blob: fc91c75241692b97a10fa99d1fed8f0d1b314209 [file] [log] [blame]
<!DOCTYPE html>
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<html>
<head>
<meta charset="utf-8">
<meta name="viewport" content="width=device-width, initial-scale=1" />
<script src="https://unpkg.com/d3-array@3"></script>
<script src="https://unpkg.com/d3-geo@3/dist/d3-geo.js"></script>
<script src="lib/simpleRequire.js"></script>
<script src="lib/config.js"></script>
<script src="lib/jquery.min.js"></script>
<script src="lib/facePrint.js"></script>
<script src="lib/testHelper.js"></script>
<script src="lib/dat.gui.min.js"></script>
<!-- <script src="ut/lib/canteen.js"></script> -->
<link rel="stylesheet" href="lib/reset.css" />
</head>
<body>
<style>
body {
margin: 0;
}
#main {
position: absolute;
left: 0;
top: 0;
bottom: 0;
right: 0;
}
</style>
<div id="main"></div>
<script>
require([
'echarts',
'./data/map/json/world.json',
'./data/usa.json'
], function (echarts, worldJson, usaJson) {
var d3Projections = [
['default'],
// Azimuthal Projections
['geoAzimuthalEqualArea'],
['geoAzimuthalEquidistant'],
// 'geoGnomonic',
['geoOrthographic'],
['geoStereographic', d3.geoStereographic().rotate([-27, 0])],
// Conic Projections
['geoConicConformal'],
['geoConicEqualArea'],
['geoConicEquidistant'],
// Cylindrical Projections
['geoEquirectangular'],
['geoMercator'],
['geoTransverseMercator', d3.geoStereographic()],
// Equal-Earth
['geoEqualEarth'],
['geoNaturalEarth1']
];
function createLineString(start, end) {
var dx = end[0] - start[0];
var dy = end[1] - start[1];
var segs = 100;
var stepX = dx / segs;
var stepY = dy / segs;
var points = [];
// TODO needs adaptive sampling on the -180 / 180 of azimuthal projections.
for (let i = 0; i <= segs; i++) {
points.push([
start[0] + i * stepX,
start[1] + i * stepY
]);
}
return points;
}
function normalizePoint(pt) {
if (pt[0] === -180) {
pt[0] += 1e-2;
}
if (pt[0] === 180) {
pt[0] -= 1e-2;
}
if (pt[1] === -80) {
pt[1] += 1e-2;
}
if (pt[1] === 80) {
pt[1] -= 1e-2;
}
return pt;
}
// Add graticule
var graticuleLineStrings = [];
for (var lat = -80; lat <= 80; lat += 10) {
graticuleLineStrings.push(
createLineString(normalizePoint([-180, lat]), normalizePoint([180, lat]))
);
}
for (var lng = -180; lng <= 180; lng += 10) {
graticuleLineStrings.push(
createLineString(normalizePoint([lng, -80]), normalizePoint([lng, 80]))
);
}
worldJson.features.unshift({
geometry: {
type: 'MultiLineString',
coordinates: graticuleLineStrings
},
properties: {
name: 'graticule'
}
});
echarts.registerMap('world', worldJson);
function createWorldOption(name, projection) {
return {
series : [
{
type: 'map',
map: 'world',
roam: false,
itemStyle: {
borderColor: '#fff',
areaColor: '#000'
},
projection,
universalTransition: true,
animationDurationUpdate: 2000,
data:[
{
name: 'graticule',
itemStyle: {
borderColor: '#ddd'
},
emphasis: {
itemStyle: {
borderColor: '#ddd'
}
}
}
]
}
]
};
}
var chart = echarts.init(document.querySelector('#main'));
var config = {
projection: 'default'
};
function updateProjection(projectionName) {
var projection = d3Projections.find(item => item[0] === projectionName)[1]
|| d3[projectionName] && d3[projectionName]();
var projectionOpt = projection && {
project: (pt) => {
return projection(pt)
},
unproject: (pt) => projection.invert(pt),
stream: projection.stream
};
var option = createWorldOption(projectionName, projectionOpt);
if (projectionName === 'geoStereographic') {
// TODO
option.series[0].center = projection([0, 0]);
option.series[0].zoom = 30;
}
else if (projectionName === 'geoTransverseMercator') {
option.series[0].center = projection([0, 0]);
option.series[0].zoom = 4000;
}
else {
option.series[0].center = null,
option.series[0].zoom = 1;
}
option.title = {
text: projectionName,
left: 'center',
top: 0,
textStyle: {
fontSize: 14
}
};
chart.setOption(option);
}
updateProjection(config.projection);
var gui = new dat.GUI();
gui.add(config, 'projection', d3Projections.map(item => item[0])).onChange(function () {
updateProjection(config.projection);
})
});
</script>
</body>
</html>