}\n\n  \t\tthis._setZoomTransforms(center, zoom);\n  \t},\n\n  \t_setZoomTransforms: function (center, zoom) {\n  \t\tfor (var i in this._levels) {\n  \t\t\tthis._setZoomTransform(this._levels[i], center, zoom);\n  \t\t}\n  \t},\n\n  \t_setZoomTransform: function (level, center, zoom) {\n  \t\tvar scale = this._map.getZoomScale(zoom, level.zoom),\n  \t\t    translate = level.origin.multiplyBy(scale)\n  \t\t        .subtract(this._map._getNewPixelOrigin(center, zoom)).round();\n\n  \t\tif (any3d) {\n  \t\t\tsetTransform(level.el, translate, scale);\n  \t\t} else {\n  \t\t\tsetPosition(level.el, translate);\n  \t\t}\n  \t},\n\n  \t_resetGrid: function () {\n  \t\tvar map = this._map,\n  \t\t    crs = map.options.crs,\n  \t\t    tileSize = this._tileSize = this.getTileSize(),\n  \t\t    tileZoom = this._tileZoom;\n\n  \t\tvar bounds = this._map.getPixelWorldBounds(this._tileZoom);\n  \t\tif (bounds) {\n  \t\t\tthis._globalTileRange = this._pxBoundsToTileRange(bounds);\n  \t\t}\n\n  \t\tthis._wrapX = crs.wrapLng && !this.options.noWrap && [\n  \t\t\tMath.floor(map.project([0, crs.wrapLng[0]], tileZoom).x / tileSize.x),\n  \t\t\tMath.ceil(map.project([0, crs.wrapLng[1]], tileZoom).x / tileSize.y)\n  \t\t];\n  \t\tthis._wrapY = crs.wrapLat && !this.options.noWrap && [\n  \t\t\tMath.floor(map.project([crs.wrapLat[0], 0], tileZoom).y / tileSize.x),\n  \t\t\tMath.ceil(map.project([crs.wrapLat[1], 0], tileZoom).y / tileSize.y)\n  \t\t];\n  \t},\n\n  \t_onMoveEnd: function () {\n  \t\tif (!this._map || this._map._animatingZoom) { return; }\n\n  \t\tthis._update();\n  \t},\n\n  \t_getTiledPixelBounds: function (center) {\n  \t\tvar map = this._map,\n  \t\t    mapZoom = map._animatingZoom ? Math.max(map._animateToZoom, map.getZoom()) : map.getZoom(),\n  \t\t    scale = map.getZoomScale(mapZoom, this._tileZoom),\n  \t\t    pixelCenter = map.project(center, this._tileZoom).floor(),\n  \t\t    halfSize = map.getSize().divideBy(scale * 2);\n\n  \t\treturn new Bounds(pixelCenter.subtract(halfSize), pixelCenter.add(halfSize));\n  \t},\n\n  \t// Private method to load tiles in the grid's active zoom level according to map bounds\n  \t_update: function (center) {\n  \t\tvar map = this._map;\n  \t\tif (!map) { return; }\n  \t\tvar zoom = this._clampZoom(map.getZoom());\n\n  \t\tif (center === undefined) { center = map.getCenter(); }\n  \t\tif (this._tileZoom === undefined) { return; }\t// if out of minzoom/maxzoom\n\n  \t\tvar pixelBounds = this._getTiledPixelBounds(center),\n  \t\t    tileRange = this._pxBoundsToTileRange(pixelBounds),\n  \t\t    tileCenter = tileRange.getCenter(),\n  \t\t    queue = [],\n  \t\t    margin = this.options.keepBuffer,\n  \t\t    noPruneRange = new Bounds(tileRange.getBottomLeft().subtract([margin, -margin]),\n  \t\t                              tileRange.getTopRight().add([margin, -margin]));\n\n  \t\t// Sanity check: panic if the tile range contains Infinity somewhere.\n  \t\tif (!(isFinite(tileRange.min.x) &&\n  \t\t      isFinite(tileRange.min.y) &&\n  \t\t      isFinite(tileRange.max.x) &&\n  \t\t      isFinite(tileRange.max.y))) { throw new Error('Attempted to load an infinite number of tiles'); }\n\n  \t\tfor (var key in this._tiles) {\n  \t\t\tvar c = this._tiles[key].coords;\n  \t\t\tif (c.z !== this._tileZoom || !noPruneRange.contains(new Point(c.x, c.y))) {\n  \t\t\t\tthis._tiles[key].current = false;\n  \t\t\t}\n  \t\t}\n\n  \t\t// _update just loads more tiles. If the tile zoom level differs too much\n  \t\t// from the map's, let _setView reset levels and prune old tiles.\n  \t\tif (Math.abs(zoom - this._tileZoom) > 1) { this._setView(center, zoom); return; }\n\n  \t\t// create a queue of coordinates to load tiles from\n  \t\tfor (var j = tileRange.min.y; j <= tileRange.max.y; j++) {\n  \t\t\tfor (var i = tileRange.min.x; i <= tileRange.max.x; i++) {\n  \t\t\t\tvar coords = new Point(i, j);\n  \t\t\t\tcoords.z = this._tileZoom;\n\n  \t\t\t\tif (!this._isValidTile(coords)) { continue; }\n\n  \t\t\t\tvar tile = this._tiles[this._tileCoordsToKey(coords)];\n  \t\t\t\tif (tile) {\n  \t\t\t\t\ttile.current = true;\n  \t\t\t\t} else {\n  \t\t\t\t\tqueue.push(coords);\n  \t\t\t\t}\n  \t\t\t}\n  \t\t}\n\n  \t\t// sort tile queue to load tiles in order of their distance to center\n  \t\tqueue.sort(function (a, b) {\n  \t\t\treturn a.distanceTo(tileCenter) - b.distanceTo(tileCenter);\n  \t\t});\n\n  \t\tif (queue.length !== 0) {\n  \t\t\t// if it's the first batch of tiles to load\n  \t\t\tif (!this._loading) {\n  \t\t\t\tthis._loading = true;\n  \t\t\t\t// @event loading: Event\n  \t\t\t\t// Fired when the grid layer starts loading tiles.\n  \t\t\t\tthis.fire('loading');\n  \t\t\t}\n\n  \t\t\t// create DOM fragment to append tiles in one batch\n  \t\t\tvar fragment = document.createDocumentFragment();\n\n  \t\t\tfor (i = 0; i < queue.length; i++) {\n  \t\t\t\tthis._addTile(queue[i], fragment);\n  \t\t\t}\n\n  \t\t\tthis._level.el.appendChild(fragment);\n  \t\t}\n  \t},\n\n  \t_isValidTile: function (coords) {\n  \t\tvar crs = this._map.options.crs;\n\n  \t\tif (!crs.infinite) {\n  \t\t\t// don't load tile if it's out of bounds and not wrapped\n  \t\t\tvar bounds = this._globalTileRange;\n  \t\t\tif ((!crs.wrapLng && (coords.x < bounds.min.x || coords.x > bounds.max.x)) ||\n  \t\t\t    (!crs.wrapLat && (coords.y < bounds.min.y || coords.y > bounds.max.y))) { return false; }\n  \t\t}\n\n  \t\tif (!this.options.bounds) { return true; }\n\n  \t\t// don't load tile if it doesn't intersect the bounds in options\n  \t\tvar tileBounds = this._tileCoordsToBounds(coords);\n  \t\treturn toLatLngBounds(this.options.bounds).overlaps(tileBounds);\n  \t},\n\n  \t_keyToBounds: function (key) {\n  \t\treturn this._tileCoordsToBounds(this._keyToTileCoords(key));\n  \t},\n\n  \t_tileCoordsToNwSe: function (coords) {\n  \t\tvar map = this._map,\n  \t\t    tileSize = this.getTileSize(),\n  \t\t    nwPoint = coords.scaleBy(tileSize),\n  \t\t    sePoint = nwPoint.add(tileSize),\n  \t\t    nw = map.unproject(nwPoint, coords.z),\n  \t\t    se = map.unproject(sePoint, coords.z);\n  \t\treturn [nw, se];\n  \t},\n\n  \t// converts tile coordinates to its geographical bounds\n  \t_tileCoordsToBounds: function (coords) {\n  \t\tvar bp = this._tileCoordsToNwSe(coords),\n  \t\t    bounds = new LatLngBounds(bp[0], bp[1]);\n\n  \t\tif (!this.options.noWrap) {\n  \t\t\tbounds = this._map.wrapLatLngBounds(bounds);\n  \t\t}\n  \t\treturn bounds;\n  \t},\n  \t// converts tile coordinates to key for the tile cache\n  \t_tileCoordsToKey: function (coords) {\n  \t\treturn coords.x + ':' + coords.y + ':' + coords.z;\n  \t},\n\n  \t// converts tile cache key to coordinates\n  \t_keyToTileCoords: function (key) {\n  \t\tvar k = key.split(':'),\n  \t\t    coords = new Point(+k[0], +k[1]);\n  \t\tcoords.z = +k[2];\n  \t\treturn coords;\n  \t},\n\n  \t_removeTile: function (key) {\n  \t\tvar tile = this._tiles[key];\n  \t\tif (!tile) { return; }\n\n  \t\tremove(tile.el);\n\n  \t\tdelete this._tiles[key];\n\n  \t\t// @event tileunload: TileEvent\n  \t\t// Fired when a tile is removed (e.g. when a tile goes off the screen).\n  \t\tthis.fire('tileunload', {\n  \t\t\ttile: tile.el,\n  \t\t\tcoords: this._keyToTileCoords(key)\n  \t\t});\n  \t},\n\n  \t_initTile: function (tile) {\n  \t\taddClass(tile, 'leaflet-tile');\n\n  \t\tvar tileSize = this.getTileSize();\n  \t\ttile.style.width = tileSize.x + 'px';\n  \t\ttile.style.height = tileSize.y + 'px';\n\n  \t\ttile.onselectstart = falseFn;\n  \t\ttile.onmousemove = falseFn;\n\n  \t\t// update opacity on tiles in IE7-8 because of filter inheritance problems\n  \t\tif (ielt9 && this.options.opacity < 1) {\n  \t\t\tsetOpacity(tile, this.options.opacity);\n  \t\t}\n\n  \t\t// without this hack, tiles disappear after zoom on Chrome for Android\n  \t\t// https://github.com/Leaflet/Leaflet/issues/2078\n  \t\tif (android && !android23) {\n  \t\t\ttile.style.WebkitBackfaceVisibility = 'hidden';\n  \t\t}\n  \t},\n\n  \t_addTile: function (coords, container) {\n  \t\tvar tilePos = this._getTilePos(coords),\n  \t\t    key = this._tileCoordsToKey(coords);\n\n  \t\tvar tile = this.createTile(this._wrapCoords(coords), bind(this._tileReady, this, coords));\n\n  \t\tthis._initTile(tile);\n\n  \t\t// if createTile is defined with a second argument (\"done\" callback),\n  \t\t// we know that tile is async and will be ready later; otherwise\n  \t\tif (this.createTile.length < 2) {\n  \t\t\t// mark tile as ready, but delay one frame for opacity animation to happen\n  \t\t\trequestAnimFrame(bind(this._tileReady, this, coords, null, tile));\n  \t\t}\n\n  \t\tsetPosition(tile, tilePos);\n\n  \t\t// save tile in cache\n  \t\tthis._tiles[key] = {\n  \t\t\tel: tile,\n  \t\t\tcoords: coords,\n  \t\t\tcurrent: true\n  \t\t};\n\n  \t\tcontainer.appendChild(tile);\n  \t\t// @event tileloadstart: TileEvent\n  \t\t// Fired when a tile is requested and starts loading.\n  \t\tthis.fire('tileloadstart', {\n  \t\t\ttile: tile,\n  \t\t\tcoords: coords\n  \t\t});\n  \t},\n\n  \t_tileReady: function (coords, err, tile) {\n  \t\tif (err) {\n  \t\t\t// @event tileerror: TileErrorEvent\n  \t\t\t// Fired when there is an error loading a tile.\n  \t\t\tthis.fire('tileerror', {\n  \t\t\t\terror: err,\n  \t\t\t\ttile: tile,\n  \t\t\t\tcoords: coords\n  \t\t\t});\n  \t\t}\n\n  \t\tvar key = this._tileCoordsToKey(coords);\n\n  \t\ttile = this._tiles[key];\n  \t\tif (!tile) { return; }\n\n  \t\ttile.loaded = +new Date();\n  \t\tif (this._map._fadeAnimated) {\n  \t\t\tsetOpacity(tile.el, 0);\n  \t\t\tcancelAnimFrame(this._fadeFrame);\n  \t\t\tthis._fadeFrame = requestAnimFrame(this._updateOpacity, this);\n  \t\t} else {\n  \t\t\ttile.active = true;\n  \t\t\tthis._pruneTiles();\n  \t\t}\n\n  \t\tif (!err) {\n  \t\t\taddClass(tile.el, 'leaflet-tile-loaded');\n\n  \t\t\t// @event tileload: TileEvent\n  \t\t\t// Fired when a tile loads.\n  \t\t\tthis.fire('tileload', {\n  \t\t\t\ttile: tile.el,\n  \t\t\t\tcoords: coords\n  \t\t\t});\n  \t\t}\n\n  \t\tif (this._noTilesToLoad()) {\n  \t\t\tthis._loading = false;\n  \t\t\t// @event load: Event\n  \t\t\t// Fired when the grid layer loaded all visible tiles.\n  \t\t\tthis.fire('load');\n\n  \t\t\tif (ielt9 || !this._map._fadeAnimated) {\n  \t\t\t\trequestAnimFrame(this._pruneTiles, this);\n  \t\t\t} else {\n  \t\t\t\t// Wait a bit more than 0.2 secs (the duration of the tile fade-in)\n  \t\t\t\t// to trigger a pruning.\n  \t\t\t\tsetTimeout(bind(this._pruneTiles, this), 250);\n  \t\t\t}\n  \t\t}\n  \t},\n\n  \t_getTilePos: function (coords) {\n  \t\treturn coords.scaleBy(this.getTileSize()).subtract(this._level.origin);\n  \t},\n\n  \t_wrapCoords: function (coords) {\n  \t\tvar newCoords = new Point(\n  \t\t\tthis._wrapX ? wrapNum(coords.x, this._wrapX) : coords.x,\n  \t\t\tthis._wrapY ? wrapNum(coords.y, this._wrapY) : coords.y);\n  \t\tnewCoords.z = coords.z;\n  \t\treturn newCoords;\n  \t},\n\n  \t_pxBoundsToTileRange: function (bounds) {\n  \t\tvar tileSize = this.getTileSize();\n  \t\treturn new Bounds(\n  \t\t\tbounds.min.unscaleBy(tileSize).floor(),\n  \t\t\tbounds.max.unscaleBy(tileSize).ceil().subtract([1, 1]));\n  \t},\n\n  \t_noTilesToLoad: function () {\n  \t\tfor (var key in this._tiles) {\n  \t\t\tif (!this._tiles[key].loaded) { return false; }\n  \t\t}\n  \t\treturn true;\n  \t}\n  });\n\n  // @factory L.gridLayer(options?: GridLayer options)\n  // Creates a new instance of GridLayer with the supplied options.\n  function gridLayer(options) {\n  \treturn new GridLayer(options);\n  }\n\n  /*\r\n   * @class TileLayer\r\n   * @inherits GridLayer\r\n   * @aka L.TileLayer\r\n   * Used to load and display tile layers on the map. Note that most tile servers require attribution, which you can set under `Layer`. Extends `GridLayer`.\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * L.tileLayer('https://{s}.tile.openstreetmap.org/{z}/{x}/{y}.png?{foo}', {foo: 'bar', attribution: 'Map data &copy; <a href=\"https://www.openstreetmap.org/\">OpenStreetMap</a> contributors, <a href=\"https://creativecommons.org/licenses/by-sa/2.0/\">CC-BY-SA</a>'}).addTo(map);\r\n   * ```\r\n   *\r\n   * @section URL template\r\n   * @example\r\n   *\r\n   * A string of the following form:\r\n   *\r\n   * ```\r\n   * 'http://{s}.somedomain.com/blabla/{z}/{x}/{y}{r}.png'\r\n   * ```\r\n   *\r\n   * `{s}` means one of the available subdomains (used sequentially to help with browser parallel requests per domain limitation; subdomain values are specified in options; `a`, `b` or `c` by default, can be omitted), `{z}` ā€” zoom level, `{x}` and `{y}` ā€” tile coordinates. `{r}` can be used to add \"&commat;2x\" to the URL to load retina tiles.