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gadm.js
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139 lines (120 loc) · 3.69 KB
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var debug = {};
var map = L.map('map').setView([47.6, -122.3], 9); // Seattle
L.tileLayer('http://{s}.tiles.mapbox.com/v3/spatialdev.map-c9z2cyef/{z}/{x}/{y}.png', {
maxZoom: 18,
attribution: 'Map data © <a href="http://openstreetmap.org">OpenStreetMap</a> contributors, ' +
'<a href="http://creativecommons.org/licenses/by-sa/2.0/">CC-BY-SA</a>, ' +
'Imagery © <a href="http://mapbox.com">Mapbox</a>',
id: 'examples.map-i86knfo3'
}).addTo(map);
var pbfSource = new L.TileLayer.MVTSource({
url: "http://localhost:3000/services/vector-tiles/gadm/{z}/{x}/{y}.pbf",
debug: false,
clickableLayers: null,
getIDForLayerFeature: function(feature) {
return feature.properties.id;
},
/**
* The filter function gets called when iterating though each vector tile feature (vtf). You have access
* to every property associated with a given feature (the feature, and the layer). You can also filter
* based of the context (each tile that the feature is drawn onto).
*
* Returning false skips over the feature and it is not drawn.
*
* @param feature
* @returns {boolean}
*/
filter: function(feature, context) {
if (feature.layer.name === 'gadm2') {
return true;
}
return false;
},
/**
* When we want to link events between layers, like clicking on a label and a
* corresponding polygon freature, this will return the corresponding mapping
* between layers. This provides knowledge of which other feature a given feature
* is linked to.
*
* @param layerName the layer we want to know the linked layer from
* @returns {string} returns corresponding linked layer
*/
layerLink: function(layerName) {
if (layerName.indexOf('_label') > -1) {
return layerName.replace('_label', '');
}
return layerName + '_label';
},
/**
* Specify which features should have a certain z index (integer). Lower numbers will draw on 'the bottom'.
*
* @param feature - the PBFFeature that contains properties
*/
layerOrdering: function(feature) {
//This only needs to be done for each type, not necessarily for each feature. But we'll start here.
},
style: function(feature) {
var style = {};
var selected = style.selected = {};
var pointRadius = 1;
function ScaleDependentPointRadius(zoom) {
//Set point radius based on zoom
var pointRadius = 1;
if (zoom >= 0 && zoom <= 7) {
pointRadius = 1;
}
else if (zoom > 7 && zoom <= 10) {
pointRadius = 2;
}
else if (zoom > 10) {
pointRadius = 3;
}
return pointRadius;
}
var type = feature.type;
switch (type) {
case 1: //'Point'
// unselected
style.color = CICO_LAYERS[feature.properties.type].color || '#3086AB';
style.radius = ScaleDependentPointRadius;
// selected
style.selected = {
color: 'rgba(255,255,0,0.5)',
radius: 6
};
break;
case 2: //'LineString'
// unselected
style.color = 'rgba(161,217,155,0.8)';
style.size = 3;
// selected
style.selected = {
color: 'rgba(255,255,0,0.5)',
size: 6
};
break;
case 3: //'Polygon'
// unselected
style.color = 'rgba(149,139,255,0.4)';
style.outline = {
color: 'rgb(20,20,20)',
size: 2
};
// selected
style.selected = {
color: 'rgba(255,255,0,0.5)',
outline: {
color: '#d9534f',
size: 3
}
};
}
return style;
},
onClick: function(evt) {
console.log('clickkkk');
}
});
debug.mvtSource = pbfSource;
//Add layer
map.addLayer(pbfSource);