forked from qwerty/tupali
293 lines
12 KiB
JavaScript
293 lines
12 KiB
JavaScript
/* *
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*
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* Copyright (c) 2019-2020 Highsoft AS
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*
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* Boost module: stripped-down renderer for higher performance
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*
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* License: highcharts.com/license
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*
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* !!!!!!! SOURCE GETS TRANSPILED BY TYPESCRIPT. EDIT TS FILE ONLY. !!!!!!!
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*
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* */
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'use strict';
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import H from '../../parts/Globals.js';
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import U from '../../parts/Utilities.js';
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var addEvent = U.addEvent, extend = U.extend, fireEvent = U.fireEvent, wrap = U.wrap;
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import '../../parts/Series.js';
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import butils from './boost-utils.js';
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import createAndAttachRenderer from './boost-attach.js';
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var Series = H.Series, seriesTypes = H.seriesTypes, noop = function () { }, eachAsync = butils.eachAsync, pointDrawHandler = butils.pointDrawHandler, allocateIfNotSeriesBoosting = butils.allocateIfNotSeriesBoosting, renderIfNotSeriesBoosting = butils.renderIfNotSeriesBoosting, shouldForceChartSeriesBoosting = butils.shouldForceChartSeriesBoosting, index;
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/* eslint-disable valid-jsdoc */
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/**
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* Initialize the boot module.
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*
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* @private
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* @return {void}
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*/
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function init() {
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extend(Series.prototype, {
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/**
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* @private
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* @function Highcharts.Series#renderCanvas
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*/
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renderCanvas: function () {
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var series = this, options = series.options || {}, renderer = false, chart = series.chart, xAxis = this.xAxis, yAxis = this.yAxis, xData = options.xData || series.processedXData, yData = options.yData || series.processedYData, rawData = options.data, xExtremes = xAxis.getExtremes(), xMin = xExtremes.min, xMax = xExtremes.max, yExtremes = yAxis.getExtremes(), yMin = yExtremes.min, yMax = yExtremes.max, pointTaken = {}, lastClientX, sampling = !!series.sampling, points, enableMouseTracking = options.enableMouseTracking !== false, threshold = options.threshold, yBottom = yAxis.getThreshold(threshold), isRange = series.pointArrayMap &&
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series.pointArrayMap.join(',') === 'low,high', isStacked = !!options.stacking, cropStart = series.cropStart || 0, requireSorting = series.requireSorting, useRaw = !xData, minVal, maxVal, minI, maxI, boostOptions, compareX = options.findNearestPointBy === 'x', xDataFull = (this.xData ||
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this.options.xData ||
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this.processedXData ||
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false), addKDPoint = function (clientX, plotY, i) {
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// We need to do ceil on the clientX to make things
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// snap to pixel values. The renderer will frequently
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// draw stuff on "sub-pixels".
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clientX = Math.ceil(clientX);
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// Shaves off about 60ms compared to repeated concatenation
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index = compareX ? clientX : clientX + ',' + plotY;
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// The k-d tree requires series points.
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// Reduce the amount of points, since the time to build the
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// tree increases exponentially.
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if (enableMouseTracking && !pointTaken[index]) {
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pointTaken[index] = true;
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if (chart.inverted) {
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clientX = xAxis.len - clientX;
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plotY = yAxis.len - plotY;
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}
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points.push({
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x: xDataFull ? xDataFull[cropStart + i] : false,
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clientX: clientX,
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plotX: clientX,
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plotY: plotY,
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i: cropStart + i
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});
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}
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};
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// Get or create the renderer
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renderer = createAndAttachRenderer(chart, series);
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chart.isBoosting = true;
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boostOptions = renderer.settings;
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if (!this.visible) {
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return;
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}
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// If we are zooming out from SVG mode, destroy the graphics
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if (this.points || this.graph) {
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this.destroyGraphics();
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}
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// If we're rendering per. series we should create the marker groups
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// as usual.