\r\n   *\r\n   * You can use custom keys in the template, which will be [evaluated](#util-template) from TileLayer options, like this:\r\n   *\r\n   * ```\r\n   * L.tileLayer('http://{s}.somedomain.com/{foo}/{z}/{x}/{y}.png', {foo: 'bar'});\r\n   * ```\r\n   */\r\n\r\n\r\n  var TileLayer = GridLayer.extend({\r\n\r\n  \t// @section\r\n  \t// @aka TileLayer options\r\n  \toptions: {\r\n  \t\t// @option minZoom: Number = 0\r\n  \t\t// The minimum zoom level down to which this layer will be displayed (inclusive).\r\n  \t\tminZoom: 0,\r\n\r\n  \t\t// @option maxZoom: Number = 18\r\n  \t\t// The maximum zoom level up to which this layer will be displayed (inclusive).\r\n  \t\tmaxZoom: 18,\r\n\r\n  \t\t// @option subdomains: String|String[] = 'abc'\r\n  \t\t// Subdomains of the tile service. Can be passed in the form of one string (where each letter is a subdomain name) or an array of strings.\r\n  \t\tsubdomains: 'abc',\r\n\r\n  \t\t// @option errorTileUrl: String = ''\r\n  \t\t// URL to the tile image to show in place of the tile that failed to load.\r\n  \t\terrorTileUrl: '',\r\n\r\n  \t\t// @option zoomOffset: Number = 0\r\n  \t\t// The zoom number used in tile URLs will be offset with this value.\r\n  \t\tzoomOffset: 0,\r\n\r\n  \t\t// @option tms: Boolean = false\r\n  \t\t// If `true`, inverses Y axis numbering for tiles (turn this on for [TMS](https://en.wikipedia.org/wiki/Tile_Map_Service) services).\r\n  \t\ttms: false,\r\n\r\n  \t\t// @option zoomReverse: Boolean = false\r\n  \t\t// If set to true, the zoom number used in tile URLs will be reversed (`maxZoom - zoom` instead of `zoom`)\r\n  \t\tzoomReverse: false,\r\n\r\n  \t\t// @option detectRetina: Boolean = false\r\n  \t\t// If `true` and user is on a retina display, it will request four tiles of half the specified size and a bigger zoom level in place of one to utilize the high resolution.\r\n  \t\tdetectRetina: false,\r\n\r\n  \t\t// @option crossOrigin: Boolean|String = false\r\n  \t\t// Whether the crossOrigin attribute will be added to the tiles.\r\n  \t\t// If a String is provided, all tiles will have their crossOrigin attribute set to the String provided. This is needed if you want to access tile pixel data.\r\n  \t\t// Refer to [CORS Settings](https://developer.mozilla.org/en-US/docs/Web/HTML/CORS_settings_attributes) for valid String values.\r\n  \t\tcrossOrigin: false\r\n  \t},\r\n\r\n  \tinitialize: function (url, options) {\r\n\r\n  \t\tthis._url = url;\r\n\r\n  \t\toptions = setOptions(this, options);\r\n\r\n  \t\t// detecting retina displays, adjusting tileSize and zoom levels\r\n  \t\tif (options.detectRetina && retina && options.maxZoom > 0) {\r\n\r\n  \t\t\toptions.tileSize = Math.floor(options.tileSize / 2);\r\n\r\n  \t\t\tif (!options.zoomReverse) {\r\n  \t\t\t\toptions.zoomOffset++;\r\n  \t\t\t\toptions.maxZoom--;\r\n  \t\t\t} else {\r\n  \t\t\t\toptions.zoomOffset--;\r\n  \t\t\t\toptions.minZoom++;\r\n  \t\t\t}\r\n\r\n  \t\t\toptions.minZoom = Math.max(0, options.minZoom);\r\n  \t\t}\r\n\r\n  \t\tif (typeof options.subdomains === 'string') {\r\n  \t\t\toptions.subdomains = options.subdomains.split('');\r\n  \t\t}\r\n\r\n  \t\t// for https://github.com/Leaflet/Leaflet/issues/137\r\n  \t\tif (!android) {\r\n  \t\t\tthis.on('tileunload', this._onTileRemove);\r\n  \t\t}\r\n  \t},\r\n\r\n  \t// @method setUrl(url: String, noRedraw?: Boolean): this\r\n  \t// Updates the layer's URL template and redraws it (unless `noRedraw` is set to `true`).\r\n  \t// If the URL does not change, the layer will not be redrawn unless\r\n  \t// the noRedraw parameter is set to false.\r\n  \tsetUrl: function (url, noRedraw) {\r\n  \t\tif (this._url === url && noRedraw === undefined) {\r\n  \t\t\tnoRedraw = true;\r\n  \t\t}\r\n\r\n  \t\tthis._url = url;\r\n\r\n  \t\tif (!noRedraw) {\r\n  \t\t\tthis.redraw();\r\n  \t\t}\r\n  \t\treturn this;\r\n  \t},\r\n\r\n  \t// @method createTile(coords: Object, done?: Function): HTMLElement\r\n  \t// Called only internally, overrides GridLayer's [`createTile()`](#gridlayer-createtile)\r\n  \t// to return an `<img>` HTML element with the appropriate image URL given `coords`. The `done`\r\n  \t// callback is called when the tile has been loaded.\r\n  \tcreateTile: function (coords, done) {\r\n  \t\tvar tile = document.createElement('img');\r\n\r\n  \t\ton(tile, 'load', bind(this._tileOnLoad, this, done, tile));\r\n  \t\ton(tile, 'error', bind(this._tileOnError, this, done, tile));\r\n\r\n  \t\tif (this.options.crossOrigin || this.options.crossOrigin === '') {\r\n  \t\t\ttile.crossOrigin = this.options.crossOrigin === true ? '' : this.options.crossOrigin;\r\n  \t\t}\r\n\r\n  \t\t/*\r\n  \t\t Alt tag is set to empty string to keep screen readers from reading URL and for compliance reasons\r\n  \t\t http://www.w3.org/TR/WCAG20-TECHS/H67\r\n  \t\t*/\r\n  \t\ttile.alt = '';\r\n\r\n  \t\t/*\r\n  \t\t Set role=\"presentation\" to force screen readers to ignore this\r\n  \t\t https://www.w3.org/TR/wai-aria/roles#textalternativecomputation\r\n  \t\t*/\r\n  \t\ttile.setAttribute('role', 'presentation');\r\n\r\n  \t\ttile.src = this.getTileUrl(coords);\r\n\r\n  \t\treturn tile;\r\n  \t},\r\n\r\n  \t// @section Extension methods\r\n  \t// @uninheritable\r\n  \t// Layers extending `TileLayer` might reimplement the following method.\r\n  \t// @method getTileUrl(coords: Object): String\r\n  \t// Called only internally, returns the URL for a tile given its coordinates.\r\n  \t// Classes extending `TileLayer` can override this function to provide custom tile URL naming schemes.\r\n  \tgetTileUrl: function (coords) {\r\n  \t\tvar data = {\r\n  \t\t\tr: retina ? '@2x' : '',\r\n  \t\t\ts: this._getSubdomain(coords),\r\n  \t\t\tx: coords.x,\r\n  \t\t\ty: coords.y,\r\n  \t\t\tz: this._getZoomForUrl()\r\n  \t\t};\r\n  \t\tif (this._map && !this._map.options.crs.infinite) {\r\n  \t\t\tvar invertedY = this._globalTileRange.max.y - coords.y;\r\n  \t\t\tif (this.options.tms) {\r\n  \t\t\t\tdata['y'] = invertedY;\r\n  \t\t\t}\r\n  \t\t\tdata['-y'] = invertedY;\r\n  \t\t}\r\n\r\n  \t\treturn template(this._url, extend(data, this.options));\r\n  \t},\r\n\r\n  \t_tileOnLoad: function (done, tile) {\r\n  \t\t// For https://github.com/Leaflet/Leaflet/issues/3332\r\n  \t\tif (ielt9) {\r\n  \t\t\tsetTimeout(bind(done, this, null, tile), 0);\r\n  \t\t} else {\r\n  \t\t\tdone(null, tile);\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_tileOnError: function (done, tile, e) {\r\n  \t\tvar errorUrl = this.options.errorTileUrl;\r\n  \t\tif (errorUrl && tile.getAttribute('src') !== errorUrl) {\r\n  \t\t\ttile.src = errorUrl;\r\n  \t\t}\r\n  \t\tdone(e, tile);\r\n  \t},\r\n\r\n  \t_onTileRemove: function (e) {\r\n  \t\te.tile.onload = null;\r\n  \t},\r\n\r\n  \t_getZoomForUrl: function () {\r\n  \t\tvar zoom = this._tileZoom,\r\n  \t\tmaxZoom = this.options.maxZoom,\r\n  \t\tzoomReverse = this.options.zoomReverse,\r\n  \t\tzoomOffset = this.options.zoomOffset;\r\n\r\n  \t\tif (zoomReverse) {\r\n  \t\t\tzoom = maxZoom - zoom;\r\n  \t\t}\r\n\r\n  \t\treturn zoom + zoomOffset;\r\n  \t},\r\n\r\n  \t_getSubdomain: function (tilePoint) {\r\n  \t\tvar index = Math.abs(tilePoint.x + tilePoint.y) % this.options.subdomains.length;\r\n  \t\treturn this.options.subdomains[index];\r\n  \t},\r\n\r\n  \t// stops loading all tiles in the background layer\r\n  \t_abortLoading: function () {\r\n  \t\tvar i, tile;\r\n  \t\tfor (i in this._tiles) {\r\n  \t\t\tif (this._tiles[i].coords.z !== this._tileZoom) {\r\n  \t\t\t\ttile = this._tiles[i].el;\r\n\r\n  \t\t\t\ttile.onload = falseFn;\r\n  \t\t\t\ttile.onerror = falseFn;\r\n\r\n  \t\t\t\tif (!tile.complete) {\r\n  \t\t\t\t\ttile.src = emptyImageUrl;\r\n  \t\t\t\t\tremove(tile);\r\n  \t\t\t\t\tdelete this._tiles[i];\r\n  \t\t\t\t}\r\n  \t\t\t}\r\n  \t\t}\r\n  \t},\r\n\r\n  \t_removeTile: function (key) {\r\n  \t\tvar tile = this._tiles[key];\r\n  \t\tif (!tile) { return; }\r\n\r\n  \t\t// Cancels any pending http requests associated with the tile\r\n  \t\t// unless we're on Android's stock browser,\r\n  \t\t// see https://github.com/Leaflet/Leaflet/issues/137\r\n  \t\tif (!androidStock) {\r\n  \t\t\ttile.el.setAttribute('src', emptyImageUrl);\r\n  \t\t}\r\n\r\n  \t\treturn GridLayer.prototype._removeTile.call(this, key);\r\n  \t},\r\n\r\n  \t_tileReady: function (coords, err, tile) {\r\n  \t\tif (!this._map || (tile && tile.getAttribute('src') === emptyImageUrl)) {\r\n  \t\t\treturn;\r\n  \t\t}\r\n\r\n  \t\treturn GridLayer.prototype._tileReady.call(this, coords, err, tile);\r\n  \t}\r\n  });\r\n\r\n\r\n  // @factory L.tilelayer(urlTemplate: String, options?: TileLayer options)\r\n  // Instantiates a tile layer object given a `URL template` and optionally an options object.\r\n\r\n  function tileLayer(url, options) {\r\n  \treturn new TileLayer(url, options);\r\n  }\n\n  /*\r\n   * @class TileLayer.WMS\r\n   * @inherits TileLayer\r\n   * @aka L.TileLayer.WMS\r\n   * Used to display [WMS](https://en.wikipedia.org/wiki/Web_Map_Service) services as tile layers on the map. Extends `TileLayer`.\r\n   *\r\n   * @example\r\n   *\r\n   * ```js\r\n   * var nexrad = L.tileLayer.wms(\"http://mesonet.agron.iastate.edu/cgi-bin/wms/nexrad/n0r.cgi\", {\r\n   * \tlayers: 'nexrad-n0r-900913',\r\n   * \tformat: 'image/png',\r\n   * \ttransparent: true,\r\n   * \tattribution: \"Weather data Ā© 2012 IEM Nexrad\"\r\n   * });\r\n   * ```\r\n   */\r\n\r\n  var TileLayerWMS = TileLayer.extend({\r\n\r\n  \t// @section\r\n  \t// @aka TileLayer.WMS options\r\n  \t// If any custom options not documented here are used, they will be sent to the\r\n  \t// WMS server as extra parameters in each request URL. This can be useful for\r\n  \t// [non-standard vendor WMS parameters](http://docs.geoserver.org/stable/en/user/services/wms/vendor.html).\r\n  \tdefaultWmsParams: {\r\n  \t\tservice: 'WMS',\r\n  \t\trequest: 'GetMap',\r\n\r\n  \t\t// @option layers: String = ''\r\n  \t\t// **(required)** Comma-separated list of WMS layers to show.\r\n  \t\tlayers: '',\r\n\r\n  \t\t// @option styles: String = ''\r\n  \t\t// Comma-separated list of WMS styles.\r\n  \t\tstyles: '',\r\n\r\n  \t\t// @option format: String = 'image/jpeg'\r\n  \t\t// WMS image format (use `'image/png'` for layers with transparency).\r\n  \t\tformat: 'image/jpeg',\r\n\r\n  \t\t// @option transparent: Boolean = false\r\n  \t\t// If `true`, the WMS service will return images with transparency.\r\n  \t\ttransparent: false,\r\n\r\n  \t\t// @option version: String = '1.1.1'\r\n  \t\t// Version of the WMS service to use\r\n  \t\tversion: '1.1.1'\r\n  \t},\r\n\r\n  \toptions: {\r\n  \t\t// @option crs: CRS = null\r\n  \t\t// Coordinate Reference System to use for the WMS requests, defaults to\r\n  \t\t// map CRS. Don't change this if you're not sure what it means.\r\n  \t\tcrs: null,\r\n\r\n  \t\t// @option uppercase: Boolean = false\r\n  \t\t// If `true`, WMS request parameter keys will be uppercase.\r\n  \t\tuppercase: false\r\n  \t},\r\n\r\n  \tinitialize: function (url, options) {\r\n\r\n  \t\tthis._url = url;\r\n\r\n  \t\tvar wmsParams = extend({}, this.defaultWmsParams);\r\n\r\n  \t\t// all keys that are not TileLayer options go to WMS params\r\n  \t\tfor (var i in options) {\r\n  \t\t\tif (!(i in this.options)) {\r\n  \t\t\t\twmsParams[i] = options[i];\r\n  \t\t\t}\r\n  \t\t}\r\n\r\n  \t\toptions = setOptions(this, options);\r\n\r\n  \t\tvar realRetina = options.detectRetina && retina ? 2 : 1;\r\n  \t\tvar tileSize = this.getTileSize();\r\n  \t\twmsParams.width = tileSize.x * realRetina;\r\n  \t\twmsParams.height = tileSize.y * realRetina;\r\n\r\n  \t\tthis.wmsParams = wmsParams;\r\n  \t},\r\n\r\n  \tonAdd: function (map) {\r\n\r\n  \t\tthis._crs = this.options.crs || map.options.crs;\r\n  \t\tthis._wmsVersion = parseFloat(this.wmsParams.version);\r\n\r\n  \t\tvar projectionKey = this._wmsVersion >= 1.3 ? 'crs' : 'srs';\r\n  \t\tthis.wmsParams[projectionKey] = this._crs.code;\r\n\r\n  \t\tTileLayer.prototype.onAdd.call(this, map);\r\n  \t},\r\n\r\n  \tgetTileUrl: function (coords) {\r\n\r\n  \t\tvar tileBounds = this._tileCoordsToNwSe(coords),\r\n  \t\t    crs = this._crs,\r\n  \t\t    bounds = toBounds(crs.project(tileBounds[0]), crs.project(tileBounds[1])),\r\n  \t\t    min = bounds.min,\r\n  \t\t    max = bounds.max,\r\n  \t\t    bbox = (this._wmsVersion >= 1.3 && this._crs === EPSG4326 ?