Demonstrates rendering timezones from KML.
This example parses a KML file and renders the features as a vector layer. The layer is given a ol/style/Style
that fills timezones yellow with an opacity calculated based on the current offset to local noon.
<!DOCTYPE html>
<html lang="en">
<head>
<title>Timezones in KML</title>
<!-- The line below is only needed for old environments like Internet Explorer and Android 4.x -->
<script src="https://cdn.polyfill.io/v2/polyfill.min.js?features=requestAnimationFrame,Element.prototype.classList,URL"></script>
<script src="https://code.jquery.com/jquery-2.2.3.min.js"></script>
<link rel="stylesheet" href="https://maxcdn.bootstrapcdn.com/bootstrap/3.3.6/css/bootstrap.min.css">
<script src="https://maxcdn.bootstrapcdn.com/bootstrap/3.3.6/js/bootstrap.min.js"></script>
<style>
.map {
width: 100%;
height:400px;
}
#map {
position: relative;
}
#info {
position: absolute;
height: 1px;
width: 1px;
z-index: 100;
}
</style>
</head>
<body>
<div id="map" class="map"><div id="info"></div></div>
<script src="index.js"></script>
</body>
</html>
import 'ol/ol.css';
import Map from 'ol/Map';
import View from 'ol/View';
import KML from 'ol/format/KML';
import {Tile as TileLayer, Vector as VectorLayer} from 'ol/layer';
import Stamen from 'ol/source/Stamen';
import VectorSource from 'ol/source/Vector';
import {Fill, Stroke, Style} from 'ol/style';
/*
* Compute the style of the feature. Here we want the opacity of polygons to
* be based on the offset from local noon. For example, a timezone where it is
* currently noon would have an opacity of 0.75. And a timezone where it is
* currently midnight would have an opacity of 0. This doesn't account for
* daylight savings, so don't use it to plan your vacation.
*/
var styleFunction = function(feature) {
var offset = 0;
var name = feature.get('name'); // e.g. GMT -08:30
var match = name.match(/([\-+]\d{2}):(\d{2})$/);
if (match) {
var hours = parseInt(match[1], 10);
var minutes = parseInt(match[2], 10);
offset = 60 * hours + minutes;
}
var date = new Date();
var local = new Date(date.getTime() +
(date.getTimezoneOffset() + offset) * 60000);
// offset from local noon (in hours)
var delta = Math.abs(12 - local.getHours() + (local.getMinutes() / 60));
if (delta > 12) {
delta = 24 - delta;
}
var opacity = 0.75 * (1 - delta / 12);
return new Style({
fill: new Fill({
color: [0xff, 0xff, 0x33, opacity]
}),
stroke: new Stroke({
color: '#ffffff'
})
});
};
var vector = new VectorLayer({
source: new VectorSource({
url: 'data/kml/timezones.kml',
format: new KML({
extractStyles: false
})
}),
style: styleFunction
});
var raster = new TileLayer({
source: new Stamen({
layer: 'toner'
})
});
var map = new Map({
layers: [raster, vector],
target: 'map',
view: new View({
center: [0, 0],
zoom: 2
})
});
var info = $('#info');
info.tooltip({
animation: false,
trigger: 'manual'
});
var displayFeatureInfo = function(pixel) {
info.css({
left: pixel[0] + 'px',
top: (pixel[1] - 15) + 'px'
});
var feature = map.forEachFeatureAtPixel(pixel, function(feature) {
return feature;
});
if (feature) {
info.tooltip('hide')
.attr('data-original-title', feature.get('name'))
.tooltip('fixTitle')
.tooltip('show');
} else {
info.tooltip('hide');
}
};
map.on('pointermove', function(evt) {
if (evt.dragging) {
info.tooltip('hide');
return;
}
displayFeatureInfo(map.getEventPixel(evt.originalEvent));
});
map.on('click', function(evt) {
displayFeatureInfo(evt.pixel);
});
{
"name": "kml-timezones",
"dependencies": {
"ol": "6.1.1"
},
"devDependencies": {
"parcel": "1.11.0"
},
"scripts": {
"start": "parcel index.html",
"build": "parcel build --experimental-scope-hoisting --public-url . index.html"
}
}