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1fa8c79b1e
Summary: Update the d3 library to its last 6.x version available on https://github.com/d3/d3/releases This also requires updating the tooltip event handling of dots in `Chart.js` to avoid an `Uncaught TypeError: d3.event is undefined` per https://observablehq.com/@d3/d3v6-migration-guide#event-management linked from https://github.com/d3/d3/releases/tag/v6.0.0 Closes T15820 Test Plan: * Enable the Facts application, go to the Reports of a Project with task changes over time, look at charts, hover over data points, read the tooltip - e.g. on http://phorge.localhost/project/reports/1/ or http://phorge.localhost/maniphest/report/burn/ * Check HTML source of above URIs for the `<script type="text/javascript">` loading `d3.min.js` and open the JS file to verify the d3 version number bump. * Check Console of web browser's developer tools for no errors. Reviewers: O1 Blessed Committers, speck Reviewed By: O1 Blessed Committers, speck Subscribers: speck, tobiaswiese, valerio.bozzolan, Matthew, Cigaryno Maniphest Tasks: T15820 Differential Revision: https://we.phorge.it/D25631
252 lines
6.3 KiB
JavaScript
252 lines
6.3 KiB
JavaScript
/**
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* @provides javelin-chart
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* @requires phui-chart-css
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* d3
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* javelin-chart-curtain-view
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* javelin-chart-function-label
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*/
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JX.install('Chart', {
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construct: function(root_node) {
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this._rootNode = root_node;
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JX.Stratcom.listen('resize', null, JX.bind(this, this._redraw));
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},
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members: {
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_rootNode: null,
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_data: null,
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_chartContainerNode: null,
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_curtain: null,
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setData: function(blob) {
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this._data = blob;
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this._redraw();
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},
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_redraw: function() {
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if (!this._data) {
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return;
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}
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var hardpoint = this._rootNode;
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var curtain = this._getCurtain();
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var container_node = this._getChartContainerNode();
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var content = [
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container_node,
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curtain.getNode(),
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];
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JX.DOM.setContent(hardpoint, content);
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// Remove the old chart (if one exists) before drawing the new chart.
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JX.DOM.setContent(container_node, []);
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var viewport = JX.Vector.getDim(container_node);
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var config = this._data;
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function css_function(n) {
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return n + '(' + JX.$A(arguments).slice(1).join(', ') + ')';
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}
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var padding = {};
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if (JX.Device.isDesktop()) {
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padding = {
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top: 24,
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left: 48,
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bottom: 48,
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right: 12
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};
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} else {
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padding = {
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top: 12,
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left: 36,
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bottom: 24,
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right: 4
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};
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}
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var size = {
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frameWidth: viewport.x,
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frameHeight: viewport.y,
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};
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size.width = size.frameWidth - padding.left - padding.right;
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size.height = size.frameHeight - padding.top - padding.bottom;
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var x = d3.scaleTime()
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.range([0, size.width]);
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var y = d3.scaleLinear()
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.range([size.height, 0]);
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var xAxis = d3.axisBottom(x);
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var yAxis = d3.axisLeft(y);
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var svg = d3.select(container_node).append('svg')
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.attr('width', size.frameWidth)
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.attr('height', size.frameHeight)
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.attr('class', 'chart');
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var g = svg.append('g')
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.attr(
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'transform',
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css_function('translate', padding.left, padding.top));
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g.append('rect')
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.attr('class', 'inner')
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.attr('width', size.width)
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.attr('height', size.height);
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x.domain([this._newDate(config.xMin), this._newDate(config.xMax)]);
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y.domain([config.yMin, config.yMax]);
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var div = d3.select('body')
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.append('div')
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.attr('class', 'chart-tooltip')
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.style('opacity', 0);
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curtain.reset();
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for (var idx = 0; idx < config.datasets.length; idx++) {
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var dataset = config.datasets[idx];
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switch (dataset.type) {
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case 'stacked-area':
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this._newStackedArea(g, dataset, x, y, div, curtain);
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break;
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}
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}
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curtain.redraw();
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g.append('g')
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.attr('class', 'x axis')
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.attr('transform', css_function('translate', 0, size.height))
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.call(xAxis);
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g.append('g')
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.attr('class', 'y axis')
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.attr('transform', css_function('translate', 0, 0))
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.call(yAxis);
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},
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_newStackedArea: function(g, dataset, x, y, div, curtain) {
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var ii;
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var to_date = JX.bind(this, this._newDate);
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var area = d3.area()
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.x(function(d) { return x(to_date(d.x)); })
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.y0(function(d) {
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// When the area is positive, draw it above the X axis. When the area
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// is negative, draw it below the X axis. We currently avoid having
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// functions which cross the X axis by clever construction.
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if (d.y0 >= 0 && d.y1 >= 0) {
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return y(d.y0);
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}
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if (d.y0 <= 0 && d.y1 <= 0) {
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return y(d.y0);
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}
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return y(0);
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})
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.y1(function(d) { return y(d.y1); });
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var line = d3.line()
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.x(function(d) { return x(to_date(d.x)); })
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.y(function(d) { return y(d.y1); });
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for (ii = 0; ii < dataset.data.length; ii++) {
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var label = new JX.ChartFunctionLabel(dataset.labels[ii]);
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var fill_color = label.getFillColor() || label.getColor();
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g.append('path')
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.style('fill', fill_color)
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.attr('d', area(dataset.data[ii]));
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var stroke_color = label.getColor();
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g.append('path')
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.attr('class', 'line')
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.style('stroke', stroke_color)
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.attr('d', line(dataset.data[ii]));
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curtain.addFunctionLabel(label);
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}
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// Now that we've drawn all the areas and lines, draw the dots.
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for (ii = 0; ii < dataset.data.length; ii++) {
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g.selectAll('dot')
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.data(dataset.events[ii])
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.enter()
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.append('circle')
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.attr('class', 'point')
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.attr('r', 3)
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.attr('cx', function(d) { return x(to_date(d.x)); })
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.attr('cy', function(d) { return y(d.y1); })
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.on('mouseover', function(event, d) {
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var dd = to_date(d.x);
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var d_y = dd.getFullYear();
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// NOTE: Javascript months are zero-based. See PHI1017.
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var d_m = (dd.getMonth() + 1).toString();
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if (d_m.length == 1) {
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d_m = '0' + d_m;
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}
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var d_d = dd.getDate().toString();
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if (d_d.length == 1) {
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d_d = '0' + d_d;
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}
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var y = parseInt(d.y1);
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var label = d.n + ' Points';
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var view =
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d_y + '-' + d_m + '-' + d_d + ': ' + y + '<br />' +
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label;
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div
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.html(view)
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.style('opacity', 0.9)
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.style('left', (event.pageX - 60) + 'px')
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.style('top', (event.pageY - 38) + 'px');
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})
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.on('mouseout', function() {
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div.style('opacity', 0);
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});
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}
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},
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_newDate: function(epoch) {
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return new Date(epoch * 1000);
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},
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_getCurtain: function() {
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if (!this._curtain) {
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this._curtain = new JX.ChartCurtainView();
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}
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return this._curtain;
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},
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_getChartContainerNode: function() {
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if (!this._chartContainerNode) {
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var attrs = {
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className: 'chart-container'
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};
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this._chartContainerNode = JX.$N('div', attrs);
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}
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return this._chartContainerNode;
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}
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}
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});
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