\r\n  \t\t    [min.y, min.x, max.y, max.x] :\r\n  \t\t    [min.x, min.y, max.x, max.y]).join(','),\r\n  \t\t    url = TileLayer.prototype.getTileUrl.call(this, coords);\r\n  \t\treturn url +\r\n  \t\t\tgetParamString(this.wmsParams, url, this.options.uppercase) +\r\n  \t\t\t(this.options.uppercase ? '&BBOX=' : '&bbox=') + bbox;\r\n  \t},\r\n\r\n  \t// @method setParams(params: Object, noRedraw?: Boolean): this\r\n  \t// Merges an object with the new parameters and re-requests tiles on the current screen (unless `noRedraw` was set to true).\r\n  \tsetParams: function (params, noRedraw) {\r\n\r\n  \t\textend(this.wmsParams, params);\r\n\r\n  \t\tif (!noRedraw) {\r\n  \t\t\tthis.redraw();\r\n  \t\t}\r\n\r\n  \t\treturn this;\r\n  \t}\r\n  });\r\n\r\n\r\n  // @factory L.tileLayer.wms(baseUrl: String, options: TileLayer.WMS options)\r\n  // Instantiates a WMS tile layer object given a base URL of the WMS service and a WMS parameters/options object.\r\n  function tileLayerWMS(url, options) {\r\n  \treturn new TileLayerWMS(url, options);\r\n  }\n\n  TileLayer.WMS = TileLayerWMS;\n  tileLayer.wms = tileLayerWMS;\n\n  /*\n   * @class Renderer\n   * @inherits Layer\n   * @aka L.Renderer\n   *\n   * Base class for vector renderer implementations (`SVG`, `Canvas`). Handles the\n   * DOM container of the renderer, its bounds, and its zoom animation.\n   *\n   * A `Renderer` works as an implicit layer group for all `Path`s - the renderer\n   * itself can be added or removed to the map. All paths use a renderer, which can\n   * be implicit (the map will decide the type of renderer and use it automatically)\n   * or explicit (using the [`renderer`](#path-renderer) option of the path).\n   *\n   * Do not use this class directly, use `SVG` and `Canvas` instead.\n   *\n   * @event update: Event\n   * Fired when the renderer updates its bounds, center and zoom, for example when\n   * its map has moved\n   */\n\n  var Renderer = Layer.extend({\n\n  \t// @section\n  \t// @aka Renderer options\n  \toptions: {\n  \t\t// @option padding: Number = 0.1\n  \t\t// How much to extend the clip area around the map view (relative to its size)\n  \t\t// e.g. 0.1 would be 10% of map view in each direction\n  \t\tpadding: 0.1,\n\n  \t\t// @option tolerance: Number = 0\n  \t\t// How much to extend click tolerance round a path/object on the map\n  \t\ttolerance : 0\n  \t},\n\n  \tinitialize: function (options) {\n  \t\tsetOptions(this, options);\n  \t\tstamp(this);\n  \t\tthis._layers = this._layers || {};\n  \t},\n\n  \tonAdd: function () {\n  \t\tif (!this._container) {\n  \t\t\tthis._initContainer(); // defined by renderer implementations\n\n  \t\t\tif (this._zoomAnimated) {\n  \t\t\t\taddClass(this._container, 'leaflet-zoom-animated');\n  \t\t\t}\n  \t\t}\n\n  \t\tthis.getPane().appendChild(this._container);\n  \t\tthis._update();\n  \t\tthis.on('update', this._updatePaths, this);\n  \t},\n\n  \tonRemove: function () {\n  \t\tthis.off('update', this._updatePaths, this);\n  \t\tthis._destroyContainer();\n  \t},\n\n  \tgetEvents: function () {\n  \t\tvar events = {\n  \t\t\tviewreset: this._reset,\n  \t\t\tzoom: this._onZoom,\n  \t\t\tmoveend: this._update,\n  \t\t\tzoomend: this._onZoomEnd\n  \t\t};\n  \t\tif (this._zoomAnimated) {\n  \t\t\tevents.zoomanim = this._onAnimZoom;\n  \t\t}\n  \t\treturn events;\n  \t},\n\n  \t_onAnimZoom: function (ev) {\n  \t\tthis._updateTransform(ev.center, ev.zoom);\n  \t},\n\n  \t_onZoom: function () {\n  \t\tthis._updateTransform(this._map.getCenter(), this._map.getZoom());\n  \t},\n\n  \t_updateTransform: function (center, zoom) {\n  \t\tvar scale = this._map.getZoomScale(zoom, this._zoom),\n  \t\t    position = getPosition(this._container),\n  \t\t    viewHalf = this._map.getSize().multiplyBy(0.5 + this.options.padding),\n  \t\t    currentCenterPoint = this._map.project(this._center, zoom),\n  \t\t    destCenterPoint = this._map.project(center, zoom),\n  \t\t    centerOffset = destCenterPoint.subtract(currentCenterPoint),\n\n  \t\t    topLeftOffset = viewHalf.multiplyBy(-scale).add(position).add(viewHalf).subtract(centerOffset);\n\n  \t\tif (any3d) {\n  \t\t\tsetTransform(this._container, topLeftOffset, scale);\n  \t\t} else {\n  \t\t\tsetPosition(this._container, topLeftOffset);\n  \t\t}\n  \t},\n\n  \t_reset: function () {\n  \t\tthis._update();\n  \t\tthis._updateTransform(this._center, this._zoom);\n\n  \t\tfor (var id in this._layers) {\n  \t\t\tthis._layers[id]._reset();\n  \t\t}\n  \t},\n\n  \t_onZoomEnd: function () {\n  \t\tfor (var id in this._layers) {\n  \t\t\tthis._layers[id]._project();\n  \t\t}\n  \t},\n\n  \t_updatePaths: function () {\n  \t\tfor (var id in this._layers) {\n  \t\t\tthis._layers[id]._update();\n  \t\t}\n  \t},\n\n  \t_update: function () {\n  \t\t// Update pixel bounds of renderer container (for positioning/sizing/clipping later)\n  \t\t// Subclasses are responsible of firing the 'update' event.\n  \t\tvar p = this.options.padding,\n  \t\t    size = this._map.getSize(),\n  \t\t    min = this._map.containerPointToLayerPoint(size.multiplyBy(-p)).round();\n\n  \t\tthis._bounds = new Bounds(min, min.add(size.multiplyBy(1 + p * 2)).round());\n\n  \t\tthis._center = this._map.getCenter();\n  \t\tthis._zoom = this._map.getZoom();\n  \t}\n  });\n\n  /*\n   * @class Canvas\n   * @inherits Renderer\n   * @aka L.Canvas\n   *\n   * Allows vector layers to be displayed with [`<canvas>`](https://developer.mozilla.org/docs/Web/API/Canvas_API).\n   * Inherits `Renderer`.\n   *\n   * Due to [technical limitations](http://caniuse.com/#search=canvas), Canvas is not\n   * available in all web browsers, notably IE8, and overlapping geometries might\n   * not display properly in some edge cases.\n   *\n   * @example\n   *\n   * Use Canvas by default for all paths in the map:\n   *\n   * ```js\n   * var map = L.map('map', {\n   * \trenderer: L.canvas()\n   * });\n   * ```\n   *\n   * Use a Canvas renderer with extra padding for specific vector geometries:\n   *\n   * ```js\n   * var map = L.map('map');\n   * var myRenderer = L.canvas({ padding: 0.5 });\n   * var line = L.polyline( coordinates, { renderer: myRenderer } );\n   * var circle = L.circle( center, { renderer: myRenderer } );\n   * ```\n   */\n\n  var Canvas = Renderer.extend({\n  \tgetEvents: function () {\n  \t\tvar events = Renderer.prototype.getEvents.call(this);\n  \t\tevents.viewprereset = this._onViewPreReset;\n  \t\treturn events;\n  \t},\n\n  \t_onViewPreReset: function () {\n  \t\t// Set a flag so that a viewprereset+moveend+viewreset only updates&redraws once\n  \t\tthis._postponeUpdatePaths = true;\n  \t},\n\n  \tonAdd: function () {\n  \t\tRenderer.prototype.onAdd.call(this);\n\n  \t\t// Redraw vectors since canvas is cleared upon removal,\n  \t\t// in case of removing the renderer itself from the map.\n  \t\tthis._draw();\n  \t},\n\n  \t_initContainer: function () {\n  \t\tvar container = this._container = document.createElement('canvas');\n\n  \t\ton(container, 'mousemove', this._onMouseMove, this);\n  \t\ton(container, 'click dblclick mousedown mouseup contextmenu', this._onClick, this);\n  \t\ton(container, 'mouseout', this._handleMouseOut, this);\n\n  \t\tthis._ctx = container.getContext('2d');\n  \t},\n\n  \t_destroyContainer: function () {\n  \t\tcancelAnimFrame(this._redrawRequest);\n  \t\tdelete this._ctx;\n  \t\tremove(this._container);\n  \t\toff(this._container);\n  \t\tdelete this._container;\n  \t},\n\n  \t_updatePaths: function () {\n  \t\tif (this._postponeUpdatePaths) { return; }\n\n  \t\tvar layer;\n  \t\tthis._redrawBounds = null;\n  \t\tfor (var id in this._layers) {\n  \t\t\tlayer = this._layers[id];\n  \t\t\tlayer._update();\n  \t\t}\n  \t\tthis._redraw();\n  \t},\n\n  \t_update: function () {\n  \t\tif (this._map._animatingZoom && this._bounds) { return; }\n\n  \t\tRenderer.prototype._update.call(this);\n\n  \t\tvar b = this._bounds,\n  \t\t    container = this._container,\n  \t\t    size = b.getSize(),\n  \t\t    m = retina ? 2 : 1;\n\n  \t\tsetPosition(container, b.min);\n\n  \t\t// set canvas size (also clearing it); use double size on retina\n  \t\tcontainer.width = m * size.x;\n  \t\tcontainer.height = m * size.y;\n  \t\tcontainer.style.width = size.x + 'px';\n  \t\tcontainer.style.height = size.y + 'px';\n\n  \t\tif (retina) {\n  \t\t\tthis._ctx.scale(2, 2);\n  \t\t}\n\n  \t\t// translate so we use the same path coordinates after canvas element moves\n  \t\tthis._ctx.translate(-b.min.x, -b.min.y);\n\n  \t\t// Tell paths to redraw themselves\n  \t\tthis.fire('update');\n  \t},\n\n  \t_reset: function () {\n  \t\tRenderer.prototype._reset.call(this);\n\n  \t\tif (this._postponeUpdatePaths) {\n  \t\t\tthis._postponeUpdatePaths = false;\n  \t\t\tthis._updatePaths();\n  \t\t}\n  \t},\n\n  \t_initPath: function (layer) {\n  \t\tthis._updateDashArray(layer);\n  \t\tthis._layers[stamp(layer)] = layer;\n\n  \t\tvar order = layer._order = {\n  \t\t\tlayer: layer,\n  \t\t\tprev: this._drawLast,\n  \t\t\tnext: null\n  \t\t};\n  \t\tif (this._drawLast) { this._drawLast.next = order; }\n  \t\tthis._drawLast = order;\n  \t\tthis._drawFirst = this._drawFirst || this._drawLast;\n  \t},\n\n  \t_addPath: function (layer) {\n  \t\tthis._requestRedraw(layer);\n  \t},\n\n  \t_removePath: function (layer) {\n  \t\tvar order = layer._order;\n  \t\tvar next = order.next;\n  \t\tvar prev = order.prev;\n\n  \t\tif (next) {\n  \t\t\tnext.prev = prev;\n  \t\t} else {\n  \t\t\tthis._drawLast = prev;\n  \t\t}\n  \t\tif (prev) {\n  \t\t\tprev.next = next;\n  \t\t} else {\n  \t\t\tthis._drawFirst = next;\n  \t\t}\n\n  \t\tdelete layer._order;\n\n  \t\tdelete this._layers[stamp(layer)];\n\n  \t\tthis._requestRedraw(layer);\n  \t},\n\n  \t_updatePath: function (layer) {\n  \t\t// Redraw the union of the layer's old pixel\n  \t\t// bounds and the new pixel bounds.\n  \t\tthis._extendRedrawBounds(layer);\n  \t\tlayer._project();\n  \t\tlayer._update();\n  \t\t// The redraw will extend the redraw bounds\n  \t\t// with the new pixel bounds.\n  \t\tthis._requestRedraw(layer);\n  \t},\n\n  \t_updateStyle: function (layer) {\n  \t\tthis._updateDashArray(layer);\n  \t\tthis._requestRedraw(layer);\n  \t},\n\n  \t_updateDashArray: function (layer) {\n  \t\tif (typeof layer.options.dashArray === 'string') {\n  \t\t\tvar parts = layer.options.dashArray.split(/[, ]+/),\n  \t\t\t    dashArray = [],\n  \t\t\t    dashValue,\n  \t\t\t    i;\n  \t\t\tfor (i = 0; i < parts.length; i++) {\n  \t\t\t\tdashValue = Number(parts[i]);\n  \t\t\t\t// Ignore dash array containing invalid lengths\n  \t\t\t\tif (isNaN(dashValue)) { return; }\n  \t\t\t\tdashArray.push(dashValue);\n  \t\t\t}\n  \t\t\tlayer.options._dashArray = dashArray;\n  \t\t} else {\n  \t\t\tlayer.options._dashArray = layer.options.dashArray;\n  \t\t}\n  \t},\n\n  \t_requestRedraw: function (layer) {\n  \t\tif (!this._map) { return; }\n\n  \t\tthis._extendRedrawBounds(layer);\n  \t\tthis._redrawRequest = this._redrawRequest || requestAnimFrame(this._redraw, this);\n  \t},\n\n  \t_extendRedrawBounds: function (layer) {\n  \t\tif (layer._pxBounds) {\n  \t\t\tvar padding = (layer.options.weight || 0) + 1;\n  \t\t\tthis._redrawBounds = this._redrawBounds || new Bounds();\n  \t\t\tthis._redrawBounds.extend(layer._pxBounds.min.subtract([padding, padding]));\n  \t\t\tthis._redrawBounds.extend(layer._pxBounds.max.add([padding, padding]));\n  \t\t}\n  \t},\n\n  \t_redraw: function () {\n  \t\tthis._redrawRequest = null;\n\n  \t\tif (this._redrawBounds) {\n  \t\t\tthis._redrawBounds.min._floor();\n  \t\t\tthis._redrawBounds.max._ceil();\n  \t\t}\n\n  \t\tthis._clear(); // clear layers in redraw bounds\n  \t\tthis._draw(); // draw layers\n\n  \t\tthis._redrawBounds = null;\n  \t},\n\n  \t_clear: function () {\n  \t\tvar bounds = this._redrawBounds;\n  \t\tif (bounds) {\n  \t\t\tvar size = bounds.getSize();\n  \t\t\tthis._ctx.clearRect(bounds.min.x, bounds.min.y, size.x, size.y);\n  \t\t} else {\n  \t\t\tthis._ctx.save();\n  \t\t\tthis._ctx.setTransform(1, 0, 0, 1, 0, 0);\n  \t\t\tthis._ctx.clearRect(0, 0, this._container.width, this._container.height);\n  \t\t\tthis._ctx.restore();\n  \t\t}\n  \t},\n\n  \t_draw: function () {\n  \t\tvar layer, bounds = this._redrawBounds;\n  \t\tthis._ctx.save();\n  \t\tif (bounds) {\n  \t\t\tvar size = bounds.getSize();\n  \t\t\tthis._ctx.beginPath();\n  \t\t\tthis._ctx.rect(bounds.min.x, bounds.min.y, size.x, size.y);\n  \t\t\tthis._ctx.clip();\n  \t\t}\n\n  \t\tthis._drawing = true;\n\n  \t\tfor (var order = this._drawFirst; order; order = order.next) {\n  \t\t\tlayer = order.layer;\n  \t\t\tif (!bounds || (layer._pxBounds && layer._pxBounds.intersects(bounds))) {\n  \t\t\t\tlayer._updatePath();\n  \t\t\t}\n  \t\t}\n\n  \t\tthis._drawing = false;\n\n  \t\tthis._ctx.restore();  // Restore state before clipping.