207 lines
5.1 KiB
JavaScript
207 lines
5.1 KiB
JavaScript
// NOCOMPILE
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// this example uses d3 for which we don't have an externs file.
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import Map from '../src/ol/Map.js';
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import View from '../src/ol/View.js';
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import ImageLayer from '../src/ol/layer/Image.js';
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import TileLayer from '../src/ol/layer/Tile.js';
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import _ol_source_BingMaps_ from '../src/ol/source/BingMaps.js';
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import RasterSource from '../src/ol/source/Raster.js';
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var minVgi = 0;
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var maxVgi = 0.25;
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var bins = 10;
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/**
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* Calculate the Vegetation Greenness Index (VGI) from an input pixel. This
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* is a rough estimate assuming that pixel values correspond to reflectance.
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* @param {Array.<number>} pixel An array of [R, G, B, A] values.
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* @return {number} The VGI value for the given pixel.
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*/
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function vgi(pixel) {
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var r = pixel[0] / 255;
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var g = pixel[1] / 255;
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var b = pixel[2] / 255;
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return (2 * g - r - b) / (2 * g + r + b);
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}
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/**
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* Summarize values for a histogram.
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* @param {numver} value A VGI value.
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* @param {Object} counts An object for keeping track of VGI counts.
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*/
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function summarize(value, counts) {
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var min = counts.min;
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var max = counts.max;
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var num = counts.values.length;
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if (value < min) {
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// do nothing
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} else if (value >= max) {
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counts.values[num - 1] += 1;
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} else {
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var index = Math.floor((value - min) / counts.delta);
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counts.values[index] += 1;
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}
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}
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/**
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* Use aerial imagery as the input data for the raster source.
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*/
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var bing = new _ol_source_BingMaps_({
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key: 'As1HiMj1PvLPlqc_gtM7AqZfBL8ZL3VrjaS3zIb22Uvb9WKhuJObROC-qUpa81U5',
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imagerySet: 'Aerial'
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});
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/**
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* Create a raster source where pixels with VGI values above a threshold will
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* be colored green.
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*/
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var raster = new RasterSource({
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sources: [bing],
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/**
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* Run calculations on pixel data.
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* @param {Array} pixels List of pixels (one per source).
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* @param {Object} data User data object.
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* @return {Array} The output pixel.
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*/
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operation: function(pixels, data) {
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var pixel = pixels[0];
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var value = vgi(pixel);
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summarize(value, data.counts);
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if (value >= data.threshold) {
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pixel[0] = 0;
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pixel[1] = 255;
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pixel[2] = 0;
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pixel[3] = 128;
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} else {
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pixel[3] = 0;
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}
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return pixel;
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},
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lib: {
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vgi: vgi,
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summarize: summarize
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}
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});
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raster.set('threshold', 0.1);
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function createCounts(min, max, num) {
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var values = new Array(num);
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for (var i = 0; i < num; ++i) {
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values[i] = 0;
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}
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return {
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min: min,
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max: max,
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values: values,
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delta: (max - min) / num
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};
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}
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raster.on('beforeoperations', function(event) {
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event.data.counts = createCounts(minVgi, maxVgi, bins);
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event.data.threshold = raster.get('threshold');
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});
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raster.on('afteroperations', function(event) {
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schedulePlot(event.resolution, event.data.counts, event.data.threshold);
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});
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var map = new Map({
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layers: [
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new TileLayer({
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source: bing
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}),
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new ImageLayer({
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source: raster
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})
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],
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target: 'map',
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view: new View({
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center: [-9651695, 4937351],
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zoom: 13,
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minZoom: 12,
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maxZoom: 19
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})
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});
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var timer = null;
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function schedulePlot(resolution, counts, threshold) {
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if (timer) {
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clearTimeout(timer);
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timer = null;
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}
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timer = setTimeout(plot.bind(null, resolution, counts, threshold), 1000 / 60);
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}
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var barWidth = 15;
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var plotHeight = 150;
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var chart = d3.select('#plot').append('svg')
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.attr('width', barWidth * bins)
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.attr('height', plotHeight);
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var chartRect = chart.node().getBoundingClientRect();
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var tip = d3.select(document.body).append('div')
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.attr('class', 'tip');
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function plot(resolution, counts, threshold) {
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var yScale = d3.scaleLinear()
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.domain([0, d3.max(counts.values)])
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.range([0, plotHeight]);
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var bar = chart.selectAll('rect').data(counts.values);
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bar.enter().append('rect');
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bar.attr('class', function(count, index) {
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var value = counts.min + (index * counts.delta);
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return 'bar' + (value >= threshold ? ' selected' : '');
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})
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.attr('width', barWidth - 2);
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bar.transition().attr('transform', function(value, index) {
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return 'translate(' + (index * barWidth) + ', ' +
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(plotHeight - yScale(value)) + ')';
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})
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.attr('height', yScale);
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bar.on('mousemove', function(count, index) {
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var threshold = counts.min + (index * counts.delta);
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if (raster.get('threshold') !== threshold) {
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raster.set('threshold', threshold);
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raster.changed();
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}
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});
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bar.on('mouseover', function(count, index) {
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var area = 0;
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for (var i = counts.values.length - 1; i >= index; --i) {
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area += resolution * resolution * counts.values[i];
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}
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tip.html(message(counts.min + (index * counts.delta), area));
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tip.style('display', 'block');
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tip.transition().style({
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left: (chartRect.left + (index * barWidth) + (barWidth / 2)) + 'px',
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top: (d3.event.y - 60) + 'px',
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opacity: 1
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});
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});
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bar.on('mouseout', function() {
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tip.transition().style('opacity', 0).each('end', function() {
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tip.style('display', 'none');
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});
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});
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}
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function message(value, area) {
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var acres = (area / 4046.86).toFixed(0).replace(/\B(?=(\d{3})+(?!\d))/g, ',');
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return acres + ' acres at<br>' + value.toFixed(2) + ' VGI or above';
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}
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