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if (!chart.isChartSeriesBoosting()) {
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// If all series were boosting, but are not anymore
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// restore private markerGroup
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if (this.markerGroup === chart.markerGroup) {
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this.markerGroup = void 0;
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}
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this.markerGroup = series.plotGroup('markerGroup', 'markers', true, 1, chart.seriesGroup);
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}
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else {
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// If series has a private markeGroup, remove that
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// and use common markerGroup
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if (this.markerGroup &&
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this.markerGroup !== chart.markerGroup) {
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this.markerGroup.destroy();
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}
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// Use a single group for the markers
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this.markerGroup = chart.markerGroup;
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// When switching from chart boosting mode, destroy redundant
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// series boosting targets
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if (this.renderTarget) {
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this.renderTarget = this.renderTarget.destroy();
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}
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}
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points = this.points = [];
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// Do not start building while drawing
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series.buildKDTree = noop;
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if (renderer) {
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allocateIfNotSeriesBoosting(renderer, this);
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renderer.pushSeries(series);
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// Perform the actual renderer if we're on series level
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renderIfNotSeriesBoosting(renderer, this, chart);
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}
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/**
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* This builds the KD-tree
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* @private
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*/
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function processPoint(d, i) {
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var x, y, clientX, plotY, isNull, low = false, chartDestroyed = typeof chart.index === 'undefined', isYInside = true;
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if (!chartDestroyed) {
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if (useRaw) {
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x = d[0];
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y = d[1];
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}
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else {
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x = d;
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y = yData[i];
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}
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// Resolve low and high for range series
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if (isRange) {
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if (useRaw) {
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y = d.slice(1, 3);
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}
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low = y[0];
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y = y[1];
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}
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else if (isStacked) {
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x = d.x;
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y = d.stackY;
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low = y - d.y;
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}
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isNull = y === null;
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// Optimize for scatter zooming
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if (!requireSorting) {
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isYInside = y >= yMin && y <= yMax;
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}
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if (!isNull && x >= xMin && x <= xMax && isYInside) {
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clientX = xAxis.toPixels(x, true);
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if (sampling) {
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if (typeof minI === 'undefined' ||
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clientX === lastClientX) {
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if (!isRange) {
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low = y;
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}
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if (typeof maxI === 'undefined' ||
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y > maxVal) {
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maxVal = y;
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maxI = i;
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}
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if (typeof minI === 'undefined' ||
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low < minVal) {
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minVal = low;
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minI = i;
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}
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}
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// Add points and reset
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if (clientX !== lastClientX) {
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// maxI is number too:
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if (typeof minI !== 'undefined') {
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plotY =
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yAxis.toPixels(maxVal, true);
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yBottom =
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yAxis.toPixels(minVal, true);
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addKDPoint(clientX, plotY, maxI);
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if (yBottom !== plotY) {
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addKDPoint(clientX, yBottom, minI);
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}
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}
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minI = maxI = void 0;
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lastClientX = clientX;
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}
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}
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else {
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plotY = Math.ceil(yAxis.toPixels(y, true));
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addKDPoint(clientX, plotY, i);
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}
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}
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}
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return !chartDestroyed;
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}
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/**
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* @private
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*/
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function doneProcessing() {
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fireEvent(series, 'renderedCanvas');
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// Go back to prototype, ready to build
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delete series.buildKDTree;
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series.buildKDTree();
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if (boostOptions.debug.timeKDTree) {
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console.timeEnd('kd tree building'); // eslint-disable-line no-console
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}
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}
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// Loop over the points to build the k-d tree - skip this if
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// exporting
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if (!chart.renderer.forExport) {
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if (boostOptions.debug.timeKDTree) {
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console.time('kd tree building'); // eslint-disable-line no-console
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}
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eachAsync(isStacked ? series.data : (xData || rawData), processPoint, doneProcessing);
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}
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}
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});
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/*
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* We need to handle heatmaps separatly, since we can't perform the
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* size/color calculations in the shader easily.
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*
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* This likely needs future optimization.
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*/
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['heatmap', 'treemap'].forEach(function (t) {
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if (seriesTypes[t]) {
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wrap(seriesTypes[t].prototype, 'drawPoints', pointDrawHandler);
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}
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});
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/* eslint-disable no-invalid-this */
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if (seriesTypes.bubble) {
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// By default, the bubble series does not use the KD-tree, so force it
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// to.
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delete seriesTypes.bubble.prototype.buildKDTree;
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// seriesTypes.bubble.prototype.directTouch = false;
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// Needed for markers to work correctly
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wrap(seriesTypes.bubble.prototype, 'markerAttribs', function (proceed) {
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if (this.isSeriesBoosting) {
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return false;
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}
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return proceed.apply(this, [].slice.call(arguments, 1));
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});
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}
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seriesTypes.scatter.prototype.fill = true;
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extend(seriesTypes.area.prototype, {
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fill: true,
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fillOpacity: true,
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sampling: true
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});
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extend(seriesTypes.column.prototype, {
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fill: true,
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sampling: true
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});
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// Take care of the canvas blitting
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H.Chart.prototype.callbacks.push(function (chart) {
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/**
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* Convert chart-level canvas to image.
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* @private
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*/
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function canvasToSVG() {
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if (chart.ogl && chart.isChartSeriesBoosting()) {
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chart.ogl.render(chart);
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}
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}
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/**
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* Clear chart-level canvas.
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* @private
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*/
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function preRender() {
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// Reset force state
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chart.boostForceChartBoost = void 0;
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chart.boostForceChartBoost = shouldForceChartSeriesBoosting(chart);
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chart.isBoosting = false;
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if (!chart.isChartSeriesBoosting() && chart.didBoost) {
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chart.didBoost = false;
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}
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// Clear the canvas
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if (chart.boostClear) {
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chart.boostClear();
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}
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if (chart.canvas && chart.ogl && chart.isChartSeriesBoosting()) {
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chart.didBoost = true;
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// Allocate
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chart.ogl.allocateBuffer(chart);
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}
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// see #6518 + #6739
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if (chart.markerGroup &&
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chart.xAxis &&
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chart.xAxis.length > 0 &&
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chart.yAxis &&
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chart.yAxis.length > 0) {
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chart.markerGroup.translate(chart.xAxis[0].pos, chart.yAxis[0].pos);
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}
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}
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addEvent(chart, 'predraw', preRender);
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addEvent(chart, 'render', canvasToSVG);
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// addEvent(chart, 'zoom', function () {
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// chart.boostForceChartBoost =
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// shouldForceChartSeriesBoosting(chart);
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// });
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});
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/* eslint-enable no-invalid-this */
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}
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export default init;
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