\n  \t},\n\n  \t_updatePoly: function (layer, closed) {\n  \t\tif (!this._drawing) { return; }\n\n  \t\tvar i, j, len2, p,\n  \t\t    parts = layer._parts,\n  \t\t    len = parts.length,\n  \t\t    ctx = this._ctx;\n\n  \t\tif (!len) { return; }\n\n  \t\tctx.beginPath();\n\n  \t\tfor (i = 0; i < len; i++) {\n  \t\t\tfor (j = 0, len2 = parts[i].length; j < len2; j++) {\n  \t\t\t\tp = parts[i][j];\n  \t\t\t\tctx[j ? 'lineTo' : 'moveTo'](p.x, p.y);\n  \t\t\t}\n  \t\t\tif (closed) {\n  \t\t\t\tctx.closePath();\n  \t\t\t}\n  \t\t}\n\n  \t\tthis._fillStroke(ctx, layer);\n\n  \t\t// TODO optimization: 1 fill/stroke for all features with equal style instead of 1 for each feature\n  \t},\n\n  \t_updateCircle: function (layer) {\n\n  \t\tif (!this._drawing || layer._empty()) { return; }\n\n  \t\tvar p = layer._point,\n  \t\t    ctx = this._ctx,\n  \t\t    r = Math.max(Math.round(layer._radius), 1),\n  \t\t    s = (Math.max(Math.round(layer._radiusY), 1) || r) / r;\n\n  \t\tif (s !== 1) {\n  \t\t\tctx.save();\n  \t\t\tctx.scale(1, s);\n  \t\t}\n\n  \t\tctx.beginPath();\n  \t\tctx.arc(p.x, p.y / s, r, 0, Math.PI * 2, false);\n\n  \t\tif (s !== 1) {\n  \t\t\tctx.restore();\n  \t\t}\n\n  \t\tthis._fillStroke(ctx, layer);\n  \t},\n\n  \t_fillStroke: function (ctx, layer) {\n  \t\tvar options = layer.options;\n\n  \t\tif (options.fill) {\n  \t\t\tctx.globalAlpha = options.fillOpacity;\n  \t\t\tctx.fillStyle = options.fillColor || options.color;\n  \t\t\tctx.fill(options.fillRule || 'evenodd');\n  \t\t}\n\n  \t\tif (options.stroke && options.weight !== 0) {\n  \t\t\tif (ctx.setLineDash) {\n  \t\t\t\tctx.setLineDash(layer.options && layer.options._dashArray || []);\n  \t\t\t}\n  \t\t\tctx.globalAlpha = options.opacity;\n  \t\t\tctx.lineWidth = options.weight;\n  \t\t\tctx.strokeStyle = options.color;\n  \t\t\tctx.lineCap = options.lineCap;\n  \t\t\tctx.lineJoin = options.lineJoin;\n  \t\t\tctx.stroke();\n  \t\t}\n  \t},\n\n  \t// Canvas obviously doesn't have mouse events for individual drawn objects,\n  \t// so we emulate that by calculating what's under the mouse on mousemove/click manually\n\n  \t_onClick: function (e) {\n  \t\tvar point = this._map.mouseEventToLayerPoint(e), layer, clickedLayer;\n\n  \t\tfor (var order = this._drawFirst; order; order = order.next) {\n  \t\t\tlayer = order.layer;\n  \t\t\tif (layer.options.interactive && layer._containsPoint(point)) {\n  \t\t\t\tif (!(e.type === 'click' || e.type !== 'preclick') || !this._map._draggableMoved(layer)) {\n  \t\t\t\t\tclickedLayer = layer;\n  \t\t\t\t}\n  \t\t\t}\n  \t\t}\n  \t\tif (clickedLayer)  {\n  \t\t\tfakeStop(e);\n  \t\t\tthis._fireEvent([clickedLayer], e);\n  \t\t}\n  \t},\n\n  \t_onMouseMove: function (e) {\n  \t\tif (!this._map || this._map.dragging.moving() || this._map._animatingZoom) { return; }\n\n  \t\tvar point = this._map.mouseEventToLayerPoint(e);\n  \t\tthis._handleMouseHover(e, point);\n  \t},\n\n\n  \t_handleMouseOut: function (e) {\n  \t\tvar layer = this._hoveredLayer;\n  \t\tif (layer) {\n  \t\t\t// if we're leaving the layer, fire mouseout\n  \t\t\tremoveClass(this._container, 'leaflet-interactive');\n  \t\t\tthis._fireEvent([layer], e, 'mouseout');\n  \t\t\tthis._hoveredLayer = null;\n  \t\t\tthis._mouseHoverThrottled = false;\n  \t\t}\n  \t},\n\n  \t_handleMouseHover: function (e, point) {\n  \t\tif (this._mouseHoverThrottled) {\n  \t\t\treturn;\n  \t\t}\n\n  \t\tvar layer, candidateHoveredLayer;\n\n  \t\tfor (var order = this._drawFirst; order; order = order.next) {\n  \t\t\tlayer = order.layer;\n  \t\t\tif (layer.options.interactive && layer._containsPoint(point)) {\n  \t\t\t\tcandidateHoveredLayer = layer;\n  \t\t\t}\n  \t\t}\n\n  \t\tif (candidateHoveredLayer !== this._hoveredLayer) {\n  \t\t\tthis._handleMouseOut(e);\n\n  \t\t\tif (candidateHoveredLayer) {\n  \t\t\t\taddClass(this._container, 'leaflet-interactive'); // change cursor\n  \t\t\t\tthis._fireEvent([candidateHoveredLayer], e, 'mouseover');\n  \t\t\t\tthis._hoveredLayer = candidateHoveredLayer;\n  \t\t\t}\n  \t\t}\n\n  \t\tif (this._hoveredLayer) {\n  \t\t\tthis._fireEvent([this._hoveredLayer], e);\n  \t\t}\n\n  \t\tthis._mouseHoverThrottled = true;\n  \t\tsetTimeout(bind(function () {\n  \t\t\tthis._mouseHoverThrottled = false;\n  \t\t}, this), 32);\n  \t},\n\n  \t_fireEvent: function (layers, e, type) {\n  \t\tthis._map._fireDOMEvent(e, type || e.type, layers);\n  \t},\n\n  \t_bringToFront: function (layer) {\n  \t\tvar order = layer._order;\n\n  \t\tif (!order) { return; }\n\n  \t\tvar next = order.next;\n  \t\tvar prev = order.prev;\n\n  \t\tif (next) {\n  \t\t\tnext.prev = prev;\n  \t\t} else {\n  \t\t\t// Already last\n  \t\t\treturn;\n  \t\t}\n  \t\tif (prev) {\n  \t\t\tprev.next = next;\n  \t\t} else if (next) {\n  \t\t\t// Update first entry unless this is the\n  \t\t\t// single entry\n  \t\t\tthis._drawFirst = next;\n  \t\t}\n\n  \t\torder.prev = this._drawLast;\n  \t\tthis._drawLast.next = order;\n\n  \t\torder.next = null;\n  \t\tthis._drawLast = order;\n\n  \t\tthis._requestRedraw(layer);\n  \t},\n\n  \t_bringToBack: function (layer) {\n  \t\tvar order = layer._order;\n\n  \t\tif (!order) { return; }\n\n  \t\tvar next = order.next;\n  \t\tvar prev = order.prev;\n\n  \t\tif (prev) {\n  \t\t\tprev.next = next;\n  \t\t} else {\n  \t\t\t// Already first\n  \t\t\treturn;\n  \t\t}\n  \t\tif (next) {\n  \t\t\tnext.prev = prev;\n  \t\t} else if (prev) {\n  \t\t\t// Update last entry unless this is the\n  \t\t\t// single entry\n  \t\t\tthis._drawLast = prev;\n  \t\t}\n\n  \t\torder.prev = null;\n\n  \t\torder.next = this._drawFirst;\n  \t\tthis._drawFirst.prev = order;\n  \t\tthis._drawFirst = order;\n\n  \t\tthis._requestRedraw(layer);\n  \t}\n  });\n\n  // @factory L.canvas(options?: Renderer options)\n  // Creates a Canvas renderer with the given options.\n  function canvas$1(options) {\n  \treturn canvas ? new Canvas(options) : null;\n  }\n\n  /*\n   * Thanks to Dmitry Baranovsky and his Raphael library for inspiration!\n   */\n\n\n  var vmlCreate = (function () {\n  \ttry {\n  \t\tdocument.namespaces.add('lvml', 'urn:schemas-microsoft-com:vml');\n  \t\treturn function (name) {\n  \t\t\treturn document.createElement('<lvml:' + name + ' class=\"lvml\">');\n  \t\t};\n  \t} catch (e) {\n  \t\treturn function (name) {\n  \t\t\treturn document.createElement('<' + name + ' xmlns=\"urn:schemas-microsoft.com:vml\" class=\"lvml\">');\n  \t\t};\n  \t}\n  })();\n\n\n  /*\n   * @class SVG\n   *\n   *\n   * VML was deprecated in 2012, which means VML functionality exists only for backwards compatibility\n   * with old versions of Internet Explorer.\n   */\n\n  // mixin to redefine some SVG methods to handle VML syntax which is similar but with some differences\n  var vmlMixin = {\n\n  \t_initContainer: function () {\n  \t\tthis._container = create$1('div', 'leaflet-vml-container');\n  \t},\n\n  \t_update: function () {\n  \t\tif (this._map._animatingZoom) { return; }\n  \t\tRenderer.prototype._update.call(this);\n  \t\tthis.fire('update');\n  \t},\n\n  \t_initPath: function (layer) {\n  \t\tvar container = layer._container = vmlCreate('shape');\n\n  \t\taddClass(container, 'leaflet-vml-shape ' + (this.options.className || ''));\n\n  \t\tcontainer.coordsize = '1 1';\n\n  \t\tlayer._path = vmlCreate('path');\n  \t\tcontainer.appendChild(layer._path);\n\n  \t\tthis._updateStyle(layer);\n  \t\tthis._layers[stamp(layer)] = layer;\n  \t},\n\n  \t_addPath: function (layer) {\n  \t\tvar container = layer._container;\n  \t\tthis._container.appendChild(container);\n\n  \t\tif (layer.options.interactive) {\n  \t\t\tlayer.addInteractiveTarget(container);\n  \t\t}\n  \t},\n\n  \t_removePath: function (layer) {\n  \t\tvar container = layer._container;\n  \t\tremove(container);\n  \t\tlayer.removeInteractiveTarget(container);\n  \t\tdelete this._layers[stamp(layer)];\n  \t},\n\n  \t_updateStyle: function (layer) {\n  \t\tvar stroke = layer._stroke,\n  \t\t    fill = layer._fill,\n  \t\t    options = layer.options,\n  \t\t    container = layer._container;\n\n  \t\tcontainer.stroked = !!options.stroke;\n  \t\tcontainer.filled = !!options.fill;\n\n  \t\tif (options.stroke) {\n  \t\t\tif (!stroke) {\n  \t\t\t\tstroke = layer._stroke = vmlCreate('stroke');\n  \t\t\t}\n  \t\t\tcontainer.appendChild(stroke);\n  \t\t\tstroke.weight = options.weight + 'px';\n  \t\t\tstroke.color = options.color;\n  \t\t\tstroke.opacity = options.opacity;\n\n  \t\t\tif (options.dashArray) {\n  \t\t\t\tstroke.dashStyle = isArray(options.dashArray) ?\n  \t\t\t\t    options.dashArray.join(' ') :\n  \t\t\t\t    options.dashArray.replace(/( *, *)/g, ' ');\n  \t\t\t} else {\n  \t\t\t\tstroke.dashStyle = '';\n  \t\t\t}\n  \t\t\tstroke.endcap = options.lineCap.replace('butt', 'flat');\n  \t\t\tstroke.joinstyle = options.lineJoin;\n\n  \t\t} else if (stroke) {\n  \t\t\tcontainer.removeChild(stroke);\n  \t\t\tlayer._stroke = null;\n  \t\t}\n\n  \t\tif (options.fill) {\n  \t\t\tif (!fill) {\n  \t\t\t\tfill = layer._fill = vmlCreate('fill');\n  \t\t\t}\n  \t\t\tcontainer.appendChild(fill);\n  \t\t\tfill.color = options.fillColor || options.color;\n  \t\t\tfill.opacity = options.fillOpacity;\n\n  \t\t} else if (fill) {\n  \t\t\tcontainer.removeChild(fill);\n  \t\t\tlayer._fill = null;\n  \t\t}\n  \t},\n\n  \t_updateCircle: function (layer) {\n  \t\tvar p = layer._point.round(),\n  \t\t    r = Math.round(layer._radius),\n  \t\t    r2 = Math.round(layer._radiusY || r);\n\n  \t\tthis._setPath(layer, layer._empty() ? 'M0 0' :\n  \t\t\t'AL ' + p.x + ',' + p.y + ' ' + r + ',' + r2 + ' 0,' + (65535 * 360));\n  \t},\n\n  \t_setPath: function (layer, path) {\n  \t\tlayer._path.v = path;\n  \t},\n\n  \t_bringToFront: function (layer) {\n  \t\ttoFront(layer._container);\n  \t},\n\n  \t_bringToBack: function (layer) {\n  \t\ttoBack(layer._container);\n  \t}\n  };\n\n  var create$2 = vml ? vmlCreate : svgCreate;\n\n  /*\n   * @class SVG\n   * @inherits Renderer\n   * @aka L.SVG\n   *\n   * Allows vector layers to be displayed with [SVG](https://developer.mozilla.org/docs/Web/SVG).\n   * Inherits `Renderer`.\n   *\n   * Due to [technical limitations](http://caniuse.com/#search=svg), SVG is not\n   * available in all web browsers, notably Android 2.x and 3.x.\n   *\n   * Although SVG is not available on IE7 and IE8, these browsers support\n   * [VML](https://en.wikipedia.org/wiki/Vector_Markup_Language)\n   * (a now deprecated technology), and the SVG renderer will fall back to VML in\n   * this case.\n   *\n   * @example\n   *\n   * Use SVG by default for all paths in the map:\n   *\n   * ```js\n   * var map = L.map('map', {\n   * \trenderer: L.svg()\n   * });\n   * ```\n   *\n   * Use a SVG renderer with extra padding for specific vector geometries:\n   *\n   * ```js\n   * var map = L.map('map');\n   * var myRenderer = L.svg({ padding: 0.5 });\n   * var line = L.polyline( coordinates, { renderer: myRenderer } );\n   * var circle = L.circle( center, { renderer: myRenderer } );\n   * ```\n   */\n\n  var SVG = Renderer.extend({\n\n  \tgetEvents: function () {\n  \t\tvar events = Renderer.prototype.getEvents.call(this);\n  \t\tevents.zoomstart = this._onZoomStart;\n  \t\treturn events;\n  \t},\n\n  \t_initContainer: function () {\n  \t\tthis._container = create$2('svg');\n\n  \t\t// makes it possible to click through svg root; we'll reset it back in individual paths\n  \t\tthis._container.setAttribute('pointer-events', 'none');\n\n  \t\tthis._rootGroup = create$2('g');\n  \t\tthis._container.appendChild(this._rootGroup);\n  \t},\n\n  \t_destroyContainer: function () {\n  \t\tremove(this._container);\n  \t\toff(this._container);\n  \t\tdelete this._container;\n  \t\tdelete this._rootGroup;\n  \t\tdelete this._svgSize;\n  \t},\n\n  \t_onZoomStart: function () {\n  \t\t// Drag-then-pinch interactions might mess up the center and zoom.\n  \t\t// In this case, the easiest way to prevent this is re-do the renderer\n  \t\t//   bounds and padding when the zooming starts.\n  \t\tthis._update();\n  \t},\n\n  \t_update: function () {\n  \t\tif (this._map._animatingZoom && this._bounds) { return; }\n\n  \t\tRenderer.prototype._update.call(this);\n\n  \t\tvar b = this._bounds,\n  \t\t    size = b.getSize(),\n  \t\t    container = this._container;\n\n  \t\t// set size of svg-container if changed\n  \t\tif (!this._svgSize || !this._svgSize.equals(size)) {\n  \t\t\tthis._svgSize = size;\n  \t\t\tcontainer.setAttribute('width', size.x);\n  \t\t\tcontainer.setAttribute('height', size.y);\n  \t\t}\n\n  \t\t// movement: update container viewBox so that we don't have to change coordinates of individual layers\n  \t\tsetPosition(container, b.min);\n  \t\tcontainer.setAttribute('viewBox', [b.min.x, b.min.y, size.x, size.y].join(' '));\n\n  \t\tthis.fire('update');\n  \t},\n\n  \t// methods below are called by vector layers implementations\n\n  \t_initPath: function (layer) {\n  \t\tvar path = layer._path = create$2('path');\n\n  \t\t// @namespace Path\n  \t\t// @option className: String = null\n  \t\t// Custom class name set on an element. Only for SVG renderer.\n  \t\tif (layer.options.className) {\n  \t\t\taddClass(path, layer.options.className);\n  \t\t}\n\n  \t\tif (layer.options.interactive) {\n  \t\t\taddClass(path, 'leaflet-interactive');\n  \t\t}\n\n  \t\tthis._updateStyle(layer);\n  \t\tthis._layers[stamp(layer)] = layer;\n  \t},\n\n  \t_addPath: function (layer) {\n  \t\tif (!this._rootGroup) { this._initContainer(); }\n  \t\tthis._rootGroup.appendChild(layer._path);\n  \t\tlayer.addInteractiveTarget(layer._path);\n  \t},\n\n  \t_removePath: function (layer) {\n  \t\tremove(layer._path);\n  \t\tlayer.removeInteractiveTarget(layer._path);\n  \t\tdelete this._layers[stamp(layer)];\n  \t},\n\n  \t_updatePath: function (layer) {\n  \t\tlayer._project();\n  \t\tlayer._update();\n  \t},\n\n  \t_updateStyle: function (layer) {\n  \t\tvar path = layer._path,\n  \t\t    options = layer.options;\n\n  \t\tif (!path) { return; }\n\n  \t\tif (options.stroke) {\n  \t\t\tpath.setAttribute('stroke', options.color);\n  \t\t\tpath.setAttribute('stroke-opacity', options.opacity);\n  \t\t\tpath.setAttribute('stroke-width', options.weight);\n  \t\t\tpath.setAttribute('stroke-linecap', options.lineCap);\n  \t\t\tpath.setAttribute('stroke-linejoin', options.lineJoin);\n\n  \t\t\tif (options.dashArray) {\n  \t\t\t\tpath.setAttribute('stroke-dasharray', options.dashArray);\n  \t\t\t} else {\n  \t\t\t\tpath.removeAttribute('stroke-dasharray');\n  \t\t\t}\n\n  \t\t\tif (options.dashOffset) {\n  \t\t\t\tpath.setAttribute('stroke-dashoffset', options.dashOffset);\n  \t\t\t} else {\n  \t\t\t\tpath.removeAttribute('stroke-dashoffset');\n  \t\t\t}\n  \t\t} else {\n  \t\t\tpath.setAttribute('stroke', 'none');\n  \t\t}\n\n  \t\tif (options.fill) {\n  \t\t\tpath.setAttribute('fill', options.fillColor || options.color);\n  \t\t\tpath.setAttribute('fill-opacity', options.fillOpacity);\n  \t\t\tpath.setAttribute('fill-rule', options.fillRule || 'evenodd');\n  \t\t} else {\n  \t\t\tpath.setAttribute('fill', 'none');\n  \t\t}\n  \t},\n\n  \t_updatePoly: function (layer, closed) {\n  \t\tthis._setPath(layer, pointsToPath(layer._parts, closed));\n  \t},\n\n  \t_updateCircle: function (layer) {\n  \t\tvar p = layer._point,\n  \t\t    r = Math.max(Math.round(layer._radius), 1),\n  \t\t    r2 = Math.max(Math.round(layer._radiusY), 1) || r,\n  \t\t    arc = 'a' + r + ',' + r2 + ' 0 1,0 ';\n\n  \t\t// drawing a circle with two half-arcs\n  \t\tvar d = layer._empty() ? 'M0 0' :\n  \t\t\t'M' + (p.x - r) + ',' + p.y +\n  \t\t\tarc + (r * 2) + ',0 ' +\n  \t\t\tarc + (-r * 2) + ',0 ';\n\n  \t\tthis._setPath(layer, d);\n  \t},\n\n  \t_setPath: function (layer, path) {\n  \t\tlayer._path.setAttribute('d', path);\n  \t},\n\n  \t// SVG does not have the concept of zIndex so we resort to changing the DOM order of elements\n  \t_bringToFront: function (layer) {\n  \t\ttoFront(layer._path);\n  \t},\n\n  \t_bringToBack: function (layer) {\n  \t\ttoBack(layer._path);\n  \t}\n  });\n\n  if (vml) {\n  \tSVG.include(vmlMixin);\n  }\n\n  // @namespace SVG\n  // @factory L.svg(options?: Renderer options)\n  // Creates a SVG renderer with the given options.\n  function svg$1(options) {\n  \treturn svg || vml ? new SVG(options) : null;\n  }\n\n  Map.include({\n  \t// @namespace Map; @method getRenderer(layer: Path): Renderer\n  \t// Returns the instance of `Renderer` that should be used to render the given\n  \t// `Path`. It will ensure that the `renderer` options of the map and paths\n  \t// are respected, and that the renderers do exist on the map.\n  \tgetRenderer: function (layer) {\n  \t\t// @namespace Path; @option renderer: Renderer\n  \t\t// Use this specific instance of `Renderer` for this path. Takes\n  \t\t// precedence over the map's [default renderer](#map-renderer).\n  \t\tvar renderer = layer.options.renderer || this._getPaneRenderer(layer.options.pane) || this.options.renderer || this._renderer;\n\n  \t\tif (!renderer) {\n  \t\t\trenderer = this._renderer = this._createRenderer();\n  \t\t}\n\n  \t\tif (!this.hasLayer(renderer)) {\n  \t\t\tthis.addLayer(renderer);\n  \t\t}\n  \t\treturn renderer;\n  \t},\n\n  \t_getPaneRenderer: function (name) {\n  \t\tif (name === 'overlayPane' || name === undefined) {\n  \t\t\treturn false;\n  \t\t}\n\n  \t\tvar renderer = this._paneRenderers[name];\n  \t\tif (renderer === undefined) {\n  \t\t\trenderer = this._createRenderer({pane: name});\n  \t\t\tthis._paneRenderers[name] = renderer;\n  \t\t}\n  \t\treturn renderer;\n  \t},\n\n  \t_createRenderer: function (options) {\n  \t\t// @namespace Map; @option preferCanvas: Boolean = false\n  \t\t// Whether `Path`s should be rendered on a `Canvas` renderer.\n  \t\t// By default, all `Path`s are rendered in a `SVG` renderer.\n  \t\treturn (this.options.preferCanvas && canvas$1(options)) || svg$1(options);\n  \t}\n  });\n\n  /*\n   * L.Rectangle extends Polygon and creates a rectangle when passed a LatLngBounds object.\n   */\n\n  /*\n   * @class Rectangle\n   * @aka L.Rectangle\n   * @inherits Polygon\n   *\n   * A class for drawing rectangle overlays on a map. Extends `Polygon`.\n   *\n   * @example\n   *\n   * ```js\n   * // define rectangle geographical bounds\n   * var bounds = [[54.559322, -5.767822], [56.1210604, -3.021240]];\n   *\n   * // create an orange rectangle\n   * L.rectangle(bounds, {color: \"#ff7800\", weight: 1}).addTo(map);\n   *\n   * // zoom the map to the rectangle bounds\n   * map.fitBounds(bounds);\n   * ```\n   *\n   */\n\n\n  var Rectangle = Polygon.extend({\n  \tinitialize: function (latLngBounds, options) {\n  \t\tPolygon.prototype.initialize.call(this, this._boundsToLatLngs(latLngBounds), options);\n  \t},\n\n  \t// @method setBounds(latLngBounds: LatLngBounds): this\n  \t// Redraws the rectangle with the passed bounds.\n  \tsetBounds: function (latLngBounds) {\n  \t\treturn this.setLatLngs(this._boundsToLatLngs(latLngBounds));\n  \t},\n\n  \t_boundsToLatLngs: function (latLngBounds) {\n  \t\tlatLngBounds = toLatLngBounds(latLngBounds);\n  \t\treturn [\n  \t\t\tlatLngBounds.getSouthWest(),\n  \t\t\tlatLngBounds.getNorthWest(),\n  \t\t\tlatLngBounds.getNorthEast(),\n  \t\t\tlatLngBounds.getSouthEast()\n  \t\t];\n  \t}\n  });\n\n\n  // @factory L.rectangle(latLngBounds: LatLngBounds, options?: Polyline options)\n  function rectangle(latLngBounds, options) {\n  \treturn new Rectangle(latLngBounds, options);\n  }\n\n  SVG.create = create$2;\n  SVG.pointsToPath = pointsToPath;\n\n  GeoJSON.geometryToLayer = geometryToLayer;\n  GeoJSON.coordsToLatLng = coordsToLatLng;\n  GeoJSON.coordsToLatLngs = coordsToLatLngs;\n  GeoJSON.latLngToCoords = latLngToCoords;\n  GeoJSON.latLngsToCoords = latLngsToCoords;\n  GeoJSON.getFeature = getFeature;\n  GeoJSON.asFeature = asFeature;\n\n  /*\n   * L.Handler.BoxZoom is used to add shift-drag zoom interaction to the map\n   * (zoom to a selected bounding box), enabled by default.\n   */\n\n  // @namespace Map\n  // @section Interaction Options\n  Map.mergeOptions({\n  \t// @option boxZoom: Boolean = true\n  \t// Whether the map can be zoomed to a rectangular area specified by\n  \t// dragging the mouse while pressing the shift key.\n  \tboxZoom: true\n  });\n\n  var BoxZoom = Handler.extend({\n  \tinitialize: function (map) {\n  \t\tthis._map = map;\n  \t\tthis._container = map._container;\n  \t\tthis._pane = map._panes.overlayPane;\n  \t\tthis._resetStateTimeout = 0;\n  \t\tmap.on('unload', this._destroy, this);\n  \t},\n\n  \taddHooks: function () {\n  \t\ton(this._container, 'mousedown', this._onMouseDown, this);\n  \t},\n\n  \tremoveHooks: function () {\n  \t\toff(this._container, 'mousedown', this._onMouseDown, this);\n  \t},\n\n  \tmoved: function () {\n  \t\treturn this._moved;\n  \t},\n\n  \t_destroy: function () {\n  \t\tremove(this._pane);\n  \t\tdelete this._pane;\n  \t},\n\n  \t_resetState: function () {\n  \t\tthis._resetStateTimeout = 0;\n  \t\tthis._moved = false;\n  \t},\n\n  \t_clearDeferredResetState: function () {\n  \t\tif (this._resetStateTimeout !== 0) {\n  \t\t\tclearTimeout(this._resetStateTimeout);\n  \t\t\tthis._resetStateTimeout = 0;\n  \t\t}\n  \t},\n\n  \t_onMouseDown: function (e) {\n  \t\tif (!e.shiftKey || ((e.which !== 1) && (e.button !== 1))) { return false; }\n\n  \t\t// Clear the deferred resetState if it hasn't executed yet, otherwise it\n  \t\t// will interrupt the interaction and orphan a box element in the container.\n  \t\tthis._clearDeferredResetState();\n  \t\tthis._resetState();\n\n  \t\tdisableTextSelection();\n  \t\tdisableImageDrag();\n\n  \t\tthis._startPoint = this._map.mouseEventToContainerPoint(e);\n\n  \t\ton(document, {\n  \t\t\tcontextmenu: stop,\n  \t\t\tmousemove: this._onMouseMove,\n  \t\t\tmouseup: this._onMouseUp,\n  \t\t\tkeydown: this._onKeyDown\n  \t\t}, this);\n  \t},\n\n  \t_onMouseMove: function (e) {\n  \t\tif (!this._moved) {\n  \t\t\tthis._moved = true;\n\n  \t\t\tthis._box = create$1('div', 'leaflet-zoom-box', this._container);\n  \t\t\taddClass(this._container, 'leaflet-crosshair');\n\n  \t\t\tthis._map.fire('boxzoomstart');\n  \t\t}\n\n  \t\tthis._point = this._map.mouseEventToContainerPoint(e);\n\n  \t\tvar bounds = new Bounds(this._point, this._startPoint),\n  \t\t    size = bounds.getSize();\n\n  \t\tsetPosition(this._box, bounds.min);\n\n  \t\tthis._box.style.width  = size.x + 'px';\n  \t\tthis._box.style.height = size.y + 'px';\n  \t},\n\n  \t_finish: function () {\n  \t\tif (this._moved) {\n  \t\t\tremove(this._box);\n  \t\t\tremoveClass(this._container, 'leaflet-crosshair');\n  \t\t}\n\n  \t\tenableTextSelection();\n  \t\tenableImageDrag();\n\n  \t\toff(document, {\n  \t\t\tcontextmenu: stop,\n  \t\t\tmousemove: this._onMouseMove,\n  \t\t\tmouseup: this._onMouseUp,\n  \t\t\tkeydown: this._onKeyDown\n  \t\t}, this);\n  \t},\n\n  \t_onMouseUp: function (e) {\n  \t\tif ((e.which !== 1) && (e.button !== 1)) { return; }\n\n  \t\tthis._finish();\n\n  \t\tif (!this._moved) { return; }\n  \t\t// Postpone to next JS tick so internal click event handling\n  \t\t// still see it as \"moved\".\n  \t\tthis._clearDeferredResetState();\n  \t\tthis._resetStateTimeout = setTimeout(bind(this._resetState, this), 0);\n\n  \t\tvar bounds = new LatLngBounds(\n  \t\t        this._map.containerPointToLatLng(this._startPoint),\n  \t\t        this._map.containerPointToLatLng(this._point));\n\n  \t\tthis._map\n  \t\t\t.fitBounds(bounds)\n  \t\t\t.fire('boxzoomend', {boxZoomBounds: bounds});\n  \t},\n\n  \t_onKeyDown: function (e) {\n  \t\tif (e.keyCode === 27) {\n  \t\t\tthis._finish();\n  \t\t}\n  \t}\n  });\n\n  // @section Handlers\n  // @property boxZoom: Handler\n  // Box (shift-drag with mouse) zoom handler.\n  Map.addInitHook('addHandler', 'boxZoom', BoxZoom);\n\n  /*\n   * L.Handler.DoubleClickZoom is used to handle double-click zoom on the map, enabled by default.\n   */\n\n  // @namespace Map\n  // @section Interaction Options\n\n  Map.mergeOptions({\n  \t// @option doubleClickZoom: Boolean|String = true\n  \t// Whether the map can be zoomed in by double clicking on it and\n  \t// zoomed out by double clicking while holding shift. If passed\n  \t// `'center'`, double-click zoom will zoom to the center of the\n  \t//  view regardless of where the mouse was.\n  \tdoubleClickZoom: true\n  });\n\n  var DoubleClickZoom = Handler.extend({\n  \taddHooks: function () {\n  \t\tthis._map.on('dblclick', this._onDoubleClick, this);\n  \t},\n\n  \tremoveHooks: function () {\n  \t\tthis._map.off('dblclick', this._onDoubleClick, this);\n  \t},\n\n  \t_onDoubleClick: function (e) {\n  \t\tvar map = this._map,\n  \t\t    oldZoom = map.getZoom(),\n  \t\t    delta = map.options.zoomDelta,\n  \t\t    zoom = e.originalEvent.shiftKey ? oldZoom - delta : oldZoom + delta;\n\n  \t\tif (map.options.doubleClickZoom === 'center') {\n  \t\t\tmap.setZoom(zoom);\n  \t\t} else {\n  \t\t\tmap.setZoomAround(e.containerPoint, zoom);\n  \t\t}\n  \t}\n  });\n\n  // @section Handlers\n  //\n  // Map properties include interaction handlers that allow you to control\n  // interaction behavior in runtime, enabling or disabling certain features such\n  // as dragging or touch zoom (see `Handler` methods). For example:\n  //\n  // ```js\n  // map.doubleClickZoom.disable();\n  // ```\n  //\n  // @property doubleClickZoom: Handler\n  // Double click zoom handler.\n  Map.addInitHook('addHandler', 'doubleClickZoom', DoubleClickZoom);\n\n  /*\n   * L.Handler.MapDrag is used to make the map draggable (with panning inertia), enabled by default.\n   */\n\n  // @namespace Map\n  // @section Interaction Options\n  Map.mergeOptions({\n  \t// @option dragging: Boolean = true\n  \t// Whether the map be draggable with mouse/touch or not.\n  \tdragging: true,\n\n  \t// @section Panning Inertia Options\n  \t// @option inertia: Boolean = *\n  \t// If enabled, panning of the map will have an inertia effect where\n  \t// the map builds momentum while dragging and continues moving in\n  \t// the same direction for some time. Feels especially nice on touch\n  \t// devices. Enabled by default unless running on old Android devices.\n  \tinertia: !android23,\n\n  \t// @option inertiaDeceleration: Number = 3000\n  \t// The rate with which the inertial movement slows down, in pixels/secondĀ².\n  \tinertiaDeceleration: 3400, // px/s^2\n\n  \t// @option inertiaMaxSpeed: Number = Infinity\n  \t// Max speed of the inertial movement, in pixels/second.\n  \tinertiaMaxSpeed: Infinity, // px/s\n\n  \t// @option easeLinearity: Number = 0.2\n  \teaseLinearity: 0.2,\n\n  \t// TODO refactor, move to CRS\n  \t// @option worldCopyJump: Boolean = false\n  \t// With this option enabled, the map tracks when you pan to another \"copy\"\n  \t// of the world and seamlessly jumps to the original one so that all overlays\n  \t// like markers and vector layers are still visible.\n  \tworldCopyJump: false,\n\n  \t// @option maxBoundsViscosity: Number = 0.0\n  \t// If `maxBounds` is set, this option will control how solid the bounds\n  \t// are when dragging the map around. The default value of `0.0` allows the\n  \t// user to drag outside the bounds at normal speed, higher values will\n  \t// slow down map dragging outside bounds, and `1.0` makes the bounds fully\n  \t// solid, preventing the user from dragging outside the bounds.\n  \tmaxBoundsViscosity: 0.0\n  });\n\n  var Drag = Handler.extend({\n  \taddHooks: function () {\n  \t\tif (!this._draggable) {\n  \t\t\tvar map = this._map;\n\n  \t\t\tthis._draggable = new Draggable(map._mapPane, map._container);\n\n  \t\t\tthis._draggable.on({\n  \t\t\t\tdragstart: this._onDragStart,\n  \t\t\t\tdrag: this._onDrag,\n  \t\t\t\tdragend: this._onDragEnd\n  \t\t\t}, this);\n\n  \t\t\tthis._draggable.on('predrag', this._onPreDragLimit, this);\n  \t\t\tif (map.options.worldCopyJump) {\n  \t\t\t\tthis._draggable.on('predrag', this._onPreDragWrap, this);\n  \t\t\t\tmap.on('zoomend', this._onZoomEnd, this);\n\n  \t\t\t\tmap.whenReady(this._onZoomEnd, this);\n  \t\t\t}\n  \t\t}\n  \t\taddClass(this._map._container, 'leaflet-grab leaflet-touch-drag');\n  \t\tthis._draggable.enable();\n  \t\tthis._positions = [];\n  \t\tthis._times = [];\n  \t},\n\n  \tremoveHooks: function () {\n  \t\tremoveClass(this._map._container, 'leaflet-grab');\n  \t\tremoveClass(this._map._container, 'leaflet-touch-drag');\n  \t\tthis._draggable.disable();\n  \t},\n\n  \tmoved: function () {\n  \t\treturn this._draggable && this._draggable._moved;\n  \t},\n\n  \tmoving: function () {\n  \t\treturn this._draggable && this._draggable._moving;\n  \t},\n\n  \t_onDragStart: function () {\n  \t\tvar map = this._map;\n\n  \t\tmap._stop();\n  \t\tif (this._map.options.maxBounds && this._map.options.maxBoundsViscosity) {\n  \t\t\tvar bounds = toLatLngBounds(this._map.options.maxBounds);\n\n  \t\t\tthis._offsetLimit = toBounds(\n  \t\t\t\tthis._map.latLngToContainerPoint(bounds.getNorthWest()).multiplyBy(-1),\n  \t\t\t\tthis._map.latLngToContainerPoint(bounds.getSouthEast()).multiplyBy(-1)\n  \t\t\t\t\t.add(this._map.getSize()));\n\n  \t\t\tthis._viscosity = Math.min(1.0, Math.max(0.0, this._map.options.maxBoundsViscosity));\n  \t\t} else {\n  \t\t\tthis._offsetLimit = null;\n  \t\t}\n\n  \t\tmap\n  \t\t    .fire('movestart')\n  \t\t    .fire('dragstart');\n\n  \t\tif (map.options.inertia) {\n  \t\t\tthis._positions = [];\n  \t\t\tthis._times = [];\n  \t\t}\n  \t},\n\n  \t_onDrag: function (e) {\n  \t\tif (this._map.options.inertia) {\n  \t\t\tvar time = this._lastTime = +new Date(),\n  \t\t\t    pos = this._lastPos = this._draggable._absPos || this._draggable._newPos;\n\n  \t\t\tthis._positions.push(pos);\n  \t\t\tthis._times.push(time);\n\n  \t\t\tthis._prunePositions(time);\n  \t\t}\n\n  \t\tthis._map\n  \t\t    .fire('move', e)\n  \t\t    .fire('drag', e);\n  \t},\n\n  \t_prunePositions: function (time) {\n  \t\twhile (this._positions.length > 1 && time - this._times[0] > 50) {\n  \t\t\tthis._positions.shift();\n  \t\t\tthis._times.shift();\n  \t\t}\n  \t},\n\n  \t_onZoomEnd: function () {\n  \t\tvar pxCenter = this._map.getSize().divideBy(2),\n  \t\t    pxWorldCenter = this._map.latLngToLayerPoint([0, 0]);\n\n  \t\tthis._initialWorldOffset = pxWorldCenter.subtract(pxCenter).x;\n  \t\tthis._worldWidth = this._map.getPixelWorldBounds().getSize().x;\n  \t},\n\n  \t_viscousLimit: function (value, threshold) {\n  \t\treturn value - (value - threshold) * this._viscosity;\n  \t},\n\n  \t_onPreDragLimit: function () {\n  \t\tif (!this._viscosity || !this._offsetLimit) { return; }\n\n  \t\tvar offset = this._draggable._newPos.subtract(this._draggable._startPos);\n\n  \t\tvar limit = this._offsetLimit;\n  \t\tif (offset.x < limit.min.x) { offset.x = this._viscousLimit(offset.x, limit.min.x); }\n  \t\tif (offset.y < limit.min.y) { offset.y = this._viscousLimit(offset.y, limit.min.y); }\n  \t\tif (offset.x > limit.max.x) { offset.x = this._viscousLimit(offset.x, limit.max.x); }\n  \t\tif (offset.y > limit.max.y) { offset.y = this._viscousLimit(offset.y, limit.max.y); }\n\n  \t\tthis._draggable._newPos = this._draggable._startPos.add(offset);\n  \t},\n\n  \t_onPreDragWrap: function () {\n  \t\t// TODO refactor to be able to adjust map pane position after zoom\n  \t\tvar worldWidth = this._worldWidth,\n  \t\t    halfWidth = Math.round(worldWidth / 2),\n  \t\t    dx = this._initialWorldOffset,\n  \t\t    x = this._draggable._newPos.x,\n  \t\t    newX1 = (x - halfWidth + dx) % worldWidth + halfWidth - dx,\n  \t\t    newX2 = (x + halfWidth + dx) % worldWidth - halfWidth - dx,\n  \t\t    newX = Math.abs(newX1 + dx) < Math.abs(newX2 + dx) ? newX1 : newX2;\n\n  \t\tthis._draggable._absPos = this._draggable._newPos.clone();\n  \t\tthis._draggable._newPos.x = newX;\n  \t},\n\n  \t_onDragEnd: function (e) {\n  \t\tvar map = this._map,\n  \t\t    options = map.options,\n\n  \t\t    noInertia = !options.inertia || this._times.length < 2;\n\n  \t\tmap.fire('dragend', e);\n\n  \t\tif (noInertia) {\n  \t\t\tmap.fire('moveend');\n\n  \t\t} else {\n  \t\t\tthis._prunePositions(+new Date());\n\n  \t\t\tvar direction = this._lastPos.subtract(this._positions[0]),\n  \t\t\t    duration = (this._lastTime - this._times[0]) / 1000,\n  \t\t\t    ease = options.easeLinearity,\n\n  \t\t\t    speedVector = direction.multiplyBy(ease / duration),\n  \t\t\t    speed = speedVector.distanceTo([0, 0]),\n\n  \t\t\t    limitedSpeed = Math.min(options.inertiaMaxSpeed, speed),\n  \t\t\t    limitedSpeedVector = speedVector.multiplyBy(limitedSpeed / speed),\n\n  \t\t\t    decelerationDuration = limitedSpeed / (options.inertiaDeceleration * ease),\n  \t\t\t    offset = limitedSpeedVector.multiplyBy(-decelerationDuration / 2).round();\n\n  \t\t\tif (!offset.x && !offset.y) {\n  \t\t\t\tmap.fire('moveend');\n\n  \t\t\t} else {\n  \t\t\t\toffset = map._limitOffset(offset, map.options.maxBounds);\n\n  \t\t\t\trequestAnimFrame(function () {\n  \t\t\t\t\tmap.panBy(offset, {\n  \t\t\t\t\t\tduration: decelerationDuration,\n  \t\t\t\t\t\teaseLinearity: ease,\n  \t\t\t\t\t\tnoMoveStart: true,\n  \t\t\t\t\t\tanimate: true\n  \t\t\t\t\t});\n  \t\t\t\t});\n  \t\t\t}\n  \t\t}\n  \t}\n  });\n\n  // @section Handlers\n  // @property dragging: Handler\n  // Map dragging handler (by both mouse and touch).\n  Map.addInitHook('addHandler', 'dragging', Drag);\n\n  /*\n   * L.Map.Keyboard is handling keyboard interaction with the map, enabled by default.\n   */\n\n  // @namespace Map\n  // @section Keyboard Navigation Options\n  Map.mergeOptions({\n  \t// @option keyboard: Boolean = true\n  \t// Makes the map focusable and allows users to navigate the map with keyboard\n  \t// arrows and `+`/`-` keys.\n  \tkeyboard: true,\n\n  \t// @option keyboardPanDelta: Number = 80\n  \t// Amount of pixels to pan when pressing an arrow key.\n  \tkeyboardPanDelta: 80\n  });\n\n  var Keyboard = Handler.extend({\n\n  \tkeyCodes: {\n  \t\tleft:    [37],\n  \t\tright:   [39],\n  \t\tdown:    [40],\n  \t\tup:      [38],\n  \t\tzoomIn:  [187, 107, 61, 171],\n  \t\tzoomOut: [189, 109, 54, 173]\n  \t},\n\n  \tinitialize: function (map) {\n  \t\tthis._map = map;\n\n  \t\tthis._setPanDelta(map.options.keyboardPanDelta);\n  \t\tthis._setZoomDelta(map.options.zoomDelta);\n  \t},\n\n  \taddHooks: function () {\n  \t\tvar container = this._map._container;\n\n  \t\t// make the container focusable by tabbing\n  \t\tif (container.tabIndex <= 0) {\n  \t\t\tcontainer.tabIndex = '0';\n  \t\t}\n\n  \t\ton(container, {\n  \t\t\tfocus: this._onFocus,\n  \t\t\tblur: this._onBlur,\n  \t\t\tmousedown: this._onMouseDown\n  \t\t}, this);\n\n  \t\tthis._map.on({\n  \t\t\tfocus: this._addHooks,\n  \t\t\tblur: this._removeHooks\n  \t\t}, this);\n  \t},\n\n  \tremoveHooks: function () {\n  \t\tthis._removeHooks();\n\n  \t\toff(this._map._container, {\n  \t\t\tfocus: this._onFocus,\n  \t\t\tblur: this._onBlur,\n  \t\t\tmousedown: this._onMouseDown\n  \t\t}, this);\n\n  \t\tthis._map.off({\n  \t\t\tfocus: this._addHooks,\n  \t\t\tblur: this._removeHooks\n  \t\t}, this);\n  \t},\n\n  \t_onMouseDown: function () {\n  \t\tif (this._focused) { return; }\n\n  \t\tvar body = document.body,\n  \t\t    docEl = document.documentElement,\n  \t\t    top = body.scrollTop || docEl.scrollTop,\n  \t\t    left = body.scrollLeft || docEl.scrollLeft;\n\n  \t\tthis._map._container.focus();\n\n  \t\twindow.scrollTo(left, top);\n  \t},\n\n  \t_onFocus: function () {\n  \t\tthis._focused = true;\n  \t\tthis._map.fire('focus');\n  \t},\n\n  \t_onBlur: function () {\n  \t\tthis._focused = false;\n  \t\tthis._map.fire('blur');\n  \t},\n\n  \t_setPanDelta: function (panDelta) {\n  \t\tvar keys = this._panKeys = {},\n  \t\t    codes = this.keyCodes,\n  \t\t    i, len;\n\n  \t\tfor (i = 0, len = codes.left.length; i < len; i++) {\n  \t\t\tkeys[codes.left[i]] = [-1 * panDelta, 0];\n  \t\t}\n  \t\tfor (i = 0, len = codes.right.length; i < len; i++) {\n  \t\t\tkeys[codes.right[i]] = [panDelta, 0];\n  \t\t}\n  \t\tfor (i = 0, len = codes.down.length; i < len; i++) {\n  \t\t\tkeys[codes.down[i]] = [0, panDelta];\n  \t\t}\n  \t\tfor (i = 0, len = codes.up.length; i < len; i++) {\n  \t\t\tkeys[codes.up[i]] = [0, -1 * panDelta];\n  \t\t}\n  \t},\n\n  \t_setZoomDelta: function (zoomDelta) {\n  \t\tvar keys = this._zoomKeys = {},\n  \t\t    codes = this.keyCodes,\n  \t\t    i, len;\n\n  \t\tfor (i = 0, len = codes.zoomIn.length; i < len; i++) {\n  \t\t\tkeys[codes.zoomIn[i]] = zoomDelta;\n  \t\t}\n  \t\tfor (i = 0, len = codes.zoomOut.length; i < len; i++) {\n  \t\t\tkeys[codes.zoomOut[i]] = -zoomDelta;\n  \t\t}\n  \t},\n\n  \t_addHooks: function () {\n  \t\ton(document, 'keydown', this._onKeyDown, this);\n  \t},\n\n  \t_removeHooks: function () {\n  \t\toff(document, 'keydown', this._onKeyDown, this);\n  \t},\n\n  \t_onKeyDown: function (e) {\n  \t\tif (e.altKey || e.ctrlKey || e.metaKey) { return; }\n\n  \t\tvar key = e.keyCode,\n  \t\t    map = this._map,\n  \t\t    offset;\n\n  \t\tif (key in this._panKeys) {\n  \t\t\tif (!map._panAnim || !map._panAnim._inProgress) {\n  \t\t\t\toffset = this._panKeys[key];\n  \t\t\t\tif (e.shiftKey) {\n  \t\t\t\t\toffset = toPoint(offset).multiplyBy(3);\n  \t\t\t\t}\n\n  \t\t\t\tmap.panBy(offset);\n\n  \t\t\t\tif (map.options.maxBounds) {\n  \t\t\t\t\tmap.panInsideBounds(map.options.maxBounds);\n  \t\t\t\t}\n  \t\t\t}\n  \t\t} else if (key in this._zoomKeys) {\n  \t\t\tmap.setZoom(map.getZoom() + (e.shiftKey ? 3 : 1) * this._zoomKeys[key]);\n\n  \t\t} else if (key === 27 && map._popup && map._popup.options.closeOnEscapeKey) {\n  \t\t\tmap.closePopup();\n\n  \t\t} else {\n  \t\t\treturn;\n  \t\t}\n\n  \t\tstop(e);\n  \t}\n  });\n\n  // @section Handlers\n  // @section Handlers\n  // @property keyboard: Handler\n  // Keyboard navigation handler.\n  Map.addInitHook('addHandler', 'keyboard', Keyboard);\n\n  /*\n   * L.Handler.ScrollWheelZoom is used by L.Map to enable mouse scroll wheel zoom on the map.\n   */\n\n  // @namespace Map\n  // @section Interaction Options\n  Map.mergeOptions({\n  \t// @section Mouse wheel options\n  \t// @option scrollWheelZoom: Boolean|String = true\n  \t// Whether the map can be zoomed by using the mouse wheel. If passed `'center'`,\n  \t// it will zoom to the center of the view regardless of where the mouse was.\n  \tscrollWheelZoom: true,\n\n  \t// @option wheelDebounceTime: Number = 40\n  \t// Limits the rate at which a wheel can fire (in milliseconds). By default\n  \t// user can't zoom via wheel more often than once per 40 ms.\n  \twheelDebounceTime: 40,\n\n  \t// @option wheelPxPerZoomLevel: Number = 60\n  \t// How many scroll pixels (as reported by [L.DomEvent.getWheelDelta](#domevent-getwheeldelta))\n  \t// mean a change of one full zoom level. Smaller values will make wheel-zooming\n  \t// faster (and vice versa).\n  \twheelPxPerZoomLevel: 60\n  });\n\n  var ScrollWheelZoom = Handler.extend({\n  \taddHooks: function () {\n  \t\ton(this._map._container, 'wheel', this._onWheelScroll, this);\n\n  \t\tthis._delta = 0;\n  \t},\n\n  \tremoveHooks: function () {\n  \t\toff(this._map._container, 'wheel', this._onWheelScroll, this);\n  \t},\n\n  \t_onWheelScroll: function (e) {\n  \t\tvar delta = getWheelDelta(e);\n\n  \t\tvar debounce = this._map.options.wheelDebounceTime;\n\n  \t\tthis._delta += delta;\n  \t\tthis._lastMousePos = this._map.mouseEventToContainerPoint(e);\n\n  \t\tif (!this._startTime) {\n  \t\t\tthis._startTime = +new Date();\n  \t\t}\n\n  \t\tvar left = Math.max(debounce - (+new Date() - this._startTime), 0);\n\n  \t\tclearTimeout(this._timer);\n  \t\tthis._timer = setTimeout(bind(this._performZoom, this), left);\n\n  \t\tstop(e);\n  \t},\n\n  \t_performZoom: function () {\n  \t\tvar map = this._map,\n  \t\t    zoom = map.getZoom(),\n  \t\t    snap = this._map.options.zoomSnap || 0;\n\n  \t\tmap._stop(); // stop panning and fly animations if any\n\n  \t\t// map the delta with a sigmoid function to -4..4 range leaning on -1..1\n  \t\tvar d2 = this._delta / (this._map.options.wheelPxPerZoomLevel * 4),\n  \t\t    d3 = 4 * Math.log(2 / (1 + Math.exp(-Math.abs(d2)))) / Math.LN2,\n  \t\t    d4 = snap ? Math.ceil(d3 / snap) * snap : d3,\n  \t\t    delta = map._limitZoom(zoom + (this._delta > 0 ? d4 : -d4)) - zoom;\n\n  \t\tthis._delta = 0;\n  \t\tthis._startTime = null;\n\n  \t\tif (!delta) { return; }\n\n  \t\tif (map.options.scrollWheelZoom === 'center') {\n  \t\t\tmap.setZoom(zoom + delta);\n  \t\t} else {\n  \t\t\tmap.setZoomAround(this._lastMousePos, zoom + delta);\n  \t\t}\n  \t}\n  });\n\n  // @section Handlers\n  // @property scrollWheelZoom: Handler\n  // Scroll wheel zoom handler.\n  Map.addInitHook('addHandler', 'scrollWheelZoom', ScrollWheelZoom);\n\n  /*\n   * L.Map.Tap is used to enable mobile hacks like quick taps and long hold.\n   */\n\n  // @namespace Map\n  // @section Interaction Options\n  Map.mergeOptions({\n  \t// @section Touch interaction options\n  \t// @option tap: Boolean = true\n  \t// Enables mobile hacks for supporting instant taps (fixing 200ms click\n  \t// delay on iOS/Android) and touch holds (fired as `contextmenu` events).\n  \ttap: true,\n\n  \t// @option tapTolerance: Number = 15\n  \t// The max number of pixels a user can shift his finger during touch\n  \t// for it to be considered a valid tap.\n  \ttapTolerance: 15\n  });\n\n  var Tap = Handler.extend({\n  \taddHooks: function () {\n  \t\ton(this._map._container, 'touchstart', this._onDown, this);\n  \t},\n\n  \tremoveHooks: function () {\n  \t\toff(this._map._container, 'touchstart', this._onDown, this);\n  \t},\n\n  \t_onDown: function (e) {\n  \t\tif (!e.touches) { return; }\n\n  \t\tpreventDefault(e);\n\n  \t\tthis._fireClick = true;\n\n  \t\t// don't simulate click or track longpress if more than 1 touch\n  \t\tif (e.touches.length > 1) {\n  \t\t\tthis._fireClick = false;\n  \t\t\tclearTimeout(this._holdTimeout);\n  \t\t\treturn;\n  \t\t}\n\n  \t\tvar first = e.touches[0],\n  \t\t    el = first.target;\n\n  \t\tthis._startPos = this._newPos = new Point(first.clientX, first.clientY);\n\n  \t\t// if touching a link, highlight it\n  \t\tif (el.tagName && el.tagName.toLowerCase() === 'a') {\n  \t\t\taddClass(el, 'leaflet-active');\n  \t\t}\n\n  \t\t// simulate long hold but setting a timeout\n  \t\tthis._holdTimeout = setTimeout(bind(function () {\n  \t\t\tif (this._isTapValid()) {\n  \t\t\t\tthis._fireClick = false;\n  \t\t\t\tthis._onUp();\n  \t\t\t\tthis._simulateEvent('contextmenu', first);\n  \t\t\t}\n  \t\t}, this), 1000);\n\n  \t\tthis._simulateEvent('mousedown', first);\n\n  \t\ton(document, {\n  \t\t\ttouchmove: this._onMove,\n  \t\t\ttouchend: this._onUp\n  \t\t}, this);\n  \t},\n\n  \t_onUp: function (e) {\n  \t\tclearTimeout(this._holdTimeout);\n\n  \t\toff(document, {\n  \t\t\ttouchmove: this._onMove,\n  \t\t\ttouchend: this._onUp\n  \t\t}, this);\n\n  \t\tif (this._fireClick && e && e.changedTouches) {\n\n  \t\t\tvar first = e.changedTouches[0],\n  \t\t\t    el = first.target;\n\n  \t\t\tif (el && el.tagName && el.tagName.toLowerCase() === 'a') {\n  \t\t\t\tremoveClass(el, 'leaflet-active');\n  \t\t\t}\n\n  \t\t\tthis._simulateEvent('mouseup', first);\n\n  \t\t\t// simulate click if the touch didn't move too much\n  \t\t\tif (this._isTapValid()) {\n  \t\t\t\tthis._simulateEvent('click', first);\n  \t\t\t}\n  \t\t}\n  \t},\n\n  \t_isTapValid: function () {\n  \t\treturn this._newPos.distanceTo(this._startPos) <= this._map.options.tapTolerance;\n  \t},\n\n  \t_onMove: function (e) {\n  \t\tvar first = e.touches[0];\n  \t\tthis._newPos = new Point(first.clientX, first.clientY);\n  \t\tthis._simulateEvent('mousemove', first);\n  \t},\n\n  \t_simulateEvent: function (type, e) {\n  \t\tvar simulatedEvent = document.createEvent('MouseEvents');\n\n  \t\tsimulatedEvent._simulated = true;\n  \t\te.target._simulatedClick = true;\n\n  \t\tsimulatedEvent.initMouseEvent(\n  \t\t        type, true, true, window, 1,\n  \t\t        e.screenX, e.screenY,\n  \t\t        e.clientX, e.clientY,\n  \t\t        false, false, false, false, 0, null);\n\n  \t\te.target.dispatchEvent(simulatedEvent);\n  \t}\n  });\n\n  // @section Handlers\n  // @property tap: Handler\n  // Mobile touch hacks (quick tap and touch hold) handler.\n  if (touch && (!pointer || safari)) {\n  \tMap.addInitHook('addHandler', 'tap', Tap);\n  }\n\n  /*\n   * L.Handler.TouchZoom is used by L.Map to add pinch zoom on supported mobile browsers.\n   */\n\n  // @namespace Map\n  // @section Interaction Options\n  Map.mergeOptions({\n  \t// @section Touch interaction options\n  \t// @option touchZoom: Boolean|String = *\n  \t// Whether the map can be zoomed by touch-dragging with two fingers. If\n  \t// passed `'center'`, it will zoom to the center of the view regardless of\n  \t// where the touch events (fingers) were. Enabled for touch-capable web\n  \t// browsers except for old Androids.\n  \ttouchZoom: touch && !android23,\n\n  \t// @option bounceAtZoomLimits: Boolean = true\n  \t// Set it to false if you don't want the map to zoom beyond min/max zoom\n  \t// and then bounce back when pinch-zooming.\n  \tbounceAtZoomLimits: true\n  });\n\n  var TouchZoom = Handler.extend({\n  \taddHooks: function () {\n  \t\taddClass(this._map._container, 'leaflet-touch-zoom');\n  \t\ton(this._map._container, 'touchstart', this._onTouchStart, this);\n  \t},\n\n  \tremoveHooks: function () {\n  \t\tremoveClass(this._map._container, 'leaflet-touch-zoom');\n  \t\toff(this._map._container, 'touchstart', this._onTouchStart, this);\n  \t},\n\n  \t_onTouchStart: function (e) {\n  \t\tvar map = this._map;\n  \t\tif (!e.touches || e.touches.length !== 2 || map._animatingZoom || this._zooming) { return; }\n\n  \t\tvar p1 = map.mouseEventToContainerPoint(e.touches[0]),\n  \t\t    p2 = map.mouseEventToContainerPoint(e.touches[1]);\n\n  \t\tthis._centerPoint = map.getSize()._divideBy(2);\n  \t\tthis._startLatLng = map.containerPointToLatLng(this._centerPoint);\n  \t\tif (map.options.touchZoom !== 'center') {\n  \t\t\tthis._pinchStartLatLng = map.containerPointToLatLng(p1.add(p2)._divideBy(2));\n  \t\t}\n\n  \t\tthis._startDist = p1.distanceTo(p2);\n  \t\tthis._startZoom = map.getZoom();\n\n  \t\tthis._moved = false;\n  \t\tthis._zooming = true;\n\n  \t\tmap._stop();\n\n  \t\ton(document, 'touchmove', this._onTouchMove, this);\n  \t\ton(document, 'touchend', this._onTouchEnd, this);\n\n  \t\tpreventDefault(e);\n  \t},\n\n  \t_onTouchMove: function (e) {\n  \t\tif (!e.touches || e.touches.length !== 2 || !this._zooming) { return; }\n\n  \t\tvar map = this._map,\n  \t\t    p1 = map.mouseEventToContainerPoint(e.touches[0]),\n  \t\t    p2 = map.mouseEventToContainerPoint(e.touches[1]),\n  \t\t    scale = p1.distanceTo(p2) / this._startDist;\n\n  \t\tthis._zoom = map.getScaleZoom(scale, this._startZoom);\n\n  \t\tif (!map.options.bounceAtZoomLimits && (\n  \t\t\t(this._zoom < map.getMinZoom() && scale < 1) ||\n  \t\t\t(this._zoom > map.getMaxZoom() && scale > 1))) {\n  \t\t\tthis._zoom = map._limitZoom(this._zoom);\n  \t\t}\n\n  \t\tif (map.options.touchZoom === 'center') {\n  \t\t\tthis._center = this._startLatLng;\n  \t\t\tif (scale === 1) { return; }\n  \t\t} else {\n  \t\t\t// Get delta from pinch to center, so centerLatLng is delta applied to initial pinchLatLng\n  \t\t\tvar delta = p1._add(p2)._divideBy(2)._subtract(this._centerPoint);\n  \t\t\tif (scale === 1 && delta.x === 0 && delta.y === 0) { return; }\n  \t\t\tthis._center = map.unproject(map.project(this._pinchStartLatLng, this._zoom).subtract(delta), this._zoom);\n  \t\t}\n\n  \t\tif (!this._moved) {\n  \t\t\tmap._moveStart(true, false);\n  \t\t\tthis._moved = true;\n  \t\t}\n\n  \t\tcancelAnimFrame(this._animRequest);\n\n  \t\tvar moveFn = bind(map._move, map, this._center, this._zoom, {pinch: true, round: false});\n  \t\tthis._animRequest = requestAnimFrame(moveFn, this, true);\n\n  \t\tpreventDefault(e);\n  \t},\n\n  \t_onTouchEnd: function () {\n  \t\tif (!this._moved || !this._zooming) {\n  \t\t\tthis._zooming = false;\n  \t\t\treturn;\n  \t\t}\n\n  \t\tthis._zooming = false;\n  \t\tcancelAnimFrame(this._animRequest);\n\n  \t\toff(document, 'touchmove', this._onTouchMove, this);\n  \t\toff(document, 'touchend', this._onTouchEnd, this);\n\n  \t\t// Pinch updates GridLayers' levels only when zoomSnap is off, so zoomSnap becomes noUpdate.\n  \t\tif (this._map.options.zoomAnimation) {\n  \t\t\tthis._map._animateZoom(this._center, this._map._limitZoom(this._zoom), true, this._map.options.zoomSnap);\n  \t\t} else {\n  \t\t\tthis._map._resetView(this._center, this._map._limitZoom(this._zoom));\n  \t\t}\n  \t}\n  });\n\n  // @section Handlers\n  // @property touchZoom: Handler\n  // Touch zoom handler.\n  Map.addInitHook('addHandler', 'touchZoom', TouchZoom);\n\n  Map.BoxZoom = BoxZoom;\n  Map.DoubleClickZoom = DoubleClickZoom;\n  Map.Drag = Drag;\n  Map.Keyboard = Keyboard;\n  Map.ScrollWheelZoom = ScrollWheelZoom;\n  Map.Tap = Tap;\n  Map.TouchZoom = TouchZoom;\n\n  exports.version = version;\n  exports.Control = Control;\n  exports.control = control;\n  exports.Browser = Browser;\n  exports.Evented = Evented;\n  exports.Mixin = Mixin;\n  exports.Util = Util;\n  exports.Class = Class;\n  exports.Handler = Handler;\n  exports.extend = extend;\n  exports.bind = bind;\n  exports.stamp = stamp;\n  exports.setOptions = setOptions;\n  exports.DomEvent = DomEvent;\n  exports.DomUtil = DomUtil;\n  exports.PosAnimation = PosAnimation;\n  exports.Draggable = Draggable;\n  exports.LineUtil = LineUtil;\n  exports.PolyUtil = PolyUtil;\n  exports.Point = Point;\n  exports.point = toPoint;\n  exports.Bounds = Bounds;\n  exports.bounds = toBounds;\n  exports.Transformation = Transformation;\n  exports.transformation = toTransformation;\n  exports.Projection = index;\n  exports.LatLng = LatLng;\n  exports.latLng = toLatLng;\n  exports.LatLngBounds = LatLngBounds;\n  exports.latLngBounds = toLatLngBounds;\n  exports.CRS = CRS;\n  exports.GeoJSON = GeoJSON;\n  exports.geoJSON = geoJSON;\n  exports.geoJson = geoJson;\n  exports.Layer = Layer;\n  exports.LayerGroup = LayerGroup;\n  exports.layerGroup = layerGroup;\n  exports.FeatureGroup = FeatureGroup;\n  exports.featureGroup = featureGroup;\n  exports.ImageOverlay = ImageOverlay;\n  exports.imageOverlay = imageOverlay;\n  exports.VideoOverlay = VideoOverlay;\n  exports.videoOverlay = videoOverlay;\n  exports.SVGOverlay = SVGOverlay;\n  exports.svgOverlay = svgOverlay;\n  exports.DivOverlay = DivOverlay;\n  exports.Popup = Popup;\n  exports.popup = popup;\n  exports.Tooltip = Tooltip;\n  exports.tooltip = tooltip;\n  exports.Icon = Icon;\n  exports.icon = icon;\n  exports.DivIcon = DivIcon;\n  exports.divIcon = divIcon;\n  exports.Marker = Marker;\n  exports.marker = marker;\n  exports.TileLayer = TileLayer;\n  exports.tileLayer = tileLayer;\n  exports.GridLayer = GridLayer;\n  exports.gridLayer = gridLayer;\n  exports.SVG = SVG;\n  exports.svg = svg$1;\n  exports.Renderer = Renderer;\n  exports.Canvas = Canvas;\n  exports.canvas = canvas$1;\n  exports.Path = Path;\n  exports.CircleMarker = CircleMarker;\n  exports.circleMarker = circleMarker;\n  exports.Circle = Circle;\n  exports.circle = circle;\n  exports.Polyline = Polyline;\n  exports.polyline = polyline;\n  exports.Polygon = Polygon;\n  exports.polygon = polygon;\n  exports.Rectangle = Rectangle;\n  exports.rectangle = rectangle;\n  exports.Map = Map;\n  exports.map = createMap;\n\n  var oldL = window.L;\n  exports.noConflict = function() {\n  \twindow.L = oldL;\n  \treturn this;\n  }\n\n  // Always export us to window global (see #2364)\n  window.L = exports;\n\n})));\n//# sourceMappingURL=leaflet-src.js.map\n","// extracted by mini-css-extract-plugin\nexport {};","// extracted by mini-css-extract-plugin\nexport {};","// extracted by mini-css-extract-plugin\nexport {};","// extracted by mini-css-extract-plugin\nexport {};","// extracted by mini-css-extract-plugin\nexport {};","// extracted by mini-css-extract-plugin\nexport {};","var __assign = (this && this.__assign) || function () {\r\n    __assign = Object.assign || function(t) {\r\n        for (var s, i = 1, n = arguments.length; i < n; i++) {\r\n            s = arguments[i];\r\n            for (var p in s) if (Object.prototype.hasOwnProperty.call(s, p))\r\n                t[p] = s[p];\r\n        }\r\n        return t;\r\n    };\r\n    return __assign.apply(this, arguments);\r\n};\r\nvar defaults = {\r\n    lines: 12,\r\n    length: 7,\r\n    width: 5,\r\n    radius: 10,\r\n    scale: 1.0,\r\n    corners: 1,\r\n    color: '#000',\r\n    fadeColor: 'transparent',\r\n    animation: 'spinner-line-fade-default',\r\n    rotate: 0,\r\n    direction: 1,\r\n    speed: 1,\r\n    zIndex: 2e9,\r\n    className: 'spinner',\r\n    top: '50%',\r\n    left: '50%',\r\n    shadow: '0 0 1px transparent',\r\n    position: 'absolute',\r\n};\r\nvar Spinner = /** @class */ (function () {\r\n    function Spinner(opts) {\r\n        if (opts === void 0) { opts = {}; }\r\n        this.opts = __assign(__assign({}, defaults), opts);\r\n    }\r\n    /**\r\n     * Adds the spinner to the given target element. If this instance is already\r\n     * spinning, it is automatically removed from its previous target by calling\r\n     * stop() internally.\r\n     */\r\n    Spinner.prototype.spin = function (target) {\r\n        this.stop();\r\n        this.el = document.createElement('div');\r\n        this.el.className = this.opts.className;\r\n        this.el.setAttribute('role', 'progressbar');\r\n        css(this.el, {\r\n            position: this.opts.position,\r\n            width: 0,\r\n            zIndex: this.opts.zIndex,\r\n            left: this.opts.left,\r\n            top: this.opts.top,\r\n            transform: \"scale(\" + this.opts.scale + \")\",\r\n        });\r\n        if (target) {\r\n            target.insertBefore(this.el, target.firstChild || null);\r\n        }\r\n        drawLines(this.el, this.opts);\r\n        return this;\r\n    };\r\n    /**\r\n     * Stops and removes the Spinner.\r\n     * Stopped spinners may be reused by calling spin() again.\r\n     */\r\n    Spinner.prototype.stop = function () {\r\n        if (this.el) {\r\n            if (typeof requestAnimationFrame !== 'undefined') {\r\n                cancelAnimationFrame(this.animateId);\r\n            }\r\n            else {\r\n                clearTimeout(this.animateId);\r\n            }\r\n            if (this.el.parentNode) {\r\n                this.el.parentNode.removeChild(this.el);\r\n            }\r\n            this.el = undefined;\r\n        }\r\n        return this;\r\n    };\r\n    return Spinner;\r\n}());\r\nexport { Spinner };\r\n/**\r\n * Sets multiple style properties at once.\r\n */\r\nfunction css(el, props) {\r\n    for (var prop in props) {\r\n        el.style[prop] = props[prop];\r\n    }\r\n    return el;\r\n}\r\n/**\r\n * Returns the line color from the given string or array.\r\n */\r\nfunction getColor(color, idx) {\r\n    return typeof color == 'string' ? color : color[idx % color.length];\r\n}\r\n/**\r\n * Internal method that draws the individual lines.\r\n */\r\nfunction drawLines(el, opts) {\r\n    var borderRadius = (Math.round(opts.corners * opts.width * 500) / 1000) + 'px';\r\n    var shadow = 'none';\r\n    if (opts.shadow === true) {\r\n        shadow = '0 2px 4px #000'; // default shadow\r\n    }\r\n    else if (typeof opts.shadow === 'string') {\r\n        shadow = opts.shadow;\r\n    }\r\n    var shadows = parseBoxShadow(shadow);\r\n    for (var i = 0; i < opts.lines; i++) {\r\n        var degrees = ~~(360 / opts.lines * i + opts.rotate);\r\n        var backgroundLine = css(document.createElement('div'), {\r\n            position: 'absolute',\r\n            top: -opts.width / 2 + \"px\",\r\n            width: (opts.length + opts.width) + 'px',\r\n            height: opts.width + 'px',\r\n            background: getColor(opts.fadeColor, i),\r\n            borderRadius: borderRadius,\r\n            transformOrigin: 'left',\r\n            transform: \"rotate(\" + degrees + \"deg) translateX(\" + opts.radius + \"px)\",\r\n        });\r\n        var delay = i * opts.direction / opts.lines / opts.speed;\r\n        delay -= 1 / opts.speed; // so initial animation state will include trail\r\n        var line = css(document.createElement('div'), {\r\n            width: '100%',\r\n            height: '100%',\r\n            background: getColor(opts.color, i),\r\n            borderRadius: borderRadius,\r\n            boxShadow: normalizeShadow(shadows, degrees),\r\n            animation: 1 / opts.speed + \"s linear \" + delay + \"s infinite \" + opts.animation,\r\n        });\r\n        backgroundLine.appendChild(line);\r\n        el.appendChild(backgroundLine);\r\n    }\r\n}\r\nfunction parseBoxShadow(boxShadow) {\r\n    var regex = /^\\s*([a-zA-Z]+\\s+)?(-?\\d+(\\.\\d+)?)([a-zA-Z]*)\\s+(-?\\d+(\\.\\d+)?)([a-zA-Z]*)(.*)$/;\r\n    var shadows = [];\r\n    for (var _i = 0, _a = boxShadow.split(','); _i < _a.length; _i++) {\r\n        var shadow = _a[_i];\r\n        var matches = shadow.match(regex);\r\n        if (matches === null) {\r\n            continue; // invalid syntax\r\n        }\r\n        var x = +matches[2];\r\n        var y = +matches[5];\r\n        var xUnits = matches[4];\r\n        var yUnits = matches[7];\r\n        if (x === 0 && !xUnits) {\r\n            xUnits = yUnits;\r\n        }\r\n        if (y === 0 && !yUnits) {\r\n            yUnits = xUnits;\r\n        }\r\n        if (xUnits !== yUnits) {\r\n            continue; // units must match to use as coordinates\r\n        }\r\n        shadows.push({\r\n            prefix: matches[1] || '',\r\n            x: x,\r\n            y: y,\r\n            xUnits: xUnits,\r\n            yUnits: yUnits,\r\n            end: matches[8],\r\n        });\r\n    }\r\n    return shadows;\r\n}\r\n/**\r\n * Modify box-shadow x/y offsets to counteract rotation\r\n */\r\nfunction normalizeShadow(shadows, degrees) {\r\n    var normalized = [];\r\n    for (var _i = 0, shadows_1 = shadows; _i < shadows_1.length; _i++) {\r\n        var shadow = shadows_1[_i];\r\n        var xy = convertOffset(shadow.x, shadow.y, degrees);\r\n        normalized.push(shadow.prefix + xy[0] + shadow.xUnits + ' ' + xy[1] + shadow.yUnits + shadow.end);\r\n    }\r\n    return normalized.join(', ');\r\n}\r\nfunction convertOffset(x, y, degrees) {\r\n    var radians = degrees * Math.PI / 180;\r\n    var sin = Math.sin(radians);\r\n    var cos = Math.cos(radians);\r\n    return [\r\n        Math.round((x * cos + y * sin) * 1000) / 1000,\r\n        Math.round((-x * sin + y * cos) * 1000) / 1000,\r\n    ];\r\n}\r\n","// The module cache\nvar __webpack_module_cache__ = {};\n\n// The require function\nfunction __webpack_require__(moduleId) {\n\t// Check if module is in cache\n\tvar cachedModule = __webpack_module_cache__[moduleId];\n\tif (cachedModule !== undefined) {\n\t\treturn cachedModule.exports;\n\t}\n\t// Create a new module (and put it into the cache)\n\tvar module = __webpack_module_cache__[moduleId] = {\n\t\t// no module.id needed\n\t\t// no module.loaded needed\n\t\texports: {}\n\t};\n\n\t// Execute the module function\n\t__webpack_modules__[moduleId].call(module.exports, module, module.exports, __webpack_require__);\n\n\t// Return the exports of the module\n\treturn module.exports;\n}\n\n","// define getter functions for harmony exports\n__webpack_require__.d = (exports, definition) => {\n\tfor(var key in definition) {\n\t\tif(__webpack_require__.o(definition, key) && !__webpack_require__.o(exports, key)) {\n\t\t\tObject.defineProperty(exports, key, { enumerable: true, get: definition[key] });\n\t\t}\n\t}\n};","__webpack_require__.o = (obj, prop) => (Object.prototype.hasOwnProperty.call(obj, prop))","// define __esModule on exports\n__webpack_require__.r = (exports) => {\n\tif(typeof Symbol !== 'undefined' && Symbol.toStringTag) {\n\t\tObject.defineProperty(exports, Symbol.toStringTag, { value: 'Module' });\n\t}\n\tObject.defineProperty(exports, '__esModule', { value: true });\n};","__webpack_require__.p = \"\";","/**\n * ---------------------------------------------------------------------\n *\n * GLPI - Gestionnaire Libre de Parc Informatique\n *\n * http://glpi-project.org\n *\n * @copyright 2015-2024 Teclib' and contributors.\n * @copyright 2003-2014 by the INDEPNET Development Team.\n * @licence   https://www.gnu.org/licenses/gpl-3.0.html\n *\n * ---------------------------------------------------------------------\n *\n * LICENSE\n *\n * This file is part of GLPI.\n *\n * This program is free software: you can redistribute it and/or modify\n * it under the terms of the GNU General Public License as published by\n * the Free Software Foundation, either version 3 of the License, or\n * (at your option) any later version.\n *\n * This program is distributed in the hope that it will be useful,\n * but WITHOUT ANY WARRANTY; without even the implied warranty of\n * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the\n * GNU General Public License for more details.\n *\n * You should have received a copy of the GNU General Public License\n * along with this program.  If not, see <https://www.gnu.org/licenses/>.\n *\n * ---------------------------------------------------------------------\n */\n\n// spin.js dependency\n// Spinner object have to be accessible in window context\nwindow.Spinner = require('spin.js').Spinner;\n\n// Leaflet core lib\nrequire('leaflet');\nrequire('leaflet/dist/leaflet.css');\nrequire('leaflet/dist/images/marker-icon-2x.png'); // image is not present in CSS and will not be copied automatically\nrequire('leaflet/dist/images/marker-shadow.png'); // image is not present in CSS and will not be copied automatically\n\n// Leaflet plugins\nrequire('leaflet-spin');\nrequire('leaflet.markercluster');\nrequire('leaflet.markercluster/dist/MarkerCluster.css');\nrequire('leaflet.markercluster/dist/MarkerCluster.Default.css');\nrequire('leaflet.awesome-markers');\nrequire('leaflet.awesome-markers/dist/leaflet.awesome-markers.css');\nrequire('leaflet-control-geocoder');\nrequire('leaflet-control-geocoder/dist/Control.Geocoder.css');\nrequire('leaflet-fullscreen');\nrequire('leaflet-fullscreen/dist/leaflet.fullscreen.css');\n"],"names":[],"sourceRoot":""}

Zerion Mini Shell 1.0